rowid,run.accession,experiment.accession,sample.accession,study.accession,bioproject,study.title,study.alias,study.type,study.abstract,study.attributes,study.PMIDs,sample.description,sample.title,sample.alias,sample.centername,sample.attributes,GEOsample.title,GEOsample.dataprocessing,GEOsample.source,GEOsample.treatmentprotocol,GEOsample.extractprotocol,GEOsample.growthprotocol,GEOsample.characteristics,GEOsample.accession,experiment.title,experiment.alias,experiment.library_name,experiment.design_description,experiment.library_construction_protocol,experiment.attributes,experiment.library_strategy,experiment.library_source,experiment.library_selection,experiment.library_layout,experiment.platform,experiment.instrument_model,experiment.spot_descriptor,experiment.study_ref,run.title,run.attributes,run.filename,run.semantic_name,run.total_bases,run.total_spots,run.alias,run.read_lengths,run.base_counts,run.r1_length,run.r2_length,run.r3_length,run.r4_length,run.Acount,run.Ccount,run.Gcount,run.Tcount,run.Ncount,run.experiment,run.pool_member,submission.accession,submission.srasource,submission.bioprojectsource,seqdetective.n_mates,seqdetective.mapping_rate.mate1,seqdetective.mapping_rate.mate2,seqdetective.nofeature_rate.mate1,seqdetective.nofeature_rate.mate2,seqdetective.sparsity.mate1,seqdetective.sparsity.mate2,seqdetective.pos_strand_rate.mate1,seqdetective.pos_strand_rate.mate2,seqdetective.readlen.mate1,seqdetective.readlen.mate2,seqdetective.judgement.mate1,seqdetective.judgement.mate2,seqdetective.judgement.reason,platform_family,instrument_generation,read_bias,selection_class,prep_kit,sc_or_bulk,tech_class,technology,tech_variant,submission.bioprojectsource.country,earliest_date,devstage_curation,devstage_curation_coarse,tissue_curation,tissue_curation_coarse
95,DRR050167,DRX045209,DRS025834,DRP003043,PRJDB4416,Transcriptome analysis in ES1 expressing rods of zebrafish,DRP003043,Transcriptome Analysis,Transcriptome analysis using next generation sequencing system for isolated rods from zebrafish of wild type T?bingen long fin TL line. Transgenic zebrafish expressing ES1 and/or EGFP in rods were used.,,,Zebrafish rods expressing ES1 and EGFP,ES1 3,SAMD00044057,,sample name:ES1 EGFP rod 003|strain:Tubingen long fin|cell type:rod,,,,,,,,,Ion Torrent PGM sequencing of SAMD00044057,DRX045209,1,1,1,,RNA-Seq,TRANSCRIPTOMIC,cDNA,SINGLE,ION_TORRENT,Ion Torrent PGM,1050Application ReadForward1,DRP003043,Ion Torrent PGM sequencing of SAMD00044057,,,,371748120.0,3469843.0,DRR050167,0:107.14,A:107190409;C:79475572;G:83520360;T:101561779;N:0,107,,,,107190409,79475572,83520360,101561779,0,DRX045209,DRS025834,DRA004229,"OSAKA_FB|Kawamura lab., Frontier Biology, Osaka univ.",Osaka university,1,0.81026,,0.26715,,0.86953,,0.52321,,51,,B,,usable mapping rate,ion_torrent,ion_torrent,unknown,cdna_unspecified,unknown,bulk,unknown,unknown,,Japan,2016-03-09,Undetermined,Undetermined,Fin,Surface Structure
96,DRR050166,DRX045208,DRS025833,DRP003043,PRJDB4416,Transcriptome analysis in ES1 expressing rods of zebrafish,DRP003043,Transcriptome Analysis,Transcriptome analysis using next generation sequencing system for isolated rods from zebrafish of wild type T?bingen long fin TL line. Transgenic zebrafish expressing ES1 and/or EGFP in rods were used.,,,Zebrafish rods expressing ES1 and EGFP,ES1 2,SAMD00044056,,sample name:ES1 EGFP rod 002|strain:Tubingen long fin|cell type:rod,,,,,,,,,Ion Torrent PGM sequencing of SAMD00044056,DRX045208,1,1,1,,RNA-Seq,TRANSCRIPTOMIC,cDNA,SINGLE,ION_TORRENT,Ion Torrent PGM,1280Application ReadForward1,DRP003043,Ion Torrent PGM sequencing of SAMD00044056,,,,425549011.0,3275261.0,DRR050166,0:129.93,A:126640704;C:86415371;G:90822163;T:121670773;N:0,129,,,,126640704,86415371,90822163,121670773,0,DRX045208,DRS025833,DRA004229,"OSAKA_FB|Kawamura lab., Frontier Biology, Osaka univ.",Osaka university,1,0.80223,,0.31429,,0.85861,,0.5272,,57,,B,,usable mapping rate,ion_torrent,ion_torrent,unknown,cdna_unspecified,unknown,bulk,unknown,unknown,,Japan,2016-03-09,Undetermined,Undetermined,Fin,Surface Structure
97,DRR050165,DRX045207,DRS025832,DRP003043,PRJDB4416,Transcriptome analysis in ES1 expressing rods of zebrafish,DRP003043,Transcriptome Analysis,Transcriptome analysis using next generation sequencing system for isolated rods from zebrafish of wild type T?bingen long fin TL line. Transgenic zebrafish expressing ES1 and/or EGFP in rods were used.,,,Zebrafish rods expressing ES1 and EGFP,ES1 1,SAMD00044055,,sample name:ES1 EGFP rod 001|strain:Tubingen long fin|cell type:rod,,,,,,,,,Ion Torrent PGM sequencing of SAMD00044055,DRX045207,1,1,1,,RNA-Seq,TRANSCRIPTOMIC,cDNA,SINGLE,ION_TORRENT,Ion Torrent PGM,1470Application ReadForward1,DRP003043,Ion Torrent PGM sequencing of SAMD00044055,,,,584599765.0,3941083.0,DRR050165,0:148.33,A:164329030;C:129885620;G:136727379;T:153657736;N:0,148,,,,164329030,129885620,136727379,153657736,0,DRX045207,DRS025832,DRA004229,"OSAKA_FB|Kawamura lab., Frontier Biology, Osaka univ.",Osaka university,1,0.83769,,0.25395,,0.83116,,0.52784,,185,,B,,usable mapping rate,ion_torrent,ion_torrent,unknown,cdna_unspecified,unknown,bulk,unknown,unknown,,Japan,2016-03-09,Undetermined,Undetermined,Fin,Surface Structure
98,DRR050164,DRX045206,DRS025831,DRP003043,PRJDB4416,Transcriptome analysis in ES1 expressing rods of zebrafish,DRP003043,Transcriptome Analysis,Transcriptome analysis using next generation sequencing system for isolated rods from zebrafish of wild type T?bingen long fin TL line. Transgenic zebrafish expressing ES1 and/or EGFP in rods were used.,,,Zebrafish rods expressing EGFP,EGFP 3,SAMD00044054,,sample name:EGFP rod 003|strain:Tubingen long fin|cell type:rod,,,,,,,,,Ion Torrent PGM sequencing of SAMD00044054,DRX045206,1,1,1,,RNA-Seq,TRANSCRIPTOMIC,cDNA,SINGLE,ION_TORRENT,Ion Torrent PGM,880Application ReadForward1,DRP003043,Ion Torrent PGM sequencing of SAMD00044054,,,,343014114.0,3827762.0,DRR050164,0:89.61,A:99421434;C:73070267;G:77738821;T:92783592;N:0,89,,,,99421434,73070267,77738821,92783592,0,DRX045206,DRS025831,DRA004229,"OSAKA_FB|Kawamura lab., Frontier Biology, Osaka univ.",Osaka university,1,0.78953,,0.25529,,0.87367,,0.52148,,24,,B,,usable mapping rate,ion_torrent,ion_torrent,unknown,cdna_unspecified,unknown,bulk,unknown,unknown,,Japan,2016-03-09,Undetermined,Undetermined,Fin,Surface Structure
99,DRR050163,DRX045205,DRS025830,DRP003043,PRJDB4416,Transcriptome analysis in ES1 expressing rods of zebrafish,DRP003043,Transcriptome Analysis,Transcriptome analysis using next generation sequencing system for isolated rods from zebrafish of wild type T?bingen long fin TL line. Transgenic zebrafish expressing ES1 and/or EGFP in rods were used.,,,Zebrafish rods expressing EGFP,EGFP 2,SAMD00044053,,sample name:EGFP rod 002|strain:Tubingen long fin|cell type:rod,,,,,,,,,Ion Torrent PGM sequencing of SAMD00044053,DRX045205,1,1,1,,RNA-Seq,TRANSCRIPTOMIC,cDNA,SINGLE,ION_TORRENT,Ion Torrent PGM,1370Application ReadForward1,DRP003043,Ion Torrent PGM sequencing of SAMD00044053,,,,533069427.0,3824140.0,DRR050163,0:139.40,A:152608173;C:113928273;G:120051739;T:146481242;N:0,139,,,,152608173,113928273,120051739,146481242,0,DRX045205,DRS025830,DRA004229,"OSAKA_FB|Kawamura lab., Frontier Biology, Osaka univ.",Osaka university,1,0.80412,,0.26768,,0.85338,,0.52255,,245,,B,,usable mapping rate,ion_torrent,ion_torrent,unknown,cdna_unspecified,unknown,bulk,unknown,unknown,,Japan,2016-03-09,Undetermined,Undetermined,Fin,Surface Structure
100,DRR050162,DRX045204,DRS025829,DRP003043,PRJDB4416,Transcriptome analysis in ES1 expressing rods of zebrafish,DRP003043,Transcriptome Analysis,Transcriptome analysis using next generation sequencing system for isolated rods from zebrafish of wild type T?bingen long fin TL line. Transgenic zebrafish expressing ES1 and/or EGFP in rods were used.,,,Zebrafish rods expressing EGFP,EGFP 1,SAMD00044052,,sample name:EGFP rod 001|strain:Tubingen long fin|cell type:rod,,,,,,,,,Ion Torrent PGM sequencing of SAMD00044052,DRX045204,1,1,1,,RNA-Seq,TRANSCRIPTOMIC,cDNA,SINGLE,ION_TORRENT,Ion Torrent PGM,1130Application ReadForward1,DRP003043,Ion Torrent PGM sequencing of SAMD00044052,,,,478262965.0,4224064.0,DRR050162,0:113.22,A:136348264;C:104872341;G:113114502;T:123927858;N:0,113,,,,136348264,104872341,113114502,123927858,0,DRX045204,DRS025829,DRA004229,"OSAKA_FB|Kawamura lab., Frontier Biology, Osaka univ.",Osaka university,1,0.86947,,0.29839,,0.83317,,0.51453,,80,,B,,usable mapping rate,ion_torrent,ion_torrent,unknown,cdna_unspecified,unknown,bulk,unknown,unknown,,Japan,2016-03-09,Undetermined,Undetermined,Fin,Surface Structure
173,DRR075397,DRX069311,DRS075492,DRP004473,PRJDB5226,Effects of local gut tumor on whole organismal gene expressions in zebrafish,DRP004473,Other,How tumors affects whole organismal physiology remains largely unknown. To address this we established the novel gut tumor model in zebrafish Danio rerio. This model develops tumor at an early stage of juvenile development when zebrafish larvae are small <4mm enabling us to perform whole organismal RNA seq experiments. Control or tumor bearing zebrafish were dissected into the three parts under microscope: the liver the gut/gut tumor and others. Tissues from >10 individuals were pooled and RNA extracted. Analyses on these RNA seq samples identified a set of host genes affected by the gut tumor contributing to discovering novel tumor organ interactions and their mediators in zebrafish.,,,The remaining part of body of control fish 7dpf,Control body,SAMD00065411,,sample name:1 control body 150701 Hiseq3A l3 017|tissue type:Body,,,,,,,,,Illumina HiSeq 2500 sequencing of SAMD00065411,DRX069311,Control body,1,Agilent SureSelect Strand Specific RNA Prep Kit,,RNA-Seq,TRANSCRIPTOMIC,cDNA,SINGLE,ILLUMINA,Illumina HiSeq 2500,360Application ReadForward1,DRP004473,Illumina HiSeq 2500 sequencing of SAMD00065411,,,,2653100352.0,73697232.0,DRR075397,0:36,A:656791658;C:620507513;G:625038612;T:750671135;N:91434,36,,,,656791658,620507513,625038612,750671135,91434,DRX069311,DRS075492,DRA005199,"ATR|The Thomas N. Sato BioMEC-X Laboratories, Advanced Telecommunications Research Institute International","The Thomas N. Sato BioMEC-X Laboratories, Advanced Telecommunications Research Institute International",1,0.89666,,0.15749,,0.67048,,0.47755,,36,,B,,usable mapping rate,illumina,hiseq_era,unknown,cdna_unspecified,unknown,bulk,unknown,unknown,,Japan,2018-09-19,Larval,Larval,Trunk,Surface Structure
34548,SRR32104353,SRX27449957,SRS23876478,SRP559533,PRJNA1214751,Reactivation of an Embryonic Cardiac Neural Crest Transcriptional Subcircuit During Zebrafish Heart Regeneration [bulk RNA seq],GSE287815,Transcriptome Analysis,During vertebrate development the heart primarily arises from mesoderm with crucial contributions from cardiac neural crest cells that migrate to the heart and form a variety of cardiovascular derivatives. Here by integrating bulk and single cell RNAseq with ATAC seq we identify a gene regulatory subcircuit specific to migratory cardiac crest cells composed of key transcription factors egr1 sox9a tfap2a and ets1. Notably we show that cells expressing the canonical neural crest gene sox10 are essential for proper cardiac regeneration in adult zebrafish. Furthermore expression of all transcription factors from the migratory cardiac crest gene subcircuit are xxx post injury at the wound edge. Together our results uncover a developmental gene regulatory network that is important for cardiac neural crest fate determination with key factors re activated during regeneration. Overall design: Migratory cardiac neural crest cells mcherry + and non neural crest cells from the same tissue mcherry were FAC sorted from 16 somite stage Tg 4.9sox10:GAL4 UAS cre;UAS:NfsB mCherry;myl7:nucGFP embryos. Migratory trunk neural crest cells GFP + were FAC sorted from 24hpf Tg 4.9sox10:eGFP embryos.,,,,24hpf TrunkNC 3,GSM8751790,,source name:trunk NC tissue from somite 7 to somite 16|tissue:trunk NC tissue from somite 7 to somite 16|cell type:migratory trunk neural crest|transgenic line:Tg 4.9sox10:eGFP|age:24hpf|fluorophore:GFP+|geo loc name:missing|collection date:missing,24hpf TrunkNC 3,Reads were mapped zebrafish genome GRCz10 using Bowtie 2. Transcript counts were determined using featureCounts Subread. Differential gene expression was performed using DEseq. Assembly: GRCz10 Supplementary files format and content: tab delimited text file included for cardiac neural crest and non neural crest samples,trunk NC tissue from somite 7 to somite 16,,mch+ CdNC cells and mch non neural crest cells from 16 somite stage Tg 4.9sox10:GAL4 UAS cre;UAS:NfsB mCherry;myl7:nucGFP embryos were dissected dissociated and FAC sorted. GFP+ cells were sorted from 24hpf Tg 4.9sox10:eGFP embryos were dissected dissociated and FAC sorted. Tissues were dissociated in Accumax and then sorted BD FACSAria™ Fusion Flow Cytometer. cDNA was prepared from each sample using the SMART Seq® v4 Ultra® Low Input RNA Kit. Standard Illumina protocols were used to construct each sequencing library and an Illumina HiSeq2500 sequencer at the Millard and Muriel Jacobs Genetics and Genomics Laboratory California Institute of Technology Pasadena CA for 50 million single ended reads.,,tissue:trunk NC tissue from somite 7 to somite 16|cell type:migratory trunk neural crest|transgenic line:Tg 4.9sox10:eGFP|age:24hpf|fluorophore:GFP+,GSM8751790,GSM8751790: 24hpf TrunkNC 3; Danio rerio; RNA Seq,GSM8751790 r1,GSM8751790,1,mch+ CdNC cells and mch non neural crest cells from 16 somite stage Tg 4.9sox10:GAL4 UAS cre;UAS:NfsB mCherry;myl7:nucGFP embryos were dissected dissociated and FAC sorted. GFP+ cells were sorted from 24hpf Tg 4.9sox10:eGFP embryos were dissected dissociated and FAC sorted. Tissues were dissociated in Accumax and then sorted BD FACSAria™ Fusion Flow Cytometer. cDNA was prepared from each sample using the SMART Seq® v4 Ultra® Low Input RNA Kit. Standard Illumina protocols were used to construct each sequencing library and an Illumina HiSeq2500 sequencer at the Millard and Muriel Jacobs Genetics and Genomics Laboratory California Institute of Technology Pasadena CA for 50 million single ended reads.,,RNA-Seq,TRANSCRIPTOMIC,cDNA,SINGLE,ILLUMINA,Illumina HiSeq 2500,,SRP559533,,,Sox10+3_Trunk_24h_19733_R1_combined_filtered.fastq.gz,fastq,1792416000.0,35848320.0,GSM8751790 r1,0:50,A:512975947;C:383333260;G:389199848;T:506816777;N:90168,50,,,,512975947,383333260,389199848,506816777,90168,SRX27449957,SRS23876478,SRA2058978,"Martik Lab, Molecular and Cell Biology, University of California Berkeley","Martik Lab, Molecular and Cell Biology, University of California Berkeley",,,,,,,,,,,,B,,usable mapping rate,illumina,hiseq_era,unknown,cdna_unspecified,unknown,sc,single_cell_plate,smartseq,,United States,2025-01-23,Pharyngula,Embryo,Trunk,Surface Structure
34549,SRR32104354,SRX27449956,SRS23876477,SRP559533,PRJNA1214751,Reactivation of an Embryonic Cardiac Neural Crest Transcriptional Subcircuit During Zebrafish Heart Regeneration [bulk RNA seq],GSE287815,Transcriptome Analysis,During vertebrate development the heart primarily arises from mesoderm with crucial contributions from cardiac neural crest cells that migrate to the heart and form a variety of cardiovascular derivatives. Here by integrating bulk and single cell RNAseq with ATAC seq we identify a gene regulatory subcircuit specific to migratory cardiac crest cells composed of key transcription factors egr1 sox9a tfap2a and ets1. Notably we show that cells expressing the canonical neural crest gene sox10 are essential for proper cardiac regeneration in adult zebrafish. Furthermore expression of all transcription factors from the migratory cardiac crest gene subcircuit are xxx post injury at the wound edge. Together our results uncover a developmental gene regulatory network that is important for cardiac neural crest fate determination with key factors re activated during regeneration. Overall design: Migratory cardiac neural crest cells mcherry + and non neural crest cells from the same tissue mcherry were FAC sorted from 16 somite stage Tg 4.9sox10:GAL4 UAS cre;UAS:NfsB mCherry;myl7:nucGFP embryos. Migratory trunk neural crest cells GFP + were FAC sorted from 24hpf Tg 4.9sox10:eGFP embryos.,,,,24hpf TrunkNC 2,GSM8751789,,source name:trunk NC tissue from somite 7 to somite 16|tissue:trunk NC tissue from somite 7 to somite 16|cell type:migratory trunk neural crest|transgenic line:Tg 4.9sox10:eGFP|age:24hpf|fluorophore:GFP+|geo loc name:missing|collection date:missing,24hpf TrunkNC 2,Reads were mapped zebrafish genome GRCz10 using Bowtie 2. Transcript counts were determined using featureCounts Subread. Differential gene expression was performed using DEseq. Assembly: GRCz10 Supplementary files format and content: tab delimited text file included for cardiac neural crest and non neural crest samples,trunk NC tissue from somite 7 to somite 16,,mch+ CdNC cells and mch non neural crest cells from 16 somite stage Tg 4.9sox10:GAL4 UAS cre;UAS:NfsB mCherry;myl7:nucGFP embryos were dissected dissociated and FAC sorted. GFP+ cells were sorted from 24hpf Tg 4.9sox10:eGFP embryos were dissected dissociated and FAC sorted. Tissues were dissociated in Accumax and then sorted BD FACSAria™ Fusion Flow Cytometer. cDNA was prepared from each sample using the SMART Seq® v4 Ultra® Low Input RNA Kit. Standard Illumina protocols were used to construct each sequencing library and an Illumina HiSeq2500 sequencer at the Millard and Muriel Jacobs Genetics and Genomics Laboratory California Institute of Technology Pasadena CA for 50 million single ended reads.,,tissue:trunk NC tissue from somite 7 to somite 16|cell type:migratory trunk neural crest|transgenic line:Tg 4.9sox10:eGFP|age:24hpf|fluorophore:GFP+,GSM8751789,GSM8751789: 24hpf TrunkNC 2; Danio rerio; RNA Seq,GSM8751789 r1,GSM8751789,1,mch+ CdNC cells and mch non neural crest cells from 16 somite stage Tg 4.9sox10:GAL4 UAS cre;UAS:NfsB mCherry;myl7:nucGFP embryos were dissected dissociated and FAC sorted. GFP+ cells were sorted from 24hpf Tg 4.9sox10:eGFP embryos were dissected dissociated and FAC sorted. Tissues were dissociated in Accumax and then sorted BD FACSAria™ Fusion Flow Cytometer. cDNA was prepared from each sample using the SMART Seq® v4 Ultra® Low Input RNA Kit. Standard Illumina protocols were used to construct each sequencing library and an Illumina HiSeq2500 sequencer at the Millard and Muriel Jacobs Genetics and Genomics Laboratory California Institute of Technology Pasadena CA for 50 million single ended reads.,,RNA-Seq,TRANSCRIPTOMIC,cDNA,SINGLE,ILLUMINA,Illumina HiSeq 2500,,SRP559533,,,Sox10+2_Trunk_24h_19731_R1_combined_filtered.fastq.gz,fastq,1952754850.0,39055097.0,GSM8751789 r1,0:50,A:559564208;C:417671563;G:422591454;T:552829965;N:97660,50,,,,559564208,417671563,422591454,552829965,97660,SRX27449956,SRS23876477,SRA2058978,"Martik Lab, Molecular and Cell Biology, University of California Berkeley","Martik Lab, Molecular and Cell Biology, University of California Berkeley",,,,,,,,,,,,B,,usable mapping rate,illumina,hiseq_era,unknown,cdna_unspecified,unknown,sc,single_cell_plate,smartseq,,United States,2025-01-23,Pharyngula,Embryo,Trunk,Surface Structure
34550,SRR32104355,SRX27449955,SRS23876476,SRP559533,PRJNA1214751,Reactivation of an Embryonic Cardiac Neural Crest Transcriptional Subcircuit During Zebrafish Heart Regeneration [bulk RNA seq],GSE287815,Transcriptome Analysis,During vertebrate development the heart primarily arises from mesoderm with crucial contributions from cardiac neural crest cells that migrate to the heart and form a variety of cardiovascular derivatives. Here by integrating bulk and single cell RNAseq with ATAC seq we identify a gene regulatory subcircuit specific to migratory cardiac crest cells composed of key transcription factors egr1 sox9a tfap2a and ets1. Notably we show that cells expressing the canonical neural crest gene sox10 are essential for proper cardiac regeneration in adult zebrafish. Furthermore expression of all transcription factors from the migratory cardiac crest gene subcircuit are xxx post injury at the wound edge. Together our results uncover a developmental gene regulatory network that is important for cardiac neural crest fate determination with key factors re activated during regeneration. Overall design: Migratory cardiac neural crest cells mcherry + and non neural crest cells from the same tissue mcherry were FAC sorted from 16 somite stage Tg 4.9sox10:GAL4 UAS cre;UAS:NfsB mCherry;myl7:nucGFP embryos. Migratory trunk neural crest cells GFP + were FAC sorted from 24hpf Tg 4.9sox10:eGFP embryos.,,,,24hpf TrunkNC 1,GSM8751788,,source name:trunk NC tissue from somite 7 to somite 16|tissue:trunk NC tissue from somite 7 to somite 16|cell type:migratory trunk neural crest|transgenic line:Tg 4.9sox10:eGFP|age:24hpf|fluorophore:GFP+|geo loc name:missing|collection date:missing,24hpf TrunkNC 1,Reads were mapped zebrafish genome GRCz10 using Bowtie 2. Transcript counts were determined using featureCounts Subread. Differential gene expression was performed using DEseq. Assembly: GRCz10 Supplementary files format and content: tab delimited text file included for cardiac neural crest and non neural crest samples,trunk NC tissue from somite 7 to somite 16,,mch+ CdNC cells and mch non neural crest cells from 16 somite stage Tg 4.9sox10:GAL4 UAS cre;UAS:NfsB mCherry;myl7:nucGFP embryos were dissected dissociated and FAC sorted. GFP+ cells were sorted from 24hpf Tg 4.9sox10:eGFP embryos were dissected dissociated and FAC sorted. Tissues were dissociated in Accumax and then sorted BD FACSAria™ Fusion Flow Cytometer. cDNA was prepared from each sample using the SMART Seq® v4 Ultra® Low Input RNA Kit. Standard Illumina protocols were used to construct each sequencing library and an Illumina HiSeq2500 sequencer at the Millard and Muriel Jacobs Genetics and Genomics Laboratory California Institute of Technology Pasadena CA for 50 million single ended reads.,,tissue:trunk NC tissue from somite 7 to somite 16|cell type:migratory trunk neural crest|transgenic line:Tg 4.9sox10:eGFP|age:24hpf|fluorophore:GFP+,GSM8751788,GSM8751788: 24hpf TrunkNC 1; Danio rerio; RNA Seq,GSM8751788 r1,GSM8751788,1,mch+ CdNC cells and mch non neural crest cells from 16 somite stage Tg 4.9sox10:GAL4 UAS cre;UAS:NfsB mCherry;myl7:nucGFP embryos were dissected dissociated and FAC sorted. GFP+ cells were sorted from 24hpf Tg 4.9sox10:eGFP embryos were dissected dissociated and FAC sorted. Tissues were dissociated in Accumax and then sorted BD FACSAria™ Fusion Flow Cytometer. cDNA was prepared from each sample using the SMART Seq® v4 Ultra® Low Input RNA Kit. Standard Illumina protocols were used to construct each sequencing library and an Illumina HiSeq2500 sequencer at the Millard and Muriel Jacobs Genetics and Genomics Laboratory California Institute of Technology Pasadena CA for 50 million single ended reads.,,RNA-Seq,TRANSCRIPTOMIC,cDNA,SINGLE,ILLUMINA,Illumina HiSeq 2500,,SRP559533,,,Sox10+1_Trunk_24h_19729_R1_combined_filtered.fastq.gz,fastq,2086584450.0,41731689.0,GSM8751788 r1,0:50,A:588802695;C:455146722;G:460260703;T:582270728;N:103602,50,,,,588802695,455146722,460260703,582270728,103602,SRX27449955,SRS23876476,SRA2058978,"Martik Lab, Molecular and Cell Biology, University of California Berkeley","Martik Lab, Molecular and Cell Biology, University of California Berkeley",,,,,,,,,,,,B,,usable mapping rate,illumina,hiseq_era,unknown,cdna_unspecified,unknown,sc,single_cell_plate,smartseq,,United States,2025-01-23,Pharyngula,Embryo,Trunk,Surface Structure
35557,SRR32880273,SRX28160884,SRS24513822,SRP573530,PRJNA1242724,Early exercise disrupts a pro repair extracellular matrix program during zebrafish fin regeneration,GSE293062,Transcriptome Analysis,Understanding how mechanical stimulation affects cellular behaviors during tissue regeneration offers valuable insight into the mechanisms that regulate injury repair. We incorporated a swim tunnel exercise regimen during zebrafish caudal fin regeneration to explore exercise loading impacts on a robust model of tissue regeneration. Early exercise loading initiated before or during blastema formation resulted in reduced regenerative outcomes. Long term tracking of fluorescently labeled cell lineages showed exercise loading disrupted blastemal mesenchyme formation. Transcriptomic profiling and section staining indicated loading reduced an extracellular matrix ECM gene expression program including for hyaluronic acid HA synthesis. Like exercise loading HA synthesis inhibition or blastemal HA depletion disrupted blastema formation. We considered if injury upregulated HA establishes a pro regenerative environment facilitating mechanotransduction. HA density across the blastema correlated with nuclear localization of the mechanotransducer Yes associated protein Yap. Further exercise loading or HA depletion decreased nuclear Yap and Proliferative Cell Nuclear Antigen staining. We conclude early loading during fin regeneration disrupts expression of an HA rich ECM supporting blastema expansion. Our study of mechanical loading during fin regeneration reveals a stage dependent response similar to that seen in mammalian skeletal repair where early exercise—applied during blastema establishment—impairs regeneration while delayed loading during outgrowth does not suggesting a conserved sensitivity to the timing and intensity of mechanical stimuli in regenerative processes. Overall design: RNAseq profiling of 3 day post amputation fin regenerate blastema tissue following either swimming exercise exp or unexercised controls control,,,,3dpa blastema exercised exp bio rep 5,GSM8875053,,source name:whole caudal fin 3 dpa blastema|tissue:whole caudal fin 3 dpa blastema|genotype:WT|treatment:Swim exercised|geo loc name:missing|collection date:missing,3dpa blastema exercised exp bio rep 5,Reads were aligned with Kallisto Pachter lab against zebrafish reference transcriptome. Assembly: GRCz11 Supplementary files format and content: .h5 counts abundance files,whole caudal fin 3 dpa blastema,Fish with caudal fin amputations were exercised twice at 48 and 72 hours post amputation and then whole regenerate fin tissue collected into Trizol reagent on ice 4 hours later.,RNA was prepared using a Direct Zol RNA prep kit Zymogenetics and eluted into water. RNA was pooled from 2 male and 2 female size matched fish for each replicate with replicates spanning two independent swimming cohorts. Libraries were prepared with 1 ug of input RNA using a TruSeq library prep kit indexed and pooled and sequenced using an Illumina NovaSeq 6000 to a read depth of approximately 25 million reads per library.,Zebrafish age 3 month 12 month were housed at approximately 28.5°C. Animals were maintained on a 14:10 day:night cycle and fed twice daily,tissue:whole caudal fin 3 dpa blastema|genotype:WT|treatment:Swim exercised,GSM8875053,GSM8875053: 3dpa blastema exercised exp bio rep 5; Danio rerio; RNA Seq,GSM8875053 r1,GSM8875053,1,RNA was prepared using a Direct Zol RNA prep kit Zymogenetics and eluted into water. RNA was pooled from 2 male and 2 female size matched fish for each replicate with replicates spanning two independent swimming cohorts. Libraries were prepared with 1 ug of input RNA using a TruSeq library prep kit indexed and pooled and sequenced using an Illumina NovaSeq 6000 to a read depth of approximately 25 million reads per library.,,RNA-Seq,TRANSCRIPTOMIC,cDNA,SINGLE,ILLUMINA,Illumina NovaSeq 6000,,SRP573530,,,Exp_5_raw.fastq.gz,fastq,3833406286.0,31421363.0,GSM8875053 r1,0:122,A:1051289152;C:808410920;G:908646262;T:1064964960;N:94992,122,,,,1051289152,808410920,908646262,1064964960,94992,SRX28160884,SRS24513822,SRA2100952,"Stankunas, Institute of Molecular Biology, University of Oregon","Stankunas, Institute of Molecular Biology, University of Oregon",,,,,,,,,,,,B,,usable mapping rate,illumina,novaseq_era,unknown,cdna_unspecified,trueseq,bulk,unknown,unknown,,United States,2025-03-27,Adult,Adult,Fin,Surface Structure
35558,SRR32880274,SRX28160883,SRS24513821,SRP573530,PRJNA1242724,Early exercise disrupts a pro repair extracellular matrix program during zebrafish fin regeneration,GSE293062,Transcriptome Analysis,Understanding how mechanical stimulation affects cellular behaviors during tissue regeneration offers valuable insight into the mechanisms that regulate injury repair. We incorporated a swim tunnel exercise regimen during zebrafish caudal fin regeneration to explore exercise loading impacts on a robust model of tissue regeneration. Early exercise loading initiated before or during blastema formation resulted in reduced regenerative outcomes. Long term tracking of fluorescently labeled cell lineages showed exercise loading disrupted blastemal mesenchyme formation. Transcriptomic profiling and section staining indicated loading reduced an extracellular matrix ECM gene expression program including for hyaluronic acid HA synthesis. Like exercise loading HA synthesis inhibition or blastemal HA depletion disrupted blastema formation. We considered if injury upregulated HA establishes a pro regenerative environment facilitating mechanotransduction. HA density across the blastema correlated with nuclear localization of the mechanotransducer Yes associated protein Yap. Further exercise loading or HA depletion decreased nuclear Yap and Proliferative Cell Nuclear Antigen staining. We conclude early loading during fin regeneration disrupts expression of an HA rich ECM supporting blastema expansion. Our study of mechanical loading during fin regeneration reveals a stage dependent response similar to that seen in mammalian skeletal repair where early exercise—applied during blastema establishment—impairs regeneration while delayed loading during outgrowth does not suggesting a conserved sensitivity to the timing and intensity of mechanical stimuli in regenerative processes. Overall design: RNAseq profiling of 3 day post amputation fin regenerate blastema tissue following either swimming exercise exp or unexercised controls control,,,,3dpa blastema exercised exp bio rep 4,GSM8875052,,source name:whole caudal fin 3 dpa blastema|tissue:whole caudal fin 3 dpa blastema|genotype:WT|treatment:Swim exercised|geo loc name:missing|collection date:missing,3dpa blastema exercised exp bio rep 4,Reads were aligned with Kallisto Pachter lab against zebrafish reference transcriptome. Assembly: GRCz11 Supplementary files format and content: .h5 counts abundance files,whole caudal fin 3 dpa blastema,Fish with caudal fin amputations were exercised twice at 48 and 72 hours post amputation and then whole regenerate fin tissue collected into Trizol reagent on ice 4 hours later.,RNA was prepared using a Direct Zol RNA prep kit Zymogenetics and eluted into water. RNA was pooled from 2 male and 2 female size matched fish for each replicate with replicates spanning two independent swimming cohorts. Libraries were prepared with 1 ug of input RNA using a TruSeq library prep kit indexed and pooled and sequenced using an Illumina NovaSeq 6000 to a read depth of approximately 25 million reads per library.,Zebrafish age 3 month 12 month were housed at approximately 28.5°C. Animals were maintained on a 14:10 day:night cycle and fed twice daily,tissue:whole caudal fin 3 dpa blastema|genotype:WT|treatment:Swim exercised,GSM8875052,GSM8875052: 3dpa blastema exercised exp bio rep 4; Danio rerio; RNA Seq,GSM8875052 r1,GSM8875052,1,RNA was prepared using a Direct Zol RNA prep kit Zymogenetics and eluted into water. RNA was pooled from 2 male and 2 female size matched fish for each replicate with replicates spanning two independent swimming cohorts. Libraries were prepared with 1 ug of input RNA using a TruSeq library prep kit indexed and pooled and sequenced using an Illumina NovaSeq 6000 to a read depth of approximately 25 million reads per library.,,RNA-Seq,TRANSCRIPTOMIC,cDNA,SINGLE,ILLUMINA,Illumina NovaSeq 6000,,SRP573530,,,Exp_4_raw.fastq.gz,fastq,2716320484.0,22264922.0,GSM8875052 r1,0:122,A:753716648;C:572683669;G:633777091;T:756074187;N:68889,122,,,,753716648,572683669,633777091,756074187,68889,SRX28160883,SRS24513821,SRA2100952,"Stankunas, Institute of Molecular Biology, University of Oregon","Stankunas, Institute of Molecular Biology, University of Oregon",,,,,,,,,,,,B,,usable mapping rate,illumina,novaseq_era,unknown,cdna_unspecified,trueseq,bulk,unknown,unknown,,United States,2025-03-27,Adult,Adult,Fin,Surface Structure
35559,SRR32880275,SRX28160882,SRS24513820,SRP573530,PRJNA1242724,Early exercise disrupts a pro repair extracellular matrix program during zebrafish fin regeneration,GSE293062,Transcriptome Analysis,Understanding how mechanical stimulation affects cellular behaviors during tissue regeneration offers valuable insight into the mechanisms that regulate injury repair. We incorporated a swim tunnel exercise regimen during zebrafish caudal fin regeneration to explore exercise loading impacts on a robust model of tissue regeneration. Early exercise loading initiated before or during blastema formation resulted in reduced regenerative outcomes. Long term tracking of fluorescently labeled cell lineages showed exercise loading disrupted blastemal mesenchyme formation. Transcriptomic profiling and section staining indicated loading reduced an extracellular matrix ECM gene expression program including for hyaluronic acid HA synthesis. Like exercise loading HA synthesis inhibition or blastemal HA depletion disrupted blastema formation. We considered if injury upregulated HA establishes a pro regenerative environment facilitating mechanotransduction. HA density across the blastema correlated with nuclear localization of the mechanotransducer Yes associated protein Yap. Further exercise loading or HA depletion decreased nuclear Yap and Proliferative Cell Nuclear Antigen staining. We conclude early loading during fin regeneration disrupts expression of an HA rich ECM supporting blastema expansion. Our study of mechanical loading during fin regeneration reveals a stage dependent response similar to that seen in mammalian skeletal repair where early exercise—applied during blastema establishment—impairs regeneration while delayed loading during outgrowth does not suggesting a conserved sensitivity to the timing and intensity of mechanical stimuli in regenerative processes. Overall design: RNAseq profiling of 3 day post amputation fin regenerate blastema tissue following either swimming exercise exp or unexercised controls control,,,,3dpa blastema exercised exp bio rep 3,GSM8875051,,source name:whole caudal fin 3 dpa blastema|tissue:whole caudal fin 3 dpa blastema|genotype:WT|treatment:Swim exercised|geo loc name:missing|collection date:missing,3dpa blastema exercised exp bio rep 3,Reads were aligned with Kallisto Pachter lab against zebrafish reference transcriptome. Assembly: GRCz11 Supplementary files format and content: .h5 counts abundance files,whole caudal fin 3 dpa blastema,Fish with caudal fin amputations were exercised twice at 48 and 72 hours post amputation and then whole regenerate fin tissue collected into Trizol reagent on ice 4 hours later.,RNA was prepared using a Direct Zol RNA prep kit Zymogenetics and eluted into water. RNA was pooled from 2 male and 2 female size matched fish for each replicate with replicates spanning two independent swimming cohorts. Libraries were prepared with 1 ug of input RNA using a TruSeq library prep kit indexed and pooled and sequenced using an Illumina NovaSeq 6000 to a read depth of approximately 25 million reads per library.,Zebrafish age 3 month 12 month were housed at approximately 28.5°C. Animals were maintained on a 14:10 day:night cycle and fed twice daily,tissue:whole caudal fin 3 dpa blastema|genotype:WT|treatment:Swim exercised,GSM8875051,GSM8875051: 3dpa blastema exercised exp bio rep 3; Danio rerio; RNA Seq,GSM8875051 r1,GSM8875051,1,RNA was prepared using a Direct Zol RNA prep kit Zymogenetics and eluted into water. RNA was pooled from 2 male and 2 female size matched fish for each replicate with replicates spanning two independent swimming cohorts. Libraries were prepared with 1 ug of input RNA using a TruSeq library prep kit indexed and pooled and sequenced using an Illumina NovaSeq 6000 to a read depth of approximately 25 million reads per library.,,RNA-Seq,TRANSCRIPTOMIC,cDNA,SINGLE,ILLUMINA,Illumina NovaSeq 6000,,SRP573530,,,Exp_3_raw.fastq.gz,fastq,3326494944.0,27266352.0,GSM8875051 r1,0:122,A:929692130;C:705713811;G:773972336;T:917030832;N:85835,122,,,,929692130,705713811,773972336,917030832,85835,SRX28160882,SRS24513820,SRA2100952,"Stankunas, Institute of Molecular Biology, University of Oregon","Stankunas, Institute of Molecular Biology, University of Oregon",,,,,,,,,,,,B,,usable mapping rate,illumina,novaseq_era,unknown,cdna_unspecified,trueseq,bulk,unknown,unknown,,United States,2025-03-27,Adult,Adult,Fin,Surface Structure
35560,SRR32880276,SRX28160881,SRS24513819,SRP573530,PRJNA1242724,Early exercise disrupts a pro repair extracellular matrix program during zebrafish fin regeneration,GSE293062,Transcriptome Analysis,Understanding how mechanical stimulation affects cellular behaviors during tissue regeneration offers valuable insight into the mechanisms that regulate injury repair. We incorporated a swim tunnel exercise regimen during zebrafish caudal fin regeneration to explore exercise loading impacts on a robust model of tissue regeneration. Early exercise loading initiated before or during blastema formation resulted in reduced regenerative outcomes. Long term tracking of fluorescently labeled cell lineages showed exercise loading disrupted blastemal mesenchyme formation. Transcriptomic profiling and section staining indicated loading reduced an extracellular matrix ECM gene expression program including for hyaluronic acid HA synthesis. Like exercise loading HA synthesis inhibition or blastemal HA depletion disrupted blastema formation. We considered if injury upregulated HA establishes a pro regenerative environment facilitating mechanotransduction. HA density across the blastema correlated with nuclear localization of the mechanotransducer Yes associated protein Yap. Further exercise loading or HA depletion decreased nuclear Yap and Proliferative Cell Nuclear Antigen staining. We conclude early loading during fin regeneration disrupts expression of an HA rich ECM supporting blastema expansion. Our study of mechanical loading during fin regeneration reveals a stage dependent response similar to that seen in mammalian skeletal repair where early exercise—applied during blastema establishment—impairs regeneration while delayed loading during outgrowth does not suggesting a conserved sensitivity to the timing and intensity of mechanical stimuli in regenerative processes. Overall design: RNAseq profiling of 3 day post amputation fin regenerate blastema tissue following either swimming exercise exp or unexercised controls control,,,,3dpa blastema exercised exp bio rep 2,GSM8875050,,source name:whole caudal fin 3 dpa blastema|tissue:whole caudal fin 3 dpa blastema|genotype:WT|treatment:Swim exercised|geo loc name:missing|collection date:missing,3dpa blastema exercised exp bio rep 2,Reads were aligned with Kallisto Pachter lab against zebrafish reference transcriptome. Assembly: GRCz11 Supplementary files format and content: .h5 counts abundance files,whole caudal fin 3 dpa blastema,Fish with caudal fin amputations were exercised twice at 48 and 72 hours post amputation and then whole regenerate fin tissue collected into Trizol reagent on ice 4 hours later.,RNA was prepared using a Direct Zol RNA prep kit Zymogenetics and eluted into water. RNA was pooled from 2 male and 2 female size matched fish for each replicate with replicates spanning two independent swimming cohorts. Libraries were prepared with 1 ug of input RNA using a TruSeq library prep kit indexed and pooled and sequenced using an Illumina NovaSeq 6000 to a read depth of approximately 25 million reads per library.,Zebrafish age 3 month 12 month were housed at approximately 28.5°C. Animals were maintained on a 14:10 day:night cycle and fed twice daily,tissue:whole caudal fin 3 dpa blastema|genotype:WT|treatment:Swim exercised,GSM8875050,GSM8875050: 3dpa blastema exercised exp bio rep 2; Danio rerio; RNA Seq,GSM8875050 r1,GSM8875050,1,RNA was prepared using a Direct Zol RNA prep kit Zymogenetics and eluted into water. RNA was pooled from 2 male and 2 female size matched fish for each replicate with replicates spanning two independent swimming cohorts. Libraries were prepared with 1 ug of input RNA using a TruSeq library prep kit indexed and pooled and sequenced using an Illumina NovaSeq 6000 to a read depth of approximately 25 million reads per library.,,RNA-Seq,TRANSCRIPTOMIC,cDNA,SINGLE,ILLUMINA,Illumina NovaSeq 6000,,SRP573530,,,Exp_2_raw.fastq.gz,fastq,3319809954.0,27211557.0,GSM8875050 r1,0:122,A:912008882;C:704589377;G:783108238;T:920018852;N:84605,122,,,,912008882,704589377,783108238,920018852,84605,SRX28160881,SRS24513819,SRA2100952,"Stankunas, Institute of Molecular Biology, University of Oregon","Stankunas, Institute of Molecular Biology, University of Oregon",,,,,,,,,,,,B,,usable mapping rate,illumina,novaseq_era,unknown,cdna_unspecified,trueseq,bulk,unknown,unknown,,United States,2025-03-27,Adult,Adult,Fin,Surface Structure
35561,SRR32880277,SRX28160880,SRS24513818,SRP573530,PRJNA1242724,Early exercise disrupts a pro repair extracellular matrix program during zebrafish fin regeneration,GSE293062,Transcriptome Analysis,Understanding how mechanical stimulation affects cellular behaviors during tissue regeneration offers valuable insight into the mechanisms that regulate injury repair. We incorporated a swim tunnel exercise regimen during zebrafish caudal fin regeneration to explore exercise loading impacts on a robust model of tissue regeneration. Early exercise loading initiated before or during blastema formation resulted in reduced regenerative outcomes. Long term tracking of fluorescently labeled cell lineages showed exercise loading disrupted blastemal mesenchyme formation. Transcriptomic profiling and section staining indicated loading reduced an extracellular matrix ECM gene expression program including for hyaluronic acid HA synthesis. Like exercise loading HA synthesis inhibition or blastemal HA depletion disrupted blastema formation. We considered if injury upregulated HA establishes a pro regenerative environment facilitating mechanotransduction. HA density across the blastema correlated with nuclear localization of the mechanotransducer Yes associated protein Yap. Further exercise loading or HA depletion decreased nuclear Yap and Proliferative Cell Nuclear Antigen staining. We conclude early loading during fin regeneration disrupts expression of an HA rich ECM supporting blastema expansion. Our study of mechanical loading during fin regeneration reveals a stage dependent response similar to that seen in mammalian skeletal repair where early exercise—applied during blastema establishment—impairs regeneration while delayed loading during outgrowth does not suggesting a conserved sensitivity to the timing and intensity of mechanical stimuli in regenerative processes. Overall design: RNAseq profiling of 3 day post amputation fin regenerate blastema tissue following either swimming exercise exp or unexercised controls control,,,,3dpa blastema exercised exp bio rep 1,GSM8875049,,source name:whole caudal fin 3 dpa blastema|tissue:whole caudal fin 3 dpa blastema|genotype:WT|treatment:Swim exercised|geo loc name:missing|collection date:missing,3dpa blastema exercised exp bio rep 1,Reads were aligned with Kallisto Pachter lab against zebrafish reference transcriptome. Assembly: GRCz11 Supplementary files format and content: .h5 counts abundance files,whole caudal fin 3 dpa blastema,Fish with caudal fin amputations were exercised twice at 48 and 72 hours post amputation and then whole regenerate fin tissue collected into Trizol reagent on ice 4 hours later.,RNA was prepared using a Direct Zol RNA prep kit Zymogenetics and eluted into water. RNA was pooled from 2 male and 2 female size matched fish for each replicate with replicates spanning two independent swimming cohorts. Libraries were prepared with 1 ug of input RNA using a TruSeq library prep kit indexed and pooled and sequenced using an Illumina NovaSeq 6000 to a read depth of approximately 25 million reads per library.,Zebrafish age 3 month 12 month were housed at approximately 28.5°C. Animals were maintained on a 14:10 day:night cycle and fed twice daily,tissue:whole caudal fin 3 dpa blastema|genotype:WT|treatment:Swim exercised,GSM8875049,GSM8875049: 3dpa blastema exercised exp bio rep 1; Danio rerio; RNA Seq,GSM8875049 r1,GSM8875049,1,RNA was prepared using a Direct Zol RNA prep kit Zymogenetics and eluted into water. RNA was pooled from 2 male and 2 female size matched fish for each replicate with replicates spanning two independent swimming cohorts. Libraries were prepared with 1 ug of input RNA using a TruSeq library prep kit indexed and pooled and sequenced using an Illumina NovaSeq 6000 to a read depth of approximately 25 million reads per library.,,RNA-Seq,TRANSCRIPTOMIC,cDNA,SINGLE,ILLUMINA,Illumina NovaSeq 6000,,SRP573530,,,Exp_1_raw.fastq.gz,fastq,3744436322.0,30692101.0,GSM8875049 r1,0:122,A:1050863937;C:775277972;G:866627322;T:1051571183;N:95908,122,,,,1050863937,775277972,866627322,1051571183,95908,SRX28160880,SRS24513818,SRA2100952,"Stankunas, Institute of Molecular Biology, University of Oregon","Stankunas, Institute of Molecular Biology, University of Oregon",,,,,,,,,,,,B,,usable mapping rate,illumina,novaseq_era,unknown,cdna_unspecified,trueseq,bulk,unknown,unknown,,United States,2025-03-27,Adult,Adult,Fin,Surface Structure
35562,SRR32880278,SRX28160879,SRS24513817,SRP573530,PRJNA1242724,Early exercise disrupts a pro repair extracellular matrix program during zebrafish fin regeneration,GSE293062,Transcriptome Analysis,Understanding how mechanical stimulation affects cellular behaviors during tissue regeneration offers valuable insight into the mechanisms that regulate injury repair. We incorporated a swim tunnel exercise regimen during zebrafish caudal fin regeneration to explore exercise loading impacts on a robust model of tissue regeneration. Early exercise loading initiated before or during blastema formation resulted in reduced regenerative outcomes. Long term tracking of fluorescently labeled cell lineages showed exercise loading disrupted blastemal mesenchyme formation. Transcriptomic profiling and section staining indicated loading reduced an extracellular matrix ECM gene expression program including for hyaluronic acid HA synthesis. Like exercise loading HA synthesis inhibition or blastemal HA depletion disrupted blastema formation. We considered if injury upregulated HA establishes a pro regenerative environment facilitating mechanotransduction. HA density across the blastema correlated with nuclear localization of the mechanotransducer Yes associated protein Yap. Further exercise loading or HA depletion decreased nuclear Yap and Proliferative Cell Nuclear Antigen staining. We conclude early loading during fin regeneration disrupts expression of an HA rich ECM supporting blastema expansion. Our study of mechanical loading during fin regeneration reveals a stage dependent response similar to that seen in mammalian skeletal repair where early exercise—applied during blastema establishment—impairs regeneration while delayed loading during outgrowth does not suggesting a conserved sensitivity to the timing and intensity of mechanical stimuli in regenerative processes. Overall design: RNAseq profiling of 3 day post amputation fin regenerate blastema tissue following either swimming exercise exp or unexercised controls control,,,,3dpa blastema unexercised control bio rep 5,GSM8875048,,source name:whole caudal fin 3 dpa blastema|tissue:whole caudal fin 3 dpa blastema|genotype:WT|treatment:Control|geo loc name:missing|collection date:missing,3dpa blastema unexercised control bio rep 5,Reads were aligned with Kallisto Pachter lab against zebrafish reference transcriptome. Assembly: GRCz11 Supplementary files format and content: .h5 counts abundance files,whole caudal fin 3 dpa blastema,Fish with caudal fin amputations were exercised twice at 48 and 72 hours post amputation and then whole regenerate fin tissue collected into Trizol reagent on ice 4 hours later.,RNA was prepared using a Direct Zol RNA prep kit Zymogenetics and eluted into water. RNA was pooled from 2 male and 2 female size matched fish for each replicate with replicates spanning two independent swimming cohorts. Libraries were prepared with 1 ug of input RNA using a TruSeq library prep kit indexed and pooled and sequenced using an Illumina NovaSeq 6000 to a read depth of approximately 25 million reads per library.,Zebrafish age 3 month 12 month were housed at approximately 28.5°C. Animals were maintained on a 14:10 day:night cycle and fed twice daily,tissue:whole caudal fin 3 dpa blastema|genotype:WT|treatment:Control,GSM8875048,GSM8875048: 3dpa blastema unexercised control bio rep 5; Danio rerio; RNA Seq,GSM8875048 r1,GSM8875048,1,RNA was prepared using a Direct Zol RNA prep kit Zymogenetics and eluted into water. RNA was pooled from 2 male and 2 female size matched fish for each replicate with replicates spanning two independent swimming cohorts. Libraries were prepared with 1 ug of input RNA using a TruSeq library prep kit indexed and pooled and sequenced using an Illumina NovaSeq 6000 to a read depth of approximately 25 million reads per library.,,RNA-Seq,TRANSCRIPTOMIC,cDNA,SINGLE,ILLUMINA,Illumina NovaSeq 6000,,SRP573530,,,Control_5_raw.fastq.gz,fastq,3076092628.0,25213874.0,GSM8875048 r1,0:122,A:850913805;C:643783202;G:725071885;T:856245838;N:77898,122,,,,850913805,643783202,725071885,856245838,77898,SRX28160879,SRS24513817,SRA2100952,"Stankunas, Institute of Molecular Biology, University of Oregon","Stankunas, Institute of Molecular Biology, University of Oregon",,,,,,,,,,,,B,,usable mapping rate,illumina,novaseq_era,unknown,cdna_unspecified,trueseq,bulk,unknown,unknown,,United States,2025-03-27,Adult,Adult,Fin,Surface Structure
35563,SRR32880279,SRX28160878,SRS24513816,SRP573530,PRJNA1242724,Early exercise disrupts a pro repair extracellular matrix program during zebrafish fin regeneration,GSE293062,Transcriptome Analysis,Understanding how mechanical stimulation affects cellular behaviors during tissue regeneration offers valuable insight into the mechanisms that regulate injury repair. We incorporated a swim tunnel exercise regimen during zebrafish caudal fin regeneration to explore exercise loading impacts on a robust model of tissue regeneration. Early exercise loading initiated before or during blastema formation resulted in reduced regenerative outcomes. Long term tracking of fluorescently labeled cell lineages showed exercise loading disrupted blastemal mesenchyme formation. Transcriptomic profiling and section staining indicated loading reduced an extracellular matrix ECM gene expression program including for hyaluronic acid HA synthesis. Like exercise loading HA synthesis inhibition or blastemal HA depletion disrupted blastema formation. We considered if injury upregulated HA establishes a pro regenerative environment facilitating mechanotransduction. HA density across the blastema correlated with nuclear localization of the mechanotransducer Yes associated protein Yap. Further exercise loading or HA depletion decreased nuclear Yap and Proliferative Cell Nuclear Antigen staining. We conclude early loading during fin regeneration disrupts expression of an HA rich ECM supporting blastema expansion. Our study of mechanical loading during fin regeneration reveals a stage dependent response similar to that seen in mammalian skeletal repair where early exercise—applied during blastema establishment—impairs regeneration while delayed loading during outgrowth does not suggesting a conserved sensitivity to the timing and intensity of mechanical stimuli in regenerative processes. Overall design: RNAseq profiling of 3 day post amputation fin regenerate blastema tissue following either swimming exercise exp or unexercised controls control,,,,3dpa blastema unexercised control bio rep 4,GSM8875047,,source name:whole caudal fin 3 dpa blastema|tissue:whole caudal fin 3 dpa blastema|genotype:WT|treatment:Control|geo loc name:missing|collection date:missing,3dpa blastema unexercised control bio rep 4,Reads were aligned with Kallisto Pachter lab against zebrafish reference transcriptome. Assembly: GRCz11 Supplementary files format and content: .h5 counts abundance files,whole caudal fin 3 dpa blastema,Fish with caudal fin amputations were exercised twice at 48 and 72 hours post amputation and then whole regenerate fin tissue collected into Trizol reagent on ice 4 hours later.,RNA was prepared using a Direct Zol RNA prep kit Zymogenetics and eluted into water. RNA was pooled from 2 male and 2 female size matched fish for each replicate with replicates spanning two independent swimming cohorts. Libraries were prepared with 1 ug of input RNA using a TruSeq library prep kit indexed and pooled and sequenced using an Illumina NovaSeq 6000 to a read depth of approximately 25 million reads per library.,Zebrafish age 3 month 12 month were housed at approximately 28.5°C. Animals were maintained on a 14:10 day:night cycle and fed twice daily,tissue:whole caudal fin 3 dpa blastema|genotype:WT|treatment:Control,GSM8875047,GSM8875047: 3dpa blastema unexercised control bio rep 4; Danio rerio; RNA Seq,GSM8875047 r1,GSM8875047,1,RNA was prepared using a Direct Zol RNA prep kit Zymogenetics and eluted into water. RNA was pooled from 2 male and 2 female size matched fish for each replicate with replicates spanning two independent swimming cohorts. Libraries were prepared with 1 ug of input RNA using a TruSeq library prep kit indexed and pooled and sequenced using an Illumina NovaSeq 6000 to a read depth of approximately 25 million reads per library.,,RNA-Seq,TRANSCRIPTOMIC,cDNA,SINGLE,ILLUMINA,Illumina NovaSeq 6000,,SRP573530,,,Control_4_raw.fastq.gz,fastq,3458014848.0,28344384.0,GSM8875047 r1,0:122,A:946385067;C:748704825;G:821787294;T:941050744;N:86918,122,,,,946385067,748704825,821787294,941050744,86918,SRX28160878,SRS24513816,SRA2100952,"Stankunas, Institute of Molecular Biology, University of Oregon","Stankunas, Institute of Molecular Biology, University of Oregon",,,,,,,,,,,,B,,usable mapping rate,illumina,novaseq_era,unknown,cdna_unspecified,trueseq,bulk,unknown,unknown,,United States,2025-03-27,Adult,Adult,Fin,Surface Structure
35564,SRR32880280,SRX28160877,SRS24513815,SRP573530,PRJNA1242724,Early exercise disrupts a pro repair extracellular matrix program during zebrafish fin regeneration,GSE293062,Transcriptome Analysis,Understanding how mechanical stimulation affects cellular behaviors during tissue regeneration offers valuable insight into the mechanisms that regulate injury repair. We incorporated a swim tunnel exercise regimen during zebrafish caudal fin regeneration to explore exercise loading impacts on a robust model of tissue regeneration. Early exercise loading initiated before or during blastema formation resulted in reduced regenerative outcomes. Long term tracking of fluorescently labeled cell lineages showed exercise loading disrupted blastemal mesenchyme formation. Transcriptomic profiling and section staining indicated loading reduced an extracellular matrix ECM gene expression program including for hyaluronic acid HA synthesis. Like exercise loading HA synthesis inhibition or blastemal HA depletion disrupted blastema formation. We considered if injury upregulated HA establishes a pro regenerative environment facilitating mechanotransduction. HA density across the blastema correlated with nuclear localization of the mechanotransducer Yes associated protein Yap. Further exercise loading or HA depletion decreased nuclear Yap and Proliferative Cell Nuclear Antigen staining. We conclude early loading during fin regeneration disrupts expression of an HA rich ECM supporting blastema expansion. Our study of mechanical loading during fin regeneration reveals a stage dependent response similar to that seen in mammalian skeletal repair where early exercise—applied during blastema establishment—impairs regeneration while delayed loading during outgrowth does not suggesting a conserved sensitivity to the timing and intensity of mechanical stimuli in regenerative processes. Overall design: RNAseq profiling of 3 day post amputation fin regenerate blastema tissue following either swimming exercise exp or unexercised controls control,,,,3dpa blastema unexercised control bio rep 3,GSM8875046,,source name:whole caudal fin 3 dpa blastema|tissue:whole caudal fin 3 dpa blastema|genotype:WT|treatment:Control|geo loc name:missing|collection date:missing,3dpa blastema unexercised control bio rep 3,Reads were aligned with Kallisto Pachter lab against zebrafish reference transcriptome. Assembly: GRCz11 Supplementary files format and content: .h5 counts abundance files,whole caudal fin 3 dpa blastema,Fish with caudal fin amputations were exercised twice at 48 and 72 hours post amputation and then whole regenerate fin tissue collected into Trizol reagent on ice 4 hours later.,RNA was prepared using a Direct Zol RNA prep kit Zymogenetics and eluted into water. RNA was pooled from 2 male and 2 female size matched fish for each replicate with replicates spanning two independent swimming cohorts. Libraries were prepared with 1 ug of input RNA using a TruSeq library prep kit indexed and pooled and sequenced using an Illumina NovaSeq 6000 to a read depth of approximately 25 million reads per library.,Zebrafish age 3 month 12 month were housed at approximately 28.5°C. Animals were maintained on a 14:10 day:night cycle and fed twice daily,tissue:whole caudal fin 3 dpa blastema|genotype:WT|treatment:Control,GSM8875046,GSM8875046: 3dpa blastema unexercised control bio rep 3; Danio rerio; RNA Seq,GSM8875046 r1,GSM8875046,1,RNA was prepared using a Direct Zol RNA prep kit Zymogenetics and eluted into water. RNA was pooled from 2 male and 2 female size matched fish for each replicate with replicates spanning two independent swimming cohorts. Libraries were prepared with 1 ug of input RNA using a TruSeq library prep kit indexed and pooled and sequenced using an Illumina NovaSeq 6000 to a read depth of approximately 25 million reads per library.,,RNA-Seq,TRANSCRIPTOMIC,cDNA,SINGLE,ILLUMINA,Illumina NovaSeq 6000,,SRP573530,,,Control_3_raw.fastq.gz,fastq,3750141896.0,30738868.0,GSM8875046 r1,0:122,A:1016915650;C:830734179;G:908080650;T:994316527;N:94890,122,,,,1016915650,830734179,908080650,994316527,94890,SRX28160877,SRS24513815,SRA2100952,"Stankunas, Institute of Molecular Biology, University of Oregon","Stankunas, Institute of Molecular Biology, University of Oregon",,,,,,,,,,,,B,,usable mapping rate,illumina,novaseq_era,unknown,cdna_unspecified,trueseq,bulk,unknown,unknown,,United States,2025-03-27,Adult,Adult,Fin,Surface Structure
35565,SRR32880281,SRX28160876,SRS24513814,SRP573530,PRJNA1242724,Early exercise disrupts a pro repair extracellular matrix program during zebrafish fin regeneration,GSE293062,Transcriptome Analysis,Understanding how mechanical stimulation affects cellular behaviors during tissue regeneration offers valuable insight into the mechanisms that regulate injury repair. We incorporated a swim tunnel exercise regimen during zebrafish caudal fin regeneration to explore exercise loading impacts on a robust model of tissue regeneration. Early exercise loading initiated before or during blastema formation resulted in reduced regenerative outcomes. Long term tracking of fluorescently labeled cell lineages showed exercise loading disrupted blastemal mesenchyme formation. Transcriptomic profiling and section staining indicated loading reduced an extracellular matrix ECM gene expression program including for hyaluronic acid HA synthesis. Like exercise loading HA synthesis inhibition or blastemal HA depletion disrupted blastema formation. We considered if injury upregulated HA establishes a pro regenerative environment facilitating mechanotransduction. HA density across the blastema correlated with nuclear localization of the mechanotransducer Yes associated protein Yap. Further exercise loading or HA depletion decreased nuclear Yap and Proliferative Cell Nuclear Antigen staining. We conclude early loading during fin regeneration disrupts expression of an HA rich ECM supporting blastema expansion. Our study of mechanical loading during fin regeneration reveals a stage dependent response similar to that seen in mammalian skeletal repair where early exercise—applied during blastema establishment—impairs regeneration while delayed loading during outgrowth does not suggesting a conserved sensitivity to the timing and intensity of mechanical stimuli in regenerative processes. Overall design: RNAseq profiling of 3 day post amputation fin regenerate blastema tissue following either swimming exercise exp or unexercised controls control,,,,3dpa blastema unexercised control bio rep 2,GSM8875045,,source name:whole caudal fin 3 dpa blastema|tissue:whole caudal fin 3 dpa blastema|genotype:WT|treatment:Control|geo loc name:missing|collection date:missing,3dpa blastema unexercised control bio rep 2,Reads were aligned with Kallisto Pachter lab against zebrafish reference transcriptome. Assembly: GRCz11 Supplementary files format and content: .h5 counts abundance files,whole caudal fin 3 dpa blastema,Fish with caudal fin amputations were exercised twice at 48 and 72 hours post amputation and then whole regenerate fin tissue collected into Trizol reagent on ice 4 hours later.,RNA was prepared using a Direct Zol RNA prep kit Zymogenetics and eluted into water. RNA was pooled from 2 male and 2 female size matched fish for each replicate with replicates spanning two independent swimming cohorts. Libraries were prepared with 1 ug of input RNA using a TruSeq library prep kit indexed and pooled and sequenced using an Illumina NovaSeq 6000 to a read depth of approximately 25 million reads per library.,Zebrafish age 3 month 12 month were housed at approximately 28.5°C. Animals were maintained on a 14:10 day:night cycle and fed twice daily,tissue:whole caudal fin 3 dpa blastema|genotype:WT|treatment:Control,GSM8875045,GSM8875045: 3dpa blastema unexercised control bio rep 2; Danio rerio; RNA Seq,GSM8875045 r1,GSM8875045,1,RNA was prepared using a Direct Zol RNA prep kit Zymogenetics and eluted into water. RNA was pooled from 2 male and 2 female size matched fish for each replicate with replicates spanning two independent swimming cohorts. Libraries were prepared with 1 ug of input RNA using a TruSeq library prep kit indexed and pooled and sequenced using an Illumina NovaSeq 6000 to a read depth of approximately 25 million reads per library.,,RNA-Seq,TRANSCRIPTOMIC,cDNA,SINGLE,ILLUMINA,Illumina NovaSeq 6000,,SRP573530,,,Control_2_raw.fastq.gz,fastq,3559797740.0,29178670.0,GSM8875045 r1,0:122,A:940502236;C:815297194;G:877321806;T:926584991;N:91513,122,,,,940502236,815297194,877321806,926584991,91513,SRX28160876,SRS24513814,SRA2100952,"Stankunas, Institute of Molecular Biology, University of Oregon","Stankunas, Institute of Molecular Biology, University of Oregon",,,,,,,,,,,,B,,usable mapping rate,illumina,novaseq_era,unknown,cdna_unspecified,trueseq,bulk,unknown,unknown,,United States,2025-03-27,Adult,Adult,Fin,Surface Structure
35566,SRR32880282,SRX28160875,SRS24513812,SRP573530,PRJNA1242724,Early exercise disrupts a pro repair extracellular matrix program during zebrafish fin regeneration,GSE293062,Transcriptome Analysis,Understanding how mechanical stimulation affects cellular behaviors during tissue regeneration offers valuable insight into the mechanisms that regulate injury repair. We incorporated a swim tunnel exercise regimen during zebrafish caudal fin regeneration to explore exercise loading impacts on a robust model of tissue regeneration. Early exercise loading initiated before or during blastema formation resulted in reduced regenerative outcomes. Long term tracking of fluorescently labeled cell lineages showed exercise loading disrupted blastemal mesenchyme formation. Transcriptomic profiling and section staining indicated loading reduced an extracellular matrix ECM gene expression program including for hyaluronic acid HA synthesis. Like exercise loading HA synthesis inhibition or blastemal HA depletion disrupted blastema formation. We considered if injury upregulated HA establishes a pro regenerative environment facilitating mechanotransduction. HA density across the blastema correlated with nuclear localization of the mechanotransducer Yes associated protein Yap. Further exercise loading or HA depletion decreased nuclear Yap and Proliferative Cell Nuclear Antigen staining. We conclude early loading during fin regeneration disrupts expression of an HA rich ECM supporting blastema expansion. Our study of mechanical loading during fin regeneration reveals a stage dependent response similar to that seen in mammalian skeletal repair where early exercise—applied during blastema establishment—impairs regeneration while delayed loading during outgrowth does not suggesting a conserved sensitivity to the timing and intensity of mechanical stimuli in regenerative processes. Overall design: RNAseq profiling of 3 day post amputation fin regenerate blastema tissue following either swimming exercise exp or unexercised controls control,,,,3dpa blastema unexercised control bio rep 1,GSM8875044,,source name:whole caudal fin 3 dpa blastema|tissue:whole caudal fin 3 dpa blastema|genotype:WT|treatment:Control|geo loc name:missing|collection date:missing,3dpa blastema unexercised control bio rep 1,Reads were aligned with Kallisto Pachter lab against zebrafish reference transcriptome. Assembly: GRCz11 Supplementary files format and content: .h5 counts abundance files,whole caudal fin 3 dpa blastema,Fish with caudal fin amputations were exercised twice at 48 and 72 hours post amputation and then whole regenerate fin tissue collected into Trizol reagent on ice 4 hours later.,RNA was prepared using a Direct Zol RNA prep kit Zymogenetics and eluted into water. RNA was pooled from 2 male and 2 female size matched fish for each replicate with replicates spanning two independent swimming cohorts. Libraries were prepared with 1 ug of input RNA using a TruSeq library prep kit indexed and pooled and sequenced using an Illumina NovaSeq 6000 to a read depth of approximately 25 million reads per library.,Zebrafish age 3 month 12 month were housed at approximately 28.5°C. Animals were maintained on a 14:10 day:night cycle and fed twice daily,tissue:whole caudal fin 3 dpa blastema|genotype:WT|treatment:Control,GSM8875044,GSM8875044: 3dpa blastema unexercised control bio rep 1; Danio rerio; RNA Seq,GSM8875044 r1,GSM8875044,1,RNA was prepared using a Direct Zol RNA prep kit Zymogenetics and eluted into water. RNA was pooled from 2 male and 2 female size matched fish for each replicate with replicates spanning two independent swimming cohorts. Libraries were prepared with 1 ug of input RNA using a TruSeq library prep kit indexed and pooled and sequenced using an Illumina NovaSeq 6000 to a read depth of approximately 25 million reads per library.,,RNA-Seq,TRANSCRIPTOMIC,cDNA,SINGLE,ILLUMINA,Illumina NovaSeq 6000,,SRP573530,,,Control_1_raw.fastq.gz,fastq,3410581248.0,27955584.0,GSM8875044 r1,0:122,A:908666390;C:784237057;G:832115119;T:885476069;N:86613,122,,,,908666390,784237057,832115119,885476069,86613,SRX28160875,SRS24513812,SRA2100952,"Stankunas, Institute of Molecular Biology, University of Oregon","Stankunas, Institute of Molecular Biology, University of Oregon",,,,,,,,,,,,B,,usable mapping rate,illumina,novaseq_era,unknown,cdna_unspecified,trueseq,bulk,unknown,unknown,,United States,2025-03-27,Adult,Adult,Fin,Surface Structure
36385,SRR516135,SRX156099,SRS346038,SRP013931,PRJNA169239,Initial analysis of transcript levels in zebrafish with advancing age,PRJNA169239,Other,This project aims at an initial characterization of changes in gene expression in zebrafish with advancing age. Transcript levels are determined in several tissues of zebrafish with differing ages using RNA seq. Differentially expressed genes are determined to pinpoint genes that are differently regulated in young and old zebrafish. Results will be compared with other species to identify common pathways of ageing.,,,Wild type zebrafish of the TueAB strain were kept in groups and only males were used for RNA isolation at an age of 5 month. Total RNA was isolated from skin using Trizol Invitrogen.,1 male Danio rerio strain TueAB 5m skin mRNA,zebrafish Nr31 5m,,,,,,,,,,,1 male Danio rerio strain TueAB 5m skin mRNA Illumina GA IIx 76 bp,zebrafish Nr31 5m 1,zebrafish Nr31 1,1,,,RNA-Seq,TRANSCRIPTOMIC,cDNA,SINGLE,ILLUMINA,Illumina Genome Analyzer IIx,760Application ReadForward1,SRP013931,,,,,1482677008.0,19508908.0,zebrafish Nr31 5m 1 1,0:76,A:385413939;C:354317020;G:354043481;T:388361606;N:540962,76,,,,385413939,354317020,354043481,388361606,540962,SRX156099,SRS346038,SRA054207,Leibniz Institute for Age Research - Fritz Lipmann|Genome Analysis,Leibniz Institute for Age Research - Fritz Lipmann Institute,1,0.9273,,0.08335,,0.67898,,0.48956,,76,,B,,usable mapping rate,illumina,early_illumina,unknown,cdna_unspecified,unknown,bulk,unknown,unknown,,Germany,2012-06-26,Adult,Adult,Skin,Surface Structure
36386,SRR516140,SRX156099,SRS346038,SRP013931,PRJNA169239,Initial analysis of transcript levels in zebrafish with advancing age,PRJNA169239,Other,This project aims at an initial characterization of changes in gene expression in zebrafish with advancing age. Transcript levels are determined in several tissues of zebrafish with differing ages using RNA seq. Differentially expressed genes are determined to pinpoint genes that are differently regulated in young and old zebrafish. Results will be compared with other species to identify common pathways of ageing.,,,Wild type zebrafish of the TueAB strain were kept in groups and only males were used for RNA isolation at an age of 5 month. Total RNA was isolated from skin using Trizol Invitrogen.,1 male Danio rerio strain TueAB 5m skin mRNA,zebrafish Nr31 5m,,,,,,,,,,,1 male Danio rerio strain TueAB 5m skin mRNA Illumina GA IIx 76 bp,zebrafish Nr31 5m 1,zebrafish Nr31 1,1,,,RNA-Seq,TRANSCRIPTOMIC,cDNA,SINGLE,ILLUMINA,Illumina Genome Analyzer IIx,760Application ReadForward1,SRP013931,,,,,388560032.0,5112632.0,zebrafish Nr31 5m 1 2,0:76,A:102207965;C:91473514;G:92119606;T:102551859;N:207088,76,,,,102207965,91473514,92119606,102551859,207088,SRX156099,SRS346038,SRA054207,Leibniz Institute for Age Research - Fritz Lipmann|Genome Analysis,Leibniz Institute for Age Research - Fritz Lipmann Institute,1,0.92486,,0.08531,,0.67663,,0.49425,,76,,B,,usable mapping rate,illumina,early_illumina,unknown,cdna_unspecified,unknown,bulk,unknown,unknown,,Germany,2012-06-26,Adult,Adult,Skin,Surface Structure
36387,SRR516134,SRX156098,SRS346037,SRP013931,PRJNA169239,Initial analysis of transcript levels in zebrafish with advancing age,PRJNA169239,Other,This project aims at an initial characterization of changes in gene expression in zebrafish with advancing age. Transcript levels are determined in several tissues of zebrafish with differing ages using RNA seq. Differentially expressed genes are determined to pinpoint genes that are differently regulated in young and old zebrafish. Results will be compared with other species to identify common pathways of ageing.,,,Wild type zebrafish of the TueAB strain were kept in groups and only males were used for RNA isolation at an age of 5 month. Total RNA was isolated from skin using Trizol Invitrogen.,1 male Danio rerio strain TueAB 5m skin mRNA,zebrafish Nr30 5m,,,,,,,,,,,1 male Danio rerio strain TueAB 5m skin mRNA Illumina GA IIx 76 bp,zebrafish Nr30 5m 1,zebrafish Nr30 1,1,,,RNA-Seq,TRANSCRIPTOMIC,cDNA,SINGLE,ILLUMINA,Illumina Genome Analyzer IIx,760Application ReadForward1,SRP013931,,,,,1675582184.0,22047134.0,zebrafish Nr30 5m 1 1,0:76,A:458929887;C:381230210;G:376734439;T:457916852;N:770796,76,,,,458929887,381230210,376734439,457916852,770796,SRX156098,SRS346037,SRA054207,Leibniz Institute for Age Research - Fritz Lipmann|Genome Analysis,Leibniz Institute for Age Research - Fritz Lipmann Institute,1,0.91832,,0.10303,,0.71455,,0.49444,,76,,B,,usable mapping rate,illumina,early_illumina,unknown,cdna_unspecified,unknown,bulk,unknown,unknown,,Germany,2012-06-26,Adult,Adult,Skin,Surface Structure
36388,SRR516139,SRX156098,SRS346037,SRP013931,PRJNA169239,Initial analysis of transcript levels in zebrafish with advancing age,PRJNA169239,Other,This project aims at an initial characterization of changes in gene expression in zebrafish with advancing age. Transcript levels are determined in several tissues of zebrafish with differing ages using RNA seq. Differentially expressed genes are determined to pinpoint genes that are differently regulated in young and old zebrafish. Results will be compared with other species to identify common pathways of ageing.,,,Wild type zebrafish of the TueAB strain were kept in groups and only males were used for RNA isolation at an age of 5 month. Total RNA was isolated from skin using Trizol Invitrogen.,1 male Danio rerio strain TueAB 5m skin mRNA,zebrafish Nr30 5m,,,,,,,,,,,1 male Danio rerio strain TueAB 5m skin mRNA Illumina GA IIx 76 bp,zebrafish Nr30 5m 1,zebrafish Nr30 1,1,,,RNA-Seq,TRANSCRIPTOMIC,cDNA,SINGLE,ILLUMINA,Illumina Genome Analyzer IIx,760Application ReadForward1,SRP013931,,,,,477065908.0,6277183.0,zebrafish Nr30 5m 1 2,0:76,A:131927852;C:107181234;G:106214626;T:131489254;N:252942,76,,,,131927852,107181234,106214626,131489254,252942,SRX156098,SRS346037,SRA054207,Leibniz Institute for Age Research - Fritz Lipmann|Genome Analysis,Leibniz Institute for Age Research - Fritz Lipmann Institute,1,0.91581,,0.10754,,0.71577,,0.49994,,76,,B,,usable mapping rate,illumina,early_illumina,unknown,cdna_unspecified,unknown,bulk,unknown,unknown,,Germany,2012-06-26,Adult,Adult,Skin,Surface Structure
36389,SRR516133,SRX156097,SRS346036,SRP013931,PRJNA169239,Initial analysis of transcript levels in zebrafish with advancing age,PRJNA169239,Other,This project aims at an initial characterization of changes in gene expression in zebrafish with advancing age. Transcript levels are determined in several tissues of zebrafish with differing ages using RNA seq. Differentially expressed genes are determined to pinpoint genes that are differently regulated in young and old zebrafish. Results will be compared with other species to identify common pathways of ageing.,,,Wild type zebrafish of the TueAB strain were kept in groups and only males were used for RNA isolation at an age of 5 month. Total RNA was isolated from skin using Trizol Invitrogen.,1 male Danio rerio strain TueAB 5m skin mRNA,zebrafish Nr29 5m,,,,,,,,,,,1 male Danio rerio strain TueAB 5m skin mRNA Illumina GA IIx 76 bp,zebrafish Nr29 5m 1,zebrafish Nr29 1,1,,,RNA-Seq,TRANSCRIPTOMIC,cDNA,SINGLE,ILLUMINA,Illumina Genome Analyzer IIx,760Application ReadForward1,SRP013931,,,,,1305047832.0,17171682.0,zebrafish Nr29 5m 1 1,0:76,A:362467093;C:292043132;G:289641844;T:360441501;N:454262,76,,,,362467093,292043132,289641844,360441501,454262,SRX156097,SRS346036,SRA054207,Leibniz Institute for Age Research - Fritz Lipmann|Genome Analysis,Leibniz Institute for Age Research - Fritz Lipmann Institute,1,0.90448,,0.11905,,0.70246,,0.47656,,76,,B,,usable mapping rate,illumina,early_illumina,unknown,cdna_unspecified,unknown,bulk,unknown,unknown,,Germany,2012-06-26,Adult,Adult,Skin,Surface Structure
36390,SRR516138,SRX156097,SRS346036,SRP013931,PRJNA169239,Initial analysis of transcript levels in zebrafish with advancing age,PRJNA169239,Other,This project aims at an initial characterization of changes in gene expression in zebrafish with advancing age. Transcript levels are determined in several tissues of zebrafish with differing ages using RNA seq. Differentially expressed genes are determined to pinpoint genes that are differently regulated in young and old zebrafish. Results will be compared with other species to identify common pathways of ageing.,,,Wild type zebrafish of the TueAB strain were kept in groups and only males were used for RNA isolation at an age of 5 month. Total RNA was isolated from skin using Trizol Invitrogen.,1 male Danio rerio strain TueAB 5m skin mRNA,zebrafish Nr29 5m,,,,,,,,,,,1 male Danio rerio strain TueAB 5m skin mRNA Illumina GA IIx 76 bp,zebrafish Nr29 5m 1,zebrafish Nr29 1,1,,,RNA-Seq,TRANSCRIPTOMIC,cDNA,SINGLE,ILLUMINA,Illumina Genome Analyzer IIx,760Application ReadForward1,SRP013931,,,110307_DanioRerio_Nr29_5m_w1_s_1.fq,fastq,457287972.0,6016947.0,zebrafish Nr29 5m 1 2,0:76,A:128212070;C:101000378;G:100136000;T:127695086;N:244438,76,,,,128212070,101000378,100136000,127695086,244438,SRX156097,SRS346036,SRA054207,Leibniz Institute for Age Research - Fritz Lipmann|Genome Analysis,Leibniz Institute for Age Research - Fritz Lipmann Institute,1,0.90327,,0.12466,,0.70195,,0.49568,,76,,B,,usable mapping rate,illumina,early_illumina,unknown,cdna_unspecified,unknown,bulk,unknown,unknown,,Germany,2013-03-11,Adult,Adult,Skin,Surface Structure
36391,SRR516132,SRX156096,SRS346035,SRP013931,PRJNA169239,Initial analysis of transcript levels in zebrafish with advancing age,PRJNA169239,Other,This project aims at an initial characterization of changes in gene expression in zebrafish with advancing age. Transcript levels are determined in several tissues of zebrafish with differing ages using RNA seq. Differentially expressed genes are determined to pinpoint genes that are differently regulated in young and old zebrafish. Results will be compared with other species to identify common pathways of ageing.,,,Wild type zebrafish of the TueAB strain were kept in groups and only males were used for RNA isolation at an age of 5 month. Total RNA was isolated from skin using Trizol Invitrogen.,1 male Danio rerio strain TueAB 5m skin mRNA,zebrafish Nr28 5m,,,,,,,,,,,1 male Danio rerio strain TueAB 5m skin mRNA Illumina GA IIx 76 bp,zebrafish Nr28 5m 1,zebrafish Nr28 1,1,,,RNA-Seq,TRANSCRIPTOMIC,cDNA,SINGLE,ILLUMINA,Illumina Genome Analyzer IIx,760Application ReadForward1,SRP013931,,,110104_DanioRerio_Nr28_5m_l5.fq,fastq,778479248.0,10243148.0,zebrafish Nr28 5m 1 1,0:76,A:207103962;C:183338330;G:183353815;T:204420105;N:263036,76,,,,207103962,183338330,183353815,204420105,263036,SRX156096,SRS346035,SRA054207,Leibniz Institute for Age Research - Fritz Lipmann|Genome Analysis,Leibniz Institute for Age Research - Fritz Lipmann Institute,1,0.91711,,0.08403,,0.72218,,0.46568,,76,,B,,usable mapping rate,illumina,early_illumina,unknown,cdna_unspecified,unknown,bulk,unknown,unknown,,Germany,2013-03-11,Adult,Adult,Skin,Surface Structure
36392,SRR516137,SRX156096,SRS346035,SRP013931,PRJNA169239,Initial analysis of transcript levels in zebrafish with advancing age,PRJNA169239,Other,This project aims at an initial characterization of changes in gene expression in zebrafish with advancing age. Transcript levels are determined in several tissues of zebrafish with differing ages using RNA seq. Differentially expressed genes are determined to pinpoint genes that are differently regulated in young and old zebrafish. Results will be compared with other species to identify common pathways of ageing.,,,Wild type zebrafish of the TueAB strain were kept in groups and only males were used for RNA isolation at an age of 5 month. Total RNA was isolated from skin using Trizol Invitrogen.,1 male Danio rerio strain TueAB 5m skin mRNA,zebrafish Nr28 5m,,,,,,,,,,,1 male Danio rerio strain TueAB 5m skin mRNA Illumina GA IIx 76 bp,zebrafish Nr28 5m 1,zebrafish Nr28 1,1,,,RNA-Seq,TRANSCRIPTOMIC,cDNA,SINGLE,ILLUMINA,Illumina Genome Analyzer IIx,760Application ReadForward1,SRP013931,,,110307_DanioRerio_Nr28_5m_w1_s_2.fq,fastq,1004119144.0,13212094.0,zebrafish Nr28 5m 1 2,0:76,A:269579079;C:233472158;G:233160786;T:267709479;N:197642,76,,,,269579079,233472158,233160786,267709479,197642,SRX156096,SRS346035,SRA054207,Leibniz Institute for Age Research - Fritz Lipmann|Genome Analysis,Leibniz Institute for Age Research - Fritz Lipmann Institute,1,0.92125,,0.09157,,0.72056,,0.4782,,76,,B,,usable mapping rate,illumina,early_illumina,unknown,cdna_unspecified,unknown,bulk,unknown,unknown,,Germany,2013-03-11,Adult,Adult,Skin,Surface Structure
36393,SRR516131,SRX156095,SRS346034,SRP013931,PRJNA169239,Initial analysis of transcript levels in zebrafish with advancing age,PRJNA169239,Other,This project aims at an initial characterization of changes in gene expression in zebrafish with advancing age. Transcript levels are determined in several tissues of zebrafish with differing ages using RNA seq. Differentially expressed genes are determined to pinpoint genes that are differently regulated in young and old zebrafish. Results will be compared with other species to identify common pathways of ageing.,,,Wild type zebrafish of the TueAB strain were kept in groups and only males were used for RNA isolation at an age of 5 month. Total RNA was isolated from skin using Trizol Invitrogen.,1 male Danio rerio strain TueAB 5m skin mRNA,zebrafish Nr27 5m,,,,,,,,,,,1 male Danio rerio strain TueAB 5m skin mRNA Illumina GA IIx 76 bp,zebrafish Nr27 5m 1,zebrafish Nr27 1,1,,,RNA-Seq,TRANSCRIPTOMIC,cDNA,SINGLE,ILLUMINA,Illumina Genome Analyzer IIx,760Application ReadForward1,SRP013931,,,,,1689987528.0,22236678.0,zebrafish Nr27 5m 1 1,0:76,A:462852366;C:385867681;G:380635625;T:460044585;N:587271,76,,,,462852366,385867681,380635625,460044585,587271,SRX156095,SRS346034,SRA054207,Leibniz Institute for Age Research - Fritz Lipmann|Genome Analysis,Leibniz Institute for Age Research - Fritz Lipmann Institute,1,0.91288,,0.1015,,0.71293,,0.488,,76,,B,,usable mapping rate,illumina,early_illumina,unknown,cdna_unspecified,unknown,bulk,unknown,unknown,,Germany,2012-06-26,Adult,Adult,Skin,Surface Structure
36394,SRR516136,SRX156095,SRS346034,SRP013931,PRJNA169239,Initial analysis of transcript levels in zebrafish with advancing age,PRJNA169239,Other,This project aims at an initial characterization of changes in gene expression in zebrafish with advancing age. Transcript levels are determined in several tissues of zebrafish with differing ages using RNA seq. Differentially expressed genes are determined to pinpoint genes that are differently regulated in young and old zebrafish. Results will be compared with other species to identify common pathways of ageing.,,,Wild type zebrafish of the TueAB strain were kept in groups and only males were used for RNA isolation at an age of 5 month. Total RNA was isolated from skin using Trizol Invitrogen.,1 male Danio rerio strain TueAB 5m skin mRNA,zebrafish Nr27 5m,,,,,,,,,,,1 male Danio rerio strain TueAB 5m skin mRNA Illumina GA IIx 76 bp,zebrafish Nr27 5m 1,zebrafish Nr27 1,1,,,RNA-Seq,TRANSCRIPTOMIC,cDNA,SINGLE,ILLUMINA,Illumina Genome Analyzer IIx,760Application ReadForward1,SRP013931,,,,,421535824.0,5546524.0,zebrafish Nr27 5m 1 2,0:76,A:116434305;C:94958671;G:93876467;T:116039545;N:226836,76,,,,116434305,94958671,93876467,116039545,226836,SRX156095,SRS346034,SRA054207,Leibniz Institute for Age Research - Fritz Lipmann|Genome Analysis,Leibniz Institute for Age Research - Fritz Lipmann Institute,1,0.90776,,0.10459,,0.71399,,0.49081,,76,,B,,usable mapping rate,illumina,early_illumina,unknown,cdna_unspecified,unknown,bulk,unknown,unknown,,Germany,2012-06-26,Adult,Adult,Skin,Surface Structure
36395,SRR516130,SRX156094,SRS346033,SRP013931,PRJNA169239,Initial analysis of transcript levels in zebrafish with advancing age,PRJNA169239,Other,This project aims at an initial characterization of changes in gene expression in zebrafish with advancing age. Transcript levels are determined in several tissues of zebrafish with differing ages using RNA seq. Differentially expressed genes are determined to pinpoint genes that are differently regulated in young and old zebrafish. Results will be compared with other species to identify common pathways of ageing.,,,Wild type zebrafish of the TueAB strain were kept in groups and only males were used for RNA isolation at an age of 5 month. Total RNA was isolated from skin using Trizol Invitrogen.,1 male Danio rerio strain TueAB 5m skin mRNA,zebrafish Nr26 5m,,,,,,,,,,,1 male Danio rerio strain TueAB 5m skin mRNA Illumina GA IIx 76 bp,zebrafish Nr26 5m 1,zebrafish Nr26 1,1,,,RNA-Seq,TRANSCRIPTOMIC,cDNA,SINGLE,ILLUMINA,Illumina Genome Analyzer IIx,760Application ReadForward1,SRP013931,,,,,1633478944.0,21493144.0,zebrafish Nr26 5m 1 1,0:76,A:435251153;C:384938751;G:380973255;T:432171855;N:143930,76,,,,435251153,384938751,380973255,432171855,143930,SRX156094,SRS346033,SRA054207,Leibniz Institute for Age Research - Fritz Lipmann|Genome Analysis,Leibniz Institute for Age Research - Fritz Lipmann Institute,1,0.92486,,0.08081,,0.71969,,0.50656,,76,,B,,usable mapping rate,illumina,early_illumina,unknown,cdna_unspecified,unknown,bulk,unknown,unknown,,Germany,2012-06-26,Adult,Adult,Skin,Surface Structure
36396,SRR516129,SRX156093,SRS346032,SRP013931,PRJNA169239,Initial analysis of transcript levels in zebrafish with advancing age,PRJNA169239,Other,This project aims at an initial characterization of changes in gene expression in zebrafish with advancing age. Transcript levels are determined in several tissues of zebrafish with differing ages using RNA seq. Differentially expressed genes are determined to pinpoint genes that are differently regulated in young and old zebrafish. Results will be compared with other species to identify common pathways of ageing.,,,Wild type zebrafish of the TueAB strain were kept in groups and only males were used for RNA isolation at an age of 5 month. Total RNA was isolated from skin using Trizol Invitrogen.,1 male Danio rerio strain TueAB 5m skin mRNA,zebrafish Nr25 5m,,,,,,,,,,,1 male Danio rerio strain TueAB 5m skin mRNA Illumina GA IIx 76 bp,zebrafish Nr25 5m 1,zebrafish Nr25 1,1,,,RNA-Seq,TRANSCRIPTOMIC,cDNA,SINGLE,ILLUMINA,Illumina Genome Analyzer IIx,760Application ReadForward1,SRP013931,,,101021_DanioRerio_Nr25_5m_l7.fq,fastq,1893537644.0,24914969.0,zebrafish Nr25 5m 1 1,0:76,A:516246577;C:431589332;G:431233057;T:514385629;N:83049,76,,,,516246577,431589332,431233057,514385629,83049,SRX156093,SRS346032,SRA054207,Leibniz Institute for Age Research - Fritz Lipmann|Genome Analysis,Leibniz Institute for Age Research - Fritz Lipmann Institute,1,0.89513,,0.11188,,0.70591,,0.47827,,76,,B,,usable mapping rate,illumina,early_illumina,unknown,cdna_unspecified,unknown,bulk,unknown,unknown,,Germany,2012-06-26,Adult,Adult,Skin,Surface Structure
36397,SRR516128,SRX156092,SRS346031,SRP013931,PRJNA169239,Initial analysis of transcript levels in zebrafish with advancing age,PRJNA169239,Other,This project aims at an initial characterization of changes in gene expression in zebrafish with advancing age. Transcript levels are determined in several tissues of zebrafish with differing ages using RNA seq. Differentially expressed genes are determined to pinpoint genes that are differently regulated in young and old zebrafish. Results will be compared with other species to identify common pathways of ageing.,,,Wild type zebrafish of the TueAB strain were kept in groups and only males were used for RNA isolation at an age of 5 month. Total RNA was isolated from skin using Trizol Invitrogen.,1 male Danio rerio strain TueAB 5m skin mRNA,zebrafish Nr23 5m,,,,,,,,,,,1 male Danio rerio strain TueAB 5m skin mRNA Illumina GA IIx 76 bp,zebrafish Nr23 5m 1,zebrafish Nr23 1,1,,,RNA-Seq,TRANSCRIPTOMIC,cDNA,SINGLE,ILLUMINA,Illumina Genome Analyzer IIx,760Application ReadForward1,SRP013931,,,101021_DanioRerio_Nr23_5m_l6.fq,fastq,2271040360.0,29882110.0,zebrafish Nr23 5m 1 1,0:76,A:602084142;C:529733757;G:524301688;T:614827528;N:93245,76,,,,602084142,529733757,524301688,614827528,93245,SRX156092,SRS346031,SRA054207,Leibniz Institute for Age Research - Fritz Lipmann|Genome Analysis,Leibniz Institute for Age Research - Fritz Lipmann Institute,1,0.92194,,0.09655,,0.70463,,0.47059,,76,,B,,usable mapping rate,illumina,early_illumina,unknown,cdna_unspecified,unknown,bulk,unknown,unknown,,Germany,2013-03-11,Adult,Adult,Skin,Surface Structure
36398,SRR516127,SRX156091,SRS346030,SRP013931,PRJNA169239,Initial analysis of transcript levels in zebrafish with advancing age,PRJNA169239,Other,This project aims at an initial characterization of changes in gene expression in zebrafish with advancing age. Transcript levels are determined in several tissues of zebrafish with differing ages using RNA seq. Differentially expressed genes are determined to pinpoint genes that are differently regulated in young and old zebrafish. Results will be compared with other species to identify common pathways of ageing.,,,Wild type zebrafish of the TueAB strain were kept in groups and only males were used for RNA isolation at an age of 5 month. Total RNA was isolated from skin using Trizol Invitrogen.,1 male Danio rerio strain TueAB 5m skin mRNA,zebrafish Nr22 5m,,,,,,,,,,,1 male Danio rerio strain TueAB 5m skin mRNA Illumina GA IIx 76 bp,zebrafish Nr22 5m 1,zebrafish Nr22 1,1,,,RNA-Seq,TRANSCRIPTOMIC,cDNA,SINGLE,ILLUMINA,Illumina Genome Analyzer IIx,760Application ReadForward1,SRP013931,,,,,2812847324.0,37011149.0,zebrafish Nr22 5m 1 1,0:76,A:760320146;C:645617435;G:643672544;T:763112485;N:124714,76,,,,760320146,645617435,643672544,763112485,124714,SRX156091,SRS346030,SRA054207,Leibniz Institute for Age Research - Fritz Lipmann|Genome Analysis,Leibniz Institute for Age Research - Fritz Lipmann Institute,1,0.93272,,0.08997,,0.70755,,0.52272,,76,,B,,usable mapping rate,illumina,early_illumina,unknown,cdna_unspecified,unknown,bulk,unknown,unknown,,Germany,2012-06-26,Adult,Adult,Skin,Surface Structure
36399,SRR516126,SRX156090,SRS346029,SRP013931,PRJNA169239,Initial analysis of transcript levels in zebrafish with advancing age,PRJNA169239,Other,This project aims at an initial characterization of changes in gene expression in zebrafish with advancing age. Transcript levels are determined in several tissues of zebrafish with differing ages using RNA seq. Differentially expressed genes are determined to pinpoint genes that are differently regulated in young and old zebrafish. Results will be compared with other species to identify common pathways of ageing.,,,Wild type zebrafish of the TueAB strain were kept in groups and only males were used for RNA isolation at an age of 5 month. Total RNA was isolated from skin using Trizol Invitrogen.,1 male Danio rerio strain TueAB 5m skin mRNA,zebrafish Nr21 5m,,,,,,,,,,,1 male Danio rerio strain TueAB 5m skin mRNA Illumina GA IIx 76 bp,zebrafish Nr21 5m 1,zebrafish Nr21 1,1,,,RNA-Seq,TRANSCRIPTOMIC,cDNA,SINGLE,ILLUMINA,Illumina Genome Analyzer IIx,760Application ReadForward1,SRP013931,,,,,2331404728.0,30676378.0,zebrafish Nr21 5m 1 1,0:76,A:630276643;C:539444103;G:529126097;T:632442560;N:115325,76,,,,630276643,539444103,529126097,632442560,115325,SRX156090,SRS346029,SRA054207,Leibniz Institute for Age Research - Fritz Lipmann|Genome Analysis,Leibniz Institute for Age Research - Fritz Lipmann Institute,1,0.92747,,0.10341,,0.70414,,0.49626,,76,,B,,usable mapping rate,illumina,early_illumina,unknown,cdna_unspecified,unknown,bulk,unknown,unknown,,Germany,2012-06-26,Adult,Adult,Skin,Surface Structure
36400,SRR516125,SRX156089,SRS346028,SRP013931,PRJNA169239,Initial analysis of transcript levels in zebrafish with advancing age,PRJNA169239,Other,This project aims at an initial characterization of changes in gene expression in zebrafish with advancing age. Transcript levels are determined in several tissues of zebrafish with differing ages using RNA seq. Differentially expressed genes are determined to pinpoint genes that are differently regulated in young and old zebrafish. Results will be compared with other species to identify common pathways of ageing.,,,Wild type zebrafish of the TueAB strain were kept in groups and only males were used for RNA isolation at an age of 3.5 years. Total RNA was isolated from skin using Trizol Invitrogen.,1 male Danio rerio strain TueAB 3.5y skin mRNA,zebrafish Nr18 3.5y,,,,,,,,,,,1 male Danio rerio strain TueAB 3.5y skin mRNA Illumina GA IIx 76 bp,zebrafish Nr18 3.5y 1,zebrafish Nr18 1,1,,,RNA-Seq,TRANSCRIPTOMIC,cDNA,SINGLE,ILLUMINA,Illumina Genome Analyzer IIx,760Application ReadForward1,SRP013931,,,,,2653618888.0,34916038.0,zebrafish Nr18 3.5y 1 1,0:76,A:728660211;C:598216653;G:601771842;T:724871715;N:98467,76,,,,728660211,598216653,601771842,724871715,98467,SRX156089,SRS346028,SRA054207,Leibniz Institute for Age Research - Fritz Lipmann|Genome Analysis,Leibniz Institute for Age Research - Fritz Lipmann Institute,1,0.91227,,0.10895,,0.71802,,0.49946,,76,,B,,usable mapping rate,illumina,early_illumina,unknown,cdna_unspecified,unknown,bulk,unknown,unknown,,Germany,2012-06-26,Adult,Adult,Skin,Surface Structure
36401,SRR516124,SRX156088,SRS346027,SRP013931,PRJNA169239,Initial analysis of transcript levels in zebrafish with advancing age,PRJNA169239,Other,This project aims at an initial characterization of changes in gene expression in zebrafish with advancing age. Transcript levels are determined in several tissues of zebrafish with differing ages using RNA seq. Differentially expressed genes are determined to pinpoint genes that are differently regulated in young and old zebrafish. Results will be compared with other species to identify common pathways of ageing.,,,Wild type zebrafish of the TueAB strain were kept in groups and only males were used for RNA isolation at an age of 3.5 years. Total RNA was isolated from skin using Trizol Invitrogen.,1 male Danio rerio strain TueAB 3.5y skin mRNA,zebrafish Nr14 3.5y,,,,,,,,,,,1 male Danio rerio strain TueAB 3.5y skin mRNA Illumina GA IIx 76 bp,zebrafish Nr14 3.5y 1,zebrafish Nr14 1,1,,,RNA-Seq,TRANSCRIPTOMIC,cDNA,SINGLE,ILLUMINA,Illumina Genome Analyzer IIx,760Application ReadForward1,SRP013931,,,,,2013201012.0,26489487.0,zebrafish Nr14 3.5y 1 1,0:76,A:554778161;C:456082219;G:445029202;T:557232699;N:78731,76,,,,554778161,456082219,445029202,557232699,78731,SRX156088,SRS346027,SRA054207,Leibniz Institute for Age Research - Fritz Lipmann|Genome Analysis,Leibniz Institute for Age Research - Fritz Lipmann Institute,1,0.90845,,0.1164,,0.71236,,0.48939,,76,,B,,usable mapping rate,illumina,early_illumina,unknown,cdna_unspecified,unknown,bulk,unknown,unknown,,Germany,2012-06-26,Adult,Adult,Skin,Surface Structure
36402,SRR516123,SRX156087,SRS346026,SRP013931,PRJNA169239,Initial analysis of transcript levels in zebrafish with advancing age,PRJNA169239,Other,This project aims at an initial characterization of changes in gene expression in zebrafish with advancing age. Transcript levels are determined in several tissues of zebrafish with differing ages using RNA seq. Differentially expressed genes are determined to pinpoint genes that are differently regulated in young and old zebrafish. Results will be compared with other species to identify common pathways of ageing.,,,Wild type zebrafish of the TueAB strain were kept in groups and only males were used for RNA isolation at an age of 3.5 years. Total RNA was isolated from skin using Trizol Invitrogen.,1 male Danio rerio strain TueAB 3.5y skin mRNA,zebrafish Nr13 3.5y,,,,,,,,,,,1 male Danio rerio strain TueAB 3.5y skin mRNA Illumina GA IIx 76 bp,zebrafish Nr13 3.5y 1,zebrafish Nr13 1,1,,,RNA-Seq,TRANSCRIPTOMIC,cDNA,SINGLE,ILLUMINA,Illumina Genome Analyzer IIx,760Application ReadForward1,SRP013931,,,,,2680273532.0,35266757.0,zebrafish Nr13 3.5y 1 1,0:76,A:740111520;C:588329849;G:606909161;T:744802954;N:120048,76,,,,740111520,588329849,606909161,744802954,120048,SRX156087,SRS346026,SRA054207,Leibniz Institute for Age Research - Fritz Lipmann|Genome Analysis,Leibniz Institute for Age Research - Fritz Lipmann Institute,1,0.85899,,0.11949,,0.71595,,0.48655,,76,,B,,usable mapping rate,illumina,early_illumina,unknown,cdna_unspecified,unknown,bulk,unknown,unknown,,Germany,2012-06-26,Adult,Adult,Skin,Surface Structure
36403,SRR516122,SRX156086,SRS346025,SRP013931,PRJNA169239,Initial analysis of transcript levels in zebrafish with advancing age,PRJNA169239,Other,This project aims at an initial characterization of changes in gene expression in zebrafish with advancing age. Transcript levels are determined in several tissues of zebrafish with differing ages using RNA seq. Differentially expressed genes are determined to pinpoint genes that are differently regulated in young and old zebrafish. Results will be compared with other species to identify common pathways of ageing.,,,Wild type zebrafish of the TueAB strain were kept in groups and only males were used for RNA isolation at an age of 3.5 years. Total RNA was isolated from skin using Trizol Invitrogen.,1 male Danio rerio strain TueAB 3.5y skin mRNA,zebrafish Nr12 3.5y,,,,,,,,,,,1 male Danio rerio strain TueAB 3.5y skin mRNA Illumina GA IIx 76 bp,zebrafish Nr12 3.5y 1,zebrafish Nr12 1,1,,,RNA-Seq,TRANSCRIPTOMIC,cDNA,SINGLE,ILLUMINA,Illumina Genome Analyzer IIx,760Application ReadForward1,SRP013931,,,,,2982635200.0,39245200.0,zebrafish Nr12 3.5y 1 1,0:76,A:829678392;C:650275344;G:659157904;T:842323646;N:1199914,76,,,,829678392,650275344,659157904,842323646,1199914,SRX156086,SRS346025,SRA054207,Leibniz Institute for Age Research - Fritz Lipmann|Genome Analysis,Leibniz Institute for Age Research - Fritz Lipmann Institute,1,0.88932,,0.12521,,0.71638,,0.53514,,76,,B,,usable mapping rate,illumina,early_illumina,unknown,cdna_unspecified,unknown,bulk,unknown,unknown,,Germany,2012-06-26,Adult,Adult,Skin,Surface Structure
36404,SRR516121,SRX156085,SRS346024,SRP013931,PRJNA169239,Initial analysis of transcript levels in zebrafish with advancing age,PRJNA169239,Other,This project aims at an initial characterization of changes in gene expression in zebrafish with advancing age. Transcript levels are determined in several tissues of zebrafish with differing ages using RNA seq. Differentially expressed genes are determined to pinpoint genes that are differently regulated in young and old zebrafish. Results will be compared with other species to identify common pathways of ageing.,,,Wild type zebrafish of the TueAB strain were kept in groups and only males were used for RNA isolation at an age of 3.5 years. Total RNA was isolated from skin using Trizol Invitrogen.,1 male Danio rerio strain TueAB 3.5y skin mRNA,zebrafish Nr11 3.5y,,,,,,,,,,,1 male Danio rerio strain TueAB 3.5y skin mRNA Illumina GA IIx 76 bp,zebrafish Nr11 3.5y 1,zebrafish Nr11 1,1,,,RNA-Seq,TRANSCRIPTOMIC,cDNA,SINGLE,ILLUMINA,Illumina Genome Analyzer IIx,760Application ReadForward1,SRP013931,,,,,2696915708.0,35485733.0,zebrafish Nr11 3.5y 1 1,0:76,A:749305835;C:599264137;G:607414252;T:740194221;N:737263,76,,,,749305835,599264137,607414252,740194221,737263,SRX156085,SRS346024,SRA054207,Leibniz Institute for Age Research - Fritz Lipmann|Genome Analysis,Leibniz Institute for Age Research - Fritz Lipmann Institute,1,0.86902,,0.11557,,0.71461,,0.49255,,76,,B,,usable mapping rate,illumina,early_illumina,unknown,cdna_unspecified,unknown,bulk,unknown,unknown,,Germany,2012-06-26,Adult,Adult,Skin,Surface Structure
36712,SRR835167,SRX271963,SRS416259,SRP021517,PRJNA198908,Gene Expression Analysis of Zebrafish Melanocytes Iridophores and Retinal Pigmented Epithelium Reveals Indicators of Biological Function and Developmental Origin,GSE46387,Transcriptome Analysis,In order to facilitate understanding of pigment cell biology we developed a method to concomitantly purify melanocytes iridophores and retinal pigmented epithelium from zebrafish and analyzed their transcriptomes. Comparing expression data from these cell types and whole embryos allowed us to reveal gene expression co enrichment in melanocytes and retinal pigmented epithelium as well as in melanocytes and iridophores. We found 214 genes co enriched in melanocytes and retinal pigmented epithelium indicating the shared functions of melanin producing cells. We found 62 genes significantly co enriched in melanocytes and iridophores illustrative of their shared developmental origins from the neural crest. This is also the first analysis of the iridophore transcriptome. Gene expression analysis for iridophores revealed extensive enrichment of specific enzymes to coordinate production of their guanine based reflective pigment. We speculate the coordinated upregulation of specific enzymes from several metabolic pathways recycles the rate limiting substrate for purine synthesis phosphoribosyl pyrophosphate thus constituting a guanine cycle. The purification procedure and expression analysis described here along with the accompanying transcriptome wide expression data provide the first mRNA sequencing data for multiple purified zebrafish pigment cell types and will be a useful resource for further studies of pigment cell biology. Overall design: mRNA profiles of zebrafish pigment cells were generated using Illumina GAIIX sequencing,,pubmed:23874447,,dm 116h 53,GSM1129625,,tissue:melanocytes|hpf,dm 116h 53,Align sequences using Novoalign to cDNA database Calculate RPKMs from Novoalign output using Perl Genome build: Non redundant database of 25 102 cDNAs generated by Higdon et al 2013 based on NCBI's RefSeq build from 8/29/2012 current RefSeq available at ftp://ftp.ncbi.nlm.nih.gov/refseq/D rerio/mRNA Prot/zebrafish.rna.fna.gz Supplementary files format and content: Excell file containing RPKMs of each library,melanocytes,,This study was carried out in accordance with the Washington University Animal Use Committee guidelines under approved protocol #20110236. Zebrafish were reared and bred according to standard protocols. The fish used in this study were homozygous for a temperature sensitive allele of micropthalmia transcription factor mitfavc7. This mutant facilitated the collection of RPE as mitfa is not required for RPE development in zebrafish. Melanocytes iridophores and RPE develop normally at 25°C in mitfavc7. When held at 32°C the neural crest derived melanocytes do not develop but RPE and iridophores develop normally. All melanocyte and iridophore samples were incubated at 25°C prior to collection. Fish were anesthetized with Tricaine rinsed with Ca Mg DPBS Sigma D8537 and immersed in 100mL TrypLE Express Invitrogen 12604039 per 1000 fish. Fish were incubated at 37°C and shaken at 100rpm for 15 20 minutes followed by trituration with a Pasteur pipette to remove eyes from larva. post separation of eyes and larva each group was placed in TrypLE Express and shaken at 100rpm at 37°C for 1 1.5 hr. Dissociated cells were filtered through a 120uM screen into 50 mL tubes. Remaining intact tissue was triturated 10 20 times and again filtered through a 120uM screen into the dissociated cells. Dissociated cells were pelleted in a swinging bucket rotor Eppendorf 5810 R at 500 relative centrifugal force rcf for 5 minutes at 4°C then resuspended in 1mL cold isotonic Percoll Sigma P1644 by gentle pipetting. Isotonic Percoll was prepared by mixing 1 part 10X PBS with 9 parts Percoll. Resuspended cells were transferred to 1.6mL Eppendorf tubes and spun at 2000rcf for 5 minutes at 4°C in a swinging bucket rotor for isopycnic separation. Pigment cells in the pellet were then resuspended in 400µL of ice cold DPBS with 2% fetal calf serum FCS and placed onto preformed Percoll density gradients. Preformed gradients were prepared via centrifugation of 1mL aliquots of isotonic Percoll in 1.6mL tubes at 10 000rcf for 15 minutes at 4°C in a fixed angle micro centrifuge Eppendorf 5415 R. Tubes containing preformed Percoll gradients with overlying cell suspensions were centrifuged in a swinging bucket rotor at 2000rcf for 10 minutes at 4°C. Following centrifugation overlying Percoll was aspirated leaving the final 100µL containing the pigment cell pellet. Cells were resuspended with 50µL of cold DPBS with 2% FCS and transferred to a clean 1.6mL tube containing 500µL of cold DPBS with 2% FCS and kept on ice until mRNA extraction or FACS. FACS We used the inherent properties of the pigmented cells to perform Fluorescence Activated Cell Sorting FACS. Following resuspension in 500µL cold DPBS with 2% FCS the enriched cell populations were screened through a 30uM cell filter Partec 04 0042 2316. Cells were analyzed and sorted with a Dako MoFlo cell sorter using a 120uM nozzle at a drop drive DD frequency of 22390Hz. Cells were illuminated using a 488 nm laser. Cells were gated on two attributes to separate cells from each other and from cellular debris. Cellular debris was detected using forward and side scatter selecting against the smallest particles 1µm or less. Cells were sorted based on detection using 510 530nm and 575 595nm filters corresponding to FL1 and FL2 in Figure 1D respectively. When excited by the 488 nm laser the autofluorescence of iridophores is clearly detectable in these channels as a group of cells extending at a 45 degree line in the upper right quadrant. Melanocytes and RPE do not autofluoresce with this intensity when excited by the 488nm laser and cluster at the lower left of the FACS plot. Cells were collected into ice cold DPBS with 2% FCS and kept on ice until mRNA extraction. Pigment cell cDNA library construction was as follows. For mRNA extraction the Dynabeads® mRNA DIRECT Kit Invitrogen was used per manufacturer's instructions. Following mRNA elution from the Dynabeads first strand cDNA synthesis was performed using MMLV reverse transcriptase Clontech using an anchored polyT primer tailed with a universal primer sequence See Table S3 for primer sequences and Figure 2 for pigment cell cDNA library construction overview. A universal primer sequence was also added to the three prime end of the first strand by template switching allowing for PCR amplification of the resultant cDNA [43 44]. Following PCR amplification using the high fidelity polymerase LA Taq TaKaRa PCR cycle: 95C for 1 minute followed by 20 cycles of 98C for 25 seconds 60C for 1 minute 68C for 20 minutes cDNA was digested with AluI and RsaI restriction enzymes NEB. Blunt end enzymatic fragmentation of cDNA was used instead of sonication and gel extraction to minimize loss of sample material and eliminate the end repair step of Illumina library preparation. Since this reduced representation strategy might miss short cDNAs that lack both restriction sites we sought to avoid this by including enzyme recognition sites within the cDNA amplification primers. This allows for the inclusion of short cDNAs in our libraries. Standard Illumina library preparations followed performed by the Genome Technology Access Center GTAC at Washington University in St. Louis http://gtac.wustl.edu. In brief a single A was added to the 3’ end of each strand Y adapters ligated and library enrichment PCR performed followed by gel extraction size selection for fragments ranging from 200 400 base pairs in length. Illumina library construction of pooled 3dpf embryos was performed by GTAC from total RNA extracted with Trizol reagent as previously described [45]. No PCR amplification of whole embryo cDNA was performed prior to Illumina adapter ligation and library enrichment. Sequencing was performed on the GAIIX Illumina platform.,,hpf,GSM1129625,GSM1129625: dm 116h 53; Danio rerio; RNA Seq,GSM1129625 1,,1,This study was carried out in accordance with the Washington University Animal Use Committee guidelines under approved protocol #20110236. Zebrafish were reared and bred according to standard protocols. The fish used in this study were homozygous for a temperature sensitive allele of micropthalmia transcription factor mitfavc7. This mutant facilitated the collection of RPE as mitfa is not required for RPE development in zebrafish. Melanocytes iridophores and RPE develop normally at 25°C in mitfavc7. When held at 32°C the neural crest derived melanocytes do not develop but RPE and iridophores develop normally. All melanocyte and iridophore samples were incubated at 25°C prior to collection. Fish were anesthetized with Tricaine rinsed with Ca Mg DPBS Sigma D8537 and immersed in 100mL TrypLE Express Invitrogen 12604039 per 1000 fish. Fish were incubated at 37°C and shaken at 100rpm for 15 20 minutes followed by trituration with a Pasteur pipette to remove eyes from larva. post separation of eyes and larva each group was placed in TrypLE Express and shaken at 100rpm at 37°C for 1 1.5 hr. Dissociated cells were filtered through a 120uM screen into 50 mL tubes. Remaining intact tissue was triturated 10 20 times and again filtered through a 120uM screen into the dissociated cells. Dissociated cells were pelleted in a swinging bucket rotor Eppendorf 5810 R at 500 relative centrifugal force rcf for 5 minutes at 4°C then resuspended in 1mL cold isotonic Percoll Sigma P1644 by gentle pipetting. Isotonic Percoll was prepared by mixing 1 part 10X PBS with 9 parts Percoll. Resuspended cells were transferred to 1.6mL Eppendorf tubes and spun at 2000rcf for 5 minutes at 4°C in a swinging bucket rotor for isopycnic separation. Pigment cells in the pellet were then resuspended in 400µL of ice cold DPBS with 2% fetal calf serum FCS and placed onto preformed Percoll density gradients. Preformed gradients were prepared via centrifugation of 1mL aliquots of isotonic Percoll in 1.6mL tubes at 10 000rcf for 15 minutes at 4°C in a fixed angle micro centrifuge Eppendorf 5415 R. Tubes containing preformed Percoll gradients with overlying cell suspensions were centrifuged in a swinging bucket rotor at 2000rcf for 10 minutes at 4°C. Following centrifugation overlying Percoll was aspirated leaving the final 100µL containing the pigment cell pellet. Cells were resuspended with 50µL of cold DPBS with 2% FCS and transferred to a clean 1.6mL tube containing 500µL of cold DPBS with 2% FCS and kept on ice until mRNA extraction or FACS. FACS We used the inherent properties of the pigmented cells to perform Fluorescence Activated Cell Sorting FACS. Following resuspension in 500µL cold DPBS with 2% FCS the enriched cell populations were screened through a 30uM cell filter Partec 04 0042 2316. Cells were analyzed and sorted with a Dako MoFlo cell sorter using a 120uM nozzle at a drop drive DD frequency of 22390Hz. Cells were illuminated using a 488 nm laser. Cells were gated on two attributes to separate cells from each other and from cellular debris. Cellular debris was detected using forward and side scatter selecting against the smallest particles 1µm or less. Cells were sorted based on detection using 510 530nm and 575 595nm filters corresponding to FL1 and FL2 in Figure 1D respectively. When excited by the 488 nm laser the autofluorescence of iridophores is clearly detectable in these channels as a group of cells extending at a 45 degree line in the upper right quadrant. Melanocytes and RPE do not autofluoresce with this intensity when excited by the 488nm laser and cluster at the lower left of the FACS plot. Cells were collected into ice cold DPBS with 2% FCS and kept on ice until mRNA extraction. Pigment cell cDNA library construction was as follows. For mRNA extraction the Dynabeads® mRNA DIRECT Kit Invitrogen was used per manufacturer's instructions. Following mRNA elution from the Dynabeads first strand cDNA synthesis was performed using MMLV reverse transcriptase Clontech using an anchored polyT primer tailed with a universal primer sequence See Table S3 for primer sequences and Figure 2 for pigment cell cDNA library construction overview. A universal primer sequence was also added to the three prime end of the first strand by template switching allowing for PCR amplification of the resultant cDNA [43 44]. Following PCR amplification using the high fidelity polymerase LA Taq TaKaRa PCR cycle: 95C for 1 minute followed by 20 cycles of 98C for 25 seconds 60C for 1 minute 68C for 20 minutes cDNA was digested with AluI and RsaI restriction enzymes NEB. Blunt end enzymatic fragmentation of cDNA was used instead of sonication and gel extraction to minimize loss of sample material and eliminate the end repair step of Illumina library preparation. Since this reduced representation strategy might miss short cDNAs that lack both restriction sites we sought to avoid this by including enzyme recognition sites within the cDNA amplification primers. This allows for the inclusion of short cDNAs in our libraries. Standard Illumina library preparations followed performed by the Genome Technology Access Center GTAC at Washington University in St. Louis http://gtac.wustl.edu. In brief a single A was added to the 3’ end of each strand Y adapters ligated and library enrichment PCR performed followed by gel extraction size selection for fragments ranging from 200 400 base pairs in length. Illumina library construction of pooled 3dpf embryos was performed by GTAC from total RNA extracted with Trizol reagent as previously described [45]. No PCR amplification of whole embryo cDNA was performed prior to Illumina adapter ligation and library enrichment. Sequencing was performed on the GAIIX Illumina platform.,GEO Accession:GSM1129625,RNA-Seq,TRANSCRIPTOMIC,cDNA,SINGLE,ILLUMINA,Illumina HiSeq 2000,,SRP021517,,,dm_116h_53_440.fq.bz2,fastq,203842506.0,4853393.0,GSM1129625 r1,0:42,A:49784918;C:48871504;G:45835011;T:59338271;N:12802,42,,,,49784918,48871504,45835011,59338271,12802,SRX271963,SRS416259,SRA074390,GEO,"Rob Mitra, Genetics, Washington University",1,0.82741,,0.14973,,0.84893,,0.53644,,42,,B,,usable mapping rate,illumina,hiseq_era,3prime,poly_a,unknown,bulk,unknown,unknown,,United States,2013-04-25,Larval,Larval,Skin,Surface Structure
36713,SRR835166,SRX271962,SRS416258,SRP021517,PRJNA198908,Gene Expression Analysis of Zebrafish Melanocytes Iridophores and Retinal Pigmented Epithelium Reveals Indicators of Biological Function and Developmental Origin,GSE46387,Transcriptome Analysis,In order to facilitate understanding of pigment cell biology we developed a method to concomitantly purify melanocytes iridophores and retinal pigmented epithelium from zebrafish and analyzed their transcriptomes. Comparing expression data from these cell types and whole embryos allowed us to reveal gene expression co enrichment in melanocytes and retinal pigmented epithelium as well as in melanocytes and iridophores. We found 214 genes co enriched in melanocytes and retinal pigmented epithelium indicating the shared functions of melanin producing cells. We found 62 genes significantly co enriched in melanocytes and iridophores illustrative of their shared developmental origins from the neural crest. This is also the first analysis of the iridophore transcriptome. Gene expression analysis for iridophores revealed extensive enrichment of specific enzymes to coordinate production of their guanine based reflective pigment. We speculate the coordinated upregulation of specific enzymes from several metabolic pathways recycles the rate limiting substrate for purine synthesis phosphoribosyl pyrophosphate thus constituting a guanine cycle. The purification procedure and expression analysis described here along with the accompanying transcriptome wide expression data provide the first mRNA sequencing data for multiple purified zebrafish pigment cell types and will be a useful resource for further studies of pigment cell biology. Overall design: mRNA profiles of zebrafish pigment cells were generated using Illumina GAIIX sequencing,,pubmed:23874447,,dm 97h 41 440,GSM1129624,,tissue:melanocytes|hpf,dm 97h 41 440,Align sequences using Novoalign to cDNA database Calculate RPKMs from Novoalign output using Perl Genome build: Non redundant database of 25 102 cDNAs generated by Higdon et al 2013 based on NCBI's RefSeq build from 8/29/2012 current RefSeq available at ftp://ftp.ncbi.nlm.nih.gov/refseq/D rerio/mRNA Prot/zebrafish.rna.fna.gz Supplementary files format and content: Excell file containing RPKMs of each library,melanocytes,,This study was carried out in accordance with the Washington University Animal Use Committee guidelines under approved protocol #20110236. Zebrafish were reared and bred according to standard protocols. The fish used in this study were homozygous for a temperature sensitive allele of micropthalmia transcription factor mitfavc7. This mutant facilitated the collection of RPE as mitfa is not required for RPE development in zebrafish. Melanocytes iridophores and RPE develop normally at 25°C in mitfavc7. When held at 32°C the neural crest derived melanocytes do not develop but RPE and iridophores develop normally. All melanocyte and iridophore samples were incubated at 25°C prior to collection. Fish were anesthetized with Tricaine rinsed with Ca Mg DPBS Sigma D8537 and immersed in 100mL TrypLE Express Invitrogen 12604039 per 1000 fish. Fish were incubated at 37°C and shaken at 100rpm for 15 20 minutes followed by trituration with a Pasteur pipette to remove eyes from larva. post separation of eyes and larva each group was placed in TrypLE Express and shaken at 100rpm at 37°C for 1 1.5 hr. Dissociated cells were filtered through a 120uM screen into 50 mL tubes. Remaining intact tissue was triturated 10 20 times and again filtered through a 120uM screen into the dissociated cells. Dissociated cells were pelleted in a swinging bucket rotor Eppendorf 5810 R at 500 relative centrifugal force rcf for 5 minutes at 4°C then resuspended in 1mL cold isotonic Percoll Sigma P1644 by gentle pipetting. Isotonic Percoll was prepared by mixing 1 part 10X PBS with 9 parts Percoll. Resuspended cells were transferred to 1.6mL Eppendorf tubes and spun at 2000rcf for 5 minutes at 4°C in a swinging bucket rotor for isopycnic separation. Pigment cells in the pellet were then resuspended in 400µL of ice cold DPBS with 2% fetal calf serum FCS and placed onto preformed Percoll density gradients. Preformed gradients were prepared via centrifugation of 1mL aliquots of isotonic Percoll in 1.6mL tubes at 10 000rcf for 15 minutes at 4°C in a fixed angle micro centrifuge Eppendorf 5415 R. Tubes containing preformed Percoll gradients with overlying cell suspensions were centrifuged in a swinging bucket rotor at 2000rcf for 10 minutes at 4°C. Following centrifugation overlying Percoll was aspirated leaving the final 100µL containing the pigment cell pellet. Cells were resuspended with 50µL of cold DPBS with 2% FCS and transferred to a clean 1.6mL tube containing 500µL of cold DPBS with 2% FCS and kept on ice until mRNA extraction or FACS. FACS We used the inherent properties of the pigmented cells to perform Fluorescence Activated Cell Sorting FACS. Following resuspension in 500µL cold DPBS with 2% FCS the enriched cell populations were screened through a 30uM cell filter Partec 04 0042 2316. Cells were analyzed and sorted with a Dako MoFlo cell sorter using a 120uM nozzle at a drop drive DD frequency of 22390Hz. Cells were illuminated using a 488 nm laser. Cells were gated on two attributes to separate cells from each other and from cellular debris. Cellular debris was detected using forward and side scatter selecting against the smallest particles 1µm or less. Cells were sorted based on detection using 510 530nm and 575 595nm filters corresponding to FL1 and FL2 in Figure 1D respectively. When excited by the 488 nm laser the autofluorescence of iridophores is clearly detectable in these channels as a group of cells extending at a 45 degree line in the upper right quadrant. Melanocytes and RPE do not autofluoresce with this intensity when excited by the 488nm laser and cluster at the lower left of the FACS plot. Cells were collected into ice cold DPBS with 2% FCS and kept on ice until mRNA extraction. Pigment cell cDNA library construction was as follows. For mRNA extraction the Dynabeads® mRNA DIRECT Kit Invitrogen was used per manufacturer's instructions. Following mRNA elution from the Dynabeads first strand cDNA synthesis was performed using MMLV reverse transcriptase Clontech using an anchored polyT primer tailed with a universal primer sequence See Table S3 for primer sequences and Figure 2 for pigment cell cDNA library construction overview. A universal primer sequence was also added to the three prime end of the first strand by template switching allowing for PCR amplification of the resultant cDNA [43 44]. Following PCR amplification using the high fidelity polymerase LA Taq TaKaRa PCR cycle: 95C for 1 minute followed by 20 cycles of 98C for 25 seconds 60C for 1 minute 68C for 20 minutes cDNA was digested with AluI and RsaI restriction enzymes NEB. Blunt end enzymatic fragmentation of cDNA was used instead of sonication and gel extraction to minimize loss of sample material and eliminate the end repair step of Illumina library preparation. Since this reduced representation strategy might miss short cDNAs that lack both restriction sites we sought to avoid this by including enzyme recognition sites within the cDNA amplification primers. This allows for the inclusion of short cDNAs in our libraries. Standard Illumina library preparations followed performed by the Genome Technology Access Center GTAC at Washington University in St. Louis http://gtac.wustl.edu. In brief a single A was added to the 3’ end of each strand Y adapters ligated and library enrichment PCR performed followed by gel extraction size selection for fragments ranging from 200 400 base pairs in length. Illumina library construction of pooled 3dpf embryos was performed by GTAC from total RNA extracted with Trizol reagent as previously described [45]. No PCR amplification of whole embryo cDNA was performed prior to Illumina adapter ligation and library enrichment. Sequencing was performed on the GAIIX Illumina platform.,,hpf,GSM1129624,GSM1129624: dm 97h 41 440; Danio rerio; RNA Seq,GSM1129624 1,,1,This study was carried out in accordance with the Washington University Animal Use Committee guidelines under approved protocol #20110236. Zebrafish were reared and bred according to standard protocols. The fish used in this study were homozygous for a temperature sensitive allele of micropthalmia transcription factor mitfavc7. This mutant facilitated the collection of RPE as mitfa is not required for RPE development in zebrafish. Melanocytes iridophores and RPE develop normally at 25°C in mitfavc7. When held at 32°C the neural crest derived melanocytes do not develop but RPE and iridophores develop normally. All melanocyte and iridophore samples were incubated at 25°C prior to collection. Fish were anesthetized with Tricaine rinsed with Ca Mg DPBS Sigma D8537 and immersed in 100mL TrypLE Express Invitrogen 12604039 per 1000 fish. Fish were incubated at 37°C and shaken at 100rpm for 15 20 minutes followed by trituration with a Pasteur pipette to remove eyes from larva. post separation of eyes and larva each group was placed in TrypLE Express and shaken at 100rpm at 37°C for 1 1.5 hr. Dissociated cells were filtered through a 120uM screen into 50 mL tubes. Remaining intact tissue was triturated 10 20 times and again filtered through a 120uM screen into the dissociated cells. Dissociated cells were pelleted in a swinging bucket rotor Eppendorf 5810 R at 500 relative centrifugal force rcf for 5 minutes at 4°C then resuspended in 1mL cold isotonic Percoll Sigma P1644 by gentle pipetting. Isotonic Percoll was prepared by mixing 1 part 10X PBS with 9 parts Percoll. Resuspended cells were transferred to 1.6mL Eppendorf tubes and spun at 2000rcf for 5 minutes at 4°C in a swinging bucket rotor for isopycnic separation. Pigment cells in the pellet were then resuspended in 400µL of ice cold DPBS with 2% fetal calf serum FCS and placed onto preformed Percoll density gradients. Preformed gradients were prepared via centrifugation of 1mL aliquots of isotonic Percoll in 1.6mL tubes at 10 000rcf for 15 minutes at 4°C in a fixed angle micro centrifuge Eppendorf 5415 R. Tubes containing preformed Percoll gradients with overlying cell suspensions were centrifuged in a swinging bucket rotor at 2000rcf for 10 minutes at 4°C. Following centrifugation overlying Percoll was aspirated leaving the final 100µL containing the pigment cell pellet. Cells were resuspended with 50µL of cold DPBS with 2% FCS and transferred to a clean 1.6mL tube containing 500µL of cold DPBS with 2% FCS and kept on ice until mRNA extraction or FACS. FACS We used the inherent properties of the pigmented cells to perform Fluorescence Activated Cell Sorting FACS. Following resuspension in 500µL cold DPBS with 2% FCS the enriched cell populations were screened through a 30uM cell filter Partec 04 0042 2316. Cells were analyzed and sorted with a Dako MoFlo cell sorter using a 120uM nozzle at a drop drive DD frequency of 22390Hz. Cells were illuminated using a 488 nm laser. Cells were gated on two attributes to separate cells from each other and from cellular debris. Cellular debris was detected using forward and side scatter selecting against the smallest particles 1µm or less. Cells were sorted based on detection using 510 530nm and 575 595nm filters corresponding to FL1 and FL2 in Figure 1D respectively. When excited by the 488 nm laser the autofluorescence of iridophores is clearly detectable in these channels as a group of cells extending at a 45 degree line in the upper right quadrant. Melanocytes and RPE do not autofluoresce with this intensity when excited by the 488nm laser and cluster at the lower left of the FACS plot. Cells were collected into ice cold DPBS with 2% FCS and kept on ice until mRNA extraction. Pigment cell cDNA library construction was as follows. For mRNA extraction the Dynabeads® mRNA DIRECT Kit Invitrogen was used per manufacturer's instructions. Following mRNA elution from the Dynabeads first strand cDNA synthesis was performed using MMLV reverse transcriptase Clontech using an anchored polyT primer tailed with a universal primer sequence See Table S3 for primer sequences and Figure 2 for pigment cell cDNA library construction overview. A universal primer sequence was also added to the three prime end of the first strand by template switching allowing for PCR amplification of the resultant cDNA [43 44]. Following PCR amplification using the high fidelity polymerase LA Taq TaKaRa PCR cycle: 95C for 1 minute followed by 20 cycles of 98C for 25 seconds 60C for 1 minute 68C for 20 minutes cDNA was digested with AluI and RsaI restriction enzymes NEB. Blunt end enzymatic fragmentation of cDNA was used instead of sonication and gel extraction to minimize loss of sample material and eliminate the end repair step of Illumina library preparation. Since this reduced representation strategy might miss short cDNAs that lack both restriction sites we sought to avoid this by including enzyme recognition sites within the cDNA amplification primers. This allows for the inclusion of short cDNAs in our libraries. Standard Illumina library preparations followed performed by the Genome Technology Access Center GTAC at Washington University in St. Louis http://gtac.wustl.edu. In brief a single A was added to the 3’ end of each strand Y adapters ligated and library enrichment PCR performed followed by gel extraction size selection for fragments ranging from 200 400 base pairs in length. Illumina library construction of pooled 3dpf embryos was performed by GTAC from total RNA extracted with Trizol reagent as previously described [45]. No PCR amplification of whole embryo cDNA was performed prior to Illumina adapter ligation and library enrichment. Sequencing was performed on the GAIIX Illumina platform.,GEO Accession:GSM1129624,RNA-Seq,TRANSCRIPTOMIC,cDNA,SINGLE,ILLUMINA,Illumina HiSeq 2000,,SRP021517,,,dm_97h_41_440.fq.bz2,fastq,199638768.0,4753304.0,GSM1129624 r1,0:42,A:45958194;C:50367228;G:48451580;T:54849238;N:12528,42,,,,45958194,50367228,48451580,54849238,12528,SRX271962,SRS416258,SRA074390,GEO,"Rob Mitra, Genetics, Washington University",1,0.85741,,0.09897,,0.84112,,0.53299,,42,,B,,usable mapping rate,illumina,hiseq_era,3prime,poly_a,unknown,bulk,unknown,unknown,,United States,2013-04-25,Larval,Larval,Skin,Surface Structure
36714,SRR835165,SRX271961,SRS416257,SRP021517,PRJNA198908,Gene Expression Analysis of Zebrafish Melanocytes Iridophores and Retinal Pigmented Epithelium Reveals Indicators of Biological Function and Developmental Origin,GSE46387,Transcriptome Analysis,In order to facilitate understanding of pigment cell biology we developed a method to concomitantly purify melanocytes iridophores and retinal pigmented epithelium from zebrafish and analyzed their transcriptomes. Comparing expression data from these cell types and whole embryos allowed us to reveal gene expression co enrichment in melanocytes and retinal pigmented epithelium as well as in melanocytes and iridophores. We found 214 genes co enriched in melanocytes and retinal pigmented epithelium indicating the shared functions of melanin producing cells. We found 62 genes significantly co enriched in melanocytes and iridophores illustrative of their shared developmental origins from the neural crest. This is also the first analysis of the iridophore transcriptome. Gene expression analysis for iridophores revealed extensive enrichment of specific enzymes to coordinate production of their guanine based reflective pigment. We speculate the coordinated upregulation of specific enzymes from several metabolic pathways recycles the rate limiting substrate for purine synthesis phosphoribosyl pyrophosphate thus constituting a guanine cycle. The purification procedure and expression analysis described here along with the accompanying transcriptome wide expression data provide the first mRNA sequencing data for multiple purified zebrafish pigment cell types and will be a useful resource for further studies of pigment cell biology. Overall design: mRNA profiles of zebrafish pigment cells were generated using Illumina GAIIX sequencing,,pubmed:23874447,,dm 77h FM 351,GSM1129623,,tissue:melanocytes|hpf,dm 77h FM 351,Align sequences using Novoalign to cDNA database Calculate RPKMs from Novoalign output using Perl Genome build: Non redundant database of 25 102 cDNAs generated by Higdon et al 2013 based on NCBI's RefSeq build from 8/29/2012 current RefSeq available at ftp://ftp.ncbi.nlm.nih.gov/refseq/D rerio/mRNA Prot/zebrafish.rna.fna.gz Supplementary files format and content: Excell file containing RPKMs of each library,melanocytes,,This study was carried out in accordance with the Washington University Animal Use Committee guidelines under approved protocol #20110236. Zebrafish were reared and bred according to standard protocols. The fish used in this study were homozygous for a temperature sensitive allele of micropthalmia transcription factor mitfavc7. This mutant facilitated the collection of RPE as mitfa is not required for RPE development in zebrafish. Melanocytes iridophores and RPE develop normally at 25°C in mitfavc7. When held at 32°C the neural crest derived melanocytes do not develop but RPE and iridophores develop normally. All melanocyte and iridophore samples were incubated at 25°C prior to collection. Fish were anesthetized with Tricaine rinsed with Ca Mg DPBS Sigma D8537 and immersed in 100mL TrypLE Express Invitrogen 12604039 per 1000 fish. Fish were incubated at 37°C and shaken at 100rpm for 15 20 minutes followed by trituration with a Pasteur pipette to remove eyes from larva. post separation of eyes and larva each group was placed in TrypLE Express and shaken at 100rpm at 37°C for 1 1.5 hr. Dissociated cells were filtered through a 120uM screen into 50 mL tubes. Remaining intact tissue was triturated 10 20 times and again filtered through a 120uM screen into the dissociated cells. Dissociated cells were pelleted in a swinging bucket rotor Eppendorf 5810 R at 500 relative centrifugal force rcf for 5 minutes at 4°C then resuspended in 1mL cold isotonic Percoll Sigma P1644 by gentle pipetting. Isotonic Percoll was prepared by mixing 1 part 10X PBS with 9 parts Percoll. Resuspended cells were transferred to 1.6mL Eppendorf tubes and spun at 2000rcf for 5 minutes at 4°C in a swinging bucket rotor for isopycnic separation. Pigment cells in the pellet were then resuspended in 400µL of ice cold DPBS with 2% fetal calf serum FCS and placed onto preformed Percoll density gradients. Preformed gradients were prepared via centrifugation of 1mL aliquots of isotonic Percoll in 1.6mL tubes at 10 000rcf for 15 minutes at 4°C in a fixed angle micro centrifuge Eppendorf 5415 R. Tubes containing preformed Percoll gradients with overlying cell suspensions were centrifuged in a swinging bucket rotor at 2000rcf for 10 minutes at 4°C. Following centrifugation overlying Percoll was aspirated leaving the final 100µL containing the pigment cell pellet. Cells were resuspended with 50µL of cold DPBS with 2% FCS and transferred to a clean 1.6mL tube containing 500µL of cold DPBS with 2% FCS and kept on ice until mRNA extraction or FACS. FACS We used the inherent properties of the pigmented cells to perform Fluorescence Activated Cell Sorting FACS. Following resuspension in 500µL cold DPBS with 2% FCS the enriched cell populations were screened through a 30uM cell filter Partec 04 0042 2316. Cells were analyzed and sorted with a Dako MoFlo cell sorter using a 120uM nozzle at a drop drive DD frequency of 22390Hz. Cells were illuminated using a 488 nm laser. Cells were gated on two attributes to separate cells from each other and from cellular debris. Cellular debris was detected using forward and side scatter selecting against the smallest particles 1µm or less. Cells were sorted based on detection using 510 530nm and 575 595nm filters corresponding to FL1 and FL2 in Figure 1D respectively. When excited by the 488 nm laser the autofluorescence of iridophores is clearly detectable in these channels as a group of cells extending at a 45 degree line in the upper right quadrant. Melanocytes and RPE do not autofluoresce with this intensity when excited by the 488nm laser and cluster at the lower left of the FACS plot. Cells were collected into ice cold DPBS with 2% FCS and kept on ice until mRNA extraction. Pigment cell cDNA library construction was as follows. For mRNA extraction the Dynabeads® mRNA DIRECT Kit Invitrogen was used per manufacturer's instructions. Following mRNA elution from the Dynabeads first strand cDNA synthesis was performed using MMLV reverse transcriptase Clontech using an anchored polyT primer tailed with a universal primer sequence See Table S3 for primer sequences and Figure 2 for pigment cell cDNA library construction overview. A universal primer sequence was also added to the three prime end of the first strand by template switching allowing for PCR amplification of the resultant cDNA [43 44]. Following PCR amplification using the high fidelity polymerase LA Taq TaKaRa PCR cycle: 95C for 1 minute followed by 20 cycles of 98C for 25 seconds 60C for 1 minute 68C for 20 minutes cDNA was digested with AluI and RsaI restriction enzymes NEB. Blunt end enzymatic fragmentation of cDNA was used instead of sonication and gel extraction to minimize loss of sample material and eliminate the end repair step of Illumina library preparation. Since this reduced representation strategy might miss short cDNAs that lack both restriction sites we sought to avoid this by including enzyme recognition sites within the cDNA amplification primers. This allows for the inclusion of short cDNAs in our libraries. Standard Illumina library preparations followed performed by the Genome Technology Access Center GTAC at Washington University in St. Louis http://gtac.wustl.edu. In brief a single A was added to the 3’ end of each strand Y adapters ligated and library enrichment PCR performed followed by gel extraction size selection for fragments ranging from 200 400 base pairs in length. Illumina library construction of pooled 3dpf embryos was performed by GTAC from total RNA extracted with Trizol reagent as previously described [45]. No PCR amplification of whole embryo cDNA was performed prior to Illumina adapter ligation and library enrichment. Sequencing was performed on the GAIIX Illumina platform.,,hpf,GSM1129623,GSM1129623: dm 77h FM 351; Danio rerio; RNA Seq,GSM1129623 1,,1,This study was carried out in accordance with the Washington University Animal Use Committee guidelines under approved protocol #20110236. Zebrafish were reared and bred according to standard protocols. The fish used in this study were homozygous for a temperature sensitive allele of micropthalmia transcription factor mitfavc7. This mutant facilitated the collection of RPE as mitfa is not required for RPE development in zebrafish. Melanocytes iridophores and RPE develop normally at 25°C in mitfavc7. When held at 32°C the neural crest derived melanocytes do not develop but RPE and iridophores develop normally. All melanocyte and iridophore samples were incubated at 25°C prior to collection. Fish were anesthetized with Tricaine rinsed with Ca Mg DPBS Sigma D8537 and immersed in 100mL TrypLE Express Invitrogen 12604039 per 1000 fish. Fish were incubated at 37°C and shaken at 100rpm for 15 20 minutes followed by trituration with a Pasteur pipette to remove eyes from larva. post separation of eyes and larva each group was placed in TrypLE Express and shaken at 100rpm at 37°C for 1 1.5 hr. Dissociated cells were filtered through a 120uM screen into 50 mL tubes. Remaining intact tissue was triturated 10 20 times and again filtered through a 120uM screen into the dissociated cells. Dissociated cells were pelleted in a swinging bucket rotor Eppendorf 5810 R at 500 relative centrifugal force rcf for 5 minutes at 4°C then resuspended in 1mL cold isotonic Percoll Sigma P1644 by gentle pipetting. Isotonic Percoll was prepared by mixing 1 part 10X PBS with 9 parts Percoll. Resuspended cells were transferred to 1.6mL Eppendorf tubes and spun at 2000rcf for 5 minutes at 4°C in a swinging bucket rotor for isopycnic separation. Pigment cells in the pellet were then resuspended in 400µL of ice cold DPBS with 2% fetal calf serum FCS and placed onto preformed Percoll density gradients. Preformed gradients were prepared via centrifugation of 1mL aliquots of isotonic Percoll in 1.6mL tubes at 10 000rcf for 15 minutes at 4°C in a fixed angle micro centrifuge Eppendorf 5415 R. Tubes containing preformed Percoll gradients with overlying cell suspensions were centrifuged in a swinging bucket rotor at 2000rcf for 10 minutes at 4°C. Following centrifugation overlying Percoll was aspirated leaving the final 100µL containing the pigment cell pellet. Cells were resuspended with 50µL of cold DPBS with 2% FCS and transferred to a clean 1.6mL tube containing 500µL of cold DPBS with 2% FCS and kept on ice until mRNA extraction or FACS. FACS We used the inherent properties of the pigmented cells to perform Fluorescence Activated Cell Sorting FACS. Following resuspension in 500µL cold DPBS with 2% FCS the enriched cell populations were screened through a 30uM cell filter Partec 04 0042 2316. Cells were analyzed and sorted with a Dako MoFlo cell sorter using a 120uM nozzle at a drop drive DD frequency of 22390Hz. Cells were illuminated using a 488 nm laser. Cells were gated on two attributes to separate cells from each other and from cellular debris. Cellular debris was detected using forward and side scatter selecting against the smallest particles 1µm or less. Cells were sorted based on detection using 510 530nm and 575 595nm filters corresponding to FL1 and FL2 in Figure 1D respectively. When excited by the 488 nm laser the autofluorescence of iridophores is clearly detectable in these channels as a group of cells extending at a 45 degree line in the upper right quadrant. Melanocytes and RPE do not autofluoresce with this intensity when excited by the 488nm laser and cluster at the lower left of the FACS plot. Cells were collected into ice cold DPBS with 2% FCS and kept on ice until mRNA extraction. Pigment cell cDNA library construction was as follows. For mRNA extraction the Dynabeads® mRNA DIRECT Kit Invitrogen was used per manufacturer's instructions. Following mRNA elution from the Dynabeads first strand cDNA synthesis was performed using MMLV reverse transcriptase Clontech using an anchored polyT primer tailed with a universal primer sequence See Table S3 for primer sequences and Figure 2 for pigment cell cDNA library construction overview. A universal primer sequence was also added to the three prime end of the first strand by template switching allowing for PCR amplification of the resultant cDNA [43 44]. Following PCR amplification using the high fidelity polymerase LA Taq TaKaRa PCR cycle: 95C for 1 minute followed by 20 cycles of 98C for 25 seconds 60C for 1 minute 68C for 20 minutes cDNA was digested with AluI and RsaI restriction enzymes NEB. Blunt end enzymatic fragmentation of cDNA was used instead of sonication and gel extraction to minimize loss of sample material and eliminate the end repair step of Illumina library preparation. Since this reduced representation strategy might miss short cDNAs that lack both restriction sites we sought to avoid this by including enzyme recognition sites within the cDNA amplification primers. This allows for the inclusion of short cDNAs in our libraries. Standard Illumina library preparations followed performed by the Genome Technology Access Center GTAC at Washington University in St. Louis http://gtac.wustl.edu. In brief a single A was added to the 3’ end of each strand Y adapters ligated and library enrichment PCR performed followed by gel extraction size selection for fragments ranging from 200 400 base pairs in length. Illumina library construction of pooled 3dpf embryos was performed by GTAC from total RNA extracted with Trizol reagent as previously described [45]. No PCR amplification of whole embryo cDNA was performed prior to Illumina adapter ligation and library enrichment. Sequencing was performed on the GAIIX Illumina platform.,GEO Accession:GSM1129623,RNA-Seq,TRANSCRIPTOMIC,cDNA,SINGLE,ILLUMINA,Illumina HiSeq 2000,,SRP021517,,,dm_77h_FM_351_ATT.fq.bz2,fastq,194385384.0,5399594.0,GSM1129623 r1,0:36,A:45805148;C:47931006;G:41165284;T:59482433;N:1513,36,,,,45805148,47931006,41165284,59482433,1513,SRX271961,SRS416257,SRA074390,GEO,"Rob Mitra, Genetics, Washington University",1,0.77748,,0.07764,,0.87687,,0.51575,,36,,B,,usable mapping rate,illumina,hiseq_era,3prime,poly_a,unknown,bulk,unknown,unknown,,United States,2013-04-25,Larval,Larval,Skin,Surface Structure
36715,SRR835164,SRX271960,SRS416256,SRP021517,PRJNA198908,Gene Expression Analysis of Zebrafish Melanocytes Iridophores and Retinal Pigmented Epithelium Reveals Indicators of Biological Function and Developmental Origin,GSE46387,Transcriptome Analysis,In order to facilitate understanding of pigment cell biology we developed a method to concomitantly purify melanocytes iridophores and retinal pigmented epithelium from zebrafish and analyzed their transcriptomes. Comparing expression data from these cell types and whole embryos allowed us to reveal gene expression co enrichment in melanocytes and retinal pigmented epithelium as well as in melanocytes and iridophores. We found 214 genes co enriched in melanocytes and retinal pigmented epithelium indicating the shared functions of melanin producing cells. We found 62 genes significantly co enriched in melanocytes and iridophores illustrative of their shared developmental origins from the neural crest. This is also the first analysis of the iridophore transcriptome. Gene expression analysis for iridophores revealed extensive enrichment of specific enzymes to coordinate production of their guanine based reflective pigment. We speculate the coordinated upregulation of specific enzymes from several metabolic pathways recycles the rate limiting substrate for purine synthesis phosphoribosyl pyrophosphate thus constituting a guanine cycle. The purification procedure and expression analysis described here along with the accompanying transcriptome wide expression data provide the first mRNA sequencing data for multiple purified zebrafish pigment cell types and will be a useful resource for further studies of pigment cell biology. Overall design: mRNA profiles of zebrafish pigment cells were generated using Illumina GAIIX sequencing,,pubmed:23874447,,dm 77h 52 440,GSM1129622,,tissue:melanocytes|hpf,dm 77h 52 440,Align sequences using Novoalign to cDNA database Calculate RPKMs from Novoalign output using Perl Genome build: Non redundant database of 25 102 cDNAs generated by Higdon et al 2013 based on NCBI's RefSeq build from 8/29/2012 current RefSeq available at ftp://ftp.ncbi.nlm.nih.gov/refseq/D rerio/mRNA Prot/zebrafish.rna.fna.gz Supplementary files format and content: Excell file containing RPKMs of each library,melanocytes,,This study was carried out in accordance with the Washington University Animal Use Committee guidelines under approved protocol #20110236. Zebrafish were reared and bred according to standard protocols. The fish used in this study were homozygous for a temperature sensitive allele of micropthalmia transcription factor mitfavc7. This mutant facilitated the collection of RPE as mitfa is not required for RPE development in zebrafish. Melanocytes iridophores and RPE develop normally at 25°C in mitfavc7. When held at 32°C the neural crest derived melanocytes do not develop but RPE and iridophores develop normally. All melanocyte and iridophore samples were incubated at 25°C prior to collection. Fish were anesthetized with Tricaine rinsed with Ca Mg DPBS Sigma D8537 and immersed in 100mL TrypLE Express Invitrogen 12604039 per 1000 fish. Fish were incubated at 37°C and shaken at 100rpm for 15 20 minutes followed by trituration with a Pasteur pipette to remove eyes from larva. post separation of eyes and larva each group was placed in TrypLE Express and shaken at 100rpm at 37°C for 1 1.5 hr. Dissociated cells were filtered through a 120uM screen into 50 mL tubes. Remaining intact tissue was triturated 10 20 times and again filtered through a 120uM screen into the dissociated cells. Dissociated cells were pelleted in a swinging bucket rotor Eppendorf 5810 R at 500 relative centrifugal force rcf for 5 minutes at 4°C then resuspended in 1mL cold isotonic Percoll Sigma P1644 by gentle pipetting. Isotonic Percoll was prepared by mixing 1 part 10X PBS with 9 parts Percoll. Resuspended cells were transferred to 1.6mL Eppendorf tubes and spun at 2000rcf for 5 minutes at 4°C in a swinging bucket rotor for isopycnic separation. Pigment cells in the pellet were then resuspended in 400µL of ice cold DPBS with 2% fetal calf serum FCS and placed onto preformed Percoll density gradients. Preformed gradients were prepared via centrifugation of 1mL aliquots of isotonic Percoll in 1.6mL tubes at 10 000rcf for 15 minutes at 4°C in a fixed angle micro centrifuge Eppendorf 5415 R. Tubes containing preformed Percoll gradients with overlying cell suspensions were centrifuged in a swinging bucket rotor at 2000rcf for 10 minutes at 4°C. Following centrifugation overlying Percoll was aspirated leaving the final 100µL containing the pigment cell pellet. Cells were resuspended with 50µL of cold DPBS with 2% FCS and transferred to a clean 1.6mL tube containing 500µL of cold DPBS with 2% FCS and kept on ice until mRNA extraction or FACS. FACS We used the inherent properties of the pigmented cells to perform Fluorescence Activated Cell Sorting FACS. Following resuspension in 500µL cold DPBS with 2% FCS the enriched cell populations were screened through a 30uM cell filter Partec 04 0042 2316. Cells were analyzed and sorted with a Dako MoFlo cell sorter using a 120uM nozzle at a drop drive DD frequency of 22390Hz. Cells were illuminated using a 488 nm laser. Cells were gated on two attributes to separate cells from each other and from cellular debris. Cellular debris was detected using forward and side scatter selecting against the smallest particles 1µm or less. Cells were sorted based on detection using 510 530nm and 575 595nm filters corresponding to FL1 and FL2 in Figure 1D respectively. When excited by the 488 nm laser the autofluorescence of iridophores is clearly detectable in these channels as a group of cells extending at a 45 degree line in the upper right quadrant. Melanocytes and RPE do not autofluoresce with this intensity when excited by the 488nm laser and cluster at the lower left of the FACS plot. Cells were collected into ice cold DPBS with 2% FCS and kept on ice until mRNA extraction. Pigment cell cDNA library construction was as follows. For mRNA extraction the Dynabeads® mRNA DIRECT Kit Invitrogen was used per manufacturer's instructions. Following mRNA elution from the Dynabeads first strand cDNA synthesis was performed using MMLV reverse transcriptase Clontech using an anchored polyT primer tailed with a universal primer sequence See Table S3 for primer sequences and Figure 2 for pigment cell cDNA library construction overview. A universal primer sequence was also added to the three prime end of the first strand by template switching allowing for PCR amplification of the resultant cDNA [43 44]. Following PCR amplification using the high fidelity polymerase LA Taq TaKaRa PCR cycle: 95C for 1 minute followed by 20 cycles of 98C for 25 seconds 60C for 1 minute 68C for 20 minutes cDNA was digested with AluI and RsaI restriction enzymes NEB. Blunt end enzymatic fragmentation of cDNA was used instead of sonication and gel extraction to minimize loss of sample material and eliminate the end repair step of Illumina library preparation. Since this reduced representation strategy might miss short cDNAs that lack both restriction sites we sought to avoid this by including enzyme recognition sites within the cDNA amplification primers. This allows for the inclusion of short cDNAs in our libraries. Standard Illumina library preparations followed performed by the Genome Technology Access Center GTAC at Washington University in St. Louis http://gtac.wustl.edu. In brief a single A was added to the 3’ end of each strand Y adapters ligated and library enrichment PCR performed followed by gel extraction size selection for fragments ranging from 200 400 base pairs in length. Illumina library construction of pooled 3dpf embryos was performed by GTAC from total RNA extracted with Trizol reagent as previously described [45]. No PCR amplification of whole embryo cDNA was performed prior to Illumina adapter ligation and library enrichment. Sequencing was performed on the GAIIX Illumina platform.,,hpf,GSM1129622,GSM1129622: dm 77h 52 440; Danio rerio; RNA Seq,GSM1129622 1,,1,This study was carried out in accordance with the Washington University Animal Use Committee guidelines under approved protocol #20110236. Zebrafish were reared and bred according to standard protocols. The fish used in this study were homozygous for a temperature sensitive allele of micropthalmia transcription factor mitfavc7. This mutant facilitated the collection of RPE as mitfa is not required for RPE development in zebrafish. Melanocytes iridophores and RPE develop normally at 25°C in mitfavc7. When held at 32°C the neural crest derived melanocytes do not develop but RPE and iridophores develop normally. All melanocyte and iridophore samples were incubated at 25°C prior to collection. Fish were anesthetized with Tricaine rinsed with Ca Mg DPBS Sigma D8537 and immersed in 100mL TrypLE Express Invitrogen 12604039 per 1000 fish. Fish were incubated at 37°C and shaken at 100rpm for 15 20 minutes followed by trituration with a Pasteur pipette to remove eyes from larva. post separation of eyes and larva each group was placed in TrypLE Express and shaken at 100rpm at 37°C for 1 1.5 hr. Dissociated cells were filtered through a 120uM screen into 50 mL tubes. Remaining intact tissue was triturated 10 20 times and again filtered through a 120uM screen into the dissociated cells. Dissociated cells were pelleted in a swinging bucket rotor Eppendorf 5810 R at 500 relative centrifugal force rcf for 5 minutes at 4°C then resuspended in 1mL cold isotonic Percoll Sigma P1644 by gentle pipetting. Isotonic Percoll was prepared by mixing 1 part 10X PBS with 9 parts Percoll. Resuspended cells were transferred to 1.6mL Eppendorf tubes and spun at 2000rcf for 5 minutes at 4°C in a swinging bucket rotor for isopycnic separation. Pigment cells in the pellet were then resuspended in 400µL of ice cold DPBS with 2% fetal calf serum FCS and placed onto preformed Percoll density gradients. Preformed gradients were prepared via centrifugation of 1mL aliquots of isotonic Percoll in 1.6mL tubes at 10 000rcf for 15 minutes at 4°C in a fixed angle micro centrifuge Eppendorf 5415 R. Tubes containing preformed Percoll gradients with overlying cell suspensions were centrifuged in a swinging bucket rotor at 2000rcf for 10 minutes at 4°C. Following centrifugation overlying Percoll was aspirated leaving the final 100µL containing the pigment cell pellet. Cells were resuspended with 50µL of cold DPBS with 2% FCS and transferred to a clean 1.6mL tube containing 500µL of cold DPBS with 2% FCS and kept on ice until mRNA extraction or FACS. FACS We used the inherent properties of the pigmented cells to perform Fluorescence Activated Cell Sorting FACS. Following resuspension in 500µL cold DPBS with 2% FCS the enriched cell populations were screened through a 30uM cell filter Partec 04 0042 2316. Cells were analyzed and sorted with a Dako MoFlo cell sorter using a 120uM nozzle at a drop drive DD frequency of 22390Hz. Cells were illuminated using a 488 nm laser. Cells were gated on two attributes to separate cells from each other and from cellular debris. Cellular debris was detected using forward and side scatter selecting against the smallest particles 1µm or less. Cells were sorted based on detection using 510 530nm and 575 595nm filters corresponding to FL1 and FL2 in Figure 1D respectively. When excited by the 488 nm laser the autofluorescence of iridophores is clearly detectable in these channels as a group of cells extending at a 45 degree line in the upper right quadrant. Melanocytes and RPE do not autofluoresce with this intensity when excited by the 488nm laser and cluster at the lower left of the FACS plot. Cells were collected into ice cold DPBS with 2% FCS and kept on ice until mRNA extraction. Pigment cell cDNA library construction was as follows. For mRNA extraction the Dynabeads® mRNA DIRECT Kit Invitrogen was used per manufacturer's instructions. Following mRNA elution from the Dynabeads first strand cDNA synthesis was performed using MMLV reverse transcriptase Clontech using an anchored polyT primer tailed with a universal primer sequence See Table S3 for primer sequences and Figure 2 for pigment cell cDNA library construction overview. A universal primer sequence was also added to the three prime end of the first strand by template switching allowing for PCR amplification of the resultant cDNA [43 44]. Following PCR amplification using the high fidelity polymerase LA Taq TaKaRa PCR cycle: 95C for 1 minute followed by 20 cycles of 98C for 25 seconds 60C for 1 minute 68C for 20 minutes cDNA was digested with AluI and RsaI restriction enzymes NEB. Blunt end enzymatic fragmentation of cDNA was used instead of sonication and gel extraction to minimize loss of sample material and eliminate the end repair step of Illumina library preparation. Since this reduced representation strategy might miss short cDNAs that lack both restriction sites we sought to avoid this by including enzyme recognition sites within the cDNA amplification primers. This allows for the inclusion of short cDNAs in our libraries. Standard Illumina library preparations followed performed by the Genome Technology Access Center GTAC at Washington University in St. Louis http://gtac.wustl.edu. In brief a single A was added to the 3’ end of each strand Y adapters ligated and library enrichment PCR performed followed by gel extraction size selection for fragments ranging from 200 400 base pairs in length. Illumina library construction of pooled 3dpf embryos was performed by GTAC from total RNA extracted with Trizol reagent as previously described [45]. No PCR amplification of whole embryo cDNA was performed prior to Illumina adapter ligation and library enrichment. Sequencing was performed on the GAIIX Illumina platform.,GEO Accession:GSM1129622,RNA-Seq,TRANSCRIPTOMIC,cDNA,SINGLE,ILLUMINA,Illumina HiSeq 2000,,SRP021517,,,dm_77h_52_440.fq.bz2,fastq,105047586.0,2501133.0,GSM1129622 r1,0:42,A:24711000;C:26459041;G:24869198;T:29001957;N:6390,42,,,,24711000,26459041,24869198,29001957,6390,SRX271960,SRS416256,SRA074390,GEO,"Rob Mitra, Genetics, Washington University",1,0.88862,,0.09219,,0.83611,,0.55476,,42,,B,,usable mapping rate,illumina,hiseq_era,3prime,poly_a,unknown,bulk,unknown,unknown,,United States,2013-04-25,Larval,Larval,Skin,Surface Structure
36716,SRR835163,SRX271959,SRS416255,SRP021517,PRJNA198908,Gene Expression Analysis of Zebrafish Melanocytes Iridophores and Retinal Pigmented Epithelium Reveals Indicators of Biological Function and Developmental Origin,GSE46387,Transcriptome Analysis,In order to facilitate understanding of pigment cell biology we developed a method to concomitantly purify melanocytes iridophores and retinal pigmented epithelium from zebrafish and analyzed their transcriptomes. Comparing expression data from these cell types and whole embryos allowed us to reveal gene expression co enrichment in melanocytes and retinal pigmented epithelium as well as in melanocytes and iridophores. We found 214 genes co enriched in melanocytes and retinal pigmented epithelium indicating the shared functions of melanin producing cells. We found 62 genes significantly co enriched in melanocytes and iridophores illustrative of their shared developmental origins from the neural crest. This is also the first analysis of the iridophore transcriptome. Gene expression analysis for iridophores revealed extensive enrichment of specific enzymes to coordinate production of their guanine based reflective pigment. We speculate the coordinated upregulation of specific enzymes from several metabolic pathways recycles the rate limiting substrate for purine synthesis phosphoribosyl pyrophosphate thus constituting a guanine cycle. The purification procedure and expression analysis described here along with the accompanying transcriptome wide expression data provide the first mRNA sequencing data for multiple purified zebrafish pigment cell types and will be a useful resource for further studies of pigment cell biology. Overall design: mRNA profiles of zebrafish pigment cells were generated using Illumina GAIIX sequencing,,pubmed:23874447,,dm 77h 43 440,GSM1129621,,tissue:melanocytes|hpf,dm 77h 43 440,Align sequences using Novoalign to cDNA database Calculate RPKMs from Novoalign output using Perl Genome build: Non redundant database of 25 102 cDNAs generated by Higdon et al 2013 based on NCBI's RefSeq build from 8/29/2012 current RefSeq available at ftp://ftp.ncbi.nlm.nih.gov/refseq/D rerio/mRNA Prot/zebrafish.rna.fna.gz Supplementary files format and content: Excell file containing RPKMs of each library,melanocytes,,This study was carried out in accordance with the Washington University Animal Use Committee guidelines under approved protocol #20110236. Zebrafish were reared and bred according to standard protocols. The fish used in this study were homozygous for a temperature sensitive allele of micropthalmia transcription factor mitfavc7. This mutant facilitated the collection of RPE as mitfa is not required for RPE development in zebrafish. Melanocytes iridophores and RPE develop normally at 25°C in mitfavc7. When held at 32°C the neural crest derived melanocytes do not develop but RPE and iridophores develop normally. All melanocyte and iridophore samples were incubated at 25°C prior to collection. Fish were anesthetized with Tricaine rinsed with Ca Mg DPBS Sigma D8537 and immersed in 100mL TrypLE Express Invitrogen 12604039 per 1000 fish. Fish were incubated at 37°C and shaken at 100rpm for 15 20 minutes followed by trituration with a Pasteur pipette to remove eyes from larva. post separation of eyes and larva each group was placed in TrypLE Express and shaken at 100rpm at 37°C for 1 1.5 hr. Dissociated cells were filtered through a 120uM screen into 50 mL tubes. Remaining intact tissue was triturated 10 20 times and again filtered through a 120uM screen into the dissociated cells. Dissociated cells were pelleted in a swinging bucket rotor Eppendorf 5810 R at 500 relative centrifugal force rcf for 5 minutes at 4°C then resuspended in 1mL cold isotonic Percoll Sigma P1644 by gentle pipetting. Isotonic Percoll was prepared by mixing 1 part 10X PBS with 9 parts Percoll. Resuspended cells were transferred to 1.6mL Eppendorf tubes and spun at 2000rcf for 5 minutes at 4°C in a swinging bucket rotor for isopycnic separation. Pigment cells in the pellet were then resuspended in 400µL of ice cold DPBS with 2% fetal calf serum FCS and placed onto preformed Percoll density gradients. Preformed gradients were prepared via centrifugation of 1mL aliquots of isotonic Percoll in 1.6mL tubes at 10 000rcf for 15 minutes at 4°C in a fixed angle micro centrifuge Eppendorf 5415 R. Tubes containing preformed Percoll gradients with overlying cell suspensions were centrifuged in a swinging bucket rotor at 2000rcf for 10 minutes at 4°C. Following centrifugation overlying Percoll was aspirated leaving the final 100µL containing the pigment cell pellet. Cells were resuspended with 50µL of cold DPBS with 2% FCS and transferred to a clean 1.6mL tube containing 500µL of cold DPBS with 2% FCS and kept on ice until mRNA extraction or FACS. FACS We used the inherent properties of the pigmented cells to perform Fluorescence Activated Cell Sorting FACS. Following resuspension in 500µL cold DPBS with 2% FCS the enriched cell populations were screened through a 30uM cell filter Partec 04 0042 2316. Cells were analyzed and sorted with a Dako MoFlo cell sorter using a 120uM nozzle at a drop drive DD frequency of 22390Hz. Cells were illuminated using a 488 nm laser. Cells were gated on two attributes to separate cells from each other and from cellular debris. Cellular debris was detected using forward and side scatter selecting against the smallest particles 1µm or less. Cells were sorted based on detection using 510 530nm and 575 595nm filters corresponding to FL1 and FL2 in Figure 1D respectively. When excited by the 488 nm laser the autofluorescence of iridophores is clearly detectable in these channels as a group of cells extending at a 45 degree line in the upper right quadrant. Melanocytes and RPE do not autofluoresce with this intensity when excited by the 488nm laser and cluster at the lower left of the FACS plot. Cells were collected into ice cold DPBS with 2% FCS and kept on ice until mRNA extraction. Pigment cell cDNA library construction was as follows. For mRNA extraction the Dynabeads® mRNA DIRECT Kit Invitrogen was used per manufacturer's instructions. Following mRNA elution from the Dynabeads first strand cDNA synthesis was performed using MMLV reverse transcriptase Clontech using an anchored polyT primer tailed with a universal primer sequence See Table S3 for primer sequences and Figure 2 for pigment cell cDNA library construction overview. A universal primer sequence was also added to the three prime end of the first strand by template switching allowing for PCR amplification of the resultant cDNA [43 44]. Following PCR amplification using the high fidelity polymerase LA Taq TaKaRa PCR cycle: 95C for 1 minute followed by 20 cycles of 98C for 25 seconds 60C for 1 minute 68C for 20 minutes cDNA was digested with AluI and RsaI restriction enzymes NEB. Blunt end enzymatic fragmentation of cDNA was used instead of sonication and gel extraction to minimize loss of sample material and eliminate the end repair step of Illumina library preparation. Since this reduced representation strategy might miss short cDNAs that lack both restriction sites we sought to avoid this by including enzyme recognition sites within the cDNA amplification primers. This allows for the inclusion of short cDNAs in our libraries. Standard Illumina library preparations followed performed by the Genome Technology Access Center GTAC at Washington University in St. Louis http://gtac.wustl.edu. In brief a single A was added to the 3’ end of each strand Y adapters ligated and library enrichment PCR performed followed by gel extraction size selection for fragments ranging from 200 400 base pairs in length. Illumina library construction of pooled 3dpf embryos was performed by GTAC from total RNA extracted with Trizol reagent as previously described [45]. No PCR amplification of whole embryo cDNA was performed prior to Illumina adapter ligation and library enrichment. Sequencing was performed on the GAIIX Illumina platform.,,hpf,GSM1129621,GSM1129621: dm 77h 43 440; Danio rerio; RNA Seq,GSM1129621 1,,1,This study was carried out in accordance with the Washington University Animal Use Committee guidelines under approved protocol #20110236. Zebrafish were reared and bred according to standard protocols. The fish used in this study were homozygous for a temperature sensitive allele of micropthalmia transcription factor mitfavc7. This mutant facilitated the collection of RPE as mitfa is not required for RPE development in zebrafish. Melanocytes iridophores and RPE develop normally at 25°C in mitfavc7. When held at 32°C the neural crest derived melanocytes do not develop but RPE and iridophores develop normally. All melanocyte and iridophore samples were incubated at 25°C prior to collection. Fish were anesthetized with Tricaine rinsed with Ca Mg DPBS Sigma D8537 and immersed in 100mL TrypLE Express Invitrogen 12604039 per 1000 fish. Fish were incubated at 37°C and shaken at 100rpm for 15 20 minutes followed by trituration with a Pasteur pipette to remove eyes from larva. post separation of eyes and larva each group was placed in TrypLE Express and shaken at 100rpm at 37°C for 1 1.5 hr. Dissociated cells were filtered through a 120uM screen into 50 mL tubes. Remaining intact tissue was triturated 10 20 times and again filtered through a 120uM screen into the dissociated cells. Dissociated cells were pelleted in a swinging bucket rotor Eppendorf 5810 R at 500 relative centrifugal force rcf for 5 minutes at 4°C then resuspended in 1mL cold isotonic Percoll Sigma P1644 by gentle pipetting. Isotonic Percoll was prepared by mixing 1 part 10X PBS with 9 parts Percoll. Resuspended cells were transferred to 1.6mL Eppendorf tubes and spun at 2000rcf for 5 minutes at 4°C in a swinging bucket rotor for isopycnic separation. Pigment cells in the pellet were then resuspended in 400µL of ice cold DPBS with 2% fetal calf serum FCS and placed onto preformed Percoll density gradients. Preformed gradients were prepared via centrifugation of 1mL aliquots of isotonic Percoll in 1.6mL tubes at 10 000rcf for 15 minutes at 4°C in a fixed angle micro centrifuge Eppendorf 5415 R. Tubes containing preformed Percoll gradients with overlying cell suspensions were centrifuged in a swinging bucket rotor at 2000rcf for 10 minutes at 4°C. Following centrifugation overlying Percoll was aspirated leaving the final 100µL containing the pigment cell pellet. Cells were resuspended with 50µL of cold DPBS with 2% FCS and transferred to a clean 1.6mL tube containing 500µL of cold DPBS with 2% FCS and kept on ice until mRNA extraction or FACS. FACS We used the inherent properties of the pigmented cells to perform Fluorescence Activated Cell Sorting FACS. Following resuspension in 500µL cold DPBS with 2% FCS the enriched cell populations were screened through a 30uM cell filter Partec 04 0042 2316. Cells were analyzed and sorted with a Dako MoFlo cell sorter using a 120uM nozzle at a drop drive DD frequency of 22390Hz. Cells were illuminated using a 488 nm laser. Cells were gated on two attributes to separate cells from each other and from cellular debris. Cellular debris was detected using forward and side scatter selecting against the smallest particles 1µm or less. Cells were sorted based on detection using 510 530nm and 575 595nm filters corresponding to FL1 and FL2 in Figure 1D respectively. When excited by the 488 nm laser the autofluorescence of iridophores is clearly detectable in these channels as a group of cells extending at a 45 degree line in the upper right quadrant. Melanocytes and RPE do not autofluoresce with this intensity when excited by the 488nm laser and cluster at the lower left of the FACS plot. Cells were collected into ice cold DPBS with 2% FCS and kept on ice until mRNA extraction. Pigment cell cDNA library construction was as follows. For mRNA extraction the Dynabeads® mRNA DIRECT Kit Invitrogen was used per manufacturer's instructions. Following mRNA elution from the Dynabeads first strand cDNA synthesis was performed using MMLV reverse transcriptase Clontech using an anchored polyT primer tailed with a universal primer sequence See Table S3 for primer sequences and Figure 2 for pigment cell cDNA library construction overview. A universal primer sequence was also added to the three prime end of the first strand by template switching allowing for PCR amplification of the resultant cDNA [43 44]. Following PCR amplification using the high fidelity polymerase LA Taq TaKaRa PCR cycle: 95C for 1 minute followed by 20 cycles of 98C for 25 seconds 60C for 1 minute 68C for 20 minutes cDNA was digested with AluI and RsaI restriction enzymes NEB. Blunt end enzymatic fragmentation of cDNA was used instead of sonication and gel extraction to minimize loss of sample material and eliminate the end repair step of Illumina library preparation. Since this reduced representation strategy might miss short cDNAs that lack both restriction sites we sought to avoid this by including enzyme recognition sites within the cDNA amplification primers. This allows for the inclusion of short cDNAs in our libraries. Standard Illumina library preparations followed performed by the Genome Technology Access Center GTAC at Washington University in St. Louis http://gtac.wustl.edu. In brief a single A was added to the 3’ end of each strand Y adapters ligated and library enrichment PCR performed followed by gel extraction size selection for fragments ranging from 200 400 base pairs in length. Illumina library construction of pooled 3dpf embryos was performed by GTAC from total RNA extracted with Trizol reagent as previously described [45]. No PCR amplification of whole embryo cDNA was performed prior to Illumina adapter ligation and library enrichment. Sequencing was performed on the GAIIX Illumina platform.,GEO Accession:GSM1129621,RNA-Seq,TRANSCRIPTOMIC,cDNA,SINGLE,ILLUMINA,Illumina HiSeq 2000,,SRP021517,,,dm_77h_43_440.fq.bz2,fastq,371553084.0,8846502.0,GSM1129621 r1,0:42,A:84994407;C:91269417;G:87188701;T:108077735;N:22824,42,,,,84994407,91269417,87188701,108077735,22824,SRX271959,SRS416255,SRA074390,GEO,"Rob Mitra, Genetics, Washington University",1,0.86495,,0.09748,,0.83684,,0.52833,,42,,B,,usable mapping rate,illumina,hiseq_era,3prime,poly_a,unknown,bulk,unknown,unknown,,United States,2013-04-25,Larval,Larval,Skin,Surface Structure
36719,SRR835160,SRX271956,SRS416252,SRP021517,PRJNA198908,Gene Expression Analysis of Zebrafish Melanocytes Iridophores and Retinal Pigmented Epithelium Reveals Indicators of Biological Function and Developmental Origin,GSE46387,Transcriptome Analysis,In order to facilitate understanding of pigment cell biology we developed a method to concomitantly purify melanocytes iridophores and retinal pigmented epithelium from zebrafish and analyzed their transcriptomes. Comparing expression data from these cell types and whole embryos allowed us to reveal gene expression co enrichment in melanocytes and retinal pigmented epithelium as well as in melanocytes and iridophores. We found 214 genes co enriched in melanocytes and retinal pigmented epithelium indicating the shared functions of melanin producing cells. We found 62 genes significantly co enriched in melanocytes and iridophores illustrative of their shared developmental origins from the neural crest. This is also the first analysis of the iridophore transcriptome. Gene expression analysis for iridophores revealed extensive enrichment of specific enzymes to coordinate production of their guanine based reflective pigment. We speculate the coordinated upregulation of specific enzymes from several metabolic pathways recycles the rate limiting substrate for purine synthesis phosphoribosyl pyrophosphate thus constituting a guanine cycle. The purification procedure and expression analysis described here along with the accompanying transcriptome wide expression data provide the first mRNA sequencing data for multiple purified zebrafish pigment cell types and will be a useful resource for further studies of pigment cell biology. Overall design: mRNA profiles of zebrafish pigment cells were generated using Illumina GAIIX sequencing,,pubmed:23874447,,dm 77h 28 436,GSM1129618,,tissue:melanocytes|hpf,dm 77h 28 436,Align sequences using Novoalign to cDNA database Calculate RPKMs from Novoalign output using Perl Genome build: Non redundant database of 25 102 cDNAs generated by Higdon et al 2013 based on NCBI's RefSeq build from 8/29/2012 current RefSeq available at ftp://ftp.ncbi.nlm.nih.gov/refseq/D rerio/mRNA Prot/zebrafish.rna.fna.gz Supplementary files format and content: Excell file containing RPKMs of each library,melanocytes,,This study was carried out in accordance with the Washington University Animal Use Committee guidelines under approved protocol #20110236. Zebrafish were reared and bred according to standard protocols. The fish used in this study were homozygous for a temperature sensitive allele of micropthalmia transcription factor mitfavc7. This mutant facilitated the collection of RPE as mitfa is not required for RPE development in zebrafish. Melanocytes iridophores and RPE develop normally at 25°C in mitfavc7. When held at 32°C the neural crest derived melanocytes do not develop but RPE and iridophores develop normally. All melanocyte and iridophore samples were incubated at 25°C prior to collection. Fish were anesthetized with Tricaine rinsed with Ca Mg DPBS Sigma D8537 and immersed in 100mL TrypLE Express Invitrogen 12604039 per 1000 fish. Fish were incubated at 37°C and shaken at 100rpm for 15 20 minutes followed by trituration with a Pasteur pipette to remove eyes from larva. post separation of eyes and larva each group was placed in TrypLE Express and shaken at 100rpm at 37°C for 1 1.5 hr. Dissociated cells were filtered through a 120uM screen into 50 mL tubes. Remaining intact tissue was triturated 10 20 times and again filtered through a 120uM screen into the dissociated cells. Dissociated cells were pelleted in a swinging bucket rotor Eppendorf 5810 R at 500 relative centrifugal force rcf for 5 minutes at 4°C then resuspended in 1mL cold isotonic Percoll Sigma P1644 by gentle pipetting. Isotonic Percoll was prepared by mixing 1 part 10X PBS with 9 parts Percoll. Resuspended cells were transferred to 1.6mL Eppendorf tubes and spun at 2000rcf for 5 minutes at 4°C in a swinging bucket rotor for isopycnic separation. Pigment cells in the pellet were then resuspended in 400µL of ice cold DPBS with 2% fetal calf serum FCS and placed onto preformed Percoll density gradients. Preformed gradients were prepared via centrifugation of 1mL aliquots of isotonic Percoll in 1.6mL tubes at 10 000rcf for 15 minutes at 4°C in a fixed angle micro centrifuge Eppendorf 5415 R. Tubes containing preformed Percoll gradients with overlying cell suspensions were centrifuged in a swinging bucket rotor at 2000rcf for 10 minutes at 4°C. Following centrifugation overlying Percoll was aspirated leaving the final 100µL containing the pigment cell pellet. Cells were resuspended with 50µL of cold DPBS with 2% FCS and transferred to a clean 1.6mL tube containing 500µL of cold DPBS with 2% FCS and kept on ice until mRNA extraction or FACS. FACS We used the inherent properties of the pigmented cells to perform Fluorescence Activated Cell Sorting FACS. Following resuspension in 500µL cold DPBS with 2% FCS the enriched cell populations were screened through a 30uM cell filter Partec 04 0042 2316. Cells were analyzed and sorted with a Dako MoFlo cell sorter using a 120uM nozzle at a drop drive DD frequency of 22390Hz. Cells were illuminated using a 488 nm laser. Cells were gated on two attributes to separate cells from each other and from cellular debris. Cellular debris was detected using forward and side scatter selecting against the smallest particles 1µm or less. Cells were sorted based on detection using 510 530nm and 575 595nm filters corresponding to FL1 and FL2 in Figure 1D respectively. When excited by the 488 nm laser the autofluorescence of iridophores is clearly detectable in these channels as a group of cells extending at a 45 degree line in the upper right quadrant. Melanocytes and RPE do not autofluoresce with this intensity when excited by the 488nm laser and cluster at the lower left of the FACS plot. Cells were collected into ice cold DPBS with 2% FCS and kept on ice until mRNA extraction. Pigment cell cDNA library construction was as follows. For mRNA extraction the Dynabeads® mRNA DIRECT Kit Invitrogen was used per manufacturer's instructions. Following mRNA elution from the Dynabeads first strand cDNA synthesis was performed using MMLV reverse transcriptase Clontech using an anchored polyT primer tailed with a universal primer sequence See Table S3 for primer sequences and Figure 2 for pigment cell cDNA library construction overview. A universal primer sequence was also added to the three prime end of the first strand by template switching allowing for PCR amplification of the resultant cDNA [43 44]. Following PCR amplification using the high fidelity polymerase LA Taq TaKaRa PCR cycle: 95C for 1 minute followed by 20 cycles of 98C for 25 seconds 60C for 1 minute 68C for 20 minutes cDNA was digested with AluI and RsaI restriction enzymes NEB. Blunt end enzymatic fragmentation of cDNA was used instead of sonication and gel extraction to minimize loss of sample material and eliminate the end repair step of Illumina library preparation. Since this reduced representation strategy might miss short cDNAs that lack both restriction sites we sought to avoid this by including enzyme recognition sites within the cDNA amplification primers. This allows for the inclusion of short cDNAs in our libraries. Standard Illumina library preparations followed performed by the Genome Technology Access Center GTAC at Washington University in St. Louis http://gtac.wustl.edu. In brief a single A was added to the 3’ end of each strand Y adapters ligated and library enrichment PCR performed followed by gel extraction size selection for fragments ranging from 200 400 base pairs in length. Illumina library construction of pooled 3dpf embryos was performed by GTAC from total RNA extracted with Trizol reagent as previously described [45]. No PCR amplification of whole embryo cDNA was performed prior to Illumina adapter ligation and library enrichment. Sequencing was performed on the GAIIX Illumina platform.,,hpf,GSM1129618,GSM1129618: dm 77h 28 436; Danio rerio; RNA Seq,GSM1129618 1,,1,This study was carried out in accordance with the Washington University Animal Use Committee guidelines under approved protocol #20110236. Zebrafish were reared and bred according to standard protocols. The fish used in this study were homozygous for a temperature sensitive allele of micropthalmia transcription factor mitfavc7. This mutant facilitated the collection of RPE as mitfa is not required for RPE development in zebrafish. Melanocytes iridophores and RPE develop normally at 25°C in mitfavc7. When held at 32°C the neural crest derived melanocytes do not develop but RPE and iridophores develop normally. All melanocyte and iridophore samples were incubated at 25°C prior to collection. Fish were anesthetized with Tricaine rinsed with Ca Mg DPBS Sigma D8537 and immersed in 100mL TrypLE Express Invitrogen 12604039 per 1000 fish. Fish were incubated at 37°C and shaken at 100rpm for 15 20 minutes followed by trituration with a Pasteur pipette to remove eyes from larva. post separation of eyes and larva each group was placed in TrypLE Express and shaken at 100rpm at 37°C for 1 1.5 hr. Dissociated cells were filtered through a 120uM screen into 50 mL tubes. Remaining intact tissue was triturated 10 20 times and again filtered through a 120uM screen into the dissociated cells. Dissociated cells were pelleted in a swinging bucket rotor Eppendorf 5810 R at 500 relative centrifugal force rcf for 5 minutes at 4°C then resuspended in 1mL cold isotonic Percoll Sigma P1644 by gentle pipetting. Isotonic Percoll was prepared by mixing 1 part 10X PBS with 9 parts Percoll. Resuspended cells were transferred to 1.6mL Eppendorf tubes and spun at 2000rcf for 5 minutes at 4°C in a swinging bucket rotor for isopycnic separation. Pigment cells in the pellet were then resuspended in 400µL of ice cold DPBS with 2% fetal calf serum FCS and placed onto preformed Percoll density gradients. Preformed gradients were prepared via centrifugation of 1mL aliquots of isotonic Percoll in 1.6mL tubes at 10 000rcf for 15 minutes at 4°C in a fixed angle micro centrifuge Eppendorf 5415 R. Tubes containing preformed Percoll gradients with overlying cell suspensions were centrifuged in a swinging bucket rotor at 2000rcf for 10 minutes at 4°C. Following centrifugation overlying Percoll was aspirated leaving the final 100µL containing the pigment cell pellet. Cells were resuspended with 50µL of cold DPBS with 2% FCS and transferred to a clean 1.6mL tube containing 500µL of cold DPBS with 2% FCS and kept on ice until mRNA extraction or FACS. FACS We used the inherent properties of the pigmented cells to perform Fluorescence Activated Cell Sorting FACS. Following resuspension in 500µL cold DPBS with 2% FCS the enriched cell populations were screened through a 30uM cell filter Partec 04 0042 2316. Cells were analyzed and sorted with a Dako MoFlo cell sorter using a 120uM nozzle at a drop drive DD frequency of 22390Hz. Cells were illuminated using a 488 nm laser. Cells were gated on two attributes to separate cells from each other and from cellular debris. Cellular debris was detected using forward and side scatter selecting against the smallest particles 1µm or less. Cells were sorted based on detection using 510 530nm and 575 595nm filters corresponding to FL1 and FL2 in Figure 1D respectively. When excited by the 488 nm laser the autofluorescence of iridophores is clearly detectable in these channels as a group of cells extending at a 45 degree line in the upper right quadrant. Melanocytes and RPE do not autofluoresce with this intensity when excited by the 488nm laser and cluster at the lower left of the FACS plot. Cells were collected into ice cold DPBS with 2% FCS and kept on ice until mRNA extraction. Pigment cell cDNA library construction was as follows. For mRNA extraction the Dynabeads® mRNA DIRECT Kit Invitrogen was used per manufacturer's instructions. Following mRNA elution from the Dynabeads first strand cDNA synthesis was performed using MMLV reverse transcriptase Clontech using an anchored polyT primer tailed with a universal primer sequence See Table S3 for primer sequences and Figure 2 for pigment cell cDNA library construction overview. A universal primer sequence was also added to the three prime end of the first strand by template switching allowing for PCR amplification of the resultant cDNA [43 44]. Following PCR amplification using the high fidelity polymerase LA Taq TaKaRa PCR cycle: 95C for 1 minute followed by 20 cycles of 98C for 25 seconds 60C for 1 minute 68C for 20 minutes cDNA was digested with AluI and RsaI restriction enzymes NEB. Blunt end enzymatic fragmentation of cDNA was used instead of sonication and gel extraction to minimize loss of sample material and eliminate the end repair step of Illumina library preparation. Since this reduced representation strategy might miss short cDNAs that lack both restriction sites we sought to avoid this by including enzyme recognition sites within the cDNA amplification primers. This allows for the inclusion of short cDNAs in our libraries. Standard Illumina library preparations followed performed by the Genome Technology Access Center GTAC at Washington University in St. Louis http://gtac.wustl.edu. In brief a single A was added to the 3’ end of each strand Y adapters ligated and library enrichment PCR performed followed by gel extraction size selection for fragments ranging from 200 400 base pairs in length. Illumina library construction of pooled 3dpf embryos was performed by GTAC from total RNA extracted with Trizol reagent as previously described [45]. No PCR amplification of whole embryo cDNA was performed prior to Illumina adapter ligation and library enrichment. Sequencing was performed on the GAIIX Illumina platform.,GEO Accession:GSM1129618,RNA-Seq,TRANSCRIPTOMIC,cDNA,SINGLE,ILLUMINA,Illumina HiSeq 2000,,SRP021517,,,dm_77h_28_436_CACT.fq.bz2,fastq,214752678.0,5113159.0,GSM1129618 r1,0:42,A:50210098;C:62230664;G:49216487;T:52926929;N:168500,42,,,,50210098,62230664,49216487,52926929,168500,SRX271956,SRS416252,SRA074390,GEO,"Rob Mitra, Genetics, Washington University",1,0.80956,,0.02412,,0.87024,,0.62475,,42,,B,,usable mapping rate,illumina,hiseq_era,3prime,poly_a,unknown,bulk,unknown,unknown,,United States,2013-04-25,Larval,Larval,Skin,Surface Structure
36720,SRR835159,SRX271955,SRS416251,SRP021517,PRJNA198908,Gene Expression Analysis of Zebrafish Melanocytes Iridophores and Retinal Pigmented Epithelium Reveals Indicators of Biological Function and Developmental Origin,GSE46387,Transcriptome Analysis,In order to facilitate understanding of pigment cell biology we developed a method to concomitantly purify melanocytes iridophores and retinal pigmented epithelium from zebrafish and analyzed their transcriptomes. Comparing expression data from these cell types and whole embryos allowed us to reveal gene expression co enrichment in melanocytes and retinal pigmented epithelium as well as in melanocytes and iridophores. We found 214 genes co enriched in melanocytes and retinal pigmented epithelium indicating the shared functions of melanin producing cells. We found 62 genes significantly co enriched in melanocytes and iridophores illustrative of their shared developmental origins from the neural crest. This is also the first analysis of the iridophore transcriptome. Gene expression analysis for iridophores revealed extensive enrichment of specific enzymes to coordinate production of their guanine based reflective pigment. We speculate the coordinated upregulation of specific enzymes from several metabolic pathways recycles the rate limiting substrate for purine synthesis phosphoribosyl pyrophosphate thus constituting a guanine cycle. The purification procedure and expression analysis described here along with the accompanying transcriptome wide expression data provide the first mRNA sequencing data for multiple purified zebrafish pigment cell types and will be a useful resource for further studies of pigment cell biology. Overall design: mRNA profiles of zebrafish pigment cells were generated using Illumina GAIIX sequencing,,pubmed:23874447,,dm 77h 28 351,GSM1129617,,tissue:melanocytes|hpf,dm 77h 28 351,Align sequences using Novoalign to cDNA database Calculate RPKMs from Novoalign output using Perl Genome build: Non redundant database of 25 102 cDNAs generated by Higdon et al 2013 based on NCBI's RefSeq build from 8/29/2012 current RefSeq available at ftp://ftp.ncbi.nlm.nih.gov/refseq/D rerio/mRNA Prot/zebrafish.rna.fna.gz Supplementary files format and content: Excell file containing RPKMs of each library,melanocytes,,This study was carried out in accordance with the Washington University Animal Use Committee guidelines under approved protocol #20110236. Zebrafish were reared and bred according to standard protocols. The fish used in this study were homozygous for a temperature sensitive allele of micropthalmia transcription factor mitfavc7. This mutant facilitated the collection of RPE as mitfa is not required for RPE development in zebrafish. Melanocytes iridophores and RPE develop normally at 25°C in mitfavc7. When held at 32°C the neural crest derived melanocytes do not develop but RPE and iridophores develop normally. All melanocyte and iridophore samples were incubated at 25°C prior to collection. Fish were anesthetized with Tricaine rinsed with Ca Mg DPBS Sigma D8537 and immersed in 100mL TrypLE Express Invitrogen 12604039 per 1000 fish. Fish were incubated at 37°C and shaken at 100rpm for 15 20 minutes followed by trituration with a Pasteur pipette to remove eyes from larva. post separation of eyes and larva each group was placed in TrypLE Express and shaken at 100rpm at 37°C for 1 1.5 hr. Dissociated cells were filtered through a 120uM screen into 50 mL tubes. Remaining intact tissue was triturated 10 20 times and again filtered through a 120uM screen into the dissociated cells. Dissociated cells were pelleted in a swinging bucket rotor Eppendorf 5810 R at 500 relative centrifugal force rcf for 5 minutes at 4°C then resuspended in 1mL cold isotonic Percoll Sigma P1644 by gentle pipetting. Isotonic Percoll was prepared by mixing 1 part 10X PBS with 9 parts Percoll. Resuspended cells were transferred to 1.6mL Eppendorf tubes and spun at 2000rcf for 5 minutes at 4°C in a swinging bucket rotor for isopycnic separation. Pigment cells in the pellet were then resuspended in 400µL of ice cold DPBS with 2% fetal calf serum FCS and placed onto preformed Percoll density gradients. Preformed gradients were prepared via centrifugation of 1mL aliquots of isotonic Percoll in 1.6mL tubes at 10 000rcf for 15 minutes at 4°C in a fixed angle micro centrifuge Eppendorf 5415 R. Tubes containing preformed Percoll gradients with overlying cell suspensions were centrifuged in a swinging bucket rotor at 2000rcf for 10 minutes at 4°C. Following centrifugation overlying Percoll was aspirated leaving the final 100µL containing the pigment cell pellet. Cells were resuspended with 50µL of cold DPBS with 2% FCS and transferred to a clean 1.6mL tube containing 500µL of cold DPBS with 2% FCS and kept on ice until mRNA extraction or FACS. FACS We used the inherent properties of the pigmented cells to perform Fluorescence Activated Cell Sorting FACS. Following resuspension in 500µL cold DPBS with 2% FCS the enriched cell populations were screened through a 30uM cell filter Partec 04 0042 2316. Cells were analyzed and sorted with a Dako MoFlo cell sorter using a 120uM nozzle at a drop drive DD frequency of 22390Hz. Cells were illuminated using a 488 nm laser. Cells were gated on two attributes to separate cells from each other and from cellular debris. Cellular debris was detected using forward and side scatter selecting against the smallest particles 1µm or less. Cells were sorted based on detection using 510 530nm and 575 595nm filters corresponding to FL1 and FL2 in Figure 1D respectively. When excited by the 488 nm laser the autofluorescence of iridophores is clearly detectable in these channels as a group of cells extending at a 45 degree line in the upper right quadrant. Melanocytes and RPE do not autofluoresce with this intensity when excited by the 488nm laser and cluster at the lower left of the FACS plot. Cells were collected into ice cold DPBS with 2% FCS and kept on ice until mRNA extraction. Pigment cell cDNA library construction was as follows. For mRNA extraction the Dynabeads® mRNA DIRECT Kit Invitrogen was used per manufacturer's instructions. Following mRNA elution from the Dynabeads first strand cDNA synthesis was performed using MMLV reverse transcriptase Clontech using an anchored polyT primer tailed with a universal primer sequence See Table S3 for primer sequences and Figure 2 for pigment cell cDNA library construction overview. A universal primer sequence was also added to the three prime end of the first strand by template switching allowing for PCR amplification of the resultant cDNA [43 44]. Following PCR amplification using the high fidelity polymerase LA Taq TaKaRa PCR cycle: 95C for 1 minute followed by 20 cycles of 98C for 25 seconds 60C for 1 minute 68C for 20 minutes cDNA was digested with AluI and RsaI restriction enzymes NEB. Blunt end enzymatic fragmentation of cDNA was used instead of sonication and gel extraction to minimize loss of sample material and eliminate the end repair step of Illumina library preparation. Since this reduced representation strategy might miss short cDNAs that lack both restriction sites we sought to avoid this by including enzyme recognition sites within the cDNA amplification primers. This allows for the inclusion of short cDNAs in our libraries. Standard Illumina library preparations followed performed by the Genome Technology Access Center GTAC at Washington University in St. Louis http://gtac.wustl.edu. In brief a single A was added to the 3’ end of each strand Y adapters ligated and library enrichment PCR performed followed by gel extraction size selection for fragments ranging from 200 400 base pairs in length. Illumina library construction of pooled 3dpf embryos was performed by GTAC from total RNA extracted with Trizol reagent as previously described [45]. No PCR amplification of whole embryo cDNA was performed prior to Illumina adapter ligation and library enrichment. Sequencing was performed on the GAIIX Illumina platform.,,hpf,GSM1129617,GSM1129617: dm 77h 28 351; Danio rerio; RNA Seq,GSM1129617 1,,1,This study was carried out in accordance with the Washington University Animal Use Committee guidelines under approved protocol #20110236. Zebrafish were reared and bred according to standard protocols. The fish used in this study were homozygous for a temperature sensitive allele of micropthalmia transcription factor mitfavc7. This mutant facilitated the collection of RPE as mitfa is not required for RPE development in zebrafish. Melanocytes iridophores and RPE develop normally at 25°C in mitfavc7. When held at 32°C the neural crest derived melanocytes do not develop but RPE and iridophores develop normally. All melanocyte and iridophore samples were incubated at 25°C prior to collection. Fish were anesthetized with Tricaine rinsed with Ca Mg DPBS Sigma D8537 and immersed in 100mL TrypLE Express Invitrogen 12604039 per 1000 fish. Fish were incubated at 37°C and shaken at 100rpm for 15 20 minutes followed by trituration with a Pasteur pipette to remove eyes from larva. post separation of eyes and larva each group was placed in TrypLE Express and shaken at 100rpm at 37°C for 1 1.5 hr. Dissociated cells were filtered through a 120uM screen into 50 mL tubes. Remaining intact tissue was triturated 10 20 times and again filtered through a 120uM screen into the dissociated cells. Dissociated cells were pelleted in a swinging bucket rotor Eppendorf 5810 R at 500 relative centrifugal force rcf for 5 minutes at 4°C then resuspended in 1mL cold isotonic Percoll Sigma P1644 by gentle pipetting. Isotonic Percoll was prepared by mixing 1 part 10X PBS with 9 parts Percoll. Resuspended cells were transferred to 1.6mL Eppendorf tubes and spun at 2000rcf for 5 minutes at 4°C in a swinging bucket rotor for isopycnic separation. Pigment cells in the pellet were then resuspended in 400µL of ice cold DPBS with 2% fetal calf serum FCS and placed onto preformed Percoll density gradients. Preformed gradients were prepared via centrifugation of 1mL aliquots of isotonic Percoll in 1.6mL tubes at 10 000rcf for 15 minutes at 4°C in a fixed angle micro centrifuge Eppendorf 5415 R. Tubes containing preformed Percoll gradients with overlying cell suspensions were centrifuged in a swinging bucket rotor at 2000rcf for 10 minutes at 4°C. Following centrifugation overlying Percoll was aspirated leaving the final 100µL containing the pigment cell pellet. Cells were resuspended with 50µL of cold DPBS with 2% FCS and transferred to a clean 1.6mL tube containing 500µL of cold DPBS with 2% FCS and kept on ice until mRNA extraction or FACS. FACS We used the inherent properties of the pigmented cells to perform Fluorescence Activated Cell Sorting FACS. Following resuspension in 500µL cold DPBS with 2% FCS the enriched cell populations were screened through a 30uM cell filter Partec 04 0042 2316. Cells were analyzed and sorted with a Dako MoFlo cell sorter using a 120uM nozzle at a drop drive DD frequency of 22390Hz. Cells were illuminated using a 488 nm laser. Cells were gated on two attributes to separate cells from each other and from cellular debris. Cellular debris was detected using forward and side scatter selecting against the smallest particles 1µm or less. Cells were sorted based on detection using 510 530nm and 575 595nm filters corresponding to FL1 and FL2 in Figure 1D respectively. When excited by the 488 nm laser the autofluorescence of iridophores is clearly detectable in these channels as a group of cells extending at a 45 degree line in the upper right quadrant. Melanocytes and RPE do not autofluoresce with this intensity when excited by the 488nm laser and cluster at the lower left of the FACS plot. Cells were collected into ice cold DPBS with 2% FCS and kept on ice until mRNA extraction. Pigment cell cDNA library construction was as follows. For mRNA extraction the Dynabeads® mRNA DIRECT Kit Invitrogen was used per manufacturer's instructions. Following mRNA elution from the Dynabeads first strand cDNA synthesis was performed using MMLV reverse transcriptase Clontech using an anchored polyT primer tailed with a universal primer sequence See Table S3 for primer sequences and Figure 2 for pigment cell cDNA library construction overview. A universal primer sequence was also added to the three prime end of the first strand by template switching allowing for PCR amplification of the resultant cDNA [43 44]. Following PCR amplification using the high fidelity polymerase LA Taq TaKaRa PCR cycle: 95C for 1 minute followed by 20 cycles of 98C for 25 seconds 60C for 1 minute 68C for 20 minutes cDNA was digested with AluI and RsaI restriction enzymes NEB. Blunt end enzymatic fragmentation of cDNA was used instead of sonication and gel extraction to minimize loss of sample material and eliminate the end repair step of Illumina library preparation. Since this reduced representation strategy might miss short cDNAs that lack both restriction sites we sought to avoid this by including enzyme recognition sites within the cDNA amplification primers. This allows for the inclusion of short cDNAs in our libraries. Standard Illumina library preparations followed performed by the Genome Technology Access Center GTAC at Washington University in St. Louis http://gtac.wustl.edu. In brief a single A was added to the 3’ end of each strand Y adapters ligated and library enrichment PCR performed followed by gel extraction size selection for fragments ranging from 200 400 base pairs in length. Illumina library construction of pooled 3dpf embryos was performed by GTAC from total RNA extracted with Trizol reagent as previously described [45]. No PCR amplification of whole embryo cDNA was performed prior to Illumina adapter ligation and library enrichment. Sequencing was performed on the GAIIX Illumina platform.,GEO Accession:GSM1129617,RNA-Seq,TRANSCRIPTOMIC,cDNA,SINGLE,ILLUMINA,Illumina HiSeq 2000,,SRP021517,,,dm_77h_28_351_CACT.fq.bz2,fastq,84584556.0,2349571.0,GSM1129617 r1,0:36,A:19843286;C:24761303;G:18855233;T:21124051;N:683,36,,,,19843286,24761303,18855233,21124051,683,SRX271955,SRS416251,SRA074390,GEO,"Rob Mitra, Genetics, Washington University",1,0.75246,,0.02663,,0.87054,,0.59024,,36,,B,,usable mapping rate,illumina,hiseq_era,3prime,poly_a,unknown,bulk,unknown,unknown,,United States,2013-04-25,Larval,Larval,Skin,Surface Structure
36721,SRR835158,SRX271954,SRS416250,SRP021517,PRJNA198908,Gene Expression Analysis of Zebrafish Melanocytes Iridophores and Retinal Pigmented Epithelium Reveals Indicators of Biological Function and Developmental Origin,GSE46387,Transcriptome Analysis,In order to facilitate understanding of pigment cell biology we developed a method to concomitantly purify melanocytes iridophores and retinal pigmented epithelium from zebrafish and analyzed their transcriptomes. Comparing expression data from these cell types and whole embryos allowed us to reveal gene expression co enrichment in melanocytes and retinal pigmented epithelium as well as in melanocytes and iridophores. We found 214 genes co enriched in melanocytes and retinal pigmented epithelium indicating the shared functions of melanin producing cells. We found 62 genes significantly co enriched in melanocytes and iridophores illustrative of their shared developmental origins from the neural crest. This is also the first analysis of the iridophore transcriptome. Gene expression analysis for iridophores revealed extensive enrichment of specific enzymes to coordinate production of their guanine based reflective pigment. We speculate the coordinated upregulation of specific enzymes from several metabolic pathways recycles the rate limiting substrate for purine synthesis phosphoribosyl pyrophosphate thus constituting a guanine cycle. The purification procedure and expression analysis described here along with the accompanying transcriptome wide expression data provide the first mRNA sequencing data for multiple purified zebrafish pigment cell types and will be a useful resource for further studies of pigment cell biology. Overall design: mRNA profiles of zebrafish pigment cells were generated using Illumina GAIIX sequencing,,pubmed:23874447,,dm 77h 27 436,GSM1129616,,tissue:melanocytes|hpf,dm 77h 27 436,Align sequences using Novoalign to cDNA database Calculate RPKMs from Novoalign output using Perl Genome build: Non redundant database of 25 102 cDNAs generated by Higdon et al 2013 based on NCBI's RefSeq build from 8/29/2012 current RefSeq available at ftp://ftp.ncbi.nlm.nih.gov/refseq/D rerio/mRNA Prot/zebrafish.rna.fna.gz Supplementary files format and content: Excell file containing RPKMs of each library,melanocytes,,This study was carried out in accordance with the Washington University Animal Use Committee guidelines under approved protocol #20110236. Zebrafish were reared and bred according to standard protocols. The fish used in this study were homozygous for a temperature sensitive allele of micropthalmia transcription factor mitfavc7. This mutant facilitated the collection of RPE as mitfa is not required for RPE development in zebrafish. Melanocytes iridophores and RPE develop normally at 25°C in mitfavc7. When held at 32°C the neural crest derived melanocytes do not develop but RPE and iridophores develop normally. All melanocyte and iridophore samples were incubated at 25°C prior to collection. Fish were anesthetized with Tricaine rinsed with Ca Mg DPBS Sigma D8537 and immersed in 100mL TrypLE Express Invitrogen 12604039 per 1000 fish. Fish were incubated at 37°C and shaken at 100rpm for 15 20 minutes followed by trituration with a Pasteur pipette to remove eyes from larva. post separation of eyes and larva each group was placed in TrypLE Express and shaken at 100rpm at 37°C for 1 1.5 hr. Dissociated cells were filtered through a 120uM screen into 50 mL tubes. Remaining intact tissue was triturated 10 20 times and again filtered through a 120uM screen into the dissociated cells. Dissociated cells were pelleted in a swinging bucket rotor Eppendorf 5810 R at 500 relative centrifugal force rcf for 5 minutes at 4°C then resuspended in 1mL cold isotonic Percoll Sigma P1644 by gentle pipetting. Isotonic Percoll was prepared by mixing 1 part 10X PBS with 9 parts Percoll. Resuspended cells were transferred to 1.6mL Eppendorf tubes and spun at 2000rcf for 5 minutes at 4°C in a swinging bucket rotor for isopycnic separation. Pigment cells in the pellet were then resuspended in 400µL of ice cold DPBS with 2% fetal calf serum FCS and placed onto preformed Percoll density gradients. Preformed gradients were prepared via centrifugation of 1mL aliquots of isotonic Percoll in 1.6mL tubes at 10 000rcf for 15 minutes at 4°C in a fixed angle micro centrifuge Eppendorf 5415 R. Tubes containing preformed Percoll gradients with overlying cell suspensions were centrifuged in a swinging bucket rotor at 2000rcf for 10 minutes at 4°C. Following centrifugation overlying Percoll was aspirated leaving the final 100µL containing the pigment cell pellet. Cells were resuspended with 50µL of cold DPBS with 2% FCS and transferred to a clean 1.6mL tube containing 500µL of cold DPBS with 2% FCS and kept on ice until mRNA extraction or FACS. FACS We used the inherent properties of the pigmented cells to perform Fluorescence Activated Cell Sorting FACS. Following resuspension in 500µL cold DPBS with 2% FCS the enriched cell populations were screened through a 30uM cell filter Partec 04 0042 2316. Cells were analyzed and sorted with a Dako MoFlo cell sorter using a 120uM nozzle at a drop drive DD frequency of 22390Hz. Cells were illuminated using a 488 nm laser. Cells were gated on two attributes to separate cells from each other and from cellular debris. Cellular debris was detected using forward and side scatter selecting against the smallest particles 1µm or less. Cells were sorted based on detection using 510 530nm and 575 595nm filters corresponding to FL1 and FL2 in Figure 1D respectively. When excited by the 488 nm laser the autofluorescence of iridophores is clearly detectable in these channels as a group of cells extending at a 45 degree line in the upper right quadrant. Melanocytes and RPE do not autofluoresce with this intensity when excited by the 488nm laser and cluster at the lower left of the FACS plot. Cells were collected into ice cold DPBS with 2% FCS and kept on ice until mRNA extraction. Pigment cell cDNA library construction was as follows. For mRNA extraction the Dynabeads® mRNA DIRECT Kit Invitrogen was used per manufacturer's instructions. Following mRNA elution from the Dynabeads first strand cDNA synthesis was performed using MMLV reverse transcriptase Clontech using an anchored polyT primer tailed with a universal primer sequence See Table S3 for primer sequences and Figure 2 for pigment cell cDNA library construction overview. A universal primer sequence was also added to the three prime end of the first strand by template switching allowing for PCR amplification of the resultant cDNA [43 44]. Following PCR amplification using the high fidelity polymerase LA Taq TaKaRa PCR cycle: 95C for 1 minute followed by 20 cycles of 98C for 25 seconds 60C for 1 minute 68C for 20 minutes cDNA was digested with AluI and RsaI restriction enzymes NEB. Blunt end enzymatic fragmentation of cDNA was used instead of sonication and gel extraction to minimize loss of sample material and eliminate the end repair step of Illumina library preparation. Since this reduced representation strategy might miss short cDNAs that lack both restriction sites we sought to avoid this by including enzyme recognition sites within the cDNA amplification primers. This allows for the inclusion of short cDNAs in our libraries. Standard Illumina library preparations followed performed by the Genome Technology Access Center GTAC at Washington University in St. Louis http://gtac.wustl.edu. In brief a single A was added to the 3’ end of each strand Y adapters ligated and library enrichment PCR performed followed by gel extraction size selection for fragments ranging from 200 400 base pairs in length. Illumina library construction of pooled 3dpf embryos was performed by GTAC from total RNA extracted with Trizol reagent as previously described [45]. No PCR amplification of whole embryo cDNA was performed prior to Illumina adapter ligation and library enrichment. Sequencing was performed on the GAIIX Illumina platform.,,hpf,GSM1129616,GSM1129616: dm 77h 27 436; Danio rerio; RNA Seq,GSM1129616 1,,1,This study was carried out in accordance with the Washington University Animal Use Committee guidelines under approved protocol #20110236. Zebrafish were reared and bred according to standard protocols. The fish used in this study were homozygous for a temperature sensitive allele of micropthalmia transcription factor mitfavc7. This mutant facilitated the collection of RPE as mitfa is not required for RPE development in zebrafish. Melanocytes iridophores and RPE develop normally at 25°C in mitfavc7. When held at 32°C the neural crest derived melanocytes do not develop but RPE and iridophores develop normally. All melanocyte and iridophore samples were incubated at 25°C prior to collection. Fish were anesthetized with Tricaine rinsed with Ca Mg DPBS Sigma D8537 and immersed in 100mL TrypLE Express Invitrogen 12604039 per 1000 fish. Fish were incubated at 37°C and shaken at 100rpm for 15 20 minutes followed by trituration with a Pasteur pipette to remove eyes from larva. post separation of eyes and larva each group was placed in TrypLE Express and shaken at 100rpm at 37°C for 1 1.5 hr. Dissociated cells were filtered through a 120uM screen into 50 mL tubes. Remaining intact tissue was triturated 10 20 times and again filtered through a 120uM screen into the dissociated cells. Dissociated cells were pelleted in a swinging bucket rotor Eppendorf 5810 R at 500 relative centrifugal force rcf for 5 minutes at 4°C then resuspended in 1mL cold isotonic Percoll Sigma P1644 by gentle pipetting. Isotonic Percoll was prepared by mixing 1 part 10X PBS with 9 parts Percoll. Resuspended cells were transferred to 1.6mL Eppendorf tubes and spun at 2000rcf for 5 minutes at 4°C in a swinging bucket rotor for isopycnic separation. Pigment cells in the pellet were then resuspended in 400µL of ice cold DPBS with 2% fetal calf serum FCS and placed onto preformed Percoll density gradients. Preformed gradients were prepared via centrifugation of 1mL aliquots of isotonic Percoll in 1.6mL tubes at 10 000rcf for 15 minutes at 4°C in a fixed angle micro centrifuge Eppendorf 5415 R. Tubes containing preformed Percoll gradients with overlying cell suspensions were centrifuged in a swinging bucket rotor at 2000rcf for 10 minutes at 4°C. Following centrifugation overlying Percoll was aspirated leaving the final 100µL containing the pigment cell pellet. Cells were resuspended with 50µL of cold DPBS with 2% FCS and transferred to a clean 1.6mL tube containing 500µL of cold DPBS with 2% FCS and kept on ice until mRNA extraction or FACS. FACS We used the inherent properties of the pigmented cells to perform Fluorescence Activated Cell Sorting FACS. Following resuspension in 500µL cold DPBS with 2% FCS the enriched cell populations were screened through a 30uM cell filter Partec 04 0042 2316. Cells were analyzed and sorted with a Dako MoFlo cell sorter using a 120uM nozzle at a drop drive DD frequency of 22390Hz. Cells were illuminated using a 488 nm laser. Cells were gated on two attributes to separate cells from each other and from cellular debris. Cellular debris was detected using forward and side scatter selecting against the smallest particles 1µm or less. Cells were sorted based on detection using 510 530nm and 575 595nm filters corresponding to FL1 and FL2 in Figure 1D respectively. When excited by the 488 nm laser the autofluorescence of iridophores is clearly detectable in these channels as a group of cells extending at a 45 degree line in the upper right quadrant. Melanocytes and RPE do not autofluoresce with this intensity when excited by the 488nm laser and cluster at the lower left of the FACS plot. Cells were collected into ice cold DPBS with 2% FCS and kept on ice until mRNA extraction. Pigment cell cDNA library construction was as follows. For mRNA extraction the Dynabeads® mRNA DIRECT Kit Invitrogen was used per manufacturer's instructions. Following mRNA elution from the Dynabeads first strand cDNA synthesis was performed using MMLV reverse transcriptase Clontech using an anchored polyT primer tailed with a universal primer sequence See Table S3 for primer sequences and Figure 2 for pigment cell cDNA library construction overview. A universal primer sequence was also added to the three prime end of the first strand by template switching allowing for PCR amplification of the resultant cDNA [43 44]. Following PCR amplification using the high fidelity polymerase LA Taq TaKaRa PCR cycle: 95C for 1 minute followed by 20 cycles of 98C for 25 seconds 60C for 1 minute 68C for 20 minutes cDNA was digested with AluI and RsaI restriction enzymes NEB. Blunt end enzymatic fragmentation of cDNA was used instead of sonication and gel extraction to minimize loss of sample material and eliminate the end repair step of Illumina library preparation. Since this reduced representation strategy might miss short cDNAs that lack both restriction sites we sought to avoid this by including enzyme recognition sites within the cDNA amplification primers. This allows for the inclusion of short cDNAs in our libraries. Standard Illumina library preparations followed performed by the Genome Technology Access Center GTAC at Washington University in St. Louis http://gtac.wustl.edu. In brief a single A was added to the 3’ end of each strand Y adapters ligated and library enrichment PCR performed followed by gel extraction size selection for fragments ranging from 200 400 base pairs in length. Illumina library construction of pooled 3dpf embryos was performed by GTAC from total RNA extracted with Trizol reagent as previously described [45]. No PCR amplification of whole embryo cDNA was performed prior to Illumina adapter ligation and library enrichment. Sequencing was performed on the GAIIX Illumina platform.,GEO Accession:GSM1129616,RNA-Seq,TRANSCRIPTOMIC,cDNA,SINGLE,ILLUMINA,Illumina HiSeq 2000,,SRP021517,,,dm_77h_27_436_TTAT.fq.bz2,fastq,194114466.0,4621773.0,GSM1129616 r1,0:42,A:44579558;C:47759429;G:44539735;T:57080409;N:155335,42,,,,44579558,47759429,44539735,57080409,155335,SRX271954,SRS416250,SRA074390,GEO,"Rob Mitra, Genetics, Washington University",1,0.80787,,0.04019,,0.86263,,0.57373,,42,,B,,usable mapping rate,illumina,hiseq_era,3prime,poly_a,unknown,bulk,unknown,unknown,,United States,2013-04-25,Larval,Larval,Skin,Surface Structure
36722,SRR835157,SRX271953,SRS416249,SRP021517,PRJNA198908,Gene Expression Analysis of Zebrafish Melanocytes Iridophores and Retinal Pigmented Epithelium Reveals Indicators of Biological Function and Developmental Origin,GSE46387,Transcriptome Analysis,In order to facilitate understanding of pigment cell biology we developed a method to concomitantly purify melanocytes iridophores and retinal pigmented epithelium from zebrafish and analyzed their transcriptomes. Comparing expression data from these cell types and whole embryos allowed us to reveal gene expression co enrichment in melanocytes and retinal pigmented epithelium as well as in melanocytes and iridophores. We found 214 genes co enriched in melanocytes and retinal pigmented epithelium indicating the shared functions of melanin producing cells. We found 62 genes significantly co enriched in melanocytes and iridophores illustrative of their shared developmental origins from the neural crest. This is also the first analysis of the iridophore transcriptome. Gene expression analysis for iridophores revealed extensive enrichment of specific enzymes to coordinate production of their guanine based reflective pigment. We speculate the coordinated upregulation of specific enzymes from several metabolic pathways recycles the rate limiting substrate for purine synthesis phosphoribosyl pyrophosphate thus constituting a guanine cycle. The purification procedure and expression analysis described here along with the accompanying transcriptome wide expression data provide the first mRNA sequencing data for multiple purified zebrafish pigment cell types and will be a useful resource for further studies of pigment cell biology. Overall design: mRNA profiles of zebrafish pigment cells were generated using Illumina GAIIX sequencing,,pubmed:23874447,,dm 77h 27 351,GSM1129615,,tissue:melanocytes|hpf,dm 77h 27 351,Align sequences using Novoalign to cDNA database Calculate RPKMs from Novoalign output using Perl Genome build: Non redundant database of 25 102 cDNAs generated by Higdon et al 2013 based on NCBI's RefSeq build from 8/29/2012 current RefSeq available at ftp://ftp.ncbi.nlm.nih.gov/refseq/D rerio/mRNA Prot/zebrafish.rna.fna.gz Supplementary files format and content: Excell file containing RPKMs of each library,melanocytes,,This study was carried out in accordance with the Washington University Animal Use Committee guidelines under approved protocol #20110236. Zebrafish were reared and bred according to standard protocols. The fish used in this study were homozygous for a temperature sensitive allele of micropthalmia transcription factor mitfavc7. This mutant facilitated the collection of RPE as mitfa is not required for RPE development in zebrafish. Melanocytes iridophores and RPE develop normally at 25°C in mitfavc7. When held at 32°C the neural crest derived melanocytes do not develop but RPE and iridophores develop normally. All melanocyte and iridophore samples were incubated at 25°C prior to collection. Fish were anesthetized with Tricaine rinsed with Ca Mg DPBS Sigma D8537 and immersed in 100mL TrypLE Express Invitrogen 12604039 per 1000 fish. Fish were incubated at 37°C and shaken at 100rpm for 15 20 minutes followed by trituration with a Pasteur pipette to remove eyes from larva. post separation of eyes and larva each group was placed in TrypLE Express and shaken at 100rpm at 37°C for 1 1.5 hr. Dissociated cells were filtered through a 120uM screen into 50 mL tubes. Remaining intact tissue was triturated 10 20 times and again filtered through a 120uM screen into the dissociated cells. Dissociated cells were pelleted in a swinging bucket rotor Eppendorf 5810 R at 500 relative centrifugal force rcf for 5 minutes at 4°C then resuspended in 1mL cold isotonic Percoll Sigma P1644 by gentle pipetting. Isotonic Percoll was prepared by mixing 1 part 10X PBS with 9 parts Percoll. Resuspended cells were transferred to 1.6mL Eppendorf tubes and spun at 2000rcf for 5 minutes at 4°C in a swinging bucket rotor for isopycnic separation. Pigment cells in the pellet were then resuspended in 400µL of ice cold DPBS with 2% fetal calf serum FCS and placed onto preformed Percoll density gradients. Preformed gradients were prepared via centrifugation of 1mL aliquots of isotonic Percoll in 1.6mL tubes at 10 000rcf for 15 minutes at 4°C in a fixed angle micro centrifuge Eppendorf 5415 R. Tubes containing preformed Percoll gradients with overlying cell suspensions were centrifuged in a swinging bucket rotor at 2000rcf for 10 minutes at 4°C. Following centrifugation overlying Percoll was aspirated leaving the final 100µL containing the pigment cell pellet. Cells were resuspended with 50µL of cold DPBS with 2% FCS and transferred to a clean 1.6mL tube containing 500µL of cold DPBS with 2% FCS and kept on ice until mRNA extraction or FACS. FACS We used the inherent properties of the pigmented cells to perform Fluorescence Activated Cell Sorting FACS. Following resuspension in 500µL cold DPBS with 2% FCS the enriched cell populations were screened through a 30uM cell filter Partec 04 0042 2316. Cells were analyzed and sorted with a Dako MoFlo cell sorter using a 120uM nozzle at a drop drive DD frequency of 22390Hz. Cells were illuminated using a 488 nm laser. Cells were gated on two attributes to separate cells from each other and from cellular debris. Cellular debris was detected using forward and side scatter selecting against the smallest particles 1µm or less. Cells were sorted based on detection using 510 530nm and 575 595nm filters corresponding to FL1 and FL2 in Figure 1D respectively. When excited by the 488 nm laser the autofluorescence of iridophores is clearly detectable in these channels as a group of cells extending at a 45 degree line in the upper right quadrant. Melanocytes and RPE do not autofluoresce with this intensity when excited by the 488nm laser and cluster at the lower left of the FACS plot. Cells were collected into ice cold DPBS with 2% FCS and kept on ice until mRNA extraction. Pigment cell cDNA library construction was as follows. For mRNA extraction the Dynabeads® mRNA DIRECT Kit Invitrogen was used per manufacturer's instructions. Following mRNA elution from the Dynabeads first strand cDNA synthesis was performed using MMLV reverse transcriptase Clontech using an anchored polyT primer tailed with a universal primer sequence See Table S3 for primer sequences and Figure 2 for pigment cell cDNA library construction overview. A universal primer sequence was also added to the three prime end of the first strand by template switching allowing for PCR amplification of the resultant cDNA [43 44]. Following PCR amplification using the high fidelity polymerase LA Taq TaKaRa PCR cycle: 95C for 1 minute followed by 20 cycles of 98C for 25 seconds 60C for 1 minute 68C for 20 minutes cDNA was digested with AluI and RsaI restriction enzymes NEB. Blunt end enzymatic fragmentation of cDNA was used instead of sonication and gel extraction to minimize loss of sample material and eliminate the end repair step of Illumina library preparation. Since this reduced representation strategy might miss short cDNAs that lack both restriction sites we sought to avoid this by including enzyme recognition sites within the cDNA amplification primers. This allows for the inclusion of short cDNAs in our libraries. Standard Illumina library preparations followed performed by the Genome Technology Access Center GTAC at Washington University in St. Louis http://gtac.wustl.edu. In brief a single A was added to the 3’ end of each strand Y adapters ligated and library enrichment PCR performed followed by gel extraction size selection for fragments ranging from 200 400 base pairs in length. Illumina library construction of pooled 3dpf embryos was performed by GTAC from total RNA extracted with Trizol reagent as previously described [45]. No PCR amplification of whole embryo cDNA was performed prior to Illumina adapter ligation and library enrichment. Sequencing was performed on the GAIIX Illumina platform.,,hpf,GSM1129615,GSM1129615: dm 77h 27 351; Danio rerio; RNA Seq,GSM1129615 1,,1,This study was carried out in accordance with the Washington University Animal Use Committee guidelines under approved protocol #20110236. Zebrafish were reared and bred according to standard protocols. The fish used in this study were homozygous for a temperature sensitive allele of micropthalmia transcription factor mitfavc7. This mutant facilitated the collection of RPE as mitfa is not required for RPE development in zebrafish. Melanocytes iridophores and RPE develop normally at 25°C in mitfavc7. When held at 32°C the neural crest derived melanocytes do not develop but RPE and iridophores develop normally. All melanocyte and iridophore samples were incubated at 25°C prior to collection. Fish were anesthetized with Tricaine rinsed with Ca Mg DPBS Sigma D8537 and immersed in 100mL TrypLE Express Invitrogen 12604039 per 1000 fish. Fish were incubated at 37°C and shaken at 100rpm for 15 20 minutes followed by trituration with a Pasteur pipette to remove eyes from larva. post separation of eyes and larva each group was placed in TrypLE Express and shaken at 100rpm at 37°C for 1 1.5 hr. Dissociated cells were filtered through a 120uM screen into 50 mL tubes. Remaining intact tissue was triturated 10 20 times and again filtered through a 120uM screen into the dissociated cells. Dissociated cells were pelleted in a swinging bucket rotor Eppendorf 5810 R at 500 relative centrifugal force rcf for 5 minutes at 4°C then resuspended in 1mL cold isotonic Percoll Sigma P1644 by gentle pipetting. Isotonic Percoll was prepared by mixing 1 part 10X PBS with 9 parts Percoll. Resuspended cells were transferred to 1.6mL Eppendorf tubes and spun at 2000rcf for 5 minutes at 4°C in a swinging bucket rotor for isopycnic separation. Pigment cells in the pellet were then resuspended in 400µL of ice cold DPBS with 2% fetal calf serum FCS and placed onto preformed Percoll density gradients. Preformed gradients were prepared via centrifugation of 1mL aliquots of isotonic Percoll in 1.6mL tubes at 10 000rcf for 15 minutes at 4°C in a fixed angle micro centrifuge Eppendorf 5415 R. Tubes containing preformed Percoll gradients with overlying cell suspensions were centrifuged in a swinging bucket rotor at 2000rcf for 10 minutes at 4°C. Following centrifugation overlying Percoll was aspirated leaving the final 100µL containing the pigment cell pellet. Cells were resuspended with 50µL of cold DPBS with 2% FCS and transferred to a clean 1.6mL tube containing 500µL of cold DPBS with 2% FCS and kept on ice until mRNA extraction or FACS. FACS We used the inherent properties of the pigmented cells to perform Fluorescence Activated Cell Sorting FACS. Following resuspension in 500µL cold DPBS with 2% FCS the enriched cell populations were screened through a 30uM cell filter Partec 04 0042 2316. Cells were analyzed and sorted with a Dako MoFlo cell sorter using a 120uM nozzle at a drop drive DD frequency of 22390Hz. Cells were illuminated using a 488 nm laser. Cells were gated on two attributes to separate cells from each other and from cellular debris. Cellular debris was detected using forward and side scatter selecting against the smallest particles 1µm or less. Cells were sorted based on detection using 510 530nm and 575 595nm filters corresponding to FL1 and FL2 in Figure 1D respectively. When excited by the 488 nm laser the autofluorescence of iridophores is clearly detectable in these channels as a group of cells extending at a 45 degree line in the upper right quadrant. Melanocytes and RPE do not autofluoresce with this intensity when excited by the 488nm laser and cluster at the lower left of the FACS plot. Cells were collected into ice cold DPBS with 2% FCS and kept on ice until mRNA extraction. Pigment cell cDNA library construction was as follows. For mRNA extraction the Dynabeads® mRNA DIRECT Kit Invitrogen was used per manufacturer's instructions. Following mRNA elution from the Dynabeads first strand cDNA synthesis was performed using MMLV reverse transcriptase Clontech using an anchored polyT primer tailed with a universal primer sequence See Table S3 for primer sequences and Figure 2 for pigment cell cDNA library construction overview. A universal primer sequence was also added to the three prime end of the first strand by template switching allowing for PCR amplification of the resultant cDNA [43 44]. Following PCR amplification using the high fidelity polymerase LA Taq TaKaRa PCR cycle: 95C for 1 minute followed by 20 cycles of 98C for 25 seconds 60C for 1 minute 68C for 20 minutes cDNA was digested with AluI and RsaI restriction enzymes NEB. Blunt end enzymatic fragmentation of cDNA was used instead of sonication and gel extraction to minimize loss of sample material and eliminate the end repair step of Illumina library preparation. Since this reduced representation strategy might miss short cDNAs that lack both restriction sites we sought to avoid this by including enzyme recognition sites within the cDNA amplification primers. This allows for the inclusion of short cDNAs in our libraries. Standard Illumina library preparations followed performed by the Genome Technology Access Center GTAC at Washington University in St. Louis http://gtac.wustl.edu. In brief a single A was added to the 3’ end of each strand Y adapters ligated and library enrichment PCR performed followed by gel extraction size selection for fragments ranging from 200 400 base pairs in length. Illumina library construction of pooled 3dpf embryos was performed by GTAC from total RNA extracted with Trizol reagent as previously described [45]. No PCR amplification of whole embryo cDNA was performed prior to Illumina adapter ligation and library enrichment. Sequencing was performed on the GAIIX Illumina platform.,GEO Accession:GSM1129615,RNA-Seq,TRANSCRIPTOMIC,cDNA,SINGLE,ILLUMINA,Illumina HiSeq 2000,,SRP021517,,,dm_77h_27_351_TTAT.fq.bz2,fastq,113087304.0,3141314.0,GSM1129615 r1,0:36,A:26171623;C:27323878;G:24871328;T:34719586;N:889,36,,,,26171623,27323878,24871328,34719586,889,SRX271953,SRS416249,SRA074390,GEO,"Rob Mitra, Genetics, Washington University",1,0.75375,,0.04337,,0.85878,,0.5311,,36,,B,,usable mapping rate,illumina,hiseq_era,3prime,poly_a,unknown,bulk,unknown,unknown,,United States,2013-04-25,Larval,Larval,Skin,Surface Structure
36723,SRR835156,SRX271952,SRS416248,SRP021517,PRJNA198908,Gene Expression Analysis of Zebrafish Melanocytes Iridophores and Retinal Pigmented Epithelium Reveals Indicators of Biological Function and Developmental Origin,GSE46387,Transcriptome Analysis,In order to facilitate understanding of pigment cell biology we developed a method to concomitantly purify melanocytes iridophores and retinal pigmented epithelium from zebrafish and analyzed their transcriptomes. Comparing expression data from these cell types and whole embryos allowed us to reveal gene expression co enrichment in melanocytes and retinal pigmented epithelium as well as in melanocytes and iridophores. We found 214 genes co enriched in melanocytes and retinal pigmented epithelium indicating the shared functions of melanin producing cells. We found 62 genes significantly co enriched in melanocytes and iridophores illustrative of their shared developmental origins from the neural crest. This is also the first analysis of the iridophore transcriptome. Gene expression analysis for iridophores revealed extensive enrichment of specific enzymes to coordinate production of their guanine based reflective pigment. We speculate the coordinated upregulation of specific enzymes from several metabolic pathways recycles the rate limiting substrate for purine synthesis phosphoribosyl pyrophosphate thus constituting a guanine cycle. The purification procedure and expression analysis described here along with the accompanying transcriptome wide expression data provide the first mRNA sequencing data for multiple purified zebrafish pigment cell types and will be a useful resource for further studies of pigment cell biology. Overall design: mRNA profiles of zebrafish pigment cells were generated using Illumina GAIIX sequencing,,pubmed:23874447,,dm 77h 26 433,GSM1129614,,tissue:melanocytes|hpf,dm 77h 26 433,Align sequences using Novoalign to cDNA database Calculate RPKMs from Novoalign output using Perl Genome build: Non redundant database of 25 102 cDNAs generated by Higdon et al 2013 based on NCBI's RefSeq build from 8/29/2012 current RefSeq available at ftp://ftp.ncbi.nlm.nih.gov/refseq/D rerio/mRNA Prot/zebrafish.rna.fna.gz Supplementary files format and content: Excell file containing RPKMs of each library,melanocytes,,This study was carried out in accordance with the Washington University Animal Use Committee guidelines under approved protocol #20110236. Zebrafish were reared and bred according to standard protocols. The fish used in this study were homozygous for a temperature sensitive allele of micropthalmia transcription factor mitfavc7. This mutant facilitated the collection of RPE as mitfa is not required for RPE development in zebrafish. Melanocytes iridophores and RPE develop normally at 25°C in mitfavc7. When held at 32°C the neural crest derived melanocytes do not develop but RPE and iridophores develop normally. All melanocyte and iridophore samples were incubated at 25°C prior to collection. Fish were anesthetized with Tricaine rinsed with Ca Mg DPBS Sigma D8537 and immersed in 100mL TrypLE Express Invitrogen 12604039 per 1000 fish. Fish were incubated at 37°C and shaken at 100rpm for 15 20 minutes followed by trituration with a Pasteur pipette to remove eyes from larva. post separation of eyes and larva each group was placed in TrypLE Express and shaken at 100rpm at 37°C for 1 1.5 hr. Dissociated cells were filtered through a 120uM screen into 50 mL tubes. Remaining intact tissue was triturated 10 20 times and again filtered through a 120uM screen into the dissociated cells. Dissociated cells were pelleted in a swinging bucket rotor Eppendorf 5810 R at 500 relative centrifugal force rcf for 5 minutes at 4°C then resuspended in 1mL cold isotonic Percoll Sigma P1644 by gentle pipetting. Isotonic Percoll was prepared by mixing 1 part 10X PBS with 9 parts Percoll. Resuspended cells were transferred to 1.6mL Eppendorf tubes and spun at 2000rcf for 5 minutes at 4°C in a swinging bucket rotor for isopycnic separation. Pigment cells in the pellet were then resuspended in 400µL of ice cold DPBS with 2% fetal calf serum FCS and placed onto preformed Percoll density gradients. Preformed gradients were prepared via centrifugation of 1mL aliquots of isotonic Percoll in 1.6mL tubes at 10 000rcf for 15 minutes at 4°C in a fixed angle micro centrifuge Eppendorf 5415 R. Tubes containing preformed Percoll gradients with overlying cell suspensions were centrifuged in a swinging bucket rotor at 2000rcf for 10 minutes at 4°C. Following centrifugation overlying Percoll was aspirated leaving the final 100µL containing the pigment cell pellet. Cells were resuspended with 50µL of cold DPBS with 2% FCS and transferred to a clean 1.6mL tube containing 500µL of cold DPBS with 2% FCS and kept on ice until mRNA extraction or FACS. FACS We used the inherent properties of the pigmented cells to perform Fluorescence Activated Cell Sorting FACS. Following resuspension in 500µL cold DPBS with 2% FCS the enriched cell populations were screened through a 30uM cell filter Partec 04 0042 2316. Cells were analyzed and sorted with a Dako MoFlo cell sorter using a 120uM nozzle at a drop drive DD frequency of 22390Hz. Cells were illuminated using a 488 nm laser. Cells were gated on two attributes to separate cells from each other and from cellular debris. Cellular debris was detected using forward and side scatter selecting against the smallest particles 1µm or less. Cells were sorted based on detection using 510 530nm and 575 595nm filters corresponding to FL1 and FL2 in Figure 1D respectively. When excited by the 488 nm laser the autofluorescence of iridophores is clearly detectable in these channels as a group of cells extending at a 45 degree line in the upper right quadrant. Melanocytes and RPE do not autofluoresce with this intensity when excited by the 488nm laser and cluster at the lower left of the FACS plot. Cells were collected into ice cold DPBS with 2% FCS and kept on ice until mRNA extraction. Pigment cell cDNA library construction was as follows. For mRNA extraction the Dynabeads® mRNA DIRECT Kit Invitrogen was used per manufacturer's instructions. Following mRNA elution from the Dynabeads first strand cDNA synthesis was performed using MMLV reverse transcriptase Clontech using an anchored polyT primer tailed with a universal primer sequence See Table S3 for primer sequences and Figure 2 for pigment cell cDNA library construction overview. A universal primer sequence was also added to the three prime end of the first strand by template switching allowing for PCR amplification of the resultant cDNA [43 44]. Following PCR amplification using the high fidelity polymerase LA Taq TaKaRa PCR cycle: 95C for 1 minute followed by 20 cycles of 98C for 25 seconds 60C for 1 minute 68C for 20 minutes cDNA was digested with AluI and RsaI restriction enzymes NEB. Blunt end enzymatic fragmentation of cDNA was used instead of sonication and gel extraction to minimize loss of sample material and eliminate the end repair step of Illumina library preparation. Since this reduced representation strategy might miss short cDNAs that lack both restriction sites we sought to avoid this by including enzyme recognition sites within the cDNA amplification primers. This allows for the inclusion of short cDNAs in our libraries. Standard Illumina library preparations followed performed by the Genome Technology Access Center GTAC at Washington University in St. Louis http://gtac.wustl.edu. In brief a single A was added to the 3’ end of each strand Y adapters ligated and library enrichment PCR performed followed by gel extraction size selection for fragments ranging from 200 400 base pairs in length. Illumina library construction of pooled 3dpf embryos was performed by GTAC from total RNA extracted with Trizol reagent as previously described [45]. No PCR amplification of whole embryo cDNA was performed prior to Illumina adapter ligation and library enrichment. Sequencing was performed on the GAIIX Illumina platform.,,hpf,GSM1129614,GSM1129614: dm 77h 26 433; Danio rerio; RNA Seq,GSM1129614 1,,1,This study was carried out in accordance with the Washington University Animal Use Committee guidelines under approved protocol #20110236. Zebrafish were reared and bred according to standard protocols. The fish used in this study were homozygous for a temperature sensitive allele of micropthalmia transcription factor mitfavc7. This mutant facilitated the collection of RPE as mitfa is not required for RPE development in zebrafish. Melanocytes iridophores and RPE develop normally at 25°C in mitfavc7. When held at 32°C the neural crest derived melanocytes do not develop but RPE and iridophores develop normally. All melanocyte and iridophore samples were incubated at 25°C prior to collection. Fish were anesthetized with Tricaine rinsed with Ca Mg DPBS Sigma D8537 and immersed in 100mL TrypLE Express Invitrogen 12604039 per 1000 fish. Fish were incubated at 37°C and shaken at 100rpm for 15 20 minutes followed by trituration with a Pasteur pipette to remove eyes from larva. post separation of eyes and larva each group was placed in TrypLE Express and shaken at 100rpm at 37°C for 1 1.5 hr. Dissociated cells were filtered through a 120uM screen into 50 mL tubes. Remaining intact tissue was triturated 10 20 times and again filtered through a 120uM screen into the dissociated cells. Dissociated cells were pelleted in a swinging bucket rotor Eppendorf 5810 R at 500 relative centrifugal force rcf for 5 minutes at 4°C then resuspended in 1mL cold isotonic Percoll Sigma P1644 by gentle pipetting. Isotonic Percoll was prepared by mixing 1 part 10X PBS with 9 parts Percoll. Resuspended cells were transferred to 1.6mL Eppendorf tubes and spun at 2000rcf for 5 minutes at 4°C in a swinging bucket rotor for isopycnic separation. Pigment cells in the pellet were then resuspended in 400µL of ice cold DPBS with 2% fetal calf serum FCS and placed onto preformed Percoll density gradients. Preformed gradients were prepared via centrifugation of 1mL aliquots of isotonic Percoll in 1.6mL tubes at 10 000rcf for 15 minutes at 4°C in a fixed angle micro centrifuge Eppendorf 5415 R. Tubes containing preformed Percoll gradients with overlying cell suspensions were centrifuged in a swinging bucket rotor at 2000rcf for 10 minutes at 4°C. Following centrifugation overlying Percoll was aspirated leaving the final 100µL containing the pigment cell pellet. Cells were resuspended with 50µL of cold DPBS with 2% FCS and transferred to a clean 1.6mL tube containing 500µL of cold DPBS with 2% FCS and kept on ice until mRNA extraction or FACS. FACS We used the inherent properties of the pigmented cells to perform Fluorescence Activated Cell Sorting FACS. Following resuspension in 500µL cold DPBS with 2% FCS the enriched cell populations were screened through a 30uM cell filter Partec 04 0042 2316. Cells were analyzed and sorted with a Dako MoFlo cell sorter using a 120uM nozzle at a drop drive DD frequency of 22390Hz. Cells were illuminated using a 488 nm laser. Cells were gated on two attributes to separate cells from each other and from cellular debris. Cellular debris was detected using forward and side scatter selecting against the smallest particles 1µm or less. Cells were sorted based on detection using 510 530nm and 575 595nm filters corresponding to FL1 and FL2 in Figure 1D respectively. When excited by the 488 nm laser the autofluorescence of iridophores is clearly detectable in these channels as a group of cells extending at a 45 degree line in the upper right quadrant. Melanocytes and RPE do not autofluoresce with this intensity when excited by the 488nm laser and cluster at the lower left of the FACS plot. Cells were collected into ice cold DPBS with 2% FCS and kept on ice until mRNA extraction. Pigment cell cDNA library construction was as follows. For mRNA extraction the Dynabeads® mRNA DIRECT Kit Invitrogen was used per manufacturer's instructions. Following mRNA elution from the Dynabeads first strand cDNA synthesis was performed using MMLV reverse transcriptase Clontech using an anchored polyT primer tailed with a universal primer sequence See Table S3 for primer sequences and Figure 2 for pigment cell cDNA library construction overview. A universal primer sequence was also added to the three prime end of the first strand by template switching allowing for PCR amplification of the resultant cDNA [43 44]. Following PCR amplification using the high fidelity polymerase LA Taq TaKaRa PCR cycle: 95C for 1 minute followed by 20 cycles of 98C for 25 seconds 60C for 1 minute 68C for 20 minutes cDNA was digested with AluI and RsaI restriction enzymes NEB. Blunt end enzymatic fragmentation of cDNA was used instead of sonication and gel extraction to minimize loss of sample material and eliminate the end repair step of Illumina library preparation. Since this reduced representation strategy might miss short cDNAs that lack both restriction sites we sought to avoid this by including enzyme recognition sites within the cDNA amplification primers. This allows for the inclusion of short cDNAs in our libraries. Standard Illumina library preparations followed performed by the Genome Technology Access Center GTAC at Washington University in St. Louis http://gtac.wustl.edu. In brief a single A was added to the 3’ end of each strand Y adapters ligated and library enrichment PCR performed followed by gel extraction size selection for fragments ranging from 200 400 base pairs in length. Illumina library construction of pooled 3dpf embryos was performed by GTAC from total RNA extracted with Trizol reagent as previously described [45]. No PCR amplification of whole embryo cDNA was performed prior to Illumina adapter ligation and library enrichment. Sequencing was performed on the GAIIX Illumina platform.,GEO Accession:GSM1129614,RNA-Seq,TRANSCRIPTOMIC,cDNA,SINGLE,ILLUMINA,Illumina HiSeq 2000,,SRP021517,,,dm_77h_26_433_AGAT.fq.bz2,fastq,34005804.0,809662.0,GSM1129614 r1,0:42,A:8766789;C:8066807;G:8338043;T:8833768;N:397,42,,,,8766789,8066807,8338043,8833768,397,SRX271952,SRS416248,SRA074390,GEO,"Rob Mitra, Genetics, Washington University",1,0.81802,,0.05684,,0.88787,,0.56756,,42,,B,,usable mapping rate,illumina,hiseq_era,3prime,poly_a,unknown,bulk,unknown,unknown,,United States,2013-04-25,Larval,Larval,Skin,Surface Structure
36724,SRR835155,SRX271951,SRS416247,SRP021517,PRJNA198908,Gene Expression Analysis of Zebrafish Melanocytes Iridophores and Retinal Pigmented Epithelium Reveals Indicators of Biological Function and Developmental Origin,GSE46387,Transcriptome Analysis,In order to facilitate understanding of pigment cell biology we developed a method to concomitantly purify melanocytes iridophores and retinal pigmented epithelium from zebrafish and analyzed their transcriptomes. Comparing expression data from these cell types and whole embryos allowed us to reveal gene expression co enrichment in melanocytes and retinal pigmented epithelium as well as in melanocytes and iridophores. We found 214 genes co enriched in melanocytes and retinal pigmented epithelium indicating the shared functions of melanin producing cells. We found 62 genes significantly co enriched in melanocytes and iridophores illustrative of their shared developmental origins from the neural crest. This is also the first analysis of the iridophore transcriptome. Gene expression analysis for iridophores revealed extensive enrichment of specific enzymes to coordinate production of their guanine based reflective pigment. We speculate the coordinated upregulation of specific enzymes from several metabolic pathways recycles the rate limiting substrate for purine synthesis phosphoribosyl pyrophosphate thus constituting a guanine cycle. The purification procedure and expression analysis described here along with the accompanying transcriptome wide expression data provide the first mRNA sequencing data for multiple purified zebrafish pigment cell types and will be a useful resource for further studies of pigment cell biology. Overall design: mRNA profiles of zebrafish pigment cells were generated using Illumina GAIIX sequencing,,pubmed:23874447,,dm 77h 26 351,GSM1129613,,tissue:melanocytes|hpf,dm 77h 26 351,Align sequences using Novoalign to cDNA database Calculate RPKMs from Novoalign output using Perl Genome build: Non redundant database of 25 102 cDNAs generated by Higdon et al 2013 based on NCBI's RefSeq build from 8/29/2012 current RefSeq available at ftp://ftp.ncbi.nlm.nih.gov/refseq/D rerio/mRNA Prot/zebrafish.rna.fna.gz Supplementary files format and content: Excell file containing RPKMs of each library,melanocytes,,This study was carried out in accordance with the Washington University Animal Use Committee guidelines under approved protocol #20110236. Zebrafish were reared and bred according to standard protocols. The fish used in this study were homozygous for a temperature sensitive allele of micropthalmia transcription factor mitfavc7. This mutant facilitated the collection of RPE as mitfa is not required for RPE development in zebrafish. Melanocytes iridophores and RPE develop normally at 25°C in mitfavc7. When held at 32°C the neural crest derived melanocytes do not develop but RPE and iridophores develop normally. All melanocyte and iridophore samples were incubated at 25°C prior to collection. Fish were anesthetized with Tricaine rinsed with Ca Mg DPBS Sigma D8537 and immersed in 100mL TrypLE Express Invitrogen 12604039 per 1000 fish. Fish were incubated at 37°C and shaken at 100rpm for 15 20 minutes followed by trituration with a Pasteur pipette to remove eyes from larva. post separation of eyes and larva each group was placed in TrypLE Express and shaken at 100rpm at 37°C for 1 1.5 hr. Dissociated cells were filtered through a 120uM screen into 50 mL tubes. Remaining intact tissue was triturated 10 20 times and again filtered through a 120uM screen into the dissociated cells. Dissociated cells were pelleted in a swinging bucket rotor Eppendorf 5810 R at 500 relative centrifugal force rcf for 5 minutes at 4°C then resuspended in 1mL cold isotonic Percoll Sigma P1644 by gentle pipetting. Isotonic Percoll was prepared by mixing 1 part 10X PBS with 9 parts Percoll. Resuspended cells were transferred to 1.6mL Eppendorf tubes and spun at 2000rcf for 5 minutes at 4°C in a swinging bucket rotor for isopycnic separation. Pigment cells in the pellet were then resuspended in 400µL of ice cold DPBS with 2% fetal calf serum FCS and placed onto preformed Percoll density gradients. Preformed gradients were prepared via centrifugation of 1mL aliquots of isotonic Percoll in 1.6mL tubes at 10 000rcf for 15 minutes at 4°C in a fixed angle micro centrifuge Eppendorf 5415 R. Tubes containing preformed Percoll gradients with overlying cell suspensions were centrifuged in a swinging bucket rotor at 2000rcf for 10 minutes at 4°C. Following centrifugation overlying Percoll was aspirated leaving the final 100µL containing the pigment cell pellet. Cells were resuspended with 50µL of cold DPBS with 2% FCS and transferred to a clean 1.6mL tube containing 500µL of cold DPBS with 2% FCS and kept on ice until mRNA extraction or FACS. FACS We used the inherent properties of the pigmented cells to perform Fluorescence Activated Cell Sorting FACS. Following resuspension in 500µL cold DPBS with 2% FCS the enriched cell populations were screened through a 30uM cell filter Partec 04 0042 2316. Cells were analyzed and sorted with a Dako MoFlo cell sorter using a 120uM nozzle at a drop drive DD frequency of 22390Hz. Cells were illuminated using a 488 nm laser. Cells were gated on two attributes to separate cells from each other and from cellular debris. Cellular debris was detected using forward and side scatter selecting against the smallest particles 1µm or less. Cells were sorted based on detection using 510 530nm and 575 595nm filters corresponding to FL1 and FL2 in Figure 1D respectively. When excited by the 488 nm laser the autofluorescence of iridophores is clearly detectable in these channels as a group of cells extending at a 45 degree line in the upper right quadrant. Melanocytes and RPE do not autofluoresce with this intensity when excited by the 488nm laser and cluster at the lower left of the FACS plot. Cells were collected into ice cold DPBS with 2% FCS and kept on ice until mRNA extraction. Pigment cell cDNA library construction was as follows. For mRNA extraction the Dynabeads® mRNA DIRECT Kit Invitrogen was used per manufacturer's instructions. Following mRNA elution from the Dynabeads first strand cDNA synthesis was performed using MMLV reverse transcriptase Clontech using an anchored polyT primer tailed with a universal primer sequence See Table S3 for primer sequences and Figure 2 for pigment cell cDNA library construction overview. A universal primer sequence was also added to the three prime end of the first strand by template switching allowing for PCR amplification of the resultant cDNA [43 44]. Following PCR amplification using the high fidelity polymerase LA Taq TaKaRa PCR cycle: 95C for 1 minute followed by 20 cycles of 98C for 25 seconds 60C for 1 minute 68C for 20 minutes cDNA was digested with AluI and RsaI restriction enzymes NEB. Blunt end enzymatic fragmentation of cDNA was used instead of sonication and gel extraction to minimize loss of sample material and eliminate the end repair step of Illumina library preparation. Since this reduced representation strategy might miss short cDNAs that lack both restriction sites we sought to avoid this by including enzyme recognition sites within the cDNA amplification primers. This allows for the inclusion of short cDNAs in our libraries. Standard Illumina library preparations followed performed by the Genome Technology Access Center GTAC at Washington University in St. Louis http://gtac.wustl.edu. In brief a single A was added to the 3’ end of each strand Y adapters ligated and library enrichment PCR performed followed by gel extraction size selection for fragments ranging from 200 400 base pairs in length. Illumina library construction of pooled 3dpf embryos was performed by GTAC from total RNA extracted with Trizol reagent as previously described [45]. No PCR amplification of whole embryo cDNA was performed prior to Illumina adapter ligation and library enrichment. Sequencing was performed on the GAIIX Illumina platform.,,hpf,GSM1129613,GSM1129613: dm 77h 26 351; Danio rerio; RNA Seq,GSM1129613 1,,1,This study was carried out in accordance with the Washington University Animal Use Committee guidelines under approved protocol #20110236. Zebrafish were reared and bred according to standard protocols. The fish used in this study were homozygous for a temperature sensitive allele of micropthalmia transcription factor mitfavc7. This mutant facilitated the collection of RPE as mitfa is not required for RPE development in zebrafish. Melanocytes iridophores and RPE develop normally at 25°C in mitfavc7. When held at 32°C the neural crest derived melanocytes do not develop but RPE and iridophores develop normally. All melanocyte and iridophore samples were incubated at 25°C prior to collection. Fish were anesthetized with Tricaine rinsed with Ca Mg DPBS Sigma D8537 and immersed in 100mL TrypLE Express Invitrogen 12604039 per 1000 fish. Fish were incubated at 37°C and shaken at 100rpm for 15 20 minutes followed by trituration with a Pasteur pipette to remove eyes from larva. post separation of eyes and larva each group was placed in TrypLE Express and shaken at 100rpm at 37°C for 1 1.5 hr. Dissociated cells were filtered through a 120uM screen into 50 mL tubes. Remaining intact tissue was triturated 10 20 times and again filtered through a 120uM screen into the dissociated cells. Dissociated cells were pelleted in a swinging bucket rotor Eppendorf 5810 R at 500 relative centrifugal force rcf for 5 minutes at 4°C then resuspended in 1mL cold isotonic Percoll Sigma P1644 by gentle pipetting. Isotonic Percoll was prepared by mixing 1 part 10X PBS with 9 parts Percoll. Resuspended cells were transferred to 1.6mL Eppendorf tubes and spun at 2000rcf for 5 minutes at 4°C in a swinging bucket rotor for isopycnic separation. Pigment cells in the pellet were then resuspended in 400µL of ice cold DPBS with 2% fetal calf serum FCS and placed onto preformed Percoll density gradients. Preformed gradients were prepared via centrifugation of 1mL aliquots of isotonic Percoll in 1.6mL tubes at 10 000rcf for 15 minutes at 4°C in a fixed angle micro centrifuge Eppendorf 5415 R. Tubes containing preformed Percoll gradients with overlying cell suspensions were centrifuged in a swinging bucket rotor at 2000rcf for 10 minutes at 4°C. Following centrifugation overlying Percoll was aspirated leaving the final 100µL containing the pigment cell pellet. Cells were resuspended with 50µL of cold DPBS with 2% FCS and transferred to a clean 1.6mL tube containing 500µL of cold DPBS with 2% FCS and kept on ice until mRNA extraction or FACS. FACS We used the inherent properties of the pigmented cells to perform Fluorescence Activated Cell Sorting FACS. Following resuspension in 500µL cold DPBS with 2% FCS the enriched cell populations were screened through a 30uM cell filter Partec 04 0042 2316. Cells were analyzed and sorted with a Dako MoFlo cell sorter using a 120uM nozzle at a drop drive DD frequency of 22390Hz. Cells were illuminated using a 488 nm laser. Cells were gated on two attributes to separate cells from each other and from cellular debris. Cellular debris was detected using forward and side scatter selecting against the smallest particles 1µm or less. Cells were sorted based on detection using 510 530nm and 575 595nm filters corresponding to FL1 and FL2 in Figure 1D respectively. When excited by the 488 nm laser the autofluorescence of iridophores is clearly detectable in these channels as a group of cells extending at a 45 degree line in the upper right quadrant. Melanocytes and RPE do not autofluoresce with this intensity when excited by the 488nm laser and cluster at the lower left of the FACS plot. Cells were collected into ice cold DPBS with 2% FCS and kept on ice until mRNA extraction. Pigment cell cDNA library construction was as follows. For mRNA extraction the Dynabeads® mRNA DIRECT Kit Invitrogen was used per manufacturer's instructions. Following mRNA elution from the Dynabeads first strand cDNA synthesis was performed using MMLV reverse transcriptase Clontech using an anchored polyT primer tailed with a universal primer sequence See Table S3 for primer sequences and Figure 2 for pigment cell cDNA library construction overview. A universal primer sequence was also added to the three prime end of the first strand by template switching allowing for PCR amplification of the resultant cDNA [43 44]. Following PCR amplification using the high fidelity polymerase LA Taq TaKaRa PCR cycle: 95C for 1 minute followed by 20 cycles of 98C for 25 seconds 60C for 1 minute 68C for 20 minutes cDNA was digested with AluI and RsaI restriction enzymes NEB. Blunt end enzymatic fragmentation of cDNA was used instead of sonication and gel extraction to minimize loss of sample material and eliminate the end repair step of Illumina library preparation. Since this reduced representation strategy might miss short cDNAs that lack both restriction sites we sought to avoid this by including enzyme recognition sites within the cDNA amplification primers. This allows for the inclusion of short cDNAs in our libraries. Standard Illumina library preparations followed performed by the Genome Technology Access Center GTAC at Washington University in St. Louis http://gtac.wustl.edu. In brief a single A was added to the 3’ end of each strand Y adapters ligated and library enrichment PCR performed followed by gel extraction size selection for fragments ranging from 200 400 base pairs in length. Illumina library construction of pooled 3dpf embryos was performed by GTAC from total RNA extracted with Trizol reagent as previously described [45]. No PCR amplification of whole embryo cDNA was performed prior to Illumina adapter ligation and library enrichment. Sequencing was performed on the GAIIX Illumina platform.,GEO Accession:GSM1129613,RNA-Seq,TRANSCRIPTOMIC,cDNA,SINGLE,ILLUMINA,Illumina HiSeq 2000,,SRP021517,,,dm_77h_26_351_AGAT.fq.bz2,fastq,101340432.0,2815012.0,GSM1129613 r1,0:36,A:26592120;C:23518331;G:24503636;T:26725495;N:850,36,,,,26592120,23518331,24503636,26725495,850,SRX271951,SRS416247,SRA074390,GEO,"Rob Mitra, Genetics, Washington University",1,0.75158,,0.05787,,0.88986,,0.57167,,36,,B,,usable mapping rate,illumina,hiseq_era,3prime,poly_a,unknown,bulk,unknown,unknown,,United States,2013-04-25,Larval,Larval,Skin,Surface Structure
36727,SRR835152,SRX271948,SRS416244,SRP021517,PRJNA198908,Gene Expression Analysis of Zebrafish Melanocytes Iridophores and Retinal Pigmented Epithelium Reveals Indicators of Biological Function and Developmental Origin,GSE46387,Transcriptome Analysis,In order to facilitate understanding of pigment cell biology we developed a method to concomitantly purify melanocytes iridophores and retinal pigmented epithelium from zebrafish and analyzed their transcriptomes. Comparing expression data from these cell types and whole embryos allowed us to reveal gene expression co enrichment in melanocytes and retinal pigmented epithelium as well as in melanocytes and iridophores. We found 214 genes co enriched in melanocytes and retinal pigmented epithelium indicating the shared functions of melanin producing cells. We found 62 genes significantly co enriched in melanocytes and iridophores illustrative of their shared developmental origins from the neural crest. This is also the first analysis of the iridophore transcriptome. Gene expression analysis for iridophores revealed extensive enrichment of specific enzymes to coordinate production of their guanine based reflective pigment. We speculate the coordinated upregulation of specific enzymes from several metabolic pathways recycles the rate limiting substrate for purine synthesis phosphoribosyl pyrophosphate thus constituting a guanine cycle. The purification procedure and expression analysis described here along with the accompanying transcriptome wide expression data provide the first mRNA sequencing data for multiple purified zebrafish pigment cell types and will be a useful resource for further studies of pigment cell biology. Overall design: mRNA profiles of zebrafish pigment cells were generated using Illumina GAIIX sequencing,,pubmed:23874447,,dm 77h 25 433,GSM1129610,,tissue:melanocytes|hpf,dm 77h 25 433,Align sequences using Novoalign to cDNA database Calculate RPKMs from Novoalign output using Perl Genome build: Non redundant database of 25 102 cDNAs generated by Higdon et al 2013 based on NCBI's RefSeq build from 8/29/2012 current RefSeq available at ftp://ftp.ncbi.nlm.nih.gov/refseq/D rerio/mRNA Prot/zebrafish.rna.fna.gz Supplementary files format and content: Excell file containing RPKMs of each library,melanocytes,,This study was carried out in accordance with the Washington University Animal Use Committee guidelines under approved protocol #20110236. Zebrafish were reared and bred according to standard protocols. The fish used in this study were homozygous for a temperature sensitive allele of micropthalmia transcription factor mitfavc7. This mutant facilitated the collection of RPE as mitfa is not required for RPE development in zebrafish. Melanocytes iridophores and RPE develop normally at 25°C in mitfavc7. When held at 32°C the neural crest derived melanocytes do not develop but RPE and iridophores develop normally. All melanocyte and iridophore samples were incubated at 25°C prior to collection. Fish were anesthetized with Tricaine rinsed with Ca Mg DPBS Sigma D8537 and immersed in 100mL TrypLE Express Invitrogen 12604039 per 1000 fish. Fish were incubated at 37°C and shaken at 100rpm for 15 20 minutes followed by trituration with a Pasteur pipette to remove eyes from larva. post separation of eyes and larva each group was placed in TrypLE Express and shaken at 100rpm at 37°C for 1 1.5 hr. Dissociated cells were filtered through a 120uM screen into 50 mL tubes. Remaining intact tissue was triturated 10 20 times and again filtered through a 120uM screen into the dissociated cells. Dissociated cells were pelleted in a swinging bucket rotor Eppendorf 5810 R at 500 relative centrifugal force rcf for 5 minutes at 4°C then resuspended in 1mL cold isotonic Percoll Sigma P1644 by gentle pipetting. Isotonic Percoll was prepared by mixing 1 part 10X PBS with 9 parts Percoll. Resuspended cells were transferred to 1.6mL Eppendorf tubes and spun at 2000rcf for 5 minutes at 4°C in a swinging bucket rotor for isopycnic separation. Pigment cells in the pellet were then resuspended in 400µL of ice cold DPBS with 2% fetal calf serum FCS and placed onto preformed Percoll density gradients. Preformed gradients were prepared via centrifugation of 1mL aliquots of isotonic Percoll in 1.6mL tubes at 10 000rcf for 15 minutes at 4°C in a fixed angle micro centrifuge Eppendorf 5415 R. Tubes containing preformed Percoll gradients with overlying cell suspensions were centrifuged in a swinging bucket rotor at 2000rcf for 10 minutes at 4°C. Following centrifugation overlying Percoll was aspirated leaving the final 100µL containing the pigment cell pellet. Cells were resuspended with 50µL of cold DPBS with 2% FCS and transferred to a clean 1.6mL tube containing 500µL of cold DPBS with 2% FCS and kept on ice until mRNA extraction or FACS. FACS We used the inherent properties of the pigmented cells to perform Fluorescence Activated Cell Sorting FACS. Following resuspension in 500µL cold DPBS with 2% FCS the enriched cell populations were screened through a 30uM cell filter Partec 04 0042 2316. Cells were analyzed and sorted with a Dako MoFlo cell sorter using a 120uM nozzle at a drop drive DD frequency of 22390Hz. Cells were illuminated using a 488 nm laser. Cells were gated on two attributes to separate cells from each other and from cellular debris. Cellular debris was detected using forward and side scatter selecting against the smallest particles 1µm or less. Cells were sorted based on detection using 510 530nm and 575 595nm filters corresponding to FL1 and FL2 in Figure 1D respectively. When excited by the 488 nm laser the autofluorescence of iridophores is clearly detectable in these channels as a group of cells extending at a 45 degree line in the upper right quadrant. Melanocytes and RPE do not autofluoresce with this intensity when excited by the 488nm laser and cluster at the lower left of the FACS plot. Cells were collected into ice cold DPBS with 2% FCS and kept on ice until mRNA extraction. Pigment cell cDNA library construction was as follows. For mRNA extraction the Dynabeads® mRNA DIRECT Kit Invitrogen was used per manufacturer's instructions. Following mRNA elution from the Dynabeads first strand cDNA synthesis was performed using MMLV reverse transcriptase Clontech using an anchored polyT primer tailed with a universal primer sequence See Table S3 for primer sequences and Figure 2 for pigment cell cDNA library construction overview. A universal primer sequence was also added to the three prime end of the first strand by template switching allowing for PCR amplification of the resultant cDNA [43 44]. Following PCR amplification using the high fidelity polymerase LA Taq TaKaRa PCR cycle: 95C for 1 minute followed by 20 cycles of 98C for 25 seconds 60C for 1 minute 68C for 20 minutes cDNA was digested with AluI and RsaI restriction enzymes NEB. Blunt end enzymatic fragmentation of cDNA was used instead of sonication and gel extraction to minimize loss of sample material and eliminate the end repair step of Illumina library preparation. Since this reduced representation strategy might miss short cDNAs that lack both restriction sites we sought to avoid this by including enzyme recognition sites within the cDNA amplification primers. This allows for the inclusion of short cDNAs in our libraries. Standard Illumina library preparations followed performed by the Genome Technology Access Center GTAC at Washington University in St. Louis http://gtac.wustl.edu. In brief a single A was added to the 3’ end of each strand Y adapters ligated and library enrichment PCR performed followed by gel extraction size selection for fragments ranging from 200 400 base pairs in length. Illumina library construction of pooled 3dpf embryos was performed by GTAC from total RNA extracted with Trizol reagent as previously described [45]. No PCR amplification of whole embryo cDNA was performed prior to Illumina adapter ligation and library enrichment. Sequencing was performed on the GAIIX Illumina platform.,,hpf,GSM1129610,GSM1129610: dm 77h 25 433; Danio rerio; RNA Seq,GSM1129610 1,,1,This study was carried out in accordance with the Washington University Animal Use Committee guidelines under approved protocol #20110236. Zebrafish were reared and bred according to standard protocols. The fish used in this study were homozygous for a temperature sensitive allele of micropthalmia transcription factor mitfavc7. This mutant facilitated the collection of RPE as mitfa is not required for RPE development in zebrafish. Melanocytes iridophores and RPE develop normally at 25°C in mitfavc7. When held at 32°C the neural crest derived melanocytes do not develop but RPE and iridophores develop normally. All melanocyte and iridophore samples were incubated at 25°C prior to collection. Fish were anesthetized with Tricaine rinsed with Ca Mg DPBS Sigma D8537 and immersed in 100mL TrypLE Express Invitrogen 12604039 per 1000 fish. Fish were incubated at 37°C and shaken at 100rpm for 15 20 minutes followed by trituration with a Pasteur pipette to remove eyes from larva. post separation of eyes and larva each group was placed in TrypLE Express and shaken at 100rpm at 37°C for 1 1.5 hr. Dissociated cells were filtered through a 120uM screen into 50 mL tubes. Remaining intact tissue was triturated 10 20 times and again filtered through a 120uM screen into the dissociated cells. Dissociated cells were pelleted in a swinging bucket rotor Eppendorf 5810 R at 500 relative centrifugal force rcf for 5 minutes at 4°C then resuspended in 1mL cold isotonic Percoll Sigma P1644 by gentle pipetting. Isotonic Percoll was prepared by mixing 1 part 10X PBS with 9 parts Percoll. Resuspended cells were transferred to 1.6mL Eppendorf tubes and spun at 2000rcf for 5 minutes at 4°C in a swinging bucket rotor for isopycnic separation. Pigment cells in the pellet were then resuspended in 400µL of ice cold DPBS with 2% fetal calf serum FCS and placed onto preformed Percoll density gradients. Preformed gradients were prepared via centrifugation of 1mL aliquots of isotonic Percoll in 1.6mL tubes at 10 000rcf for 15 minutes at 4°C in a fixed angle micro centrifuge Eppendorf 5415 R. Tubes containing preformed Percoll gradients with overlying cell suspensions were centrifuged in a swinging bucket rotor at 2000rcf for 10 minutes at 4°C. Following centrifugation overlying Percoll was aspirated leaving the final 100µL containing the pigment cell pellet. Cells were resuspended with 50µL of cold DPBS with 2% FCS and transferred to a clean 1.6mL tube containing 500µL of cold DPBS with 2% FCS and kept on ice until mRNA extraction or FACS. FACS We used the inherent properties of the pigmented cells to perform Fluorescence Activated Cell Sorting FACS. Following resuspension in 500µL cold DPBS with 2% FCS the enriched cell populations were screened through a 30uM cell filter Partec 04 0042 2316. Cells were analyzed and sorted with a Dako MoFlo cell sorter using a 120uM nozzle at a drop drive DD frequency of 22390Hz. Cells were illuminated using a 488 nm laser. Cells were gated on two attributes to separate cells from each other and from cellular debris. Cellular debris was detected using forward and side scatter selecting against the smallest particles 1µm or less. Cells were sorted based on detection using 510 530nm and 575 595nm filters corresponding to FL1 and FL2 in Figure 1D respectively. When excited by the 488 nm laser the autofluorescence of iridophores is clearly detectable in these channels as a group of cells extending at a 45 degree line in the upper right quadrant. Melanocytes and RPE do not autofluoresce with this intensity when excited by the 488nm laser and cluster at the lower left of the FACS plot. Cells were collected into ice cold DPBS with 2% FCS and kept on ice until mRNA extraction. Pigment cell cDNA library construction was as follows. For mRNA extraction the Dynabeads® mRNA DIRECT Kit Invitrogen was used per manufacturer's instructions. Following mRNA elution from the Dynabeads first strand cDNA synthesis was performed using MMLV reverse transcriptase Clontech using an anchored polyT primer tailed with a universal primer sequence See Table S3 for primer sequences and Figure 2 for pigment cell cDNA library construction overview. A universal primer sequence was also added to the three prime end of the first strand by template switching allowing for PCR amplification of the resultant cDNA [43 44]. Following PCR amplification using the high fidelity polymerase LA Taq TaKaRa PCR cycle: 95C for 1 minute followed by 20 cycles of 98C for 25 seconds 60C for 1 minute 68C for 20 minutes cDNA was digested with AluI and RsaI restriction enzymes NEB. Blunt end enzymatic fragmentation of cDNA was used instead of sonication and gel extraction to minimize loss of sample material and eliminate the end repair step of Illumina library preparation. Since this reduced representation strategy might miss short cDNAs that lack both restriction sites we sought to avoid this by including enzyme recognition sites within the cDNA amplification primers. This allows for the inclusion of short cDNAs in our libraries. Standard Illumina library preparations followed performed by the Genome Technology Access Center GTAC at Washington University in St. Louis http://gtac.wustl.edu. In brief a single A was added to the 3’ end of each strand Y adapters ligated and library enrichment PCR performed followed by gel extraction size selection for fragments ranging from 200 400 base pairs in length. Illumina library construction of pooled 3dpf embryos was performed by GTAC from total RNA extracted with Trizol reagent as previously described [45]. No PCR amplification of whole embryo cDNA was performed prior to Illumina adapter ligation and library enrichment. Sequencing was performed on the GAIIX Illumina platform.,GEO Accession:GSM1129610,RNA-Seq,TRANSCRIPTOMIC,cDNA,SINGLE,ILLUMINA,Illumina HiSeq 2000,,SRP021517,,,dm_77h_25_433_TCTT.fq.bz2,fastq,489386604.0,11652062.0,GSM1129610 r1,0:42,A:99597908;C:134563195;G:119005661;T:136214210;N:5630,42,,,,99597908,134563195,119005661,136214210,5630,SRX271948,SRS416244,SRA074390,GEO,"Rob Mitra, Genetics, Washington University",1,0.79072,,0.08396,,0.87497,,0.51318,,42,,B,,usable mapping rate,illumina,hiseq_era,3prime,poly_a,unknown,bulk,unknown,unknown,,United States,2013-04-25,Larval,Larval,Skin,Surface Structure
36728,SRR835151,SRX271947,SRS416243,SRP021517,PRJNA198908,Gene Expression Analysis of Zebrafish Melanocytes Iridophores and Retinal Pigmented Epithelium Reveals Indicators of Biological Function and Developmental Origin,GSE46387,Transcriptome Analysis,In order to facilitate understanding of pigment cell biology we developed a method to concomitantly purify melanocytes iridophores and retinal pigmented epithelium from zebrafish and analyzed their transcriptomes. Comparing expression data from these cell types and whole embryos allowed us to reveal gene expression co enrichment in melanocytes and retinal pigmented epithelium as well as in melanocytes and iridophores. We found 214 genes co enriched in melanocytes and retinal pigmented epithelium indicating the shared functions of melanin producing cells. We found 62 genes significantly co enriched in melanocytes and iridophores illustrative of their shared developmental origins from the neural crest. This is also the first analysis of the iridophore transcriptome. Gene expression analysis for iridophores revealed extensive enrichment of specific enzymes to coordinate production of their guanine based reflective pigment. We speculate the coordinated upregulation of specific enzymes from several metabolic pathways recycles the rate limiting substrate for purine synthesis phosphoribosyl pyrophosphate thus constituting a guanine cycle. The purification procedure and expression analysis described here along with the accompanying transcriptome wide expression data provide the first mRNA sequencing data for multiple purified zebrafish pigment cell types and will be a useful resource for further studies of pigment cell biology. Overall design: mRNA profiles of zebrafish pigment cells were generated using Illumina GAIIX sequencing,,pubmed:23874447,,dm 77h 25 351,GSM1129609,,tissue:melanocytes|hpf,dm 77h 25 351,Align sequences using Novoalign to cDNA database Calculate RPKMs from Novoalign output using Perl Genome build: Non redundant database of 25 102 cDNAs generated by Higdon et al 2013 based on NCBI's RefSeq build from 8/29/2012 current RefSeq available at ftp://ftp.ncbi.nlm.nih.gov/refseq/D rerio/mRNA Prot/zebrafish.rna.fna.gz Supplementary files format and content: Excell file containing RPKMs of each library,melanocytes,,This study was carried out in accordance with the Washington University Animal Use Committee guidelines under approved protocol #20110236. Zebrafish were reared and bred according to standard protocols. The fish used in this study were homozygous for a temperature sensitive allele of micropthalmia transcription factor mitfavc7. This mutant facilitated the collection of RPE as mitfa is not required for RPE development in zebrafish. Melanocytes iridophores and RPE develop normally at 25°C in mitfavc7. When held at 32°C the neural crest derived melanocytes do not develop but RPE and iridophores develop normally. All melanocyte and iridophore samples were incubated at 25°C prior to collection. Fish were anesthetized with Tricaine rinsed with Ca Mg DPBS Sigma D8537 and immersed in 100mL TrypLE Express Invitrogen 12604039 per 1000 fish. Fish were incubated at 37°C and shaken at 100rpm for 15 20 minutes followed by trituration with a Pasteur pipette to remove eyes from larva. post separation of eyes and larva each group was placed in TrypLE Express and shaken at 100rpm at 37°C for 1 1.5 hr. Dissociated cells were filtered through a 120uM screen into 50 mL tubes. Remaining intact tissue was triturated 10 20 times and again filtered through a 120uM screen into the dissociated cells. Dissociated cells were pelleted in a swinging bucket rotor Eppendorf 5810 R at 500 relative centrifugal force rcf for 5 minutes at 4°C then resuspended in 1mL cold isotonic Percoll Sigma P1644 by gentle pipetting. Isotonic Percoll was prepared by mixing 1 part 10X PBS with 9 parts Percoll. Resuspended cells were transferred to 1.6mL Eppendorf tubes and spun at 2000rcf for 5 minutes at 4°C in a swinging bucket rotor for isopycnic separation. Pigment cells in the pellet were then resuspended in 400µL of ice cold DPBS with 2% fetal calf serum FCS and placed onto preformed Percoll density gradients. Preformed gradients were prepared via centrifugation of 1mL aliquots of isotonic Percoll in 1.6mL tubes at 10 000rcf for 15 minutes at 4°C in a fixed angle micro centrifuge Eppendorf 5415 R. Tubes containing preformed Percoll gradients with overlying cell suspensions were centrifuged in a swinging bucket rotor at 2000rcf for 10 minutes at 4°C. Following centrifugation overlying Percoll was aspirated leaving the final 100µL containing the pigment cell pellet. Cells were resuspended with 50µL of cold DPBS with 2% FCS and transferred to a clean 1.6mL tube containing 500µL of cold DPBS with 2% FCS and kept on ice until mRNA extraction or FACS. FACS We used the inherent properties of the pigmented cells to perform Fluorescence Activated Cell Sorting FACS. Following resuspension in 500µL cold DPBS with 2% FCS the enriched cell populations were screened through a 30uM cell filter Partec 04 0042 2316. Cells were analyzed and sorted with a Dako MoFlo cell sorter using a 120uM nozzle at a drop drive DD frequency of 22390Hz. Cells were illuminated using a 488 nm laser. Cells were gated on two attributes to separate cells from each other and from cellular debris. Cellular debris was detected using forward and side scatter selecting against the smallest particles 1µm or less. Cells were sorted based on detection using 510 530nm and 575 595nm filters corresponding to FL1 and FL2 in Figure 1D respectively. When excited by the 488 nm laser the autofluorescence of iridophores is clearly detectable in these channels as a group of cells extending at a 45 degree line in the upper right quadrant. Melanocytes and RPE do not autofluoresce with this intensity when excited by the 488nm laser and cluster at the lower left of the FACS plot. Cells were collected into ice cold DPBS with 2% FCS and kept on ice until mRNA extraction. Pigment cell cDNA library construction was as follows. For mRNA extraction the Dynabeads® mRNA DIRECT Kit Invitrogen was used per manufacturer's instructions. Following mRNA elution from the Dynabeads first strand cDNA synthesis was performed using MMLV reverse transcriptase Clontech using an anchored polyT primer tailed with a universal primer sequence See Table S3 for primer sequences and Figure 2 for pigment cell cDNA library construction overview. A universal primer sequence was also added to the three prime end of the first strand by template switching allowing for PCR amplification of the resultant cDNA [43 44]. Following PCR amplification using the high fidelity polymerase LA Taq TaKaRa PCR cycle: 95C for 1 minute followed by 20 cycles of 98C for 25 seconds 60C for 1 minute 68C for 20 minutes cDNA was digested with AluI and RsaI restriction enzymes NEB. Blunt end enzymatic fragmentation of cDNA was used instead of sonication and gel extraction to minimize loss of sample material and eliminate the end repair step of Illumina library preparation. Since this reduced representation strategy might miss short cDNAs that lack both restriction sites we sought to avoid this by including enzyme recognition sites within the cDNA amplification primers. This allows for the inclusion of short cDNAs in our libraries. Standard Illumina library preparations followed performed by the Genome Technology Access Center GTAC at Washington University in St. Louis http://gtac.wustl.edu. In brief a single A was added to the 3’ end of each strand Y adapters ligated and library enrichment PCR performed followed by gel extraction size selection for fragments ranging from 200 400 base pairs in length. Illumina library construction of pooled 3dpf embryos was performed by GTAC from total RNA extracted with Trizol reagent as previously described [45]. No PCR amplification of whole embryo cDNA was performed prior to Illumina adapter ligation and library enrichment. Sequencing was performed on the GAIIX Illumina platform.,,hpf,GSM1129609,GSM1129609: dm 77h 25 351; Danio rerio; RNA Seq,GSM1129609 1,,1,This study was carried out in accordance with the Washington University Animal Use Committee guidelines under approved protocol #20110236. Zebrafish were reared and bred according to standard protocols. The fish used in this study were homozygous for a temperature sensitive allele of micropthalmia transcription factor mitfavc7. This mutant facilitated the collection of RPE as mitfa is not required for RPE development in zebrafish. Melanocytes iridophores and RPE develop normally at 25°C in mitfavc7. When held at 32°C the neural crest derived melanocytes do not develop but RPE and iridophores develop normally. All melanocyte and iridophore samples were incubated at 25°C prior to collection. Fish were anesthetized with Tricaine rinsed with Ca Mg DPBS Sigma D8537 and immersed in 100mL TrypLE Express Invitrogen 12604039 per 1000 fish. Fish were incubated at 37°C and shaken at 100rpm for 15 20 minutes followed by trituration with a Pasteur pipette to remove eyes from larva. post separation of eyes and larva each group was placed in TrypLE Express and shaken at 100rpm at 37°C for 1 1.5 hr. Dissociated cells were filtered through a 120uM screen into 50 mL tubes. Remaining intact tissue was triturated 10 20 times and again filtered through a 120uM screen into the dissociated cells. Dissociated cells were pelleted in a swinging bucket rotor Eppendorf 5810 R at 500 relative centrifugal force rcf for 5 minutes at 4°C then resuspended in 1mL cold isotonic Percoll Sigma P1644 by gentle pipetting. Isotonic Percoll was prepared by mixing 1 part 10X PBS with 9 parts Percoll. Resuspended cells were transferred to 1.6mL Eppendorf tubes and spun at 2000rcf for 5 minutes at 4°C in a swinging bucket rotor for isopycnic separation. Pigment cells in the pellet were then resuspended in 400µL of ice cold DPBS with 2% fetal calf serum FCS and placed onto preformed Percoll density gradients. Preformed gradients were prepared via centrifugation of 1mL aliquots of isotonic Percoll in 1.6mL tubes at 10 000rcf for 15 minutes at 4°C in a fixed angle micro centrifuge Eppendorf 5415 R. Tubes containing preformed Percoll gradients with overlying cell suspensions were centrifuged in a swinging bucket rotor at 2000rcf for 10 minutes at 4°C. Following centrifugation overlying Percoll was aspirated leaving the final 100µL containing the pigment cell pellet. Cells were resuspended with 50µL of cold DPBS with 2% FCS and transferred to a clean 1.6mL tube containing 500µL of cold DPBS with 2% FCS and kept on ice until mRNA extraction or FACS. FACS We used the inherent properties of the pigmented cells to perform Fluorescence Activated Cell Sorting FACS. Following resuspension in 500µL cold DPBS with 2% FCS the enriched cell populations were screened through a 30uM cell filter Partec 04 0042 2316. Cells were analyzed and sorted with a Dako MoFlo cell sorter using a 120uM nozzle at a drop drive DD frequency of 22390Hz. Cells were illuminated using a 488 nm laser. Cells were gated on two attributes to separate cells from each other and from cellular debris. Cellular debris was detected using forward and side scatter selecting against the smallest particles 1µm or less. Cells were sorted based on detection using 510 530nm and 575 595nm filters corresponding to FL1 and FL2 in Figure 1D respectively. When excited by the 488 nm laser the autofluorescence of iridophores is clearly detectable in these channels as a group of cells extending at a 45 degree line in the upper right quadrant. Melanocytes and RPE do not autofluoresce with this intensity when excited by the 488nm laser and cluster at the lower left of the FACS plot. Cells were collected into ice cold DPBS with 2% FCS and kept on ice until mRNA extraction. Pigment cell cDNA library construction was as follows. For mRNA extraction the Dynabeads® mRNA DIRECT Kit Invitrogen was used per manufacturer's instructions. Following mRNA elution from the Dynabeads first strand cDNA synthesis was performed using MMLV reverse transcriptase Clontech using an anchored polyT primer tailed with a universal primer sequence See Table S3 for primer sequences and Figure 2 for pigment cell cDNA library construction overview. A universal primer sequence was also added to the three prime end of the first strand by template switching allowing for PCR amplification of the resultant cDNA [43 44]. Following PCR amplification using the high fidelity polymerase LA Taq TaKaRa PCR cycle: 95C for 1 minute followed by 20 cycles of 98C for 25 seconds 60C for 1 minute 68C for 20 minutes cDNA was digested with AluI and RsaI restriction enzymes NEB. Blunt end enzymatic fragmentation of cDNA was used instead of sonication and gel extraction to minimize loss of sample material and eliminate the end repair step of Illumina library preparation. Since this reduced representation strategy might miss short cDNAs that lack both restriction sites we sought to avoid this by including enzyme recognition sites within the cDNA amplification primers. This allows for the inclusion of short cDNAs in our libraries. Standard Illumina library preparations followed performed by the Genome Technology Access Center GTAC at Washington University in St. Louis http://gtac.wustl.edu. In brief a single A was added to the 3’ end of each strand Y adapters ligated and library enrichment PCR performed followed by gel extraction size selection for fragments ranging from 200 400 base pairs in length. Illumina library construction of pooled 3dpf embryos was performed by GTAC from total RNA extracted with Trizol reagent as previously described [45]. No PCR amplification of whole embryo cDNA was performed prior to Illumina adapter ligation and library enrichment. Sequencing was performed on the GAIIX Illumina platform.,GEO Accession:GSM1129609,RNA-Seq,TRANSCRIPTOMIC,cDNA,SINGLE,ILLUMINA,Illumina HiSeq 2000,,SRP021517,,,dm_77h_25_351_TCTT.fq.bz2,fastq,98765532.0,2743487.0,GSM1129609 r1,0:36,A:19387910;C:27338385;G:23220852;T:28817575;N:810,36,,,,19387910,27338385,23220852,28817575,810,SRX271947,SRS416243,SRA074390,GEO,"Rob Mitra, Genetics, Washington University",1,0.75369,,0.08166,,0.87667,,0.51755,,36,,B,,usable mapping rate,illumina,hiseq_era,3prime,poly_a,unknown,bulk,unknown,unknown,,United States,2013-04-25,Larval,Larval,Skin,Surface Structure
36729,SRR835150,SRX271946,SRS416242,SRP021517,PRJNA198908,Gene Expression Analysis of Zebrafish Melanocytes Iridophores and Retinal Pigmented Epithelium Reveals Indicators of Biological Function and Developmental Origin,GSE46387,Transcriptome Analysis,In order to facilitate understanding of pigment cell biology we developed a method to concomitantly purify melanocytes iridophores and retinal pigmented epithelium from zebrafish and analyzed their transcriptomes. Comparing expression data from these cell types and whole embryos allowed us to reveal gene expression co enrichment in melanocytes and retinal pigmented epithelium as well as in melanocytes and iridophores. We found 214 genes co enriched in melanocytes and retinal pigmented epithelium indicating the shared functions of melanin producing cells. We found 62 genes significantly co enriched in melanocytes and iridophores illustrative of their shared developmental origins from the neural crest. This is also the first analysis of the iridophore transcriptome. Gene expression analysis for iridophores revealed extensive enrichment of specific enzymes to coordinate production of their guanine based reflective pigment. We speculate the coordinated upregulation of specific enzymes from several metabolic pathways recycles the rate limiting substrate for purine synthesis phosphoribosyl pyrophosphate thus constituting a guanine cycle. The purification procedure and expression analysis described here along with the accompanying transcriptome wide expression data provide the first mRNA sequencing data for multiple purified zebrafish pigment cell types and will be a useful resource for further studies of pigment cell biology. Overall design: mRNA profiles of zebrafish pigment cells were generated using Illumina GAIIX sequencing,,pubmed:23874447,,dm 58h 45 440,GSM1129608,,tissue:melanocytes|hpf,dm 58h 45 440,Align sequences using Novoalign to cDNA database Calculate RPKMs from Novoalign output using Perl Genome build: Non redundant database of 25 102 cDNAs generated by Higdon et al 2013 based on NCBI's RefSeq build from 8/29/2012 current RefSeq available at ftp://ftp.ncbi.nlm.nih.gov/refseq/D rerio/mRNA Prot/zebrafish.rna.fna.gz Supplementary files format and content: Excell file containing RPKMs of each library,melanocytes,,This study was carried out in accordance with the Washington University Animal Use Committee guidelines under approved protocol #20110236. Zebrafish were reared and bred according to standard protocols. The fish used in this study were homozygous for a temperature sensitive allele of micropthalmia transcription factor mitfavc7. This mutant facilitated the collection of RPE as mitfa is not required for RPE development in zebrafish. Melanocytes iridophores and RPE develop normally at 25°C in mitfavc7. When held at 32°C the neural crest derived melanocytes do not develop but RPE and iridophores develop normally. All melanocyte and iridophore samples were incubated at 25°C prior to collection. Fish were anesthetized with Tricaine rinsed with Ca Mg DPBS Sigma D8537 and immersed in 100mL TrypLE Express Invitrogen 12604039 per 1000 fish. Fish were incubated at 37°C and shaken at 100rpm for 15 20 minutes followed by trituration with a Pasteur pipette to remove eyes from larva. post separation of eyes and larva each group was placed in TrypLE Express and shaken at 100rpm at 37°C for 1 1.5 hr. Dissociated cells were filtered through a 120uM screen into 50 mL tubes. Remaining intact tissue was triturated 10 20 times and again filtered through a 120uM screen into the dissociated cells. Dissociated cells were pelleted in a swinging bucket rotor Eppendorf 5810 R at 500 relative centrifugal force rcf for 5 minutes at 4°C then resuspended in 1mL cold isotonic Percoll Sigma P1644 by gentle pipetting. Isotonic Percoll was prepared by mixing 1 part 10X PBS with 9 parts Percoll. Resuspended cells were transferred to 1.6mL Eppendorf tubes and spun at 2000rcf for 5 minutes at 4°C in a swinging bucket rotor for isopycnic separation. Pigment cells in the pellet were then resuspended in 400µL of ice cold DPBS with 2% fetal calf serum FCS and placed onto preformed Percoll density gradients. Preformed gradients were prepared via centrifugation of 1mL aliquots of isotonic Percoll in 1.6mL tubes at 10 000rcf for 15 minutes at 4°C in a fixed angle micro centrifuge Eppendorf 5415 R. Tubes containing preformed Percoll gradients with overlying cell suspensions were centrifuged in a swinging bucket rotor at 2000rcf for 10 minutes at 4°C. Following centrifugation overlying Percoll was aspirated leaving the final 100µL containing the pigment cell pellet. Cells were resuspended with 50µL of cold DPBS with 2% FCS and transferred to a clean 1.6mL tube containing 500µL of cold DPBS with 2% FCS and kept on ice until mRNA extraction or FACS. FACS We used the inherent properties of the pigmented cells to perform Fluorescence Activated Cell Sorting FACS. Following resuspension in 500µL cold DPBS with 2% FCS the enriched cell populations were screened through a 30uM cell filter Partec 04 0042 2316. Cells were analyzed and sorted with a Dako MoFlo cell sorter using a 120uM nozzle at a drop drive DD frequency of 22390Hz. Cells were illuminated using a 488 nm laser. Cells were gated on two attributes to separate cells from each other and from cellular debris. Cellular debris was detected using forward and side scatter selecting against the smallest particles 1µm or less. Cells were sorted based on detection using 510 530nm and 575 595nm filters corresponding to FL1 and FL2 in Figure 1D respectively. When excited by the 488 nm laser the autofluorescence of iridophores is clearly detectable in these channels as a group of cells extending at a 45 degree line in the upper right quadrant. Melanocytes and RPE do not autofluoresce with this intensity when excited by the 488nm laser and cluster at the lower left of the FACS plot. Cells were collected into ice cold DPBS with 2% FCS and kept on ice until mRNA extraction. Pigment cell cDNA library construction was as follows. For mRNA extraction the Dynabeads® mRNA DIRECT Kit Invitrogen was used per manufacturer's instructions. Following mRNA elution from the Dynabeads first strand cDNA synthesis was performed using MMLV reverse transcriptase Clontech using an anchored polyT primer tailed with a universal primer sequence See Table S3 for primer sequences and Figure 2 for pigment cell cDNA library construction overview. A universal primer sequence was also added to the three prime end of the first strand by template switching allowing for PCR amplification of the resultant cDNA [43 44]. Following PCR amplification using the high fidelity polymerase LA Taq TaKaRa PCR cycle: 95C for 1 minute followed by 20 cycles of 98C for 25 seconds 60C for 1 minute 68C for 20 minutes cDNA was digested with AluI and RsaI restriction enzymes NEB. Blunt end enzymatic fragmentation of cDNA was used instead of sonication and gel extraction to minimize loss of sample material and eliminate the end repair step of Illumina library preparation. Since this reduced representation strategy might miss short cDNAs that lack both restriction sites we sought to avoid this by including enzyme recognition sites within the cDNA amplification primers. This allows for the inclusion of short cDNAs in our libraries. Standard Illumina library preparations followed performed by the Genome Technology Access Center GTAC at Washington University in St. Louis http://gtac.wustl.edu. In brief a single A was added to the 3’ end of each strand Y adapters ligated and library enrichment PCR performed followed by gel extraction size selection for fragments ranging from 200 400 base pairs in length. Illumina library construction of pooled 3dpf embryos was performed by GTAC from total RNA extracted with Trizol reagent as previously described [45]. No PCR amplification of whole embryo cDNA was performed prior to Illumina adapter ligation and library enrichment. Sequencing was performed on the GAIIX Illumina platform.,,hpf,GSM1129608,GSM1129608: dm 58h 45 440; Danio rerio; RNA Seq,GSM1129608 1,,1,This study was carried out in accordance with the Washington University Animal Use Committee guidelines under approved protocol #20110236. Zebrafish were reared and bred according to standard protocols. The fish used in this study were homozygous for a temperature sensitive allele of micropthalmia transcription factor mitfavc7. This mutant facilitated the collection of RPE as mitfa is not required for RPE development in zebrafish. Melanocytes iridophores and RPE develop normally at 25°C in mitfavc7. When held at 32°C the neural crest derived melanocytes do not develop but RPE and iridophores develop normally. All melanocyte and iridophore samples were incubated at 25°C prior to collection. Fish were anesthetized with Tricaine rinsed with Ca Mg DPBS Sigma D8537 and immersed in 100mL TrypLE Express Invitrogen 12604039 per 1000 fish. Fish were incubated at 37°C and shaken at 100rpm for 15 20 minutes followed by trituration with a Pasteur pipette to remove eyes from larva. post separation of eyes and larva each group was placed in TrypLE Express and shaken at 100rpm at 37°C for 1 1.5 hr. Dissociated cells were filtered through a 120uM screen into 50 mL tubes. Remaining intact tissue was triturated 10 20 times and again filtered through a 120uM screen into the dissociated cells. Dissociated cells were pelleted in a swinging bucket rotor Eppendorf 5810 R at 500 relative centrifugal force rcf for 5 minutes at 4°C then resuspended in 1mL cold isotonic Percoll Sigma P1644 by gentle pipetting. Isotonic Percoll was prepared by mixing 1 part 10X PBS with 9 parts Percoll. Resuspended cells were transferred to 1.6mL Eppendorf tubes and spun at 2000rcf for 5 minutes at 4°C in a swinging bucket rotor for isopycnic separation. Pigment cells in the pellet were then resuspended in 400µL of ice cold DPBS with 2% fetal calf serum FCS and placed onto preformed Percoll density gradients. Preformed gradients were prepared via centrifugation of 1mL aliquots of isotonic Percoll in 1.6mL tubes at 10 000rcf for 15 minutes at 4°C in a fixed angle micro centrifuge Eppendorf 5415 R. Tubes containing preformed Percoll gradients with overlying cell suspensions were centrifuged in a swinging bucket rotor at 2000rcf for 10 minutes at 4°C. Following centrifugation overlying Percoll was aspirated leaving the final 100µL containing the pigment cell pellet. Cells were resuspended with 50µL of cold DPBS with 2% FCS and transferred to a clean 1.6mL tube containing 500µL of cold DPBS with 2% FCS and kept on ice until mRNA extraction or FACS. FACS We used the inherent properties of the pigmented cells to perform Fluorescence Activated Cell Sorting FACS. Following resuspension in 500µL cold DPBS with 2% FCS the enriched cell populations were screened through a 30uM cell filter Partec 04 0042 2316. Cells were analyzed and sorted with a Dako MoFlo cell sorter using a 120uM nozzle at a drop drive DD frequency of 22390Hz. Cells were illuminated using a 488 nm laser. Cells were gated on two attributes to separate cells from each other and from cellular debris. Cellular debris was detected using forward and side scatter selecting against the smallest particles 1µm or less. Cells were sorted based on detection using 510 530nm and 575 595nm filters corresponding to FL1 and FL2 in Figure 1D respectively. When excited by the 488 nm laser the autofluorescence of iridophores is clearly detectable in these channels as a group of cells extending at a 45 degree line in the upper right quadrant. Melanocytes and RPE do not autofluoresce with this intensity when excited by the 488nm laser and cluster at the lower left of the FACS plot. Cells were collected into ice cold DPBS with 2% FCS and kept on ice until mRNA extraction. Pigment cell cDNA library construction was as follows. For mRNA extraction the Dynabeads® mRNA DIRECT Kit Invitrogen was used per manufacturer's instructions. Following mRNA elution from the Dynabeads first strand cDNA synthesis was performed using MMLV reverse transcriptase Clontech using an anchored polyT primer tailed with a universal primer sequence See Table S3 for primer sequences and Figure 2 for pigment cell cDNA library construction overview. A universal primer sequence was also added to the three prime end of the first strand by template switching allowing for PCR amplification of the resultant cDNA [43 44]. Following PCR amplification using the high fidelity polymerase LA Taq TaKaRa PCR cycle: 95C for 1 minute followed by 20 cycles of 98C for 25 seconds 60C for 1 minute 68C for 20 minutes cDNA was digested with AluI and RsaI restriction enzymes NEB. Blunt end enzymatic fragmentation of cDNA was used instead of sonication and gel extraction to minimize loss of sample material and eliminate the end repair step of Illumina library preparation. Since this reduced representation strategy might miss short cDNAs that lack both restriction sites we sought to avoid this by including enzyme recognition sites within the cDNA amplification primers. This allows for the inclusion of short cDNAs in our libraries. Standard Illumina library preparations followed performed by the Genome Technology Access Center GTAC at Washington University in St. Louis http://gtac.wustl.edu. In brief a single A was added to the 3’ end of each strand Y adapters ligated and library enrichment PCR performed followed by gel extraction size selection for fragments ranging from 200 400 base pairs in length. Illumina library construction of pooled 3dpf embryos was performed by GTAC from total RNA extracted with Trizol reagent as previously described [45]. No PCR amplification of whole embryo cDNA was performed prior to Illumina adapter ligation and library enrichment. Sequencing was performed on the GAIIX Illumina platform.,GEO Accession:GSM1129608,RNA-Seq,TRANSCRIPTOMIC,cDNA,SINGLE,ILLUMINA,Illumina HiSeq 2000,,SRP021517,,,dm_58h_45_440.fq.bz2,fastq,203660982.0,4849071.0,GSM1129608 r1,0:42,A:46576136;C:50204145;G:47522343;T:59345685;N:12673,42,,,,46576136,50204145,47522343,59345685,12673,SRX271946,SRS416242,SRA074390,GEO,"Rob Mitra, Genetics, Washington University",1,0.86133,,0.0978,,0.84565,,0.53118,,42,,B,,usable mapping rate,illumina,hiseq_era,3prime,poly_a,unknown,bulk,unknown,unknown,,United States,2013-04-25,Larval,Larval,Skin,Surface Structure
36730,SRR835149,SRX271945,SRS416241,SRP021517,PRJNA198908,Gene Expression Analysis of Zebrafish Melanocytes Iridophores and Retinal Pigmented Epithelium Reveals Indicators of Biological Function and Developmental Origin,GSE46387,Transcriptome Analysis,In order to facilitate understanding of pigment cell biology we developed a method to concomitantly purify melanocytes iridophores and retinal pigmented epithelium from zebrafish and analyzed their transcriptomes. Comparing expression data from these cell types and whole embryos allowed us to reveal gene expression co enrichment in melanocytes and retinal pigmented epithelium as well as in melanocytes and iridophores. We found 214 genes co enriched in melanocytes and retinal pigmented epithelium indicating the shared functions of melanin producing cells. We found 62 genes significantly co enriched in melanocytes and iridophores illustrative of their shared developmental origins from the neural crest. This is also the first analysis of the iridophore transcriptome. Gene expression analysis for iridophores revealed extensive enrichment of specific enzymes to coordinate production of their guanine based reflective pigment. We speculate the coordinated upregulation of specific enzymes from several metabolic pathways recycles the rate limiting substrate for purine synthesis phosphoribosyl pyrophosphate thus constituting a guanine cycle. The purification procedure and expression analysis described here along with the accompanying transcriptome wide expression data provide the first mRNA sequencing data for multiple purified zebrafish pigment cell types and will be a useful resource for further studies of pigment cell biology. Overall design: mRNA profiles of zebrafish pigment cells were generated using Illumina GAIIX sequencing,,pubmed:23874447,,dm 58h 23 351,GSM1129607,,tissue:melanocytes|hpf,dm 58h 23 351,Align sequences using Novoalign to cDNA database Calculate RPKMs from Novoalign output using Perl Genome build: Non redundant database of 25 102 cDNAs generated by Higdon et al 2013 based on NCBI's RefSeq build from 8/29/2012 current RefSeq available at ftp://ftp.ncbi.nlm.nih.gov/refseq/D rerio/mRNA Prot/zebrafish.rna.fna.gz Supplementary files format and content: Excell file containing RPKMs of each library,melanocytes,,This study was carried out in accordance with the Washington University Animal Use Committee guidelines under approved protocol #20110236. Zebrafish were reared and bred according to standard protocols. The fish used in this study were homozygous for a temperature sensitive allele of micropthalmia transcription factor mitfavc7. This mutant facilitated the collection of RPE as mitfa is not required for RPE development in zebrafish. Melanocytes iridophores and RPE develop normally at 25°C in mitfavc7. When held at 32°C the neural crest derived melanocytes do not develop but RPE and iridophores develop normally. All melanocyte and iridophore samples were incubated at 25°C prior to collection. Fish were anesthetized with Tricaine rinsed with Ca Mg DPBS Sigma D8537 and immersed in 100mL TrypLE Express Invitrogen 12604039 per 1000 fish. Fish were incubated at 37°C and shaken at 100rpm for 15 20 minutes followed by trituration with a Pasteur pipette to remove eyes from larva. post separation of eyes and larva each group was placed in TrypLE Express and shaken at 100rpm at 37°C for 1 1.5 hr. Dissociated cells were filtered through a 120uM screen into 50 mL tubes. Remaining intact tissue was triturated 10 20 times and again filtered through a 120uM screen into the dissociated cells. Dissociated cells were pelleted in a swinging bucket rotor Eppendorf 5810 R at 500 relative centrifugal force rcf for 5 minutes at 4°C then resuspended in 1mL cold isotonic Percoll Sigma P1644 by gentle pipetting. Isotonic Percoll was prepared by mixing 1 part 10X PBS with 9 parts Percoll. Resuspended cells were transferred to 1.6mL Eppendorf tubes and spun at 2000rcf for 5 minutes at 4°C in a swinging bucket rotor for isopycnic separation. Pigment cells in the pellet were then resuspended in 400µL of ice cold DPBS with 2% fetal calf serum FCS and placed onto preformed Percoll density gradients. Preformed gradients were prepared via centrifugation of 1mL aliquots of isotonic Percoll in 1.6mL tubes at 10 000rcf for 15 minutes at 4°C in a fixed angle micro centrifuge Eppendorf 5415 R. Tubes containing preformed Percoll gradients with overlying cell suspensions were centrifuged in a swinging bucket rotor at 2000rcf for 10 minutes at 4°C. Following centrifugation overlying Percoll was aspirated leaving the final 100µL containing the pigment cell pellet. Cells were resuspended with 50µL of cold DPBS with 2% FCS and transferred to a clean 1.6mL tube containing 500µL of cold DPBS with 2% FCS and kept on ice until mRNA extraction or FACS. FACS We used the inherent properties of the pigmented cells to perform Fluorescence Activated Cell Sorting FACS. Following resuspension in 500µL cold DPBS with 2% FCS the enriched cell populations were screened through a 30uM cell filter Partec 04 0042 2316. Cells were analyzed and sorted with a Dako MoFlo cell sorter using a 120uM nozzle at a drop drive DD frequency of 22390Hz. Cells were illuminated using a 488 nm laser. Cells were gated on two attributes to separate cells from each other and from cellular debris. Cellular debris was detected using forward and side scatter selecting against the smallest particles 1µm or less. Cells were sorted based on detection using 510 530nm and 575 595nm filters corresponding to FL1 and FL2 in Figure 1D respectively. When excited by the 488 nm laser the autofluorescence of iridophores is clearly detectable in these channels as a group of cells extending at a 45 degree line in the upper right quadrant. Melanocytes and RPE do not autofluoresce with this intensity when excited by the 488nm laser and cluster at the lower left of the FACS plot. Cells were collected into ice cold DPBS with 2% FCS and kept on ice until mRNA extraction. Pigment cell cDNA library construction was as follows. For mRNA extraction the Dynabeads® mRNA DIRECT Kit Invitrogen was used per manufacturer's instructions. Following mRNA elution from the Dynabeads first strand cDNA synthesis was performed using MMLV reverse transcriptase Clontech using an anchored polyT primer tailed with a universal primer sequence See Table S3 for primer sequences and Figure 2 for pigment cell cDNA library construction overview. A universal primer sequence was also added to the three prime end of the first strand by template switching allowing for PCR amplification of the resultant cDNA [43 44]. Following PCR amplification using the high fidelity polymerase LA Taq TaKaRa PCR cycle: 95C for 1 minute followed by 20 cycles of 98C for 25 seconds 60C for 1 minute 68C for 20 minutes cDNA was digested with AluI and RsaI restriction enzymes NEB. Blunt end enzymatic fragmentation of cDNA was used instead of sonication and gel extraction to minimize loss of sample material and eliminate the end repair step of Illumina library preparation. Since this reduced representation strategy might miss short cDNAs that lack both restriction sites we sought to avoid this by including enzyme recognition sites within the cDNA amplification primers. This allows for the inclusion of short cDNAs in our libraries. Standard Illumina library preparations followed performed by the Genome Technology Access Center GTAC at Washington University in St. Louis http://gtac.wustl.edu. In brief a single A was added to the 3’ end of each strand Y adapters ligated and library enrichment PCR performed followed by gel extraction size selection for fragments ranging from 200 400 base pairs in length. Illumina library construction of pooled 3dpf embryos was performed by GTAC from total RNA extracted with Trizol reagent as previously described [45]. No PCR amplification of whole embryo cDNA was performed prior to Illumina adapter ligation and library enrichment. Sequencing was performed on the GAIIX Illumina platform.,,hpf,GSM1129607,GSM1129607: dm 58h 23 351; Danio rerio; RNA Seq,GSM1129607 1,,1,This study was carried out in accordance with the Washington University Animal Use Committee guidelines under approved protocol #20110236. Zebrafish were reared and bred according to standard protocols. The fish used in this study were homozygous for a temperature sensitive allele of micropthalmia transcription factor mitfavc7. This mutant facilitated the collection of RPE as mitfa is not required for RPE development in zebrafish. Melanocytes iridophores and RPE develop normally at 25°C in mitfavc7. When held at 32°C the neural crest derived melanocytes do not develop but RPE and iridophores develop normally. All melanocyte and iridophore samples were incubated at 25°C prior to collection. Fish were anesthetized with Tricaine rinsed with Ca Mg DPBS Sigma D8537 and immersed in 100mL TrypLE Express Invitrogen 12604039 per 1000 fish. Fish were incubated at 37°C and shaken at 100rpm for 15 20 minutes followed by trituration with a Pasteur pipette to remove eyes from larva. post separation of eyes and larva each group was placed in TrypLE Express and shaken at 100rpm at 37°C for 1 1.5 hr. Dissociated cells were filtered through a 120uM screen into 50 mL tubes. Remaining intact tissue was triturated 10 20 times and again filtered through a 120uM screen into the dissociated cells. Dissociated cells were pelleted in a swinging bucket rotor Eppendorf 5810 R at 500 relative centrifugal force rcf for 5 minutes at 4°C then resuspended in 1mL cold isotonic Percoll Sigma P1644 by gentle pipetting. Isotonic Percoll was prepared by mixing 1 part 10X PBS with 9 parts Percoll. Resuspended cells were transferred to 1.6mL Eppendorf tubes and spun at 2000rcf for 5 minutes at 4°C in a swinging bucket rotor for isopycnic separation. Pigment cells in the pellet were then resuspended in 400µL of ice cold DPBS with 2% fetal calf serum FCS and placed onto preformed Percoll density gradients. Preformed gradients were prepared via centrifugation of 1mL aliquots of isotonic Percoll in 1.6mL tubes at 10 000rcf for 15 minutes at 4°C in a fixed angle micro centrifuge Eppendorf 5415 R. Tubes containing preformed Percoll gradients with overlying cell suspensions were centrifuged in a swinging bucket rotor at 2000rcf for 10 minutes at 4°C. Following centrifugation overlying Percoll was aspirated leaving the final 100µL containing the pigment cell pellet. Cells were resuspended with 50µL of cold DPBS with 2% FCS and transferred to a clean 1.6mL tube containing 500µL of cold DPBS with 2% FCS and kept on ice until mRNA extraction or FACS. FACS We used the inherent properties of the pigmented cells to perform Fluorescence Activated Cell Sorting FACS. Following resuspension in 500µL cold DPBS with 2% FCS the enriched cell populations were screened through a 30uM cell filter Partec 04 0042 2316. Cells were analyzed and sorted with a Dako MoFlo cell sorter using a 120uM nozzle at a drop drive DD frequency of 22390Hz. Cells were illuminated using a 488 nm laser. Cells were gated on two attributes to separate cells from each other and from cellular debris. Cellular debris was detected using forward and side scatter selecting against the smallest particles 1µm or less. Cells were sorted based on detection using 510 530nm and 575 595nm filters corresponding to FL1 and FL2 in Figure 1D respectively. When excited by the 488 nm laser the autofluorescence of iridophores is clearly detectable in these channels as a group of cells extending at a 45 degree line in the upper right quadrant. Melanocytes and RPE do not autofluoresce with this intensity when excited by the 488nm laser and cluster at the lower left of the FACS plot. Cells were collected into ice cold DPBS with 2% FCS and kept on ice until mRNA extraction. Pigment cell cDNA library construction was as follows. For mRNA extraction the Dynabeads® mRNA DIRECT Kit Invitrogen was used per manufacturer's instructions. Following mRNA elution from the Dynabeads first strand cDNA synthesis was performed using MMLV reverse transcriptase Clontech using an anchored polyT primer tailed with a universal primer sequence See Table S3 for primer sequences and Figure 2 for pigment cell cDNA library construction overview. A universal primer sequence was also added to the three prime end of the first strand by template switching allowing for PCR amplification of the resultant cDNA [43 44]. Following PCR amplification using the high fidelity polymerase LA Taq TaKaRa PCR cycle: 95C for 1 minute followed by 20 cycles of 98C for 25 seconds 60C for 1 minute 68C for 20 minutes cDNA was digested with AluI and RsaI restriction enzymes NEB. Blunt end enzymatic fragmentation of cDNA was used instead of sonication and gel extraction to minimize loss of sample material and eliminate the end repair step of Illumina library preparation. Since this reduced representation strategy might miss short cDNAs that lack both restriction sites we sought to avoid this by including enzyme recognition sites within the cDNA amplification primers. This allows for the inclusion of short cDNAs in our libraries. Standard Illumina library preparations followed performed by the Genome Technology Access Center GTAC at Washington University in St. Louis http://gtac.wustl.edu. In brief a single A was added to the 3’ end of each strand Y adapters ligated and library enrichment PCR performed followed by gel extraction size selection for fragments ranging from 200 400 base pairs in length. Illumina library construction of pooled 3dpf embryos was performed by GTAC from total RNA extracted with Trizol reagent as previously described [45]. No PCR amplification of whole embryo cDNA was performed prior to Illumina adapter ligation and library enrichment. Sequencing was performed on the GAIIX Illumina platform.,GEO Accession:GSM1129607,RNA-Seq,TRANSCRIPTOMIC,cDNA,SINGLE,ILLUMINA,Illumina HiSeq 2000,,SRP021517,,,dm_58h_23_351_GAAT.fq.bz2,fastq,106123464.0,2947874.0,GSM1129607 r1,0:36,A:26495114;C:26882652;G:25518440;T:27226454;N:804,36,,,,26495114,26882652,25518440,27226454,804,SRX271945,SRS416241,SRA074390,GEO,"Rob Mitra, Genetics, Washington University",1,0.78561,,0.06331,,0.85107,,0.46073,,36,,B,,usable mapping rate,illumina,hiseq_era,3prime,poly_a,unknown,bulk,unknown,unknown,,United States,2013-04-25,Larval,Larval,Skin,Surface Structure
36741,SRR850608,SRX277695,SRS420758,SRP022612,PRJNA203029,RNA seq of Danio rerio and Mus musculus skin for three different age groups,GSE46916,Other,Background: Comparison of temporal gene expression profiles. The RNA seq data comprises 3 age groups: 2 15 month and 30 month for mouse skin; 5 24 month and 42 month for zebrafish skin. Illumina 50bp single stranded single read RNA sequencing Jena Centre for Systems Biology of Ageing JenAge www.jenage.de Overall design: 15 samples for mouse: 5 biological replicates for 2 month 6 biological replicates for 15 month and 4 biological replicates for 30 month; 20 samples for zebrafish: 9 biological replicates for 5 month 6 biological replicates for 24 month and 5 biological replicates for 42 month,,pubmed:26620638,,Nr18 danrer skin 42months rep5,GSM1141118,,source name:total RNA extracted from skin|strain:TuAB|age:42 month|tissue:skin,Nr18 danrer skin 42months rep5,Illumina Casava software used for extraction of FASTQ files FASTQ files were mapped using Bowtie vs. the respective genomic sequence and a splice site data set created using UCSC's RefSeq annotation for each species Counting of uniquely mapped reads and assignment to RefSeq transcripts/genes using R Statistical Language and Bioconductor Calculation of RPKM values for each transcript and gene from the corresponding RefSeq annotation Genome build: D. rerio: danRer7; M. musculus: mm9 Supplementary files format and content: Excel file include raw counts and RPKM values for each sample,total RNA extracted from skin,,D. rerio: Skin tissue from male zebrafish was dissected and stored in RNAlater Qiagen Hilden Germany at 80 °C. Total RNA was isolated with TRIzol Life Technologies Darmstadt Germany according to the instructions of the manufacturer. M. musculus: The isolated skin was homogenized in 500 μl QIAzol Qiagen by subsequently adding 100 μl chloroform. Following phase separation the aqueous phase was transferred into a fresh tube then 0.16 volume NaAc 2 M pH 4.0 and 1.1 volume isopropanol were added. The RNA was precipitated by centrifugation and the pellet was washed with 75% ethanol. Total RNA was resuspended in 20 μl water GIBCO and stored at –80°C until use. D. rerio: 5 µg of total RNA was used for preparation of libraries using Illumina’s mRNA Seq sample prep kit Illumina San Diego CA USA following the manufacturer’s instruction. M. musculus: 2.5 µg of total RNA was used with Illumina’s TruSeq RNA sample prep kit.,,strain:TuAB|age:42 month|tissue:skin,GSM1141118,GSM1141118: Nr18 danrer skin 42months rep5; Danio rerio; RNA Seq,GSM1141118 1,,1,D. rerio: Skin tissue from male zebrafish was dissected and stored in RNAlater Qiagen Hilden Germany at 80 °C. Total RNA was isolated with TRIzol Life Technologies Darmstadt Germany according to the instructions of the manufacturer. M. musculus: The isolated skin was homogenized in 500 μl QIAzol Qiagen by subsequently adding 100 μl chloroform. Following phase separation the aqueous phase was transferred into a fresh tube then 0.16 volume NaAc 2 M pH 4.0 and 1.1 volume isopropanol were added. The RNA was precipitated by centrifugation and the pellet was washed with 75% ethanol. Total RNA was resuspended in 20 μl water GIBCO and stored at –80°C until use. D. rerio: 5 µg of total RNA was used for preparation of libraries using Illumina’s mRNA Seq sample prep kit Illumina San Diego CA USA following the manufacturer’s instruction. M. musculus: 2.5 µg of total RNA was used with Illumina’s TruSeq RNA sample prep kit.,GEO Accession:GSM1141118,RNA-Seq,TRANSCRIPTOMIC,cDNA,SINGLE,ILLUMINA,Illumina Genome Analyzer IIx,,SRP022612,,,Nr18_3.5y_l3_export.fq.gz,fastq,3269418540.0,43018665.0,GSM1141118 r1,0:76,A:892486836;C:744426899;G:749230539;T:883114979;N:159287,76,,,,892486836,744426899,749230539,883114979,159287,SRX277695,SRS420758,SRA076297,GEO,Leibniz Institute for Age Research - Fritz Lipmann Institute,1,0.91402,,0.1106,,0.73436,,0.4911,,76,,B,,usable mapping rate,illumina,early_illumina,unknown,cdna_unspecified,trueseq,bulk,bulk,bulk,,Germany,2013-05-14,Adult,Adult,Skin,Surface Structure
36742,SRR850607,SRX277694,SRS420757,SRP022612,PRJNA203029,RNA seq of Danio rerio and Mus musculus skin for three different age groups,GSE46916,Other,Background: Comparison of temporal gene expression profiles. The RNA seq data comprises 3 age groups: 2 15 month and 30 month for mouse skin; 5 24 month and 42 month for zebrafish skin. Illumina 50bp single stranded single read RNA sequencing Jena Centre for Systems Biology of Ageing JenAge www.jenage.de Overall design: 15 samples for mouse: 5 biological replicates for 2 month 6 biological replicates for 15 month and 4 biological replicates for 30 month; 20 samples for zebrafish: 9 biological replicates for 5 month 6 biological replicates for 24 month and 5 biological replicates for 42 month,,pubmed:26620638,,Nr14 danrer skin 42months rep4,GSM1141117,,source name:total RNA extracted from skin|strain:TuAB|age:42 month|tissue:skin,Nr14 danrer skin 42months rep4,Illumina Casava software used for extraction of FASTQ files FASTQ files were mapped using Bowtie vs. the respective genomic sequence and a splice site data set created using UCSC's RefSeq annotation for each species Counting of uniquely mapped reads and assignment to RefSeq transcripts/genes using R Statistical Language and Bioconductor Calculation of RPKM values for each transcript and gene from the corresponding RefSeq annotation Genome build: D. rerio: danRer7; M. musculus: mm9 Supplementary files format and content: Excel file include raw counts and RPKM values for each sample,total RNA extracted from skin,,D. rerio: Skin tissue from male zebrafish was dissected and stored in RNAlater Qiagen Hilden Germany at 80 °C. Total RNA was isolated with TRIzol Life Technologies Darmstadt Germany according to the instructions of the manufacturer. M. musculus: The isolated skin was homogenized in 500 μl QIAzol Qiagen by subsequently adding 100 μl chloroform. Following phase separation the aqueous phase was transferred into a fresh tube then 0.16 volume NaAc 2 M pH 4.0 and 1.1 volume isopropanol were added. The RNA was precipitated by centrifugation and the pellet was washed with 75% ethanol. Total RNA was resuspended in 20 μl water GIBCO and stored at –80°C until use. D. rerio: 5 µg of total RNA was used for preparation of libraries using Illumina’s mRNA Seq sample prep kit Illumina San Diego CA USA following the manufacturer’s instruction. M. musculus: 2.5 µg of total RNA was used with Illumina’s TruSeq RNA sample prep kit.,,strain:TuAB|age:42 month|tissue:skin,GSM1141117,GSM1141117: Nr14 danrer skin 42months rep4; Danio rerio; RNA Seq,GSM1141117 1,,1,D. rerio: Skin tissue from male zebrafish was dissected and stored in RNAlater Qiagen Hilden Germany at 80 °C. Total RNA was isolated with TRIzol Life Technologies Darmstadt Germany according to the instructions of the manufacturer. M. musculus: The isolated skin was homogenized in 500 μl QIAzol Qiagen by subsequently adding 100 μl chloroform. Following phase separation the aqueous phase was transferred into a fresh tube then 0.16 volume NaAc 2 M pH 4.0 and 1.1 volume isopropanol were added. The RNA was precipitated by centrifugation and the pellet was washed with 75% ethanol. Total RNA was resuspended in 20 μl water GIBCO and stored at –80°C until use. D. rerio: 5 µg of total RNA was used for preparation of libraries using Illumina’s mRNA Seq sample prep kit Illumina San Diego CA USA following the manufacturer’s instruction. M. musculus: 2.5 µg of total RNA was used with Illumina’s TruSeq RNA sample prep kit.,GEO Accession:GSM1141117,RNA-Seq,TRANSCRIPTOMIC,cDNA,SINGLE,ILLUMINA,Illumina Genome Analyzer IIx,,SRP022612,,,Nr14_3.5y_l2_export.fq.gz,fastq,2300890044.0,30274869.0,GSM1141117 r1,0:76,A:631736236;C:525065199;G:510761115;T:633208038;N:119456,76,,,,631736236,525065199,510761115,633208038,119456,SRX277694,SRS420757,SRA076297,GEO,Leibniz Institute for Age Research - Fritz Lipmann Institute,1,0.90718,,0.11607,,0.71997,,0.49141,,76,,B,,usable mapping rate,illumina,early_illumina,unknown,cdna_unspecified,trueseq,bulk,bulk,bulk,,Germany,2013-05-14,Adult,Adult,Skin,Surface Structure
36743,SRR850606,SRX277693,SRS420790,SRP022612,PRJNA203029,RNA seq of Danio rerio and Mus musculus skin for three different age groups,GSE46916,Other,Background: Comparison of temporal gene expression profiles. The RNA seq data comprises 3 age groups: 2 15 month and 30 month for mouse skin; 5 24 month and 42 month for zebrafish skin. Illumina 50bp single stranded single read RNA sequencing Jena Centre for Systems Biology of Ageing JenAge www.jenage.de Overall design: 15 samples for mouse: 5 biological replicates for 2 month 6 biological replicates for 15 month and 4 biological replicates for 30 month; 20 samples for zebrafish: 9 biological replicates for 5 month 6 biological replicates for 24 month and 5 biological replicates for 42 month,,pubmed:26620638,,Nr13 danrer skin 42months rep3,GSM1141116,,source name:total RNA extracted from skin|strain:TuAB|age:42 month|tissue:skin,Nr13 danrer skin 42months rep3,Illumina Casava software used for extraction of FASTQ files FASTQ files were mapped using Bowtie vs. the respective genomic sequence and a splice site data set created using UCSC's RefSeq annotation for each species Counting of uniquely mapped reads and assignment to RefSeq transcripts/genes using R Statistical Language and Bioconductor Calculation of RPKM values for each transcript and gene from the corresponding RefSeq annotation Genome build: D. rerio: danRer7; M. musculus: mm9 Supplementary files format and content: Excel file include raw counts and RPKM values for each sample,total RNA extracted from skin,,D. rerio: Skin tissue from male zebrafish was dissected and stored in RNAlater Qiagen Hilden Germany at 80 °C. Total RNA was isolated with TRIzol Life Technologies Darmstadt Germany according to the instructions of the manufacturer. M. musculus: The isolated skin was homogenized in 500 μl QIAzol Qiagen by subsequently adding 100 μl chloroform. Following phase separation the aqueous phase was transferred into a fresh tube then 0.16 volume NaAc 2 M pH 4.0 and 1.1 volume isopropanol were added. The RNA was precipitated by centrifugation and the pellet was washed with 75% ethanol. Total RNA was resuspended in 20 μl water GIBCO and stored at –80°C until use. D. rerio: 5 µg of total RNA was used for preparation of libraries using Illumina’s mRNA Seq sample prep kit Illumina San Diego CA USA following the manufacturer’s instruction. M. musculus: 2.5 µg of total RNA was used with Illumina’s TruSeq RNA sample prep kit.,,strain:TuAB|age:42 month|tissue:skin,GSM1141116,GSM1141116: Nr13 danrer skin 42months rep3; Danio rerio; RNA Seq,GSM1141116 1,,1,D. rerio: Skin tissue from male zebrafish was dissected and stored in RNAlater Qiagen Hilden Germany at 80 °C. Total RNA was isolated with TRIzol Life Technologies Darmstadt Germany according to the instructions of the manufacturer. M. musculus: The isolated skin was homogenized in 500 μl QIAzol Qiagen by subsequently adding 100 μl chloroform. Following phase separation the aqueous phase was transferred into a fresh tube then 0.16 volume NaAc 2 M pH 4.0 and 1.1 volume isopropanol were added. The RNA was precipitated by centrifugation and the pellet was washed with 75% ethanol. Total RNA was resuspended in 20 μl water GIBCO and stored at –80°C until use. D. rerio: 5 µg of total RNA was used for preparation of libraries using Illumina’s mRNA Seq sample prep kit Illumina San Diego CA USA following the manufacturer’s instruction. M. musculus: 2.5 µg of total RNA was used with Illumina’s TruSeq RNA sample prep kit.,GEO Accession:GSM1141116,RNA-Seq,TRANSCRIPTOMIC,cDNA,SINGLE,ILLUMINA,Illumina Genome Analyzer IIx,,SRP022612,,,Nr13_3.5y_l1_export.fastq.gz,fastq,3508110372.0,46159347.0,GSM1141116 r1,0:76,A:959986155;C:782258637;G:803256847;T:962450623;N:158110,76,,,,959986155,782258637,803256847,962450623,158110,SRX277693,SRS420790,SRA076297,GEO,Leibniz Institute for Age Research - Fritz Lipmann Institute,1,0.85747,,0.12068,,0.73819,,0.4917,,76,,B,,usable mapping rate,illumina,early_illumina,unknown,cdna_unspecified,trueseq,bulk,bulk,bulk,,Germany,2013-05-14,Adult,Adult,Skin,Surface Structure
36744,SRR850605,SRX277692,SRS420789,SRP022612,PRJNA203029,RNA seq of Danio rerio and Mus musculus skin for three different age groups,GSE46916,Other,Background: Comparison of temporal gene expression profiles. The RNA seq data comprises 3 age groups: 2 15 month and 30 month for mouse skin; 5 24 month and 42 month for zebrafish skin. Illumina 50bp single stranded single read RNA sequencing Jena Centre for Systems Biology of Ageing JenAge www.jenage.de Overall design: 15 samples for mouse: 5 biological replicates for 2 month 6 biological replicates for 15 month and 4 biological replicates for 30 month; 20 samples for zebrafish: 9 biological replicates for 5 month 6 biological replicates for 24 month and 5 biological replicates for 42 month,,pubmed:26620638,,Nr12 danrer skin 42months rep2,GSM1141115,,source name:total RNA extracted from skin|strain:TuAB|age:42 month|tissue:skin,Nr12 danrer skin 42months rep2,Illumina Casava software used for extraction of FASTQ files FASTQ files were mapped using Bowtie vs. the respective genomic sequence and a splice site data set created using UCSC's RefSeq annotation for each species Counting of uniquely mapped reads and assignment to RefSeq transcripts/genes using R Statistical Language and Bioconductor Calculation of RPKM values for each transcript and gene from the corresponding RefSeq annotation Genome build: D. rerio: danRer7; M. musculus: mm9 Supplementary files format and content: Excel file include raw counts and RPKM values for each sample,total RNA extracted from skin,,D. rerio: Skin tissue from male zebrafish was dissected and stored in RNAlater Qiagen Hilden Germany at 80 °C. Total RNA was isolated with TRIzol Life Technologies Darmstadt Germany according to the instructions of the manufacturer. M. musculus: The isolated skin was homogenized in 500 μl QIAzol Qiagen by subsequently adding 100 μl chloroform. Following phase separation the aqueous phase was transferred into a fresh tube then 0.16 volume NaAc 2 M pH 4.0 and 1.1 volume isopropanol were added. The RNA was precipitated by centrifugation and the pellet was washed with 75% ethanol. Total RNA was resuspended in 20 μl water GIBCO and stored at –80°C until use. D. rerio: 5 µg of total RNA was used for preparation of libraries using Illumina’s mRNA Seq sample prep kit Illumina San Diego CA USA following the manufacturer’s instruction. M. musculus: 2.5 µg of total RNA was used with Illumina’s TruSeq RNA sample prep kit.,,strain:TuAB|age:42 month|tissue:skin,GSM1141115,GSM1141115: Nr12 danrer skin 42months rep2; Danio rerio; RNA Seq,GSM1141115 1,,1,D. rerio: Skin tissue from male zebrafish was dissected and stored in RNAlater Qiagen Hilden Germany at 80 °C. Total RNA was isolated with TRIzol Life Technologies Darmstadt Germany according to the instructions of the manufacturer. M. musculus: The isolated skin was homogenized in 500 μl QIAzol Qiagen by subsequently adding 100 μl chloroform. Following phase separation the aqueous phase was transferred into a fresh tube then 0.16 volume NaAc 2 M pH 4.0 and 1.1 volume isopropanol were added. The RNA was precipitated by centrifugation and the pellet was washed with 75% ethanol. Total RNA was resuspended in 20 μl water GIBCO and stored at –80°C until use. D. rerio: 5 µg of total RNA was used for preparation of libraries using Illumina’s mRNA Seq sample prep kit Illumina San Diego CA USA following the manufacturer’s instruction. M. musculus: 2.5 µg of total RNA was used with Illumina’s TruSeq RNA sample prep kit.,GEO Accession:GSM1141115,RNA-Seq,TRANSCRIPTOMIC,cDNA,SINGLE,ILLUMINA,Illumina Genome Analyzer IIx,,SRP022612,,,Nr12_3.5y_l3_export.fq.gz,fastq,3961243804.0,52121629.0,GSM1141115 r1,0:76,A:1092811778;C:874440215;G:892629531;T:1099367104;N:1995176,76,,,,1092811778,874440215,892629531,1099367104,1995176,SRX277692,SRS420789,SRA076297,GEO,Leibniz Institute for Age Research - Fritz Lipmann Institute,1,0.88854,,0.12633,,0.73746,,0.53849,,76,,B,,usable mapping rate,illumina,early_illumina,unknown,cdna_unspecified,trueseq,bulk,bulk,bulk,,Germany,2013-05-14,Adult,Adult,Skin,Surface Structure
36745,SRR850604,SRX277691,SRS420788,SRP022612,PRJNA203029,RNA seq of Danio rerio and Mus musculus skin for three different age groups,GSE46916,Other,Background: Comparison of temporal gene expression profiles. The RNA seq data comprises 3 age groups: 2 15 month and 30 month for mouse skin; 5 24 month and 42 month for zebrafish skin. Illumina 50bp single stranded single read RNA sequencing Jena Centre for Systems Biology of Ageing JenAge www.jenage.de Overall design: 15 samples for mouse: 5 biological replicates for 2 month 6 biological replicates for 15 month and 4 biological replicates for 30 month; 20 samples for zebrafish: 9 biological replicates for 5 month 6 biological replicates for 24 month and 5 biological replicates for 42 month,,pubmed:26620638,,Nr11 danrer skin 42months rep1,GSM1141114,,source name:total RNA extracted from skin|strain:TuAB|age:42 month|tissue:skin,Nr11 danrer skin 42months rep1,Illumina Casava software used for extraction of FASTQ files FASTQ files were mapped using Bowtie vs. the respective genomic sequence and a splice site data set created using UCSC's RefSeq annotation for each species Counting of uniquely mapped reads and assignment to RefSeq transcripts/genes using R Statistical Language and Bioconductor Calculation of RPKM values for each transcript and gene from the corresponding RefSeq annotation Genome build: D. rerio: danRer7; M. musculus: mm9 Supplementary files format and content: Excel file include raw counts and RPKM values for each sample,total RNA extracted from skin,,D. rerio: Skin tissue from male zebrafish was dissected and stored in RNAlater Qiagen Hilden Germany at 80 °C. Total RNA was isolated with TRIzol Life Technologies Darmstadt Germany according to the instructions of the manufacturer. M. musculus: The isolated skin was homogenized in 500 μl QIAzol Qiagen by subsequently adding 100 μl chloroform. Following phase separation the aqueous phase was transferred into a fresh tube then 0.16 volume NaAc 2 M pH 4.0 and 1.1 volume isopropanol were added. The RNA was precipitated by centrifugation and the pellet was washed with 75% ethanol. Total RNA was resuspended in 20 μl water GIBCO and stored at –80°C until use. D. rerio: 5 µg of total RNA was used for preparation of libraries using Illumina’s mRNA Seq sample prep kit Illumina San Diego CA USA following the manufacturer’s instruction. M. musculus: 2.5 µg of total RNA was used with Illumina’s TruSeq RNA sample prep kit.,,strain:TuAB|age:42 month|tissue:skin,GSM1141114,GSM1141114: Nr11 danrer skin 42months rep1; Danio rerio; RNA Seq,GSM1141114 1,,1,D. rerio: Skin tissue from male zebrafish was dissected and stored in RNAlater Qiagen Hilden Germany at 80 °C. Total RNA was isolated with TRIzol Life Technologies Darmstadt Germany according to the instructions of the manufacturer. M. musculus: The isolated skin was homogenized in 500 μl QIAzol Qiagen by subsequently adding 100 μl chloroform. Following phase separation the aqueous phase was transferred into a fresh tube then 0.16 volume NaAc 2 M pH 4.0 and 1.1 volume isopropanol were added. The RNA was precipitated by centrifugation and the pellet was washed with 75% ethanol. Total RNA was resuspended in 20 μl water GIBCO and stored at –80°C until use. D. rerio: 5 µg of total RNA was used for preparation of libraries using Illumina’s mRNA Seq sample prep kit Illumina San Diego CA USA following the manufacturer’s instruction. M. musculus: 2.5 µg of total RNA was used with Illumina’s TruSeq RNA sample prep kit.,GEO Accession:GSM1141114,RNA-Seq,TRANSCRIPTOMIC,cDNA,SINGLE,ILLUMINA,Illumina Genome Analyzer IIx,,SRP022612,,,Nr11_3.5y_l2_export.fq.gz,fastq,3327777040.0,43786540.0,GSM1141114 r1,0:76,A:920364748;C:745739060;G:758842746;T:901558784;N:1271702,76,,,,920364748,745739060,758842746,901558784,1271702,SRX277691,SRS420788,SRA076297,GEO,Leibniz Institute for Age Research - Fritz Lipmann Institute,1,0.86781,,0.11618,,0.72888,,0.50217,,76,,B,,usable mapping rate,illumina,early_illumina,unknown,cdna_unspecified,trueseq,bulk,bulk,bulk,,Germany,2013-05-14,Adult,Adult,Skin,Surface Structure
36746,SRR850603,SRX277690,SRS420756,SRP022612,PRJNA203029,RNA seq of Danio rerio and Mus musculus skin for three different age groups,GSE46916,Other,Background: Comparison of temporal gene expression profiles. The RNA seq data comprises 3 age groups: 2 15 month and 30 month for mouse skin; 5 24 month and 42 month for zebrafish skin. Illumina 50bp single stranded single read RNA sequencing Jena Centre for Systems Biology of Ageing JenAge www.jenage.de Overall design: 15 samples for mouse: 5 biological replicates for 2 month 6 biological replicates for 15 month and 4 biological replicates for 30 month; 20 samples for zebrafish: 9 biological replicates for 5 month 6 biological replicates for 24 month and 5 biological replicates for 42 month,,pubmed:26620638,,Nr76 danrer skin 24months rep6,GSM1141113,,source name:total RNA extracted from skin|strain:TuAB|age:24 month|tissue:skin,Nr76 danrer skin 24months rep6,Illumina Casava software used for extraction of FASTQ files FASTQ files were mapped using Bowtie vs. the respective genomic sequence and a splice site data set created using UCSC's RefSeq annotation for each species Counting of uniquely mapped reads and assignment to RefSeq transcripts/genes using R Statistical Language and Bioconductor Calculation of RPKM values for each transcript and gene from the corresponding RefSeq annotation Genome build: D. rerio: danRer7; M. musculus: mm9 Supplementary files format and content: Excel file include raw counts and RPKM values for each sample,total RNA extracted from skin,,D. rerio: Skin tissue from male zebrafish was dissected and stored in RNAlater Qiagen Hilden Germany at 80 °C. Total RNA was isolated with TRIzol Life Technologies Darmstadt Germany according to the instructions of the manufacturer. M. musculus: The isolated skin was homogenized in 500 μl QIAzol Qiagen by subsequently adding 100 μl chloroform. Following phase separation the aqueous phase was transferred into a fresh tube then 0.16 volume NaAc 2 M pH 4.0 and 1.1 volume isopropanol were added. The RNA was precipitated by centrifugation and the pellet was washed with 75% ethanol. Total RNA was resuspended in 20 μl water GIBCO and stored at –80°C until use. D. rerio: 5 µg of total RNA was used for preparation of libraries using Illumina’s mRNA Seq sample prep kit Illumina San Diego CA USA following the manufacturer’s instruction. M. musculus: 2.5 µg of total RNA was used with Illumina’s TruSeq RNA sample prep kit.,,strain:TuAB|age:24 month|tissue:skin,GSM1141113,GSM1141113: Nr76 danrer skin 24months rep6; Danio rerio; RNA Seq,GSM1141113 1,,1,D. rerio: Skin tissue from male zebrafish was dissected and stored in RNAlater Qiagen Hilden Germany at 80 °C. Total RNA was isolated with TRIzol Life Technologies Darmstadt Germany according to the instructions of the manufacturer. M. musculus: The isolated skin was homogenized in 500 μl QIAzol Qiagen by subsequently adding 100 μl chloroform. Following phase separation the aqueous phase was transferred into a fresh tube then 0.16 volume NaAc 2 M pH 4.0 and 1.1 volume isopropanol were added. The RNA was precipitated by centrifugation and the pellet was washed with 75% ethanol. Total RNA was resuspended in 20 μl water GIBCO and stored at –80°C until use. D. rerio: 5 µg of total RNA was used for preparation of libraries using Illumina’s mRNA Seq sample prep kit Illumina San Diego CA USA following the manufacturer’s instruction. M. musculus: 2.5 µg of total RNA was used with Illumina’s TruSeq RNA sample prep kit.,GEO Accession:GSM1141113,RNA-Seq,TRANSCRIPTOMIC,cDNA,SINGLE,ILLUMINA,Illumina Genome Analyzer IIx,,SRP022612,,,Nr76_2y.fastq.gz,fastq,2234765940.0,29404815.0,GSM1141113 r1,0:76,A:582794172;C:524083367;G:547601836;T:579473821;N:812744,76,,,,582794172,524083367,547601836,579473821,812744,SRX277690,SRS420756,SRA076297,GEO,Leibniz Institute for Age Research - Fritz Lipmann Institute,1,0.89808,,0.07989,,0.73511,,0.47456,,76,,B,,usable mapping rate,illumina,early_illumina,unknown,cdna_unspecified,trueseq,bulk,bulk,bulk,,Germany,2013-05-14,Adult,Adult,Skin,Surface Structure
36747,SRR850602,SRX277689,SRS420755,SRP022612,PRJNA203029,RNA seq of Danio rerio and Mus musculus skin for three different age groups,GSE46916,Other,Background: Comparison of temporal gene expression profiles. The RNA seq data comprises 3 age groups: 2 15 month and 30 month for mouse skin; 5 24 month and 42 month for zebrafish skin. Illumina 50bp single stranded single read RNA sequencing Jena Centre for Systems Biology of Ageing JenAge www.jenage.de Overall design: 15 samples for mouse: 5 biological replicates for 2 month 6 biological replicates for 15 month and 4 biological replicates for 30 month; 20 samples for zebrafish: 9 biological replicates for 5 month 6 biological replicates for 24 month and 5 biological replicates for 42 month,,pubmed:26620638,,Nr75 danrer skin 24months rep5,GSM1141112,,source name:total RNA extracted from skin|strain:TuAB|age:24 month|tissue:skin,Nr75 danrer skin 24months rep5,Illumina Casava software used for extraction of FASTQ files FASTQ files were mapped using Bowtie vs. the respective genomic sequence and a splice site data set created using UCSC's RefSeq annotation for each species Counting of uniquely mapped reads and assignment to RefSeq transcripts/genes using R Statistical Language and Bioconductor Calculation of RPKM values for each transcript and gene from the corresponding RefSeq annotation Genome build: D. rerio: danRer7; M. musculus: mm9 Supplementary files format and content: Excel file include raw counts and RPKM values for each sample,total RNA extracted from skin,,D. rerio: Skin tissue from male zebrafish was dissected and stored in RNAlater Qiagen Hilden Germany at 80 °C. Total RNA was isolated with TRIzol Life Technologies Darmstadt Germany according to the instructions of the manufacturer. M. musculus: The isolated skin was homogenized in 500 μl QIAzol Qiagen by subsequently adding 100 μl chloroform. Following phase separation the aqueous phase was transferred into a fresh tube then 0.16 volume NaAc 2 M pH 4.0 and 1.1 volume isopropanol were added. The RNA was precipitated by centrifugation and the pellet was washed with 75% ethanol. Total RNA was resuspended in 20 μl water GIBCO and stored at –80°C until use. D. rerio: 5 µg of total RNA was used for preparation of libraries using Illumina’s mRNA Seq sample prep kit Illumina San Diego CA USA following the manufacturer’s instruction. M. musculus: 2.5 µg of total RNA was used with Illumina’s TruSeq RNA sample prep kit.,,strain:TuAB|age:24 month|tissue:skin,GSM1141112,GSM1141112: Nr75 danrer skin 24months rep5; Danio rerio; RNA Seq,GSM1141112 1,,1,D. rerio: Skin tissue from male zebrafish was dissected and stored in RNAlater Qiagen Hilden Germany at 80 °C. Total RNA was isolated with TRIzol Life Technologies Darmstadt Germany according to the instructions of the manufacturer. M. musculus: The isolated skin was homogenized in 500 μl QIAzol Qiagen by subsequently adding 100 μl chloroform. Following phase separation the aqueous phase was transferred into a fresh tube then 0.16 volume NaAc 2 M pH 4.0 and 1.1 volume isopropanol were added. The RNA was precipitated by centrifugation and the pellet was washed with 75% ethanol. Total RNA was resuspended in 20 μl water GIBCO and stored at –80°C until use. D. rerio: 5 µg of total RNA was used for preparation of libraries using Illumina’s mRNA Seq sample prep kit Illumina San Diego CA USA following the manufacturer’s instruction. M. musculus: 2.5 µg of total RNA was used with Illumina’s TruSeq RNA sample prep kit.,GEO Accession:GSM1141112,RNA-Seq,TRANSCRIPTOMIC,cDNA,SINGLE,ILLUMINA,Illumina Genome Analyzer IIx,,SRP022612,,,Nr75_2y.fastq.gz,fastq,1000606196.0,13165871.0,GSM1141112 r1,0:76,A:270569436;C:233353660;G:238144829;T:258045669;N:492602,76,,,,270569436,233353660,238144829,258045669,492602,SRX277689,SRS420755,SRA076297,GEO,Leibniz Institute for Age Research - Fritz Lipmann Institute,1,0.8949,,0.07966,,0.7293,,0.47729,,76,,B,,usable mapping rate,illumina,early_illumina,unknown,cdna_unspecified,trueseq,bulk,bulk,bulk,,Germany,2013-05-14,Adult,Adult,Skin,Surface Structure
36748,SRR850601,SRX277688,SRS420754,SRP022612,PRJNA203029,RNA seq of Danio rerio and Mus musculus skin for three different age groups,GSE46916,Other,Background: Comparison of temporal gene expression profiles. The RNA seq data comprises 3 age groups: 2 15 month and 30 month for mouse skin; 5 24 month and 42 month for zebrafish skin. Illumina 50bp single stranded single read RNA sequencing Jena Centre for Systems Biology of Ageing JenAge www.jenage.de Overall design: 15 samples for mouse: 5 biological replicates for 2 month 6 biological replicates for 15 month and 4 biological replicates for 30 month; 20 samples for zebrafish: 9 biological replicates for 5 month 6 biological replicates for 24 month and 5 biological replicates for 42 month,,pubmed:26620638,,Nr73 danrer skin 24months rep4,GSM1141111,,source name:total RNA extracted from skin|strain:TuAB|age:24 month|tissue:skin,Nr73 danrer skin 24months rep4,Illumina Casava software used for extraction of FASTQ files FASTQ files were mapped using Bowtie vs. the respective genomic sequence and a splice site data set created using UCSC's RefSeq annotation for each species Counting of uniquely mapped reads and assignment to RefSeq transcripts/genes using R Statistical Language and Bioconductor Calculation of RPKM values for each transcript and gene from the corresponding RefSeq annotation Genome build: D. rerio: danRer7; M. musculus: mm9 Supplementary files format and content: Excel file include raw counts and RPKM values for each sample,total RNA extracted from skin,,D. rerio: Skin tissue from male zebrafish was dissected and stored in RNAlater Qiagen Hilden Germany at 80 °C. Total RNA was isolated with TRIzol Life Technologies Darmstadt Germany according to the instructions of the manufacturer. M. musculus: The isolated skin was homogenized in 500 μl QIAzol Qiagen by subsequently adding 100 μl chloroform. Following phase separation the aqueous phase was transferred into a fresh tube then 0.16 volume NaAc 2 M pH 4.0 and 1.1 volume isopropanol were added. The RNA was precipitated by centrifugation and the pellet was washed with 75% ethanol. Total RNA was resuspended in 20 μl water GIBCO and stored at –80°C until use. D. rerio: 5 µg of total RNA was used for preparation of libraries using Illumina’s mRNA Seq sample prep kit Illumina San Diego CA USA following the manufacturer’s instruction. M. musculus: 2.5 µg of total RNA was used with Illumina’s TruSeq RNA sample prep kit.,,strain:TuAB|age:24 month|tissue:skin,GSM1141111,GSM1141111: Nr73 danrer skin 24months rep4; Danio rerio; RNA Seq,GSM1141111 1,,1,D. rerio: Skin tissue from male zebrafish was dissected and stored in RNAlater Qiagen Hilden Germany at 80 °C. Total RNA was isolated with TRIzol Life Technologies Darmstadt Germany according to the instructions of the manufacturer. M. musculus: The isolated skin was homogenized in 500 μl QIAzol Qiagen by subsequently adding 100 μl chloroform. Following phase separation the aqueous phase was transferred into a fresh tube then 0.16 volume NaAc 2 M pH 4.0 and 1.1 volume isopropanol were added. The RNA was precipitated by centrifugation and the pellet was washed with 75% ethanol. Total RNA was resuspended in 20 μl water GIBCO and stored at –80°C until use. D. rerio: 5 µg of total RNA was used for preparation of libraries using Illumina’s mRNA Seq sample prep kit Illumina San Diego CA USA following the manufacturer’s instruction. M. musculus: 2.5 µg of total RNA was used with Illumina’s TruSeq RNA sample prep kit.,GEO Accession:GSM1141111,RNA-Seq,TRANSCRIPTOMIC,cDNA,SINGLE,ILLUMINA,Illumina Genome Analyzer IIx,,SRP022612,,,Nr73_2y.fastq.gz,fastq,2283103688.0,30040838.0,GSM1141111 r1,0:76,A:601138588;C:527906584;G:549863593;T:603391353;N:803570,76,,,,601138588,527906584,549863593,603391353,803570,SRX277688,SRS420754,SRA076297,GEO,Leibniz Institute for Age Research - Fritz Lipmann Institute,1,0.90138,,0.08154,,0.72598,,0.49455,,76,,B,,usable mapping rate,illumina,early_illumina,unknown,cdna_unspecified,trueseq,bulk,bulk,bulk,,Germany,2013-05-14,Adult,Adult,Skin,Surface Structure
36749,SRR850600,SRX277687,SRS420787,SRP022612,PRJNA203029,RNA seq of Danio rerio and Mus musculus skin for three different age groups,GSE46916,Other,Background: Comparison of temporal gene expression profiles. The RNA seq data comprises 3 age groups: 2 15 month and 30 month for mouse skin; 5 24 month and 42 month for zebrafish skin. Illumina 50bp single stranded single read RNA sequencing Jena Centre for Systems Biology of Ageing JenAge www.jenage.de Overall design: 15 samples for mouse: 5 biological replicates for 2 month 6 biological replicates for 15 month and 4 biological replicates for 30 month; 20 samples for zebrafish: 9 biological replicates for 5 month 6 biological replicates for 24 month and 5 biological replicates for 42 month,,pubmed:26620638,,Nr72 danrer skin 24months rep3,GSM1141110,,source name:total RNA extracted from skin|strain:TuAB|age:24 month|tissue:skin,Nr72 danrer skin 24months rep3,Illumina Casava software used for extraction of FASTQ files FASTQ files were mapped using Bowtie vs. the respective genomic sequence and a splice site data set created using UCSC's RefSeq annotation for each species Counting of uniquely mapped reads and assignment to RefSeq transcripts/genes using R Statistical Language and Bioconductor Calculation of RPKM values for each transcript and gene from the corresponding RefSeq annotation Genome build: D. rerio: danRer7; M. musculus: mm9 Supplementary files format and content: Excel file include raw counts and RPKM values for each sample,total RNA extracted from skin,,D. rerio: Skin tissue from male zebrafish was dissected and stored in RNAlater Qiagen Hilden Germany at 80 °C. Total RNA was isolated with TRIzol Life Technologies Darmstadt Germany according to the instructions of the manufacturer. M. musculus: The isolated skin was homogenized in 500 μl QIAzol Qiagen by subsequently adding 100 μl chloroform. Following phase separation the aqueous phase was transferred into a fresh tube then 0.16 volume NaAc 2 M pH 4.0 and 1.1 volume isopropanol were added. The RNA was precipitated by centrifugation and the pellet was washed with 75% ethanol. Total RNA was resuspended in 20 μl water GIBCO and stored at –80°C until use. D. rerio: 5 µg of total RNA was used for preparation of libraries using Illumina’s mRNA Seq sample prep kit Illumina San Diego CA USA following the manufacturer’s instruction. M. musculus: 2.5 µg of total RNA was used with Illumina’s TruSeq RNA sample prep kit.,,strain:TuAB|age:24 month|tissue:skin,GSM1141110,GSM1141110: Nr72 danrer skin 24months rep3; Danio rerio; RNA Seq,GSM1141110 1,,1,D. rerio: Skin tissue from male zebrafish was dissected and stored in RNAlater Qiagen Hilden Germany at 80 °C. Total RNA was isolated with TRIzol Life Technologies Darmstadt Germany according to the instructions of the manufacturer. M. musculus: The isolated skin was homogenized in 500 μl QIAzol Qiagen by subsequently adding 100 μl chloroform. Following phase separation the aqueous phase was transferred into a fresh tube then 0.16 volume NaAc 2 M pH 4.0 and 1.1 volume isopropanol were added. The RNA was precipitated by centrifugation and the pellet was washed with 75% ethanol. Total RNA was resuspended in 20 μl water GIBCO and stored at –80°C until use. D. rerio: 5 µg of total RNA was used for preparation of libraries using Illumina’s mRNA Seq sample prep kit Illumina San Diego CA USA following the manufacturer’s instruction. M. musculus: 2.5 µg of total RNA was used with Illumina’s TruSeq RNA sample prep kit.,GEO Accession:GSM1141110,RNA-Seq,TRANSCRIPTOMIC,cDNA,SINGLE,ILLUMINA,Illumina Genome Analyzer IIx,,SRP022612,,,Nr72_2y.fastq.gz,fastq,1692545916.0,22270341.0,GSM1141110 r1,0:76,A:447927627;C:393400289;G:405212681;T:445305247;N:700072,76,,,,447927627,393400289,405212681,445305247,700072,SRX277687,SRS420787,SRA076297,GEO,Leibniz Institute for Age Research - Fritz Lipmann Institute,1,0.88704,,0.08604,,0.72833,,0.47215,,76,,B,,usable mapping rate,illumina,early_illumina,unknown,cdna_unspecified,trueseq,bulk,bulk,bulk,,Germany,2013-05-14,Adult,Adult,Skin,Surface Structure
36750,SRR850599,SRX277686,SRS420786,SRP022612,PRJNA203029,RNA seq of Danio rerio and Mus musculus skin for three different age groups,GSE46916,Other,Background: Comparison of temporal gene expression profiles. The RNA seq data comprises 3 age groups: 2 15 month and 30 month for mouse skin; 5 24 month and 42 month for zebrafish skin. Illumina 50bp single stranded single read RNA sequencing Jena Centre for Systems Biology of Ageing JenAge www.jenage.de Overall design: 15 samples for mouse: 5 biological replicates for 2 month 6 biological replicates for 15 month and 4 biological replicates for 30 month; 20 samples for zebrafish: 9 biological replicates for 5 month 6 biological replicates for 24 month and 5 biological replicates for 42 month,,pubmed:26620638,,Nr71 danrer skin 24months rep2,GSM1141109,,source name:total RNA extracted from skin|strain:TuAB|age:24 month|tissue:skin,Nr71 danrer skin 24months rep2,Illumina Casava software used for extraction of FASTQ files FASTQ files were mapped using Bowtie vs. the respective genomic sequence and a splice site data set created using UCSC's RefSeq annotation for each species Counting of uniquely mapped reads and assignment to RefSeq transcripts/genes using R Statistical Language and Bioconductor Calculation of RPKM values for each transcript and gene from the corresponding RefSeq annotation Genome build: D. rerio: danRer7; M. musculus: mm9 Supplementary files format and content: Excel file include raw counts and RPKM values for each sample,total RNA extracted from skin,,D. rerio: Skin tissue from male zebrafish was dissected and stored in RNAlater Qiagen Hilden Germany at 80 °C. Total RNA was isolated with TRIzol Life Technologies Darmstadt Germany according to the instructions of the manufacturer. M. musculus: The isolated skin was homogenized in 500 μl QIAzol Qiagen by subsequently adding 100 μl chloroform. Following phase separation the aqueous phase was transferred into a fresh tube then 0.16 volume NaAc 2 M pH 4.0 and 1.1 volume isopropanol were added. The RNA was precipitated by centrifugation and the pellet was washed with 75% ethanol. Total RNA was resuspended in 20 μl water GIBCO and stored at –80°C until use. D. rerio: 5 µg of total RNA was used for preparation of libraries using Illumina’s mRNA Seq sample prep kit Illumina San Diego CA USA following the manufacturer’s instruction. M. musculus: 2.5 µg of total RNA was used with Illumina’s TruSeq RNA sample prep kit.,,strain:TuAB|age:24 month|tissue:skin,GSM1141109,GSM1141109: Nr71 danrer skin 24months rep2; Danio rerio; RNA Seq,GSM1141109 1,,1,D. rerio: Skin tissue from male zebrafish was dissected and stored in RNAlater Qiagen Hilden Germany at 80 °C. Total RNA was isolated with TRIzol Life Technologies Darmstadt Germany according to the instructions of the manufacturer. M. musculus: The isolated skin was homogenized in 500 μl QIAzol Qiagen by subsequently adding 100 μl chloroform. Following phase separation the aqueous phase was transferred into a fresh tube then 0.16 volume NaAc 2 M pH 4.0 and 1.1 volume isopropanol were added. The RNA was precipitated by centrifugation and the pellet was washed with 75% ethanol. Total RNA was resuspended in 20 μl water GIBCO and stored at –80°C until use. D. rerio: 5 µg of total RNA was used for preparation of libraries using Illumina’s mRNA Seq sample prep kit Illumina San Diego CA USA following the manufacturer’s instruction. M. musculus: 2.5 µg of total RNA was used with Illumina’s TruSeq RNA sample prep kit.,GEO Accession:GSM1141109,RNA-Seq,TRANSCRIPTOMIC,cDNA,SINGLE,ILLUMINA,Illumina Genome Analyzer IIx,,SRP022612,,,Nr71_2y.fastq.gz,fastq,1897129404.0,24962229.0,GSM1141109 r1,0:76,A:500740954;C:442627409;G:457159802;T:495689680;N:911559,76,,,,500740954,442627409,457159802,495689680,911559,SRX277686,SRS420786,SRA076297,GEO,Leibniz Institute for Age Research - Fritz Lipmann Institute,1,0.88731,,0.07537,,0.73628,,0.4846,,76,,B,,usable mapping rate,illumina,early_illumina,unknown,cdna_unspecified,trueseq,bulk,bulk,bulk,,Germany,2013-05-14,Adult,Adult,Skin,Surface Structure
36751,SRR850598,SRX277685,SRS420785,SRP022612,PRJNA203029,RNA seq of Danio rerio and Mus musculus skin for three different age groups,GSE46916,Other,Background: Comparison of temporal gene expression profiles. The RNA seq data comprises 3 age groups: 2 15 month and 30 month for mouse skin; 5 24 month and 42 month for zebrafish skin. Illumina 50bp single stranded single read RNA sequencing Jena Centre for Systems Biology of Ageing JenAge www.jenage.de Overall design: 15 samples for mouse: 5 biological replicates for 2 month 6 biological replicates for 15 month and 4 biological replicates for 30 month; 20 samples for zebrafish: 9 biological replicates for 5 month 6 biological replicates for 24 month and 5 biological replicates for 42 month,,pubmed:26620638,,Nr70 danrer skin 24months rep1,GSM1141108,,source name:total RNA extracted from skin|strain:TuAB|age:24 month|tissue:skin,Nr70 danrer skin 24months rep1,Illumina Casava software used for extraction of FASTQ files FASTQ files were mapped using Bowtie vs. the respective genomic sequence and a splice site data set created using UCSC's RefSeq annotation for each species Counting of uniquely mapped reads and assignment to RefSeq transcripts/genes using R Statistical Language and Bioconductor Calculation of RPKM values for each transcript and gene from the corresponding RefSeq annotation Genome build: D. rerio: danRer7; M. musculus: mm9 Supplementary files format and content: Excel file include raw counts and RPKM values for each sample,total RNA extracted from skin,,D. rerio: Skin tissue from male zebrafish was dissected and stored in RNAlater Qiagen Hilden Germany at 80 °C. Total RNA was isolated with TRIzol Life Technologies Darmstadt Germany according to the instructions of the manufacturer. M. musculus: The isolated skin was homogenized in 500 μl QIAzol Qiagen by subsequently adding 100 μl chloroform. Following phase separation the aqueous phase was transferred into a fresh tube then 0.16 volume NaAc 2 M pH 4.0 and 1.1 volume isopropanol were added. The RNA was precipitated by centrifugation and the pellet was washed with 75% ethanol. Total RNA was resuspended in 20 μl water GIBCO and stored at –80°C until use. D. rerio: 5 µg of total RNA was used for preparation of libraries using Illumina’s mRNA Seq sample prep kit Illumina San Diego CA USA following the manufacturer’s instruction. M. musculus: 2.5 µg of total RNA was used with Illumina’s TruSeq RNA sample prep kit.,,strain:TuAB|age:24 month|tissue:skin,GSM1141108,GSM1141108: Nr70 danrer skin 24months rep1; Danio rerio; RNA Seq,GSM1141108 1,,1,D. rerio: Skin tissue from male zebrafish was dissected and stored in RNAlater Qiagen Hilden Germany at 80 °C. Total RNA was isolated with TRIzol Life Technologies Darmstadt Germany according to the instructions of the manufacturer. M. musculus: The isolated skin was homogenized in 500 μl QIAzol Qiagen by subsequently adding 100 μl chloroform. Following phase separation the aqueous phase was transferred into a fresh tube then 0.16 volume NaAc 2 M pH 4.0 and 1.1 volume isopropanol were added. The RNA was precipitated by centrifugation and the pellet was washed with 75% ethanol. Total RNA was resuspended in 20 μl water GIBCO and stored at –80°C until use. D. rerio: 5 µg of total RNA was used for preparation of libraries using Illumina’s mRNA Seq sample prep kit Illumina San Diego CA USA following the manufacturer’s instruction. M. musculus: 2.5 µg of total RNA was used with Illumina’s TruSeq RNA sample prep kit.,GEO Accession:GSM1141108,RNA-Seq,TRANSCRIPTOMIC,cDNA,SINGLE,ILLUMINA,Illumina Genome Analyzer IIx,,SRP022612,,,Nr70_2y.fastq.gz,fastq,2239190508.0,29463033.0,GSM1141108 r1,0:76,A:599665392;C:514113743;G:531871299;T:592730477;N:809597,76,,,,599665392,514113743,531871299,592730477,809597,SRX277685,SRS420785,SRA076297,GEO,Leibniz Institute for Age Research - Fritz Lipmann Institute,1,0.89167,,0.09031,,0.73515,,0.49129,,76,,B,,usable mapping rate,illumina,early_illumina,unknown,cdna_unspecified,trueseq,bulk,bulk,bulk,,Germany,2013-05-14,Adult,Adult,Skin,Surface Structure
36752,SRR850597,SRX277684,SRS420784,SRP022612,PRJNA203029,RNA seq of Danio rerio and Mus musculus skin for three different age groups,GSE46916,Other,Background: Comparison of temporal gene expression profiles. The RNA seq data comprises 3 age groups: 2 15 month and 30 month for mouse skin; 5 24 month and 42 month for zebrafish skin. Illumina 50bp single stranded single read RNA sequencing Jena Centre for Systems Biology of Ageing JenAge www.jenage.de Overall design: 15 samples for mouse: 5 biological replicates for 2 month 6 biological replicates for 15 month and 4 biological replicates for 30 month; 20 samples for zebrafish: 9 biological replicates for 5 month 6 biological replicates for 24 month and 5 biological replicates for 42 month,,pubmed:26620638,,Nr30 danrer skin 5months rep9,GSM1141107,,source name:total RNA extracted from skin|strain:TuAB|age:5 month|tissue:skin,Nr30 danrer skin 5months rep9,Illumina Casava software used for extraction of FASTQ files FASTQ files were mapped using Bowtie vs. the respective genomic sequence and a splice site data set created using UCSC's RefSeq annotation for each species Counting of uniquely mapped reads and assignment to RefSeq transcripts/genes using R Statistical Language and Bioconductor Calculation of RPKM values for each transcript and gene from the corresponding RefSeq annotation Genome build: D. rerio: danRer7; M. musculus: mm9 Supplementary files format and content: Excel file include raw counts and RPKM values for each sample,total RNA extracted from skin,,D. rerio: Skin tissue from male zebrafish was dissected and stored in RNAlater Qiagen Hilden Germany at 80 °C. Total RNA was isolated with TRIzol Life Technologies Darmstadt Germany according to the instructions of the manufacturer. M. musculus: The isolated skin was homogenized in 500 μl QIAzol Qiagen by subsequently adding 100 μl chloroform. Following phase separation the aqueous phase was transferred into a fresh tube then 0.16 volume NaAc 2 M pH 4.0 and 1.1 volume isopropanol were added. The RNA was precipitated by centrifugation and the pellet was washed with 75% ethanol. Total RNA was resuspended in 20 μl water GIBCO and stored at –80°C until use. D. rerio: 5 µg of total RNA was used for preparation of libraries using Illumina’s mRNA Seq sample prep kit Illumina San Diego CA USA following the manufacturer’s instruction. M. musculus: 2.5 µg of total RNA was used with Illumina’s TruSeq RNA sample prep kit.,,strain:TuAB|age:5 month|tissue:skin,GSM1141107,GSM1141107: Nr30 danrer skin 5months rep9; Danio rerio; RNA Seq,GSM1141107 1,,1,D. rerio: Skin tissue from male zebrafish was dissected and stored in RNAlater Qiagen Hilden Germany at 80 °C. Total RNA was isolated with TRIzol Life Technologies Darmstadt Germany according to the instructions of the manufacturer. M. musculus: The isolated skin was homogenized in 500 μl QIAzol Qiagen by subsequently adding 100 μl chloroform. Following phase separation the aqueous phase was transferred into a fresh tube then 0.16 volume NaAc 2 M pH 4.0 and 1.1 volume isopropanol were added. The RNA was precipitated by centrifugation and the pellet was washed with 75% ethanol. Total RNA was resuspended in 20 μl water GIBCO and stored at –80°C until use. D. rerio: 5 µg of total RNA was used for preparation of libraries using Illumina’s mRNA Seq sample prep kit Illumina San Diego CA USA following the manufacturer’s instruction. M. musculus: 2.5 µg of total RNA was used with Illumina’s TruSeq RNA sample prep kit.,GEO Accession:GSM1141107,RNA-Seq,TRANSCRIPTOMIC,cDNA,SINGLE,ILLUMINA,Illumina Genome Analyzer IIx,,SRP022612,,,Nr30_5m.fastq.gz,fastq,2502725752.0,32930602.0,GSM1141107 r1,0:76,A:684745428;C:570860380;G:565883575;T:679750149;N:1486220,76,,,,684745428,570860380,565883575,679750149,1486220,SRX277684,SRS420784,SRA076297,GEO,Leibniz Institute for Age Research - Fritz Lipmann Institute,1,0.91789,,0.10423,,0.7263,,0.4909,,76,,B,,usable mapping rate,illumina,early_illumina,unknown,cdna_unspecified,trueseq,bulk,bulk,bulk,,Germany,2013-05-14,Adult,Adult,Skin,Surface Structure
36753,SRR850596,SRX277683,SRS420783,SRP022612,PRJNA203029,RNA seq of Danio rerio and Mus musculus skin for three different age groups,GSE46916,Other,Background: Comparison of temporal gene expression profiles. The RNA seq data comprises 3 age groups: 2 15 month and 30 month for mouse skin; 5 24 month and 42 month for zebrafish skin. Illumina 50bp single stranded single read RNA sequencing Jena Centre for Systems Biology of Ageing JenAge www.jenage.de Overall design: 15 samples for mouse: 5 biological replicates for 2 month 6 biological replicates for 15 month and 4 biological replicates for 30 month; 20 samples for zebrafish: 9 biological replicates for 5 month 6 biological replicates for 24 month and 5 biological replicates for 42 month,,pubmed:26620638,,Nr29 danrer skin 5months rep8,GSM1141106,,source name:total RNA extracted from skin|strain:TuAB|age:5 month|tissue:skin,Nr29 danrer skin 5months rep8,Illumina Casava software used for extraction of FASTQ files FASTQ files were mapped using Bowtie vs. the respective genomic sequence and a splice site data set created using UCSC's RefSeq annotation for each species Counting of uniquely mapped reads and assignment to RefSeq transcripts/genes using R Statistical Language and Bioconductor Calculation of RPKM values for each transcript and gene from the corresponding RefSeq annotation Genome build: D. rerio: danRer7; M. musculus: mm9 Supplementary files format and content: Excel file include raw counts and RPKM values for each sample,total RNA extracted from skin,,D. rerio: Skin tissue from male zebrafish was dissected and stored in RNAlater Qiagen Hilden Germany at 80 °C. Total RNA was isolated with TRIzol Life Technologies Darmstadt Germany according to the instructions of the manufacturer. M. musculus: The isolated skin was homogenized in 500 μl QIAzol Qiagen by subsequently adding 100 μl chloroform. Following phase separation the aqueous phase was transferred into a fresh tube then 0.16 volume NaAc 2 M pH 4.0 and 1.1 volume isopropanol were added. The RNA was precipitated by centrifugation and the pellet was washed with 75% ethanol. Total RNA was resuspended in 20 μl water GIBCO and stored at –80°C until use. D. rerio: 5 µg of total RNA was used for preparation of libraries using Illumina’s mRNA Seq sample prep kit Illumina San Diego CA USA following the manufacturer’s instruction. M. musculus: 2.5 µg of total RNA was used with Illumina’s TruSeq RNA sample prep kit.,,strain:TuAB|age:5 month|tissue:skin,GSM1141106,GSM1141106: Nr29 danrer skin 5months rep8; Danio rerio; RNA Seq,GSM1141106 1,,1,D. rerio: Skin tissue from male zebrafish was dissected and stored in RNAlater Qiagen Hilden Germany at 80 °C. Total RNA was isolated with TRIzol Life Technologies Darmstadt Germany according to the instructions of the manufacturer. M. musculus: The isolated skin was homogenized in 500 μl QIAzol Qiagen by subsequently adding 100 μl chloroform. Following phase separation the aqueous phase was transferred into a fresh tube then 0.16 volume NaAc 2 M pH 4.0 and 1.1 volume isopropanol were added. The RNA was precipitated by centrifugation and the pellet was washed with 75% ethanol. Total RNA was resuspended in 20 μl water GIBCO and stored at –80°C until use. D. rerio: 5 µg of total RNA was used for preparation of libraries using Illumina’s mRNA Seq sample prep kit Illumina San Diego CA USA following the manufacturer’s instruction. M. musculus: 2.5 µg of total RNA was used with Illumina’s TruSeq RNA sample prep kit.,GEO Accession:GSM1141106,RNA-Seq,TRANSCRIPTOMIC,cDNA,SINGLE,ILLUMINA,Illumina Genome Analyzer IIx,,SRP022612,,,Nr29_5m.fastq.gz,fastq,2012479468.0,26479993.0,GSM1141106 r1,0:76,A:558800574;C:450898608;G:447907004;T:553773824;N:1099458,76,,,,558800574,450898608,447907004,553773824,1099458,SRX277683,SRS420783,SRA076297,GEO,Leibniz Institute for Age Research - Fritz Lipmann Institute,1,0.9055,,0.1197,,0.7119,,0.48553,,76,,B,,usable mapping rate,illumina,early_illumina,unknown,cdna_unspecified,trueseq,bulk,bulk,bulk,,Germany,2013-05-14,Adult,Adult,Skin,Surface Structure
36754,SRR850595,SRX277682,SRS420782,SRP022612,PRJNA203029,RNA seq of Danio rerio and Mus musculus skin for three different age groups,GSE46916,Other,Background: Comparison of temporal gene expression profiles. The RNA seq data comprises 3 age groups: 2 15 month and 30 month for mouse skin; 5 24 month and 42 month for zebrafish skin. Illumina 50bp single stranded single read RNA sequencing Jena Centre for Systems Biology of Ageing JenAge www.jenage.de Overall design: 15 samples for mouse: 5 biological replicates for 2 month 6 biological replicates for 15 month and 4 biological replicates for 30 month; 20 samples for zebrafish: 9 biological replicates for 5 month 6 biological replicates for 24 month and 5 biological replicates for 42 month,,pubmed:26620638,,Nr28 danrer skin 5months rep7,GSM1141105,,source name:total RNA extracted from skin|strain:TuAB|age:5 month|tissue:skin,Nr28 danrer skin 5months rep7,Illumina Casava software used for extraction of FASTQ files FASTQ files were mapped using Bowtie vs. the respective genomic sequence and a splice site data set created using UCSC's RefSeq annotation for each species Counting of uniquely mapped reads and assignment to RefSeq transcripts/genes using R Statistical Language and Bioconductor Calculation of RPKM values for each transcript and gene from the corresponding RefSeq annotation Genome build: D. rerio: danRer7; M. musculus: mm9 Supplementary files format and content: Excel file include raw counts and RPKM values for each sample,total RNA extracted from skin,,D. rerio: Skin tissue from male zebrafish was dissected and stored in RNAlater Qiagen Hilden Germany at 80 °C. Total RNA was isolated with TRIzol Life Technologies Darmstadt Germany according to the instructions of the manufacturer. M. musculus: The isolated skin was homogenized in 500 μl QIAzol Qiagen by subsequently adding 100 μl chloroform. Following phase separation the aqueous phase was transferred into a fresh tube then 0.16 volume NaAc 2 M pH 4.0 and 1.1 volume isopropanol were added. The RNA was precipitated by centrifugation and the pellet was washed with 75% ethanol. Total RNA was resuspended in 20 μl water GIBCO and stored at –80°C until use. D. rerio: 5 µg of total RNA was used for preparation of libraries using Illumina’s mRNA Seq sample prep kit Illumina San Diego CA USA following the manufacturer’s instruction. M. musculus: 2.5 µg of total RNA was used with Illumina’s TruSeq RNA sample prep kit.,,strain:TuAB|age:5 month|tissue:skin,GSM1141105,GSM1141105: Nr28 danrer skin 5months rep7; Danio rerio; RNA Seq,GSM1141105 1,,1,D. rerio: Skin tissue from male zebrafish was dissected and stored in RNAlater Qiagen Hilden Germany at 80 °C. Total RNA was isolated with TRIzol Life Technologies Darmstadt Germany according to the instructions of the manufacturer. M. musculus: The isolated skin was homogenized in 500 μl QIAzol Qiagen by subsequently adding 100 μl chloroform. Following phase separation the aqueous phase was transferred into a fresh tube then 0.16 volume NaAc 2 M pH 4.0 and 1.1 volume isopropanol were added. The RNA was precipitated by centrifugation and the pellet was washed with 75% ethanol. Total RNA was resuspended in 20 μl water GIBCO and stored at –80°C until use. D. rerio: 5 µg of total RNA was used for preparation of libraries using Illumina’s mRNA Seq sample prep kit Illumina San Diego CA USA following the manufacturer’s instruction. M. musculus: 2.5 µg of total RNA was used with Illumina’s TruSeq RNA sample prep kit.,GEO Accession:GSM1141105,RNA-Seq,TRANSCRIPTOMIC,cDNA,SINGLE,ILLUMINA,Illumina Genome Analyzer IIx,,SRP022612,,,Nr28_5m.fastq.gz,fastq,2075098224.0,27303924.0,GSM1141105 r1,0:76,A:555062827;C:487427075;G:487360186;T:544381395;N:866741,76,,,,555062827,487427075,487360186,544381395,866741,SRX277682,SRS420782,SRA076297,GEO,Leibniz Institute for Age Research - Fritz Lipmann Institute,1,0.91784,,0.08866,,0.73208,,0.47793,,76,,B,,usable mapping rate,illumina,early_illumina,unknown,cdna_unspecified,trueseq,bulk,bulk,bulk,,Germany,2013-05-14,Adult,Adult,Skin,Surface Structure
36755,SRR850594,SRX277681,SRS420781,SRP022612,PRJNA203029,RNA seq of Danio rerio and Mus musculus skin for three different age groups,GSE46916,Other,Background: Comparison of temporal gene expression profiles. The RNA seq data comprises 3 age groups: 2 15 month and 30 month for mouse skin; 5 24 month and 42 month for zebrafish skin. Illumina 50bp single stranded single read RNA sequencing Jena Centre for Systems Biology of Ageing JenAge www.jenage.de Overall design: 15 samples for mouse: 5 biological replicates for 2 month 6 biological replicates for 15 month and 4 biological replicates for 30 month; 20 samples for zebrafish: 9 biological replicates for 5 month 6 biological replicates for 24 month and 5 biological replicates for 42 month,,pubmed:26620638,,Nr27 danrer skin 5months rep6,GSM1141104,,source name:total RNA extracted from skin|strain:TuAB|age:5 month|tissue:skin,Nr27 danrer skin 5months rep6,Illumina Casava software used for extraction of FASTQ files FASTQ files were mapped using Bowtie vs. the respective genomic sequence and a splice site data set created using UCSC's RefSeq annotation for each species Counting of uniquely mapped reads and assignment to RefSeq transcripts/genes using R Statistical Language and Bioconductor Calculation of RPKM values for each transcript and gene from the corresponding RefSeq annotation Genome build: D. rerio: danRer7; M. musculus: mm9 Supplementary files format and content: Excel file include raw counts and RPKM values for each sample,total RNA extracted from skin,,D. rerio: Skin tissue from male zebrafish was dissected and stored in RNAlater Qiagen Hilden Germany at 80 °C. Total RNA was isolated with TRIzol Life Technologies Darmstadt Germany according to the instructions of the manufacturer. M. musculus: The isolated skin was homogenized in 500 μl QIAzol Qiagen by subsequently adding 100 μl chloroform. Following phase separation the aqueous phase was transferred into a fresh tube then 0.16 volume NaAc 2 M pH 4.0 and 1.1 volume isopropanol were added. The RNA was precipitated by centrifugation and the pellet was washed with 75% ethanol. Total RNA was resuspended in 20 μl water GIBCO and stored at –80°C until use. D. rerio: 5 µg of total RNA was used for preparation of libraries using Illumina’s mRNA Seq sample prep kit Illumina San Diego CA USA following the manufacturer’s instruction. M. musculus: 2.5 µg of total RNA was used with Illumina’s TruSeq RNA sample prep kit.,,strain:TuAB|age:5 month|tissue:skin,GSM1141104,GSM1141104: Nr27 danrer skin 5months rep6; Danio rerio; RNA Seq,GSM1141104 1,,1,D. rerio: Skin tissue from male zebrafish was dissected and stored in RNAlater Qiagen Hilden Germany at 80 °C. Total RNA was isolated with TRIzol Life Technologies Darmstadt Germany according to the instructions of the manufacturer. M. musculus: The isolated skin was homogenized in 500 μl QIAzol Qiagen by subsequently adding 100 μl chloroform. Following phase separation the aqueous phase was transferred into a fresh tube then 0.16 volume NaAc 2 M pH 4.0 and 1.1 volume isopropanol were added. The RNA was precipitated by centrifugation and the pellet was washed with 75% ethanol. Total RNA was resuspended in 20 μl water GIBCO and stored at –80°C until use. D. rerio: 5 µg of total RNA was used for preparation of libraries using Illumina’s mRNA Seq sample prep kit Illumina San Diego CA USA following the manufacturer’s instruction. M. musculus: 2.5 µg of total RNA was used with Illumina’s TruSeq RNA sample prep kit.,GEO Accession:GSM1141104,RNA-Seq,TRANSCRIPTOMIC,cDNA,SINGLE,ILLUMINA,Illumina Genome Analyzer IIx,,SRP022612,,,Nr27_5m.fastq.gz,fastq,2415354480.0,31780980.0,GSM1141104 r1,0:76,A:661012615;C:552471296;G:546304105;T:654315033;N:1251431,76,,,,661012615,552471296,546304105,654315033,1251431,SRX277681,SRS420781,SRA076297,GEO,Leibniz Institute for Age Research - Fritz Lipmann Institute,1,0.91282,,0.104,,0.7236,,0.48186,,76,,B,,usable mapping rate,illumina,early_illumina,unknown,cdna_unspecified,trueseq,bulk,bulk,bulk,,Germany,2013-05-14,Adult,Adult,Skin,Surface Structure
36756,SRR850593,SRX277680,SRS420780,SRP022612,PRJNA203029,RNA seq of Danio rerio and Mus musculus skin for three different age groups,GSE46916,Other,Background: Comparison of temporal gene expression profiles. The RNA seq data comprises 3 age groups: 2 15 month and 30 month for mouse skin; 5 24 month and 42 month for zebrafish skin. Illumina 50bp single stranded single read RNA sequencing Jena Centre for Systems Biology of Ageing JenAge www.jenage.de Overall design: 15 samples for mouse: 5 biological replicates for 2 month 6 biological replicates for 15 month and 4 biological replicates for 30 month; 20 samples for zebrafish: 9 biological replicates for 5 month 6 biological replicates for 24 month and 5 biological replicates for 42 month,,pubmed:26620638,,Nr26 danrer skin 5months rep5,GSM1141103,,source name:total RNA extracted from skin|strain:TuAB|age:5 month|tissue:skin,Nr26 danrer skin 5months rep5,Illumina Casava software used for extraction of FASTQ files FASTQ files were mapped using Bowtie vs. the respective genomic sequence and a splice site data set created using UCSC's RefSeq annotation for each species Counting of uniquely mapped reads and assignment to RefSeq transcripts/genes using R Statistical Language and Bioconductor Calculation of RPKM values for each transcript and gene from the corresponding RefSeq annotation Genome build: D. rerio: danRer7; M. musculus: mm9 Supplementary files format and content: Excel file include raw counts and RPKM values for each sample,total RNA extracted from skin,,D. rerio: Skin tissue from male zebrafish was dissected and stored in RNAlater Qiagen Hilden Germany at 80 °C. Total RNA was isolated with TRIzol Life Technologies Darmstadt Germany according to the instructions of the manufacturer. M. musculus: The isolated skin was homogenized in 500 μl QIAzol Qiagen by subsequently adding 100 μl chloroform. Following phase separation the aqueous phase was transferred into a fresh tube then 0.16 volume NaAc 2 M pH 4.0 and 1.1 volume isopropanol were added. The RNA was precipitated by centrifugation and the pellet was washed with 75% ethanol. Total RNA was resuspended in 20 μl water GIBCO and stored at –80°C until use. D. rerio: 5 µg of total RNA was used for preparation of libraries using Illumina’s mRNA Seq sample prep kit Illumina San Diego CA USA following the manufacturer’s instruction. M. musculus: 2.5 µg of total RNA was used with Illumina’s TruSeq RNA sample prep kit.,,strain:TuAB|age:5 month|tissue:skin,GSM1141103,GSM1141103: Nr26 danrer skin 5months rep5; Danio rerio; RNA Seq,GSM1141103 1,,1,D. rerio: Skin tissue from male zebrafish was dissected and stored in RNAlater Qiagen Hilden Germany at 80 °C. Total RNA was isolated with TRIzol Life Technologies Darmstadt Germany according to the instructions of the manufacturer. M. musculus: The isolated skin was homogenized in 500 μl QIAzol Qiagen by subsequently adding 100 μl chloroform. Following phase separation the aqueous phase was transferred into a fresh tube then 0.16 volume NaAc 2 M pH 4.0 and 1.1 volume isopropanol were added. The RNA was precipitated by centrifugation and the pellet was washed with 75% ethanol. Total RNA was resuspended in 20 μl water GIBCO and stored at –80°C until use. D. rerio: 5 µg of total RNA was used for preparation of libraries using Illumina’s mRNA Seq sample prep kit Illumina San Diego CA USA following the manufacturer’s instruction. M. musculus: 2.5 µg of total RNA was used with Illumina’s TruSeq RNA sample prep kit.,GEO Accession:GSM1141103,RNA-Seq,TRANSCRIPTOMIC,cDNA,SINGLE,ILLUMINA,Illumina Genome Analyzer IIx,,SRP022612,,,Nr26_5m_l8_export.fq.gz,fastq,1866135464.0,24554414.0,GSM1141103 r1,0:76,A:495417130;C:442746432;G:436942898;T:490685510;N:343494,76,,,,495417130,442746432,436942898,490685510,343494,SRX277680,SRS420780,SRA076297,GEO,Leibniz Institute for Age Research - Fritz Lipmann Institute,1,0.92443,,0.08023,,0.7288,,0.48902,,76,,B,,usable mapping rate,illumina,early_illumina,unknown,cdna_unspecified,trueseq,bulk,bulk,bulk,,Germany,2013-05-14,Adult,Adult,Skin,Surface Structure
36757,SRR850592,SRX277679,SRS420778,SRP022612,PRJNA203029,RNA seq of Danio rerio and Mus musculus skin for three different age groups,GSE46916,Other,Background: Comparison of temporal gene expression profiles. The RNA seq data comprises 3 age groups: 2 15 month and 30 month for mouse skin; 5 24 month and 42 month for zebrafish skin. Illumina 50bp single stranded single read RNA sequencing Jena Centre for Systems Biology of Ageing JenAge www.jenage.de Overall design: 15 samples for mouse: 5 biological replicates for 2 month 6 biological replicates for 15 month and 4 biological replicates for 30 month; 20 samples for zebrafish: 9 biological replicates for 5 month 6 biological replicates for 24 month and 5 biological replicates for 42 month,,pubmed:26620638,,Nr25 danrer skin 5months rep4,GSM1141102,,source name:total RNA extracted from skin|strain:TuAB|age:5 month|tissue:skin,Nr25 danrer skin 5months rep4,Illumina Casava software used for extraction of FASTQ files FASTQ files were mapped using Bowtie vs. the respective genomic sequence and a splice site data set created using UCSC's RefSeq annotation for each species Counting of uniquely mapped reads and assignment to RefSeq transcripts/genes using R Statistical Language and Bioconductor Calculation of RPKM values for each transcript and gene from the corresponding RefSeq annotation Genome build: D. rerio: danRer7; M. musculus: mm9 Supplementary files format and content: Excel file include raw counts and RPKM values for each sample,total RNA extracted from skin,,D. rerio: Skin tissue from male zebrafish was dissected and stored in RNAlater Qiagen Hilden Germany at 80 °C. Total RNA was isolated with TRIzol Life Technologies Darmstadt Germany according to the instructions of the manufacturer. M. musculus: The isolated skin was homogenized in 500 μl QIAzol Qiagen by subsequently adding 100 μl chloroform. Following phase separation the aqueous phase was transferred into a fresh tube then 0.16 volume NaAc 2 M pH 4.0 and 1.1 volume isopropanol were added. The RNA was precipitated by centrifugation and the pellet was washed with 75% ethanol. Total RNA was resuspended in 20 μl water GIBCO and stored at –80°C until use. D. rerio: 5 µg of total RNA was used for preparation of libraries using Illumina’s mRNA Seq sample prep kit Illumina San Diego CA USA following the manufacturer’s instruction. M. musculus: 2.5 µg of total RNA was used with Illumina’s TruSeq RNA sample prep kit.,,strain:TuAB|age:5 month|tissue:skin,GSM1141102,GSM1141102: Nr25 danrer skin 5months rep4; Danio rerio; RNA Seq,GSM1141102 1,,1,D. rerio: Skin tissue from male zebrafish was dissected and stored in RNAlater Qiagen Hilden Germany at 80 °C. Total RNA was isolated with TRIzol Life Technologies Darmstadt Germany according to the instructions of the manufacturer. M. musculus: The isolated skin was homogenized in 500 μl QIAzol Qiagen by subsequently adding 100 μl chloroform. Following phase separation the aqueous phase was transferred into a fresh tube then 0.16 volume NaAc 2 M pH 4.0 and 1.1 volume isopropanol were added. The RNA was precipitated by centrifugation and the pellet was washed with 75% ethanol. Total RNA was resuspended in 20 μl water GIBCO and stored at –80°C until use. D. rerio: 5 µg of total RNA was used for preparation of libraries using Illumina’s mRNA Seq sample prep kit Illumina San Diego CA USA following the manufacturer’s instruction. M. musculus: 2.5 µg of total RNA was used with Illumina’s TruSeq RNA sample prep kit.,GEO Accession:GSM1141102,RNA-Seq,TRANSCRIPTOMIC,cDNA,SINGLE,ILLUMINA,Illumina Genome Analyzer IIx,,SRP022612,,,Nr25_5m_l7_export.fq.gz,fastq,2146470508.0,28243033.0,GSM1141102 r1,0:76,A:583770580;C:491677255;G:491536604;T:579365742;N:120327,76,,,,583770580,491677255,491536604,579365742,120327,SRX277679,SRS420778,SRA076297,GEO,Leibniz Institute for Age Research - Fritz Lipmann Institute,1,0.89568,,0.11303,,0.71778,,0.47882,,76,,B,,usable mapping rate,illumina,early_illumina,unknown,cdna_unspecified,trueseq,bulk,bulk,bulk,,Germany,2013-05-14,Adult,Adult,Skin,Surface Structure
36758,SRR850591,SRX277678,SRS420779,SRP022612,PRJNA203029,RNA seq of Danio rerio and Mus musculus skin for three different age groups,GSE46916,Other,Background: Comparison of temporal gene expression profiles. The RNA seq data comprises 3 age groups: 2 15 month and 30 month for mouse skin; 5 24 month and 42 month for zebrafish skin. Illumina 50bp single stranded single read RNA sequencing Jena Centre for Systems Biology of Ageing JenAge www.jenage.de Overall design: 15 samples for mouse: 5 biological replicates for 2 month 6 biological replicates for 15 month and 4 biological replicates for 30 month; 20 samples for zebrafish: 9 biological replicates for 5 month 6 biological replicates for 24 month and 5 biological replicates for 42 month,,pubmed:26620638,,Nr23 danrer skin 5months rep3,GSM1141101,,source name:total RNA extracted from skin|strain:TuAB|age:5 month|tissue:skin,Nr23 danrer skin 5months rep3,Illumina Casava software used for extraction of FASTQ files FASTQ files were mapped using Bowtie vs. the respective genomic sequence and a splice site data set created using UCSC's RefSeq annotation for each species Counting of uniquely mapped reads and assignment to RefSeq transcripts/genes using R Statistical Language and Bioconductor Calculation of RPKM values for each transcript and gene from the corresponding RefSeq annotation Genome build: D. rerio: danRer7; M. musculus: mm9 Supplementary files format and content: Excel file include raw counts and RPKM values for each sample,total RNA extracted from skin,,D. rerio: Skin tissue from male zebrafish was dissected and stored in RNAlater Qiagen Hilden Germany at 80 °C. Total RNA was isolated with TRIzol Life Technologies Darmstadt Germany according to the instructions of the manufacturer. M. musculus: The isolated skin was homogenized in 500 μl QIAzol Qiagen by subsequently adding 100 μl chloroform. Following phase separation the aqueous phase was transferred into a fresh tube then 0.16 volume NaAc 2 M pH 4.0 and 1.1 volume isopropanol were added. The RNA was precipitated by centrifugation and the pellet was washed with 75% ethanol. Total RNA was resuspended in 20 μl water GIBCO and stored at –80°C until use. D. rerio: 5 µg of total RNA was used for preparation of libraries using Illumina’s mRNA Seq sample prep kit Illumina San Diego CA USA following the manufacturer’s instruction. M. musculus: 2.5 µg of total RNA was used with Illumina’s TruSeq RNA sample prep kit.,,strain:TuAB|age:5 month|tissue:skin,GSM1141101,GSM1141101: Nr23 danrer skin 5months rep3; Danio rerio; RNA Seq,GSM1141101 1,,1,D. rerio: Skin tissue from male zebrafish was dissected and stored in RNAlater Qiagen Hilden Germany at 80 °C. Total RNA was isolated with TRIzol Life Technologies Darmstadt Germany according to the instructions of the manufacturer. M. musculus: The isolated skin was homogenized in 500 μl QIAzol Qiagen by subsequently adding 100 μl chloroform. Following phase separation the aqueous phase was transferred into a fresh tube then 0.16 volume NaAc 2 M pH 4.0 and 1.1 volume isopropanol were added. The RNA was precipitated by centrifugation and the pellet was washed with 75% ethanol. Total RNA was resuspended in 20 μl water GIBCO and stored at –80°C until use. D. rerio: 5 µg of total RNA was used for preparation of libraries using Illumina’s mRNA Seq sample prep kit Illumina San Diego CA USA following the manufacturer’s instruction. M. musculus: 2.5 µg of total RNA was used with Illumina’s TruSeq RNA sample prep kit.,GEO Accession:GSM1141101,RNA-Seq,TRANSCRIPTOMIC,cDNA,SINGLE,ILLUMINA,Illumina Genome Analyzer IIx,,SRP022612,,,Nr23_5m_l6_export.fq.gz,fastq,2628691268.0,34588043.0,GSM1141101 r1,0:76,A:693944705;C:617538873;G:611502862;T:705582669;N:122159,76,,,,693944705,617538873,611502862,705582669,122159,SRX277678,SRS420779,SRA076297,GEO,Leibniz Institute for Age Research - Fritz Lipmann Institute,1,0.92203,,0.09747,,0.71378,,0.47796,,76,,B,,usable mapping rate,illumina,early_illumina,unknown,cdna_unspecified,trueseq,bulk,bulk,bulk,,Germany,2013-05-14,Adult,Adult,Skin,Surface Structure
36759,SRR850590,SRX277677,SRS420777,SRP022612,PRJNA203029,RNA seq of Danio rerio and Mus musculus skin for three different age groups,GSE46916,Other,Background: Comparison of temporal gene expression profiles. The RNA seq data comprises 3 age groups: 2 15 month and 30 month for mouse skin; 5 24 month and 42 month for zebrafish skin. Illumina 50bp single stranded single read RNA sequencing Jena Centre for Systems Biology of Ageing JenAge www.jenage.de Overall design: 15 samples for mouse: 5 biological replicates for 2 month 6 biological replicates for 15 month and 4 biological replicates for 30 month; 20 samples for zebrafish: 9 biological replicates for 5 month 6 biological replicates for 24 month and 5 biological replicates for 42 month,,pubmed:26620638,,Nr22 danrer skin 5months rep2,GSM1141100,,source name:total RNA extracted from skin|strain:TuAB|age:5 month|tissue:skin,Nr22 danrer skin 5months rep2,Illumina Casava software used for extraction of FASTQ files FASTQ files were mapped using Bowtie vs. the respective genomic sequence and a splice site data set created using UCSC's RefSeq annotation for each species Counting of uniquely mapped reads and assignment to RefSeq transcripts/genes using R Statistical Language and Bioconductor Calculation of RPKM values for each transcript and gene from the corresponding RefSeq annotation Genome build: D. rerio: danRer7; M. musculus: mm9 Supplementary files format and content: Excel file include raw counts and RPKM values for each sample,total RNA extracted from skin,,D. rerio: Skin tissue from male zebrafish was dissected and stored in RNAlater Qiagen Hilden Germany at 80 °C. Total RNA was isolated with TRIzol Life Technologies Darmstadt Germany according to the instructions of the manufacturer. M. musculus: The isolated skin was homogenized in 500 μl QIAzol Qiagen by subsequently adding 100 μl chloroform. Following phase separation the aqueous phase was transferred into a fresh tube then 0.16 volume NaAc 2 M pH 4.0 and 1.1 volume isopropanol were added. The RNA was precipitated by centrifugation and the pellet was washed with 75% ethanol. Total RNA was resuspended in 20 μl water GIBCO and stored at –80°C until use. D. rerio: 5 µg of total RNA was used for preparation of libraries using Illumina’s mRNA Seq sample prep kit Illumina San Diego CA USA following the manufacturer’s instruction. M. musculus: 2.5 µg of total RNA was used with Illumina’s TruSeq RNA sample prep kit.,,strain:TuAB|age:5 month|tissue:skin,GSM1141100,GSM1141100: Nr22 danrer skin 5months rep2; Danio rerio; RNA Seq,GSM1141100 1,,1,D. rerio: Skin tissue from male zebrafish was dissected and stored in RNAlater Qiagen Hilden Germany at 80 °C. Total RNA was isolated with TRIzol Life Technologies Darmstadt Germany according to the instructions of the manufacturer. M. musculus: The isolated skin was homogenized in 500 μl QIAzol Qiagen by subsequently adding 100 μl chloroform. Following phase separation the aqueous phase was transferred into a fresh tube then 0.16 volume NaAc 2 M pH 4.0 and 1.1 volume isopropanol were added. The RNA was precipitated by centrifugation and the pellet was washed with 75% ethanol. Total RNA was resuspended in 20 μl water GIBCO and stored at –80°C until use. D. rerio: 5 µg of total RNA was used for preparation of libraries using Illumina’s mRNA Seq sample prep kit Illumina San Diego CA USA following the manufacturer’s instruction. M. musculus: 2.5 µg of total RNA was used with Illumina’s TruSeq RNA sample prep kit.,GEO Accession:GSM1141100,RNA-Seq,TRANSCRIPTOMIC,cDNA,SINGLE,ILLUMINA,Illumina Genome Analyzer IIx,,SRP022612,,,Nr22_5m.fastq.gz,fastq,3561382724.0,46860299.0,GSM1141100 r1,0:76,A:956105654;C:826498432;G:826128735;T:952426883;N:223020,76,,,,956105654,826498432,826128735,952426883,223020,SRX277677,SRS420777,SRA076297,GEO,Leibniz Institute for Age Research - Fritz Lipmann Institute,1,0.93192,,0.09055,,0.72876,,0.52416,,76,,B,,usable mapping rate,illumina,early_illumina,unknown,cdna_unspecified,trueseq,bulk,bulk,bulk,,Germany,2013-05-14,Adult,Adult,Skin,Surface Structure
36760,SRR850589,SRX277676,SRS420776,SRP022612,PRJNA203029,RNA seq of Danio rerio and Mus musculus skin for three different age groups,GSE46916,Other,Background: Comparison of temporal gene expression profiles. The RNA seq data comprises 3 age groups: 2 15 month and 30 month for mouse skin; 5 24 month and 42 month for zebrafish skin. Illumina 50bp single stranded single read RNA sequencing Jena Centre for Systems Biology of Ageing JenAge www.jenage.de Overall design: 15 samples for mouse: 5 biological replicates for 2 month 6 biological replicates for 15 month and 4 biological replicates for 30 month; 20 samples for zebrafish: 9 biological replicates for 5 month 6 biological replicates for 24 month and 5 biological replicates for 42 month,,pubmed:26620638,,Nr21 danrer skin 5months rep1,GSM1141099,,source name:total RNA extracted from skin|strain:TuAB|age:5 month|tissue:skin,Nr21 danrer skin 5months rep1,Illumina Casava software used for extraction of FASTQ files FASTQ files were mapped using Bowtie vs. the respective genomic sequence and a splice site data set created using UCSC's RefSeq annotation for each species Counting of uniquely mapped reads and assignment to RefSeq transcripts/genes using R Statistical Language and Bioconductor Calculation of RPKM values for each transcript and gene from the corresponding RefSeq annotation Genome build: D. rerio: danRer7; M. musculus: mm9 Supplementary files format and content: Excel file include raw counts and RPKM values for each sample,total RNA extracted from skin,,D. rerio: Skin tissue from male zebrafish was dissected and stored in RNAlater Qiagen Hilden Germany at 80 °C. Total RNA was isolated with TRIzol Life Technologies Darmstadt Germany according to the instructions of the manufacturer. M. musculus: The isolated skin was homogenized in 500 μl QIAzol Qiagen by subsequently adding 100 μl chloroform. Following phase separation the aqueous phase was transferred into a fresh tube then 0.16 volume NaAc 2 M pH 4.0 and 1.1 volume isopropanol were added. The RNA was precipitated by centrifugation and the pellet was washed with 75% ethanol. Total RNA was resuspended in 20 μl water GIBCO and stored at –80°C until use. D. rerio: 5 µg of total RNA was used for preparation of libraries using Illumina’s mRNA Seq sample prep kit Illumina San Diego CA USA following the manufacturer’s instruction. M. musculus: 2.5 µg of total RNA was used with Illumina’s TruSeq RNA sample prep kit.,,strain:TuAB|age:5 month|tissue:skin,GSM1141099,GSM1141099: Nr21 danrer skin 5months rep1; Danio rerio; RNA Seq,GSM1141099 1,,1,D. rerio: Skin tissue from male zebrafish was dissected and stored in RNAlater Qiagen Hilden Germany at 80 °C. Total RNA was isolated with TRIzol Life Technologies Darmstadt Germany according to the instructions of the manufacturer. M. musculus: The isolated skin was homogenized in 500 μl QIAzol Qiagen by subsequently adding 100 μl chloroform. Following phase separation the aqueous phase was transferred into a fresh tube then 0.16 volume NaAc 2 M pH 4.0 and 1.1 volume isopropanol were added. The RNA was precipitated by centrifugation and the pellet was washed with 75% ethanol. Total RNA was resuspended in 20 μl water GIBCO and stored at –80°C until use. D. rerio: 5 µg of total RNA was used for preparation of libraries using Illumina’s mRNA Seq sample prep kit Illumina San Diego CA USA following the manufacturer’s instruction. M. musculus: 2.5 µg of total RNA was used with Illumina’s TruSeq RNA sample prep kit.,GEO Accession:GSM1141099,RNA-Seq,TRANSCRIPTOMIC,cDNA,SINGLE,ILLUMINA,Illumina Genome Analyzer IIx,,SRP022612,,,Nr21_5m_l4_export.fq.gz,fastq,2709932304.0,35657004.0,GSM1141099 r1,0:76,A:730073083;C:631072920;G:619401848;T:729203191;N:181262,76,,,,730073083,631072920,619401848,729203191,181262,SRX277676,SRS420776,SRA076297,GEO,Leibniz Institute for Age Research - Fritz Lipmann Institute,1,0.92839,,0.10379,,0.71392,,0.4865,,76,,B,,usable mapping rate,illumina,early_illumina,unknown,cdna_unspecified,trueseq,bulk,bulk,bulk,,Germany,2013-05-14,Adult,Adult,Skin,Surface Structure
38389,SRR1821850,SRX893451,SRS859516,SRP055573,PRJNA276667,RNA seq of zebrafish brain liver and skin during perturbation with rotenone at young and old age,GSE66362,Transcriptome Analysis,Zebrafish of two different age groups 12 month and 36 month were treated with low amounts of rotenone mild stress and compared to untreated zebrafish. Two different durations were used 3 and 8 weeks. Illumina sequencing HiSeq2000 was applied to generate 50bp single end reads. Jena Centre for Systems Biology of Ageing JenAge www.jenage.de Overall design: 68 sample: 3 tissues brain liver skin; 2 age groups 12 month and 36 month; controls and rotenone treated samples; 2 6 biological replicates for each group,,pubmed:27135165,,skin208 36m 3.75nM roten1 8w rep6,GSM1620997,,source name:total RNA extracted from skin|tissue:skin|age:36 month|treatment:3.75nM roten1|duration:8 weeks,skin208 36m 3.75nM roten1 8w rep6,FASTQ files were extracted using Illumina Casava software v1.8.2.,total RNA extracted from skin,Tanks with male zebrafish were supplemented with 3.75 nM rotenone or DMSO control for 3 weeks and 8 weeks respectively. 50% tank water was changed twice a week and fresh Rotenone and DMSO was added to the tanks.,Total RNA was isolated using QIAzol Qiagen Hilden Germany based on the phenol/chloroform extraction method. postwards the RNA was quantified photometrically with a NanoDrop 1000 PeqLab Erlangen Germany and stored at 80 °C until use. For library preparation an amount of around 2.5 ug of total RNA per sample was processed using Illumina's TruSeqTM RNA Sample Prep Kit Illumina; San Diego; CA USA following the manufacturer's instruction.,Zebrafish Danio rerio were raised under standard conditions.,tissue:skin|age:36 month|treatment:3.75nM roten1|duration:8 weeks,GSM1620997,GSM1620997: skin208 36m 3.75nM roten1 8w rep6; Danio rerio; RNA Seq,GSM1620997,,1,Total RNA was isolated using QIAzol Qiagen Hilden Germany based on the phenol/chloroform extraction method. postwards the RNA was quantified photometrically with a NanoDrop 1000 PeqLab Erlangen Germany and stored at 80 °C until use. For library preparation an amount of around 2.5 ug of total RNA per sample was processed using Illumina's TruSeqTM RNA Sample Prep Kit Illumina; San Diego; CA USA following the manufacturer's instruction.,GEO Accession:GSM1620997,RNA-Seq,TRANSCRIPTOMIC,cDNA,SINGLE,ILLUMINA,Illumina HiSeq 2000,,SRP055573,,,208_skin.fastq.gz,fastq,1960697700.0,39213954.0,GSM1620997 r1,0:50,A:532792887;C:452528560;G:441240826;T:533522462;N:612965,50,,,,532792887,452528560,441240826,533522462,612965,SRX893451,SRS859516,SRA244883,GEO,Leibniz Institute for Age Research - Fritz Lipmann Institute,1,0.92216,,0.09326,,0.72147,,0.49795,,50,,B,,usable mapping rate,illumina,hiseq_era,unknown,cdna_unspecified,unknown,bulk,unknown,unknown,,Germany,2015-02-27,Adult,Adult,Skin,Surface Structure
38390,SRR1821849,SRX893450,SRS859517,SRP055573,PRJNA276667,RNA seq of zebrafish brain liver and skin during perturbation with rotenone at young and old age,GSE66362,Transcriptome Analysis,Zebrafish of two different age groups 12 month and 36 month were treated with low amounts of rotenone mild stress and compared to untreated zebrafish. Two different durations were used 3 and 8 weeks. Illumina sequencing HiSeq2000 was applied to generate 50bp single end reads. Jena Centre for Systems Biology of Ageing JenAge www.jenage.de Overall design: 68 sample: 3 tissues brain liver skin; 2 age groups 12 month and 36 month; controls and rotenone treated samples; 2 6 biological replicates for each group,,pubmed:27135165,,skin207 36m 3.75nM roten1 8w rep5,GSM1620996,,source name:total RNA extracted from skin|tissue:skin|age:36 month|treatment:3.75nM roten1|duration:8 weeks,skin207 36m 3.75nM roten1 8w rep5,FASTQ files were extracted using Illumina Casava software v1.8.2.,total RNA extracted from skin,Tanks with male zebrafish were supplemented with 3.75 nM rotenone or DMSO control for 3 weeks and 8 weeks respectively. 50% tank water was changed twice a week and fresh Rotenone and DMSO was added to the tanks.,Total RNA was isolated using QIAzol Qiagen Hilden Germany based on the phenol/chloroform extraction method. postwards the RNA was quantified photometrically with a NanoDrop 1000 PeqLab Erlangen Germany and stored at 80 °C until use. For library preparation an amount of around 2.5 ug of total RNA per sample was processed using Illumina's TruSeqTM RNA Sample Prep Kit Illumina; San Diego; CA USA following the manufacturer's instruction.,Zebrafish Danio rerio were raised under standard conditions.,tissue:skin|age:36 month|treatment:3.75nM roten1|duration:8 weeks,GSM1620996,GSM1620996: skin207 36m 3.75nM roten1 8w rep5; Danio rerio; RNA Seq,GSM1620996,,1,Total RNA was isolated using QIAzol Qiagen Hilden Germany based on the phenol/chloroform extraction method. postwards the RNA was quantified photometrically with a NanoDrop 1000 PeqLab Erlangen Germany and stored at 80 °C until use. For library preparation an amount of around 2.5 ug of total RNA per sample was processed using Illumina's TruSeqTM RNA Sample Prep Kit Illumina; San Diego; CA USA following the manufacturer's instruction.,GEO Accession:GSM1620996,RNA-Seq,TRANSCRIPTOMIC,cDNA,SINGLE,ILLUMINA,Illumina HiSeq 2000,,SRP055573,,,207_skin.fastq.gz,fastq,1644999850.0,32899997.0,GSM1620996 r1,0:50,A:444439104;C:381379643;G:371782441;T:447032625;N:366037,50,,,,444439104,381379643,371782441,447032625,366037,SRX893450,SRS859517,SRA244883,GEO,Leibniz Institute for Age Research - Fritz Lipmann Institute,1,0.90733,,0.0971,,0.71518,,0.48175,,50,,B,,usable mapping rate,illumina,hiseq_era,unknown,cdna_unspecified,unknown,bulk,unknown,unknown,,Germany,2015-02-27,Adult,Adult,Skin,Surface Structure
38391,SRR1821848,SRX893449,SRS859518,SRP055573,PRJNA276667,RNA seq of zebrafish brain liver and skin during perturbation with rotenone at young and old age,GSE66362,Transcriptome Analysis,Zebrafish of two different age groups 12 month and 36 month were treated with low amounts of rotenone mild stress and compared to untreated zebrafish. Two different durations were used 3 and 8 weeks. Illumina sequencing HiSeq2000 was applied to generate 50bp single end reads. Jena Centre for Systems Biology of Ageing JenAge www.jenage.de Overall design: 68 sample: 3 tissues brain liver skin; 2 age groups 12 month and 36 month; controls and rotenone treated samples; 2 6 biological replicates for each group,,pubmed:27135165,,skin206 36m 3.75nM roten1 8w rep4,GSM1620995,,source name:total RNA extracted from skin|tissue:skin|age:36 month|treatment:3.75nM roten1|duration:8 weeks,skin206 36m 3.75nM roten1 8w rep4,FASTQ files were extracted using Illumina Casava software v1.8.2.,total RNA extracted from skin,Tanks with male zebrafish were supplemented with 3.75 nM rotenone or DMSO control for 3 weeks and 8 weeks respectively. 50% tank water was changed twice a week and fresh Rotenone and DMSO was added to the tanks.,Total RNA was isolated using QIAzol Qiagen Hilden Germany based on the phenol/chloroform extraction method. postwards the RNA was quantified photometrically with a NanoDrop 1000 PeqLab Erlangen Germany and stored at 80 °C until use. For library preparation an amount of around 2.5 ug of total RNA per sample was processed using Illumina's TruSeqTM RNA Sample Prep Kit Illumina; San Diego; CA USA following the manufacturer's instruction.,Zebrafish Danio rerio were raised under standard conditions.,tissue:skin|age:36 month|treatment:3.75nM roten1|duration:8 weeks,GSM1620995,GSM1620995: skin206 36m 3.75nM roten1 8w rep4; Danio rerio; RNA Seq,GSM1620995,,1,Total RNA was isolated using QIAzol Qiagen Hilden Germany based on the phenol/chloroform extraction method. postwards the RNA was quantified photometrically with a NanoDrop 1000 PeqLab Erlangen Germany and stored at 80 °C until use. For library preparation an amount of around 2.5 ug of total RNA per sample was processed using Illumina's TruSeqTM RNA Sample Prep Kit Illumina; San Diego; CA USA following the manufacturer's instruction.,GEO Accession:GSM1620995,RNA-Seq,TRANSCRIPTOMIC,cDNA,SINGLE,ILLUMINA,Illumina HiSeq 2000,,SRP055573,,,206_skin.fastq.gz,fastq,2333175800.0,46663516.0,GSM1620995 r1,0:50,A:629018600;C:541489412;G:532198591;T:629985712;N:483485,50,,,,629018600,541489412,532198591,629985712,483485,SRX893449,SRS859518,SRA244883,GEO,Leibniz Institute for Age Research - Fritz Lipmann Institute,1,0.91718,,0.10454,,0.70974,,0.47753,,50,,B,,usable mapping rate,illumina,hiseq_era,unknown,cdna_unspecified,unknown,bulk,unknown,unknown,,Germany,2015-02-27,Adult,Adult,Skin,Surface Structure
38392,SRR1821847,SRX893448,SRS859519,SRP055573,PRJNA276667,RNA seq of zebrafish brain liver and skin during perturbation with rotenone at young and old age,GSE66362,Transcriptome Analysis,Zebrafish of two different age groups 12 month and 36 month were treated with low amounts of rotenone mild stress and compared to untreated zebrafish. Two different durations were used 3 and 8 weeks. Illumina sequencing HiSeq2000 was applied to generate 50bp single end reads. Jena Centre for Systems Biology of Ageing JenAge www.jenage.de Overall design: 68 sample: 3 tissues brain liver skin; 2 age groups 12 month and 36 month; controls and rotenone treated samples; 2 6 biological replicates for each group,,pubmed:27135165,,skin205 36m 3.75nM roten1 8w rep3,GSM1620994,,source name:total RNA extracted from skin|tissue:skin|age:36 month|treatment:3.75nM roten1|duration:8 weeks,skin205 36m 3.75nM roten1 8w rep3,FASTQ files were extracted using Illumina Casava software v1.8.2.,total RNA extracted from skin,Tanks with male zebrafish were supplemented with 3.75 nM rotenone or DMSO control for 3 weeks and 8 weeks respectively. 50% tank water was changed twice a week and fresh Rotenone and DMSO was added to the tanks.,Total RNA was isolated using QIAzol Qiagen Hilden Germany based on the phenol/chloroform extraction method. postwards the RNA was quantified photometrically with a NanoDrop 1000 PeqLab Erlangen Germany and stored at 80 °C until use. For library preparation an amount of around 2.5 ug of total RNA per sample was processed using Illumina's TruSeqTM RNA Sample Prep Kit Illumina; San Diego; CA USA following the manufacturer's instruction.,Zebrafish Danio rerio were raised under standard conditions.,tissue:skin|age:36 month|treatment:3.75nM roten1|duration:8 weeks,GSM1620994,GSM1620994: skin205 36m 3.75nM roten1 8w rep3; Danio rerio; RNA Seq,GSM1620994,,1,Total RNA was isolated using QIAzol Qiagen Hilden Germany based on the phenol/chloroform extraction method. postwards the RNA was quantified photometrically with a NanoDrop 1000 PeqLab Erlangen Germany and stored at 80 °C until use. For library preparation an amount of around 2.5 ug of total RNA per sample was processed using Illumina's TruSeqTM RNA Sample Prep Kit Illumina; San Diego; CA USA following the manufacturer's instruction.,GEO Accession:GSM1620994,RNA-Seq,TRANSCRIPTOMIC,cDNA,SINGLE,ILLUMINA,Illumina HiSeq 2000,,SRP055573,,,205_skin.fastq.gz,fastq,1885120700.0,37702414.0,GSM1620994 r1,0:50,A:509247143;C:431669478;G:422352918;T:511569209;N:10281952,50,,,,509247143,431669478,422352918,511569209,10281952,SRX893448,SRS859519,SRA244883,GEO,Leibniz Institute for Age Research - Fritz Lipmann Institute,1,0.90066,,0.107,,0.71415,,0.48729,,50,,B,,usable mapping rate,illumina,hiseq_era,unknown,cdna_unspecified,unknown,bulk,unknown,unknown,,Germany,2015-02-27,Adult,Adult,Skin,Surface Structure
38393,SRR1821846,SRX893447,SRS859520,SRP055573,PRJNA276667,RNA seq of zebrafish brain liver and skin during perturbation with rotenone at young and old age,GSE66362,Transcriptome Analysis,Zebrafish of two different age groups 12 month and 36 month were treated with low amounts of rotenone mild stress and compared to untreated zebrafish. Two different durations were used 3 and 8 weeks. Illumina sequencing HiSeq2000 was applied to generate 50bp single end reads. Jena Centre for Systems Biology of Ageing JenAge www.jenage.de Overall design: 68 sample: 3 tissues brain liver skin; 2 age groups 12 month and 36 month; controls and rotenone treated samples; 2 6 biological replicates for each group,,pubmed:27135165,,skin204 36m 3.75nM roten1 8w rep2,GSM1620993,,source name:total RNA extracted from skin|tissue:skin|age:36 month|treatment:3.75nM roten1|duration:8 weeks,skin204 36m 3.75nM roten1 8w rep2,FASTQ files were extracted using Illumina Casava software v1.8.2.,total RNA extracted from skin,Tanks with male zebrafish were supplemented with 3.75 nM rotenone or DMSO control for 3 weeks and 8 weeks respectively. 50% tank water was changed twice a week and fresh Rotenone and DMSO was added to the tanks.,Total RNA was isolated using QIAzol Qiagen Hilden Germany based on the phenol/chloroform extraction method. postwards the RNA was quantified photometrically with a NanoDrop 1000 PeqLab Erlangen Germany and stored at 80 °C until use. For library preparation an amount of around 2.5 ug of total RNA per sample was processed using Illumina's TruSeqTM RNA Sample Prep Kit Illumina; San Diego; CA USA following the manufacturer's instruction.,Zebrafish Danio rerio were raised under standard conditions.,tissue:skin|age:36 month|treatment:3.75nM roten1|duration:8 weeks,GSM1620993,GSM1620993: skin204 36m 3.75nM roten1 8w rep2; Danio rerio; RNA Seq,GSM1620993,,1,Total RNA was isolated using QIAzol Qiagen Hilden Germany based on the phenol/chloroform extraction method. postwards the RNA was quantified photometrically with a NanoDrop 1000 PeqLab Erlangen Germany and stored at 80 °C until use. For library preparation an amount of around 2.5 ug of total RNA per sample was processed using Illumina's TruSeqTM RNA Sample Prep Kit Illumina; San Diego; CA USA following the manufacturer's instruction.,GEO Accession:GSM1620993,RNA-Seq,TRANSCRIPTOMIC,cDNA,SINGLE,ILLUMINA,Illumina HiSeq 2000,,SRP055573,,,204_skin.fastq.gz,fastq,2039214400.0,40784288.0,GSM1620993 r1,0:50,A:554630438;C:468936669;G:460030131;T:555276071;N:341091,50,,,,554630438,468936669,460030131,555276071,341091,SRX893447,SRS859520,SRA244883,GEO,Leibniz Institute for Age Research - Fritz Lipmann Institute,1,0.91261,,0.11181,,0.70832,,0.4889,,50,,B,,usable mapping rate,illumina,hiseq_era,unknown,cdna_unspecified,unknown,bulk,unknown,unknown,,Germany,2015-02-27,Adult,Adult,Skin,Surface Structure
38394,SRR1821845,SRX893446,SRS859521,SRP055573,PRJNA276667,RNA seq of zebrafish brain liver and skin during perturbation with rotenone at young and old age,GSE66362,Transcriptome Analysis,Zebrafish of two different age groups 12 month and 36 month were treated with low amounts of rotenone mild stress and compared to untreated zebrafish. Two different durations were used 3 and 8 weeks. Illumina sequencing HiSeq2000 was applied to generate 50bp single end reads. Jena Centre for Systems Biology of Ageing JenAge www.jenage.de Overall design: 68 sample: 3 tissues brain liver skin; 2 age groups 12 month and 36 month; controls and rotenone treated samples; 2 6 biological replicates for each group,,pubmed:27135165,,skin203 36m 3.75nM roten1 8w rep1,GSM1620992,,source name:total RNA extracted from skin|tissue:skin|age:36 month|treatment:3.75nM roten1|duration:8 weeks,skin203 36m 3.75nM roten1 8w rep1,FASTQ files were extracted using Illumina Casava software v1.8.2.,total RNA extracted from skin,Tanks with male zebrafish were supplemented with 3.75 nM rotenone or DMSO control for 3 weeks and 8 weeks respectively. 50% tank water was changed twice a week and fresh Rotenone and DMSO was added to the tanks.,Total RNA was isolated using QIAzol Qiagen Hilden Germany based on the phenol/chloroform extraction method. postwards the RNA was quantified photometrically with a NanoDrop 1000 PeqLab Erlangen Germany and stored at 80 °C until use. For library preparation an amount of around 2.5 ug of total RNA per sample was processed using Illumina's TruSeqTM RNA Sample Prep Kit Illumina; San Diego; CA USA following the manufacturer's instruction.,Zebrafish Danio rerio were raised under standard conditions.,tissue:skin|age:36 month|treatment:3.75nM roten1|duration:8 weeks,GSM1620992,GSM1620992: skin203 36m 3.75nM roten1 8w rep1; Danio rerio; RNA Seq,GSM1620992,,1,Total RNA was isolated using QIAzol Qiagen Hilden Germany based on the phenol/chloroform extraction method. postwards the RNA was quantified photometrically with a NanoDrop 1000 PeqLab Erlangen Germany and stored at 80 °C until use. For library preparation an amount of around 2.5 ug of total RNA per sample was processed using Illumina's TruSeqTM RNA Sample Prep Kit Illumina; San Diego; CA USA following the manufacturer's instruction.,GEO Accession:GSM1620992,RNA-Seq,TRANSCRIPTOMIC,cDNA,SINGLE,ILLUMINA,Illumina HiSeq 2000,,SRP055573,,,203_skin.fastq.gz,fastq,2169512850.0,43390257.0,GSM1620992 r1,0:50,A:583644936;C:503133232;G:492417551;T:585152349;N:5164782,50,,,,583644936,503133232,492417551,585152349,5164782,SRX893446,SRS859521,SRA244883,GEO,Leibniz Institute for Age Research - Fritz Lipmann Institute,1,0.91263,,0.1004,,0.71376,,0.48566,,50,,B,,usable mapping rate,illumina,hiseq_era,unknown,cdna_unspecified,unknown,bulk,unknown,unknown,,Germany,2015-02-27,Adult,Adult,Skin,Surface Structure
38395,SRR1821844,SRX893445,SRS859522,SRP055573,PRJNA276667,RNA seq of zebrafish brain liver and skin during perturbation with rotenone at young and old age,GSE66362,Transcriptome Analysis,Zebrafish of two different age groups 12 month and 36 month were treated with low amounts of rotenone mild stress and compared to untreated zebrafish. Two different durations were used 3 and 8 weeks. Illumina sequencing HiSeq2000 was applied to generate 50bp single end reads. Jena Centre for Systems Biology of Ageing JenAge www.jenage.de Overall design: 68 sample: 3 tissues brain liver skin; 2 age groups 12 month and 36 month; controls and rotenone treated samples; 2 6 biological replicates for each group,,pubmed:27135165,,skin172 36m 3.75nM roten1 3w rep5,GSM1620991,,source name:total RNA extracted from skin|tissue:skin|age:36 month|treatment:3.75nM roten1|duration:3 weeks,skin172 36m 3.75nM roten1 3w rep5,FASTQ files were extracted using Illumina Casava software v1.8.2.,total RNA extracted from skin,Tanks with male zebrafish were supplemented with 3.75 nM rotenone or DMSO control for 3 weeks and 8 weeks respectively. 50% tank water was changed twice a week and fresh Rotenone and DMSO was added to the tanks.,Total RNA was isolated using QIAzol Qiagen Hilden Germany based on the phenol/chloroform extraction method. postwards the RNA was quantified photometrically with a NanoDrop 1000 PeqLab Erlangen Germany and stored at 80 °C until use. For library preparation an amount of around 2.5 ug of total RNA per sample was processed using Illumina's TruSeqTM RNA Sample Prep Kit Illumina; San Diego; CA USA following the manufacturer's instruction.,Zebrafish Danio rerio were raised under standard conditions.,tissue:skin|age:36 month|treatment:3.75nM roten1|duration:3 weeks,GSM1620991,GSM1620991: skin172 36m 3.75nM roten1 3w rep5; Danio rerio; RNA Seq,GSM1620991,,1,Total RNA was isolated using QIAzol Qiagen Hilden Germany based on the phenol/chloroform extraction method. postwards the RNA was quantified photometrically with a NanoDrop 1000 PeqLab Erlangen Germany and stored at 80 °C until use. For library preparation an amount of around 2.5 ug of total RNA per sample was processed using Illumina's TruSeqTM RNA Sample Prep Kit Illumina; San Diego; CA USA following the manufacturer's instruction.,GEO Accession:GSM1620991,RNA-Seq,TRANSCRIPTOMIC,cDNA,SINGLE,ILLUMINA,Illumina HiSeq 2000,,SRP055573,,,172_skin.fastq.gz,fastq,1922415800.0,38448316.0,GSM1620991 r1,0:50,A:517025440;C:447202733;G:438389966;T:519578929;N:218732,50,,,,517025440,447202733,438389966,519578929,218732,SRX893445,SRS859522,SRA244883,GEO,Leibniz Institute for Age Research - Fritz Lipmann Institute,1,0.92509,,0.08635,,0.71747,,0.48682,,50,,B,,usable mapping rate,illumina,hiseq_era,unknown,cdna_unspecified,unknown,bulk,unknown,unknown,,Germany,2015-02-27,Adult,Adult,Skin,Surface Structure
38396,SRR1821843,SRX893444,SRS859523,SRP055573,PRJNA276667,RNA seq of zebrafish brain liver and skin during perturbation with rotenone at young and old age,GSE66362,Transcriptome Analysis,Zebrafish of two different age groups 12 month and 36 month were treated with low amounts of rotenone mild stress and compared to untreated zebrafish. Two different durations were used 3 and 8 weeks. Illumina sequencing HiSeq2000 was applied to generate 50bp single end reads. Jena Centre for Systems Biology of Ageing JenAge www.jenage.de Overall design: 68 sample: 3 tissues brain liver skin; 2 age groups 12 month and 36 month; controls and rotenone treated samples; 2 6 biological replicates for each group,,pubmed:27135165,,skin171 36m 3.75nM roten1 3w rep4,GSM1620990,,source name:total RNA extracted from skin|tissue:skin|age:36 month|treatment:3.75nM roten1|duration:3 weeks,skin171 36m 3.75nM roten1 3w rep4,FASTQ files were extracted using Illumina Casava software v1.8.2.,total RNA extracted from skin,Tanks with male zebrafish were supplemented with 3.75 nM rotenone or DMSO control for 3 weeks and 8 weeks respectively. 50% tank water was changed twice a week and fresh Rotenone and DMSO was added to the tanks.,Total RNA was isolated using QIAzol Qiagen Hilden Germany based on the phenol/chloroform extraction method. postwards the RNA was quantified photometrically with a NanoDrop 1000 PeqLab Erlangen Germany and stored at 80 °C until use. For library preparation an amount of around 2.5 ug of total RNA per sample was processed using Illumina's TruSeqTM RNA Sample Prep Kit Illumina; San Diego; CA USA following the manufacturer's instruction.,Zebrafish Danio rerio were raised under standard conditions.,tissue:skin|age:36 month|treatment:3.75nM roten1|duration:3 weeks,GSM1620990,GSM1620990: skin171 36m 3.75nM roten1 3w rep4; Danio rerio; RNA Seq,GSM1620990,,1,Total RNA was isolated using QIAzol Qiagen Hilden Germany based on the phenol/chloroform extraction method. postwards the RNA was quantified photometrically with a NanoDrop 1000 PeqLab Erlangen Germany and stored at 80 °C until use. For library preparation an amount of around 2.5 ug of total RNA per sample was processed using Illumina's TruSeqTM RNA Sample Prep Kit Illumina; San Diego; CA USA following the manufacturer's instruction.,GEO Accession:GSM1620990,RNA-Seq,TRANSCRIPTOMIC,cDNA,SINGLE,ILLUMINA,Illumina HiSeq 2000,,SRP055573,,,171_skin.fastq.gz,fastq,1795802450.0,35916049.0,GSM1620990 r1,0:50,A:482833890;C:415521773;G:409072097;T:485286706;N:3087984,50,,,,482833890,415521773,409072097,485286706,3087984,SRX893444,SRS859523,SRA244883,GEO,Leibniz Institute for Age Research - Fritz Lipmann Institute,1,0.91548,,0.08856,,0.71153,,0.48407,,50,,B,,usable mapping rate,illumina,hiseq_era,unknown,cdna_unspecified,unknown,bulk,unknown,unknown,,Germany,2015-02-27,Adult,Adult,Skin,Surface Structure
38397,SRR1821842,SRX893443,SRS859524,SRP055573,PRJNA276667,RNA seq of zebrafish brain liver and skin during perturbation with rotenone at young and old age,GSE66362,Transcriptome Analysis,Zebrafish of two different age groups 12 month and 36 month were treated with low amounts of rotenone mild stress and compared to untreated zebrafish. Two different durations were used 3 and 8 weeks. Illumina sequencing HiSeq2000 was applied to generate 50bp single end reads. Jena Centre for Systems Biology of Ageing JenAge www.jenage.de Overall design: 68 sample: 3 tissues brain liver skin; 2 age groups 12 month and 36 month; controls and rotenone treated samples; 2 6 biological replicates for each group,,pubmed:27135165,,skin170 36m 3.75nM roten1 3w rep3,GSM1620989,,source name:total RNA extracted from skin|tissue:skin|age:36 month|treatment:3.75nM roten1|duration:3 weeks,skin170 36m 3.75nM roten1 3w rep3,FASTQ files were extracted using Illumina Casava software v1.8.2.,total RNA extracted from skin,Tanks with male zebrafish were supplemented with 3.75 nM rotenone or DMSO control for 3 weeks and 8 weeks respectively. 50% tank water was changed twice a week and fresh Rotenone and DMSO was added to the tanks.,Total RNA was isolated using QIAzol Qiagen Hilden Germany based on the phenol/chloroform extraction method. postwards the RNA was quantified photometrically with a NanoDrop 1000 PeqLab Erlangen Germany and stored at 80 °C until use. For library preparation an amount of around 2.5 ug of total RNA per sample was processed using Illumina's TruSeqTM RNA Sample Prep Kit Illumina; San Diego; CA USA following the manufacturer's instruction.,Zebrafish Danio rerio were raised under standard conditions.,tissue:skin|age:36 month|treatment:3.75nM roten1|duration:3 weeks,GSM1620989,GSM1620989: skin170 36m 3.75nM roten1 3w rep3; Danio rerio; RNA Seq,GSM1620989,,1,Total RNA was isolated using QIAzol Qiagen Hilden Germany based on the phenol/chloroform extraction method. postwards the RNA was quantified photometrically with a NanoDrop 1000 PeqLab Erlangen Germany and stored at 80 °C until use. For library preparation an amount of around 2.5 ug of total RNA per sample was processed using Illumina's TruSeqTM RNA Sample Prep Kit Illumina; San Diego; CA USA following the manufacturer's instruction.,GEO Accession:GSM1620989,RNA-Seq,TRANSCRIPTOMIC,cDNA,SINGLE,ILLUMINA,Illumina HiSeq 2000,,SRP055573,,,170_skin.fastq.gz,fastq,1844753700.0,36895074.0,GSM1620989 r1,0:50,A:496864420;C:428934827;G:420432768;T:498397505;N:124180,50,,,,496864420,428934827,420432768,498397505,124180,SRX893443,SRS859524,SRA244883,GEO,Leibniz Institute for Age Research - Fritz Lipmann Institute,1,0.92475,,0.08478,,0.71123,,0.5082,,50,,B,,usable mapping rate,illumina,hiseq_era,unknown,cdna_unspecified,unknown,bulk,unknown,unknown,,Germany,2015-02-27,Adult,Adult,Skin,Surface Structure
38398,SRR1821841,SRX893442,SRS859525,SRP055573,PRJNA276667,RNA seq of zebrafish brain liver and skin during perturbation with rotenone at young and old age,GSE66362,Transcriptome Analysis,Zebrafish of two different age groups 12 month and 36 month were treated with low amounts of rotenone mild stress and compared to untreated zebrafish. Two different durations were used 3 and 8 weeks. Illumina sequencing HiSeq2000 was applied to generate 50bp single end reads. Jena Centre for Systems Biology of Ageing JenAge www.jenage.de Overall design: 68 sample: 3 tissues brain liver skin; 2 age groups 12 month and 36 month; controls and rotenone treated samples; 2 6 biological replicates for each group,,pubmed:27135165,,skin169 36m 3.75nM roten1 3w rep2,GSM1620988,,source name:total RNA extracted from skin|tissue:skin|age:36 month|treatment:3.75nM roten1|duration:3 weeks,skin169 36m 3.75nM roten1 3w rep2,FASTQ files were extracted using Illumina Casava software v1.8.2.,total RNA extracted from skin,Tanks with male zebrafish were supplemented with 3.75 nM rotenone or DMSO control for 3 weeks and 8 weeks respectively. 50% tank water was changed twice a week and fresh Rotenone and DMSO was added to the tanks.,Total RNA was isolated using QIAzol Qiagen Hilden Germany based on the phenol/chloroform extraction method. postwards the RNA was quantified photometrically with a NanoDrop 1000 PeqLab Erlangen Germany and stored at 80 °C until use. For library preparation an amount of around 2.5 ug of total RNA per sample was processed using Illumina's TruSeqTM RNA Sample Prep Kit Illumina; San Diego; CA USA following the manufacturer's instruction.,Zebrafish Danio rerio were raised under standard conditions.,tissue:skin|age:36 month|treatment:3.75nM roten1|duration:3 weeks,GSM1620988,GSM1620988: skin169 36m 3.75nM roten1 3w rep2; Danio rerio; RNA Seq,GSM1620988,,1,Total RNA was isolated using QIAzol Qiagen Hilden Germany based on the phenol/chloroform extraction method. postwards the RNA was quantified photometrically with a NanoDrop 1000 PeqLab Erlangen Germany and stored at 80 °C until use. For library preparation an amount of around 2.5 ug of total RNA per sample was processed using Illumina's TruSeqTM RNA Sample Prep Kit Illumina; San Diego; CA USA following the manufacturer's instruction.,GEO Accession:GSM1620988,RNA-Seq,TRANSCRIPTOMIC,cDNA,SINGLE,ILLUMINA,Illumina HiSeq 2000,,SRP055573,,,169_skin.fastq.gz,fastq,1832979850.0,36659597.0,GSM1620988 r1,0:50,A:492012429;C:429700408;G:417026859;T:494015583;N:224571,50,,,,492012429,429700408,417026859,494015583,224571,SRX893442,SRS859525,SRA244883,GEO,Leibniz Institute for Age Research - Fritz Lipmann Institute,1,0.93738,,0.07334,,0.71936,,0.5123,,50,,B,,usable mapping rate,illumina,hiseq_era,unknown,cdna_unspecified,unknown,bulk,unknown,unknown,,Germany,2015-02-27,Adult,Adult,Skin,Surface Structure
38399,SRR1821840,SRX893441,SRS859526,SRP055573,PRJNA276667,RNA seq of zebrafish brain liver and skin during perturbation with rotenone at young and old age,GSE66362,Transcriptome Analysis,Zebrafish of two different age groups 12 month and 36 month were treated with low amounts of rotenone mild stress and compared to untreated zebrafish. Two different durations were used 3 and 8 weeks. Illumina sequencing HiSeq2000 was applied to generate 50bp single end reads. Jena Centre for Systems Biology of Ageing JenAge www.jenage.de Overall design: 68 sample: 3 tissues brain liver skin; 2 age groups 12 month and 36 month; controls and rotenone treated samples; 2 6 biological replicates for each group,,pubmed:27135165,,skin168 36m 3.75nM roten1 3w rep1,GSM1620987,,source name:total RNA extracted from skin|tissue:skin|age:36 month|treatment:3.75nM roten1|duration:3 weeks,skin168 36m 3.75nM roten1 3w rep1,FASTQ files were extracted using Illumina Casava software v1.8.2.,total RNA extracted from skin,Tanks with male zebrafish were supplemented with 3.75 nM rotenone or DMSO control for 3 weeks and 8 weeks respectively. 50% tank water was changed twice a week and fresh Rotenone and DMSO was added to the tanks.,Total RNA was isolated using QIAzol Qiagen Hilden Germany based on the phenol/chloroform extraction method. postwards the RNA was quantified photometrically with a NanoDrop 1000 PeqLab Erlangen Germany and stored at 80 °C until use. For library preparation an amount of around 2.5 ug of total RNA per sample was processed using Illumina's TruSeqTM RNA Sample Prep Kit Illumina; San Diego; CA USA following the manufacturer's instruction.,Zebrafish Danio rerio were raised under standard conditions.,tissue:skin|age:36 month|treatment:3.75nM roten1|duration:3 weeks,GSM1620987,GSM1620987: skin168 36m 3.75nM roten1 3w rep1; Danio rerio; RNA Seq,GSM1620987,,1,Total RNA was isolated using QIAzol Qiagen Hilden Germany based on the phenol/chloroform extraction method. postwards the RNA was quantified photometrically with a NanoDrop 1000 PeqLab Erlangen Germany and stored at 80 °C until use. For library preparation an amount of around 2.5 ug of total RNA per sample was processed using Illumina's TruSeqTM RNA Sample Prep Kit Illumina; San Diego; CA USA following the manufacturer's instruction.,GEO Accession:GSM1620987,RNA-Seq,TRANSCRIPTOMIC,cDNA,SINGLE,ILLUMINA,Illumina HiSeq 2000,,SRP055573,,,168_skin.fastq.gz,fastq,1811602600.0,36232052.0,GSM1620987 r1,0:50,A:482632140;C:422445561;G:412836586;T:485392445;N:8295868,50,,,,482632140,422445561,412836586,485392445,8295868,SRX893441,SRS859526,SRA244883,GEO,Leibniz Institute for Age Research - Fritz Lipmann Institute,1,0.9185,,0.07569,,0.71368,,0.49409,,50,,B,,usable mapping rate,illumina,hiseq_era,unknown,cdna_unspecified,unknown,bulk,unknown,unknown,,Germany,2015-02-27,Adult,Adult,Skin,Surface Structure
38400,SRR1821839,SRX893440,SRS859527,SRP055573,PRJNA276667,RNA seq of zebrafish brain liver and skin during perturbation with rotenone at young and old age,GSE66362,Transcriptome Analysis,Zebrafish of two different age groups 12 month and 36 month were treated with low amounts of rotenone mild stress and compared to untreated zebrafish. Two different durations were used 3 and 8 weeks. Illumina sequencing HiSeq2000 was applied to generate 50bp single end reads. Jena Centre for Systems Biology of Ageing JenAge www.jenage.de Overall design: 68 sample: 3 tissues brain liver skin; 2 age groups 12 month and 36 month; controls and rotenone treated samples; 2 6 biological replicates for each group,,pubmed:27135165,,skin188 36m control 8w rep4,GSM1620986,,source name:total RNA extracted from skin|tissue:skin|age:36 month|treatment:n1|duration:8 weeks,skin188 36m control 8w rep4,FASTQ files were extracted using Illumina Casava software v1.8.2.,total RNA extracted from skin,Tanks with male zebrafish were supplemented with 3.75 nM rotenone or DMSO control for 3 weeks and 8 weeks respectively. 50% tank water was changed twice a week and fresh Rotenone and DMSO was added to the tanks.,Total RNA was isolated using QIAzol Qiagen Hilden Germany based on the phenol/chloroform extraction method. postwards the RNA was quantified photometrically with a NanoDrop 1000 PeqLab Erlangen Germany and stored at 80 °C until use. For library preparation an amount of around 2.5 ug of total RNA per sample was processed using Illumina's TruSeqTM RNA Sample Prep Kit Illumina; San Diego; CA USA following the manufacturer's instruction.,Zebrafish Danio rerio were raised under standard conditions.,tissue:skin|age:36 month|treatment:n1|duration:8 weeks,GSM1620986,GSM1620986: skin188 36m control 8w rep4; Danio rerio; RNA Seq,GSM1620986,,1,Total RNA was isolated using QIAzol Qiagen Hilden Germany based on the phenol/chloroform extraction method. postwards the RNA was quantified photometrically with a NanoDrop 1000 PeqLab Erlangen Germany and stored at 80 °C until use. For library preparation an amount of around 2.5 ug of total RNA per sample was processed using Illumina's TruSeqTM RNA Sample Prep Kit Illumina; San Diego; CA USA following the manufacturer's instruction.,GEO Accession:GSM1620986,RNA-Seq,TRANSCRIPTOMIC,cDNA,SINGLE,ILLUMINA,Illumina HiSeq 2000,,SRP055573,,,188_skin.fastq.gz,fastq,1797310350.0,35946207.0,GSM1620986 r1,0:50,A:486641633;C:413978398;G:404993329;T:489015902;N:2681088,50,,,,486641633,413978398,404993329,489015902,2681088,SRX893440,SRS859527,SRA244883,GEO,Leibniz Institute for Age Research - Fritz Lipmann Institute,1,0.91594,,0.09158,,0.72082,,0.51585,,50,,B,,usable mapping rate,illumina,hiseq_era,unknown,cdna_unspecified,unknown,bulk,unknown,unknown,,Germany,2015-02-27,Adult,Adult,Skin,Surface Structure
38401,SRR1821838,SRX893439,SRS859528,SRP055573,PRJNA276667,RNA seq of zebrafish brain liver and skin during perturbation with rotenone at young and old age,GSE66362,Transcriptome Analysis,Zebrafish of two different age groups 12 month and 36 month were treated with low amounts of rotenone mild stress and compared to untreated zebrafish. Two different durations were used 3 and 8 weeks. Illumina sequencing HiSeq2000 was applied to generate 50bp single end reads. Jena Centre for Systems Biology of Ageing JenAge www.jenage.de Overall design: 68 sample: 3 tissues brain liver skin; 2 age groups 12 month and 36 month; controls and rotenone treated samples; 2 6 biological replicates for each group,,pubmed:27135165,,skin187 36m control 8w rep3,GSM1620985,,source name:total RNA extracted from skin|tissue:skin|age:36 month|treatment:n1|duration:8 weeks,skin187 36m control 8w rep3,FASTQ files were extracted using Illumina Casava software v1.8.2.,total RNA extracted from skin,Tanks with male zebrafish were supplemented with 3.75 nM rotenone or DMSO control for 3 weeks and 8 weeks respectively. 50% tank water was changed twice a week and fresh Rotenone and DMSO was added to the tanks.,Total RNA was isolated using QIAzol Qiagen Hilden Germany based on the phenol/chloroform extraction method. postwards the RNA was quantified photometrically with a NanoDrop 1000 PeqLab Erlangen Germany and stored at 80 °C until use. For library preparation an amount of around 2.5 ug of total RNA per sample was processed using Illumina's TruSeqTM RNA Sample Prep Kit Illumina; San Diego; CA USA following the manufacturer's instruction.,Zebrafish Danio rerio were raised under standard conditions.,tissue:skin|age:36 month|treatment:n1|duration:8 weeks,GSM1620985,GSM1620985: skin187 36m control 8w rep3; Danio rerio; RNA Seq,GSM1620985,,1,Total RNA was isolated using QIAzol Qiagen Hilden Germany based on the phenol/chloroform extraction method. postwards the RNA was quantified photometrically with a NanoDrop 1000 PeqLab Erlangen Germany and stored at 80 °C until use. For library preparation an amount of around 2.5 ug of total RNA per sample was processed using Illumina's TruSeqTM RNA Sample Prep Kit Illumina; San Diego; CA USA following the manufacturer's instruction.,GEO Accession:GSM1620985,RNA-Seq,TRANSCRIPTOMIC,cDNA,SINGLE,ILLUMINA,Illumina HiSeq 2000,,SRP055573,,,187_skin.fastq.gz,fastq,1951002950.0,39020059.0,GSM1620985 r1,0:50,A:520701869;C:457907686;G:446812256;T:524196019;N:1385120,50,,,,520701869,457907686,446812256,524196019,1385120,SRX893439,SRS859528,SRA244883,GEO,Leibniz Institute for Age Research - Fritz Lipmann Institute,1,0.9211,,0.07622,,0.71145,,0.46944,,50,,B,,usable mapping rate,illumina,hiseq_era,unknown,cdna_unspecified,unknown,bulk,unknown,unknown,,Germany,2015-02-27,Adult,Adult,Skin,Surface Structure
38402,SRR1821837,SRX893438,SRS859529,SRP055573,PRJNA276667,RNA seq of zebrafish brain liver and skin during perturbation with rotenone at young and old age,GSE66362,Transcriptome Analysis,Zebrafish of two different age groups 12 month and 36 month were treated with low amounts of rotenone mild stress and compared to untreated zebrafish. Two different durations were used 3 and 8 weeks. Illumina sequencing HiSeq2000 was applied to generate 50bp single end reads. Jena Centre for Systems Biology of Ageing JenAge www.jenage.de Overall design: 68 sample: 3 tissues brain liver skin; 2 age groups 12 month and 36 month; controls and rotenone treated samples; 2 6 biological replicates for each group,,pubmed:27135165,,skin186 36m control 8w rep2,GSM1620984,,source name:total RNA extracted from skin|tissue:skin|age:36 month|treatment:n1|duration:8 weeks,skin186 36m control 8w rep2,FASTQ files were extracted using Illumina Casava software v1.8.2.,total RNA extracted from skin,Tanks with male zebrafish were supplemented with 3.75 nM rotenone or DMSO control for 3 weeks and 8 weeks respectively. 50% tank water was changed twice a week and fresh Rotenone and DMSO was added to the tanks.,Total RNA was isolated using QIAzol Qiagen Hilden Germany based on the phenol/chloroform extraction method. postwards the RNA was quantified photometrically with a NanoDrop 1000 PeqLab Erlangen Germany and stored at 80 °C until use. For library preparation an amount of around 2.5 ug of total RNA per sample was processed using Illumina's TruSeqTM RNA Sample Prep Kit Illumina; San Diego; CA USA following the manufacturer's instruction.,Zebrafish Danio rerio were raised under standard conditions.,tissue:skin|age:36 month|treatment:n1|duration:8 weeks,GSM1620984,GSM1620984: skin186 36m control 8w rep2; Danio rerio; RNA Seq,GSM1620984,,1,Total RNA was isolated using QIAzol Qiagen Hilden Germany based on the phenol/chloroform extraction method. postwards the RNA was quantified photometrically with a NanoDrop 1000 PeqLab Erlangen Germany and stored at 80 °C until use. For library preparation an amount of around 2.5 ug of total RNA per sample was processed using Illumina's TruSeqTM RNA Sample Prep Kit Illumina; San Diego; CA USA following the manufacturer's instruction.,GEO Accession:GSM1620984,RNA-Seq,TRANSCRIPTOMIC,cDNA,SINGLE,ILLUMINA,Illumina HiSeq 2000,,SRP055573,,,186_skin.fastq.gz,fastq,2016117600.0,40322352.0,GSM1620984 r1,0:50,A:545084574;C:465634059;G:454024180;T:546321124;N:5053663,50,,,,545084574,465634059,454024180,546321124,5053663,SRX893438,SRS859529,SRA244883,GEO,Leibniz Institute for Age Research - Fritz Lipmann Institute,1,0.91606,,0.09659,,0.71246,,0.52973,,50,,B,,usable mapping rate,illumina,hiseq_era,unknown,cdna_unspecified,unknown,bulk,unknown,unknown,,Germany,2015-02-27,Adult,Adult,Skin,Surface Structure
38403,SRR1821836,SRX893437,SRS859530,SRP055573,PRJNA276667,RNA seq of zebrafish brain liver and skin during perturbation with rotenone at young and old age,GSE66362,Transcriptome Analysis,Zebrafish of two different age groups 12 month and 36 month were treated with low amounts of rotenone mild stress and compared to untreated zebrafish. Two different durations were used 3 and 8 weeks. Illumina sequencing HiSeq2000 was applied to generate 50bp single end reads. Jena Centre for Systems Biology of Ageing JenAge www.jenage.de Overall design: 68 sample: 3 tissues brain liver skin; 2 age groups 12 month and 36 month; controls and rotenone treated samples; 2 6 biological replicates for each group,,pubmed:27135165,,skin185 36m control 8w rep1,GSM1620983,,source name:total RNA extracted from skin|tissue:skin|age:36 month|treatment:n1|duration:8 weeks,skin185 36m control 8w rep1,FASTQ files were extracted using Illumina Casava software v1.8.2.,total RNA extracted from skin,Tanks with male zebrafish were supplemented with 3.75 nM rotenone or DMSO control for 3 weeks and 8 weeks respectively. 50% tank water was changed twice a week and fresh Rotenone and DMSO was added to the tanks.,Total RNA was isolated using QIAzol Qiagen Hilden Germany based on the phenol/chloroform extraction method. postwards the RNA was quantified photometrically with a NanoDrop 1000 PeqLab Erlangen Germany and stored at 80 °C until use. For library preparation an amount of around 2.5 ug of total RNA per sample was processed using Illumina's TruSeqTM RNA Sample Prep Kit Illumina; San Diego; CA USA following the manufacturer's instruction.,Zebrafish Danio rerio were raised under standard conditions.,tissue:skin|age:36 month|treatment:n1|duration:8 weeks,GSM1620983,GSM1620983: skin185 36m control 8w rep1; Danio rerio; RNA Seq,GSM1620983,,1,Total RNA was isolated using QIAzol Qiagen Hilden Germany based on the phenol/chloroform extraction method. postwards the RNA was quantified photometrically with a NanoDrop 1000 PeqLab Erlangen Germany and stored at 80 °C until use. For library preparation an amount of around 2.5 ug of total RNA per sample was processed using Illumina's TruSeqTM RNA Sample Prep Kit Illumina; San Diego; CA USA following the manufacturer's instruction.,GEO Accession:GSM1620983,RNA-Seq,TRANSCRIPTOMIC,cDNA,SINGLE,ILLUMINA,Illumina HiSeq 2000,,SRP055573,,,185_skin.fastq.gz,fastq,1862747450.0,37254949.0,GSM1620983 r1,0:50,A:506321471;C:429322966;G:419158880;T:507760233;N:183900,50,,,,506321471,429322966,419158880,507760233,183900,SRX893437,SRS859530,SRA244883,GEO,Leibniz Institute for Age Research - Fritz Lipmann Institute,1,0.9187,,0.09926,,0.70755,,0.51593,,50,,B,,usable mapping rate,illumina,hiseq_era,unknown,cdna_unspecified,unknown,bulk,unknown,unknown,,Germany,2015-02-27,Adult,Adult,Skin,Surface Structure
38404,SRR1821835,SRX893436,SRS859531,SRP055573,PRJNA276667,RNA seq of zebrafish brain liver and skin during perturbation with rotenone at young and old age,GSE66362,Transcriptome Analysis,Zebrafish of two different age groups 12 month and 36 month were treated with low amounts of rotenone mild stress and compared to untreated zebrafish. Two different durations were used 3 and 8 weeks. Illumina sequencing HiSeq2000 was applied to generate 50bp single end reads. Jena Centre for Systems Biology of Ageing JenAge www.jenage.de Overall design: 68 sample: 3 tissues brain liver skin; 2 age groups 12 month and 36 month; controls and rotenone treated samples; 2 6 biological replicates for each group,,pubmed:27135165,,skin162 36m control 3w rep3,GSM1620982,,source name:total RNA extracted from skin|tissue:skin|age:36 month|treatment:n1|duration:3 weeks,skin162 36m control 3w rep3,FASTQ files were extracted using Illumina Casava software v1.8.2.,total RNA extracted from skin,Tanks with male zebrafish were supplemented with 3.75 nM rotenone or DMSO control for 3 weeks and 8 weeks respectively. 50% tank water was changed twice a week and fresh Rotenone and DMSO was added to the tanks.,Total RNA was isolated using QIAzol Qiagen Hilden Germany based on the phenol/chloroform extraction method. postwards the RNA was quantified photometrically with a NanoDrop 1000 PeqLab Erlangen Germany and stored at 80 °C until use. For library preparation an amount of around 2.5 ug of total RNA per sample was processed using Illumina's TruSeqTM RNA Sample Prep Kit Illumina; San Diego; CA USA following the manufacturer's instruction.,Zebrafish Danio rerio were raised under standard conditions.,tissue:skin|age:36 month|treatment:n1|duration:3 weeks,GSM1620982,GSM1620982: skin162 36m control 3w rep3; Danio rerio; RNA Seq,GSM1620982,,1,Total RNA was isolated using QIAzol Qiagen Hilden Germany based on the phenol/chloroform extraction method. postwards the RNA was quantified photometrically with a NanoDrop 1000 PeqLab Erlangen Germany and stored at 80 °C until use. For library preparation an amount of around 2.5 ug of total RNA per sample was processed using Illumina's TruSeqTM RNA Sample Prep Kit Illumina; San Diego; CA USA following the manufacturer's instruction.,GEO Accession:GSM1620982,RNA-Seq,TRANSCRIPTOMIC,cDNA,SINGLE,ILLUMINA,Illumina HiSeq 2000,,SRP055573,,,162_skin.fastq.gz,fastq,2058728600.0,41174572.0,GSM1620982 r1,0:50,A:545731040;C:487775330;G:479420254;T:545686109;N:115867,50,,,,545731040,487775330,479420254,545686109,115867,SRX893436,SRS859531,SRA244883,GEO,Leibniz Institute for Age Research - Fritz Lipmann Institute,1,0.93508,,0.07365,,0.70688,,0.4827,,50,,B,,usable mapping rate,illumina,hiseq_era,unknown,cdna_unspecified,unknown,bulk,unknown,unknown,,Germany,2015-02-27,Adult,Adult,Skin,Surface Structure
38405,SRR1821834,SRX893435,SRS859532,SRP055573,PRJNA276667,RNA seq of zebrafish brain liver and skin during perturbation with rotenone at young and old age,GSE66362,Transcriptome Analysis,Zebrafish of two different age groups 12 month and 36 month were treated with low amounts of rotenone mild stress and compared to untreated zebrafish. Two different durations were used 3 and 8 weeks. Illumina sequencing HiSeq2000 was applied to generate 50bp single end reads. Jena Centre for Systems Biology of Ageing JenAge www.jenage.de Overall design: 68 sample: 3 tissues brain liver skin; 2 age groups 12 month and 36 month; controls and rotenone treated samples; 2 6 biological replicates for each group,,pubmed:27135165,,skin161 36m control 3w rep2,GSM1620981,,source name:total RNA extracted from skin|tissue:skin|age:36 month|treatment:n1|duration:3 weeks,skin161 36m control 3w rep2,FASTQ files were extracted using Illumina Casava software v1.8.2.,total RNA extracted from skin,Tanks with male zebrafish were supplemented with 3.75 nM rotenone or DMSO control for 3 weeks and 8 weeks respectively. 50% tank water was changed twice a week and fresh Rotenone and DMSO was added to the tanks.,Total RNA was isolated using QIAzol Qiagen Hilden Germany based on the phenol/chloroform extraction method. postwards the RNA was quantified photometrically with a NanoDrop 1000 PeqLab Erlangen Germany and stored at 80 °C until use. For library preparation an amount of around 2.5 ug of total RNA per sample was processed using Illumina's TruSeqTM RNA Sample Prep Kit Illumina; San Diego; CA USA following the manufacturer's instruction.,Zebrafish Danio rerio were raised under standard conditions.,tissue:skin|age:36 month|treatment:n1|duration:3 weeks,GSM1620981,GSM1620981: skin161 36m control 3w rep2; Danio rerio; RNA Seq,GSM1620981,,1,Total RNA was isolated using QIAzol Qiagen Hilden Germany based on the phenol/chloroform extraction method. postwards the RNA was quantified photometrically with a NanoDrop 1000 PeqLab Erlangen Germany and stored at 80 °C until use. For library preparation an amount of around 2.5 ug of total RNA per sample was processed using Illumina's TruSeqTM RNA Sample Prep Kit Illumina; San Diego; CA USA following the manufacturer's instruction.,GEO Accession:GSM1620981,RNA-Seq,TRANSCRIPTOMIC,cDNA,SINGLE,ILLUMINA,Illumina HiSeq 2000,,SRP055573,,,161_skin.fastq.gz,fastq,1897142450.0,37942849.0,GSM1620981 r1,0:50,A:508043218;C:440251400;G:428510637;T:511046395;N:9290800,50,,,,508043218,440251400,428510637,511046395,9290800,SRX893435,SRS859532,SRA244883,GEO,Leibniz Institute for Age Research - Fritz Lipmann Institute,1,0.90644,,0.0826,,0.71358,,0.49573,,50,,B,,usable mapping rate,illumina,hiseq_era,unknown,cdna_unspecified,unknown,bulk,unknown,unknown,,Germany,2015-02-27,Adult,Adult,Skin,Surface Structure
38406,SRR1821833,SRX893434,SRS859533,SRP055573,PRJNA276667,RNA seq of zebrafish brain liver and skin during perturbation with rotenone at young and old age,GSE66362,Transcriptome Analysis,Zebrafish of two different age groups 12 month and 36 month were treated with low amounts of rotenone mild stress and compared to untreated zebrafish. Two different durations were used 3 and 8 weeks. Illumina sequencing HiSeq2000 was applied to generate 50bp single end reads. Jena Centre for Systems Biology of Ageing JenAge www.jenage.de Overall design: 68 sample: 3 tissues brain liver skin; 2 age groups 12 month and 36 month; controls and rotenone treated samples; 2 6 biological replicates for each group,,pubmed:27135165,,skin160 36m control 3w rep1,GSM1620980,,source name:total RNA extracted from skin|tissue:skin|age:36 month|treatment:n1|duration:3 weeks,skin160 36m control 3w rep1,FASTQ files were extracted using Illumina Casava software v1.8.2.,total RNA extracted from skin,Tanks with male zebrafish were supplemented with 3.75 nM rotenone or DMSO control for 3 weeks and 8 weeks respectively. 50% tank water was changed twice a week and fresh Rotenone and DMSO was added to the tanks.,Total RNA was isolated using QIAzol Qiagen Hilden Germany based on the phenol/chloroform extraction method. postwards the RNA was quantified photometrically with a NanoDrop 1000 PeqLab Erlangen Germany and stored at 80 °C until use. For library preparation an amount of around 2.5 ug of total RNA per sample was processed using Illumina's TruSeqTM RNA Sample Prep Kit Illumina; San Diego; CA USA following the manufacturer's instruction.,Zebrafish Danio rerio were raised under standard conditions.,tissue:skin|age:36 month|treatment:n1|duration:3 weeks,GSM1620980,GSM1620980: skin160 36m control 3w rep1; Danio rerio; RNA Seq,GSM1620980,,1,Total RNA was isolated using QIAzol Qiagen Hilden Germany based on the phenol/chloroform extraction method. postwards the RNA was quantified photometrically with a NanoDrop 1000 PeqLab Erlangen Germany and stored at 80 °C until use. For library preparation an amount of around 2.5 ug of total RNA per sample was processed using Illumina's TruSeqTM RNA Sample Prep Kit Illumina; San Diego; CA USA following the manufacturer's instruction.,GEO Accession:GSM1620980,RNA-Seq,TRANSCRIPTOMIC,cDNA,SINGLE,ILLUMINA,Illumina HiSeq 2000,,SRP055573,,,160_skin.fastq.gz,fastq,1829692650.0,36593853.0,GSM1620980 r1,0:50,A:493906226;C:425214476;G:414775189;T:495470406;N:326353,50,,,,493906226,425214476,414775189,495470406,326353,SRX893434,SRS859533,SRA244883,GEO,Leibniz Institute for Age Research - Fritz Lipmann Institute,1,0.92036,,0.09412,,0.71484,,0.48928,,50,,B,,usable mapping rate,illumina,hiseq_era,unknown,cdna_unspecified,unknown,bulk,unknown,unknown,,Germany,2015-02-27,Adult,Adult,Skin,Surface Structure
38407,SRR1821832,SRX893433,SRS859534,SRP055573,PRJNA276667,RNA seq of zebrafish brain liver and skin during perturbation with rotenone at young and old age,GSE66362,Transcriptome Analysis,Zebrafish of two different age groups 12 month and 36 month were treated with low amounts of rotenone mild stress and compared to untreated zebrafish. Two different durations were used 3 and 8 weeks. Illumina sequencing HiSeq2000 was applied to generate 50bp single end reads. Jena Centre for Systems Biology of Ageing JenAge www.jenage.de Overall design: 68 sample: 3 tissues brain liver skin; 2 age groups 12 month and 36 month; controls and rotenone treated samples; 2 6 biological replicates for each group,,pubmed:27135165,,skin184 12m control 8w rep3,GSM1620979,,source name:total RNA extracted from skin|tissue:skin|age:12 month|treatment:n1|duration:8 weeks,skin184 12m control 8w rep3,FASTQ files were extracted using Illumina Casava software v1.8.2.,total RNA extracted from skin,Tanks with male zebrafish were supplemented with 3.75 nM rotenone or DMSO control for 3 weeks and 8 weeks respectively. 50% tank water was changed twice a week and fresh Rotenone and DMSO was added to the tanks.,Total RNA was isolated using QIAzol Qiagen Hilden Germany based on the phenol/chloroform extraction method. postwards the RNA was quantified photometrically with a NanoDrop 1000 PeqLab Erlangen Germany and stored at 80 °C until use. For library preparation an amount of around 2.5 ug of total RNA per sample was processed using Illumina's TruSeqTM RNA Sample Prep Kit Illumina; San Diego; CA USA following the manufacturer's instruction.,Zebrafish Danio rerio were raised under standard conditions.,tissue:skin|age:12 month|treatment:n1|duration:8 weeks,GSM1620979,GSM1620979: skin184 12m control 8w rep3; Danio rerio; RNA Seq,GSM1620979,,1,Total RNA was isolated using QIAzol Qiagen Hilden Germany based on the phenol/chloroform extraction method. postwards the RNA was quantified photometrically with a NanoDrop 1000 PeqLab Erlangen Germany and stored at 80 °C until use. For library preparation an amount of around 2.5 ug of total RNA per sample was processed using Illumina's TruSeqTM RNA Sample Prep Kit Illumina; San Diego; CA USA following the manufacturer's instruction.,GEO Accession:GSM1620979,RNA-Seq,TRANSCRIPTOMIC,cDNA,SINGLE,ILLUMINA,Illumina HiSeq 2000,,SRP055573,,,184_skin.fastq.gz,fastq,1888865600.0,37777312.0,GSM1620979 r1,0:50,A:510384459;C:436312051;G:428261723;T:512241273;N:1666094,50,,,,510384459,436312051,428261723,512241273,1666094,SRX893433,SRS859534,SRA244883,GEO,Leibniz Institute for Age Research - Fritz Lipmann Institute,1,0.91542,,0.0997,,0.70082,,0.49633,,50,,B,,usable mapping rate,illumina,hiseq_era,unknown,cdna_unspecified,unknown,bulk,unknown,unknown,,Germany,2015-02-27,Adult,Adult,Skin,Surface Structure
38408,SRR1821831,SRX893432,SRS859535,SRP055573,PRJNA276667,RNA seq of zebrafish brain liver and skin during perturbation with rotenone at young and old age,GSE66362,Transcriptome Analysis,Zebrafish of two different age groups 12 month and 36 month were treated with low amounts of rotenone mild stress and compared to untreated zebrafish. Two different durations were used 3 and 8 weeks. Illumina sequencing HiSeq2000 was applied to generate 50bp single end reads. Jena Centre for Systems Biology of Ageing JenAge www.jenage.de Overall design: 68 sample: 3 tissues brain liver skin; 2 age groups 12 month and 36 month; controls and rotenone treated samples; 2 6 biological replicates for each group,,pubmed:27135165,,skin183 12m control 8w rep2,GSM1620978,,source name:total RNA extracted from skin|tissue:skin|age:12 month|treatment:n1|duration:8 weeks,skin183 12m control 8w rep2,FASTQ files were extracted using Illumina Casava software v1.8.2.,total RNA extracted from skin,Tanks with male zebrafish were supplemented with 3.75 nM rotenone or DMSO control for 3 weeks and 8 weeks respectively. 50% tank water was changed twice a week and fresh Rotenone and DMSO was added to the tanks.,Total RNA was isolated using QIAzol Qiagen Hilden Germany based on the phenol/chloroform extraction method. postwards the RNA was quantified photometrically with a NanoDrop 1000 PeqLab Erlangen Germany and stored at 80 °C until use. For library preparation an amount of around 2.5 ug of total RNA per sample was processed using Illumina's TruSeqTM RNA Sample Prep Kit Illumina; San Diego; CA USA following the manufacturer's instruction.,Zebrafish Danio rerio were raised under standard conditions.,tissue:skin|age:12 month|treatment:n1|duration:8 weeks,GSM1620978,GSM1620978: skin183 12m control 8w rep2; Danio rerio; RNA Seq,GSM1620978,,1,Total RNA was isolated using QIAzol Qiagen Hilden Germany based on the phenol/chloroform extraction method. postwards the RNA was quantified photometrically with a NanoDrop 1000 PeqLab Erlangen Germany and stored at 80 °C until use. For library preparation an amount of around 2.5 ug of total RNA per sample was processed using Illumina's TruSeqTM RNA Sample Prep Kit Illumina; San Diego; CA USA following the manufacturer's instruction.,GEO Accession:GSM1620978,RNA-Seq,TRANSCRIPTOMIC,cDNA,SINGLE,ILLUMINA,Illumina HiSeq 2000,,SRP055573,,,183_skin.fastq.gz,fastq,2011969000.0,40239380.0,GSM1620978 r1,0:50,A:541080523;C:469282719;G:455255702;T:544440274;N:1909782,50,,,,541080523,469282719,455255702,544440274,1909782,SRX893432,SRS859535,SRA244883,GEO,Leibniz Institute for Age Research - Fritz Lipmann Institute,1,0.92404,,0.104,,0.70619,,0.47963,,50,,B,,usable mapping rate,illumina,hiseq_era,unknown,cdna_unspecified,unknown,bulk,unknown,unknown,,Germany,2015-02-27,Adult,Adult,Skin,Surface Structure
38409,SRR1821830,SRX893431,SRS859536,SRP055573,PRJNA276667,RNA seq of zebrafish brain liver and skin during perturbation with rotenone at young and old age,GSE66362,Transcriptome Analysis,Zebrafish of two different age groups 12 month and 36 month were treated with low amounts of rotenone mild stress and compared to untreated zebrafish. Two different durations were used 3 and 8 weeks. Illumina sequencing HiSeq2000 was applied to generate 50bp single end reads. Jena Centre for Systems Biology of Ageing JenAge www.jenage.de Overall design: 68 sample: 3 tissues brain liver skin; 2 age groups 12 month and 36 month; controls and rotenone treated samples; 2 6 biological replicates for each group,,pubmed:27135165,,skin182 12m control 8w rep1,GSM1620977,,source name:total RNA extracted from skin|tissue:skin|age:12 month|treatment:n1|duration:8 weeks,skin182 12m control 8w rep1,FASTQ files were extracted using Illumina Casava software v1.8.2.,total RNA extracted from skin,Tanks with male zebrafish were supplemented with 3.75 nM rotenone or DMSO control for 3 weeks and 8 weeks respectively. 50% tank water was changed twice a week and fresh Rotenone and DMSO was added to the tanks.,Total RNA was isolated using QIAzol Qiagen Hilden Germany based on the phenol/chloroform extraction method. postwards the RNA was quantified photometrically with a NanoDrop 1000 PeqLab Erlangen Germany and stored at 80 °C until use. For library preparation an amount of around 2.5 ug of total RNA per sample was processed using Illumina's TruSeqTM RNA Sample Prep Kit Illumina; San Diego; CA USA following the manufacturer's instruction.,Zebrafish Danio rerio were raised under standard conditions.,tissue:skin|age:12 month|treatment:n1|duration:8 weeks,GSM1620977,GSM1620977: skin182 12m control 8w rep1; Danio rerio; RNA Seq,GSM1620977,,1,Total RNA was isolated using QIAzol Qiagen Hilden Germany based on the phenol/chloroform extraction method. postwards the RNA was quantified photometrically with a NanoDrop 1000 PeqLab Erlangen Germany and stored at 80 °C until use. For library preparation an amount of around 2.5 ug of total RNA per sample was processed using Illumina's TruSeqTM RNA Sample Prep Kit Illumina; San Diego; CA USA following the manufacturer's instruction.,GEO Accession:GSM1620977,RNA-Seq,TRANSCRIPTOMIC,cDNA,SINGLE,ILLUMINA,Illumina HiSeq 2000,,SRP055573,,,182_skin.fastq.gz,fastq,1974072600.0,39481452.0,GSM1620977 r1,0:50,A:532294515;C:457485293;G:447416004;T:532212696;N:4664092,50,,,,532294515,457485293,447416004,532212696,4664092,SRX893431,SRS859536,SRA244883,GEO,Leibniz Institute for Age Research - Fritz Lipmann Institute,1,0.91699,,0.10118,,0.71163,,0.49086,,50,,B,,usable mapping rate,illumina,hiseq_era,unknown,cdna_unspecified,unknown,bulk,unknown,unknown,,Germany,2015-02-27,Adult,Adult,Skin,Surface Structure
38410,SRR1821829,SRX893430,SRS859537,SRP055573,PRJNA276667,RNA seq of zebrafish brain liver and skin during perturbation with rotenone at young and old age,GSE66362,Transcriptome Analysis,Zebrafish of two different age groups 12 month and 36 month were treated with low amounts of rotenone mild stress and compared to untreated zebrafish. Two different durations were used 3 and 8 weeks. Illumina sequencing HiSeq2000 was applied to generate 50bp single end reads. Jena Centre for Systems Biology of Ageing JenAge www.jenage.de Overall design: 68 sample: 3 tissues brain liver skin; 2 age groups 12 month and 36 month; controls and rotenone treated samples; 2 6 biological replicates for each group,,pubmed:27135165,,skin159 12m control 3w rep3,GSM1620976,,source name:total RNA extracted from skin|tissue:skin|age:12 month|treatment:n1|duration:3 weeks,skin159 12m control 3w rep3,FASTQ files were extracted using Illumina Casava software v1.8.2.,total RNA extracted from skin,Tanks with male zebrafish were supplemented with 3.75 nM rotenone or DMSO control for 3 weeks and 8 weeks respectively. 50% tank water was changed twice a week and fresh Rotenone and DMSO was added to the tanks.,Total RNA was isolated using QIAzol Qiagen Hilden Germany based on the phenol/chloroform extraction method. postwards the RNA was quantified photometrically with a NanoDrop 1000 PeqLab Erlangen Germany and stored at 80 °C until use. For library preparation an amount of around 2.5 ug of total RNA per sample was processed using Illumina's TruSeqTM RNA Sample Prep Kit Illumina; San Diego; CA USA following the manufacturer's instruction.,Zebrafish Danio rerio were raised under standard conditions.,tissue:skin|age:12 month|treatment:n1|duration:3 weeks,GSM1620976,GSM1620976: skin159 12m control 3w rep3; Danio rerio; RNA Seq,GSM1620976,,1,Total RNA was isolated using QIAzol Qiagen Hilden Germany based on the phenol/chloroform extraction method. postwards the RNA was quantified photometrically with a NanoDrop 1000 PeqLab Erlangen Germany and stored at 80 °C until use. For library preparation an amount of around 2.5 ug of total RNA per sample was processed using Illumina's TruSeqTM RNA Sample Prep Kit Illumina; San Diego; CA USA following the manufacturer's instruction.,GEO Accession:GSM1620976,RNA-Seq,TRANSCRIPTOMIC,cDNA,SINGLE,ILLUMINA,Illumina HiSeq 2000,,SRP055573,,,159_skin.fastq.gz,fastq,1887853800.0,37757076.0,GSM1620976 r1,0:50,A:510759018;C:434865500;G:426519929;T:512499569;N:3209784,50,,,,510759018,434865500,426519929,512499569,3209784,SRX893430,SRS859537,SRA244883,GEO,Leibniz Institute for Age Research - Fritz Lipmann Institute,1,0.91654,,0.1023,,0.70607,,0.49388,,50,,B,,usable mapping rate,illumina,hiseq_era,unknown,cdna_unspecified,unknown,bulk,unknown,unknown,,Germany,2015-02-27,Adult,Adult,Skin,Surface Structure
38411,SRR1821828,SRX893429,SRS859538,SRP055573,PRJNA276667,RNA seq of zebrafish brain liver and skin during perturbation with rotenone at young and old age,GSE66362,Transcriptome Analysis,Zebrafish of two different age groups 12 month and 36 month were treated with low amounts of rotenone mild stress and compared to untreated zebrafish. Two different durations were used 3 and 8 weeks. Illumina sequencing HiSeq2000 was applied to generate 50bp single end reads. Jena Centre for Systems Biology of Ageing JenAge www.jenage.de Overall design: 68 sample: 3 tissues brain liver skin; 2 age groups 12 month and 36 month; controls and rotenone treated samples; 2 6 biological replicates for each group,,pubmed:27135165,,skin158 12m control 3w rep2,GSM1620975,,source name:total RNA extracted from skin|tissue:skin|age:12 month|treatment:n1|duration:3 weeks,skin158 12m control 3w rep2,FASTQ files were extracted using Illumina Casava software v1.8.2.,total RNA extracted from skin,Tanks with male zebrafish were supplemented with 3.75 nM rotenone or DMSO control for 3 weeks and 8 weeks respectively. 50% tank water was changed twice a week and fresh Rotenone and DMSO was added to the tanks.,Total RNA was isolated using QIAzol Qiagen Hilden Germany based on the phenol/chloroform extraction method. postwards the RNA was quantified photometrically with a NanoDrop 1000 PeqLab Erlangen Germany and stored at 80 °C until use. For library preparation an amount of around 2.5 ug of total RNA per sample was processed using Illumina's TruSeqTM RNA Sample Prep Kit Illumina; San Diego; CA USA following the manufacturer's instruction.,Zebrafish Danio rerio were raised under standard conditions.,tissue:skin|age:12 month|treatment:n1|duration:3 weeks,GSM1620975,GSM1620975: skin158 12m control 3w rep2; Danio rerio; RNA Seq,GSM1620975,,1,Total RNA was isolated using QIAzol Qiagen Hilden Germany based on the phenol/chloroform extraction method. postwards the RNA was quantified photometrically with a NanoDrop 1000 PeqLab Erlangen Germany and stored at 80 °C until use. For library preparation an amount of around 2.5 ug of total RNA per sample was processed using Illumina's TruSeqTM RNA Sample Prep Kit Illumina; San Diego; CA USA following the manufacturer's instruction.,GEO Accession:GSM1620975,RNA-Seq,TRANSCRIPTOMIC,cDNA,SINGLE,ILLUMINA,Illumina HiSeq 2000,,SRP055573,,,158_skin.fastq.gz,fastq,1818559300.0,36371186.0,GSM1620975 r1,0:50,A:487547586;C:425039144;G:415674047;T:490148749;N:149774,50,,,,487547586,425039144,415674047,490148749,149774,SRX893429,SRS859538,SRA244883,GEO,Leibniz Institute for Age Research - Fritz Lipmann Institute,1,0.93033,,0.09871,,0.66103,,0.48246,,50,,B,,usable mapping rate,illumina,hiseq_era,unknown,cdna_unspecified,unknown,bulk,unknown,unknown,,Germany,2015-02-27,Adult,Adult,Skin,Surface Structure
38412,SRR1821827,SRX893428,SRS859539,SRP055573,PRJNA276667,RNA seq of zebrafish brain liver and skin during perturbation with rotenone at young and old age,GSE66362,Transcriptome Analysis,Zebrafish of two different age groups 12 month and 36 month were treated with low amounts of rotenone mild stress and compared to untreated zebrafish. Two different durations were used 3 and 8 weeks. Illumina sequencing HiSeq2000 was applied to generate 50bp single end reads. Jena Centre for Systems Biology of Ageing JenAge www.jenage.de Overall design: 68 sample: 3 tissues brain liver skin; 2 age groups 12 month and 36 month; controls and rotenone treated samples; 2 6 biological replicates for each group,,pubmed:27135165,,skin157 12m control 3w rep1,GSM1620974,,source name:total RNA extracted from skin|tissue:skin|age:12 month|treatment:n1|duration:3 weeks,skin157 12m control 3w rep1,FASTQ files were extracted using Illumina Casava software v1.8.2.,total RNA extracted from skin,Tanks with male zebrafish were supplemented with 3.75 nM rotenone or DMSO control for 3 weeks and 8 weeks respectively. 50% tank water was changed twice a week and fresh Rotenone and DMSO was added to the tanks.,Total RNA was isolated using QIAzol Qiagen Hilden Germany based on the phenol/chloroform extraction method. postwards the RNA was quantified photometrically with a NanoDrop 1000 PeqLab Erlangen Germany and stored at 80 °C until use. For library preparation an amount of around 2.5 ug of total RNA per sample was processed using Illumina's TruSeqTM RNA Sample Prep Kit Illumina; San Diego; CA USA following the manufacturer's instruction.,Zebrafish Danio rerio were raised under standard conditions.,tissue:skin|age:12 month|treatment:n1|duration:3 weeks,GSM1620974,GSM1620974: skin157 12m control 3w rep1; Danio rerio; RNA Seq,GSM1620974,,1,Total RNA was isolated using QIAzol Qiagen Hilden Germany based on the phenol/chloroform extraction method. postwards the RNA was quantified photometrically with a NanoDrop 1000 PeqLab Erlangen Germany and stored at 80 °C until use. For library preparation an amount of around 2.5 ug of total RNA per sample was processed using Illumina's TruSeqTM RNA Sample Prep Kit Illumina; San Diego; CA USA following the manufacturer's instruction.,GEO Accession:GSM1620974,RNA-Seq,TRANSCRIPTOMIC,cDNA,SINGLE,ILLUMINA,Illumina HiSeq 2000,,SRP055573,,,157_skin.fastq.gz,fastq,1855321100.0,37106422.0,GSM1620974 r1,0:50,A:495304825;C:434601244;G:425046390;T:498975673;N:1392968,50,,,,495304825,434601244,425046390,498975673,1392968,SRX893428,SRS859539,SRA244883,GEO,Leibniz Institute for Age Research - Fritz Lipmann Institute,1,0.91768,,0.09102,,0.7012,,0.49299,,50,,B,,usable mapping rate,illumina,hiseq_era,unknown,cdna_unspecified,unknown,bulk,unknown,unknown,,Germany,2015-02-27,Adult,Adult,Skin,Surface Structure
39771,SRR2136297,SRX1125768,SRS1017739,SRP061855,PRJNA291531,Identification of qkia/c target genes,GSE71573,Transcriptome Analysis,Quaking are RNA binding proteins which are known to regulate the expression of different genes at the post transcriptional level. Genetic interference with quaking a qkia and quaking c qkic leads to major myofibril defects during zebrafish development without xxx early muscle differentiation. In order to understand how qkia and qkic jointly regulate myofibril formation we performed a comparative analysis of the transcriptome of qkia/qkic qkia mutant injected with qkic morpholino versus control embryos. We show that Quaking activity is required for accumulation of the muscle specific tropomyosin 3 transcript tpm3.1. Whereas interference with tmp3.1 function disrupts myofibril formation reintroducing tpm3.1 transcripts into embryos with reduced Quaking activity can restore structured myofibrils. Thus we identify tropomyosin as an essential component in the process of myofibril formation and as a relay downstream of the regulator proteins Quaking. Overall design: Transcriptome of control versus qkia/qkic embryos at 24 26hpf. Biological triplicate were prepared for both condition 3x2 samples.,,pubmed:28867488,,Qkiac 3,GSM1838798,,tissue:trunk|Stage:embryo 24 26hpf|genotype:qkia / |injection:qkic morpholino,Qkiac 3,Before mapping poly N read tails were trimmed reads ≤40 bases were removed and reads with quality mean ≤30 were discarded. To obtain the counts on the exon features reads were then aligned against the genome using Bowtie version 0.12.9 with arguments n 2 l 34 e 70 k 2 best. To obtain the counts on the gene features reads were then aligned against the genome using STAR version 2.4.0j and Ensembl annotation v78. Alignments from reads matching more than once on the reference genome were removed using Java version of samtools. To compute gene expression Danio rerio Zv9 GFF3 genome annotation version 78 from Ensembl database was used. All overlapping regions between alignments and referenced exons were counted using HTSeq count 0.5.3. To obtain the counts on the exon features we used the bowtie alignments excluding the junction reads. HTSeq count was used with arguments: genomictype=exon attributeid=Name stranded=no overlapmode=union removeambiguouscases=false. To obtain the counts on the gene features we used the STAR alignments including the junction reads. HTSeq count was used with arguments: genomictype=exon stranded=no overlapmode=union removeambiguouscases=false and attributeid=Alias where Alias was the corresponding parent gene ID. The sample counts were normalized using DESeq 1.8.3. Statistical treatments and differential analyses were also performed using DESeq 1.8.3 with arguments: disp.est.method=pooled disp.est.sharing.mode=maximum disp.est.fit.type=parametric Genome build: Danio rerio Zv9 Supplementary files format and content: tab delimited text files include normalized reads counts for each Sample using DESeq 1.8.3 with arguments: disp.est.method=pooled disp.est.sharing.mode=maximum disp.est.fit.type=parametric.,trunk,Zebrafish trunks at 24 26hpf were dissected removal of head and yolk flash frozen on dry ice and stored at 80°C until RNA extraction.,total RNA was extracted using the RNeasy Plus Universal Mini kit Qiagen and treated with Dnase. Messenger polyA+ RNAs were purified from 0.7 µg of total RNA using oligodT. Libraries were prepared using the strand non specific RNA Seq library preparation TruSeq RNA Sample Prep v2 kit Illumina. Libraries were multiplexed by 6 on 2 flowcell lanes. A 50 bp read sequencing was performed on a HiSeq 1500 device Illumina. A mean of 27459238 ± 1611623 million passing Illumina quality filter reads was obtained for each of the 6 samples.,Embryos resulting from crossing between qkia+/ fish were injected at a cell stage with qkic morpholino or control morpholino 0 6pmol. We let them develop until 24 26hpf stage where we could morphologically identify control embryos sibling qkia+/+ or qkia+/ with control morpholino and double qkia/c loss of function embryos qkia / with qkic morpholino.,Stage:embryo 24 26hpf|genotype:qkia / |injection:qkic morpholino,GSM1838798,GSM1838798: Qkiac 3; Danio rerio; RNA Seq,GSM1838798,,1,total RNA was extracted using the RNeasy Plus Universal Mini kit Qiagen and treated with Dnase. Messenger polyA+ RNAs were purified from 0.7 µg of total RNA using oligodT. Libraries were prepared using the strand non specific RNA Seq library preparation TruSeq RNA Sample Prep v2 kit Illumina. Libraries were multiplexed by 6 on 2 flowcell lanes. A 50 bp read sequencing was performed on a HiSeq 1500 device Illumina. A mean of 27459238 ± 1611623 million passing Illumina quality filter reads was obtained for each of the 6 samples.,GEO Accession:GSM1838798,RNA-Seq,TRANSCRIPTOMIC,cDNA,SINGLE,ILLUMINA,Illumina HiSeq 1500,,SRP061855,,,Sample6_CTTGTA.fastq.bz2,fastq,2507001849.0,49156899.0,GSM1838798 r1,0:51,A:683306529;C:570965534;G:570449436;T:679826815;N:2453535,51,,,,683306529,570965534,570449436,679826815,2453535,SRX1125768,SRS1017739,SRA281148,GEO,"Plateforme transcriptome, Biologie, Ecole Normale Supérieure",1,0.92678,,0.08779,,0.72892,,0.48795,,51,,B,,usable mapping rate,illumina,hiseq_era,unknown,poly_a,trueseq,bulk,bulk,bulk,,France,2015-07-30,Pharyngula,Embryo,Trunk,Surface Structure