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
14,DRR334977,DRX323973,DRS217313,DRP008001,PRJDB12578,Allometric scaling of RNA abundance from genes to communities,DRP008001,Other,The metabolic theory of ecology MTE and growth rate hypothesis GRH help explain the mechanistic basis of size allometry and temperature dependence on growth rate and whole body RNA content in organisms. However testing RNA allometric scaling with next generation sequencing is yet to be done. Here we validated the assumptions of GRH and MTE on messenger RNA and ribosome abundance using mock community metatranscriptome analysis. Our findings highlight that fast growing smaller species harbor greater RNA abundance per mass of tissue compared with species having larger body sizes and slower growth rates. We found that genome size and body size impose significant constraints in interspecific RNA abundance scaling while the assumed temperature dependence appeared to be weak. Lastly allometric scaling integration in community level models may extend the use of metatranscriptomics as a reliable tool for estimating ecosystem processes.,,,totalRNA metatranscriptomic sequences from mock communities consist of five model species,rRNA mock community at 28 degrees rep 3,SAMD00422597,,sample name:rRNA mock community 28 degrees rep 3|biological replicate:3|collection date:2021 01 15|dev stage:Adult|technical replicate:3|temp:28|treatment:rRNA,,,,,,,,,NextSeq 2000 sequencing of SAMD00422597,DRX323973,t28 3 tRNA.fastq,1,NEBNext Kit for Illumina,,RNA-Seq,METATRANSCRIPTOMIC,cDNA,SINGLE,ILLUMINA,NextSeq 2000,1010Application ReadForward1,DRP008001,NextSeq 2000 sequencing of SAMD00422597,,,,3791170746.0,37701921.0,DRR334977,0:100.56 1:0,A:967477491;C:926887571;G:898697642;T:998107868;N:174,100,0,,,967477491,926887571,898697642,998107868,174,DRX323973,DRS217313,DRA013226,"SINICA|Machida Laboratory Biodiversity Research Center, Academia Sinica","SINICA|Machida Laboratory Biodiversity Research Center, Academia Sinica",1,0.31527,,0.06446,,0.88844,,0.62118,,101,,B,,usable mapping rate,illumina,nextseq_v2,unknown,random_priming,nebnext,bulk,unknown,unknown,,Taiwan,2021-12-23,Adult,Adult,Undetermined,Undetermined
15,DRR334976,DRX323972,DRS217312,DRP008001,PRJDB12578,Allometric scaling of RNA abundance from genes to communities,DRP008001,Other,The metabolic theory of ecology MTE and growth rate hypothesis GRH help explain the mechanistic basis of size allometry and temperature dependence on growth rate and whole body RNA content in organisms. However testing RNA allometric scaling with next generation sequencing is yet to be done. Here we validated the assumptions of GRH and MTE on messenger RNA and ribosome abundance using mock community metatranscriptome analysis. Our findings highlight that fast growing smaller species harbor greater RNA abundance per mass of tissue compared with species having larger body sizes and slower growth rates. We found that genome size and body size impose significant constraints in interspecific RNA abundance scaling while the assumed temperature dependence appeared to be weak. Lastly allometric scaling integration in community level models may extend the use of metatranscriptomics as a reliable tool for estimating ecosystem processes.,,,totalRNA metatranscriptomic sequences from mock communities consist of five model species,rRNA mock community at 28 degrees rep 2,SAMD00422596,,sample name:rRNA mock community 28 degrees rep 2|biological replicate:3|collection date:2021 01 15|dev stage:Adult|technical replicate:2|temp:28|treatment:rRNA,,,,,,,,,NextSeq 2000 sequencing of SAMD00422596,DRX323972,t28 2 tRNA.fastq,1,NEBNext Kit for Illumina,,RNA-Seq,METATRANSCRIPTOMIC,cDNA,SINGLE,ILLUMINA,NextSeq 2000,1010Application ReadForward1,DRP008001,NextSeq 2000 sequencing of SAMD00422596,,,,2801693695.0,27860658.0,DRR334976,0:100.56 1:0,A:700189496;C:702936549;G:679920984;T:718646067;N:599,100,0,,,700189496,702936549,679920984,718646067,599,DRX323972,DRS217312,DRA013226,"SINICA|Machida Laboratory Biodiversity Research Center, Academia Sinica","SINICA|Machida Laboratory Biodiversity Research Center, Academia Sinica",1,0.43508,,0.08819,,0.85859,,0.69447,,101,,B,,usable mapping rate,illumina,nextseq_v2,unknown,random_priming,nebnext,bulk,unknown,unknown,,Taiwan,2021-12-23,Adult,Adult,Undetermined,Undetermined
16,DRR334975,DRX323971,DRS217311,DRP008001,PRJDB12578,Allometric scaling of RNA abundance from genes to communities,DRP008001,Other,The metabolic theory of ecology MTE and growth rate hypothesis GRH help explain the mechanistic basis of size allometry and temperature dependence on growth rate and whole body RNA content in organisms. However testing RNA allometric scaling with next generation sequencing is yet to be done. Here we validated the assumptions of GRH and MTE on messenger RNA and ribosome abundance using mock community metatranscriptome analysis. Our findings highlight that fast growing smaller species harbor greater RNA abundance per mass of tissue compared with species having larger body sizes and slower growth rates. We found that genome size and body size impose significant constraints in interspecific RNA abundance scaling while the assumed temperature dependence appeared to be weak. Lastly allometric scaling integration in community level models may extend the use of metatranscriptomics as a reliable tool for estimating ecosystem processes.,,,totalRNA metatranscriptomic sequences from mock communities consist of five model species,rRNA mock community at 28 degrees rep 1,SAMD00422595,,sample name:rRNA mock community 28 degrees rep 1|biological replicate:3|collection date:2021 01 15|dev stage:Adult|technical replicate:1|temp:28|treatment:rRNA,,,,,,,,,NextSeq 2000 sequencing of SAMD00422595,DRX323971,t28 1 tRNA.fastq,1,NEBNext Kit for Illumina,,RNA-Seq,METATRANSCRIPTOMIC,cDNA,SINGLE,ILLUMINA,NextSeq 2000,1010Application ReadForward1,DRP008001,NextSeq 2000 sequencing of SAMD00422595,,,,3148691934.0,31307464.0,DRR334975,0:100.57 1:0,A:785000734;C:791315678;G:766594599;T:805780465;N:458,100,0,,,785000734,791315678,766594599,805780465,458,DRX323971,DRS217311,DRA013226,"SINICA|Machida Laboratory Biodiversity Research Center, Academia Sinica","SINICA|Machida Laboratory Biodiversity Research Center, Academia Sinica",1,0.37139,,0.09061,,0.94065,,0.74047,,101,,B,,usable mapping rate,illumina,nextseq_v2,unknown,random_priming,nebnext,bulk,unknown,unknown,,Taiwan,2021-12-23,Adult,Adult,Undetermined,Undetermined
17,DRR334974,DRX323970,DRS217310,DRP008001,PRJDB12578,Allometric scaling of RNA abundance from genes to communities,DRP008001,Other,The metabolic theory of ecology MTE and growth rate hypothesis GRH help explain the mechanistic basis of size allometry and temperature dependence on growth rate and whole body RNA content in organisms. However testing RNA allometric scaling with next generation sequencing is yet to be done. Here we validated the assumptions of GRH and MTE on messenger RNA and ribosome abundance using mock community metatranscriptome analysis. Our findings highlight that fast growing smaller species harbor greater RNA abundance per mass of tissue compared with species having larger body sizes and slower growth rates. We found that genome size and body size impose significant constraints in interspecific RNA abundance scaling while the assumed temperature dependence appeared to be weak. Lastly allometric scaling integration in community level models may extend the use of metatranscriptomics as a reliable tool for estimating ecosystem processes.,,,totalRNA metatranscriptomic sequences from mock communities consist of five model species,rRNA mock community at 19 degrees rep 3,SAMD00422594,,sample name:rRNA mock community 19 degrees rep 3|biological replicate:2|collection date:2021 01 15|dev stage:Adult|technical replicate:3|temp:19|treatment:rRNA,,,,,,,,,NextSeq 2000 sequencing of SAMD00422594,DRX323970,t19 3 tRNA.fastq,1,NEBNext Kit for Illumina,,RNA-Seq,METATRANSCRIPTOMIC,cDNA,SINGLE,ILLUMINA,NextSeq 2000,1010Application ReadForward1,DRP008001,NextSeq 2000 sequencing of SAMD00422594,,,,2856186273.0,28400524.0,DRR334974,0:100.57 1:0,A:695685787;C:733754277;G:715270279;T:711475544;N:386,100,0,,,695685787,733754277,715270279,711475544,386,DRX323970,DRS217310,DRA013226,"SINICA|Machida Laboratory Biodiversity Research Center, Academia Sinica","SINICA|Machida Laboratory Biodiversity Research Center, Academia Sinica",1,0.48152,,0.10933,,0.87105,,0.7287,,101,,B,,usable mapping rate,illumina,nextseq_v2,unknown,random_priming,nebnext,bulk,unknown,unknown,,Taiwan,2021-12-23,Adult,Adult,Undetermined,Undetermined
18,DRR334973,DRX323969,DRS217309,DRP008001,PRJDB12578,Allometric scaling of RNA abundance from genes to communities,DRP008001,Other,The metabolic theory of ecology MTE and growth rate hypothesis GRH help explain the mechanistic basis of size allometry and temperature dependence on growth rate and whole body RNA content in organisms. However testing RNA allometric scaling with next generation sequencing is yet to be done. Here we validated the assumptions of GRH and MTE on messenger RNA and ribosome abundance using mock community metatranscriptome analysis. Our findings highlight that fast growing smaller species harbor greater RNA abundance per mass of tissue compared with species having larger body sizes and slower growth rates. We found that genome size and body size impose significant constraints in interspecific RNA abundance scaling while the assumed temperature dependence appeared to be weak. Lastly allometric scaling integration in community level models may extend the use of metatranscriptomics as a reliable tool for estimating ecosystem processes.,,,totalRNA metatranscriptomic sequences from mock communities consist of five model species,rRNA mock community at 19 degrees rep 2,SAMD00422593,,sample name:rRNA mock community 19 degrees rep 2|biological replicate:2|collection date:2021 01 15|dev stage:Adult|technical replicate:2|temp:19|treatment:rRNA,,,,,,,,,NextSeq 2000 sequencing of SAMD00422593,DRX323969,t19 2 tRNA.fastq,1,NEBNext Kit for Illumina,,RNA-Seq,METATRANSCRIPTOMIC,cDNA,SINGLE,ILLUMINA,NextSeq 2000,1010Application ReadForward1,DRP008001,NextSeq 2000 sequencing of SAMD00422593,,,,3199929804.0,31816971.0,DRR334973,0:100.57 1:0,A:777149590;C:825478743;G:804835148;T:792466124;N:199,100,0,,,777149590,825478743,804835148,792466124,199,DRX323969,DRS217309,DRA013226,"SINICA|Machida Laboratory Biodiversity Research Center, Academia Sinica","SINICA|Machida Laboratory Biodiversity Research Center, Academia Sinica",1,0.4418,,0.10282,,0.89706,,0.74667,,101,,B,,usable mapping rate,illumina,nextseq_v2,unknown,random_priming,nebnext,bulk,unknown,unknown,,Taiwan,2021-12-23,Adult,Adult,Undetermined,Undetermined
19,DRR334972,DRX323968,DRS217308,DRP008001,PRJDB12578,Allometric scaling of RNA abundance from genes to communities,DRP008001,Other,The metabolic theory of ecology MTE and growth rate hypothesis GRH help explain the mechanistic basis of size allometry and temperature dependence on growth rate and whole body RNA content in organisms. However testing RNA allometric scaling with next generation sequencing is yet to be done. Here we validated the assumptions of GRH and MTE on messenger RNA and ribosome abundance using mock community metatranscriptome analysis. Our findings highlight that fast growing smaller species harbor greater RNA abundance per mass of tissue compared with species having larger body sizes and slower growth rates. We found that genome size and body size impose significant constraints in interspecific RNA abundance scaling while the assumed temperature dependence appeared to be weak. Lastly allometric scaling integration in community level models may extend the use of metatranscriptomics as a reliable tool for estimating ecosystem processes.,,,totalRNA metatranscriptomic sequences from mock communities consist of five model species,rRNA mock community at 19 degrees rep 1,SAMD00422592,,sample name:rRNA mock community 19 degrees rep 1|biological replicate:2|collection date:2021 01 15|dev stage:Adult|technical replicate:1|temp:19|treatment:rRNA,,,,,,,,,NextSeq 2000 sequencing of SAMD00422592,DRX323968,t19 1 tRNA.fastq,1,NEBNext Kit for Illumina,,RNA-Seq,METATRANSCRIPTOMIC,cDNA,SINGLE,ILLUMINA,NextSeq 2000,1010Application ReadForward1,DRP008001,NextSeq 2000 sequencing of SAMD00422592,,,,3658675391.0,36374718.0,DRR334972,0:100.58 1:0,A:879342063;C:954687406;G:929537615;T:895107890;N:417,100,0,,,879342063,954687406,929537615,895107890,417,DRX323968,DRS217308,DRA013226,"SINICA|Machida Laboratory Biodiversity Research Center, Academia Sinica","SINICA|Machida Laboratory Biodiversity Research Center, Academia Sinica",1,0.49439,,0.11691,,0.88239,,0.73925,,101,,B,,usable mapping rate,illumina,nextseq_v2,unknown,random_priming,nebnext,bulk,unknown,unknown,,Taiwan,2021-12-23,Adult,Adult,Undetermined,Undetermined
20,DRR334971,DRX323967,DRS217307,DRP008001,PRJDB12578,Allometric scaling of RNA abundance from genes to communities,DRP008001,Other,The metabolic theory of ecology MTE and growth rate hypothesis GRH help explain the mechanistic basis of size allometry and temperature dependence on growth rate and whole body RNA content in organisms. However testing RNA allometric scaling with next generation sequencing is yet to be done. Here we validated the assumptions of GRH and MTE on messenger RNA and ribosome abundance using mock community metatranscriptome analysis. Our findings highlight that fast growing smaller species harbor greater RNA abundance per mass of tissue compared with species having larger body sizes and slower growth rates. We found that genome size and body size impose significant constraints in interspecific RNA abundance scaling while the assumed temperature dependence appeared to be weak. Lastly allometric scaling integration in community level models may extend the use of metatranscriptomics as a reliable tool for estimating ecosystem processes.,,,totalRNA metatranscriptomic sequences from mock communities consist of five model species,rRNA mock community at 10 degrees rep 3,SAMD00422591,,sample name:rRNA mock community 10 degrees rep 3|biological replicate:1|collection date:2021 01 15|dev stage:Adult|technical replicate:3|temp:10|treatment:rRNA,,,,,,,,,NextSeq 2000 sequencing of SAMD00422591,DRX323967,t10 3 tRNA.fastq,1,NEBNext Kit for Illumina,,RNA-Seq,METATRANSCRIPTOMIC,cDNA,SINGLE,ILLUMINA,NextSeq 2000,1010Application ReadForward1,DRP008001,NextSeq 2000 sequencing of SAMD00422591,,,,3017524690.0,30006334.0,DRR334971,0:100.56 1:0,A:771967717;C:738814269;G:712866126;T:793876235;N:343,100,0,,,771967717,738814269,712866126,793876235,343,DRX323967,DRS217307,DRA013226,"SINICA|Machida Laboratory Biodiversity Research Center, Academia Sinica","SINICA|Machida Laboratory Biodiversity Research Center, Academia Sinica",1,0.33157,,0.07363,,0.9093,,0.73422,,100,,B,,usable mapping rate,illumina,nextseq_v2,unknown,random_priming,nebnext,bulk,unknown,unknown,,Taiwan,2021-12-23,Adult,Adult,Undetermined,Undetermined
21,DRR334970,DRX323966,DRS217306,DRP008001,PRJDB12578,Allometric scaling of RNA abundance from genes to communities,DRP008001,Other,The metabolic theory of ecology MTE and growth rate hypothesis GRH help explain the mechanistic basis of size allometry and temperature dependence on growth rate and whole body RNA content in organisms. However testing RNA allometric scaling with next generation sequencing is yet to be done. Here we validated the assumptions of GRH and MTE on messenger RNA and ribosome abundance using mock community metatranscriptome analysis. Our findings highlight that fast growing smaller species harbor greater RNA abundance per mass of tissue compared with species having larger body sizes and slower growth rates. We found that genome size and body size impose significant constraints in interspecific RNA abundance scaling while the assumed temperature dependence appeared to be weak. Lastly allometric scaling integration in community level models may extend the use of metatranscriptomics as a reliable tool for estimating ecosystem processes.,,,totalRNA metatranscriptomic sequences from mock communities consist of five model species,rRNA mock community at 10 degrees rep 2,SAMD00422590,,sample name:rRNA mock community 10 degrees rep 2|biological replicate:1|collection date:2021 01 15|dev stage:Adult|technical replicate:2|temp:10|treatment:rRNA,,,,,,,,,NextSeq 2000 sequencing of SAMD00422590,DRX323966,t10 2 tRNA.fastq,1,NEBNext Kit for Illumina,,RNA-Seq,METATRANSCRIPTOMIC,cDNA,SINGLE,ILLUMINA,NextSeq 2000,1010Application ReadForward1,DRP008001,NextSeq 2000 sequencing of SAMD00422590,,,,3115915184.0,30982336.0,DRR334970,0:100.57 1:0,A:765727966;C:794741415;G:771082024;T:784363609;N:170,100,0,,,765727966,794741415,771082024,784363609,170,DRX323966,DRS217306,DRA013226,"SINICA|Machida Laboratory Biodiversity Research Center, Academia Sinica","SINICA|Machida Laboratory Biodiversity Research Center, Academia Sinica",1,0.45458,,0.10504,,0.89357,,0.749,,100,,B,,usable mapping rate,illumina,nextseq_v2,unknown,random_priming,nebnext,bulk,unknown,unknown,,Taiwan,2021-12-23,Adult,Adult,Undetermined,Undetermined
22,DRR334969,DRX323965,DRS217305,DRP008001,PRJDB12578,Allometric scaling of RNA abundance from genes to communities,DRP008001,Other,The metabolic theory of ecology MTE and growth rate hypothesis GRH help explain the mechanistic basis of size allometry and temperature dependence on growth rate and whole body RNA content in organisms. However testing RNA allometric scaling with next generation sequencing is yet to be done. Here we validated the assumptions of GRH and MTE on messenger RNA and ribosome abundance using mock community metatranscriptome analysis. Our findings highlight that fast growing smaller species harbor greater RNA abundance per mass of tissue compared with species having larger body sizes and slower growth rates. We found that genome size and body size impose significant constraints in interspecific RNA abundance scaling while the assumed temperature dependence appeared to be weak. Lastly allometric scaling integration in community level models may extend the use of metatranscriptomics as a reliable tool for estimating ecosystem processes.,,,totalRNA metatranscriptomic sequences from mock communities consist of five model species,rRNA mock community at 10 degrees rep 1,SAMD00422589,,sample name:rRNA mock community 10 degrees rep 1|biological replicate:1|collection date:2021 01 15|dev stage:Adult|technical replicate:1|temp:10|treatment:rRNA,,,,,,,,,NextSeq 2000 sequencing of SAMD00422589,DRX323965,t10 1 tRNA.fastq,1,NEBNext Kit for Illumina,,RNA-Seq,METATRANSCRIPTOMIC,cDNA,SINGLE,ILLUMINA,NextSeq 2000,1010Application ReadForward1,DRP008001,NextSeq 2000 sequencing of SAMD00422589,,,,3206657309.0,31883532.0,DRR334969,0:100.57 1:0,A:792874386;C:814578518;G:787469614;T:811734581;N:210,100,0,,,792874386,814578518,787469614,811734581,210,DRX323965,DRS217305,DRA013226,"SINICA|Machida Laboratory Biodiversity Research Center, Academia Sinica","SINICA|Machida Laboratory Biodiversity Research Center, Academia Sinica",1,0.40156,,0.09664,,0.92898,,0.74114,,101,,B,,usable mapping rate,illumina,nextseq_v2,unknown,random_priming,nebnext,bulk,unknown,unknown,,Taiwan,2021-12-23,Adult,Adult,Undetermined,Undetermined
23,DRR334968,DRX323964,DRS217304,DRP008001,PRJDB12578,Allometric scaling of RNA abundance from genes to communities,DRP008001,Other,The metabolic theory of ecology MTE and growth rate hypothesis GRH help explain the mechanistic basis of size allometry and temperature dependence on growth rate and whole body RNA content in organisms. However testing RNA allometric scaling with next generation sequencing is yet to be done. Here we validated the assumptions of GRH and MTE on messenger RNA and ribosome abundance using mock community metatranscriptome analysis. Our findings highlight that fast growing smaller species harbor greater RNA abundance per mass of tissue compared with species having larger body sizes and slower growth rates. We found that genome size and body size impose significant constraints in interspecific RNA abundance scaling while the assumed temperature dependence appeared to be weak. Lastly allometric scaling integration in community level models may extend the use of metatranscriptomics as a reliable tool for estimating ecosystem processes.,,,mRNA metatranscriptomic sequences from mock communities consist of five model species,mRNA mock community at 28 degrees rep 3,SAMD00422588,,sample name:mRNA mock community 28 degrees rep 3|biological replicate:3|collection date:2021 01 15|dev stage:Adult|technical replicate:3|temp:28|treatment:mRNA,,,,,,,,,NextSeq 2000 sequencing of SAMD00422588,DRX323964,m28 3 mRNA.fastq,1,NEBNext Kit for Illumina,,RNA-Seq,METATRANSCRIPTOMIC,PolyA,SINGLE,ILLUMINA,NextSeq 2000,1010Application ReadForward1,DRP008001,NextSeq 2000 sequencing of SAMD00422588,,,,3157078356.0,31416275.0,DRR334968,0:100.49 1:0,A:816263259;C:752748024;G:759884392;T:828182261;N:420,100,0,,,816263259,752748024,759884392,828182261,420,DRX323964,DRS217304,DRA013226,"SINICA|Machida Laboratory Biodiversity Research Center, Academia Sinica","SINICA|Machida Laboratory Biodiversity Research Center, Academia Sinica",1,0.64888,,0.01832,,0.73996,,0.46811,,99,,B,,usable mapping rate,illumina,nextseq_v2,unknown,poly_a,nebnext,bulk,unknown,unknown,,Taiwan,2021-12-23,Adult,Adult,Undetermined,Undetermined
24,DRR334967,DRX323963,DRS217303,DRP008001,PRJDB12578,Allometric scaling of RNA abundance from genes to communities,DRP008001,Other,The metabolic theory of ecology MTE and growth rate hypothesis GRH help explain the mechanistic basis of size allometry and temperature dependence on growth rate and whole body RNA content in organisms. However testing RNA allometric scaling with next generation sequencing is yet to be done. Here we validated the assumptions of GRH and MTE on messenger RNA and ribosome abundance using mock community metatranscriptome analysis. Our findings highlight that fast growing smaller species harbor greater RNA abundance per mass of tissue compared with species having larger body sizes and slower growth rates. We found that genome size and body size impose significant constraints in interspecific RNA abundance scaling while the assumed temperature dependence appeared to be weak. Lastly allometric scaling integration in community level models may extend the use of metatranscriptomics as a reliable tool for estimating ecosystem processes.,,,mRNA metatranscriptomic sequences from mock communities consist of five model species,mRNA mock community at 28 degrees rep 2,SAMD00422587,,sample name:mRNA mock community 28 degrees rep 2|biological replicate:3|collection date:2021 01 15|dev stage:Adult|technical replicate:2|temp:28|treatment:mRNA,,,,,,,,,NextSeq 2000 sequencing of SAMD00422587,DRX323963,m28 2 mRNA.fastq,1,NEBNext Kit for Illumina,,RNA-Seq,METATRANSCRIPTOMIC,PolyA,SINGLE,ILLUMINA,NextSeq 2000,1010Application ReadForward1,DRP008001,NextSeq 2000 sequencing of SAMD00422587,,,,3155807651.0,31404635.0,DRR334967,0:100.49 1:0,A:819014350;C:749873295;G:756284406;T:830635394;N:206,100,0,,,819014350,749873295,756284406,830635394,206,DRX323963,DRS217303,DRA013226,"SINICA|Machida Laboratory Biodiversity Research Center, Academia Sinica","SINICA|Machida Laboratory Biodiversity Research Center, Academia Sinica",1,0.76742,,0.02238,,0.72427,,0.47376,,101,,B,,usable mapping rate,illumina,nextseq_v2,unknown,poly_a,nebnext,bulk,unknown,unknown,,Taiwan,2021-12-23,Adult,Adult,Undetermined,Undetermined
25,DRR334966,DRX323962,DRS217302,DRP008001,PRJDB12578,Allometric scaling of RNA abundance from genes to communities,DRP008001,Other,The metabolic theory of ecology MTE and growth rate hypothesis GRH help explain the mechanistic basis of size allometry and temperature dependence on growth rate and whole body RNA content in organisms. However testing RNA allometric scaling with next generation sequencing is yet to be done. Here we validated the assumptions of GRH and MTE on messenger RNA and ribosome abundance using mock community metatranscriptome analysis. Our findings highlight that fast growing smaller species harbor greater RNA abundance per mass of tissue compared with species having larger body sizes and slower growth rates. We found that genome size and body size impose significant constraints in interspecific RNA abundance scaling while the assumed temperature dependence appeared to be weak. Lastly allometric scaling integration in community level models may extend the use of metatranscriptomics as a reliable tool for estimating ecosystem processes.,,,mRNA metatranscriptomic sequences from mock communities consist of five model species,mRNA mock community at 28 degrees rep 1,SAMD00422586,,sample name:mRNA mock community 28 degrees rep 1|biological replicate:3|collection date:2021 01 15|dev stage:Adult|technical replicate:1|temp:28|treatment:mRNA,,,,,,,,,NextSeq 2000 sequencing of SAMD00422586,DRX323962,m28 1 mRNA.fastq,1,NEBNext Kit for Illumina,,RNA-Seq,METATRANSCRIPTOMIC,PolyA,SINGLE,ILLUMINA,NextSeq 2000,1010Application ReadForward1,DRP008001,NextSeq 2000 sequencing of SAMD00422586,,,,2589772286.0,25765782.0,DRR334966,0:100.51 1:0,A:679223577;C:610675892;G:617869465;T:682003195;N:157,100,0,,,679223577,610675892,617869465,682003195,157,DRX323962,DRS217302,DRA013226,"SINICA|Machida Laboratory Biodiversity Research Center, Academia Sinica","SINICA|Machida Laboratory Biodiversity Research Center, Academia Sinica",1,0.42984,,0.03367,,0.73555,,0.49223,,100,,B,,usable mapping rate,illumina,nextseq_v2,unknown,poly_a,nebnext,bulk,unknown,unknown,,Taiwan,2021-12-23,Adult,Adult,Undetermined,Undetermined
26,DRR334965,DRX323961,DRS217318,DRP008001,PRJDB12578,Allometric scaling of RNA abundance from genes to communities,DRP008001,Other,The metabolic theory of ecology MTE and growth rate hypothesis GRH help explain the mechanistic basis of size allometry and temperature dependence on growth rate and whole body RNA content in organisms. However testing RNA allometric scaling with next generation sequencing is yet to be done. Here we validated the assumptions of GRH and MTE on messenger RNA and ribosome abundance using mock community metatranscriptome analysis. Our findings highlight that fast growing smaller species harbor greater RNA abundance per mass of tissue compared with species having larger body sizes and slower growth rates. We found that genome size and body size impose significant constraints in interspecific RNA abundance scaling while the assumed temperature dependence appeared to be weak. Lastly allometric scaling integration in community level models may extend the use of metatranscriptomics as a reliable tool for estimating ecosystem processes.,,,mRNA metatranscriptomic sequences from mock communities consist of five model species,mRNA mock community at 19 degrees rep 3,SAMD00422602,,sample name:mRNA mock community 19 degrees rep 3|biological replicate:2|collection date:2021 01 15|dev stage:Adult|technical replicate:3|temp:19|treatment:mRNA,,,,,,,,,NextSeq 2000 sequencing of SAMD00422602,DRX323961,m19 3 mRNA.fastq,1,NEBNext Kit for Illumina,,RNA-Seq,METATRANSCRIPTOMIC,PolyA,SINGLE,ILLUMINA,NextSeq 2000,1010Application ReadForward1,DRP008001,NextSeq 2000 sequencing of SAMD00422602,,,,3124746628.0,31095367.0,DRR334965,0:100.49 1:0,A:821891547;C:734660854;G:739230475;T:828963220;N:532,100,0,,,821891547,734660854,739230475,828963220,532,DRX323961,DRS217318,DRA013226,"SINICA|Machida Laboratory Biodiversity Research Center, Academia Sinica","SINICA|Machida Laboratory Biodiversity Research Center, Academia Sinica",1,0.72881,,0.03264,,0.69449,,0.47416,,99,,B,,usable mapping rate,illumina,nextseq_v2,unknown,poly_a,nebnext,bulk,unknown,unknown,,Taiwan,2021-12-23,Adult,Adult,Undetermined,Undetermined
27,DRR334964,DRX323960,DRS217317,DRP008001,PRJDB12578,Allometric scaling of RNA abundance from genes to communities,DRP008001,Other,The metabolic theory of ecology MTE and growth rate hypothesis GRH help explain the mechanistic basis of size allometry and temperature dependence on growth rate and whole body RNA content in organisms. However testing RNA allometric scaling with next generation sequencing is yet to be done. Here we validated the assumptions of GRH and MTE on messenger RNA and ribosome abundance using mock community metatranscriptome analysis. Our findings highlight that fast growing smaller species harbor greater RNA abundance per mass of tissue compared with species having larger body sizes and slower growth rates. We found that genome size and body size impose significant constraints in interspecific RNA abundance scaling while the assumed temperature dependence appeared to be weak. Lastly allometric scaling integration in community level models may extend the use of metatranscriptomics as a reliable tool for estimating ecosystem processes.,,,mRNA metatranscriptomic sequences from mock communities consist of five model species,mRNA mock community at 19 degrees rep 2,SAMD00422601,,sample name:mRNA mock community 19 degrees rep 2|biological replicate:2|collection date:2021 01 15|dev stage:Adult|technical replicate:2|temp:19|treatment:mRNA,,,,,,,,,NextSeq 2000 sequencing of SAMD00422601,DRX323960,m19 2 mRNA.fastq,1,NEBNext Kit for Illumina,,RNA-Seq,METATRANSCRIPTOMIC,PolyA,SINGLE,ILLUMINA,NextSeq 2000,1010Application ReadForward1,DRP008001,NextSeq 2000 sequencing of SAMD00422601,,,,3171661466.0,31561473.0,DRR334964,0:100.49 1:0,A:836793307;C:742872021;G:750053514;T:841942389;N:235,100,0,,,836793307,742872021,750053514,841942389,235,DRX323960,DRS217317,DRA013226,"SINICA|Machida Laboratory Biodiversity Research Center, Academia Sinica","SINICA|Machida Laboratory Biodiversity Research Center, Academia Sinica",1,0.63153,,0.03639,,0.69027,,0.48494,,101,,B,,usable mapping rate,illumina,nextseq_v2,unknown,poly_a,nebnext,bulk,unknown,unknown,,Taiwan,2021-12-23,Adult,Adult,Undetermined,Undetermined
28,DRR334963,DRX323959,DRS217316,DRP008001,PRJDB12578,Allometric scaling of RNA abundance from genes to communities,DRP008001,Other,The metabolic theory of ecology MTE and growth rate hypothesis GRH help explain the mechanistic basis of size allometry and temperature dependence on growth rate and whole body RNA content in organisms. However testing RNA allometric scaling with next generation sequencing is yet to be done. Here we validated the assumptions of GRH and MTE on messenger RNA and ribosome abundance using mock community metatranscriptome analysis. Our findings highlight that fast growing smaller species harbor greater RNA abundance per mass of tissue compared with species having larger body sizes and slower growth rates. We found that genome size and body size impose significant constraints in interspecific RNA abundance scaling while the assumed temperature dependence appeared to be weak. Lastly allometric scaling integration in community level models may extend the use of metatranscriptomics as a reliable tool for estimating ecosystem processes.,,,mRNA metatranscriptomic sequences from mock communities consist of five model species,mRNA mock community at 19 degrees rep 1,SAMD00422600,,sample name:mRNA mock community 19 degrees rep 1|biological replicate:2|collection date:2021 01 15|dev stage:Adult|technical replicate:1|temp:19|treatment:mRNA,,,,,,,,,NextSeq 2000 sequencing of SAMD00422600,DRX323959,m19 1 mRNA.fastq,1,NEBNext Kit for Illumina,,RNA-Seq,METATRANSCRIPTOMIC,PolyA,SINGLE,ILLUMINA,NextSeq 2000,1010Application ReadForward1,DRP008001,NextSeq 2000 sequencing of SAMD00422600,,,,2916453082.0,29023768.0,DRR334963,0:100.48 1:0,A:761416880;C:692014182;G:696272089;T:766749729;N:202,100,0,,,761416880,692014182,696272089,766749729,202,DRX323959,DRS217316,DRA013226,"SINICA|Machida Laboratory Biodiversity Research Center, Academia Sinica","SINICA|Machida Laboratory Biodiversity Research Center, Academia Sinica",1,0.71651,,0.03406,,0.68696,,0.47496,,101,,B,,usable mapping rate,illumina,nextseq_v2,unknown,poly_a,nebnext,bulk,unknown,unknown,,Taiwan,2021-12-23,Adult,Adult,Undetermined,Undetermined
29,DRR334962,DRX323958,DRS217315,DRP008001,PRJDB12578,Allometric scaling of RNA abundance from genes to communities,DRP008001,Other,The metabolic theory of ecology MTE and growth rate hypothesis GRH help explain the mechanistic basis of size allometry and temperature dependence on growth rate and whole body RNA content in organisms. However testing RNA allometric scaling with next generation sequencing is yet to be done. Here we validated the assumptions of GRH and MTE on messenger RNA and ribosome abundance using mock community metatranscriptome analysis. Our findings highlight that fast growing smaller species harbor greater RNA abundance per mass of tissue compared with species having larger body sizes and slower growth rates. We found that genome size and body size impose significant constraints in interspecific RNA abundance scaling while the assumed temperature dependence appeared to be weak. Lastly allometric scaling integration in community level models may extend the use of metatranscriptomics as a reliable tool for estimating ecosystem processes.,,,mRNA metatranscriptomic sequences from mock communities consist of five model species,mRNA mock community at 10 degrees rep 3,SAMD00422599,,sample name:mRNA mock community 10 degrees rep 3|biological replicate:1|collection date:2021 01 15|dev stage:Adult|technical replicate:3|temp:10|treatment:mRNA,,,,,,,,,NextSeq 2000 sequencing of SAMD00422599,DRX323958,m10 3 mRNA.fastq,1,NEBNext Kit for Illumina,,RNA-Seq,METATRANSCRIPTOMIC,PolyA,SINGLE,ILLUMINA,NextSeq 2000,1010Application ReadForward1,DRP008001,NextSeq 2000 sequencing of SAMD00422599,,,,2600103192.0,25872833.0,DRR334962,0:100.50 1:0,A:668944597;C:625686885;G:631010166;T:674461210;N:334,100,0,,,668944597,625686885,631010166,674461210,334,DRX323958,DRS217315,DRA013226,"SINICA|Machida Laboratory Biodiversity Research Center, Academia Sinica","SINICA|Machida Laboratory Biodiversity Research Center, Academia Sinica",1,0.57077,,0.02949,,0.71918,,0.47633,,101,,B,,usable mapping rate,illumina,nextseq_v2,unknown,poly_a,nebnext,bulk,unknown,unknown,,Taiwan,2021-12-23,Adult,Adult,Undetermined,Undetermined
30,DRR334961,DRX323957,DRS217314,DRP008001,PRJDB12578,Allometric scaling of RNA abundance from genes to communities,DRP008001,Other,The metabolic theory of ecology MTE and growth rate hypothesis GRH help explain the mechanistic basis of size allometry and temperature dependence on growth rate and whole body RNA content in organisms. However testing RNA allometric scaling with next generation sequencing is yet to be done. Here we validated the assumptions of GRH and MTE on messenger RNA and ribosome abundance using mock community metatranscriptome analysis. Our findings highlight that fast growing smaller species harbor greater RNA abundance per mass of tissue compared with species having larger body sizes and slower growth rates. We found that genome size and body size impose significant constraints in interspecific RNA abundance scaling while the assumed temperature dependence appeared to be weak. Lastly allometric scaling integration in community level models may extend the use of metatranscriptomics as a reliable tool for estimating ecosystem processes.,,,mRNA metatranscriptomic sequences from mock communities consist of five model species,mRNA mock community at 10 degrees rep 2,SAMD00422598,,sample name:mRNA mock community 10 degrees rep 2|biological replicate:1|collection date:2021 01 15|dev stage:Adult|technical replicate:2|temp:10|treatment:mRNA,,,,,,,,,NextSeq 2000 sequencing of SAMD00422598,DRX323957,m10 2 mRNA.fastq,1,NEBNext Kit for Illumina,,RNA-Seq,METATRANSCRIPTOMIC,PolyA,SINGLE,ILLUMINA,NextSeq 2000,1010Application ReadForward1,DRP008001,NextSeq 2000 sequencing of SAMD00422598,,,,2608660833.0,25958804.0,DRR334961,0:100.49 1:0,A:683370128;C:615324906;G:621209484;T:688756167;N:148,100,0,,,683370128,615324906,621209484,688756167,148,DRX323957,DRS217314,DRA013226,"SINICA|Machida Laboratory Biodiversity Research Center, Academia Sinica","SINICA|Machida Laboratory Biodiversity Research Center, Academia Sinica",1,0.63764,,0.04316,,0.69656,,0.48579,,101,,B,,usable mapping rate,illumina,nextseq_v2,unknown,poly_a,nebnext,bulk,unknown,unknown,,Taiwan,2021-12-23,Adult,Adult,Undetermined,Undetermined
31,DRR334960,DRX323956,DRS217301,DRP008001,PRJDB12578,Allometric scaling of RNA abundance from genes to communities,DRP008001,Other,The metabolic theory of ecology MTE and growth rate hypothesis GRH help explain the mechanistic basis of size allometry and temperature dependence on growth rate and whole body RNA content in organisms. However testing RNA allometric scaling with next generation sequencing is yet to be done. Here we validated the assumptions of GRH and MTE on messenger RNA and ribosome abundance using mock community metatranscriptome analysis. Our findings highlight that fast growing smaller species harbor greater RNA abundance per mass of tissue compared with species having larger body sizes and slower growth rates. We found that genome size and body size impose significant constraints in interspecific RNA abundance scaling while the assumed temperature dependence appeared to be weak. Lastly allometric scaling integration in community level models may extend the use of metatranscriptomics as a reliable tool for estimating ecosystem processes.,,,mRNA metatranscriptomic sequences from mock communities consist of five model species,mRNA mock community at 10 degrees rep 1,SAMD00422585,,sample name:mRNA mock community 10 degrees rep 1|biological replicate:1|collection date:2021 01 15|dev stage:Adult|technical replicate:1|temp:10|treatment:mRNA,,,,,,,,,NextSeq 2000 sequencing of SAMD00422585,DRX323956,m10 1 mRNA.fastq,1,NEBNext Kit for Illumina,,RNA-Seq,METATRANSCRIPTOMIC,PolyA,SINGLE,ILLUMINA,NextSeq 2000,1010Application ReadForward1,DRP008001,NextSeq 2000 sequencing of SAMD00422585,,,,2879915507.0,28651533.0,DRR334960,0:100.52 1:0,A:761972464;C:675761096;G:678969165;T:763212637;N:145,100,0,,,761972464,675761096,678969165,763212637,145,DRX323956,DRS217301,DRA013226,"SINICA|Machida Laboratory Biodiversity Research Center, Academia Sinica","SINICA|Machida Laboratory Biodiversity Research Center, Academia Sinica",1,0.47851,,0.05671,,0.72622,,0.49269,,101,,B,,usable mapping rate,illumina,nextseq_v2,unknown,poly_a,nebnext,bulk,unknown,unknown,,Taiwan,2021-12-23,Adult,Adult,Undetermined,Undetermined
9719,ERR3842000,ERX3854562,ERS4268611,ERP116106,PRJEB33323,Deconstructing the individual steps of vertebrate translation initiation,ena-STUDY-Computational Biology Unit-03-07-2019-10:11:34:314-422,Other,In eukaryotes the number of ribosomes synthesizing a given protein depends on how many are recruited to its mRNA their success in navigating its five prime untranslated region UTR and whether they recognize its start codon. Initiation of translation is a rate limiting step in protein synthesis and key to gene expression control 1 but despite this centrality it remains poorly understood 2 3. Here we introduce ribosome complex profiling RCP seq to capture the transcriptome wide occupancy of scanning initiating elongating and terminating ribosome complexes in a higher eukaryote. We track scanning and elongating ribosomes across all five prime UTRs in zebrafish which enable us to assess the individual regulatory contributions from the three stages of initiation: ribosome recruitment scanning of the five prime UTR and recognition of the start codon. Our data sheds light on small subunit recruitment to mRNAs presenting evidence for the threading model and demonstrates that sequence features regulate this recruitment. We estimate the processivity of scanning ribosomes as they traverse the five prime UTR and show that the repressive effects of upstream open reading frames depend on the efficiency of both translation initiation and termination. Finally we determine the optimal initiation contexts by directly estimating the conversion of scanning to elongating ribosomes and demonstrate specific regulation of translation initiation at the endoplasmic reticulum. Our results open for the possibility of deconvoluting translation initiation into separate stages and provides the first view of global occupancy of ribosomal small subunits in a vertebrate.,ENA FIRST PUBLIC:2020 03 27|ENA LAST UPDATE:2019 07 03,,,Shield 4Ei,SAMEA6504165,Computational Biology Unit,ENA FIRST PUBLIC:2020 03 27T17:05:06Z|ENA LAST UPDATE:2020 01 27T16:04:35Z|External Id:SAMEA6504165|INSDC center name:Computational Biology Unit|INSDC first public:2020 03 27T17:05:06Z|INSDC last update:2020 01 27T16:04:35Z|INSDC status:public|Submitter Id:Shield 4Ei|common name:zebrafish|sample name:Shield 4Ei|scientific name:Danio rerio,,,,,,,,,NextSeq 500 sequencing,ena EXPERIMENT Computational Biology Unit 27 01 2020 16:24:36:406 10,Shield 4Ei,OTHER,RNA Seq,,RNA-Seq,TRANSCRIPTOMIC,other,SINGLE,ILLUMINA,NextSeq 500,,ERP116106,NextSeq 500 sequencing,ENA FIRST PUBLIC:2020 03 27|ENA LAST UPDATE:2020 02 14,,,1435748376.0,18891426.0,ena RUN Computational Biology Unit 27 01 2020 16:24:36:406 10,0:76,A:489056518;C:372290023;G:393663734;T:180723629;N:14472,76,,,,489056518,372290023,393663734,180723629,14472,ERX3854562,ERS4268611,ERA2359305,Computational Biology Unit|European Nucleotide Archive,Computational Biology Unit,1,0.11942,,0.03394,,0.98971,,0.62271,,76,,B,,usable mapping rate,illumina,nextseq,unknown,other,unknown,bulk,unknown,unknown,,Unknown,2019-07-03,Gastrula,Embryo,Undetermined,Embryo Imprecise
9720,ERR3841999,ERX3854561,ERS3556006,ERP116106,PRJEB33323,Deconstructing the individual steps of vertebrate translation initiation,ena-STUDY-Computational Biology Unit-03-07-2019-10:11:34:314-422,Other,In eukaryotes the number of ribosomes synthesizing a given protein depends on how many are recruited to its mRNA their success in navigating its five prime untranslated region UTR and whether they recognize its start codon. Initiation of translation is a rate limiting step in protein synthesis and key to gene expression control 1 but despite this centrality it remains poorly understood 2 3. Here we introduce ribosome complex profiling RCP seq to capture the transcriptome wide occupancy of scanning initiating elongating and terminating ribosome complexes in a higher eukaryote. We track scanning and elongating ribosomes across all five prime UTRs in zebrafish which enable us to assess the individual regulatory contributions from the three stages of initiation: ribosome recruitment scanning of the five prime UTR and recognition of the start codon. Our data sheds light on small subunit recruitment to mRNAs presenting evidence for the threading model and demonstrates that sequence features regulate this recruitment. We estimate the processivity of scanning ribosomes as they traverse the five prime UTR and show that the repressive effects of upstream open reading frames depend on the efficiency of both translation initiation and termination. Finally we determine the optimal initiation contexts by directly estimating the conversion of scanning to elongating ribosomes and demonstrate specific regulation of translation initiation at the endoplasmic reticulum. Our results open for the possibility of deconvoluting translation initiation into separate stages and provides the first view of global occupancy of ribosomal small subunits in a vertebrate.,ENA FIRST PUBLIC:2020 03 27|ENA LAST UPDATE:2019 07 03,,,Shield 3,SAMEA5752547,Computational Biology Unit,ENA FIRST PUBLIC:2020 03 27T17:04:59Z|ENA LAST UPDATE:2019 07 03T10:01:14Z|External Id:SAMEA5752547|INSDC center name:Computational Biology Unit|INSDC first public:2020 03 27T17:04:59Z|INSDC last update:2019 07 03T10:01:14Z|INSDC status:public|Submitter Id:10|common name:zebrafish|dev stage:Shield|sample name:10|scientific name:Danio rerio,,,,,,,,,NextSeq 500 sequencing,ena EXPERIMENT Computational Biology Unit 27 01 2020 16:24:36:406 9,Shield 3,OTHER,RNA Seq,,RNA-Seq,TRANSCRIPTOMIC,other,SINGLE,ILLUMINA,NextSeq 500,,ERP116106,NextSeq 500 sequencing,ENA FIRST PUBLIC:2020 03 27|ENA LAST UPDATE:2020 02 14,,,1168482976.0,15374776.0,ena RUN Computational Biology Unit 27 01 2020 16:24:36:406 9,0:76,A:516070340;C:238363428;G:268806793;T:145231087;N:11328,76,,,,516070340,238363428,268806793,145231087,11328,ERX3854561,ERS3556006,ERA2359305,Computational Biology Unit|European Nucleotide Archive,Computational Biology Unit,1,0.22586,,0.10275,,0.97281,,0.47683,,76,,B,,usable mapping rate,illumina,nextseq,unknown,other,unknown,bulk,unknown,unknown,,Unknown,2019-07-03,Gastrula,Embryo,Undetermined,Embryo Imprecise
9721,ERR3841998,ERX3854560,ERS3556007,ERP116106,PRJEB33323,Deconstructing the individual steps of vertebrate translation initiation,ena-STUDY-Computational Biology Unit-03-07-2019-10:11:34:314-422,Other,In eukaryotes the number of ribosomes synthesizing a given protein depends on how many are recruited to its mRNA their success in navigating its five prime untranslated region UTR and whether they recognize its start codon. Initiation of translation is a rate limiting step in protein synthesis and key to gene expression control 1 but despite this centrality it remains poorly understood 2 3. Here we introduce ribosome complex profiling RCP seq to capture the transcriptome wide occupancy of scanning initiating elongating and terminating ribosome complexes in a higher eukaryote. We track scanning and elongating ribosomes across all five prime UTRs in zebrafish which enable us to assess the individual regulatory contributions from the three stages of initiation: ribosome recruitment scanning of the five prime UTR and recognition of the start codon. Our data sheds light on small subunit recruitment to mRNAs presenting evidence for the threading model and demonstrates that sequence features regulate this recruitment. We estimate the processivity of scanning ribosomes as they traverse the five prime UTR and show that the repressive effects of upstream open reading frames depend on the efficiency of both translation initiation and termination. Finally we determine the optimal initiation contexts by directly estimating the conversion of scanning to elongating ribosomes and demonstrate specific regulation of translation initiation at the endoplasmic reticulum. Our results open for the possibility of deconvoluting translation initiation into separate stages and provides the first view of global occupancy of ribosomal small subunits in a vertebrate.,ENA FIRST PUBLIC:2020 03 27|ENA LAST UPDATE:2019 07 03,,,Shield 4150NT,SAMEA5752548,Computational Biology Unit,ENA FIRST PUBLIC:2020 03 27T17:04:59Z|ENA LAST UPDATE:2019 07 03T10:01:14Z|External Id:SAMEA5752548|INSDC center name:Computational Biology Unit|INSDC first public:2020 03 27T17:04:59Z|INSDC last update:2019 07 03T10:01:14Z|INSDC status:public|Submitter Id:11|common name:zebrafish|dev stage:Shield|sample name:11|scientific name:Danio rerio,,,,,,,,,NextSeq 500 sequencing,ena EXPERIMENT Computational Biology Unit 27 01 2020 16:24:36:406 8,Shield 150NT,OTHER,RNA Seq,,RNA-Seq,TRANSCRIPTOMIC,other,SINGLE,ILLUMINA,NextSeq 500,,ERP116106,NextSeq 500 sequencing,ENA FIRST PUBLIC:2020 03 27|ENA LAST UPDATE:2020 02 14,,,1188343980.0,15636105.0,ena RUN Computational Biology Unit 27 01 2020 16:24:36:406 8,0:76,A:580658556;C:223116826;G:260847322;T:123709681;N:11595,76,,,,580658556,223116826,260847322,123709681,11595,ERX3854560,ERS3556007,ERA2359305,Computational Biology Unit|European Nucleotide Archive,Computational Biology Unit,1,0.27037,,0.13972,,0.97392,,0.39459,,76,,B,,usable mapping rate,illumina,nextseq,unknown,other,unknown,bulk,unknown,unknown,,Unknown,2019-07-03,Gastrula,Embryo,Undetermined,Embryo Imprecise
9722,ERR3841997,ERX3854559,ERS3556004,ERP116106,PRJEB33323,Deconstructing the individual steps of vertebrate translation initiation,ena-STUDY-Computational Biology Unit-03-07-2019-10:11:34:314-422,Other,In eukaryotes the number of ribosomes synthesizing a given protein depends on how many are recruited to its mRNA their success in navigating its five prime untranslated region UTR and whether they recognize its start codon. Initiation of translation is a rate limiting step in protein synthesis and key to gene expression control 1 but despite this centrality it remains poorly understood 2 3. Here we introduce ribosome complex profiling RCP seq to capture the transcriptome wide occupancy of scanning initiating elongating and terminating ribosome complexes in a higher eukaryote. We track scanning and elongating ribosomes across all five prime UTRs in zebrafish which enable us to assess the individual regulatory contributions from the three stages of initiation: ribosome recruitment scanning of the five prime UTR and recognition of the start codon. Our data sheds light on small subunit recruitment to mRNAs presenting evidence for the threading model and demonstrates that sequence features regulate this recruitment. We estimate the processivity of scanning ribosomes as they traverse the five prime UTR and show that the repressive effects of upstream open reading frames depend on the efficiency of both translation initiation and termination. Finally we determine the optimal initiation contexts by directly estimating the conversion of scanning to elongating ribosomes and demonstrate specific regulation of translation initiation at the endoplasmic reticulum. Our results open for the possibility of deconvoluting translation initiation into separate stages and provides the first view of global occupancy of ribosomal small subunits in a vertebrate.,ENA FIRST PUBLIC:2020 03 27|ENA LAST UPDATE:2019 07 03,,,Shield 1,SAMEA5752545,Computational Biology Unit,ENA FIRST PUBLIC:2020 03 27T17:04:59Z|ENA LAST UPDATE:2019 07 03T10:01:14Z|External Id:SAMEA5752545|INSDC center name:Computational Biology Unit|INSDC first public:2020 03 27T17:04:59Z|INSDC last update:2019 07 03T10:01:14Z|INSDC status:public|Submitter Id:8|common name:zebrafish|dev stage:Shield|sample name:8|scientific name:Danio rerio,,,,,,,,,NextSeq 500 sequencing,ena EXPERIMENT Computational Biology Unit 27 01 2020 16:24:36:406 7,Shield 1,OTHER,RNA Seq,,RNA-Seq,TRANSCRIPTOMIC,other,SINGLE,ILLUMINA,NextSeq 500,,ERP116106,NextSeq 500 sequencing,ENA FIRST PUBLIC:2020 03 27|ENA LAST UPDATE:2020 02 14,,,1278891444.0,16827519.0,ena RUN Computational Biology Unit 27 01 2020 16:24:36:406 7,0:76,A:571738369;C:256385478;G:295145281;T:155610082;N:12234,76,,,,571738369,256385478,295145281,155610082,12234,ERX3854559,ERS3556004,ERA2359305,Computational Biology Unit|European Nucleotide Archive,Computational Biology Unit,1,0.23116,,0.11137,,0.97932,,0.45978,,76,,B,,usable mapping rate,illumina,nextseq,unknown,other,unknown,bulk,unknown,unknown,,Unknown,2019-07-03,Gastrula,Embryo,Undetermined,Embryo Imprecise
9723,ERR3841996,ERX3854558,ERS3556001,ERP116106,PRJEB33323,Deconstructing the individual steps of vertebrate translation initiation,ena-STUDY-Computational Biology Unit-03-07-2019-10:11:34:314-422,Other,In eukaryotes the number of ribosomes synthesizing a given protein depends on how many are recruited to its mRNA their success in navigating its five prime untranslated region UTR and whether they recognize its start codon. Initiation of translation is a rate limiting step in protein synthesis and key to gene expression control 1 but despite this centrality it remains poorly understood 2 3. Here we introduce ribosome complex profiling RCP seq to capture the transcriptome wide occupancy of scanning initiating elongating and terminating ribosome complexes in a higher eukaryote. We track scanning and elongating ribosomes across all five prime UTRs in zebrafish which enable us to assess the individual regulatory contributions from the three stages of initiation: ribosome recruitment scanning of the five prime UTR and recognition of the start codon. Our data sheds light on small subunit recruitment to mRNAs presenting evidence for the threading model and demonstrates that sequence features regulate this recruitment. We estimate the processivity of scanning ribosomes as they traverse the five prime UTR and show that the repressive effects of upstream open reading frames depend on the efficiency of both translation initiation and termination. Finally we determine the optimal initiation contexts by directly estimating the conversion of scanning to elongating ribosomes and demonstrate specific regulation of translation initiation at the endoplasmic reticulum. Our results open for the possibility of deconvoluting translation initiation into separate stages and provides the first view of global occupancy of ribosomal small subunits in a vertebrate.,ENA FIRST PUBLIC:2020 03 27|ENA LAST UPDATE:2019 07 03,,,Sphere 3,SAMEA5752542,Computational Biology Unit,ENA FIRST PUBLIC:2020 03 27T17:04:59Z|ENA LAST UPDATE:2019 07 03T10:01:14Z|External Id:SAMEA5752542|INSDC center name:Computational Biology Unit|INSDC first public:2020 03 27T17:04:59Z|INSDC last update:2019 07 03T10:01:14Z|INSDC status:public|Submitter Id:5|common name:zebrafish|dev stage:Sphere|sample name:5|scientific name:Danio rerio,,,,,,,,,NextSeq 500 sequencing,ena EXPERIMENT Computational Biology Unit 27 01 2020 16:24:36:406 6,Sphere 3,OTHER,RNA Seq,,RNA-Seq,TRANSCRIPTOMIC,other,SINGLE,ILLUMINA,NextSeq 500,,ERP116106,NextSeq 500 sequencing,ENA FIRST PUBLIC:2020 03 27|ENA LAST UPDATE:2020 02 14,,,1439954368.0,18946768.0,ena RUN Computational Biology Unit 27 01 2020 16:24:36:406 6,0:76,A:669362698;C:280496524;G:316727778;T:173353505;N:13863,76,,,,669362698,280496524,316727778,173353505,13863,ERX3854558,ERS3556001,ERA2359305,Computational Biology Unit|European Nucleotide Archive,Computational Biology Unit,1,0.26155,,0.12068,,0.96915,,0.45719,,76,,B,,usable mapping rate,illumina,nextseq,unknown,other,unknown,bulk,unknown,unknown,,Unknown,2019-07-03,Blastula,Embryo,Undetermined,Embryo Imprecise
9724,ERR3841995,ERX3854557,ERS3556000,ERP116106,PRJEB33323,Deconstructing the individual steps of vertebrate translation initiation,ena-STUDY-Computational Biology Unit-03-07-2019-10:11:34:314-422,Other,In eukaryotes the number of ribosomes synthesizing a given protein depends on how many are recruited to its mRNA their success in navigating its five prime untranslated region UTR and whether they recognize its start codon. Initiation of translation is a rate limiting step in protein synthesis and key to gene expression control 1 but despite this centrality it remains poorly understood 2 3. Here we introduce ribosome complex profiling RCP seq to capture the transcriptome wide occupancy of scanning initiating elongating and terminating ribosome complexes in a higher eukaryote. We track scanning and elongating ribosomes across all five prime UTRs in zebrafish which enable us to assess the individual regulatory contributions from the three stages of initiation: ribosome recruitment scanning of the five prime UTR and recognition of the start codon. Our data sheds light on small subunit recruitment to mRNAs presenting evidence for the threading model and demonstrates that sequence features regulate this recruitment. We estimate the processivity of scanning ribosomes as they traverse the five prime UTR and show that the repressive effects of upstream open reading frames depend on the efficiency of both translation initiation and termination. Finally we determine the optimal initiation contexts by directly estimating the conversion of scanning to elongating ribosomes and demonstrate specific regulation of translation initiation at the endoplasmic reticulum. Our results open for the possibility of deconvoluting translation initiation into separate stages and provides the first view of global occupancy of ribosomal small subunits in a vertebrate.,ENA FIRST PUBLIC:2020 03 27|ENA LAST UPDATE:2019 07 03,,,Sphere 2,SAMEA5752541,Computational Biology Unit,ENA FIRST PUBLIC:2020 03 27T17:04:59Z|ENA LAST UPDATE:2019 07 03T10:01:14Z|External Id:SAMEA5752541|INSDC center name:Computational Biology Unit|INSDC first public:2020 03 27T17:04:59Z|INSDC last update:2019 07 03T10:01:14Z|INSDC status:public|Submitter Id:4|common name:zebrafish|dev stage:Sphere|sample name:4|scientific name:Danio rerio,,,,,,,,,NextSeq 500 sequencing,ena EXPERIMENT Computational Biology Unit 27 01 2020 16:24:36:406 5,Sphere 2,OTHER,RNA Seq,,RNA-Seq,TRANSCRIPTOMIC,other,SINGLE,ILLUMINA,NextSeq 500,,ERP116106,NextSeq 500 sequencing,ENA FIRST PUBLIC:2020 03 27|ENA LAST UPDATE:2020 02 14,,,1592272200.0,20950950.0,ena RUN Computational Biology Unit 27 01 2020 16:24:36:406 5,0:76,A:757507948;C:308394094;G:342142775;T:184211881;N:15502,76,,,,757507948,308394094,342142775,184211881,15502,ERX3854557,ERS3556000,ERA2359305,Computational Biology Unit|European Nucleotide Archive,Computational Biology Unit,1,0.22483,,0.10923,,0.97646,,0.49458,,76,,B,,usable mapping rate,illumina,nextseq,unknown,other,unknown,bulk,unknown,unknown,,Unknown,2019-07-03,Blastula,Embryo,Undetermined,Embryo Imprecise
9725,ERR3841994,ERX3854556,ERS3555999,ERP116106,PRJEB33323,Deconstructing the individual steps of vertebrate translation initiation,ena-STUDY-Computational Biology Unit-03-07-2019-10:11:34:314-422,Other,In eukaryotes the number of ribosomes synthesizing a given protein depends on how many are recruited to its mRNA their success in navigating its five prime untranslated region UTR and whether they recognize its start codon. Initiation of translation is a rate limiting step in protein synthesis and key to gene expression control 1 but despite this centrality it remains poorly understood 2 3. Here we introduce ribosome complex profiling RCP seq to capture the transcriptome wide occupancy of scanning initiating elongating and terminating ribosome complexes in a higher eukaryote. We track scanning and elongating ribosomes across all five prime UTRs in zebrafish which enable us to assess the individual regulatory contributions from the three stages of initiation: ribosome recruitment scanning of the five prime UTR and recognition of the start codon. Our data sheds light on small subunit recruitment to mRNAs presenting evidence for the threading model and demonstrates that sequence features regulate this recruitment. We estimate the processivity of scanning ribosomes as they traverse the five prime UTR and show that the repressive effects of upstream open reading frames depend on the efficiency of both translation initiation and termination. Finally we determine the optimal initiation contexts by directly estimating the conversion of scanning to elongating ribosomes and demonstrate specific regulation of translation initiation at the endoplasmic reticulum. Our results open for the possibility of deconvoluting translation initiation into separate stages and provides the first view of global occupancy of ribosomal small subunits in a vertebrate.,ENA FIRST PUBLIC:2020 03 27|ENA LAST UPDATE:2019 07 03,,,Sphere 1,SAMEA5752540,Computational Biology Unit,ENA FIRST PUBLIC:2020 03 27T17:04:59Z|ENA LAST UPDATE:2019 07 03T10:01:14Z|External Id:SAMEA5752540|INSDC center name:Computational Biology Unit|INSDC first public:2020 03 27T17:04:59Z|INSDC last update:2019 07 03T10:01:14Z|INSDC status:public|Submitter Id:3|common name:zebrafish|dev stage:Sphere|sample name:3|scientific name:Danio rerio,,,,,,,,,NextSeq 500 sequencing,ena EXPERIMENT Computational Biology Unit 27 01 2020 16:24:36:406 4,Sphere 1,OTHER,RNA Seq,,RNA-Seq,TRANSCRIPTOMIC,other,SINGLE,ILLUMINA,NextSeq 500,,ERP116106,NextSeq 500 sequencing,ENA FIRST PUBLIC:2020 03 27|ENA LAST UPDATE:2020 02 14,,,1332363676.0,17531101.0,ena RUN Computational Biology Unit 27 01 2020 16:24:36:406 4,0:76,A:529354355;C:299445923;G:318745973;T:184804260;N:13165,76,,,,529354355,299445923,318745973,184804260,13165,ERX3854556,ERS3555999,ERA2359305,Computational Biology Unit|European Nucleotide Archive,Computational Biology Unit,1,0.21197,,0.0829,,0.98196,,0.55753,,76,,B,,usable mapping rate,illumina,nextseq,unknown,other,unknown,bulk,unknown,unknown,,Unknown,2019-07-03,Blastula,Embryo,Undetermined,Embryo Imprecise
9726,ERR3841993,ERX3854555,ERS3555998,ERP116106,PRJEB33323,Deconstructing the individual steps of vertebrate translation initiation,ena-STUDY-Computational Biology Unit-03-07-2019-10:11:34:314-422,Other,In eukaryotes the number of ribosomes synthesizing a given protein depends on how many are recruited to its mRNA their success in navigating its five prime untranslated region UTR and whether they recognize its start codon. Initiation of translation is a rate limiting step in protein synthesis and key to gene expression control 1 but despite this centrality it remains poorly understood 2 3. Here we introduce ribosome complex profiling RCP seq to capture the transcriptome wide occupancy of scanning initiating elongating and terminating ribosome complexes in a higher eukaryote. We track scanning and elongating ribosomes across all five prime UTRs in zebrafish which enable us to assess the individual regulatory contributions from the three stages of initiation: ribosome recruitment scanning of the five prime UTR and recognition of the start codon. Our data sheds light on small subunit recruitment to mRNAs presenting evidence for the threading model and demonstrates that sequence features regulate this recruitment. We estimate the processivity of scanning ribosomes as they traverse the five prime UTR and show that the repressive effects of upstream open reading frames depend on the efficiency of both translation initiation and termination. Finally we determine the optimal initiation contexts by directly estimating the conversion of scanning to elongating ribosomes and demonstrate specific regulation of translation initiation at the endoplasmic reticulum. Our results open for the possibility of deconvoluting translation initiation into separate stages and provides the first view of global occupancy of ribosomal small subunits in a vertebrate.,ENA FIRST PUBLIC:2020 03 27|ENA LAST UPDATE:2019 07 03,,,64 cell 2,SAMEA5752539,Computational Biology Unit,ENA FIRST PUBLIC:2020 03 27T17:04:59Z|ENA LAST UPDATE:2019 07 03T10:01:14Z|External Id:SAMEA5752539|INSDC center name:Computational Biology Unit|INSDC first public:2020 03 27T17:04:59Z|INSDC last update:2019 07 03T10:01:14Z|INSDC status:public|Submitter Id:2|common name:zebrafish|dev stage:64 cell|sample name:2|scientific name:Danio rerio,,,,,,,,,NextSeq 500 sequencing,ena EXPERIMENT Computational Biology Unit 27 01 2020 16:24:36:406 3,64 cell 3,OTHER,RNA Seq,,RNA-Seq,TRANSCRIPTOMIC,other,SINGLE,ILLUMINA,NextSeq 500,,ERP116106,NextSeq 500 sequencing,ENA FIRST PUBLIC:2020 03 27|ENA LAST UPDATE:2020 02 14,,,1579307816.0,20780366.0,ena RUN Computational Biology Unit 27 01 2020 16:24:36:406 3,0:76,A:589876602;C:380048242;G:392473318;T:216893826;N:15828,76,,,,589876602,380048242,392473318,216893826,15828,ERX3854555,ERS3555998,ERA2359305,Computational Biology Unit|European Nucleotide Archive,Computational Biology Unit,1,0.15411,,0.04564,,0.97883,,0.55376,,76,,B,,usable mapping rate,illumina,nextseq,unknown,other,unknown,bulk,unknown,unknown,,Unknown,2019-07-03,Cleavage,Embryo,Undetermined,Embryo Imprecise
9727,ERR3841992,ERX3854554,ERS3556003,ERP116106,PRJEB33323,Deconstructing the individual steps of vertebrate translation initiation,ena-STUDY-Computational Biology Unit-03-07-2019-10:11:34:314-422,Other,In eukaryotes the number of ribosomes synthesizing a given protein depends on how many are recruited to its mRNA their success in navigating its five prime untranslated region UTR and whether they recognize its start codon. Initiation of translation is a rate limiting step in protein synthesis and key to gene expression control 1 but despite this centrality it remains poorly understood 2 3. Here we introduce ribosome complex profiling RCP seq to capture the transcriptome wide occupancy of scanning initiating elongating and terminating ribosome complexes in a higher eukaryote. We track scanning and elongating ribosomes across all five prime UTRs in zebrafish which enable us to assess the individual regulatory contributions from the three stages of initiation: ribosome recruitment scanning of the five prime UTR and recognition of the start codon. Our data sheds light on small subunit recruitment to mRNAs presenting evidence for the threading model and demonstrates that sequence features regulate this recruitment. We estimate the processivity of scanning ribosomes as they traverse the five prime UTR and show that the repressive effects of upstream open reading frames depend on the efficiency of both translation initiation and termination. Finally we determine the optimal initiation contexts by directly estimating the conversion of scanning to elongating ribosomes and demonstrate specific regulation of translation initiation at the endoplasmic reticulum. Our results open for the possibility of deconvoluting translation initiation into separate stages and provides the first view of global occupancy of ribosomal small subunits in a vertebrate.,ENA FIRST PUBLIC:2020 03 27|ENA LAST UPDATE:2019 07 03,,,64 cell 4Ei 10,SAMEA5752544,Computational Biology Unit,ENA FIRST PUBLIC:2020 03 27T17:04:59Z|ENA LAST UPDATE:2019 07 03T10:01:14Z|External Id:SAMEA5752544|INSDC center name:Computational Biology Unit|INSDC first public:2020 03 27T17:04:59Z|INSDC last update:2019 07 03T10:01:14Z|INSDC status:public|Submitter Id:7|common name:zebrafish|dev stage:64 cell|sample name:7|scientific name:Danio rerio,,,,,,,,,NextSeq 500 sequencing,ena EXPERIMENT Computational Biology Unit 27 01 2020 16:24:36:406 2,64 cell 4Ei,OTHER,RNA Seq,,RNA-Seq,TRANSCRIPTOMIC,other,SINGLE,ILLUMINA,NextSeq 500,,ERP116106,NextSeq 500 sequencing,ENA FIRST PUBLIC:2020 03 27|ENA LAST UPDATE:2020 02 14,,,1213585480.0,15968230.0,ena RUN Computational Biology Unit 27 01 2020 16:24:36:406 2,0:76,A:548456563;C:244465528;G:271963808;T:148687764;N:11817,76,,,,548456563,244465528,271963808,148687764,11817,ERX3854554,ERS3556003,ERA2359305,Computational Biology Unit|European Nucleotide Archive,Computational Biology Unit,1,0.21973,,0.10926,,0.97419,,0.44348,,76,,B,,usable mapping rate,illumina,nextseq,unknown,other,unknown,bulk,unknown,unknown,,Unknown,2019-07-03,Cleavage,Embryo,Undetermined,Embryo Imprecise
9728,ERR3841991,ERX3854553,ERS3555997,ERP116106,PRJEB33323,Deconstructing the individual steps of vertebrate translation initiation,ena-STUDY-Computational Biology Unit-03-07-2019-10:11:34:314-422,Other,In eukaryotes the number of ribosomes synthesizing a given protein depends on how many are recruited to its mRNA their success in navigating its five prime untranslated region UTR and whether they recognize its start codon. Initiation of translation is a rate limiting step in protein synthesis and key to gene expression control 1 but despite this centrality it remains poorly understood 2 3. Here we introduce ribosome complex profiling RCP seq to capture the transcriptome wide occupancy of scanning initiating elongating and terminating ribosome complexes in a higher eukaryote. We track scanning and elongating ribosomes across all five prime UTRs in zebrafish which enable us to assess the individual regulatory contributions from the three stages of initiation: ribosome recruitment scanning of the five prime UTR and recognition of the start codon. Our data sheds light on small subunit recruitment to mRNAs presenting evidence for the threading model and demonstrates that sequence features regulate this recruitment. We estimate the processivity of scanning ribosomes as they traverse the five prime UTR and show that the repressive effects of upstream open reading frames depend on the efficiency of both translation initiation and termination. Finally we determine the optimal initiation contexts by directly estimating the conversion of scanning to elongating ribosomes and demonstrate specific regulation of translation initiation at the endoplasmic reticulum. Our results open for the possibility of deconvoluting translation initiation into separate stages and provides the first view of global occupancy of ribosomal small subunits in a vertebrate.,ENA FIRST PUBLIC:2020 03 27|ENA LAST UPDATE:2019 07 03,,,64 cell 1,SAMEA5752538,Computational Biology Unit,ENA FIRST PUBLIC:2020 03 27T17:04:59Z|ENA LAST UPDATE:2019 07 03T10:01:14Z|External Id:SAMEA5752538|INSDC center name:Computational Biology Unit|INSDC first public:2020 03 27T17:04:59Z|INSDC last update:2019 07 03T10:01:14Z|INSDC status:public|Submitter Id:1|common name:zebrafish|dev stage:64 cell|sample name:1|scientific name:Danio rerio,,,,,,,,,NextSeq 500 sequencing,ena EXPERIMENT Computational Biology Unit 27 01 2020 16:24:36:405 1,64 cell 1,OTHER,RNA Seq,,RNA-Seq,TRANSCRIPTOMIC,other,SINGLE,ILLUMINA,NextSeq 500,,ERP116106,NextSeq 500 sequencing,ENA FIRST PUBLIC:2020 03 27|ENA LAST UPDATE:2020 02 14,,,1494930944.0,19670144.0,ena RUN Computational Biology Unit 27 01 2020 16:24:36:406 1,0:76,A:543017836;C:366974203;G:367027373;T:217896401;N:15131,76,,,,543017836,366974203,367027373,217896401,15131,ERX3854553,ERS3555997,ERA2359305,Computational Biology Unit|European Nucleotide Archive,Computational Biology Unit,1,0.2544,,0.08957,,0.96568,,0.55681,,76,,B,,usable mapping rate,illumina,nextseq,unknown,other,unknown,bulk,unknown,unknown,,Unknown,2019-07-03,Cleavage,Embryo,Undetermined,Embryo Imprecise
9918,ERR5059480,ERX4865549,ERS5523939,ERP122761,PRJEB39265,RNA dynamics during zebrafish development,ena-STUDY-CENTER FOR GENOMIC REGULATION (CRG)-06-07-2020-15:41:43:771-1183,Other,RNA dynamics during early zebrafish development,ENA FIRST PUBLIC:2022 07 05|ENA LAST UPDATE:2022 07 05,,,aAM 6h rep1,JD AD30 PRPN1970901,,ENA FIRST PUBLIC:2022 07 05T12:06:33Z|organism:Danio rerio|ENA LAST UPDATE:2022 07 05T12:06:33Z|scientific name:Danio rerio|common name:zebrafish|ENA FIRST PUBLIC:2022 07 05|ENA LAST UPDATE:2022 07 05,,,,,,,,,PromethION sequencing,ena EXPERIMENT CENTER FOR GENOMIC REGULATION CRG 09 01 2021 19:50:56:183 1,unspecified,1,,,RNA-Seq,TRANSCRIPTOMIC,Oligo-dT,SINGLE,OXFORD_NANOPORE,PromethION,,ERP122761,PromethION sequencing,ENA FIRST PUBLIC:2022 07 05|ENA LAST UPDATE:2022 07 05,JD-AD30_PRPN197090.tar.gz,nanopore,3739882337.0,3148027.0,ena RUN CENTER FOR GENOMIC REGULATION CRG 09 01 2021 19:50:56:183 1,0:1188.01,A:1054501690;C:834193435;G:847423060;T:1003764152;N:0,1188,,,,1054501690,834193435,847423060,1003764152,0,ERX4865549,ERS5523939,ERA3206712,CENTER FOR GENOMIC REGULATION (CRG)|European Nucleotide Archive,CENTER FOR GENOMIC REGULATION (CRG),,,,,,,,,,,,B,,usable mapping rate,ont,ont,unknown,poly_a,unknown,bulk,unknown,unknown,,Spain,2022-07-05,Undetermined,Undetermined,Undetermined,Undetermined
9919,ERR5167510,ERX4972431,ERS5593364,ERP122761,PRJEB39265,RNA dynamics during zebrafish development,ena-STUDY-CENTER FOR GENOMIC REGULATION (CRG)-06-07-2020-15:41:43:771-1183,Other,RNA dynamics during early zebrafish development,ENA FIRST PUBLIC:2022 07 05|ENA LAST UPDATE:2022 07 05,,,cDNA WT 2hpf rep1,JD T20 PDPN191089,,ENA FIRST PUBLIC:2022 07 05T12:06:34Z|organism:Danio rerio|ENA LAST UPDATE:2022 07 05T12:06:34Z|scientific name:Danio rerio|common name:zebrafish|ENA FIRST PUBLIC:2022 07 05|ENA LAST UPDATE:2022 07 05,,,,,,,,,PromethION sequencing,ena EXPERIMENT CENTER FOR GENOMIC REGULATION CRG 21 01 2021 22:16:50:154 1,unspecified,1,,,RNA-Seq,TRANSCRIPTOMIC,Oligo-dT,SINGLE,OXFORD_NANOPORE,PromethION,,ERP122761,PromethION sequencing,ENA FIRST PUBLIC:2022 07 05|ENA LAST UPDATE:2022 07 05,,,,,ena RUN CENTER FOR GENOMIC REGULATION CRG 21 01 2021 22:16:50:154 1,,,,,,,,,,,,ERX4972431,,ERA3319053,CENTER FOR GENOMIC REGULATION (CRG)|European Nucleotide Archive,CENTER FOR GENOMIC REGULATION (CRG),,,,,,,,,,,,,,,ont,ont,unknown,poly_a,unknown,bulk,unknown,unknown,,Spain,2022-07-05,Cleavage,Embryo,Undetermined,Embryo Imprecise
9920,ERR4330695,ERX4277529,ERS4811113,ERP122761,PRJEB39265,RNA dynamics during zebrafish development,ena-STUDY-CENTER FOR GENOMIC REGULATION (CRG)-06-07-2020-15:41:43:771-1183,Other,RNA dynamics during early zebrafish development,ENA FIRST PUBLIC:2022 07 05|ENA LAST UPDATE:2022 07 05,,WT 2h rep1,WT 2h rep1,SAMEA7050483,CENTER FOR GENOMIC REGULATION (CRG),ENA FIRST PUBLIC:2022 07 05|ENA LAST UPDATE:2022 07 05|External Id:SAMEA7050483|INSDC center alias:CENTER FOR GENOMIC REGULATION CRG|INSDC center name:CENTER FOR GENOMIC REGULATION CRG|INSDC first public:2022 07 05T12:06:22Z|INSDC last update:2022 07 05T12:06:22Z|INSDC status:public|Submitter Id:JD B2 PDBN005727|common name:zebrafish|sample name:JD B2 PDBN005727,,,,,,,,,PromethION sequencing,ena EXPERIMENT CENTER FOR GENOMIC REGULATION CRG 09 07 2020 13:48:01:100 1,unspecified,1,,,RNA-Seq,TRANSCRIPTOMIC,Oligo-dT,SINGLE,OXFORD_NANOPORE,PromethION,,ERP122761,PromethION sequencing,ENA FIRST PUBLIC:2022 07 05|ENA LAST UPDATE:2022 07 05,JD-B2_PDBN005727.tar.gz,fastq,,,ena RUN CENTER FOR GENOMIC REGULATION CRG 09 07 2020 13:48:01:100 1,,,,,,,,,,,,ERX4277529,,ERA2767154,CENTER FOR GENOMIC REGULATION (CRG)|European Nucleotide Archive,CENTER FOR GENOMIC REGULATION (CRG),,,,,,,,,,,,,,,ont,ont,unknown,poly_a,unknown,bulk,unknown,unknown,,Spain,2022-07-05,Undetermined,Undetermined,Undetermined,Undetermined
9921,ERR4327134,ERX4273968,ERS4808634,ERP122761,PRJEB39265,RNA dynamics during zebrafish development,ena-STUDY-CENTER FOR GENOMIC REGULATION (CRG)-06-07-2020-15:41:43:771-1183,Other,RNA dynamics during early zebrafish development,ENA FIRST PUBLIC:2022 07 05|ENA LAST UPDATE:2022 07 05,,WT 4h rep2,WT 4h rep2,SAMEA7048000,CENTER FOR GENOMIC REGULATION (CRG),ENA FIRST PUBLIC:2022 07 05|ENA LAST UPDATE:2022 07 05|External Id:SAMEA7048000|INSDC center alias:CENTER FOR GENOMIC REGULATION CRG|INSDC center name:CENTER FOR GENOMIC REGULATION CRG|INSDC first public:2022 07 05T12:06:22Z|INSDC last update:2022 07 05T12:06:22Z|INSDC status:public|Submitter Id:JD AM39 PDBN042841|common name:zebrafish|sample name:JD AM39 PDBN042841,,,,,,,,,PromethION sequencing,ena EXPERIMENT CENTER FOR GENOMIC REGULATION CRG 07 07 2020 16:36:02:084 1,unspecified,1,,,RNA-Seq,TRANSCRIPTOMIC,Oligo-dT,SINGLE,OXFORD_NANOPORE,PromethION,,ERP122761,PromethION sequencing,ENA FIRST PUBLIC:2022 07 05|ENA LAST UPDATE:2022 07 05,JD-AM39_PDBN042841.tar.gz,nanopore,719646261.0,897768.0,ena RUN CENTER FOR GENOMIC REGULATION CRG 07 07 2020 16:36:02:084 1,0:801.59,A:210217908;C:152963718;G:157393834;T:199070801;N:0,801,,,,210217908,152963718,157393834,199070801,0,ERX4273968,ERS4808634,ERA2764800,CENTER FOR GENOMIC REGULATION (CRG)|European Nucleotide Archive,CENTER FOR GENOMIC REGULATION (CRG),,,,,,,,,,,,T,,under 1.2% mapping rate,ont,ont,unknown,poly_a,unknown,bulk,unknown,unknown,,Spain,2022-07-05,Undetermined,Undetermined,Undetermined,Undetermined
9922,ERR4330696,ERX4277530,ERS4811114,ERP122761,PRJEB39265,RNA dynamics during zebrafish development,ena-STUDY-CENTER FOR GENOMIC REGULATION (CRG)-06-07-2020-15:41:43:771-1183,Other,RNA dynamics during early zebrafish development,ENA FIRST PUBLIC:2022 07 05|ENA LAST UPDATE:2022 07 05,,WT 4h rep1,WT 4h rep1,JD C3 PDBN006177,,ENA FIRST PUBLIC:2022 07 05T12:06:22Z|organism:Danio rerio|ENA LAST UPDATE:2022 07 05T12:06:22Z|scientific name:Danio rerio|common name:zebrafish|ENA FIRST PUBLIC:2022 07 05|ENA LAST UPDATE:2022 07 05,,,,,,,,,PromethION sequencing,ena EXPERIMENT CENTER FOR GENOMIC REGULATION CRG 09 07 2020 13:48:01:100 2,unspecified,1,,,RNA-Seq,TRANSCRIPTOMIC,Oligo-dT,SINGLE,OXFORD_NANOPORE,PromethION,,ERP122761,PromethION sequencing,ENA FIRST PUBLIC:2022 07 05|ENA LAST UPDATE:2022 07 05,JD-C3_PDBN006177.tar.gz,nanopore,4240799932.0,4331689.0,ena RUN CENTER FOR GENOMIC REGULATION CRG 09 07 2020 13:48:01:100 2,0:979.02,A:1229803846;C:914476674;G:943703560;T:1152815852;N:0,979,,,,1229803846,914476674,943703560,1152815852,0,ERX4277530,ERS4811114,ERA2767154,CENTER FOR GENOMIC REGULATION (CRG)|European Nucleotide Archive,CENTER FOR GENOMIC REGULATION (CRG),,,,,,,,,,,,B,,usable mapping rate,ont,ont,unknown,poly_a,unknown,bulk,unknown,unknown,,Spain,2022-07-05,Undetermined,Undetermined,Undetermined,Undetermined
9923,ERR4327135,ERX4273969,ERS4808635,ERP122761,PRJEB39265,RNA dynamics during zebrafish development,ena-STUDY-CENTER FOR GENOMIC REGULATION (CRG)-06-07-2020-15:41:43:771-1183,Other,RNA dynamics during early zebrafish development,ENA FIRST PUBLIC:2022 07 05|ENA LAST UPDATE:2022 07 05,,WT 6h rep1,WT 6h rep1,JD AC29 PDBN024889,,ENA FIRST PUBLIC:2022 07 05T12:06:22Z|organism:Danio rerio|ENA LAST UPDATE:2022 07 05T12:06:22Z|scientific name:Danio rerio|common name:zebrafish|ENA FIRST PUBLIC:2022 07 05|ENA LAST UPDATE:2022 07 05,,,,,,,,,PromethION sequencing,ena EXPERIMENT CENTER FOR GENOMIC REGULATION CRG 07 07 2020 16:36:02:084 2,unspecified,1,,,RNA-Seq,TRANSCRIPTOMIC,Oligo-dT,SINGLE,OXFORD_NANOPORE,PromethION,,ERP122761,PromethION sequencing,ENA FIRST PUBLIC:2022 07 05|ENA LAST UPDATE:2022 07 05,JD-AC29_PDBN024889.tar.gz,nanopore,1900324756.0,2013035.0,ena RUN CENTER FOR GENOMIC REGULATION CRG 07 07 2020 16:36:02:084 2,0:944.01,A:549431032;C:411510218;G:422103800;T:517279706;N:0,944,,,,549431032,411510218,422103800,517279706,0,ERX4273969,ERS4808635,ERA2764800,CENTER FOR GENOMIC REGULATION (CRG)|European Nucleotide Archive,CENTER FOR GENOMIC REGULATION (CRG),,,,,,,,,,,,T,,long read,ont,ont,unknown,poly_a,unknown,bulk,unknown,unknown,,Spain,2022-07-05,Undetermined,Undetermined,Undetermined,Undetermined
9924,ERR4326350,ERX4273208,ERS4808398,ERP122761,PRJEB39265,RNA dynamics during zebrafish development,ena-STUDY-CENTER FOR GENOMIC REGULATION (CRG)-06-07-2020-15:41:43:771-1183,Other,RNA dynamics during early zebrafish development,ENA FIRST PUBLIC:2022 07 05|ENA LAST UPDATE:2022 07 05,,430 LNA 6h rep1,430 LNA 6h rep1,SAMEA7047764,CENTER FOR GENOMIC REGULATION (CRG),ENA FIRST PUBLIC:2022 07 05|ENA LAST UPDATE:2022 07 05|External Id:SAMEA7047764|INSDC center alias:CENTER FOR GENOMIC REGULATION CRG|INSDC center name:CENTER FOR GENOMIC REGULATION CRG|INSDC first public:2022 07 05T12:06:22Z|INSDC last update:2022 07 05T12:06:22Z|INSDC status:public|Submitter Id:JD H8 PDBN059569|common name:zebrafish|sample name:JD H8 PDBN059569,,,,,,,,,PromethION sequencing,ena EXPERIMENT CENTER FOR GENOMIC REGULATION CRG 07 07 2020 10:25:22:388 1,unspecified,1,,,RNA-Seq,TRANSCRIPTOMIC,Oligo-dT,SINGLE,OXFORD_NANOPORE,PromethION,,ERP122761,PromethION sequencing,ENA FIRST PUBLIC:2022 07 05|ENA LAST UPDATE:2022 07 05,JD-H8_PDBN059569.tar.gz,nanopore,722817654.0,657296.0,ena RUN CENTER FOR GENOMIC REGULATION CRG 07 07 2020 10:25:22:388 1,0:1099.68,A:206996491;C:157022109;G:155085437;T:203713617;N:0,1099,,,,206996491,157022109,155085437,203713617,0,ERX4273208,ERS4808398,ERA2764399,CENTER FOR GENOMIC REGULATION (CRG)|European Nucleotide Archive,CENTER FOR GENOMIC REGULATION (CRG),,,,,,,,,,,,T,,under 1.2% mapping rate,ont,ont,unknown,poly_a,unknown,bulk,unknown,unknown,,Spain,2022-07-05,Undetermined,Undetermined,Undetermined,Undetermined
9925,ERR4335436,ERX4282181,ERS4818366,ERP122761,PRJEB39265,RNA dynamics during zebrafish development,ena-STUDY-CENTER FOR GENOMIC REGULATION (CRG)-06-07-2020-15:41:43:771-1183,Other,RNA dynamics during early zebrafish development,ENA FIRST PUBLIC:2022 07 05|ENA LAST UPDATE:2022 07 05,,WT 6h rep2,WT 6h rep2,JD W23 PRPN039928,,ENA FIRST PUBLIC:2022 07 05T12:06:24Z|organism:Danio rerio|ENA LAST UPDATE:2022 07 05T12:06:24Z|scientific name:Danio rerio|common name:zebrafish|ENA FIRST PUBLIC:2022 07 05|ENA LAST UPDATE:2022 07 05,,,,,,,,,PromethION sequencing,ena EXPERIMENT CENTER FOR GENOMIC REGULATION CRG 13 07 2020 18:19:23:456 1,unspecified,1,,,RNA-Seq,TRANSCRIPTOMIC,Oligo-dT,SINGLE,OXFORD_NANOPORE,PromethION,,ERP122761,PromethION sequencing,ENA FIRST PUBLIC:2022 07 05|ENA LAST UPDATE:2022 07 05,JD-W23_PRPN039928.tar.gz,nanopore,1268761319.0,1385621.0,ena RUN CENTER FOR GENOMIC REGULATION CRG 13 07 2020 18:19:23:457 1,0:915.66,A:366823862;C:275507684;G:284634548;T:341795225;N:0,915,,,,366823862,275507684,284634548,341795225,0,ERX4282181,ERS4818366,ERA2769006,CENTER FOR GENOMIC REGULATION (CRG)|European Nucleotide Archive,CENTER FOR GENOMIC REGULATION (CRG),,,,,,,,,,,,T,,under 1.2% mapping rate,ont,ont,unknown,poly_a,unknown,bulk,unknown,unknown,,Spain,2022-07-05,Undetermined,Undetermined,Undetermined,Undetermined
9926,ERR4321680,ERX4268538,ERS4808125,ERP122761,PRJEB39265,RNA dynamics during zebrafish development,ena-STUDY-CENTER FOR GENOMIC REGULATION (CRG)-06-07-2020-15:41:43:771-1183,Other,RNA dynamics during early zebrafish development,ENA FIRST PUBLIC:2022 07 05|ENA LAST UPDATE:2022 07 05,,WT 0h rep1,WT 0h rep1,JD A1 GDDN003032,,ENA FIRST PUBLIC:2022 07 05T12:06:22Z|organism:Danio rerio|ENA LAST UPDATE:2022 07 05T12:06:22Z|scientific name:Danio rerio|common name:zebrafish|ENA FIRST PUBLIC:2022 07 05|ENA LAST UPDATE:2022 07 05,,,,,,,,,GridION sequencing,ena EXPERIMENT CENTER FOR GENOMIC REGULATION CRG 06 07 2020 17:45:26:236 1,unspecified,1,,,RNA-Seq,TRANSCRIPTOMIC,Oligo-dT,SINGLE,OXFORD_NANOPORE,GridION,,ERP122761,GridION sequencing,ENA FIRST PUBLIC:2022 07 05|ENA LAST UPDATE:2022 07 05,JD-A1_GDDN003032.tar.gz,nanopore,753417826.0,698774.0,ena RUN CENTER FOR GENOMIC REGULATION CRG 06 07 2020 17:45:26:236 1,0:1078.20,A:214525685;C:165042952;G:171160615;T:202688574;N:0,1078,,,,214525685,165042952,171160615,202688574,0,ERX4268538,ERS4808125,ERA2763718,CENTER FOR GENOMIC REGULATION (CRG)|European Nucleotide Archive,CENTER FOR GENOMIC REGULATION (CRG),,,,,,,,,,,,T,,long read,ont,ont,unknown,poly_a,unknown,bulk,unknown,unknown,,Spain,2022-07-05,Undetermined,Undetermined,Undetermined,Undetermined
10214,ERR6617900,ERX6244443,ERS7291130,ERP131213,PRJEB46978,Nano3P seq: transcriptome wide analysis of gene expression and tail dynamics using end capture nanopore sequencing,ena-STUDY-CENTER FOR GENOMIC REGULATION (CRG)-12-08-2021-14:48:52:906-1159,Other,Nano3P seq is a simple and robust method to accurately estimate transcript levels tail lengths and tail nucleotide composition information in full length individual reads with minimal library preparation biases both in the coding and non coding transcriptome.,ENA FIRST PUBLIC:2023 12 28|ENA LAST UPDATE:2023 12 28,,PolyA selected dRNA sequenced zebrafish 4hpf RNA,Zebrafish 4hpf dRNA,SAMEA9568396,CENTER FOR GENOMIC REGULATION (CRG),ENA FIRST PUBLIC:2023 12 28T01:07:30Z|ENA LAST UPDATE:2023 12 28T01:07:30Z|External Id:SAMEA9568396|INSDC center name:CENTER FOR GENOMIC REGULATION CRG|INSDC first public:2023 12 28T01:07:30Z|INSDC last update:2023 12 28T01:07:30Z|INSDC status:public|Submitter Id:Zebrafish 4hpf dRNA1|common name:zebrafish|sample name:Zebrafish 4hpf dRNA1|scientific name:Danio rerio,,,,,,,,,MinION sequencing,ena EXPERIMENT CENTER FOR GENOMIC REGULATION CRG 03 09 2021 14:33:13:450 1,dRNA Zebrafish,Direct RNA Sequencing,Direct RNA Sequencing,,RNA-Seq,TRANSCRIPTOMIC,other,SINGLE,OXFORD_NANOPORE,MinION,,ERP131213,MinION sequencing,ENA FIRST PUBLIC:2023 12 28|ENA LAST UPDATE:2023 12 28,Zebrafish_4hpf_dRNA.fast5.tar.gz,nanopore,772304625.0,897768.0,ena RUN CENTER FOR GENOMIC REGULATION CRG 03 09 2021 14:33:13:450 1,0:860.25,A:224977035;C:165273397;G:156659356;T:225394837;N:0,860,,,,224977035,165273397,156659356,225394837,0,ERX6244443,ERS7291130,ERA5995143,CENTER FOR GENOMIC REGULATION (CRG)|European Nucleotide Archive,CENTER FOR GENOMIC REGULATION (CRG),1,0.5,,0.0,,0.99997,,1.0,,962,,T,,long read,ont,ont,full_length,poly_a,unknown,bulk,unknown,unknown,,Spain,2023-12-28,Blastula,Embryo,Undetermined,Embryo Imprecise
11042,ERR9839781,ERX9385638,ERS12199238,ERP138294,PRJEB53494,Nano3P seq: transcriptome wide analysis of gene expression and tail dynamics using end capture nanopore cDNA sequencing,94bf5509-4622-4d5f-b7c5-6a14bdfac340,Other,RNA polyadenylation plays a central role in RNA maturation fate and stability. In response to developmental cues polyA tail lengths can vary affecting the translation efficiency and stability of mRNAs. Here we develop Nanopore three prime end capture sequencing Nano3P seq a novel method that relies on nanopore cDNA sequencing to simultaneously quantify RNA abundance tail composition and tail length dynamics at per read resolution. By employing a template switching based sequencing protocol Nano3P seq can sequence any given RNA molecule from its three prime end regardless of its polyadenylation status without xxx need for PCR amplification or ligation of RNA adapters. We demonstrate that Nano3P seq captures a wide diversity of RNA biotypes providing quantitative estimates of RNA abundance and tail lengths in mRNA lncRNA sn/snoRNA scaRNA and rRNA molecules. We find that in addition to mRNA and lncRNA polyA tails can be identified in 16S mitochondrial rRNA in both mouse and zebrafish models. Moreover we show that mRNA tail lengths are dynamically regulated during vertebrate embryogenesis at an isoform specific level correlating with mRNA decay. Finally we identify non A bases within polyA tails of various lengths and reveal their distribution during vertebrate embryogenesis. Overall Nano3P seq is a simple and robust method for accurately estimating transcript levels tail lengths and tail composition heterogeneity in individual reads with minimal library preparation biases both in the coding and non coding transcriptome.,ENA FIRST PUBLIC:2022 10 10|ENA LAST UPDATE:2022 10 10,,Zebrafish Ribodepleted RNA 2hpf 4hpf 6hpf,Zebrafish Ribodepleted Rep3,SAMEA110100413,CENTER FOR GENOMIC REGULATION (CRG),ENA FIRST PUBLIC:2022 10 10|ENA LAST UPDATE:2022 10 10|External Id:SAMEA110100413|INSDC center alias:CENTER FOR GENOMIC REGULATION CRG|INSDC center name:CENTER FOR GENOMIC REGULATION CRG|INSDC first public:2022 10 10T00:20:53Z|INSDC last update:2022 10 10T00:20:53Z|INSDC status:public|Submitter Id:Zebrafish Ribodepleted Rep3|common name:zebrafish|sample name:Zebrafish Ribodepleted Rep3,,,,,,,,,MinION sequencing,ena EXPERIMENT TAB 13 06 2022 16:07:52:807 817,cDNA897892 ZFRDR3,1,,,RNA-Seq,TRANSCRIPTOMIC,other,SINGLE,OXFORD_NANOPORE,MinION,,ERP138294,MinION sequencing,ENA FIRST PUBLIC:2022 10 10|ENA LAST UPDATE:2022 10 10,cDNA897892_ZFRDR3.tar.gz,nanopore,848659575.0,587586.0,ena RUN TAB 13 06 2022 16:07:52:808 818,0:1444.32,A:210205014;C:186527780;G:188214279;T:263712502;N:0,1444,,,,210205014,186527780,188214279,263712502,0,ERX9385638,ERS12199238,ERA15547404,CENTER FOR GENOMIC REGULATION (CRG)|European Nucleotide Archive,CENTER FOR GENOMIC REGULATION (CRG),,,,,,,,,,,,,,,ont,ont,3prime,poly_a,unknown,bulk,unknown,unknown,,Spain,2022-10-10,Multi-stage,Embryo,Undetermined,Embryo Imprecise
11043,ERR9839780,ERX9385637,ERS12199237,ERP138294,PRJEB53494,Nano3P seq: transcriptome wide analysis of gene expression and tail dynamics using end capture nanopore cDNA sequencing,94bf5509-4622-4d5f-b7c5-6a14bdfac340,Other,RNA polyadenylation plays a central role in RNA maturation fate and stability. In response to developmental cues polyA tail lengths can vary affecting the translation efficiency and stability of mRNAs. Here we develop Nanopore three prime end capture sequencing Nano3P seq a novel method that relies on nanopore cDNA sequencing to simultaneously quantify RNA abundance tail composition and tail length dynamics at per read resolution. By employing a template switching based sequencing protocol Nano3P seq can sequence any given RNA molecule from its three prime end regardless of its polyadenylation status without xxx need for PCR amplification or ligation of RNA adapters. We demonstrate that Nano3P seq captures a wide diversity of RNA biotypes providing quantitative estimates of RNA abundance and tail lengths in mRNA lncRNA sn/snoRNA scaRNA and rRNA molecules. We find that in addition to mRNA and lncRNA polyA tails can be identified in 16S mitochondrial rRNA in both mouse and zebrafish models. Moreover we show that mRNA tail lengths are dynamically regulated during vertebrate embryogenesis at an isoform specific level correlating with mRNA decay. Finally we identify non A bases within polyA tails of various lengths and reveal their distribution during vertebrate embryogenesis. Overall Nano3P seq is a simple and robust method for accurately estimating transcript levels tail lengths and tail composition heterogeneity in individual reads with minimal library preparation biases both in the coding and non coding transcriptome.,ENA FIRST PUBLIC:2022 10 10|ENA LAST UPDATE:2022 10 10,,Zebrafish Ribodepleted RNA 2hpf 4hpf 6hpf,Zebrafish Ribodepleted Rep2,SAMEA110100412,CENTER FOR GENOMIC REGULATION (CRG),ENA FIRST PUBLIC:2022 10 10|ENA LAST UPDATE:2022 10 10|External Id:SAMEA110100412|INSDC center alias:CENTER FOR GENOMIC REGULATION CRG|INSDC center name:CENTER FOR GENOMIC REGULATION CRG|INSDC first public:2022 10 10T00:20:53Z|INSDC last update:2022 10 10T00:20:53Z|INSDC status:public|Submitter Id:Zebrafish Ribodepleted Rep2|common name:zebrafish|sample name:Zebrafish Ribodepleted Rep2,,,,,,,,,MinION sequencing,ena EXPERIMENT TAB 13 06 2022 16:07:52:807 815,cDNA123791 ZFRDR2,1,,,RNA-Seq,TRANSCRIPTOMIC,other,SINGLE,OXFORD_NANOPORE,MinION,,ERP138294,MinION sequencing,ENA FIRST PUBLIC:2022 10 10|ENA LAST UPDATE:2022 10 10,cDNA123791_ZFRDR2.tar.gz,nanopore,2229275175.0,1955617.0,ena RUN TAB 13 06 2022 16:07:52:807 816,0:1139.93,A:533543922;C:498938137;G:515833119;T:680959997;N:0,1139,,,,533543922,498938137,515833119,680959997,0,ERX9385637,ERS12199237,ERA15547404,CENTER FOR GENOMIC REGULATION (CRG)|European Nucleotide Archive,CENTER FOR GENOMIC REGULATION (CRG),,,,,,,,,,,,,,,ont,ont,3prime,poly_a,unknown,bulk,unknown,unknown,,Spain,2022-10-10,Multi-stage,Embryo,Undetermined,Embryo Imprecise
11044,ERR9839779,ERX9385636,ERS12199236,ERP138294,PRJEB53494,Nano3P seq: transcriptome wide analysis of gene expression and tail dynamics using end capture nanopore cDNA sequencing,94bf5509-4622-4d5f-b7c5-6a14bdfac340,Other,RNA polyadenylation plays a central role in RNA maturation fate and stability. In response to developmental cues polyA tail lengths can vary affecting the translation efficiency and stability of mRNAs. Here we develop Nanopore three prime end capture sequencing Nano3P seq a novel method that relies on nanopore cDNA sequencing to simultaneously quantify RNA abundance tail composition and tail length dynamics at per read resolution. By employing a template switching based sequencing protocol Nano3P seq can sequence any given RNA molecule from its three prime end regardless of its polyadenylation status without xxx need for PCR amplification or ligation of RNA adapters. We demonstrate that Nano3P seq captures a wide diversity of RNA biotypes providing quantitative estimates of RNA abundance and tail lengths in mRNA lncRNA sn/snoRNA scaRNA and rRNA molecules. We find that in addition to mRNA and lncRNA polyA tails can be identified in 16S mitochondrial rRNA in both mouse and zebrafish models. Moreover we show that mRNA tail lengths are dynamically regulated during vertebrate embryogenesis at an isoform specific level correlating with mRNA decay. Finally we identify non A bases within polyA tails of various lengths and reveal their distribution during vertebrate embryogenesis. Overall Nano3P seq is a simple and robust method for accurately estimating transcript levels tail lengths and tail composition heterogeneity in individual reads with minimal library preparation biases both in the coding and non coding transcriptome.,ENA FIRST PUBLIC:2022 10 10|ENA LAST UPDATE:2022 10 10,,Zebrafish Ribodepleted RNA 2hpf 4hpf 6hpf,Zebrafish Ribodepleted Rep1,SAMEA110100411,CENTER FOR GENOMIC REGULATION (CRG),ENA FIRST PUBLIC:2022 10 10|ENA LAST UPDATE:2022 10 10|External Id:SAMEA110100411|INSDC center alias:CENTER FOR GENOMIC REGULATION CRG|INSDC center name:CENTER FOR GENOMIC REGULATION CRG|INSDC first public:2022 10 10T00:20:53Z|INSDC last update:2022 10 10T00:20:53Z|INSDC status:public|Submitter Id:Zebrafish Ribodepleted Rep1|common name:zebrafish|sample name:Zebrafish Ribodepleted Rep1,,,,,,,,,MinION sequencing,ena EXPERIMENT TAB 13 06 2022 16:07:52:807 813,cDNA786327 ZFRDR1,1,,,RNA-Seq,TRANSCRIPTOMIC,other,SINGLE,OXFORD_NANOPORE,MinION,,ERP138294,MinION sequencing,ENA FIRST PUBLIC:2022 10 10|ENA LAST UPDATE:2022 10 10,cDNA786327_ZFRDR1.tar.gz,nanopore,1900613556.0,1660167.0,ena RUN TAB 13 06 2022 16:07:52:807 814,0:1144.83,A:473050820;C:438054520;G:425169743;T:564338473;N:0,1144,,,,473050820,438054520,425169743,564338473,0,ERX9385636,ERS12199236,ERA15547404,CENTER FOR GENOMIC REGULATION (CRG)|European Nucleotide Archive,CENTER FOR GENOMIC REGULATION (CRG),,,,,,,,,,,,,,,ont,ont,3prime,poly_a,unknown,bulk,unknown,unknown,,Spain,2022-10-10,Multi-stage,Embryo,Undetermined,Embryo Imprecise
11045,ERR9839778,ERX9385635,ERS12199235,ERP138294,PRJEB53494,Nano3P seq: transcriptome wide analysis of gene expression and tail dynamics using end capture nanopore cDNA sequencing,94bf5509-4622-4d5f-b7c5-6a14bdfac340,Other,RNA polyadenylation plays a central role in RNA maturation fate and stability. In response to developmental cues polyA tail lengths can vary affecting the translation efficiency and stability of mRNAs. Here we develop Nanopore three prime end capture sequencing Nano3P seq a novel method that relies on nanopore cDNA sequencing to simultaneously quantify RNA abundance tail composition and tail length dynamics at per read resolution. By employing a template switching based sequencing protocol Nano3P seq can sequence any given RNA molecule from its three prime end regardless of its polyadenylation status without xxx need for PCR amplification or ligation of RNA adapters. We demonstrate that Nano3P seq captures a wide diversity of RNA biotypes providing quantitative estimates of RNA abundance and tail lengths in mRNA lncRNA sn/snoRNA scaRNA and rRNA molecules. We find that in addition to mRNA and lncRNA polyA tails can be identified in 16S mitochondrial rRNA in both mouse and zebrafish models. Moreover we show that mRNA tail lengths are dynamically regulated during vertebrate embryogenesis at an isoform specific level correlating with mRNA decay. Finally we identify non A bases within polyA tails of various lengths and reveal their distribution during vertebrate embryogenesis. Overall Nano3P seq is a simple and robust method for accurately estimating transcript levels tail lengths and tail composition heterogeneity in individual reads with minimal library preparation biases both in the coding and non coding transcriptome.,ENA FIRST PUBLIC:2022 10 10|ENA LAST UPDATE:2022 10 10,,Zebrafish PolyA Selected RNA 4hpf,Zebrafish pA selected,SAMEA110100410,CENTER FOR GENOMIC REGULATION (CRG),ENA FIRST PUBLIC:2022 10 10|ENA LAST UPDATE:2022 10 10|External Id:SAMEA110100410|INSDC center alias:CENTER FOR GENOMIC REGULATION CRG|INSDC center name:CENTER FOR GENOMIC REGULATION CRG|INSDC first public:2022 10 10T00:20:53Z|INSDC last update:2022 10 10T00:20:53Z|INSDC status:public|Submitter Id:Zebrafish pA selected|common name:zebrafish|sample name:Zebrafish pA selected,,,,,,,,,MinION sequencing,ena EXPERIMENT TAB 13 06 2022 16:07:52:807 811,cDNA852361 ZFPA4R1,1,,,RNA-Seq,TRANSCRIPTOMIC,other,SINGLE,OXFORD_NANOPORE,MinION,,ERP138294,MinION sequencing,ENA FIRST PUBLIC:2022 10 10|ENA LAST UPDATE:2022 10 10,cDNA852361_ZFPA4R1.tar.gz,nanopore,348224822.0,233101.0,ena RUN TAB 13 06 2022 16:07:52:807 812,0:1493.88,A:88963756;C:76104775;G:73909507;T:109246784;N:0,1493,,,,88963756,76104775,73909507,109246784,0,ERX9385635,ERS12199235,ERA15547404,CENTER FOR GENOMIC REGULATION (CRG)|European Nucleotide Archive,CENTER FOR GENOMIC REGULATION (CRG),1,0.34147,,0.26829,,0.99993,,0.16666,,1537,,T,,long read,ont,ont,3prime,poly_a,unknown,bulk,unknown,unknown,,Spain,2022-10-10,Blastula,Embryo,Undetermined,Embryo Imprecise
24546,ERR964671,ERX1041634,ERS792101,ERP011038,PRJEB9889,The Zebrafish transcriptome during early development,ena-STUDY-KAROLINSKA INSTITUTET DEPARTMENT OF BIOSCIENCES AND NUTRITION-15-07-2015-15:13:51:747-22,Other,Zebrafish has emerged as a model organism to investigate vertebrate development and human genetic diseases. However currently zebrafish annotation is still ongoing and clearly not sufficed therefore providing opportunity for novel transcript finding. With the introduction of massive parallel sequencing whole transcriptome investigations became possible through assembling entire transcriptome from overlapped sequencing reads. In the study we were aiming to discover novel transcribed regions NTRs using data from RNA sequencing. We have developed an in house bioinformatics pipeline for NTR discovery. Using the pipeline we detected 165 putative NTRs which could involve in early zebrafish development and not annotated anywhere. Six randomly selected NTRs were successfully validated experimentally using RT PCR. These NTRs provided new candidates for zebrafish transcriptome studies and zebrafish genome annotation.,,,,KI BN JKE DRERIO RNASEQ,SAMEA3484816,KAROLINSKA INSTITUTET DEPARTMENT OF BIOSCIENCES AND NUTRITION,ENA first public:2015 07 16|ENA last update:2015 07 15|External Id:SAMEA3484816|INSDC center alias:KAROLINSKA INSTITUTET DEPARTMENT OF BIOSCIENCES AND NUTRITION|INSDC center name:KAROLINSKA INSTITUTET DEPARTMENT OF BIOSCIENCES AND NUTRITION|INSDC first public:2015 07 16T15:54:30Z|INSDC last update:2015 07 15T15:02:15Z|INSDC status:public|Submitter Id:KI BN JKE DRERIO RNASEQ 2009 1cell|common name:zebrafish|dev stage:1cell|sample name:KI BN JKE DRERIO RNASEQ 2009 1cell|strain:Tuebingen,,,,,,,,,AB SOLiD System 3.0 sequencing,ena EXPERIMENT KAROLINSKA INSTITUTET DEPARTMENT OF BIOSCIENCES AND NUTRITION 15 07 2015 15:13:47:872 5,unspecified,1,,,RNA-Seq,TRANSCRIPTOMIC,cDNA,SINGLE,ABI_SOLID,AB SOLiD System 3.0,,ERP011038,AB SOLiD System 3.0 sequencing,ENA FIRST PUBLIC:2015 07 16|ENA LAST UPDATE:2018 11 16,KI-BN-JKE-DRERIO-RNASEQ-20091014-1cell_F3.csfasta.gz KI-BN-JKE-DRERIO-RNASEQ-20091014-1cell_F3_QV.qual.gz,SOLiD_native SOLiD_native,2625510200.0,52510204.0,ena RUN KAROLINSKA INSTITUTET DEPARTMENT OF BIOSCIENCES AND NUTRITION 15 07 2015 15:13:47:872 5,0:50,0:677149824;1:606769571;2:761187530;3:578170290;.:2232985,50,,,,,,,,,ERX1041634,ERS792101,ERA458495,KAROLINSKA INSTITUTET DEPARTMENT OF BIOSCIENCES AND NUTRITION|European Nucleotide Archive,KAROLINSKA INSTITUTET DEPARTMENT OF BIOSCIENCES AND NUTRITION,1,0.71662,,0.0994,,0.91644,,0.74578,,50,,B,,usable mapping rate,legacy,early,full_length,random_priming,unknown,bulk,unknown,unknown,,Sweden,2015-07-15,Zygote,Embryo,Undetermined,Embryo Imprecise
24547,ERR964670,ERX1041633,ERS792104,ERP011038,PRJEB9889,The Zebrafish transcriptome during early development,ena-STUDY-KAROLINSKA INSTITUTET DEPARTMENT OF BIOSCIENCES AND NUTRITION-15-07-2015-15:13:51:747-22,Other,Zebrafish has emerged as a model organism to investigate vertebrate development and human genetic diseases. However currently zebrafish annotation is still ongoing and clearly not sufficed therefore providing opportunity for novel transcript finding. With the introduction of massive parallel sequencing whole transcriptome investigations became possible through assembling entire transcriptome from overlapped sequencing reads. In the study we were aiming to discover novel transcribed regions NTRs using data from RNA sequencing. We have developed an in house bioinformatics pipeline for NTR discovery. Using the pipeline we detected 165 putative NTRs which could involve in early zebrafish development and not annotated anywhere. Six randomly selected NTRs were successfully validated experimentally using RT PCR. These NTRs provided new candidates for zebrafish transcriptome studies and zebrafish genome annotation.,,,,KI BN JKE DRERIO RNASEQ,SAMEA3484819,KAROLINSKA INSTITUTET DEPARTMENT OF BIOSCIENCES AND NUTRITION,ENA first public:2015 07 16|ENA last update:2015 07 15|External Id:SAMEA3484819|INSDC center alias:KAROLINSKA INSTITUTET DEPARTMENT OF BIOSCIENCES AND NUTRITION|INSDC center name:KAROLINSKA INSTITUTET DEPARTMENT OF BIOSCIENCES AND NUTRITION|INSDC first public:2015 07 16T15:54:30Z|INSDC last update:2015 07 15T15:02:15Z|INSDC status:public|Submitter Id:KI BN JKE DRERIO RNASEQ 2009 50epiboly|common name:zebrafish|dev stage:50% epiboly|sample name:KI BN JKE DRERIO RNASEQ 2009 50epiboly|strain:Tuebingen,,,,,,,,,AB SOLiD System 3.0 sequencing,ena EXPERIMENT KAROLINSKA INSTITUTET DEPARTMENT OF BIOSCIENCES AND NUTRITION 15 07 2015 15:13:47:871 4,unspecified,1,,,RNA-Seq,TRANSCRIPTOMIC,cDNA,SINGLE,ABI_SOLID,AB SOLiD System 3.0,,ERP011038,AB SOLiD System 3.0 sequencing,ENA FIRST PUBLIC:2015 07 16|ENA LAST UPDATE:2018 11 16,KI-BN-JKE-DRERIO-RNASEQ-20090709-50epiboly_F3.csfasta.gz KI-BN-JKE-DRERIO-RNASEQ-20090709-50epiboly_F3_QV.qual.gz,SOLiD_native SOLiD_native,5325942150.0,106518843.0,ena RUN KAROLINSKA INSTITUTET DEPARTMENT OF BIOSCIENCES AND NUTRITION 15 07 2015 15:13:47:871 4,0:50,0:1376469323;1:1227617853;2:1499234750;3:1210700143;.:11920081,50,,,,,,,,,ERX1041633,ERS792104,ERA458495,KAROLINSKA INSTITUTET DEPARTMENT OF BIOSCIENCES AND NUTRITION|European Nucleotide Archive,KAROLINSKA INSTITUTET DEPARTMENT OF BIOSCIENCES AND NUTRITION,1,0.7059,,0.10511,,0.91492,,0.75125,,50,,B,,usable mapping rate,legacy,early,full_length,random_priming,unknown,bulk,unknown,unknown,,Sweden,2015-07-15,Gastrula,Embryo,Undetermined,Embryo Imprecise
24548,ERR964669,ERX1041632,ERS792103,ERP011038,PRJEB9889,The Zebrafish transcriptome during early development,ena-STUDY-KAROLINSKA INSTITUTET DEPARTMENT OF BIOSCIENCES AND NUTRITION-15-07-2015-15:13:51:747-22,Other,Zebrafish has emerged as a model organism to investigate vertebrate development and human genetic diseases. However currently zebrafish annotation is still ongoing and clearly not sufficed therefore providing opportunity for novel transcript finding. With the introduction of massive parallel sequencing whole transcriptome investigations became possible through assembling entire transcriptome from overlapped sequencing reads. In the study we were aiming to discover novel transcribed regions NTRs using data from RNA sequencing. We have developed an in house bioinformatics pipeline for NTR discovery. Using the pipeline we detected 165 putative NTRs which could involve in early zebrafish development and not annotated anywhere. Six randomly selected NTRs were successfully validated experimentally using RT PCR. These NTRs provided new candidates for zebrafish transcriptome studies and zebrafish genome annotation.,,,,KI BN JKE DRERIO RNASEQ,SAMEA3484818,KAROLINSKA INSTITUTET DEPARTMENT OF BIOSCIENCES AND NUTRITION,ENA first public:2015 07 16|ENA last update:2015 07 15|External Id:SAMEA3484818|INSDC center alias:KAROLINSKA INSTITUTET DEPARTMENT OF BIOSCIENCES AND NUTRITION|INSDC center name:KAROLINSKA INSTITUTET DEPARTMENT OF BIOSCIENCES AND NUTRITION|INSDC first public:2015 07 16T15:54:30Z|INSDC last update:2015 07 15T15:02:15Z|INSDC status:public|Submitter Id:KI BN JKE DRERIO RNASEQ 2009 512cell|common name:zebrafish|dev stage:512 cell|sample name:KI BN JKE DRERIO RNASEQ 2009 512cell|strain:Tuebingen,,,,,,,,,AB SOLiD System 3.0 sequencing,ena EXPERIMENT KAROLINSKA INSTITUTET DEPARTMENT OF BIOSCIENCES AND NUTRITION 15 07 2015 15:13:47:871 3,unspecified,1,,,RNA-Seq,TRANSCRIPTOMIC,cDNA,SINGLE,ABI_SOLID,AB SOLiD System 3.0,,ERP011038,AB SOLiD System 3.0 sequencing,ENA FIRST PUBLIC:2015 07 16|ENA LAST UPDATE:2018 11 16,KI-BN-JKE-DRERIO-RNASEQ-20090709-512cell_F3.csfasta.gz KI-BN-JKE-DRERIO-RNASEQ-20090709-512cell_F3_QV.qual.gz,SOLiD_native SOLiD_native,5452772750.0,109055455.0,ena RUN KAROLINSKA INSTITUTET DEPARTMENT OF BIOSCIENCES AND NUTRITION 15 07 2015 15:13:47:871 3,0:50,0:1391108289;1:1312099760;2:1551659810;3:1179923010;.:17981881,50,,,,,,,,,ERX1041632,ERS792103,ERA458495,KAROLINSKA INSTITUTET DEPARTMENT OF BIOSCIENCES AND NUTRITION|European Nucleotide Archive,KAROLINSKA INSTITUTET DEPARTMENT OF BIOSCIENCES AND NUTRITION,1,0.73133,,0.07897,,0.88057,,0.63645,,50,,B,,usable mapping rate,legacy,early,full_length,random_priming,unknown,bulk,unknown,unknown,,Sweden,2015-07-15,Blastula,Embryo,Undetermined,Embryo Imprecise
24549,ERR964667,ERX1041630,ERS792101,ERP011038,PRJEB9889,The Zebrafish transcriptome during early development,ena-STUDY-KAROLINSKA INSTITUTET DEPARTMENT OF BIOSCIENCES AND NUTRITION-15-07-2015-15:13:51:747-22,Other,Zebrafish has emerged as a model organism to investigate vertebrate development and human genetic diseases. However currently zebrafish annotation is still ongoing and clearly not sufficed therefore providing opportunity for novel transcript finding. With the introduction of massive parallel sequencing whole transcriptome investigations became possible through assembling entire transcriptome from overlapped sequencing reads. In the study we were aiming to discover novel transcribed regions NTRs using data from RNA sequencing. We have developed an in house bioinformatics pipeline for NTR discovery. Using the pipeline we detected 165 putative NTRs which could involve in early zebrafish development and not annotated anywhere. Six randomly selected NTRs were successfully validated experimentally using RT PCR. These NTRs provided new candidates for zebrafish transcriptome studies and zebrafish genome annotation.,,,,KI BN JKE DRERIO RNASEQ,SAMEA3484816,KAROLINSKA INSTITUTET DEPARTMENT OF BIOSCIENCES AND NUTRITION,ENA first public:2015 07 16|ENA last update:2015 07 15|External Id:SAMEA3484816|INSDC center alias:KAROLINSKA INSTITUTET DEPARTMENT OF BIOSCIENCES AND NUTRITION|INSDC center name:KAROLINSKA INSTITUTET DEPARTMENT OF BIOSCIENCES AND NUTRITION|INSDC first public:2015 07 16T15:54:30Z|INSDC last update:2015 07 15T15:02:15Z|INSDC status:public|Submitter Id:KI BN JKE DRERIO RNASEQ 2009 1cell|common name:zebrafish|dev stage:1cell|sample name:KI BN JKE DRERIO RNASEQ 2009 1cell|strain:Tuebingen,,,,,,,,,AB SOLiD System 3.0 sequencing,ena EXPERIMENT KAROLINSKA INSTITUTET DEPARTMENT OF BIOSCIENCES AND NUTRITION 15 07 2015 15:13:47:870 1,unspecified,1,,,RNA-Seq,TRANSCRIPTOMIC,cDNA,SINGLE,ABI_SOLID,AB SOLiD System 3.0,,ERP011038,AB SOLiD System 3.0 sequencing,ENA FIRST PUBLIC:2015 07 16|ENA LAST UPDATE:2018 11 16,KI-BN-JKE-DRERIO-RNASEQ-20090709-1cell_F3.csfasta.gz KI-BN-JKE-DRERIO-RNASEQ-20090709-1cell_F3_QV.qual.gz,SOLiD_native SOLiD_native,5717685400.0,114353708.0,ena RUN KAROLINSKA INSTITUTET DEPARTMENT OF BIOSCIENCES AND NUTRITION 15 07 2015 15:13:47:870 1,0:50,0:1643444976;1:1261570333;2:1504304496;3:1282815913;.:25549682,50,,,,,,,,,ERX1041630,ERS792101,ERA458495,KAROLINSKA INSTITUTET DEPARTMENT OF BIOSCIENCES AND NUTRITION|European Nucleotide Archive,KAROLINSKA INSTITUTET DEPARTMENT OF BIOSCIENCES AND NUTRITION,1,0.72274,,0.11151,,0.92348,,0.71904,,50,,B,,usable mapping rate,legacy,early,full_length,random_priming,unknown,bulk,unknown,unknown,,Sweden,2015-07-15,Zygote,Embryo,Undetermined,Embryo Imprecise
24550,ERR964668,ERX1041631,ERS792102,ERP011038,PRJEB9889,The Zebrafish transcriptome during early development,ena-STUDY-KAROLINSKA INSTITUTET DEPARTMENT OF BIOSCIENCES AND NUTRITION-15-07-2015-15:13:51:747-22,Other,Zebrafish has emerged as a model organism to investigate vertebrate development and human genetic diseases. However currently zebrafish annotation is still ongoing and clearly not sufficed therefore providing opportunity for novel transcript finding. With the introduction of massive parallel sequencing whole transcriptome investigations became possible through assembling entire transcriptome from overlapped sequencing reads. In the study we were aiming to discover novel transcribed regions NTRs using data from RNA sequencing. We have developed an in house bioinformatics pipeline for NTR discovery. Using the pipeline we detected 165 putative NTRs which could involve in early zebrafish development and not annotated anywhere. Six randomly selected NTRs were successfully validated experimentally using RT PCR. These NTRs provided new candidates for zebrafish transcriptome studies and zebrafish genome annotation.,,,,KI BN JKE DRERIO RNASEQ,SAMEA3484817,KAROLINSKA INSTITUTET DEPARTMENT OF BIOSCIENCES AND NUTRITION,ENA first public:2015 07 16|ENA last update:2015 07 15|External Id:SAMEA3484817|INSDC center alias:KAROLINSKA INSTITUTET DEPARTMENT OF BIOSCIENCES AND NUTRITION|INSDC center name:KAROLINSKA INSTITUTET DEPARTMENT OF BIOSCIENCES AND NUTRITION|INSDC first public:2015 07 16T15:54:30Z|INSDC last update:2015 07 15T15:02:15Z|INSDC status:public|Submitter Id:KI BN JKE DRERIO RNASEQ 2009 16cell|common name:zebrafish|dev stage:16 cell|sample name:KI BN JKE DRERIO RNASEQ 2009 16cell|strain:Tuebingen,,,,,,,,,AB SOLiD System 3.0 sequencing,ena EXPERIMENT KAROLINSKA INSTITUTET DEPARTMENT OF BIOSCIENCES AND NUTRITION 15 07 2015 15:13:47:870 2,unspecified,1,,,RNA-Seq,TRANSCRIPTOMIC,cDNA,SINGLE,ABI_SOLID,AB SOLiD System 3.0,,ERP011038,AB SOLiD System 3.0 sequencing,ENA FIRST PUBLIC:2015 07 16|ENA LAST UPDATE:2018 11 16,KI-BN-JKE-DRERIO-RNASEQ-20090709-16cell_F3.csfasta.gz KI-BN-JKE-DRERIO-RNASEQ-20090709-16cell_F3_QV.qual.gz,SOLiD_native SOLiD_native,5278508300.0,105570166.0,ena RUN KAROLINSKA INSTITUTET DEPARTMENT OF BIOSCIENCES AND NUTRITION 15 07 2015 15:13:47:871 2,0:50,0:1410981717;1:1203936808;2:1415708111;3:1223403795;.:24477869,50,,,,,,,,,ERX1041631,ERS792102,ERA458495,KAROLINSKA INSTITUTET DEPARTMENT OF BIOSCIENCES AND NUTRITION|European Nucleotide Archive,KAROLINSKA INSTITUTET DEPARTMENT OF BIOSCIENCES AND NUTRITION,1,0.71371,,0.09346,,0.91539,,0.73015,,50,,B,,usable mapping rate,legacy,early,full_length,random_priming,unknown,bulk,unknown,unknown,,Sweden,2015-07-15,Cleavage,Embryo,Undetermined,Embryo Imprecise
24551,ERR964674,ERX1041637,ERS792104,ERP011038,PRJEB9889,The Zebrafish transcriptome during early development,ena-STUDY-KAROLINSKA INSTITUTET DEPARTMENT OF BIOSCIENCES AND NUTRITION-15-07-2015-15:13:51:747-22,Other,Zebrafish has emerged as a model organism to investigate vertebrate development and human genetic diseases. However currently zebrafish annotation is still ongoing and clearly not sufficed therefore providing opportunity for novel transcript finding. With the introduction of massive parallel sequencing whole transcriptome investigations became possible through assembling entire transcriptome from overlapped sequencing reads. In the study we were aiming to discover novel transcribed regions NTRs using data from RNA sequencing. We have developed an in house bioinformatics pipeline for NTR discovery. Using the pipeline we detected 165 putative NTRs which could involve in early zebrafish development and not annotated anywhere. Six randomly selected NTRs were successfully validated experimentally using RT PCR. These NTRs provided new candidates for zebrafish transcriptome studies and zebrafish genome annotation.,,,,KI BN JKE DRERIO RNASEQ,SAMEA3484819,KAROLINSKA INSTITUTET DEPARTMENT OF BIOSCIENCES AND NUTRITION,ENA first public:2015 07 16|ENA last update:2015 07 15|External Id:SAMEA3484819|INSDC center alias:KAROLINSKA INSTITUTET DEPARTMENT OF BIOSCIENCES AND NUTRITION|INSDC center name:KAROLINSKA INSTITUTET DEPARTMENT OF BIOSCIENCES AND NUTRITION|INSDC first public:2015 07 16T15:54:30Z|INSDC last update:2015 07 15T15:02:15Z|INSDC status:public|Submitter Id:KI BN JKE DRERIO RNASEQ 2009 50epiboly|common name:zebrafish|dev stage:50% epiboly|sample name:KI BN JKE DRERIO RNASEQ 2009 50epiboly|strain:Tuebingen,,,,,,,,,AB SOLiD System 3.0 sequencing,ena EXPERIMENT KAROLINSKA INSTITUTET DEPARTMENT OF BIOSCIENCES AND NUTRITION 15 07 2015 15:13:47:873 8,unspecified,1,,,RNA-Seq,TRANSCRIPTOMIC,cDNA,SINGLE,ABI_SOLID,AB SOLiD System 3.0,,ERP011038,AB SOLiD System 3.0 sequencing,ENA FIRST PUBLIC:2015 07 16|ENA LAST UPDATE:2018 11 16,KI-BN-JKE-DRERIO-RNASEQ-20091014-50epiboly_F3.csfasta.gz KI-BN-JKE-DRERIO-RNASEQ-20091014-50epiboly_F3_QV.qual.gz,SOLiD_native SOLiD_native,2541596650.0,50831933.0,ena RUN KAROLINSKA INSTITUTET DEPARTMENT OF BIOSCIENCES AND NUTRITION 15 07 2015 15:13:47:873 8,0:50,0:670988333;1:585266057;2:708634642;3:574052618;.:2655000,50,,,,,,,,,ERX1041637,ERS792104,ERA458495,KAROLINSKA INSTITUTET DEPARTMENT OF BIOSCIENCES AND NUTRITION|European Nucleotide Archive,KAROLINSKA INSTITUTET DEPARTMENT OF BIOSCIENCES AND NUTRITION,1,0.72135,,0.10529,,0.90997,,0.76049,,50,,B,,usable mapping rate,legacy,early,full_length,random_priming,unknown,bulk,unknown,unknown,,Sweden,2015-07-15,Gastrula,Embryo,Undetermined,Embryo Imprecise
24552,ERR964673,ERX1041636,ERS792103,ERP011038,PRJEB9889,The Zebrafish transcriptome during early development,ena-STUDY-KAROLINSKA INSTITUTET DEPARTMENT OF BIOSCIENCES AND NUTRITION-15-07-2015-15:13:51:747-22,Other,Zebrafish has emerged as a model organism to investigate vertebrate development and human genetic diseases. However currently zebrafish annotation is still ongoing and clearly not sufficed therefore providing opportunity for novel transcript finding. With the introduction of massive parallel sequencing whole transcriptome investigations became possible through assembling entire transcriptome from overlapped sequencing reads. In the study we were aiming to discover novel transcribed regions NTRs using data from RNA sequencing. We have developed an in house bioinformatics pipeline for NTR discovery. Using the pipeline we detected 165 putative NTRs which could involve in early zebrafish development and not annotated anywhere. Six randomly selected NTRs were successfully validated experimentally using RT PCR. These NTRs provided new candidates for zebrafish transcriptome studies and zebrafish genome annotation.,,,,KI BN JKE DRERIO RNASEQ,SAMEA3484818,KAROLINSKA INSTITUTET DEPARTMENT OF BIOSCIENCES AND NUTRITION,ENA first public:2015 07 16|ENA last update:2015 07 15|External Id:SAMEA3484818|INSDC center alias:KAROLINSKA INSTITUTET DEPARTMENT OF BIOSCIENCES AND NUTRITION|INSDC center name:KAROLINSKA INSTITUTET DEPARTMENT OF BIOSCIENCES AND NUTRITION|INSDC first public:2015 07 16T15:54:30Z|INSDC last update:2015 07 15T15:02:15Z|INSDC status:public|Submitter Id:KI BN JKE DRERIO RNASEQ 2009 512cell|common name:zebrafish|dev stage:512 cell|sample name:KI BN JKE DRERIO RNASEQ 2009 512cell|strain:Tuebingen,,,,,,,,,AB SOLiD System 3.0 sequencing,ena EXPERIMENT KAROLINSKA INSTITUTET DEPARTMENT OF BIOSCIENCES AND NUTRITION 15 07 2015 15:13:47:872 7,unspecified,1,,,RNA-Seq,TRANSCRIPTOMIC,cDNA,SINGLE,ABI_SOLID,AB SOLiD System 3.0,,ERP011038,AB SOLiD System 3.0 sequencing,ENA FIRST PUBLIC:2015 07 16|ENA LAST UPDATE:2018 11 16,KI-BN-JKE-DRERIO-RNASEQ-20091014-512cell_F3.csfasta.gz KI-BN-JKE-DRERIO-RNASEQ-20091014-512cell_F3_QV.qual.gz,SOLiD_native SOLiD_native,2027760000.0,40555200.0,ena RUN KAROLINSKA INSTITUTET DEPARTMENT OF BIOSCIENCES AND NUTRITION 15 07 2015 15:13:47:872 7,0:50,0:511413081;1:492642968;2:594959353;3:426692118;.:2052480,50,,,,,,,,,ERX1041636,ERS792103,ERA458495,KAROLINSKA INSTITUTET DEPARTMENT OF BIOSCIENCES AND NUTRITION|European Nucleotide Archive,KAROLINSKA INSTITUTET DEPARTMENT OF BIOSCIENCES AND NUTRITION,1,0.77106,,0.08154,,0.85675,,0.64875,,50,,B,,usable mapping rate,legacy,early,full_length,random_priming,unknown,bulk,unknown,unknown,,Sweden,2015-07-15,Blastula,Embryo,Undetermined,Embryo Imprecise
24553,ERR964672,ERX1041635,ERS792102,ERP011038,PRJEB9889,The Zebrafish transcriptome during early development,ena-STUDY-KAROLINSKA INSTITUTET DEPARTMENT OF BIOSCIENCES AND NUTRITION-15-07-2015-15:13:51:747-22,Other,Zebrafish has emerged as a model organism to investigate vertebrate development and human genetic diseases. However currently zebrafish annotation is still ongoing and clearly not sufficed therefore providing opportunity for novel transcript finding. With the introduction of massive parallel sequencing whole transcriptome investigations became possible through assembling entire transcriptome from overlapped sequencing reads. In the study we were aiming to discover novel transcribed regions NTRs using data from RNA sequencing. We have developed an in house bioinformatics pipeline for NTR discovery. Using the pipeline we detected 165 putative NTRs which could involve in early zebrafish development and not annotated anywhere. Six randomly selected NTRs were successfully validated experimentally using RT PCR. These NTRs provided new candidates for zebrafish transcriptome studies and zebrafish genome annotation.,,,,KI BN JKE DRERIO RNASEQ,SAMEA3484817,KAROLINSKA INSTITUTET DEPARTMENT OF BIOSCIENCES AND NUTRITION,ENA first public:2015 07 16|ENA last update:2015 07 15|External Id:SAMEA3484817|INSDC center alias:KAROLINSKA INSTITUTET DEPARTMENT OF BIOSCIENCES AND NUTRITION|INSDC center name:KAROLINSKA INSTITUTET DEPARTMENT OF BIOSCIENCES AND NUTRITION|INSDC first public:2015 07 16T15:54:30Z|INSDC last update:2015 07 15T15:02:15Z|INSDC status:public|Submitter Id:KI BN JKE DRERIO RNASEQ 2009 16cell|common name:zebrafish|dev stage:16 cell|sample name:KI BN JKE DRERIO RNASEQ 2009 16cell|strain:Tuebingen,,,,,,,,,AB SOLiD System 3.0 sequencing,ena EXPERIMENT KAROLINSKA INSTITUTET DEPARTMENT OF BIOSCIENCES AND NUTRITION 15 07 2015 15:13:47:872 6,unspecified,1,,,RNA-Seq,TRANSCRIPTOMIC,cDNA,SINGLE,ABI_SOLID,AB SOLiD System 3.0,,ERP011038,AB SOLiD System 3.0 sequencing,ENA FIRST PUBLIC:2015 07 16|ENA LAST UPDATE:2018 11 16,KI-BN-JKE-DRERIO-RNASEQ-20091014-16cell_F3.csfasta.gz KI-BN-JKE-DRERIO-RNASEQ-20091014-16cell_F3_QV.qual.gz,SOLiD_native SOLiD_native,2719433200.0,54388664.0,ena RUN KAROLINSKA INSTITUTET DEPARTMENT OF BIOSCIENCES AND NUTRITION 15 07 2015 15:13:47:872 6,0:50,0:699731678;1:628745158;2:754903505;3:633574679;.:2478180,50,,,,,,,,,ERX1041635,ERS792102,ERA458495,KAROLINSKA INSTITUTET DEPARTMENT OF BIOSCIENCES AND NUTRITION|European Nucleotide Archive,KAROLINSKA INSTITUTET DEPARTMENT OF BIOSCIENCES AND NUTRITION,1,0.73214,,0.09566,,0.90836,,0.74043,,50,,B,,usable mapping rate,legacy,early,full_length,random_priming,unknown,bulk,unknown,unknown,,Sweden,2015-07-15,Cleavage,Embryo,Undetermined,Embryo Imprecise
29719,SRR27485664,SRX23156885,SRS20107306,SRP482074,PRJNA1061456,tRAM seq: tRNA abundance and modification analysis during zebrafish embryo development,PRJNA1061456,Other,,,,,,eggs R3,,strain:TLAB fish|isolate:NA|breed:cross of zebrafish AB and the natural variant TL Tupfel Longfin|cultivar:NA|ecotype:NA|dev stage:activated eggs|collection date:2022|geo loc name:Austria|sex:mixed|tissue:activated eggs|replicate:3|BioSampleModel:Model organism or animal,,,,,,,,,mRNA seq of zebrafish: eggs rep4,EV06009,EV06009,RNA was extracted with Trizol and processed with QuantSeq three prime mRNA Seq Library Prep Kit FWD for Illumina Lexogen. 500 ng total RNA per sample. Single indexed QuantSeq libraries were QC checked on a Bioanalyzer 2100 Agilent using a High Sensitivity DNA Kit for correct insert size and quantified using Qubit dsDNA HS Assay Invitrogen. Pooled libraries were sequenced on a NextSeq500 instrument Illumina in 1x75bp single end sequencing mode,,,RNA-Seq,TRANSCRIPTOMIC,Oligo-dT,SINGLE,ILLUMINA,NextSeq 500,,SRP482074,,,EV06009.R1.fastq.gz,fastq,809138488.0,10734286.0,EV06009.R1.fastq.gz,0:75.38,A:236901398;C:156814193;G:179647937;T:235732894;N:42066,75,,,,236901398,156814193,179647937,235732894,42066,SRX23156885,SRS20107306,SRA1783314,Medical University of Vienna|Cell and Developmental Biology,Medical University of Vienna,1,0.92159,,0.07516,,0.837,,0.7566,,69,,B,,usable mapping rate,illumina,nextseq,3prime,poly_a,lexogen,bulk,unknown,unknown,,Austria,2024-01-11,Undetermined,Embryo,Undetermined,Embryo Imprecise
29730,SRR27485675,SRX23156874,SRS20107295,SRP482074,PRJNA1061456,tRAM seq: tRNA abundance and modification analysis during zebrafish embryo development,PRJNA1061456,Other,,,,,,eggs R2,,strain:TLAB fish|isolate:NA|breed:cross of zebrafish AB and the natural variant TL Tupfel Longfin|cultivar:NA|ecotype:NA|dev stage:activated eggs|collection date:2022|geo loc name:Austria|sex:mixed|tissue:activated eggs|replicate:2|BioSampleModel:Model organism or animal,,,,,,,,,mRNA seq of zebrafish: eggs rep4,EV06002,EV06002,RNA was extracted with Trizol and processed with QuantSeq three prime mRNA Seq Library Prep Kit FWD for Illumina Lexogen. 500 ng total RNA per sample. Single indexed QuantSeq libraries were QC checked on a Bioanalyzer 2100 Agilent using a High Sensitivity DNA Kit for correct insert size and quantified using Qubit dsDNA HS Assay Invitrogen. Pooled libraries were sequenced on a NextSeq500 instrument Illumina in 1x75bp single end sequencing mode,,,RNA-Seq,TRANSCRIPTOMIC,Oligo-dT,SINGLE,ILLUMINA,NextSeq 500,,SRP482074,,,EV06002.R1.fastq.gz,fastq,632849068.0,8404028.0,EV06002.R1.fastq.gz,0:75.30,A:194183801;C:123105421;G:139266843;T:176255048;N:37955,75,,,,194183801,123105421,139266843,176255048,37955,SRX23156874,SRS20107295,SRA1783314,Medical University of Vienna|Cell and Developmental Biology,Medical University of Vienna,1,0.88896,,0.09385,,0.81864,,0.73385,,75,,B,,usable mapping rate,illumina,nextseq,3prime,poly_a,lexogen,bulk,unknown,unknown,,Austria,2024-01-11,Undetermined,Embryo,Undetermined,Embryo Imprecise
29737,SRR27477297,SRX23148650,SRS20099368,SRP482074,PRJNA1061456,tRAM seq: tRNA abundance and modification analysis during zebrafish embryo development,PRJNA1061456,Other,,,,,,eggs R4,,strain:TLAB fish|isolate:NA|breed:cross of zebrafish AB and the natural variant TL Tupfel Longfin|cultivar:NA|ecotype:NA|dev stage:activated eggs|collection date:2022|geo loc name:Austria|sex:mixed|tissue:activated eggs|replicate:4|BioSampleModel:Model organism or animal,,,,,,,,,mRNA seq of zebrafish: eggs rep4,EV09002,EV09002,RNA was extracted with Trizol and processed with QuantSeq three prime mRNA Seq Library Prep Kit FWD for Illumina Lexogen. 500 ng total RNA per sample. Single indexed QuantSeq libraries were QC checked on a Bioanalyzer 2100 Agilent using a High Sensitivity DNA Kit for correct insert size and quantified using Qubit dsDNA HS Assay Invitrogen. Pooled libraries were sequenced on a NextSeq500 instrument Illumina in 1x75bp single end sequencing mode,,,RNA-Seq,TRANSCRIPTOMIC,Oligo-dT,SINGLE,ILLUMINA,NextSeq 500,,SRP482074,,,EV09002.R1.fastq.gz,fastq,546999929.0,7270092.0,EV09002.R1.fastq.gz,0:75.24,A:165415993;C:110874896;G:124384517;T:146294099;N:30424,75,,,,165415993,110874896,124384517,146294099,30424,SRX23148650,SRS20099368,SRA1782413,Medical University of Vienna|Cell and Developmental Biology,Medical University of Vienna,1,0.9065,,0.11883,,0.82231,,0.74466,,75,,B,,usable mapping rate,illumina,nextseq,3prime,poly_a,lexogen,bulk,unknown,unknown,,Austria,2024-01-10,Undetermined,Embryo,Undetermined,Embryo Imprecise
30658,SRR28054753,SRX23704452,SRS20534448,SRP491086,PRJNA1078753,Integrated mRNA and miRNA sequencing analyses unveil the underlying mechanism of tobacco pollutant induced developmental toxicity in zebrafish embryos,PRJNA1078753,Other,Tobacco pollutants are prevalent in the environment leading to inadvertent exposure of pregnant females. Studies of these pollutants' toxic effects on development have not fully elucidated the potential underlying mechanisms. Therefore in this study we aim at investigate the developmental toxicity induced by cigarette smoke extract CSE at concentrations of 0.25% 1% and 2.5% using a zebrafish embryo toxicity test and integrated transcriptomic analysis of microRNA miRNA and messenger RNA mRNA. The findings revealed that CSE caused developmental toxicity including increased mortality and decreased incubation rate in a dose dependent manner. Moreover CSE induced malformations and apoptosis specifically in the head and heart of zebrafish larvae. We used mRNA and miRNA sequencing analyses to compare changes in the expression of genes and miRNAs in zebrafish larvae. The bioinformatics analysis indicates that the mechanism underlying CSE induced developmental toxicity was associated with genetic repair impairment apoptosis disorder and lipid metabolism disturbance. The enrichment analysis and RT qPCR show that the ctsba gene plays a crucial function in embryo developmental apoptosis and the fads2 gene mainly regulates lipid metabolic toxicity. The results of this study improve the understanding of CSE induced developmental toxicity in zebrafish embryos and contribute insights into the formulation of novel preventive strategies against tobacco pollutants during early embryonic development.,,,,,S21K1230,,library ID:H 3|title:High 3|library strategy:OTHER|library source:METATRANSCRIPTIOMIC|library selection:other|library layout:paired|platform:ILLUMINA|instrument model:RNA seq|filetype:fastq|filename:S21K1230 rep1 1 URNA S74 L003 R1 001.fastq|filename2:S21K1230 rep1 1 URNA S74 L003 R2 001.fastq|host:missing|isolation source:missing|collection date:missing|geographic location:missing|latitude and longitude:missing|age:missing|breed:missing|cultivar:missing|dev stage:missing|ecotype:missing|isolate:missing|sex:missing|strain:missing|tissue:missing|BioSampleModel:Model organism or animal,,,,,,,,,High 3,H 3,H 3,missing,,,RNA-Seq,METATRANSCRIPTOMIC,other,SINGLE,ILLUMINA,Illumina NovaSeq 6000,,SRP491086,,,S21K1230_rep1_1_URNA_S74_L003_R1_001.fastq.gz S21K1230_rep1_1_URNA_S74_L003_R2_001.fastq.gz,fastq fastq,6117817800.0,20392726.0,S21K1230 rep1 1 URNA S74 L003 R1 001.fastq.gz,0:150 1:150,A:1635728688;C:1405168032;G:1464072107;T:1612834762;N:14211,150,150,,,1635728688,1405168032,1464072107,1612834762,14211,SRX23704452,SRS20534448,SRA1806456,The Second Affiliated Hospital of Shantou University Medical College|Department of Burns and Plastic Surgery,The Second Affiliated Hospital of Shantou University Medical College,,,,,,,,,,,,B,B,biological fallback assumption,illumina,novaseq_era,unknown,small_rna,unknown,bulk,unknown,unknown,,China,2024-02-22,Undetermined,Multi-stage,Undetermined,Undetermined
34961,SRR32588718,SRX27895233,SRS24266235,SRP568323,PRJNA1232602,Telomere to telomere genome assemblies for commonly used zebrafish laboratory strains,PRJNA1232602,Other,In this study Iso Seq was performed on different zebrafish body organs enabling a comprehensive view of organ specific transcriptomes. High quality PacBio Iso Seq long reads were generated from key zebrafish tissues including the brain testis liver eye muscle ovary inner ear and kidney to identify novel isoforms tissue specific transcripts and alternative splicing events. We also made available the Iso Seq data from embryos from different time points hpf 0 6 12 and 24. This dataset enhances gene annotation improves reference genome annotations and provides insights into zebrafish organ specific gene expression.,,,,Iso Seq RNA from Danio rerio,C2 F2 F IE,,strain:NHGRI2|isolate:Single paired cross|breed:Zebrafish|cultivar:wild type|ecotype:United States|age:9 month|dev stage:adult fish|collection date:2024 06|geo loc name:USA|sex:female|tissue:inner ear|BioSampleModel:Model organism or animal,,,,,,,,,Iso Seq RNA from inner ear,C2 F2 F IE,C2 F2 F IE,The long Read Sequencing libraries was sequenced using PacBio Sequel II,,,RNA-Seq,TRANSCRIPTOMIC,cDNA,SINGLE,PACBIO_SMRT,Sequel II,,SRP568323,,,m84270_240904_152521_s2.skera.flnc.fastq.gz,fastq,93609779073.0,46650644.0,m84270 240904 152521 s2.skera.flnc.fastq.gz,0:2006.61,A:27359819621;C:19471270902;G:20218480457;T:26560208093;N:0,2006,,,,27359819621,19471270902,20218480457,26560208093,0,SRX27895233,SRS24266235,SRA2089085,National Human Genome Research Institute|Translational and Functional Genomics Branch,National Human Genome Research Institute National Human Genome Research Institute,,,,,,,,,,,,T,,long read,pacbio,pacbio_modern,unknown,cdna_unspecified,unknown,bulk,unknown,unknown,,United States,2025-03-06,Adult,Adult,Undetermined,Undetermined
36504,SRR535848,SRX174964,SRS352998,SRP014772,PRJNA172016,Danio rerio strain:*AB Variation,PRJNA172016,Other,Forward genetic screens have elucidated molecular pathways required for innumerable aspects of life however identifying the causal mutations from such screens has long been the bottleneck in the process particularly in vertebrates. We have developed an RNA Seq based approach that identifies both the region of the genome linked to a mutation and candidate lesions that may be causal for the phenotype of interest. We show that our method successfully identifies zebrafish mutations that cause nonsense or missense changes to codons alter transcript splicing or alter gene expression levels. Furthermore we develop an online accessible or downloadable bioinformatics pipeline allowing for easy implementation of all steps of the method. Overall we show that RNA Seq is a fast reliable and cost effective method to map and identify mutations that will greatly facilitate the power of forward genetics in vertebrate models.,,,RNA seq data from Miller et al submitted. Data was generated in order to map ENU induced mutations in zebrafish. This data hox20 was created from 20 pooled hoxb1bb1219 fish that were the siblings of wt20.,Miller hox20.bam,Miller hox20.bam,,,,,,,,,,,Miller hox20.bam,Miller hox20.bam,1,50 bp Paired End,,,RNA-Seq,TRANSCRIPTOMIC,RT-PCR,SINGLE,ILLUMINA,Illumina HiSeq 2000,1800Application ReadForward1,SRP014772,,,hox20.bam,bam,2051648571.0,22151528.0,Miller hox20.bam,0:49 1:49,A:528770281;C:501621137;G:487051170;T:534176088;N:29895,49,49,,,528770281,501621137,487051170,534176088,29895,SRX174964,SRS352998,SRA056859,Fred Hutchinson Cancer Research Center|Moens,Fred Hutchinson Cancer Research Center,2,0.9629,0.96282,0.07314,0.07288,0.6714,0.67125,0.4665,0.4637,49,49,B,B,biological fallback assumption,illumina,hiseq_era,unknown,other,unknown,bulk,unknown,unknown,,United States,2012-11-30,Undetermined,Undetermined,Undetermined,Undetermined
36666,SRR800043,SRX257153,SRS405345,SRP020008,PRJNA193544,Danio rerio strain:Tubingen Epigenomics,PRJNA193544,Other,Early vertebrate embryos must achieve totipotency and prepare for zygotic genome activation ZGA. To better understand we determined DNAme profiles of zebrafish gametes multiple embryo stages flanking ZGA and somatic muscle and compared them to gene activity and histone modifications. First sperm chromatin patterns are virtually identical to those at ZGA. Unexpectedly in the oocyte many genes important for germline functions ie. piwil1 or early development ie. hox genes are DNA methylated. Remarkably these maternal loci are demethylated during zygotic/cleavage stages to precisely the state observed in sperm even in parthenogenetic embryos lacking a replicating paternal genome. Furthermore this cohort constitutes the genes/loci that acquire DNAme during development ie. ZGA to muscle. Finally DNA methyltransferase inhibition experiments suggest that DNAme silences particular gene/chromatin cohorts at ZGA preventing their precocious expression. Thus zebrafish achieve a 'totipotent' chromatin state at ZGA through paternal genome competency and maternal genome DNAme reprogramming.,,pubmed:23663776,Total RNA was extracted using Qiagen AllPrep DNA/RNA/Protein mini kit Cat # 80004 ribosomal RNA was depleted using RiboMinus kit A10837 08 Eukaryote Kit followed by directional RNA library preparation according to Illumina's standard protocol. Detailed experimental procedures and bioinformatics analysis can be found in the supplemental method section of the paper.,Generic sample from Danio rerio,sphere RNAseq totalRNARibominus,,strain:Tubingen|label:PE: paired end SE: single end|development stage:sphere,,,,,,,,,sphere RNAseq totalRNARibominus,sphere RNAseq totalRNARibominus,7986X2,Total RNA was extracted using Qiagen AllPrep DNA/RNA/Protein mini kit Cat # 80004 ribosomal RNA was depleted using RiboMinus kit A10837 08 Eukaryote Kit followed by directional RNA library preparation according to Illumina's standard protocol. Detailed experimental procedures and bioinformatics analysis can be found in the supplemental method section of the paper.,,,RNA-Seq,TRANSCRIPTOMIC,RT-PCR,SINGLE,ILLUMINA,Illumina HiSeq 2000,500Application ReadForward1,SRP020008,,,sphere_RNAseq_totalRNARibominus_SE_7986X2_110510_SN141_0338_AB06MWABXX_7.txt.gz,Illumina native,3029181300.0,60583626.0,7986X2 110510 SN141 0338 AB06MWABXX 7,0:50,A:768949744;C:733340278;G:903149841;T:623482299;N:259138,50,,,,768949744,733340278,903149841,623482299,259138,SRX257153,SRS405345,SRA072148,University of Utah|Brad Cairns Lab,University of Utah,1,0.83515,,0.15524,,0.81209,,0.81031,,50,,B,,usable mapping rate,illumina,hiseq_era,unknown,rrna_depletion,unknown,bulk,unknown,unknown,,United States,2015-07-22,Blastula,Embryo,Undetermined,Embryo Imprecise
36667,SRR800044,SRX257153,SRS405345,SRP020008,PRJNA193544,Danio rerio strain:Tubingen Epigenomics,PRJNA193544,Other,Early vertebrate embryos must achieve totipotency and prepare for zygotic genome activation ZGA. To better understand we determined DNAme profiles of zebrafish gametes multiple embryo stages flanking ZGA and somatic muscle and compared them to gene activity and histone modifications. First sperm chromatin patterns are virtually identical to those at ZGA. Unexpectedly in the oocyte many genes important for germline functions ie. piwil1 or early development ie. hox genes are DNA methylated. Remarkably these maternal loci are demethylated during zygotic/cleavage stages to precisely the state observed in sperm even in parthenogenetic embryos lacking a replicating paternal genome. Furthermore this cohort constitutes the genes/loci that acquire DNAme during development ie. ZGA to muscle. Finally DNA methyltransferase inhibition experiments suggest that DNAme silences particular gene/chromatin cohorts at ZGA preventing their precocious expression. Thus zebrafish achieve a 'totipotent' chromatin state at ZGA through paternal genome competency and maternal genome DNAme reprogramming.,,pubmed:23663776,Total RNA was extracted using Qiagen AllPrep DNA/RNA/Protein mini kit Cat # 80004 ribosomal RNA was depleted using RiboMinus kit A10837 08 Eukaryote Kit followed by directional RNA library preparation according to Illumina's standard protocol. Detailed experimental procedures and bioinformatics analysis can be found in the supplemental method section of the paper.,Generic sample from Danio rerio,sphere RNAseq totalRNARibominus,,strain:Tubingen|label:PE: paired end SE: single end|development stage:sphere,,,,,,,,,sphere RNAseq totalRNARibominus,sphere RNAseq totalRNARibominus,7986X2,Total RNA was extracted using Qiagen AllPrep DNA/RNA/Protein mini kit Cat # 80004 ribosomal RNA was depleted using RiboMinus kit A10837 08 Eukaryote Kit followed by directional RNA library preparation according to Illumina's standard protocol. Detailed experimental procedures and bioinformatics analysis can be found in the supplemental method section of the paper.,,,RNA-Seq,TRANSCRIPTOMIC,RT-PCR,SINGLE,ILLUMINA,Illumina HiSeq 2000,500Application ReadForward1,SRP020008,,,sphere_RNAseq_totalRNARibominus_SE_7986X2_110606_SN141_0359_BD0D8KABXX_6.txt.gz,Illumina native,3947123500.0,78942470.0,7986X2 110606 SN141 0359 BD0D8KABXX 6,0:50,A:1000468440;C:957437794;G:1171831772;T:817292633;N:92861,50,,,,1000468440,957437794,1171831772,817292633,92861,SRX257153,SRS405345,SRA072148,University of Utah|Brad Cairns Lab,University of Utah,1,0.81283,,0.14906,,0.81335,,0.81698,,50,,B,,usable mapping rate,illumina,hiseq_era,unknown,rrna_depletion,unknown,bulk,unknown,unknown,,United States,2015-07-22,Blastula,Embryo,Undetermined,Embryo Imprecise
36668,SRR800037,SRX257149,SRS405106,SRP020008,PRJNA193544,Danio rerio strain:Tubingen Epigenomics,PRJNA193544,Other,Early vertebrate embryos must achieve totipotency and prepare for zygotic genome activation ZGA. To better understand we determined DNAme profiles of zebrafish gametes multiple embryo stages flanking ZGA and somatic muscle and compared them to gene activity and histone modifications. First sperm chromatin patterns are virtually identical to those at ZGA. Unexpectedly in the oocyte many genes important for germline functions ie. piwil1 or early development ie. hox genes are DNA methylated. Remarkably these maternal loci are demethylated during zygotic/cleavage stages to precisely the state observed in sperm even in parthenogenetic embryos lacking a replicating paternal genome. Furthermore this cohort constitutes the genes/loci that acquire DNAme during development ie. ZGA to muscle. Finally DNA methyltransferase inhibition experiments suggest that DNAme silences particular gene/chromatin cohorts at ZGA preventing their precocious expression. Thus zebrafish achieve a 'totipotent' chromatin state at ZGA through paternal genome competency and maternal genome DNAme reprogramming.,,pubmed:23663776,Total RNA was extracted using Qiagen AllPrep DNA/RNA/Protein mini kit Cat # 80004 ribosomal RNA was depleted using RiboMinus kit A10837 08 Eukaryote Kit followed by directional RNA library preparation according to Illumina's standard protocol. Detailed experimental procedures and bioinformatics analysis can be found in the supplemental method section of the paper.,Generic sample from Danio rerio,egg RNAseq totalRNARibominus,,strain:Tubingen|label:PE: paired end SE: single end|dev stage:egg,,,,,,,,,egg RNAseq totalRNARibominus,egg RNAseq totalRNARibominus,7784X1,Total RNA was extracted using Qiagen AllPrep DNA/RNA/Protein mini kit Cat # 80004 ribosomal RNA was depleted using RiboMinus kit A10837 08 Eukaryote Kit followed by directional RNA library preparation according to Illumina's standard protocol. Detailed experimental procedures and bioinformatics analysis can be found in the supplemental method section of the paper.,,,RNA-Seq,TRANSCRIPTOMIC,RT-PCR,SINGLE,ILLUMINA,Illumina HiSeq 2000,500Application ReadForward1,SRP020008,,,,,3584440000.0,71688800.0,7784X1 110323 SN141 0332 A81FDVABXX 8,0:50,A:1013532157;C:812179975;G:992916103;T:765761452;N:50313,50,,,,1013532157,812179975,992916103,765761452,50313,SRX257149,SRS405106,SRA072148,University of Utah|Brad Cairns Lab,University of Utah,1,0.87304,,0.12853,,0.81988,,0.80407,,50,,B,,usable mapping rate,illumina,hiseq_era,unknown,rrna_depletion,unknown,bulk,unknown,unknown,,United States,2013-04-01,Undetermined,Embryo,Undetermined,Embryo Imprecise
36669,SRR800038,SRX257149,SRS405106,SRP020008,PRJNA193544,Danio rerio strain:Tubingen Epigenomics,PRJNA193544,Other,Early vertebrate embryos must achieve totipotency and prepare for zygotic genome activation ZGA. To better understand we determined DNAme profiles of zebrafish gametes multiple embryo stages flanking ZGA and somatic muscle and compared them to gene activity and histone modifications. First sperm chromatin patterns are virtually identical to those at ZGA. Unexpectedly in the oocyte many genes important for germline functions ie. piwil1 or early development ie. hox genes are DNA methylated. Remarkably these maternal loci are demethylated during zygotic/cleavage stages to precisely the state observed in sperm even in parthenogenetic embryos lacking a replicating paternal genome. Furthermore this cohort constitutes the genes/loci that acquire DNAme during development ie. ZGA to muscle. Finally DNA methyltransferase inhibition experiments suggest that DNAme silences particular gene/chromatin cohorts at ZGA preventing their precocious expression. Thus zebrafish achieve a 'totipotent' chromatin state at ZGA through paternal genome competency and maternal genome DNAme reprogramming.,,pubmed:23663776,Total RNA was extracted using Qiagen AllPrep DNA/RNA/Protein mini kit Cat # 80004 ribosomal RNA was depleted using RiboMinus kit A10837 08 Eukaryote Kit followed by directional RNA library preparation according to Illumina's standard protocol. Detailed experimental procedures and bioinformatics analysis can be found in the supplemental method section of the paper.,Generic sample from Danio rerio,egg RNAseq totalRNARibominus,,strain:Tubingen|label:PE: paired end SE: single end|dev stage:egg,,,,,,,,,egg RNAseq totalRNARibominus,egg RNAseq totalRNARibominus,7784X1,Total RNA was extracted using Qiagen AllPrep DNA/RNA/Protein mini kit Cat # 80004 ribosomal RNA was depleted using RiboMinus kit A10837 08 Eukaryote Kit followed by directional RNA library preparation according to Illumina's standard protocol. Detailed experimental procedures and bioinformatics analysis can be found in the supplemental method section of the paper.,,,RNA-Seq,TRANSCRIPTOMIC,RT-PCR,SINGLE,ILLUMINA,Illumina HiSeq 2000,500Application ReadForward1,SRP020008,,,,,2794240450.0,55884809.0,7784X1 110119 SN141 0323 B8162JABXX 8,0:50,A:792200981;C:632130044;G:772351331;T:596980885;N:577209,50,,,,792200981,632130044,772351331,596980885,577209,SRX257149,SRS405106,SRA072148,University of Utah|Brad Cairns Lab,University of Utah,1,0.86104,,0.12909,,0.82266,,0.80894,,50,,B,,usable mapping rate,illumina,hiseq_era,unknown,rrna_depletion,unknown,bulk,unknown,unknown,,United States,2013-04-01,Undetermined,Embryo,Undetermined,Embryo Imprecise
36739,SRR867022,SRX286270,SRS420566,SRP022549,PRJNA202401,Danio rerio Transcriptome or Gene expression,PRJNA202401,Other,Full transcriptome analysis of early dorsoventral DV patterning in zebrafish.,,,Full transcriptome analysis of early dorsoventral DV patterning in zebrafish,General Sample for Danio rerio,ICH,,strain:wild type,,,,,,,,,Full transcriptome analysis of early dorsoventral DV patterning in zebrafish Bcat,Danio rerio boot,1,RNA quality and quantity measurements were performed on Bioanalyzer Agilent Technologies and Qubit Life Technologies. High quality RIN >8.5 total RNA samples from three biological replicates were pooled and processed using the SOLiD total RNA Seq Kit Life Technologies according to the manufacturers suggestions. Briefly 5mg of pooled RNA was DNaseI treated and the ribosomal RNA depleted using Eucaryote RiboMinues rRNA Removal Kit Life Technologies. The leftover was fragmented using RNaseIII the 50 200nt fraction size selected sequencing adaptors ligated and the templates reverse transcribed using ArrayScript RT. The cDNA library was purified with Qiagen MinElute PCR Purification Kit Qiagen and size selected on a 6% TBE Urea denaturing polyacrylamide gel. The 150 250nt cDNA fraction was amplified using AmpliTaq polymerase and purified by AmPureXP Beads Agencourt. Concentration of each library was determined using the SOLiD Library TaqMan Quantitation Kit Life Technologies. Each library was clonally amplified on SOLiD P1 DNA Beads by emulsion PCR ePCR. Emulsions were broken with butanol and ePCR beads enriched for template positive beads by hybridization with magnetic enrichment beads. Template enriched beads were extended at the three prime end in the presence of terminal transferase and three prime bead linker. Beads with the clonally amplified DNA were deposited onto sequencing slide and sequenced on SOLiD V4 Instrument using the 50 base sequencing chemistry.,,,RNA-Seq,TRANSCRIPTOMIC,unspecified,SINGLE,ABI_SOLID,AB SOLiD 3 Plus System,500Application ReadForward1,SRP022549,,,s0205_20091123_4_Boot2_F3_QV.qual s0205_20091123_4_Boot2_F3.csfasta,SOLiD_native SOLiD_native,9801985250.0,196039705.0,Zebrafish DV patterning Boot,0:50,0:2587797600;1:2275478534;2:2625317272;3:2293877905;.:19513939,50,,,,,,,,,SRX286270,SRS420566,SRA075737,BAYGEN|NGSP,BAYGEN,1,0.59289,,0.09435,,0.92669,,0.7658,,50,,B,,usable mapping rate,legacy,early,3prime,rrna_depletion,unknown,bulk,unknown,unknown,,Hungary,2013-05-23,Undetermined,Undetermined,Undetermined,Undetermined
36740,SRR867023,SRX286271,SRS420566,SRP022549,PRJNA202401,Danio rerio Transcriptome or Gene expression,PRJNA202401,Other,Full transcriptome analysis of early dorsoventral DV patterning in zebrafish.,,,Full transcriptome analysis of early dorsoventral DV patterning in zebrafish,General Sample for Danio rerio,ICH,,strain:wild type,,,,,,,,,Full transcriptome analysis of early dorsoventral DV patterning in zebrafish ICH,Danio rerio ICH,1,RNA quality and quantity measurements were performed on Bioanalyzer Agilent Technologies and Qubit Life Technologies. High quality RIN >8.5 total RNA samples from three biological replicates were pooled and processed using the SOLiD total RNA Seq Kit Life Technologies according to the manufacturers suggestions. Briefly 5mg of pooled RNA was DNaseI treated and the ribosomal RNA depleted using Eucaryote RiboMinues rRNA Removal Kit Life Technologies. The leftover was fragmented using RNaseIII the 50 200nt fraction size selected sequencing adaptors ligated and the templates reverse transcribed using ArrayScript RT. The cDNA library was purified with Qiagen MinElute PCR Purification Kit Qiagen and size selected on a 6% TBE Urea denaturing polyacrylamide gel. The 150 250nt cDNA fraction was amplified using AmpliTaq polymerase and purified by AmPureXP Beads Agencourt. Concentration of each library was determined using the SOLiD Library TaqMan Quantitation Kit Life Technologies. Each library was clonally amplified on SOLiD P1 DNA Beads by emulsion PCR ePCR. Emulsions were broken with butanol and ePCR beads enriched for template positive beads by hybridization with magnetic enrichment beads. Template enriched beads were extended at the three prime end in the presence of terminal transferase and three prime bead linker. Beads with the clonally amplified DNA were deposited onto sequencing slide and sequenced on SOLiD V4 Instrument using the 50 base sequencing chemistry.,,,RNA-Seq,TRANSCRIPTOMIC,unspecified,SINGLE,ABI_SOLID,AB SOLiD 3 Plus System,500Application ReadForward1,SRP022549,,,s0205_20091123_4_ICH_F3.csfasta s0205_20091123_4_ICH_F3_QV.qual,SOLiD_native SOLiD_native,10810535400.0,216210708.0,Zebrafish DV patterning ICH,0:50,0:2903579857;1:2528898611;2:2759865128;3:2553918387;.:64273417,50,,,,,,,,,SRX286271,SRS420566,SRA075737,BAYGEN|NGSP,BAYGEN,1,0.42474,,0.06136,,0.93434,,0.75757,,50,,B,,usable mapping rate,legacy,early,3prime,rrna_depletion,unknown,bulk,unknown,unknown,,Hungary,2013-05-23,Undetermined,Undetermined,Undetermined,Undetermined
37961,SRR1205174,SRX501301,SRS582373,SRP040561,PRJNA242641,Gene expression analysis of hair cell regeneration in the zebrafish lateral line,GSE56176,Transcriptome Analysis,Deafness due to the terminal loss of inner ear hair cells is one of the most common sensory diseases. However non mammalian animals e.g. birds amphibian and fish regenerate damaged hair cells. In order to better understand the reasons underpinning such regeneration disparities in vertebrates we set out to define the changes in gene expression associated with the regeneration of hair cells in the zebrafish lateral line at high resolution. We performed RNA Seq analyses on regenerating support cells purified by fluorescence activated cell sorting FACS. The zebrafish lateral line provides an experimentally accessible system to define the complex signaling events triggered by injury and regeneration because these cells can be acutely killed by exposure to neomycin post which they regenerate rapidly. Lateral line hair cells are located in the center of a mechanosensory organ known as the neuromast and are surrounded by inner support cells and an outer ring of mantle cells. TgsqET20 larvae express GFP strongly in mantle cells and to a lesser degree in inner support cells. We isolated GFP positive and GFP negative cells from 5 dpf dpf TgsqET20 larvae at 1 3 and 5 hours post neomycin treatment as well as from a non treated control. Overall design: Transgenic zebrafish TgsqET20 larvae at 5 dpf were exposed to neomycin dissociated and FACS sorted into GFP positive and GFP negative populations at xxx 3 and 5 hours following treatment along with a mock treated 1 hr control. The experiment was performed in triplicate for a total of 24 samples.,,pubmed:24706903,,cntl neo 5hr 3,GSM1357182,,tissue:GFP negative cells from 5 dpf larvae|drug:neomycin|time:5hr|gfp status:negative|genotype:TgsqET20|experiment date:Apr2012,cntl neo 5hr 3,Data was processed with CASAVA version 1.8.2 Sequence reads in fastq format were mapped to danRer7using tophat 1.4.1 with options –g 1 and a GTF description of transcripts based on Ensembl 63. FPKM values for these transcripts were generated using cufflinks v1.3. Genome build: danRer7 Supplementary files format and content: FPKM values per gene.,GFP negative cells from 5 dpf larvae,For neomycin treatment 5dpf larvae were treated for 30min with 300μM neomycin Fisher BioReagents diluted in 0.5X E2 medium rinsed three times and recovered in 0.5X E2 medium at 28.5°C for the indicated time.,Two hundred 5dpf untreated TgsqET20 control or neomycin treated TgsqET20 larvae were anesthetized collected in a 2mL tube dissociated with trypsin and filtered to remove un dissociated tissue. A two gate FACS strategy was used to select only living target cells from excesses of dead cells and cellular debris of the larval cell suspensions see Materials and Methods of associated manuscript for detailed FACS protocol. Approximately 30 000 GFP or GFP+ cells were used for total RNA extraction using Trizol Invitrogen following the manufacturer’s manual. Libraries for RNA sequencing were made with poly A selected mRNA using the Illumina TruSeq RNA library construction kit v2 Illumina. The resulting libraries were purified using Agencourt AMPure XP system Backman Coulter then quantified using a Bioanalyzer or Qubit Fluorometer Life Technologies.,Larvae were generated by paired matings and raised in 0.5X E2 medium at 28.5°C. GFP positive larvae were sorted from wild type larvae at 48 hpf under fluorescent stereoscope.,drug:neomycin|time:5hr|gfp status:negative|genotype:TgsqET20|experiment date:Apr2012,GSM1357182,GSM1357182: cntl neo 5hr 3; Danio rerio; RNA Seq,GSM1357182,,1,Two hundred 5dpf untreated TgsqET20 control or neomycin treated TgsqET20 larvae were anesthetized collected in a 2mL tube dissociated with trypsin and filtered to remove un dissociated tissue. A two gate FACS strategy was used to select only living target cells from excesses of dead cells and cellular debris of the larval cell suspensions see Materials and Methods of associated manuscript for detailed FACS protocol. Approximately 30 000 GFP or GFP+ cells were used for total RNA extraction using Trizol Invitrogen following the manufacturer’s manual. Libraries for RNA sequencing were made with poly A selected mRNA using the Illumina TruSeq RNA library construction kit v2 Illumina. The resulting libraries were purified using Agencourt AMPure XP system Backman Coulter then quantified using a Bioanalyzer or Qubit Fluorometer Life Technologies.,GEO Accession:GSM1357182,RNA-Seq,TRANSCRIPTOMIC,cDNA,SINGLE,ILLUMINA,Illumina HiSeq 2000,,SRP040561,,loader:latf load,cntl_neo_5_3.fastq.gz,fastq,1630216750.0,32604335.0,GSM1357182 r1,0:50 1:0,A:435441738;C:384703554;G:377838654;T:432163463;N:69341,50,0,,,435441738,384703554,377838654,432163463,69341,SRX501301,SRS582373,SRA149178,GEO,"Seidel, Genomics, Stowers Institute",1,0.93632,,0.20492,,0.67551,,0.50281,,50,,B,,usable mapping rate,illumina,hiseq_era,unknown,poly_a,trueseq,bulk,unknown,unknown,,United States,2014-03-25,Multi-stage,Multi-stage,Undetermined,Undetermined
37962,SRR1205173,SRX501300,SRS582372,SRP040561,PRJNA242641,Gene expression analysis of hair cell regeneration in the zebrafish lateral line,GSE56176,Transcriptome Analysis,Deafness due to the terminal loss of inner ear hair cells is one of the most common sensory diseases. However non mammalian animals e.g. birds amphibian and fish regenerate damaged hair cells. In order to better understand the reasons underpinning such regeneration disparities in vertebrates we set out to define the changes in gene expression associated with the regeneration of hair cells in the zebrafish lateral line at high resolution. We performed RNA Seq analyses on regenerating support cells purified by fluorescence activated cell sorting FACS. The zebrafish lateral line provides an experimentally accessible system to define the complex signaling events triggered by injury and regeneration because these cells can be acutely killed by exposure to neomycin post which they regenerate rapidly. Lateral line hair cells are located in the center of a mechanosensory organ known as the neuromast and are surrounded by inner support cells and an outer ring of mantle cells. TgsqET20 larvae express GFP strongly in mantle cells and to a lesser degree in inner support cells. We isolated GFP positive and GFP negative cells from 5 dpf dpf TgsqET20 larvae at 1 3 and 5 hours post neomycin treatment as well as from a non treated control. Overall design: Transgenic zebrafish TgsqET20 larvae at 5 dpf were exposed to neomycin dissociated and FACS sorted into GFP positive and GFP negative populations at xxx 3 and 5 hours following treatment along with a mock treated 1 hr control. The experiment was performed in triplicate for a total of 24 samples.,,pubmed:24706903,,cntl neo 5hr 2,GSM1357181,,tissue:GFP negative cells from 5 dpf larvae|drug:neomycin|time:5hr|gfp status:negative|genotype:TgsqET20|experiment date:Apr2012,cntl neo 5hr 2,Data was processed with CASAVA version 1.8.2 Sequence reads in fastq format were mapped to danRer7using tophat 1.4.1 with options –g 1 and a GTF description of transcripts based on Ensembl 63. FPKM values for these transcripts were generated using cufflinks v1.3. Genome build: danRer7 Supplementary files format and content: FPKM values per gene.,GFP negative cells from 5 dpf larvae,For neomycin treatment 5dpf larvae were treated for 30min with 300μM neomycin Fisher BioReagents diluted in 0.5X E2 medium rinsed three times and recovered in 0.5X E2 medium at 28.5°C for the indicated time.,Two hundred 5dpf untreated TgsqET20 control or neomycin treated TgsqET20 larvae were anesthetized collected in a 2mL tube dissociated with trypsin and filtered to remove un dissociated tissue. A two gate FACS strategy was used to select only living target cells from excesses of dead cells and cellular debris of the larval cell suspensions see Materials and Methods of associated manuscript for detailed FACS protocol. Approximately 30 000 GFP or GFP+ cells were used for total RNA extraction using Trizol Invitrogen following the manufacturer’s manual. Libraries for RNA sequencing were made with poly A selected mRNA using the Illumina TruSeq RNA library construction kit v2 Illumina. The resulting libraries were purified using Agencourt AMPure XP system Backman Coulter then quantified using a Bioanalyzer or Qubit Fluorometer Life Technologies.,Larvae were generated by paired matings and raised in 0.5X E2 medium at 28.5°C. GFP positive larvae were sorted from wild type larvae at 48 hpf under fluorescent stereoscope.,drug:neomycin|time:5hr|gfp status:negative|genotype:TgsqET20|experiment date:Apr2012,GSM1357181,GSM1357181: cntl neo 5hr 2; Danio rerio; RNA Seq,GSM1357181,,1,Two hundred 5dpf untreated TgsqET20 control or neomycin treated TgsqET20 larvae were anesthetized collected in a 2mL tube dissociated with trypsin and filtered to remove un dissociated tissue. A two gate FACS strategy was used to select only living target cells from excesses of dead cells and cellular debris of the larval cell suspensions see Materials and Methods of associated manuscript for detailed FACS protocol. Approximately 30 000 GFP or GFP+ cells were used for total RNA extraction using Trizol Invitrogen following the manufacturer’s manual. Libraries for RNA sequencing were made with poly A selected mRNA using the Illumina TruSeq RNA library construction kit v2 Illumina. The resulting libraries were purified using Agencourt AMPure XP system Backman Coulter then quantified using a Bioanalyzer or Qubit Fluorometer Life Technologies.,GEO Accession:GSM1357181,RNA-Seq,TRANSCRIPTOMIC,cDNA,SINGLE,ILLUMINA,Illumina HiSeq 2000,,SRP040561,,loader:latf load,cntl_neo_5_2.fastq.gz,fastq,1812797550.0,36255951.0,GSM1357181 r1,0:50 1:0,A:484800524;C:426109547;G:417833682;T:483968870;N:84927,50,0,,,484800524,426109547,417833682,483968870,84927,SRX501300,SRS582372,SRA149178,GEO,"Seidel, Genomics, Stowers Institute",1,0.93602,,0.21513,,0.67517,,0.49404,,50,,B,,usable mapping rate,illumina,hiseq_era,unknown,poly_a,trueseq,bulk,unknown,unknown,,United States,2014-03-25,Multi-stage,Multi-stage,Undetermined,Undetermined
37963,SRR1205172,SRX501299,SRS582371,SRP040561,PRJNA242641,Gene expression analysis of hair cell regeneration in the zebrafish lateral line,GSE56176,Transcriptome Analysis,Deafness due to the terminal loss of inner ear hair cells is one of the most common sensory diseases. However non mammalian animals e.g. birds amphibian and fish regenerate damaged hair cells. In order to better understand the reasons underpinning such regeneration disparities in vertebrates we set out to define the changes in gene expression associated with the regeneration of hair cells in the zebrafish lateral line at high resolution. We performed RNA Seq analyses on regenerating support cells purified by fluorescence activated cell sorting FACS. The zebrafish lateral line provides an experimentally accessible system to define the complex signaling events triggered by injury and regeneration because these cells can be acutely killed by exposure to neomycin post which they regenerate rapidly. Lateral line hair cells are located in the center of a mechanosensory organ known as the neuromast and are surrounded by inner support cells and an outer ring of mantle cells. TgsqET20 larvae express GFP strongly in mantle cells and to a lesser degree in inner support cells. We isolated GFP positive and GFP negative cells from 5 dpf dpf TgsqET20 larvae at 1 3 and 5 hours post neomycin treatment as well as from a non treated control. Overall design: Transgenic zebrafish TgsqET20 larvae at 5 dpf were exposed to neomycin dissociated and FACS sorted into GFP positive and GFP negative populations at xxx 3 and 5 hours following treatment along with a mock treated 1 hr control. The experiment was performed in triplicate for a total of 24 samples.,,pubmed:24706903,,cntl neo 5hr 1,GSM1357180,,tissue:GFP negative cells from 5 dpf larvae|drug:neomycin|time:5hr|gfp status:negative|genotype:TgsqET20|experiment date:Apr2012,cntl neo 5hr 1,Data was processed with CASAVA version 1.8.2 Sequence reads in fastq format were mapped to danRer7using tophat 1.4.1 with options –g 1 and a GTF description of transcripts based on Ensembl 63. FPKM values for these transcripts were generated using cufflinks v1.3. Genome build: danRer7 Supplementary files format and content: FPKM values per gene.,GFP negative cells from 5 dpf larvae,For neomycin treatment 5dpf larvae were treated for 30min with 300μM neomycin Fisher BioReagents diluted in 0.5X E2 medium rinsed three times and recovered in 0.5X E2 medium at 28.5°C for the indicated time.,Two hundred 5dpf untreated TgsqET20 control or neomycin treated TgsqET20 larvae were anesthetized collected in a 2mL tube dissociated with trypsin and filtered to remove un dissociated tissue. A two gate FACS strategy was used to select only living target cells from excesses of dead cells and cellular debris of the larval cell suspensions see Materials and Methods of associated manuscript for detailed FACS protocol. Approximately 30 000 GFP or GFP+ cells were used for total RNA extraction using Trizol Invitrogen following the manufacturer’s manual. Libraries for RNA sequencing were made with poly A selected mRNA using the Illumina TruSeq RNA library construction kit v2 Illumina. The resulting libraries were purified using Agencourt AMPure XP system Backman Coulter then quantified using a Bioanalyzer or Qubit Fluorometer Life Technologies.,Larvae were generated by paired matings and raised in 0.5X E2 medium at 28.5°C. GFP positive larvae were sorted from wild type larvae at 48 hpf under fluorescent stereoscope.,drug:neomycin|time:5hr|gfp status:negative|genotype:TgsqET20|experiment date:Apr2012,GSM1357180,GSM1357180: cntl neo 5hr 1; Danio rerio; RNA Seq,GSM1357180,,1,Two hundred 5dpf untreated TgsqET20 control or neomycin treated TgsqET20 larvae were anesthetized collected in a 2mL tube dissociated with trypsin and filtered to remove un dissociated tissue. A two gate FACS strategy was used to select only living target cells from excesses of dead cells and cellular debris of the larval cell suspensions see Materials and Methods of associated manuscript for detailed FACS protocol. Approximately 30 000 GFP or GFP+ cells were used for total RNA extraction using Trizol Invitrogen following the manufacturer’s manual. Libraries for RNA sequencing were made with poly A selected mRNA using the Illumina TruSeq RNA library construction kit v2 Illumina. The resulting libraries were purified using Agencourt AMPure XP system Backman Coulter then quantified using a Bioanalyzer or Qubit Fluorometer Life Technologies.,GEO Accession:GSM1357180,RNA-Seq,TRANSCRIPTOMIC,cDNA,SINGLE,ILLUMINA,Illumina HiSeq 2000,,SRP040561,,loader:latf load,cntl_neo_5_1.fastq.gz,fastq,1616736500.0,32334730.0,GSM1357180 r1,0:50 1:0,A:425328931;C:388105733;G:379129548;T:424100489;N:71799,50,0,,,425328931,388105733,379129548,424100489,71799,SRX501299,SRS582371,SRA149178,GEO,"Seidel, Genomics, Stowers Institute",1,0.9361,,0.23516,,0.68091,,0.50961,,50,,B,,usable mapping rate,illumina,hiseq_era,unknown,poly_a,trueseq,bulk,unknown,unknown,,United States,2014-03-25,Multi-stage,Multi-stage,Undetermined,Undetermined
37964,SRR1205171,SRX501298,SRS582370,SRP040561,PRJNA242641,Gene expression analysis of hair cell regeneration in the zebrafish lateral line,GSE56176,Transcriptome Analysis,Deafness due to the terminal loss of inner ear hair cells is one of the most common sensory diseases. However non mammalian animals e.g. birds amphibian and fish regenerate damaged hair cells. In order to better understand the reasons underpinning such regeneration disparities in vertebrates we set out to define the changes in gene expression associated with the regeneration of hair cells in the zebrafish lateral line at high resolution. We performed RNA Seq analyses on regenerating support cells purified by fluorescence activated cell sorting FACS. The zebrafish lateral line provides an experimentally accessible system to define the complex signaling events triggered by injury and regeneration because these cells can be acutely killed by exposure to neomycin post which they regenerate rapidly. Lateral line hair cells are located in the center of a mechanosensory organ known as the neuromast and are surrounded by inner support cells and an outer ring of mantle cells. TgsqET20 larvae express GFP strongly in mantle cells and to a lesser degree in inner support cells. We isolated GFP positive and GFP negative cells from 5 dpf dpf TgsqET20 larvae at 1 3 and 5 hours post neomycin treatment as well as from a non treated control. Overall design: Transgenic zebrafish TgsqET20 larvae at 5 dpf were exposed to neomycin dissociated and FACS sorted into GFP positive and GFP negative populations at xxx 3 and 5 hours following treatment along with a mock treated 1 hr control. The experiment was performed in triplicate for a total of 24 samples.,,pubmed:24706903,,gfp neo 5hr 3,GSM1357179,,tissue:GFP positive cells from 5 dpf larvae|drug:neomycin|time:5hr|gfp status:positive|genotype:TgsqET20|experiment date:Apr2012,gfp neo 5hr 3,Data was processed with CASAVA version 1.8.2 Sequence reads in fastq format were mapped to danRer7using tophat 1.4.1 with options –g 1 and a GTF description of transcripts based on Ensembl 63. FPKM values for these transcripts were generated using cufflinks v1.3. Genome build: danRer7 Supplementary files format and content: FPKM values per gene.,GFP positive cells from 5 dpf larvae,For neomycin treatment 5dpf larvae were treated for 30min with 300μM neomycin Fisher BioReagents diluted in 0.5X E2 medium rinsed three times and recovered in 0.5X E2 medium at 28.5°C for the indicated time.,Two hundred 5dpf untreated TgsqET20 control or neomycin treated TgsqET20 larvae were anesthetized collected in a 2mL tube dissociated with trypsin and filtered to remove un dissociated tissue. A two gate FACS strategy was used to select only living target cells from excesses of dead cells and cellular debris of the larval cell suspensions see Materials and Methods of associated manuscript for detailed FACS protocol. Approximately 30 000 GFP or GFP+ cells were used for total RNA extraction using Trizol Invitrogen following the manufacturer’s manual. Libraries for RNA sequencing were made with poly A selected mRNA using the Illumina TruSeq RNA library construction kit v2 Illumina. The resulting libraries were purified using Agencourt AMPure XP system Backman Coulter then quantified using a Bioanalyzer or Qubit Fluorometer Life Technologies.,Larvae were generated by paired matings and raised in 0.5X E2 medium at 28.5°C. GFP positive larvae were sorted from wild type larvae at 48 hpf under fluorescent stereoscope.,drug:neomycin|time:5hr|gfp status:positive|genotype:TgsqET20|experiment date:Apr2012,GSM1357179,GSM1357179: gfp neo 5hr 3; Danio rerio; RNA Seq,GSM1357179,,1,Two hundred 5dpf untreated TgsqET20 control or neomycin treated TgsqET20 larvae were anesthetized collected in a 2mL tube dissociated with trypsin and filtered to remove un dissociated tissue. A two gate FACS strategy was used to select only living target cells from excesses of dead cells and cellular debris of the larval cell suspensions see Materials and Methods of associated manuscript for detailed FACS protocol. Approximately 30 000 GFP or GFP+ cells were used for total RNA extraction using Trizol Invitrogen following the manufacturer’s manual. Libraries for RNA sequencing were made with poly A selected mRNA using the Illumina TruSeq RNA library construction kit v2 Illumina. The resulting libraries were purified using Agencourt AMPure XP system Backman Coulter then quantified using a Bioanalyzer or Qubit Fluorometer Life Technologies.,GEO Accession:GSM1357179,RNA-Seq,TRANSCRIPTOMIC,cDNA,SINGLE,ILLUMINA,Illumina HiSeq 2000,,SRP040561,,loader:latf load,gfp_neo_5_3.fastq.gz,fastq,1856512100.0,37130242.0,GSM1357179 r1,0:50 1:0,A:492227117;C:440944515;G:431529818;T:491731276;N:79374,50,0,,,492227117,440944515,431529818,491731276,79374,SRX501298,SRS582370,SRA149178,GEO,"Seidel, Genomics, Stowers Institute",1,0.93677,,0.28732,,0.71435,,0.50496,,50,,B,,usable mapping rate,illumina,hiseq_era,unknown,poly_a,trueseq,bulk,unknown,unknown,,United States,2014-03-25,Multi-stage,Multi-stage,Undetermined,Undetermined
37965,SRR1205170,SRX501297,SRS582369,SRP040561,PRJNA242641,Gene expression analysis of hair cell regeneration in the zebrafish lateral line,GSE56176,Transcriptome Analysis,Deafness due to the terminal loss of inner ear hair cells is one of the most common sensory diseases. However non mammalian animals e.g. birds amphibian and fish regenerate damaged hair cells. In order to better understand the reasons underpinning such regeneration disparities in vertebrates we set out to define the changes in gene expression associated with the regeneration of hair cells in the zebrafish lateral line at high resolution. We performed RNA Seq analyses on regenerating support cells purified by fluorescence activated cell sorting FACS. The zebrafish lateral line provides an experimentally accessible system to define the complex signaling events triggered by injury and regeneration because these cells can be acutely killed by exposure to neomycin post which they regenerate rapidly. Lateral line hair cells are located in the center of a mechanosensory organ known as the neuromast and are surrounded by inner support cells and an outer ring of mantle cells. TgsqET20 larvae express GFP strongly in mantle cells and to a lesser degree in inner support cells. We isolated GFP positive and GFP negative cells from 5 dpf dpf TgsqET20 larvae at 1 3 and 5 hours post neomycin treatment as well as from a non treated control. Overall design: Transgenic zebrafish TgsqET20 larvae at 5 dpf were exposed to neomycin dissociated and FACS sorted into GFP positive and GFP negative populations at xxx 3 and 5 hours following treatment along with a mock treated 1 hr control. The experiment was performed in triplicate for a total of 24 samples.,,pubmed:24706903,,gfp neo 5hr 2,GSM1357178,,tissue:GFP positive cells from 5 dpf larvae|drug:neomycin|time:5hr|gfp status:positive|genotype:TgsqET20|experiment date:Apr2012,gfp neo 5hr 2,Data was processed with CASAVA version 1.8.2 Sequence reads in fastq format were mapped to danRer7using tophat 1.4.1 with options –g 1 and a GTF description of transcripts based on Ensembl 63. FPKM values for these transcripts were generated using cufflinks v1.3. Genome build: danRer7 Supplementary files format and content: FPKM values per gene.,GFP positive cells from 5 dpf larvae,For neomycin treatment 5dpf larvae were treated for 30min with 300μM neomycin Fisher BioReagents diluted in 0.5X E2 medium rinsed three times and recovered in 0.5X E2 medium at 28.5°C for the indicated time.,Two hundred 5dpf untreated TgsqET20 control or neomycin treated TgsqET20 larvae were anesthetized collected in a 2mL tube dissociated with trypsin and filtered to remove un dissociated tissue. A two gate FACS strategy was used to select only living target cells from excesses of dead cells and cellular debris of the larval cell suspensions see Materials and Methods of associated manuscript for detailed FACS protocol. Approximately 30 000 GFP or GFP+ cells were used for total RNA extraction using Trizol Invitrogen following the manufacturer’s manual. Libraries for RNA sequencing were made with poly A selected mRNA using the Illumina TruSeq RNA library construction kit v2 Illumina. The resulting libraries were purified using Agencourt AMPure XP system Backman Coulter then quantified using a Bioanalyzer or Qubit Fluorometer Life Technologies.,Larvae were generated by paired matings and raised in 0.5X E2 medium at 28.5°C. GFP positive larvae were sorted from wild type larvae at 48 hpf under fluorescent stereoscope.,drug:neomycin|time:5hr|gfp status:positive|genotype:TgsqET20|experiment date:Apr2012,GSM1357178,GSM1357178: gfp neo 5hr 2; Danio rerio; RNA Seq,GSM1357178,,1,Two hundred 5dpf untreated TgsqET20 control or neomycin treated TgsqET20 larvae were anesthetized collected in a 2mL tube dissociated with trypsin and filtered to remove un dissociated tissue. A two gate FACS strategy was used to select only living target cells from excesses of dead cells and cellular debris of the larval cell suspensions see Materials and Methods of associated manuscript for detailed FACS protocol. Approximately 30 000 GFP or GFP+ cells were used for total RNA extraction using Trizol Invitrogen following the manufacturer’s manual. Libraries for RNA sequencing were made with poly A selected mRNA using the Illumina TruSeq RNA library construction kit v2 Illumina. The resulting libraries were purified using Agencourt AMPure XP system Backman Coulter then quantified using a Bioanalyzer or Qubit Fluorometer Life Technologies.,GEO Accession:GSM1357178,RNA-Seq,TRANSCRIPTOMIC,cDNA,SINGLE,ILLUMINA,Illumina HiSeq 2000,,SRP040561,,loader:latf load,gfp_neo_5_2.fastq.gz,fastq,1605154400.0,32103088.0,GSM1357178 r1,0:50 1:0,A:431076570;C:373656204;G:367046732;T:433299718;N:75176,50,0,,,431076570,373656204,367046732,433299718,75176,SRX501297,SRS582369,SRA149178,GEO,"Seidel, Genomics, Stowers Institute",1,0.93022,,0.29198,,0.69656,,0.47675,,50,,B,,usable mapping rate,illumina,hiseq_era,unknown,poly_a,trueseq,bulk,unknown,unknown,,United States,2014-03-25,Multi-stage,Multi-stage,Undetermined,Undetermined
37966,SRR1205169,SRX501296,SRS582368,SRP040561,PRJNA242641,Gene expression analysis of hair cell regeneration in the zebrafish lateral line,GSE56176,Transcriptome Analysis,Deafness due to the terminal loss of inner ear hair cells is one of the most common sensory diseases. However non mammalian animals e.g. birds amphibian and fish regenerate damaged hair cells. In order to better understand the reasons underpinning such regeneration disparities in vertebrates we set out to define the changes in gene expression associated with the regeneration of hair cells in the zebrafish lateral line at high resolution. We performed RNA Seq analyses on regenerating support cells purified by fluorescence activated cell sorting FACS. The zebrafish lateral line provides an experimentally accessible system to define the complex signaling events triggered by injury and regeneration because these cells can be acutely killed by exposure to neomycin post which they regenerate rapidly. Lateral line hair cells are located in the center of a mechanosensory organ known as the neuromast and are surrounded by inner support cells and an outer ring of mantle cells. TgsqET20 larvae express GFP strongly in mantle cells and to a lesser degree in inner support cells. We isolated GFP positive and GFP negative cells from 5 dpf dpf TgsqET20 larvae at 1 3 and 5 hours post neomycin treatment as well as from a non treated control. Overall design: Transgenic zebrafish TgsqET20 larvae at 5 dpf were exposed to neomycin dissociated and FACS sorted into GFP positive and GFP negative populations at xxx 3 and 5 hours following treatment along with a mock treated 1 hr control. The experiment was performed in triplicate for a total of 24 samples.,,pubmed:24706903,,gfp neo 5hr 1,GSM1357177,,tissue:GFP positive cells from 5 dpf larvae|drug:neomycin|time:5hr|gfp status:positive|genotype:TgsqET20|experiment date:Apr2012,gfp neo 5hr 1,Data was processed with CASAVA version 1.8.2 Sequence reads in fastq format were mapped to danRer7using tophat 1.4.1 with options –g 1 and a GTF description of transcripts based on Ensembl 63. FPKM values for these transcripts were generated using cufflinks v1.3. Genome build: danRer7 Supplementary files format and content: FPKM values per gene.,GFP positive cells from 5 dpf larvae,For neomycin treatment 5dpf larvae were treated for 30min with 300μM neomycin Fisher BioReagents diluted in 0.5X E2 medium rinsed three times and recovered in 0.5X E2 medium at 28.5°C for the indicated time.,Two hundred 5dpf untreated TgsqET20 control or neomycin treated TgsqET20 larvae were anesthetized collected in a 2mL tube dissociated with trypsin and filtered to remove un dissociated tissue. A two gate FACS strategy was used to select only living target cells from excesses of dead cells and cellular debris of the larval cell suspensions see Materials and Methods of associated manuscript for detailed FACS protocol. Approximately 30 000 GFP or GFP+ cells were used for total RNA extraction using Trizol Invitrogen following the manufacturer’s manual. Libraries for RNA sequencing were made with poly A selected mRNA using the Illumina TruSeq RNA library construction kit v2 Illumina. The resulting libraries were purified using Agencourt AMPure XP system Backman Coulter then quantified using a Bioanalyzer or Qubit Fluorometer Life Technologies.,Larvae were generated by paired matings and raised in 0.5X E2 medium at 28.5°C. GFP positive larvae were sorted from wild type larvae at 48 hpf under fluorescent stereoscope.,drug:neomycin|time:5hr|gfp status:positive|genotype:TgsqET20|experiment date:Apr2012,GSM1357177,GSM1357177: gfp neo 5hr 1; Danio rerio; RNA Seq,GSM1357177,,1,Two hundred 5dpf untreated TgsqET20 control or neomycin treated TgsqET20 larvae were anesthetized collected in a 2mL tube dissociated with trypsin and filtered to remove un dissociated tissue. A two gate FACS strategy was used to select only living target cells from excesses of dead cells and cellular debris of the larval cell suspensions see Materials and Methods of associated manuscript for detailed FACS protocol. Approximately 30 000 GFP or GFP+ cells were used for total RNA extraction using Trizol Invitrogen following the manufacturer’s manual. Libraries for RNA sequencing were made with poly A selected mRNA using the Illumina TruSeq RNA library construction kit v2 Illumina. The resulting libraries were purified using Agencourt AMPure XP system Backman Coulter then quantified using a Bioanalyzer or Qubit Fluorometer Life Technologies.,GEO Accession:GSM1357177,RNA-Seq,TRANSCRIPTOMIC,cDNA,SINGLE,ILLUMINA,Illumina HiSeq 2000,,SRP040561,,loader:latf load,gfp_neo_5_1.fastq.gz,fastq,1902899900.0,38057998.0,GSM1357177 r1,0:50 1:0,A:511489376;C:443148505;G:433716076;T:514461324;N:84619,50,0,,,511489376,443148505,433716076,514461324,84619,SRX501296,SRS582368,SRA149178,GEO,"Seidel, Genomics, Stowers Institute",1,0.92977,,0.29647,,0.69583,,0.48582,,50,,B,,usable mapping rate,illumina,hiseq_era,unknown,poly_a,trueseq,bulk,unknown,unknown,,United States,2014-03-25,Multi-stage,Multi-stage,Undetermined,Undetermined
37967,SRR1205168,SRX501295,SRS582367,SRP040561,PRJNA242641,Gene expression analysis of hair cell regeneration in the zebrafish lateral line,GSE56176,Transcriptome Analysis,Deafness due to the terminal loss of inner ear hair cells is one of the most common sensory diseases. However non mammalian animals e.g. birds amphibian and fish regenerate damaged hair cells. In order to better understand the reasons underpinning such regeneration disparities in vertebrates we set out to define the changes in gene expression associated with the regeneration of hair cells in the zebrafish lateral line at high resolution. We performed RNA Seq analyses on regenerating support cells purified by fluorescence activated cell sorting FACS. The zebrafish lateral line provides an experimentally accessible system to define the complex signaling events triggered by injury and regeneration because these cells can be acutely killed by exposure to neomycin post which they regenerate rapidly. Lateral line hair cells are located in the center of a mechanosensory organ known as the neuromast and are surrounded by inner support cells and an outer ring of mantle cells. TgsqET20 larvae express GFP strongly in mantle cells and to a lesser degree in inner support cells. We isolated GFP positive and GFP negative cells from 5 dpf dpf TgsqET20 larvae at 1 3 and 5 hours post neomycin treatment as well as from a non treated control. Overall design: Transgenic zebrafish TgsqET20 larvae at 5 dpf were exposed to neomycin dissociated and FACS sorted into GFP positive and GFP negative populations at xxx 3 and 5 hours following treatment along with a mock treated 1 hr control. The experiment was performed in triplicate for a total of 24 samples.,,pubmed:24706903,,cntl neo 3hr 3,GSM1357176,,tissue:GFP negative cells from 5 dpf larvae|drug:neomycin|time:3hr|gfp status:negative|genotype:TgsqET20|experiment date:Apr2012,cntl neo 3hr 3,Data was processed with CASAVA version 1.8.2 Sequence reads in fastq format were mapped to danRer7using tophat 1.4.1 with options –g 1 and a GTF description of transcripts based on Ensembl 63. FPKM values for these transcripts were generated using cufflinks v1.3. Genome build: danRer7 Supplementary files format and content: FPKM values per gene.,GFP negative cells from 5 dpf larvae,For neomycin treatment 5dpf larvae were treated for 30min with 300μM neomycin Fisher BioReagents diluted in 0.5X E2 medium rinsed three times and recovered in 0.5X E2 medium at 28.5°C for the indicated time.,Two hundred 5dpf untreated TgsqET20 control or neomycin treated TgsqET20 larvae were anesthetized collected in a 2mL tube dissociated with trypsin and filtered to remove un dissociated tissue. A two gate FACS strategy was used to select only living target cells from excesses of dead cells and cellular debris of the larval cell suspensions see Materials and Methods of associated manuscript for detailed FACS protocol. Approximately 30 000 GFP or GFP+ cells were used for total RNA extraction using Trizol Invitrogen following the manufacturer’s manual. Libraries for RNA sequencing were made with poly A selected mRNA using the Illumina TruSeq RNA library construction kit v2 Illumina. The resulting libraries were purified using Agencourt AMPure XP system Backman Coulter then quantified using a Bioanalyzer or Qubit Fluorometer Life Technologies.,Larvae were generated by paired matings and raised in 0.5X E2 medium at 28.5°C. GFP positive larvae were sorted from wild type larvae at 48 hpf under fluorescent stereoscope.,drug:neomycin|time:3hr|gfp status:negative|genotype:TgsqET20|experiment date:Apr2012,GSM1357176,GSM1357176: cntl neo 3hr 3; Danio rerio; RNA Seq,GSM1357176,,1,Two hundred 5dpf untreated TgsqET20 control or neomycin treated TgsqET20 larvae were anesthetized collected in a 2mL tube dissociated with trypsin and filtered to remove un dissociated tissue. A two gate FACS strategy was used to select only living target cells from excesses of dead cells and cellular debris of the larval cell suspensions see Materials and Methods of associated manuscript for detailed FACS protocol. Approximately 30 000 GFP or GFP+ cells were used for total RNA extraction using Trizol Invitrogen following the manufacturer’s manual. Libraries for RNA sequencing were made with poly A selected mRNA using the Illumina TruSeq RNA library construction kit v2 Illumina. The resulting libraries were purified using Agencourt AMPure XP system Backman Coulter then quantified using a Bioanalyzer or Qubit Fluorometer Life Technologies.,GEO Accession:GSM1357176,RNA-Seq,TRANSCRIPTOMIC,cDNA,SINGLE,ILLUMINA,Illumina HiSeq 2000,,SRP040561,,loader:latf load,cntl_neo_3_3.fastq.gz,fastq,1555198750.0,31103975.0,GSM1357176 r1,0:50 1:0,A:416734314;C:365733903;G:359113904;T:413549150;N:67479,50,0,,,416734314,365733903,359113904,413549150,67479,SRX501295,SRS582367,SRA149178,GEO,"Seidel, Genomics, Stowers Institute",1,0.93432,,0.21789,,0.67363,,0.49063,,50,,B,,usable mapping rate,illumina,hiseq_era,unknown,poly_a,trueseq,bulk,unknown,unknown,,United States,2014-03-25,Multi-stage,Multi-stage,Undetermined,Undetermined
37968,SRR1205167,SRX501294,SRS582366,SRP040561,PRJNA242641,Gene expression analysis of hair cell regeneration in the zebrafish lateral line,GSE56176,Transcriptome Analysis,Deafness due to the terminal loss of inner ear hair cells is one of the most common sensory diseases. However non mammalian animals e.g. birds amphibian and fish regenerate damaged hair cells. In order to better understand the reasons underpinning such regeneration disparities in vertebrates we set out to define the changes in gene expression associated with the regeneration of hair cells in the zebrafish lateral line at high resolution. We performed RNA Seq analyses on regenerating support cells purified by fluorescence activated cell sorting FACS. The zebrafish lateral line provides an experimentally accessible system to define the complex signaling events triggered by injury and regeneration because these cells can be acutely killed by exposure to neomycin post which they regenerate rapidly. Lateral line hair cells are located in the center of a mechanosensory organ known as the neuromast and are surrounded by inner support cells and an outer ring of mantle cells. TgsqET20 larvae express GFP strongly in mantle cells and to a lesser degree in inner support cells. We isolated GFP positive and GFP negative cells from 5 dpf dpf TgsqET20 larvae at 1 3 and 5 hours post neomycin treatment as well as from a non treated control. Overall design: Transgenic zebrafish TgsqET20 larvae at 5 dpf were exposed to neomycin dissociated and FACS sorted into GFP positive and GFP negative populations at xxx 3 and 5 hours following treatment along with a mock treated 1 hr control. The experiment was performed in triplicate for a total of 24 samples.,,pubmed:24706903,,cntl neo 3hr 2,GSM1357175,,tissue:GFP negative cells from 5 dpf larvae|drug:neomycin|time:3hr|gfp status:negative|genotype:TgsqET20|experiment date:Apr2012,cntl neo 3hr 2,Data was processed with CASAVA version 1.8.2 Sequence reads in fastq format were mapped to danRer7using tophat 1.4.1 with options –g 1 and a GTF description of transcripts based on Ensembl 63. FPKM values for these transcripts were generated using cufflinks v1.3. Genome build: danRer7 Supplementary files format and content: FPKM values per gene.,GFP negative cells from 5 dpf larvae,For neomycin treatment 5dpf larvae were treated for 30min with 300μM neomycin Fisher BioReagents diluted in 0.5X E2 medium rinsed three times and recovered in 0.5X E2 medium at 28.5°C for the indicated time.,Two hundred 5dpf untreated TgsqET20 control or neomycin treated TgsqET20 larvae were anesthetized collected in a 2mL tube dissociated with trypsin and filtered to remove un dissociated tissue. A two gate FACS strategy was used to select only living target cells from excesses of dead cells and cellular debris of the larval cell suspensions see Materials and Methods of associated manuscript for detailed FACS protocol. Approximately 30 000 GFP or GFP+ cells were used for total RNA extraction using Trizol Invitrogen following the manufacturer’s manual. Libraries for RNA sequencing were made with poly A selected mRNA using the Illumina TruSeq RNA library construction kit v2 Illumina. The resulting libraries were purified using Agencourt AMPure XP system Backman Coulter then quantified using a Bioanalyzer or Qubit Fluorometer Life Technologies.,Larvae were generated by paired matings and raised in 0.5X E2 medium at 28.5°C. GFP positive larvae were sorted from wild type larvae at 48 hpf under fluorescent stereoscope.,drug:neomycin|time:3hr|gfp status:negative|genotype:TgsqET20|experiment date:Apr2012,GSM1357175,GSM1357175: cntl neo 3hr 2; Danio rerio; RNA Seq,GSM1357175,,1,Two hundred 5dpf untreated TgsqET20 control or neomycin treated TgsqET20 larvae were anesthetized collected in a 2mL tube dissociated with trypsin and filtered to remove un dissociated tissue. A two gate FACS strategy was used to select only living target cells from excesses of dead cells and cellular debris of the larval cell suspensions see Materials and Methods of associated manuscript for detailed FACS protocol. Approximately 30 000 GFP or GFP+ cells were used for total RNA extraction using Trizol Invitrogen following the manufacturer’s manual. Libraries for RNA sequencing were made with poly A selected mRNA using the Illumina TruSeq RNA library construction kit v2 Illumina. The resulting libraries were purified using Agencourt AMPure XP system Backman Coulter then quantified using a Bioanalyzer or Qubit Fluorometer Life Technologies.,GEO Accession:GSM1357175,RNA-Seq,TRANSCRIPTOMIC,cDNA,SINGLE,ILLUMINA,Illumina HiSeq 2000,,SRP040561,,loader:latf load,cntl_neo_3_2.fastq.gz,fastq,1701011300.0,34020226.0,GSM1357175 r1,0:50 1:0,A:453767169;C:401144167;G:392795706;T:453224665;N:79593,50,0,,,453767169,401144167,392795706,453224665,79593,SRX501294,SRS582366,SRA149178,GEO,"Seidel, Genomics, Stowers Institute",1,0.93437,,0.19214,,0.66884,,0.48995,,50,,B,,usable mapping rate,illumina,hiseq_era,unknown,poly_a,trueseq,bulk,unknown,unknown,,United States,2014-03-25,Multi-stage,Multi-stage,Undetermined,Undetermined
37969,SRR1205166,SRX501293,SRS582365,SRP040561,PRJNA242641,Gene expression analysis of hair cell regeneration in the zebrafish lateral line,GSE56176,Transcriptome Analysis,Deafness due to the terminal loss of inner ear hair cells is one of the most common sensory diseases. However non mammalian animals e.g. birds amphibian and fish regenerate damaged hair cells. In order to better understand the reasons underpinning such regeneration disparities in vertebrates we set out to define the changes in gene expression associated with the regeneration of hair cells in the zebrafish lateral line at high resolution. We performed RNA Seq analyses on regenerating support cells purified by fluorescence activated cell sorting FACS. The zebrafish lateral line provides an experimentally accessible system to define the complex signaling events triggered by injury and regeneration because these cells can be acutely killed by exposure to neomycin post which they regenerate rapidly. Lateral line hair cells are located in the center of a mechanosensory organ known as the neuromast and are surrounded by inner support cells and an outer ring of mantle cells. TgsqET20 larvae express GFP strongly in mantle cells and to a lesser degree in inner support cells. We isolated GFP positive and GFP negative cells from 5 dpf dpf TgsqET20 larvae at 1 3 and 5 hours post neomycin treatment as well as from a non treated control. Overall design: Transgenic zebrafish TgsqET20 larvae at 5 dpf were exposed to neomycin dissociated and FACS sorted into GFP positive and GFP negative populations at xxx 3 and 5 hours following treatment along with a mock treated 1 hr control. The experiment was performed in triplicate for a total of 24 samples.,,pubmed:24706903,,cntl neo 3hr 1,GSM1357174,,tissue:GFP negative cells from 5 dpf larvae|drug:neomycin|time:3hr|gfp status:negative|genotype:TgsqET20|experiment date:Apr2012,cntl neo 3hr 1,Data was processed with CASAVA version 1.8.2 Sequence reads in fastq format were mapped to danRer7using tophat 1.4.1 with options –g 1 and a GTF description of transcripts based on Ensembl 63. FPKM values for these transcripts were generated using cufflinks v1.3. Genome build: danRer7 Supplementary files format and content: FPKM values per gene.,GFP negative cells from 5 dpf larvae,For neomycin treatment 5dpf larvae were treated for 30min with 300μM neomycin Fisher BioReagents diluted in 0.5X E2 medium rinsed three times and recovered in 0.5X E2 medium at 28.5°C for the indicated time.,Two hundred 5dpf untreated TgsqET20 control or neomycin treated TgsqET20 larvae were anesthetized collected in a 2mL tube dissociated with trypsin and filtered to remove un dissociated tissue. A two gate FACS strategy was used to select only living target cells from excesses of dead cells and cellular debris of the larval cell suspensions see Materials and Methods of associated manuscript for detailed FACS protocol. Approximately 30 000 GFP or GFP+ cells were used for total RNA extraction using Trizol Invitrogen following the manufacturer’s manual. Libraries for RNA sequencing were made with poly A selected mRNA using the Illumina TruSeq RNA library construction kit v2 Illumina. The resulting libraries were purified using Agencourt AMPure XP system Backman Coulter then quantified using a Bioanalyzer or Qubit Fluorometer Life Technologies.,Larvae were generated by paired matings and raised in 0.5X E2 medium at 28.5°C. GFP positive larvae were sorted from wild type larvae at 48 hpf under fluorescent stereoscope.,drug:neomycin|time:3hr|gfp status:negative|genotype:TgsqET20|experiment date:Apr2012,GSM1357174,GSM1357174: cntl neo 3hr 1; Danio rerio; RNA Seq,GSM1357174,,1,Two hundred 5dpf untreated TgsqET20 control or neomycin treated TgsqET20 larvae were anesthetized collected in a 2mL tube dissociated with trypsin and filtered to remove un dissociated tissue. A two gate FACS strategy was used to select only living target cells from excesses of dead cells and cellular debris of the larval cell suspensions see Materials and Methods of associated manuscript for detailed FACS protocol. Approximately 30 000 GFP or GFP+ cells were used for total RNA extraction using Trizol Invitrogen following the manufacturer’s manual. Libraries for RNA sequencing were made with poly A selected mRNA using the Illumina TruSeq RNA library construction kit v2 Illumina. The resulting libraries were purified using Agencourt AMPure XP system Backman Coulter then quantified using a Bioanalyzer or Qubit Fluorometer Life Technologies.,GEO Accession:GSM1357174,RNA-Seq,TRANSCRIPTOMIC,cDNA,SINGLE,ILLUMINA,Illumina HiSeq 2000,,SRP040561,,loader:latf load,cntl_neo_3_1.fastq.gz,fastq,1228792200.0,24575844.0,GSM1357174 r1,0:50 1:0,A:328509222;C:288306723;G:283185002;T:328736353;N:54900,50,0,,,328509222,288306723,283185002,328736353,54900,SRX501293,SRS582365,SRA149178,GEO,"Seidel, Genomics, Stowers Institute",1,0.93269,,0.21003,,0.66592,,0.48875,,50,,B,,usable mapping rate,illumina,hiseq_era,unknown,poly_a,trueseq,bulk,unknown,unknown,,United States,2014-03-25,Multi-stage,Multi-stage,Undetermined,Undetermined
37970,SRR1205165,SRX501292,SRS582364,SRP040561,PRJNA242641,Gene expression analysis of hair cell regeneration in the zebrafish lateral line,GSE56176,Transcriptome Analysis,Deafness due to the terminal loss of inner ear hair cells is one of the most common sensory diseases. However non mammalian animals e.g. birds amphibian and fish regenerate damaged hair cells. In order to better understand the reasons underpinning such regeneration disparities in vertebrates we set out to define the changes in gene expression associated with the regeneration of hair cells in the zebrafish lateral line at high resolution. We performed RNA Seq analyses on regenerating support cells purified by fluorescence activated cell sorting FACS. The zebrafish lateral line provides an experimentally accessible system to define the complex signaling events triggered by injury and regeneration because these cells can be acutely killed by exposure to neomycin post which they regenerate rapidly. Lateral line hair cells are located in the center of a mechanosensory organ known as the neuromast and are surrounded by inner support cells and an outer ring of mantle cells. TgsqET20 larvae express GFP strongly in mantle cells and to a lesser degree in inner support cells. We isolated GFP positive and GFP negative cells from 5 dpf dpf TgsqET20 larvae at 1 3 and 5 hours post neomycin treatment as well as from a non treated control. Overall design: Transgenic zebrafish TgsqET20 larvae at 5 dpf were exposed to neomycin dissociated and FACS sorted into GFP positive and GFP negative populations at xxx 3 and 5 hours following treatment along with a mock treated 1 hr control. The experiment was performed in triplicate for a total of 24 samples.,,pubmed:24706903,,gfp neo 3hr 3,GSM1357173,,tissue:GFP positive cells from 5 dpf larvae|drug:neomycin|time:3hr|gfp status:positive|genotype:TgsqET20|experiment date:Apr2012,gfp neo 3hr 3,Data was processed with CASAVA version 1.8.2 Sequence reads in fastq format were mapped to danRer7using tophat 1.4.1 with options –g 1 and a GTF description of transcripts based on Ensembl 63. FPKM values for these transcripts were generated using cufflinks v1.3. Genome build: danRer7 Supplementary files format and content: FPKM values per gene.,GFP positive cells from 5 dpf larvae,For neomycin treatment 5dpf larvae were treated for 30min with 300μM neomycin Fisher BioReagents diluted in 0.5X E2 medium rinsed three times and recovered in 0.5X E2 medium at 28.5°C for the indicated time.,Two hundred 5dpf untreated TgsqET20 control or neomycin treated TgsqET20 larvae were anesthetized collected in a 2mL tube dissociated with trypsin and filtered to remove un dissociated tissue. A two gate FACS strategy was used to select only living target cells from excesses of dead cells and cellular debris of the larval cell suspensions see Materials and Methods of associated manuscript for detailed FACS protocol. Approximately 30 000 GFP or GFP+ cells were used for total RNA extraction using Trizol Invitrogen following the manufacturer’s manual. Libraries for RNA sequencing were made with poly A selected mRNA using the Illumina TruSeq RNA library construction kit v2 Illumina. The resulting libraries were purified using Agencourt AMPure XP system Backman Coulter then quantified using a Bioanalyzer or Qubit Fluorometer Life Technologies.,Larvae were generated by paired matings and raised in 0.5X E2 medium at 28.5°C. GFP positive larvae were sorted from wild type larvae at 48 hpf under fluorescent stereoscope.,drug:neomycin|time:3hr|gfp status:positive|genotype:TgsqET20|experiment date:Apr2012,GSM1357173,GSM1357173: gfp neo 3hr 3; Danio rerio; RNA Seq,GSM1357173,,1,Two hundred 5dpf untreated TgsqET20 control or neomycin treated TgsqET20 larvae were anesthetized collected in a 2mL tube dissociated with trypsin and filtered to remove un dissociated tissue. A two gate FACS strategy was used to select only living target cells from excesses of dead cells and cellular debris of the larval cell suspensions see Materials and Methods of associated manuscript for detailed FACS protocol. Approximately 30 000 GFP or GFP+ cells were used for total RNA extraction using Trizol Invitrogen following the manufacturer’s manual. Libraries for RNA sequencing were made with poly A selected mRNA using the Illumina TruSeq RNA library construction kit v2 Illumina. The resulting libraries were purified using Agencourt AMPure XP system Backman Coulter then quantified using a Bioanalyzer or Qubit Fluorometer Life Technologies.,GEO Accession:GSM1357173,RNA-Seq,TRANSCRIPTOMIC,cDNA,SINGLE,ILLUMINA,Illumina HiSeq 2000,,SRP040561,,loader:latf load,gfp_neo_3_3.fastq.gz,fastq,1406657700.0,28133154.0,GSM1357173 r1,0:50 1:0,A:379997165;C:326224852;G:320555458;T:379818406;N:61819,50,0,,,379997165,326224852,320555458,379818406,61819,SRX501292,SRS582364,SRA149178,GEO,"Seidel, Genomics, Stowers Institute",1,0.9327,,0.3167,,0.70709,,0.48722,,50,,B,,usable mapping rate,illumina,hiseq_era,unknown,poly_a,trueseq,bulk,unknown,unknown,,United States,2014-03-25,Multi-stage,Multi-stage,Undetermined,Undetermined
37971,SRR1205164,SRX501291,SRS582363,SRP040561,PRJNA242641,Gene expression analysis of hair cell regeneration in the zebrafish lateral line,GSE56176,Transcriptome Analysis,Deafness due to the terminal loss of inner ear hair cells is one of the most common sensory diseases. However non mammalian animals e.g. birds amphibian and fish regenerate damaged hair cells. In order to better understand the reasons underpinning such regeneration disparities in vertebrates we set out to define the changes in gene expression associated with the regeneration of hair cells in the zebrafish lateral line at high resolution. We performed RNA Seq analyses on regenerating support cells purified by fluorescence activated cell sorting FACS. The zebrafish lateral line provides an experimentally accessible system to define the complex signaling events triggered by injury and regeneration because these cells can be acutely killed by exposure to neomycin post which they regenerate rapidly. Lateral line hair cells are located in the center of a mechanosensory organ known as the neuromast and are surrounded by inner support cells and an outer ring of mantle cells. TgsqET20 larvae express GFP strongly in mantle cells and to a lesser degree in inner support cells. We isolated GFP positive and GFP negative cells from 5 dpf dpf TgsqET20 larvae at 1 3 and 5 hours post neomycin treatment as well as from a non treated control. Overall design: Transgenic zebrafish TgsqET20 larvae at 5 dpf were exposed to neomycin dissociated and FACS sorted into GFP positive and GFP negative populations at xxx 3 and 5 hours following treatment along with a mock treated 1 hr control. The experiment was performed in triplicate for a total of 24 samples.,,pubmed:24706903,,gfp neo 3hr 2,GSM1357172,,tissue:GFP positive cells from 5 dpf larvae|drug:neomycin|time:3hr|gfp status:positive|genotype:TgsqET20|experiment date:Apr2012,gfp neo 3hr 2,Data was processed with CASAVA version 1.8.2 Sequence reads in fastq format were mapped to danRer7using tophat 1.4.1 with options –g 1 and a GTF description of transcripts based on Ensembl 63. FPKM values for these transcripts were generated using cufflinks v1.3. Genome build: danRer7 Supplementary files format and content: FPKM values per gene.,GFP positive cells from 5 dpf larvae,For neomycin treatment 5dpf larvae were treated for 30min with 300μM neomycin Fisher BioReagents diluted in 0.5X E2 medium rinsed three times and recovered in 0.5X E2 medium at 28.5°C for the indicated time.,Two hundred 5dpf untreated TgsqET20 control or neomycin treated TgsqET20 larvae were anesthetized collected in a 2mL tube dissociated with trypsin and filtered to remove un dissociated tissue. A two gate FACS strategy was used to select only living target cells from excesses of dead cells and cellular debris of the larval cell suspensions see Materials and Methods of associated manuscript for detailed FACS protocol. Approximately 30 000 GFP or GFP+ cells were used for total RNA extraction using Trizol Invitrogen following the manufacturer’s manual. Libraries for RNA sequencing were made with poly A selected mRNA using the Illumina TruSeq RNA library construction kit v2 Illumina. The resulting libraries were purified using Agencourt AMPure XP system Backman Coulter then quantified using a Bioanalyzer or Qubit Fluorometer Life Technologies.,Larvae were generated by paired matings and raised in 0.5X E2 medium at 28.5°C. GFP positive larvae were sorted from wild type larvae at 48 hpf under fluorescent stereoscope.,drug:neomycin|time:3hr|gfp status:positive|genotype:TgsqET20|experiment date:Apr2012,GSM1357172,GSM1357172: gfp neo 3hr 2; Danio rerio; RNA Seq,GSM1357172,,1,Two hundred 5dpf untreated TgsqET20 control or neomycin treated TgsqET20 larvae were anesthetized collected in a 2mL tube dissociated with trypsin and filtered to remove un dissociated tissue. A two gate FACS strategy was used to select only living target cells from excesses of dead cells and cellular debris of the larval cell suspensions see Materials and Methods of associated manuscript for detailed FACS protocol. Approximately 30 000 GFP or GFP+ cells were used for total RNA extraction using Trizol Invitrogen following the manufacturer’s manual. Libraries for RNA sequencing were made with poly A selected mRNA using the Illumina TruSeq RNA library construction kit v2 Illumina. The resulting libraries were purified using Agencourt AMPure XP system Backman Coulter then quantified using a Bioanalyzer or Qubit Fluorometer Life Technologies.,GEO Accession:GSM1357172,RNA-Seq,TRANSCRIPTOMIC,cDNA,SINGLE,ILLUMINA,Illumina HiSeq 2000,,SRP040561,,loader:latf load,gfp_neo_3_2.fastq.gz,fastq,1409177900.0,28183558.0,GSM1357172 r1,0:50 1:0,A:377366991;C:329654609;G:322942817;T:379147506;N:65977,50,0,,,377366991,329654609,322942817,379147506,65977,SRX501291,SRS582363,SRA149178,GEO,"Seidel, Genomics, Stowers Institute",1,0.92559,,0.27573,,0.69968,,0.48668,,50,,B,,usable mapping rate,illumina,hiseq_era,unknown,poly_a,trueseq,bulk,unknown,unknown,,United States,2014-03-25,Multi-stage,Multi-stage,Undetermined,Undetermined
37972,SRR1205163,SRX501290,SRS582362,SRP040561,PRJNA242641,Gene expression analysis of hair cell regeneration in the zebrafish lateral line,GSE56176,Transcriptome Analysis,Deafness due to the terminal loss of inner ear hair cells is one of the most common sensory diseases. However non mammalian animals e.g. birds amphibian and fish regenerate damaged hair cells. In order to better understand the reasons underpinning such regeneration disparities in vertebrates we set out to define the changes in gene expression associated with the regeneration of hair cells in the zebrafish lateral line at high resolution. We performed RNA Seq analyses on regenerating support cells purified by fluorescence activated cell sorting FACS. The zebrafish lateral line provides an experimentally accessible system to define the complex signaling events triggered by injury and regeneration because these cells can be acutely killed by exposure to neomycin post which they regenerate rapidly. Lateral line hair cells are located in the center of a mechanosensory organ known as the neuromast and are surrounded by inner support cells and an outer ring of mantle cells. TgsqET20 larvae express GFP strongly in mantle cells and to a lesser degree in inner support cells. We isolated GFP positive and GFP negative cells from 5 dpf dpf TgsqET20 larvae at 1 3 and 5 hours post neomycin treatment as well as from a non treated control. Overall design: Transgenic zebrafish TgsqET20 larvae at 5 dpf were exposed to neomycin dissociated and FACS sorted into GFP positive and GFP negative populations at xxx 3 and 5 hours following treatment along with a mock treated 1 hr control. The experiment was performed in triplicate for a total of 24 samples.,,pubmed:24706903,,gfp neo 3hr 1,GSM1357171,,tissue:GFP positive cells from 5 dpf larvae|drug:neomycin|time:3hr|gfp status:positive|genotype:TgsqET20|experiment date:Apr2012,gfp neo 3hr 1,Data was processed with CASAVA version 1.8.2 Sequence reads in fastq format were mapped to danRer7using tophat 1.4.1 with options –g 1 and a GTF description of transcripts based on Ensembl 63. FPKM values for these transcripts were generated using cufflinks v1.3. Genome build: danRer7 Supplementary files format and content: FPKM values per gene.,GFP positive cells from 5 dpf larvae,For neomycin treatment 5dpf larvae were treated for 30min with 300μM neomycin Fisher BioReagents diluted in 0.5X E2 medium rinsed three times and recovered in 0.5X E2 medium at 28.5°C for the indicated time.,Two hundred 5dpf untreated TgsqET20 control or neomycin treated TgsqET20 larvae were anesthetized collected in a 2mL tube dissociated with trypsin and filtered to remove un dissociated tissue. A two gate FACS strategy was used to select only living target cells from excesses of dead cells and cellular debris of the larval cell suspensions see Materials and Methods of associated manuscript for detailed FACS protocol. Approximately 30 000 GFP or GFP+ cells were used for total RNA extraction using Trizol Invitrogen following the manufacturer’s manual. Libraries for RNA sequencing were made with poly A selected mRNA using the Illumina TruSeq RNA library construction kit v2 Illumina. The resulting libraries were purified using Agencourt AMPure XP system Backman Coulter then quantified using a Bioanalyzer or Qubit Fluorometer Life Technologies.,Larvae were generated by paired matings and raised in 0.5X E2 medium at 28.5°C. GFP positive larvae were sorted from wild type larvae at 48 hpf under fluorescent stereoscope.,drug:neomycin|time:3hr|gfp status:positive|genotype:TgsqET20|experiment date:Apr2012,GSM1357171,GSM1357171: gfp neo 3hr 1; Danio rerio; RNA Seq,GSM1357171,,1,Two hundred 5dpf untreated TgsqET20 control or neomycin treated TgsqET20 larvae were anesthetized collected in a 2mL tube dissociated with trypsin and filtered to remove un dissociated tissue. A two gate FACS strategy was used to select only living target cells from excesses of dead cells and cellular debris of the larval cell suspensions see Materials and Methods of associated manuscript for detailed FACS protocol. Approximately 30 000 GFP or GFP+ cells were used for total RNA extraction using Trizol Invitrogen following the manufacturer’s manual. Libraries for RNA sequencing were made with poly A selected mRNA using the Illumina TruSeq RNA library construction kit v2 Illumina. The resulting libraries were purified using Agencourt AMPure XP system Backman Coulter then quantified using a Bioanalyzer or Qubit Fluorometer Life Technologies.,GEO Accession:GSM1357171,RNA-Seq,TRANSCRIPTOMIC,cDNA,SINGLE,ILLUMINA,Illumina HiSeq 2000,,SRP040561,,loader:latf load,gfp_neo_3_1.fastq.gz,fastq,1364255100.0,27285102.0,GSM1357171 r1,0:50 1:0,A:367031933;C:317262942;G:311363762;T:368536308;N:60155,50,0,,,367031933,317262942,311363762,368536308,60155,SRX501290,SRS582362,SRA149178,GEO,"Seidel, Genomics, Stowers Institute",1,0.93433,,0.34822,,0.70504,,0.49052,,50,,B,,usable mapping rate,illumina,hiseq_era,unknown,poly_a,trueseq,bulk,unknown,unknown,,United States,2014-03-25,Multi-stage,Multi-stage,Undetermined,Undetermined
37973,SRR1205162,SRX501289,SRS582361,SRP040561,PRJNA242641,Gene expression analysis of hair cell regeneration in the zebrafish lateral line,GSE56176,Transcriptome Analysis,Deafness due to the terminal loss of inner ear hair cells is one of the most common sensory diseases. However non mammalian animals e.g. birds amphibian and fish regenerate damaged hair cells. In order to better understand the reasons underpinning such regeneration disparities in vertebrates we set out to define the changes in gene expression associated with the regeneration of hair cells in the zebrafish lateral line at high resolution. We performed RNA Seq analyses on regenerating support cells purified by fluorescence activated cell sorting FACS. The zebrafish lateral line provides an experimentally accessible system to define the complex signaling events triggered by injury and regeneration because these cells can be acutely killed by exposure to neomycin post which they regenerate rapidly. Lateral line hair cells are located in the center of a mechanosensory organ known as the neuromast and are surrounded by inner support cells and an outer ring of mantle cells. TgsqET20 larvae express GFP strongly in mantle cells and to a lesser degree in inner support cells. We isolated GFP positive and GFP negative cells from 5 dpf dpf TgsqET20 larvae at 1 3 and 5 hours post neomycin treatment as well as from a non treated control. Overall design: Transgenic zebrafish TgsqET20 larvae at 5 dpf were exposed to neomycin dissociated and FACS sorted into GFP positive and GFP negative populations at xxx 3 and 5 hours following treatment along with a mock treated 1 hr control. The experiment was performed in triplicate for a total of 24 samples.,,pubmed:24706903,,gfp nt 1hr 3,GSM1357170,,tissue:GFP positive cells from 5 dpf larvae|drug:no drug|time:1hr|gfp status:positive|genotype:TgsqET20|experiment date:Mar2012,gfp nt 1hr 3,Data was processed with CASAVA version 1.8.2 Sequence reads in fastq format were mapped to danRer7using tophat 1.4.1 with options –g 1 and a GTF description of transcripts based on Ensembl 63. FPKM values for these transcripts were generated using cufflinks v1.3. Genome build: danRer7 Supplementary files format and content: FPKM values per gene.,GFP positive cells from 5 dpf larvae,For neomycin treatment 5dpf larvae were treated for 30min with 300μM neomycin Fisher BioReagents diluted in 0.5X E2 medium rinsed three times and recovered in 0.5X E2 medium at 28.5°C for the indicated time.,Two hundred 5dpf untreated TgsqET20 control or neomycin treated TgsqET20 larvae were anesthetized collected in a 2mL tube dissociated with trypsin and filtered to remove un dissociated tissue. A two gate FACS strategy was used to select only living target cells from excesses of dead cells and cellular debris of the larval cell suspensions see Materials and Methods of associated manuscript for detailed FACS protocol. Approximately 30 000 GFP or GFP+ cells were used for total RNA extraction using Trizol Invitrogen following the manufacturer’s manual. Libraries for RNA sequencing were made with poly A selected mRNA using the Illumina TruSeq RNA library construction kit v2 Illumina. The resulting libraries were purified using Agencourt AMPure XP system Backman Coulter then quantified using a Bioanalyzer or Qubit Fluorometer Life Technologies.,Larvae were generated by paired matings and raised in 0.5X E2 medium at 28.5°C. GFP positive larvae were sorted from wild type larvae at 48 hpf under fluorescent stereoscope.,drug:no drug|time:1hr|gfp status:positive|genotype:TgsqET20|experiment date:Mar2012,GSM1357170,GSM1357170: gfp nt 1hr 3; Danio rerio; RNA Seq,GSM1357170,,1,Two hundred 5dpf untreated TgsqET20 control or neomycin treated TgsqET20 larvae were anesthetized collected in a 2mL tube dissociated with trypsin and filtered to remove un dissociated tissue. A two gate FACS strategy was used to select only living target cells from excesses of dead cells and cellular debris of the larval cell suspensions see Materials and Methods of associated manuscript for detailed FACS protocol. Approximately 30 000 GFP or GFP+ cells were used for total RNA extraction using Trizol Invitrogen following the manufacturer’s manual. Libraries for RNA sequencing were made with poly A selected mRNA using the Illumina TruSeq RNA library construction kit v2 Illumina. The resulting libraries were purified using Agencourt AMPure XP system Backman Coulter then quantified using a Bioanalyzer or Qubit Fluorometer Life Technologies.,GEO Accession:GSM1357170,RNA-Seq,TRANSCRIPTOMIC,cDNA,SINGLE,ILLUMINA,Illumina HiSeq 2000,,SRP040561,,loader:latf load,gfp_nt_1_3.fastq.gz,fastq,2032585500.0,40651710.0,GSM1357170 r1,0:50 1:0,A:540423336;C:478257444;G:470055372;T:543729414;N:119934,50,0,,,540423336,478257444,470055372,543729414,119934,SRX501289,SRS582361,SRA149178,GEO,"Seidel, Genomics, Stowers Institute",1,0.93511,,0.2696,,0.70425,,0.49291,,50,,B,,usable mapping rate,illumina,hiseq_era,unknown,poly_a,trueseq,bulk,unknown,unknown,,United States,2014-03-25,Multi-stage,Multi-stage,Undetermined,Undetermined
37974,SRR1205161,SRX501288,SRS582360,SRP040561,PRJNA242641,Gene expression analysis of hair cell regeneration in the zebrafish lateral line,GSE56176,Transcriptome Analysis,Deafness due to the terminal loss of inner ear hair cells is one of the most common sensory diseases. However non mammalian animals e.g. birds amphibian and fish regenerate damaged hair cells. In order to better understand the reasons underpinning such regeneration disparities in vertebrates we set out to define the changes in gene expression associated with the regeneration of hair cells in the zebrafish lateral line at high resolution. We performed RNA Seq analyses on regenerating support cells purified by fluorescence activated cell sorting FACS. The zebrafish lateral line provides an experimentally accessible system to define the complex signaling events triggered by injury and regeneration because these cells can be acutely killed by exposure to neomycin post which they regenerate rapidly. Lateral line hair cells are located in the center of a mechanosensory organ known as the neuromast and are surrounded by inner support cells and an outer ring of mantle cells. TgsqET20 larvae express GFP strongly in mantle cells and to a lesser degree in inner support cells. We isolated GFP positive and GFP negative cells from 5 dpf dpf TgsqET20 larvae at 1 3 and 5 hours post neomycin treatment as well as from a non treated control. Overall design: Transgenic zebrafish TgsqET20 larvae at 5 dpf were exposed to neomycin dissociated and FACS sorted into GFP positive and GFP negative populations at xxx 3 and 5 hours following treatment along with a mock treated 1 hr control. The experiment was performed in triplicate for a total of 24 samples.,,pubmed:24706903,,gfp nt 1hr 2,GSM1357169,,tissue:GFP positive cells from 5 dpf larvae|drug:no drug|time:1hr|gfp status:positive|genotype:TgsqET20|experiment date:Mar2012,gfp nt 1hr 2,Data was processed with CASAVA version 1.8.2 Sequence reads in fastq format were mapped to danRer7using tophat 1.4.1 with options –g 1 and a GTF description of transcripts based on Ensembl 63. FPKM values for these transcripts were generated using cufflinks v1.3. Genome build: danRer7 Supplementary files format and content: FPKM values per gene.,GFP positive cells from 5 dpf larvae,For neomycin treatment 5dpf larvae were treated for 30min with 300μM neomycin Fisher BioReagents diluted in 0.5X E2 medium rinsed three times and recovered in 0.5X E2 medium at 28.5°C for the indicated time.,Two hundred 5dpf untreated TgsqET20 control or neomycin treated TgsqET20 larvae were anesthetized collected in a 2mL tube dissociated with trypsin and filtered to remove un dissociated tissue. A two gate FACS strategy was used to select only living target cells from excesses of dead cells and cellular debris of the larval cell suspensions see Materials and Methods of associated manuscript for detailed FACS protocol. Approximately 30 000 GFP or GFP+ cells were used for total RNA extraction using Trizol Invitrogen following the manufacturer’s manual. Libraries for RNA sequencing were made with poly A selected mRNA using the Illumina TruSeq RNA library construction kit v2 Illumina. The resulting libraries were purified using Agencourt AMPure XP system Backman Coulter then quantified using a Bioanalyzer or Qubit Fluorometer Life Technologies.,Larvae were generated by paired matings and raised in 0.5X E2 medium at 28.5°C. GFP positive larvae were sorted from wild type larvae at 48 hpf under fluorescent stereoscope.,drug:no drug|time:1hr|gfp status:positive|genotype:TgsqET20|experiment date:Mar2012,GSM1357169,GSM1357169: gfp nt 1hr 2; Danio rerio; RNA Seq,GSM1357169,,1,Two hundred 5dpf untreated TgsqET20 control or neomycin treated TgsqET20 larvae were anesthetized collected in a 2mL tube dissociated with trypsin and filtered to remove un dissociated tissue. A two gate FACS strategy was used to select only living target cells from excesses of dead cells and cellular debris of the larval cell suspensions see Materials and Methods of associated manuscript for detailed FACS protocol. Approximately 30 000 GFP or GFP+ cells were used for total RNA extraction using Trizol Invitrogen following the manufacturer’s manual. Libraries for RNA sequencing were made with poly A selected mRNA using the Illumina TruSeq RNA library construction kit v2 Illumina. The resulting libraries were purified using Agencourt AMPure XP system Backman Coulter then quantified using a Bioanalyzer or Qubit Fluorometer Life Technologies.,GEO Accession:GSM1357169,RNA-Seq,TRANSCRIPTOMIC,cDNA,SINGLE,ILLUMINA,Illumina HiSeq 2000,,SRP040561,,loader:latf load,gfp_nt_1_2.fastq.gz,fastq,1562346650.0,31246933.0,GSM1357169 r1,0:50 1:0,A:414164641;C:369142355;G:361974997;T:416978503;N:86154,50,0,,,414164641,369142355,361974997,416978503,86154,SRX501288,SRS582360,SRA149178,GEO,"Seidel, Genomics, Stowers Institute",1,0.93897,,0.31695,,0.70991,,0.50448,,50,,B,,usable mapping rate,illumina,hiseq_era,unknown,poly_a,trueseq,bulk,unknown,unknown,,United States,2014-03-25,Multi-stage,Multi-stage,Undetermined,Undetermined
37975,SRR1205160,SRX501287,SRS582359,SRP040561,PRJNA242641,Gene expression analysis of hair cell regeneration in the zebrafish lateral line,GSE56176,Transcriptome Analysis,Deafness due to the terminal loss of inner ear hair cells is one of the most common sensory diseases. However non mammalian animals e.g. birds amphibian and fish regenerate damaged hair cells. In order to better understand the reasons underpinning such regeneration disparities in vertebrates we set out to define the changes in gene expression associated with the regeneration of hair cells in the zebrafish lateral line at high resolution. We performed RNA Seq analyses on regenerating support cells purified by fluorescence activated cell sorting FACS. The zebrafish lateral line provides an experimentally accessible system to define the complex signaling events triggered by injury and regeneration because these cells can be acutely killed by exposure to neomycin post which they regenerate rapidly. Lateral line hair cells are located in the center of a mechanosensory organ known as the neuromast and are surrounded by inner support cells and an outer ring of mantle cells. TgsqET20 larvae express GFP strongly in mantle cells and to a lesser degree in inner support cells. We isolated GFP positive and GFP negative cells from 5 dpf dpf TgsqET20 larvae at 1 3 and 5 hours post neomycin treatment as well as from a non treated control. Overall design: Transgenic zebrafish TgsqET20 larvae at 5 dpf were exposed to neomycin dissociated and FACS sorted into GFP positive and GFP negative populations at xxx 3 and 5 hours following treatment along with a mock treated 1 hr control. The experiment was performed in triplicate for a total of 24 samples.,,pubmed:24706903,,gfp nt 1hr 1,GSM1357168,,tissue:GFP positive cells from 5 dpf larvae|drug:no drug|time:1hr|gfp status:positive|genotype:TgsqET20|experiment date:Mar2012,gfp nt 1hr 1,Data was processed with CASAVA version 1.8.2 Sequence reads in fastq format were mapped to danRer7using tophat 1.4.1 with options –g 1 and a GTF description of transcripts based on Ensembl 63. FPKM values for these transcripts were generated using cufflinks v1.3. Genome build: danRer7 Supplementary files format and content: FPKM values per gene.,GFP positive cells from 5 dpf larvae,For neomycin treatment 5dpf larvae were treated for 30min with 300μM neomycin Fisher BioReagents diluted in 0.5X E2 medium rinsed three times and recovered in 0.5X E2 medium at 28.5°C for the indicated time.,Two hundred 5dpf untreated TgsqET20 control or neomycin treated TgsqET20 larvae were anesthetized collected in a 2mL tube dissociated with trypsin and filtered to remove un dissociated tissue. A two gate FACS strategy was used to select only living target cells from excesses of dead cells and cellular debris of the larval cell suspensions see Materials and Methods of associated manuscript for detailed FACS protocol. Approximately 30 000 GFP or GFP+ cells were used for total RNA extraction using Trizol Invitrogen following the manufacturer’s manual. Libraries for RNA sequencing were made with poly A selected mRNA using the Illumina TruSeq RNA library construction kit v2 Illumina. The resulting libraries were purified using Agencourt AMPure XP system Backman Coulter then quantified using a Bioanalyzer or Qubit Fluorometer Life Technologies.,Larvae were generated by paired matings and raised in 0.5X E2 medium at 28.5°C. GFP positive larvae were sorted from wild type larvae at 48 hpf under fluorescent stereoscope.,drug:no drug|time:1hr|gfp status:positive|genotype:TgsqET20|experiment date:Mar2012,GSM1357168,GSM1357168: gfp nt 1hr 1; Danio rerio; RNA Seq,GSM1357168,,1,Two hundred 5dpf untreated TgsqET20 control or neomycin treated TgsqET20 larvae were anesthetized collected in a 2mL tube dissociated with trypsin and filtered to remove un dissociated tissue. A two gate FACS strategy was used to select only living target cells from excesses of dead cells and cellular debris of the larval cell suspensions see Materials and Methods of associated manuscript for detailed FACS protocol. Approximately 30 000 GFP or GFP+ cells were used for total RNA extraction using Trizol Invitrogen following the manufacturer’s manual. Libraries for RNA sequencing were made with poly A selected mRNA using the Illumina TruSeq RNA library construction kit v2 Illumina. The resulting libraries were purified using Agencourt AMPure XP system Backman Coulter then quantified using a Bioanalyzer or Qubit Fluorometer Life Technologies.,GEO Accession:GSM1357168,RNA-Seq,TRANSCRIPTOMIC,cDNA,SINGLE,ILLUMINA,Illumina HiSeq 2000,,SRP040561,,loader:latf load,gfp_nt_1_1.fastq.gz,fastq,1689050050.0,33781001.0,GSM1357168 r1,0:50 1:0,A:453271567;C:394505701;G:386090706;T:455068897;N:113179,50,0,,,453271567,394505701,386090706,455068897,113179,SRX501287,SRS582359,SRA149178,GEO,"Seidel, Genomics, Stowers Institute",1,0.93627,,0.28408,,0.70585,,0.48065,,50,,B,,usable mapping rate,illumina,hiseq_era,unknown,poly_a,trueseq,bulk,unknown,unknown,,United States,2014-03-25,Multi-stage,Multi-stage,Undetermined,Undetermined
37976,SRR1205159,SRX501286,SRS582358,SRP040561,PRJNA242641,Gene expression analysis of hair cell regeneration in the zebrafish lateral line,GSE56176,Transcriptome Analysis,Deafness due to the terminal loss of inner ear hair cells is one of the most common sensory diseases. However non mammalian animals e.g. birds amphibian and fish regenerate damaged hair cells. In order to better understand the reasons underpinning such regeneration disparities in vertebrates we set out to define the changes in gene expression associated with the regeneration of hair cells in the zebrafish lateral line at high resolution. We performed RNA Seq analyses on regenerating support cells purified by fluorescence activated cell sorting FACS. The zebrafish lateral line provides an experimentally accessible system to define the complex signaling events triggered by injury and regeneration because these cells can be acutely killed by exposure to neomycin post which they regenerate rapidly. Lateral line hair cells are located in the center of a mechanosensory organ known as the neuromast and are surrounded by inner support cells and an outer ring of mantle cells. TgsqET20 larvae express GFP strongly in mantle cells and to a lesser degree in inner support cells. We isolated GFP positive and GFP negative cells from 5 dpf dpf TgsqET20 larvae at 1 3 and 5 hours post neomycin treatment as well as from a non treated control. Overall design: Transgenic zebrafish TgsqET20 larvae at 5 dpf were exposed to neomycin dissociated and FACS sorted into GFP positive and GFP negative populations at xxx 3 and 5 hours following treatment along with a mock treated 1 hr control. The experiment was performed in triplicate for a total of 24 samples.,,pubmed:24706903,,gfp neo 1hr 3,GSM1357167,,tissue:GFP positive cells from 5 dpf larvae|drug:neomycin|time:1hr|gfp status:positive|genotype:TgsqET20|experiment date:Mar2012,gfp neo 1hr 3,Data was processed with CASAVA version 1.8.2 Sequence reads in fastq format were mapped to danRer7using tophat 1.4.1 with options –g 1 and a GTF description of transcripts based on Ensembl 63. FPKM values for these transcripts were generated using cufflinks v1.3. Genome build: danRer7 Supplementary files format and content: FPKM values per gene.,GFP positive cells from 5 dpf larvae,For neomycin treatment 5dpf larvae were treated for 30min with 300μM neomycin Fisher BioReagents diluted in 0.5X E2 medium rinsed three times and recovered in 0.5X E2 medium at 28.5°C for the indicated time.,Two hundred 5dpf untreated TgsqET20 control or neomycin treated TgsqET20 larvae were anesthetized collected in a 2mL tube dissociated with trypsin and filtered to remove un dissociated tissue. A two gate FACS strategy was used to select only living target cells from excesses of dead cells and cellular debris of the larval cell suspensions see Materials and Methods of associated manuscript for detailed FACS protocol. Approximately 30 000 GFP or GFP+ cells were used for total RNA extraction using Trizol Invitrogen following the manufacturer’s manual. Libraries for RNA sequencing were made with poly A selected mRNA using the Illumina TruSeq RNA library construction kit v2 Illumina. The resulting libraries were purified using Agencourt AMPure XP system Backman Coulter then quantified using a Bioanalyzer or Qubit Fluorometer Life Technologies.,Larvae were generated by paired matings and raised in 0.5X E2 medium at 28.5°C. GFP positive larvae were sorted from wild type larvae at 48 hpf under fluorescent stereoscope.,drug:neomycin|time:1hr|gfp status:positive|genotype:TgsqET20|experiment date:Mar2012,GSM1357167,GSM1357167: gfp neo 1hr 3; Danio rerio; RNA Seq,GSM1357167,,1,Two hundred 5dpf untreated TgsqET20 control or neomycin treated TgsqET20 larvae were anesthetized collected in a 2mL tube dissociated with trypsin and filtered to remove un dissociated tissue. A two gate FACS strategy was used to select only living target cells from excesses of dead cells and cellular debris of the larval cell suspensions see Materials and Methods of associated manuscript for detailed FACS protocol. Approximately 30 000 GFP or GFP+ cells were used for total RNA extraction using Trizol Invitrogen following the manufacturer’s manual. Libraries for RNA sequencing were made with poly A selected mRNA using the Illumina TruSeq RNA library construction kit v2 Illumina. The resulting libraries were purified using Agencourt AMPure XP system Backman Coulter then quantified using a Bioanalyzer or Qubit Fluorometer Life Technologies.,GEO Accession:GSM1357167,RNA-Seq,TRANSCRIPTOMIC,cDNA,SINGLE,ILLUMINA,Illumina HiSeq 2000,,SRP040561,,loader:latf load,gfp_neo_1_3.fastq.gz,fastq,1611919200.0,32238384.0,GSM1357167 r1,0:50 1:0,A:428150047;C:380113504;G:372605259;T:430955158;N:95232,50,0,,,428150047,380113504,372605259,430955158,95232,SRX501286,SRS582358,SRA149178,GEO,"Seidel, Genomics, Stowers Institute",1,0.94024,,0.31287,,0.71601,,0.50103,,50,,B,,usable mapping rate,illumina,hiseq_era,unknown,poly_a,trueseq,bulk,unknown,unknown,,United States,2014-03-25,Multi-stage,Multi-stage,Undetermined,Undetermined
37977,SRR1205158,SRX501285,SRS582357,SRP040561,PRJNA242641,Gene expression analysis of hair cell regeneration in the zebrafish lateral line,GSE56176,Transcriptome Analysis,Deafness due to the terminal loss of inner ear hair cells is one of the most common sensory diseases. However non mammalian animals e.g. birds amphibian and fish regenerate damaged hair cells. In order to better understand the reasons underpinning such regeneration disparities in vertebrates we set out to define the changes in gene expression associated with the regeneration of hair cells in the zebrafish lateral line at high resolution. We performed RNA Seq analyses on regenerating support cells purified by fluorescence activated cell sorting FACS. The zebrafish lateral line provides an experimentally accessible system to define the complex signaling events triggered by injury and regeneration because these cells can be acutely killed by exposure to neomycin post which they regenerate rapidly. Lateral line hair cells are located in the center of a mechanosensory organ known as the neuromast and are surrounded by inner support cells and an outer ring of mantle cells. TgsqET20 larvae express GFP strongly in mantle cells and to a lesser degree in inner support cells. We isolated GFP positive and GFP negative cells from 5 dpf dpf TgsqET20 larvae at 1 3 and 5 hours post neomycin treatment as well as from a non treated control. Overall design: Transgenic zebrafish TgsqET20 larvae at 5 dpf were exposed to neomycin dissociated and FACS sorted into GFP positive and GFP negative populations at xxx 3 and 5 hours following treatment along with a mock treated 1 hr control. The experiment was performed in triplicate for a total of 24 samples.,,pubmed:24706903,,gfp neo 1hr 2,GSM1357166,,tissue:GFP positive cells from 5 dpf larvae|drug:neomycin|time:1hr|gfp status:positive|genotype:TgsqET20|experiment date:Mar2012,gfp neo 1hr 2,Data was processed with CASAVA version 1.8.2 Sequence reads in fastq format were mapped to danRer7using tophat 1.4.1 with options –g 1 and a GTF description of transcripts based on Ensembl 63. FPKM values for these transcripts were generated using cufflinks v1.3. Genome build: danRer7 Supplementary files format and content: FPKM values per gene.,GFP positive cells from 5 dpf larvae,For neomycin treatment 5dpf larvae were treated for 30min with 300μM neomycin Fisher BioReagents diluted in 0.5X E2 medium rinsed three times and recovered in 0.5X E2 medium at 28.5°C for the indicated time.,Two hundred 5dpf untreated TgsqET20 control or neomycin treated TgsqET20 larvae were anesthetized collected in a 2mL tube dissociated with trypsin and filtered to remove un dissociated tissue. A two gate FACS strategy was used to select only living target cells from excesses of dead cells and cellular debris of the larval cell suspensions see Materials and Methods of associated manuscript for detailed FACS protocol. Approximately 30 000 GFP or GFP+ cells were used for total RNA extraction using Trizol Invitrogen following the manufacturer’s manual. Libraries for RNA sequencing were made with poly A selected mRNA using the Illumina TruSeq RNA library construction kit v2 Illumina. The resulting libraries were purified using Agencourt AMPure XP system Backman Coulter then quantified using a Bioanalyzer or Qubit Fluorometer Life Technologies.,Larvae were generated by paired matings and raised in 0.5X E2 medium at 28.5°C. GFP positive larvae were sorted from wild type larvae at 48 hpf under fluorescent stereoscope.,drug:neomycin|time:1hr|gfp status:positive|genotype:TgsqET20|experiment date:Mar2012,GSM1357166,GSM1357166: gfp neo 1hr 2; Danio rerio; RNA Seq,GSM1357166,,1,Two hundred 5dpf untreated TgsqET20 control or neomycin treated TgsqET20 larvae were anesthetized collected in a 2mL tube dissociated with trypsin and filtered to remove un dissociated tissue. A two gate FACS strategy was used to select only living target cells from excesses of dead cells and cellular debris of the larval cell suspensions see Materials and Methods of associated manuscript for detailed FACS protocol. Approximately 30 000 GFP or GFP+ cells were used for total RNA extraction using Trizol Invitrogen following the manufacturer’s manual. Libraries for RNA sequencing were made with poly A selected mRNA using the Illumina TruSeq RNA library construction kit v2 Illumina. The resulting libraries were purified using Agencourt AMPure XP system Backman Coulter then quantified using a Bioanalyzer or Qubit Fluorometer Life Technologies.,GEO Accession:GSM1357166,RNA-Seq,TRANSCRIPTOMIC,cDNA,SINGLE,ILLUMINA,Illumina HiSeq 2000,,SRP040561,,loader:latf load,gfp_neo_1_2.fastq.gz,fastq,1653679950.0,33073599.0,GSM1357166 r1,0:50 1:0,A:439492851;C:388625865;G:381772828;T:443698911;N:89495,50,0,,,439492851,388625865,381772828,443698911,89495,SRX501285,SRS582357,SRA149178,GEO,"Seidel, Genomics, Stowers Institute",1,0.94345,,0.38847,,0.7357,,0.50373,,50,,B,,usable mapping rate,illumina,hiseq_era,unknown,poly_a,trueseq,bulk,unknown,unknown,,United States,2014-03-25,Multi-stage,Multi-stage,Undetermined,Undetermined
37978,SRR1205157,SRX501284,SRS582356,SRP040561,PRJNA242641,Gene expression analysis of hair cell regeneration in the zebrafish lateral line,GSE56176,Transcriptome Analysis,Deafness due to the terminal loss of inner ear hair cells is one of the most common sensory diseases. However non mammalian animals e.g. birds amphibian and fish regenerate damaged hair cells. In order to better understand the reasons underpinning such regeneration disparities in vertebrates we set out to define the changes in gene expression associated with the regeneration of hair cells in the zebrafish lateral line at high resolution. We performed RNA Seq analyses on regenerating support cells purified by fluorescence activated cell sorting FACS. The zebrafish lateral line provides an experimentally accessible system to define the complex signaling events triggered by injury and regeneration because these cells can be acutely killed by exposure to neomycin post which they regenerate rapidly. Lateral line hair cells are located in the center of a mechanosensory organ known as the neuromast and are surrounded by inner support cells and an outer ring of mantle cells. TgsqET20 larvae express GFP strongly in mantle cells and to a lesser degree in inner support cells. We isolated GFP positive and GFP negative cells from 5 dpf dpf TgsqET20 larvae at 1 3 and 5 hours post neomycin treatment as well as from a non treated control. Overall design: Transgenic zebrafish TgsqET20 larvae at 5 dpf were exposed to neomycin dissociated and FACS sorted into GFP positive and GFP negative populations at xxx 3 and 5 hours following treatment along with a mock treated 1 hr control. The experiment was performed in triplicate for a total of 24 samples.,,pubmed:24706903,,gfp neo 1hr 1,GSM1357165,,tissue:GFP positive cells from 5 dpf larvae|drug:neomycin|time:1hr|gfp status:positive|genotype:TgsqET20|experiment date:Mar2012,gfp neo 1hr 1,Data was processed with CASAVA version 1.8.2 Sequence reads in fastq format were mapped to danRer7using tophat 1.4.1 with options –g 1 and a GTF description of transcripts based on Ensembl 63. FPKM values for these transcripts were generated using cufflinks v1.3. Genome build: danRer7 Supplementary files format and content: FPKM values per gene.,GFP positive cells from 5 dpf larvae,For neomycin treatment 5dpf larvae were treated for 30min with 300μM neomycin Fisher BioReagents diluted in 0.5X E2 medium rinsed three times and recovered in 0.5X E2 medium at 28.5°C for the indicated time.,Two hundred 5dpf untreated TgsqET20 control or neomycin treated TgsqET20 larvae were anesthetized collected in a 2mL tube dissociated with trypsin and filtered to remove un dissociated tissue. A two gate FACS strategy was used to select only living target cells from excesses of dead cells and cellular debris of the larval cell suspensions see Materials and Methods of associated manuscript for detailed FACS protocol. Approximately 30 000 GFP or GFP+ cells were used for total RNA extraction using Trizol Invitrogen following the manufacturer’s manual. Libraries for RNA sequencing were made with poly A selected mRNA using the Illumina TruSeq RNA library construction kit v2 Illumina. The resulting libraries were purified using Agencourt AMPure XP system Backman Coulter then quantified using a Bioanalyzer or Qubit Fluorometer Life Technologies.,Larvae were generated by paired matings and raised in 0.5X E2 medium at 28.5°C. GFP positive larvae were sorted from wild type larvae at 48 hpf under fluorescent stereoscope.,drug:neomycin|time:1hr|gfp status:positive|genotype:TgsqET20|experiment date:Mar2012,GSM1357165,GSM1357165: gfp neo 1hr 1; Danio rerio; RNA Seq,GSM1357165,,1,Two hundred 5dpf untreated TgsqET20 control or neomycin treated TgsqET20 larvae were anesthetized collected in a 2mL tube dissociated with trypsin and filtered to remove un dissociated tissue. A two gate FACS strategy was used to select only living target cells from excesses of dead cells and cellular debris of the larval cell suspensions see Materials and Methods of associated manuscript for detailed FACS protocol. Approximately 30 000 GFP or GFP+ cells were used for total RNA extraction using Trizol Invitrogen following the manufacturer’s manual. Libraries for RNA sequencing were made with poly A selected mRNA using the Illumina TruSeq RNA library construction kit v2 Illumina. The resulting libraries were purified using Agencourt AMPure XP system Backman Coulter then quantified using a Bioanalyzer or Qubit Fluorometer Life Technologies.,GEO Accession:GSM1357165,RNA-Seq,TRANSCRIPTOMIC,cDNA,SINGLE,ILLUMINA,Illumina HiSeq 2000,,SRP040561,,loader:latf load,gfp_neo_1_1.fastq.gz,fastq,1873022200.0,37460444.0,GSM1357165 r1,0:50 1:0,A:501397145;C:438845045;G:428481612;T:504171995;N:126403,50,0,,,501397145,438845045,428481612,504171995,126403,SRX501284,SRS582356,SRA149178,GEO,"Seidel, Genomics, Stowers Institute",1,0.933,,0.24769,,0.70591,,0.50587,,50,,B,,usable mapping rate,illumina,hiseq_era,unknown,poly_a,trueseq,bulk,unknown,unknown,,United States,2014-03-25,Multi-stage,Multi-stage,Undetermined,Undetermined
37979,SRR1205156,SRX501283,SRS582355,SRP040561,PRJNA242641,Gene expression analysis of hair cell regeneration in the zebrafish lateral line,GSE56176,Transcriptome Analysis,Deafness due to the terminal loss of inner ear hair cells is one of the most common sensory diseases. However non mammalian animals e.g. birds amphibian and fish regenerate damaged hair cells. In order to better understand the reasons underpinning such regeneration disparities in vertebrates we set out to define the changes in gene expression associated with the regeneration of hair cells in the zebrafish lateral line at high resolution. We performed RNA Seq analyses on regenerating support cells purified by fluorescence activated cell sorting FACS. The zebrafish lateral line provides an experimentally accessible system to define the complex signaling events triggered by injury and regeneration because these cells can be acutely killed by exposure to neomycin post which they regenerate rapidly. Lateral line hair cells are located in the center of a mechanosensory organ known as the neuromast and are surrounded by inner support cells and an outer ring of mantle cells. TgsqET20 larvae express GFP strongly in mantle cells and to a lesser degree in inner support cells. We isolated GFP positive and GFP negative cells from 5 dpf dpf TgsqET20 larvae at 1 3 and 5 hours post neomycin treatment as well as from a non treated control. Overall design: Transgenic zebrafish TgsqET20 larvae at 5 dpf were exposed to neomycin dissociated and FACS sorted into GFP positive and GFP negative populations at xxx 3 and 5 hours following treatment along with a mock treated 1 hr control. The experiment was performed in triplicate for a total of 24 samples.,,pubmed:24706903,,cntl nt 1hr 3,GSM1357164,,tissue:GFP negative cells from 5 dpf larvae|drug:no drug|time:1hr|gfp status:negative|genotype:TgsqET20|experiment date:Mar2012,cntl nt 1hr 3,Data was processed with CASAVA version 1.8.2 Sequence reads in fastq format were mapped to danRer7using tophat 1.4.1 with options –g 1 and a GTF description of transcripts based on Ensembl 63. FPKM values for these transcripts were generated using cufflinks v1.3. Genome build: danRer7 Supplementary files format and content: FPKM values per gene.,GFP negative cells from 5 dpf larvae,For neomycin treatment 5dpf larvae were treated for 30min with 300μM neomycin Fisher BioReagents diluted in 0.5X E2 medium rinsed three times and recovered in 0.5X E2 medium at 28.5°C for the indicated time.,Two hundred 5dpf untreated TgsqET20 control or neomycin treated TgsqET20 larvae were anesthetized collected in a 2mL tube dissociated with trypsin and filtered to remove un dissociated tissue. A two gate FACS strategy was used to select only living target cells from excesses of dead cells and cellular debris of the larval cell suspensions see Materials and Methods of associated manuscript for detailed FACS protocol. Approximately 30 000 GFP or GFP+ cells were used for total RNA extraction using Trizol Invitrogen following the manufacturer’s manual. Libraries for RNA sequencing were made with poly A selected mRNA using the Illumina TruSeq RNA library construction kit v2 Illumina. The resulting libraries were purified using Agencourt AMPure XP system Backman Coulter then quantified using a Bioanalyzer or Qubit Fluorometer Life Technologies.,Larvae were generated by paired matings and raised in 0.5X E2 medium at 28.5°C. GFP positive larvae were sorted from wild type larvae at 48 hpf under fluorescent stereoscope.,drug:no drug|time:1hr|gfp status:negative|genotype:TgsqET20|experiment date:Mar2012,GSM1357164,GSM1357164: cntl nt 1hr 3; Danio rerio; RNA Seq,GSM1357164,,1,Two hundred 5dpf untreated TgsqET20 control or neomycin treated TgsqET20 larvae were anesthetized collected in a 2mL tube dissociated with trypsin and filtered to remove un dissociated tissue. A two gate FACS strategy was used to select only living target cells from excesses of dead cells and cellular debris of the larval cell suspensions see Materials and Methods of associated manuscript for detailed FACS protocol. Approximately 30 000 GFP or GFP+ cells were used for total RNA extraction using Trizol Invitrogen following the manufacturer’s manual. Libraries for RNA sequencing were made with poly A selected mRNA using the Illumina TruSeq RNA library construction kit v2 Illumina. The resulting libraries were purified using Agencourt AMPure XP system Backman Coulter then quantified using a Bioanalyzer or Qubit Fluorometer Life Technologies.,GEO Accession:GSM1357164,RNA-Seq,TRANSCRIPTOMIC,cDNA,SINGLE,ILLUMINA,Illumina HiSeq 2000,,SRP040561,,loader:latf load,cntl_nt_1_3.fastq.gz,fastq,1523970250.0,30479405.0,GSM1357164 r1,0:50 1:0,A:404458518;C:360948466;G:353690676;T:404782977;N:89613,50,0,,,404458518,360948466,353690676,404782977,89613,SRX501283,SRS582355,SRA149178,GEO,"Seidel, Genomics, Stowers Institute",1,0.93995,,0.21232,,0.66772,,0.48499,,50,,B,,usable mapping rate,illumina,hiseq_era,unknown,poly_a,trueseq,bulk,unknown,unknown,,United States,2014-03-25,Multi-stage,Multi-stage,Undetermined,Undetermined
37980,SRR1205155,SRX501282,SRS582354,SRP040561,PRJNA242641,Gene expression analysis of hair cell regeneration in the zebrafish lateral line,GSE56176,Transcriptome Analysis,Deafness due to the terminal loss of inner ear hair cells is one of the most common sensory diseases. However non mammalian animals e.g. birds amphibian and fish regenerate damaged hair cells. In order to better understand the reasons underpinning such regeneration disparities in vertebrates we set out to define the changes in gene expression associated with the regeneration of hair cells in the zebrafish lateral line at high resolution. We performed RNA Seq analyses on regenerating support cells purified by fluorescence activated cell sorting FACS. The zebrafish lateral line provides an experimentally accessible system to define the complex signaling events triggered by injury and regeneration because these cells can be acutely killed by exposure to neomycin post which they regenerate rapidly. Lateral line hair cells are located in the center of a mechanosensory organ known as the neuromast and are surrounded by inner support cells and an outer ring of mantle cells. TgsqET20 larvae express GFP strongly in mantle cells and to a lesser degree in inner support cells. We isolated GFP positive and GFP negative cells from 5 dpf dpf TgsqET20 larvae at 1 3 and 5 hours post neomycin treatment as well as from a non treated control. Overall design: Transgenic zebrafish TgsqET20 larvae at 5 dpf were exposed to neomycin dissociated and FACS sorted into GFP positive and GFP negative populations at xxx 3 and 5 hours following treatment along with a mock treated 1 hr control. The experiment was performed in triplicate for a total of 24 samples.,,pubmed:24706903,,cntl nt 1hr 2,GSM1357163,,tissue:GFP negative cells from 5 dpf larvae|drug:no drug|time:1hr|gfp status:negative|genotype:TgsqET20|experiment date:Mar2012,cntl nt 1hr 2,Data was processed with CASAVA version 1.8.2 Sequence reads in fastq format were mapped to danRer7using tophat 1.4.1 with options –g 1 and a GTF description of transcripts based on Ensembl 63. FPKM values for these transcripts were generated using cufflinks v1.3. Genome build: danRer7 Supplementary files format and content: FPKM values per gene.,GFP negative cells from 5 dpf larvae,For neomycin treatment 5dpf larvae were treated for 30min with 300μM neomycin Fisher BioReagents diluted in 0.5X E2 medium rinsed three times and recovered in 0.5X E2 medium at 28.5°C for the indicated time.,Two hundred 5dpf untreated TgsqET20 control or neomycin treated TgsqET20 larvae were anesthetized collected in a 2mL tube dissociated with trypsin and filtered to remove un dissociated tissue. A two gate FACS strategy was used to select only living target cells from excesses of dead cells and cellular debris of the larval cell suspensions see Materials and Methods of associated manuscript for detailed FACS protocol. Approximately 30 000 GFP or GFP+ cells were used for total RNA extraction using Trizol Invitrogen following the manufacturer’s manual. Libraries for RNA sequencing were made with poly A selected mRNA using the Illumina TruSeq RNA library construction kit v2 Illumina. The resulting libraries were purified using Agencourt AMPure XP system Backman Coulter then quantified using a Bioanalyzer or Qubit Fluorometer Life Technologies.,Larvae were generated by paired matings and raised in 0.5X E2 medium at 28.5°C. GFP positive larvae were sorted from wild type larvae at 48 hpf under fluorescent stereoscope.,drug:no drug|time:1hr|gfp status:negative|genotype:TgsqET20|experiment date:Mar2012,GSM1357163,GSM1357163: cntl nt 1hr 2; Danio rerio; RNA Seq,GSM1357163,,1,Two hundred 5dpf untreated TgsqET20 control or neomycin treated TgsqET20 larvae were anesthetized collected in a 2mL tube dissociated with trypsin and filtered to remove un dissociated tissue. A two gate FACS strategy was used to select only living target cells from excesses of dead cells and cellular debris of the larval cell suspensions see Materials and Methods of associated manuscript for detailed FACS protocol. Approximately 30 000 GFP or GFP+ cells were used for total RNA extraction using Trizol Invitrogen following the manufacturer’s manual. Libraries for RNA sequencing were made with poly A selected mRNA using the Illumina TruSeq RNA library construction kit v2 Illumina. The resulting libraries were purified using Agencourt AMPure XP system Backman Coulter then quantified using a Bioanalyzer or Qubit Fluorometer Life Technologies.,GEO Accession:GSM1357163,RNA-Seq,TRANSCRIPTOMIC,cDNA,SINGLE,ILLUMINA,Illumina HiSeq 2000,,SRP040561,,loader:latf load,cntl_nt_1_2.fastq.gz,fastq,1649622150.0,32992443.0,GSM1357163 r1,0:50 1:0,A:434980357;C:392949654;G:385359402;T:436242531;N:90206,50,0,,,434980357,392949654,385359402,436242531,90206,SRX501282,SRS582354,SRA149178,GEO,"Seidel, Genomics, Stowers Institute",1,0.94128,,0.24395,,0.67549,,0.50787,,50,,B,,usable mapping rate,illumina,hiseq_era,unknown,poly_a,trueseq,bulk,unknown,unknown,,United States,2014-03-25,Multi-stage,Multi-stage,Undetermined,Undetermined
37981,SRR1205154,SRX501281,SRS582353,SRP040561,PRJNA242641,Gene expression analysis of hair cell regeneration in the zebrafish lateral line,GSE56176,Transcriptome Analysis,Deafness due to the terminal loss of inner ear hair cells is one of the most common sensory diseases. However non mammalian animals e.g. birds amphibian and fish regenerate damaged hair cells. In order to better understand the reasons underpinning such regeneration disparities in vertebrates we set out to define the changes in gene expression associated with the regeneration of hair cells in the zebrafish lateral line at high resolution. We performed RNA Seq analyses on regenerating support cells purified by fluorescence activated cell sorting FACS. The zebrafish lateral line provides an experimentally accessible system to define the complex signaling events triggered by injury and regeneration because these cells can be acutely killed by exposure to neomycin post which they regenerate rapidly. Lateral line hair cells are located in the center of a mechanosensory organ known as the neuromast and are surrounded by inner support cells and an outer ring of mantle cells. TgsqET20 larvae express GFP strongly in mantle cells and to a lesser degree in inner support cells. We isolated GFP positive and GFP negative cells from 5 dpf dpf TgsqET20 larvae at 1 3 and 5 hours post neomycin treatment as well as from a non treated control. Overall design: Transgenic zebrafish TgsqET20 larvae at 5 dpf were exposed to neomycin dissociated and FACS sorted into GFP positive and GFP negative populations at xxx 3 and 5 hours following treatment along with a mock treated 1 hr control. The experiment was performed in triplicate for a total of 24 samples.,,pubmed:24706903,,cntl nt 1hr 1,GSM1357162,,tissue:GFP negative cells from 5 dpf larvae|drug:no drug|time:1hr|gfp status:negative|genotype:TgsqET20|experiment date:Mar2012,cntl nt 1hr 1,Data was processed with CASAVA version 1.8.2 Sequence reads in fastq format were mapped to danRer7using tophat 1.4.1 with options –g 1 and a GTF description of transcripts based on Ensembl 63. FPKM values for these transcripts were generated using cufflinks v1.3. Genome build: danRer7 Supplementary files format and content: FPKM values per gene.,GFP negative cells from 5 dpf larvae,For neomycin treatment 5dpf larvae were treated for 30min with 300μM neomycin Fisher BioReagents diluted in 0.5X E2 medium rinsed three times and recovered in 0.5X E2 medium at 28.5°C for the indicated time.,Two hundred 5dpf untreated TgsqET20 control or neomycin treated TgsqET20 larvae were anesthetized collected in a 2mL tube dissociated with trypsin and filtered to remove un dissociated tissue. A two gate FACS strategy was used to select only living target cells from excesses of dead cells and cellular debris of the larval cell suspensions see Materials and Methods of associated manuscript for detailed FACS protocol. Approximately 30 000 GFP or GFP+ cells were used for total RNA extraction using Trizol Invitrogen following the manufacturer’s manual. Libraries for RNA sequencing were made with poly A selected mRNA using the Illumina TruSeq RNA library construction kit v2 Illumina. The resulting libraries were purified using Agencourt AMPure XP system Backman Coulter then quantified using a Bioanalyzer or Qubit Fluorometer Life Technologies.,Larvae were generated by paired matings and raised in 0.5X E2 medium at 28.5°C. GFP positive larvae were sorted from wild type larvae at 48 hpf under fluorescent stereoscope.,drug:no drug|time:1hr|gfp status:negative|genotype:TgsqET20|experiment date:Mar2012,GSM1357162,GSM1357162: cntl nt 1hr 1; Danio rerio; RNA Seq,GSM1357162,,1,Two hundred 5dpf untreated TgsqET20 control or neomycin treated TgsqET20 larvae were anesthetized collected in a 2mL tube dissociated with trypsin and filtered to remove un dissociated tissue. A two gate FACS strategy was used to select only living target cells from excesses of dead cells and cellular debris of the larval cell suspensions see Materials and Methods of associated manuscript for detailed FACS protocol. Approximately 30 000 GFP or GFP+ cells were used for total RNA extraction using Trizol Invitrogen following the manufacturer’s manual. Libraries for RNA sequencing were made with poly A selected mRNA using the Illumina TruSeq RNA library construction kit v2 Illumina. The resulting libraries were purified using Agencourt AMPure XP system Backman Coulter then quantified using a Bioanalyzer or Qubit Fluorometer Life Technologies.,GEO Accession:GSM1357162,RNA-Seq,TRANSCRIPTOMIC,cDNA,SINGLE,ILLUMINA,Illumina HiSeq 2000,,SRP040561,,loader:latf load,cntl_nt_1_1.fastq.gz,fastq,1953710600.0,39074212.0,GSM1357162 r1,0:50 1:0,A:518489677;C:462970545;G:452495723;T:519623507;N:131148,50,0,,,518489677,462970545,452495723,519623507,131148,SRX501281,SRS582353,SRA149178,GEO,"Seidel, Genomics, Stowers Institute",1,0.93818,,0.2175,,0.66229,,0.50468,,50,,B,,usable mapping rate,illumina,hiseq_era,unknown,poly_a,trueseq,bulk,unknown,unknown,,United States,2014-03-25,Multi-stage,Multi-stage,Undetermined,Undetermined
37982,SRR1205153,SRX501280,SRS582352,SRP040561,PRJNA242641,Gene expression analysis of hair cell regeneration in the zebrafish lateral line,GSE56176,Transcriptome Analysis,Deafness due to the terminal loss of inner ear hair cells is one of the most common sensory diseases. However non mammalian animals e.g. birds amphibian and fish regenerate damaged hair cells. In order to better understand the reasons underpinning such regeneration disparities in vertebrates we set out to define the changes in gene expression associated with the regeneration of hair cells in the zebrafish lateral line at high resolution. We performed RNA Seq analyses on regenerating support cells purified by fluorescence activated cell sorting FACS. The zebrafish lateral line provides an experimentally accessible system to define the complex signaling events triggered by injury and regeneration because these cells can be acutely killed by exposure to neomycin post which they regenerate rapidly. Lateral line hair cells are located in the center of a mechanosensory organ known as the neuromast and are surrounded by inner support cells and an outer ring of mantle cells. TgsqET20 larvae express GFP strongly in mantle cells and to a lesser degree in inner support cells. We isolated GFP positive and GFP negative cells from 5 dpf dpf TgsqET20 larvae at 1 3 and 5 hours post neomycin treatment as well as from a non treated control. Overall design: Transgenic zebrafish TgsqET20 larvae at 5 dpf were exposed to neomycin dissociated and FACS sorted into GFP positive and GFP negative populations at xxx 3 and 5 hours following treatment along with a mock treated 1 hr control. The experiment was performed in triplicate for a total of 24 samples.,,pubmed:24706903,,cntl neo 1hr 3,GSM1357161,,tissue:GFP negative cells from 5 dpf larvae|drug:neomycin|time:1hr|gfp status:negative|genotype:TgsqET20|experiment date:Mar2012,cntl neo 1hr 3,Data was processed with CASAVA version 1.8.2 Sequence reads in fastq format were mapped to danRer7using tophat 1.4.1 with options –g 1 and a GTF description of transcripts based on Ensembl 63. FPKM values for these transcripts were generated using cufflinks v1.3. Genome build: danRer7 Supplementary files format and content: FPKM values per gene.,GFP negative cells from 5 dpf larvae,For neomycin treatment 5dpf larvae were treated for 30min with 300μM neomycin Fisher BioReagents diluted in 0.5X E2 medium rinsed three times and recovered in 0.5X E2 medium at 28.5°C for the indicated time.,Two hundred 5dpf untreated TgsqET20 control or neomycin treated TgsqET20 larvae were anesthetized collected in a 2mL tube dissociated with trypsin and filtered to remove un dissociated tissue. A two gate FACS strategy was used to select only living target cells from excesses of dead cells and cellular debris of the larval cell suspensions see Materials and Methods of associated manuscript for detailed FACS protocol. Approximately 30 000 GFP or GFP+ cells were used for total RNA extraction using Trizol Invitrogen following the manufacturer’s manual. Libraries for RNA sequencing were made with poly A selected mRNA using the Illumina TruSeq RNA library construction kit v2 Illumina. The resulting libraries were purified using Agencourt AMPure XP system Backman Coulter then quantified using a Bioanalyzer or Qubit Fluorometer Life Technologies.,Larvae were generated by paired matings and raised in 0.5X E2 medium at 28.5°C. GFP positive larvae were sorted from wild type larvae at 48 hpf under fluorescent stereoscope.,drug:neomycin|time:1hr|gfp status:negative|genotype:TgsqET20|experiment date:Mar2012,GSM1357161,GSM1357161: cntl neo 1hr 3; Danio rerio; RNA Seq,GSM1357161,,1,Two hundred 5dpf untreated TgsqET20 control or neomycin treated TgsqET20 larvae were anesthetized collected in a 2mL tube dissociated with trypsin and filtered to remove un dissociated tissue. A two gate FACS strategy was used to select only living target cells from excesses of dead cells and cellular debris of the larval cell suspensions see Materials and Methods of associated manuscript for detailed FACS protocol. Approximately 30 000 GFP or GFP+ cells were used for total RNA extraction using Trizol Invitrogen following the manufacturer’s manual. Libraries for RNA sequencing were made with poly A selected mRNA using the Illumina TruSeq RNA library construction kit v2 Illumina. The resulting libraries were purified using Agencourt AMPure XP system Backman Coulter then quantified using a Bioanalyzer or Qubit Fluorometer Life Technologies.,GEO Accession:GSM1357161,RNA-Seq,TRANSCRIPTOMIC,cDNA,SINGLE,ILLUMINA,Illumina HiSeq 2000,,SRP040561,,loader:latf load,cntl_neo_1_3.fastq.gz,fastq,1934085200.0,38681704.0,GSM1357161 r1,0:50 1:0,A:513203802;C:458221455;G:449581302;T:512967391;N:111250,50,0,,,513203802,458221455,449581302,512967391,111250,SRX501280,SRS582352,SRA149178,GEO,"Seidel, Genomics, Stowers Institute",1,0.93811,,0.22613,,0.66671,,0.49681,,50,,B,,usable mapping rate,illumina,hiseq_era,unknown,poly_a,trueseq,bulk,unknown,unknown,,United States,2014-03-25,Multi-stage,Multi-stage,Undetermined,Undetermined
37983,SRR1205152,SRX501279,SRS582351,SRP040561,PRJNA242641,Gene expression analysis of hair cell regeneration in the zebrafish lateral line,GSE56176,Transcriptome Analysis,Deafness due to the terminal loss of inner ear hair cells is one of the most common sensory diseases. However non mammalian animals e.g. birds amphibian and fish regenerate damaged hair cells. In order to better understand the reasons underpinning such regeneration disparities in vertebrates we set out to define the changes in gene expression associated with the regeneration of hair cells in the zebrafish lateral line at high resolution. We performed RNA Seq analyses on regenerating support cells purified by fluorescence activated cell sorting FACS. The zebrafish lateral line provides an experimentally accessible system to define the complex signaling events triggered by injury and regeneration because these cells can be acutely killed by exposure to neomycin post which they regenerate rapidly. Lateral line hair cells are located in the center of a mechanosensory organ known as the neuromast and are surrounded by inner support cells and an outer ring of mantle cells. TgsqET20 larvae express GFP strongly in mantle cells and to a lesser degree in inner support cells. We isolated GFP positive and GFP negative cells from 5 dpf dpf TgsqET20 larvae at 1 3 and 5 hours post neomycin treatment as well as from a non treated control. Overall design: Transgenic zebrafish TgsqET20 larvae at 5 dpf were exposed to neomycin dissociated and FACS sorted into GFP positive and GFP negative populations at xxx 3 and 5 hours following treatment along with a mock treated 1 hr control. The experiment was performed in triplicate for a total of 24 samples.,,pubmed:24706903,,cntl neo 1hr 2,GSM1357160,,tissue:GFP negative cells from 5 dpf larvae|drug:neomycin|time:1hr|gfp status:negative|genotype:TgsqET20|experiment date:Mar2012,cntl neo 1hr 2,Data was processed with CASAVA version 1.8.2 Sequence reads in fastq format were mapped to danRer7using tophat 1.4.1 with options –g 1 and a GTF description of transcripts based on Ensembl 63. FPKM values for these transcripts were generated using cufflinks v1.3. Genome build: danRer7 Supplementary files format and content: FPKM values per gene.,GFP negative cells from 5 dpf larvae,For neomycin treatment 5dpf larvae were treated for 30min with 300μM neomycin Fisher BioReagents diluted in 0.5X E2 medium rinsed three times and recovered in 0.5X E2 medium at 28.5°C for the indicated time.,Two hundred 5dpf untreated TgsqET20 control or neomycin treated TgsqET20 larvae were anesthetized collected in a 2mL tube dissociated with trypsin and filtered to remove un dissociated tissue. A two gate FACS strategy was used to select only living target cells from excesses of dead cells and cellular debris of the larval cell suspensions see Materials and Methods of associated manuscript for detailed FACS protocol. Approximately 30 000 GFP or GFP+ cells were used for total RNA extraction using Trizol Invitrogen following the manufacturer’s manual. Libraries for RNA sequencing were made with poly A selected mRNA using the Illumina TruSeq RNA library construction kit v2 Illumina. The resulting libraries were purified using Agencourt AMPure XP system Backman Coulter then quantified using a Bioanalyzer or Qubit Fluorometer Life Technologies.,Larvae were generated by paired matings and raised in 0.5X E2 medium at 28.5°C. GFP positive larvae were sorted from wild type larvae at 48 hpf under fluorescent stereoscope.,drug:neomycin|time:1hr|gfp status:negative|genotype:TgsqET20|experiment date:Mar2012,GSM1357160,GSM1357160: cntl neo 1hr 2; Danio rerio; RNA Seq,GSM1357160,,1,Two hundred 5dpf untreated TgsqET20 control or neomycin treated TgsqET20 larvae were anesthetized collected in a 2mL tube dissociated with trypsin and filtered to remove un dissociated tissue. A two gate FACS strategy was used to select only living target cells from excesses of dead cells and cellular debris of the larval cell suspensions see Materials and Methods of associated manuscript for detailed FACS protocol. Approximately 30 000 GFP or GFP+ cells were used for total RNA extraction using Trizol Invitrogen following the manufacturer’s manual. Libraries for RNA sequencing were made with poly A selected mRNA using the Illumina TruSeq RNA library construction kit v2 Illumina. The resulting libraries were purified using Agencourt AMPure XP system Backman Coulter then quantified using a Bioanalyzer or Qubit Fluorometer Life Technologies.,GEO Accession:GSM1357160,RNA-Seq,TRANSCRIPTOMIC,cDNA,SINGLE,ILLUMINA,Illumina HiSeq 2000,,SRP040561,,loader:latf load,cntl_neo_1_2.fastq.gz,fastq,1836127900.0,36722558.0,GSM1357160 r1,0:50 1:0,A:485828745;C:436091545;G:426562682;T:487543575;N:101353,50,0,,,485828745,436091545,426562682,487543575,101353,SRX501279,SRS582351,SRA149178,GEO,"Seidel, Genomics, Stowers Institute",1,0.93856,,0.23223,,0.67154,,0.5021,,50,,B,,usable mapping rate,illumina,hiseq_era,unknown,poly_a,trueseq,bulk,unknown,unknown,,United States,2014-03-25,Multi-stage,Multi-stage,Undetermined,Undetermined
37984,SRR1205151,SRX501278,SRS582350,SRP040561,PRJNA242641,Gene expression analysis of hair cell regeneration in the zebrafish lateral line,GSE56176,Transcriptome Analysis,Deafness due to the terminal loss of inner ear hair cells is one of the most common sensory diseases. However non mammalian animals e.g. birds amphibian and fish regenerate damaged hair cells. In order to better understand the reasons underpinning such regeneration disparities in vertebrates we set out to define the changes in gene expression associated with the regeneration of hair cells in the zebrafish lateral line at high resolution. We performed RNA Seq analyses on regenerating support cells purified by fluorescence activated cell sorting FACS. The zebrafish lateral line provides an experimentally accessible system to define the complex signaling events triggered by injury and regeneration because these cells can be acutely killed by exposure to neomycin post which they regenerate rapidly. Lateral line hair cells are located in the center of a mechanosensory organ known as the neuromast and are surrounded by inner support cells and an outer ring of mantle cells. TgsqET20 larvae express GFP strongly in mantle cells and to a lesser degree in inner support cells. We isolated GFP positive and GFP negative cells from 5 dpf dpf TgsqET20 larvae at 1 3 and 5 hours post neomycin treatment as well as from a non treated control. Overall design: Transgenic zebrafish TgsqET20 larvae at 5 dpf were exposed to neomycin dissociated and FACS sorted into GFP positive and GFP negative populations at xxx 3 and 5 hours following treatment along with a mock treated 1 hr control. The experiment was performed in triplicate for a total of 24 samples.,,pubmed:24706903,,cntl neo 1hr 1,GSM1357159,,tissue:GFP negative cells from 5 dpf larvae|drug:neomycin|time:1hr|gfp status:negative|genotype:TgsqET20|experiment date:Mar2012,cntl neo 1hr 1,Data was processed with CASAVA version 1.8.2 Sequence reads in fastq format were mapped to danRer7using tophat 1.4.1 with options –g 1 and a GTF description of transcripts based on Ensembl 63. FPKM values for these transcripts were generated using cufflinks v1.3. Genome build: danRer7 Supplementary files format and content: FPKM values per gene.,GFP negative cells from 5 dpf larvae,For neomycin treatment 5dpf larvae were treated for 30min with 300μM neomycin Fisher BioReagents diluted in 0.5X E2 medium rinsed three times and recovered in 0.5X E2 medium at 28.5°C for the indicated time.,Two hundred 5dpf untreated TgsqET20 control or neomycin treated TgsqET20 larvae were anesthetized collected in a 2mL tube dissociated with trypsin and filtered to remove un dissociated tissue. A two gate FACS strategy was used to select only living target cells from excesses of dead cells and cellular debris of the larval cell suspensions see Materials and Methods of associated manuscript for detailed FACS protocol. Approximately 30 000 GFP or GFP+ cells were used for total RNA extraction using Trizol Invitrogen following the manufacturer’s manual. Libraries for RNA sequencing were made with poly A selected mRNA using the Illumina TruSeq RNA library construction kit v2 Illumina. The resulting libraries were purified using Agencourt AMPure XP system Backman Coulter then quantified using a Bioanalyzer or Qubit Fluorometer Life Technologies.,Larvae were generated by paired matings and raised in 0.5X E2 medium at 28.5°C. GFP positive larvae were sorted from wild type larvae at 48 hpf under fluorescent stereoscope.,drug:neomycin|time:1hr|gfp status:negative|genotype:TgsqET20|experiment date:Mar2012,GSM1357159,GSM1357159: cntl neo 1hr 1; Danio rerio; RNA Seq,GSM1357159,,1,Two hundred 5dpf untreated TgsqET20 control or neomycin treated TgsqET20 larvae were anesthetized collected in a 2mL tube dissociated with trypsin and filtered to remove un dissociated tissue. A two gate FACS strategy was used to select only living target cells from excesses of dead cells and cellular debris of the larval cell suspensions see Materials and Methods of associated manuscript for detailed FACS protocol. Approximately 30 000 GFP or GFP+ cells were used for total RNA extraction using Trizol Invitrogen following the manufacturer’s manual. Libraries for RNA sequencing were made with poly A selected mRNA using the Illumina TruSeq RNA library construction kit v2 Illumina. The resulting libraries were purified using Agencourt AMPure XP system Backman Coulter then quantified using a Bioanalyzer or Qubit Fluorometer Life Technologies.,GEO Accession:GSM1357159,RNA-Seq,TRANSCRIPTOMIC,cDNA,SINGLE,ILLUMINA,Illumina HiSeq 2000,,SRP040561,,loader:latf load,cntl_neo_1_1.fastq.gz,fastq,1687481850.0,33749637.0,GSM1357159 r1,0:50 1:0,A:448529802;C:398804686;G:391019451;T:449013498;N:114413,50,0,,,448529802,398804686,391019451,449013498,114413,SRX501278,SRS582350,SRA149178,GEO,"Seidel, Genomics, Stowers Institute",1,0.93698,,0.21557,,0.66436,,0.49756,,50,,B,,usable mapping rate,illumina,hiseq_era,unknown,poly_a,trueseq,bulk,unknown,unknown,,United States,2014-03-25,Multi-stage,Multi-stage,Undetermined,Undetermined
41422,SRR4423114,SRX2245298,SRS1745858,SRP091534,PRJNA347637,Danio rerio and Xenopus laevis Raw sequence reads,PRJNA347637,Other,To study the transcriptome during development,,,egg pools from three different mothers,,Egg pool Dr,,strain:not applicable|isolate:not applicable|breed:ABTL|cultivar:not applicable|ecotype:not applicable|age:not applicable|dev stage:Egg|sex:not applicable|tissue:eggs|BioSampleModel:Model organism or animal,,,,,,,,,RNA Seq of Zebrafish: Egg pool,99 6,99 6,Libraries were generated according to the manufacturers’ protocols using the Ion Total RNA Seq Kit v2 and the Ion Xpress™ RNA Seq bar coding kit Thermo Fisher Scientific.,,,RNA-Seq,TRANSCRIPTOMIC,cDNA,SINGLE,ION_TORRENT,Ion Torrent Proton,,SRP091534,,,eggRID0099BC06LargeZF.fastq,fastq,4454090954.0,48098559.0,eggRID0099BC06LargeZF.fastq,0:92.60,A:1084275872;C:1151665265;G:1338679196;T:879470621;N:0,92,,,,1084275872,1151665265,1338679196,879470621,0,SRX2245298,SRS1745858,SRA485147,Universiteit van Amsterdam|SILS,Universiteit van Amsterdam,1,0.91346,,0.27222,,0.96694,,0.91118,,144,,B,,usable mapping rate,ion_torrent,ion_torrent,unknown,cdna_unspecified,unknown,bulk,unknown,unknown,,Netherlands,2016-10-19,Undetermined,Undetermined,Undetermined,Undetermined
48909,SRR7615221,SRX4479802,SRS3604791,SRP155604,PRJNA479418,Lariat intronic RNAs in the cytoplasm of vertebrate cells,PRJNA479418,Other,Introns are non coding DNA sequences interspersed among the coding sequences of genes. Shortly post transcription the intronic sequences are spliced out of the primary RNA transcript as lariat RNAs circular molecules with a short tail. Most of these lariats are destroyed within minutes in the cell nucleus. We report here that many such intronic RNAs are in fact exported to the cytoplasm where they remain as stable circular molecules. These cytoplasmic introns are derived from hundreds of different genes of widely different functions. We find them in cells of human mouse chicken frog and zebrafish. The widespread occurrence of so many stable lariat RNAs in the cytoplasm suggests that they play some as yet unexpected role in cell metabolism.,,,,,zebrafish eggs plusRNaseR,,strain:AB strain|dev stage:Germline|sex:female|tissue:Egg|treatment:n1|rna treatment:rRNA depletion and RNase R|BioSampleModel:Model organism or animal,,,,,,,,,RNAseq of Zebrafish egg plus RNaseR,Zf pR,Zf pR,rRNA depletion ribozero fellowed by TruSeq Stranded Total RNA illumina,,,RNA-Seq,TRANSCRIPTOMIC,RANDOM,SINGLE,ILLUMINA,Illumina HiSeq 2000,,SRP155604,,,150112_Zebrafish_egg_plusRNaseR_50bp.fastq,fastq,1453087900.0,29061758.0,150112 Zebrafish egg plusRNaseR 50bp.fastq,0:50,A:316388483;C:426462939;G:363020331;T:347178488;N:37659,50,,,,316388483,426462939,363020331,347178488,37659,SRX4479802,SRS3604791,SRA746415,Carnegie Institution for Science|Department of Embryology,Carnegie Institution for Science,1,0.83263,,0.31979,,0.81592,,0.51542,,50,,B,,usable mapping rate,illumina,hiseq_era,unknown,random_priming,ribozero,bulk,unknown,unknown,,United States,2018-07-28,Undetermined,Undetermined,Undetermined,Undetermined
48910,SRR7615223,SRX4479800,SRS3604789,SRP155604,PRJNA479418,Lariat intronic RNAs in the cytoplasm of vertebrate cells,PRJNA479418,Other,Introns are non coding DNA sequences interspersed among the coding sequences of genes. Shortly post transcription the intronic sequences are spliced out of the primary RNA transcript as lariat RNAs circular molecules with a short tail. Most of these lariats are destroyed within minutes in the cell nucleus. We report here that many such intronic RNAs are in fact exported to the cytoplasm where they remain as stable circular molecules. These cytoplasmic introns are derived from hundreds of different genes of widely different functions. We find them in cells of human mouse chicken frog and zebrafish. The widespread occurrence of so many stable lariat RNAs in the cytoplasm suggests that they play some as yet unexpected role in cell metabolism.,,,,,zebrafish eggs minusRNaseR,,strain:AB strain|dev stage:Germline|sex:female|tissue:Egg|treatment:n1|rna treatment:rRNA depletion|BioSampleModel:Model organism or animal,,,,,,,,,RNAseq of Zebrafish egg minus RNaseR,Zf mR,Zf mR,rRNA depletion ribozero fellowed by TruSeq Stranded Total RNA illumina,,,RNA-Seq,TRANSCRIPTOMIC,RANDOM,SINGLE,ILLUMINA,Illumina HiSeq 2000,,SRP155604,,,150112_Zebrafish_egg_minusRNaseR_50bp.fastq,fastq,2440809700.0,48816194.0,150112 Zebrafish egg minusRNaseR 50bp.fastq,0:50,A:588729472;C:623954878;G:556893764;T:671166713;N:64873,50,,,,588729472,623954878,556893764,671166713,64873,SRX4479800,SRS3604789,SRA746415,Carnegie Institution for Science|Department of Embryology,Carnegie Institution for Science,1,0.92096,,0.07705,,0.72861,,0.50081,,50,,B,,usable mapping rate,illumina,hiseq_era,unknown,random_priming,ribozero,bulk,unknown,unknown,,United States,2018-07-28,Undetermined,Undetermined,Undetermined,Undetermined
50533,SRR8129704,SRX4950826,SRS3993016,SRP167139,PRJNA499073,Purification of high quality RNA from a small number of fluorescence activated cell sorted zebrafish cells for RNA sequencing purposes,GSE121917,Transcriptome Analysis,We provide a method for high quality RNA purification out of a small number 5000 100 000 of FACS sorted zebrafish cells followed by RNA sequencing Overall design: RNA sequencing data from 6 RNA samples isolated from 20000 sorted fli:GFP zebrafish cells. 2 RNA samples isolated from whole embryo.,,pubmed:30894119,,RNeasy sorted 2,GSM3449965,,tissue:Fli:GFP sorted 3 days RNeasy sample 1|cell type:fli:GFP GFP sorted|age:3 days|rna isolation kit:RNeasy plus micro kit,RNeasy sorted 2,Fastq files were aligned to GRCz10 with STAR v2 4 2a. Gene quantification was done on the fly by STAR on Danio rerio.GRCz10.91.gtf Genome build: GRCz10 Supplementary files format and content: tsv files with raw count data,Fli:GFP sorted 3 days RNeasy sample 1,,polyA RNA cDNA was synthesized according to the SMART seq V4 takara biosystems technology tagmentation and sample barcoding with the Nextera XT kit illumina,,cell type:fli:GFP GFP sorted|age:3 days|rna isolation kit:RNeasy plus micro kit,GSM3449965,GSM3449965: RNeasy sorted 2; Danio rerio; RNA Seq,GSM3449965,,1,polyA RNA cDNA was synthesized according to the SMART seq V4 takara biosystems technology tagmentation and sample barcoding with the Nextera XT kit illumina,GEO Accession:GSM3449965,RNA-Seq,TRANSCRIPTOMIC,cDNA,SINGLE,ILLUMINA,NextSeq 500,,SRP167139,,,Q_1.fastq.gz,fastq,1059463914.0,14029229.0,GSM3449965 r1,0:75.52 1:0,A:284634446;C:242976410;G:245781627;T:286026099;N:45332,75,0,,,284634446,242976410,245781627,286026099,45332,SRX4950826,SRS3993016,SRA800291,GEO,"Center for Medical Genetics, Ghent University",1,0.91903,,0.09754,,0.73537,,0.48738,,76,,B,,usable mapping rate,illumina,nextseq,unknown,poly_a,nextera,sc,single_cell_plate,smartseq,,Belgium,2018-10-29,Larval,Larval,Undetermined,Undetermined
50534,SRR8129703,SRX4950825,SRS3993017,SRP167139,PRJNA499073,Purification of high quality RNA from a small number of fluorescence activated cell sorted zebrafish cells for RNA sequencing purposes,GSE121917,Transcriptome Analysis,We provide a method for high quality RNA purification out of a small number 5000 100 000 of FACS sorted zebrafish cells followed by RNA sequencing Overall design: RNA sequencing data from 6 RNA samples isolated from 20000 sorted fli:GFP zebrafish cells. 2 RNA samples isolated from whole embryo.,,pubmed:30894119,,RNAqueous sorted 1,GSM3449964,,tissue:Fli:GFP sorted 3 days RNAqueous sample 1|cell type:fli:GFP GFP sorted|age:3 days|rna isolation kit:RNAqueous micro,RNAqueous sorted 1,Fastq files were aligned to GRCz10 with STAR v2 4 2a. Gene quantification was done on the fly by STAR on Danio rerio.GRCz10.91.gtf Genome build: GRCz10 Supplementary files format and content: tsv files with raw count data,Fli:GFP sorted 3 days RNAqueous sample 1,,polyA RNA cDNA was synthesized according to the SMART seq V4 takara biosystems technology tagmentation and sample barcoding with the Nextera XT kit illumina,,cell type:fli:GFP GFP sorted|age:3 days|rna isolation kit:RNAqueous micro,GSM3449964,GSM3449964: RNAqueous sorted 1; Danio rerio; RNA Seq,GSM3449964,,1,polyA RNA cDNA was synthesized according to the SMART seq V4 takara biosystems technology tagmentation and sample barcoding with the Nextera XT kit illumina,GEO Accession:GSM3449964,RNA-Seq,TRANSCRIPTOMIC,cDNA,SINGLE,ILLUMINA,NextSeq 500,,SRP167139,,,A_1.fastq.gz,fastq,1477268521.0,19562904.0,GSM3449964 r1,0:75.51 1:0,A:399601730;C:333778207;G:337372866;T:406448608;N:67110,75,0,,,399601730,333778207,337372866,406448608,67110,SRX4950825,SRS3993017,SRA800291,GEO,"Center for Medical Genetics, Ghent University",1,0.90617,,0.09373,,0.74558,,0.49316,,76,,B,,usable mapping rate,illumina,nextseq,unknown,poly_a,nextera,sc,single_cell_plate,smartseq,,Belgium,2018-10-29,Larval,Larval,Undetermined,Undetermined
51017,SRR8435109,SRX5242689,SRS4245412,SRP178513,PRJNA514721,Lysosome Rich Enterocytes mediate protein absorption in the vertebrate gut,GSE124970,Transcriptome Analysis,The goal of this RNA seq experiment was to compare gene expression profiles of two different intestinal cell populations Intestinal epithelial cells that mostly reside in the anterior gut and Lysosome rich enterocytes that reside in mid intestine in zebrafish to better understand the characteristics of LREs and uncover the molecular players mediating the function of LREs. Two populations were FACS isolated from 6 dpf dpf TgBACcldn15la GFPpd1034 transgenic fish gavaged with Alexa Fluor 568 Dextran 24 hours prior to FACS. RNA was extracted from the FACS sorted cells and expression profiles were determined using Illumina HiSeq. Comparison of the sample groups allowed for identification of unique candidates. The sequence reads that passed quality filters were analyzed using HISAT2 and gene counts were analyzed using HTSeq. Overall design: mRNA profiles of 6 dpf cldn15la GFP positive intestinal epithelial cells IECs and cldn15la GFP Alexa Fluor 568 double positive lysosome rich enterocytes LREs were generated by RNA sequencing using Illumina HiSeq 2000. Two distinct samples with 3 replicates each.,,pubmed:31474562,,cldn15la GFP+ f Dex+ LREs 3,GSM3560348,,tissue:cldn15la GFP+ f Dex+ LREs|strain:EK|genotype/variation:wild type|age:6 dpf type:cldn15la GFP Alexa Fluor 568 double positive lysosome rich enterocytes LREs,cldn15la GFP+ f Dex+ LREs 3,HiSeq Control Software used for basecalling Sequenced reads were trimmed for adapter sequences and low quality reads using FASTQ Groomer and FASTQ Quality Trimmer followed by alignment to the GRCz10 reference genome using HISAT2. The number of reads counted for each gene was calculated using HTSeq. Genome build: GRCz10 Supplementary files format and content: .tabular files containing HT seq counts for each gene in each sample.,cldn15la GFP+ f Dex+ LREs,Zebrafish larvae were gavaged with 1 2 nl of 2.5 mg/ml Alexa Fluor 568 Dextran at 5 dpf.,At 6 dpf 24 hrs post gavage zebrafish larvae were dissociated using Trypsin/EDTA and collagenase. Then two different intestinal populations were collected using fluorescence activated cell sorting FACS. Total RNA was prepared from each population using RNeasy Micro Plus Kit Qiagen. Quality control was evaluated by Qubit and 2100 Bioanalyzer. Clonetech ultra low input RNA libraries were prepared for sequencing using standard Illumina protocols.,,strain:EK|genotype/variation:wild type|age:6 dpf type:cldn15la GFP Alexa Fluor 568 double positive lysosome rich enterocytes LREs,GSM3560348,GSM3560348: cldn15la GFP+ f Dex+ LREs 3; Danio rerio; RNA Seq,GSM3560348,,1,At 6 dpf 24 hrs post gavage zebrafish larvae were dissociated using Trypsin/EDTA and collagenase. Then two different intestinal populations were collected using fluorescence activated cell sorting FACS. Total RNA was prepared from each population using RNeasy Micro Plus Kit Qiagen. Quality control was evaluated by Qubit and 2100 Bioanalyzer. Clonetech ultra low input RNA libraries were prepared for sequencing using standard Illumina protocols.,GEO Accession:GSM3560348,RNA-Seq,TRANSCRIPTOMIC,cDNA,SINGLE,ILLUMINA,Illumina HiSeq 2000,,SRP178513,,,LRE_3.fastq.gz,fastq,3319359633.0,65085483.0,GSM3560348 r1,0:51 1:0,A:939171958;C:728294535;G:735458210;T:914956028;N:1478902,51,0,,,939171958,728294535,735458210,914956028,1478902,SRX5242689,SRS4245412,SRA833636,GEO,Duke University,1,0.92838,,0.08491,,0.73507,,0.45124,,51,,B,,usable mapping rate,illumina,hiseq_era,unknown,cdna_unspecified,unknown,bulk,unknown,unknown,,United States,2019-01-11,Larval,Larval,Undetermined,Undetermined
51018,SRR8435108,SRX5242688,SRS4245413,SRP178513,PRJNA514721,Lysosome Rich Enterocytes mediate protein absorption in the vertebrate gut,GSE124970,Transcriptome Analysis,The goal of this RNA seq experiment was to compare gene expression profiles of two different intestinal cell populations Intestinal epithelial cells that mostly reside in the anterior gut and Lysosome rich enterocytes that reside in mid intestine in zebrafish to better understand the characteristics of LREs and uncover the molecular players mediating the function of LREs. Two populations were FACS isolated from 6 dpf dpf TgBACcldn15la GFPpd1034 transgenic fish gavaged with Alexa Fluor 568 Dextran 24 hours prior to FACS. RNA was extracted from the FACS sorted cells and expression profiles were determined using Illumina HiSeq. Comparison of the sample groups allowed for identification of unique candidates. The sequence reads that passed quality filters were analyzed using HISAT2 and gene counts were analyzed using HTSeq. Overall design: mRNA profiles of 6 dpf cldn15la GFP positive intestinal epithelial cells IECs and cldn15la GFP Alexa Fluor 568 double positive lysosome rich enterocytes LREs were generated by RNA sequencing using Illumina HiSeq 2000. Two distinct samples with 3 replicates each.,,pubmed:31474562,,cldn15la GFP+ f Dex+ LREs 2,GSM3560347,,tissue:cldn15la GFP+ f Dex+ LREs|strain:EK|genotype/variation:wild type|age:6 dpf type:cldn15la GFP Alexa Fluor 568 double positive lysosome rich enterocytes LREs,cldn15la GFP+ f Dex+ LREs 2,HiSeq Control Software used for basecalling Sequenced reads were trimmed for adapter sequences and low quality reads using FASTQ Groomer and FASTQ Quality Trimmer followed by alignment to the GRCz10 reference genome using HISAT2. The number of reads counted for each gene was calculated using HTSeq. Genome build: GRCz10 Supplementary files format and content: .tabular files containing HT seq counts for each gene in each sample.,cldn15la GFP+ f Dex+ LREs,Zebrafish larvae were gavaged with 1 2 nl of 2.5 mg/ml Alexa Fluor 568 Dextran at 5 dpf.,At 6 dpf 24 hrs post gavage zebrafish larvae were dissociated using Trypsin/EDTA and collagenase. Then two different intestinal populations were collected using fluorescence activated cell sorting FACS. Total RNA was prepared from each population using RNeasy Micro Plus Kit Qiagen. Quality control was evaluated by Qubit and 2100 Bioanalyzer. Clonetech ultra low input RNA libraries were prepared for sequencing using standard Illumina protocols.,,strain:EK|genotype/variation:wild type|age:6 dpf type:cldn15la GFP Alexa Fluor 568 double positive lysosome rich enterocytes LREs,GSM3560347,GSM3560347: cldn15la GFP+ f Dex+ LREs 2; Danio rerio; RNA Seq,GSM3560347,,1,At 6 dpf 24 hrs post gavage zebrafish larvae were dissociated using Trypsin/EDTA and collagenase. Then two different intestinal populations were collected using fluorescence activated cell sorting FACS. Total RNA was prepared from each population using RNeasy Micro Plus Kit Qiagen. Quality control was evaluated by Qubit and 2100 Bioanalyzer. Clonetech ultra low input RNA libraries were prepared for sequencing using standard Illumina protocols.,GEO Accession:GSM3560347,RNA-Seq,TRANSCRIPTOMIC,cDNA,SINGLE,ILLUMINA,Illumina HiSeq 2000,,SRP178513,,,LRE_2.fastq.gz,fastq,3886795782.0,76211682.0,GSM3560347 r1,0:51 1:0,A:1104818772;C:851405074;G:855078243;T:1073758670;N:1735023,51,0,,,1104818772,851405074,855078243,1073758670,1735023,SRX5242688,SRS4245413,SRA833636,GEO,Duke University,1,0.9367,,0.08433,,0.73565,,0.60818,,51,,B,,usable mapping rate,illumina,hiseq_era,unknown,cdna_unspecified,unknown,bulk,unknown,unknown,,United States,2019-01-11,Larval,Larval,Undetermined,Undetermined
51019,SRR8435107,SRX5242687,SRS4245410,SRP178513,PRJNA514721,Lysosome Rich Enterocytes mediate protein absorption in the vertebrate gut,GSE124970,Transcriptome Analysis,The goal of this RNA seq experiment was to compare gene expression profiles of two different intestinal cell populations Intestinal epithelial cells that mostly reside in the anterior gut and Lysosome rich enterocytes that reside in mid intestine in zebrafish to better understand the characteristics of LREs and uncover the molecular players mediating the function of LREs. Two populations were FACS isolated from 6 dpf dpf TgBACcldn15la GFPpd1034 transgenic fish gavaged with Alexa Fluor 568 Dextran 24 hours prior to FACS. RNA was extracted from the FACS sorted cells and expression profiles were determined using Illumina HiSeq. Comparison of the sample groups allowed for identification of unique candidates. The sequence reads that passed quality filters were analyzed using HISAT2 and gene counts were analyzed using HTSeq. Overall design: mRNA profiles of 6 dpf cldn15la GFP positive intestinal epithelial cells IECs and cldn15la GFP Alexa Fluor 568 double positive lysosome rich enterocytes LREs were generated by RNA sequencing using Illumina HiSeq 2000. Two distinct samples with 3 replicates each.,,pubmed:31474562,,cldn15la GFP+ f Dex+ LREs 1,GSM3560346,,tissue:cldn15la GFP+ f Dex+ LREs|strain:EK|genotype/variation:wild type|age:6 dpf type:cldn15la GFP Alexa Fluor 568 double positive lysosome rich enterocytes LREs,cldn15la GFP+ f Dex+ LREs 1,HiSeq Control Software used for basecalling Sequenced reads were trimmed for adapter sequences and low quality reads using FASTQ Groomer and FASTQ Quality Trimmer followed by alignment to the GRCz10 reference genome using HISAT2. The number of reads counted for each gene was calculated using HTSeq. Genome build: GRCz10 Supplementary files format and content: .tabular files containing HT seq counts for each gene in each sample.,cldn15la GFP+ f Dex+ LREs,Zebrafish larvae were gavaged with 1 2 nl of 2.5 mg/ml Alexa Fluor 568 Dextran at 5 dpf.,At 6 dpf 24 hrs post gavage zebrafish larvae were dissociated using Trypsin/EDTA and collagenase. Then two different intestinal populations were collected using fluorescence activated cell sorting FACS. Total RNA was prepared from each population using RNeasy Micro Plus Kit Qiagen. Quality control was evaluated by Qubit and 2100 Bioanalyzer. Clonetech ultra low input RNA libraries were prepared for sequencing using standard Illumina protocols.,,strain:EK|genotype/variation:wild type|age:6 dpf type:cldn15la GFP Alexa Fluor 568 double positive lysosome rich enterocytes LREs,GSM3560346,GSM3560346: cldn15la GFP+ f Dex+ LREs 1; Danio rerio; RNA Seq,GSM3560346,,1,At 6 dpf 24 hrs post gavage zebrafish larvae were dissociated using Trypsin/EDTA and collagenase. Then two different intestinal populations were collected using fluorescence activated cell sorting FACS. Total RNA was prepared from each population using RNeasy Micro Plus Kit Qiagen. Quality control was evaluated by Qubit and 2100 Bioanalyzer. Clonetech ultra low input RNA libraries were prepared for sequencing using standard Illumina protocols.,GEO Accession:GSM3560346,RNA-Seq,TRANSCRIPTOMIC,cDNA,SINGLE,ILLUMINA,Illumina HiSeq 2000,,SRP178513,,,LRE_1.fastq.gz,fastq,3052804104.0,59858904.0,GSM3560346 r1,0:51 1:0,A:886286208;C:657679423;G:656279895;T:852223208;N:335370,51,0,,,886286208,657679423,656279895,852223208,335370,SRX5242687,SRS4245410,SRA833636,GEO,Duke University,1,0.92375,,0.09247,,0.77449,,0.67251,,51,,B,,usable mapping rate,illumina,hiseq_era,unknown,cdna_unspecified,unknown,bulk,unknown,unknown,,United States,2019-01-11,Larval,Larval,Undetermined,Undetermined
51020,SRR8435106,SRX5242686,SRS4245411,SRP178513,PRJNA514721,Lysosome Rich Enterocytes mediate protein absorption in the vertebrate gut,GSE124970,Transcriptome Analysis,The goal of this RNA seq experiment was to compare gene expression profiles of two different intestinal cell populations Intestinal epithelial cells that mostly reside in the anterior gut and Lysosome rich enterocytes that reside in mid intestine in zebrafish to better understand the characteristics of LREs and uncover the molecular players mediating the function of LREs. Two populations were FACS isolated from 6 dpf dpf TgBACcldn15la GFPpd1034 transgenic fish gavaged with Alexa Fluor 568 Dextran 24 hours prior to FACS. RNA was extracted from the FACS sorted cells and expression profiles were determined using Illumina HiSeq. Comparison of the sample groups allowed for identification of unique candidates. The sequence reads that passed quality filters were analyzed using HISAT2 and gene counts were analyzed using HTSeq. Overall design: mRNA profiles of 6 dpf cldn15la GFP positive intestinal epithelial cells IECs and cldn15la GFP Alexa Fluor 568 double positive lysosome rich enterocytes LREs were generated by RNA sequencing using Illumina HiSeq 2000. Two distinct samples with 3 replicates each.,,pubmed:31474562,,cldn15la GFP+ IECs 3,GSM3560345,,tissue:cldn15la GFP+ IECs|strain:EK|genotype/variation:wild type|age:6 dpf type:cldn15la GFP positive intestinal epithelial cells IECs,cldn15la GFP+ IECs 3,HiSeq Control Software used for basecalling Sequenced reads were trimmed for adapter sequences and low quality reads using FASTQ Groomer and FASTQ Quality Trimmer followed by alignment to the GRCz10 reference genome using HISAT2. The number of reads counted for each gene was calculated using HTSeq. Genome build: GRCz10 Supplementary files format and content: .tabular files containing HT seq counts for each gene in each sample.,cldn15la GFP+ IECs,Zebrafish larvae were gavaged with 1 2 nl of 2.5 mg/ml Alexa Fluor 568 Dextran at 5 dpf.,At 6 dpf 24 hrs post gavage zebrafish larvae were dissociated using Trypsin/EDTA and collagenase. Then two different intestinal populations were collected using fluorescence activated cell sorting FACS. Total RNA was prepared from each population using RNeasy Micro Plus Kit Qiagen. Quality control was evaluated by Qubit and 2100 Bioanalyzer. Clonetech ultra low input RNA libraries were prepared for sequencing using standard Illumina protocols.,,strain:EK|genotype/variation:wild type|age:6 dpf type:cldn15la GFP positive intestinal epithelial cells IECs,GSM3560345,GSM3560345: cldn15la GFP+ IECs 3; Danio rerio; RNA Seq,GSM3560345,,1,At 6 dpf 24 hrs post gavage zebrafish larvae were dissociated using Trypsin/EDTA and collagenase. Then two different intestinal populations were collected using fluorescence activated cell sorting FACS. Total RNA was prepared from each population using RNeasy Micro Plus Kit Qiagen. Quality control was evaluated by Qubit and 2100 Bioanalyzer. Clonetech ultra low input RNA libraries were prepared for sequencing using standard Illumina protocols.,GEO Accession:GSM3560345,RNA-Seq,TRANSCRIPTOMIC,cDNA,SINGLE,ILLUMINA,Illumina HiSeq 2000,,SRP178513,,,IEC_3.fastq.gz,fastq,3411376434.0,66889734.0,GSM3560345 r1,0:51 1:0,A:962628477;C:748798542;G:754301765;T:944119253;N:1528397,51,0,,,962628477,748798542,754301765,944119253,1528397,SRX5242686,SRS4245411,SRA833636,GEO,Duke University,1,0.92544,,0.11398,,0.71125,,0.50352,,51,,B,,usable mapping rate,illumina,hiseq_era,unknown,cdna_unspecified,unknown,bulk,unknown,unknown,,United States,2019-01-11,Larval,Larval,Undetermined,Undetermined
51021,SRR8435105,SRX5242685,SRS4245408,SRP178513,PRJNA514721,Lysosome Rich Enterocytes mediate protein absorption in the vertebrate gut,GSE124970,Transcriptome Analysis,The goal of this RNA seq experiment was to compare gene expression profiles of two different intestinal cell populations Intestinal epithelial cells that mostly reside in the anterior gut and Lysosome rich enterocytes that reside in mid intestine in zebrafish to better understand the characteristics of LREs and uncover the molecular players mediating the function of LREs. Two populations were FACS isolated from 6 dpf dpf TgBACcldn15la GFPpd1034 transgenic fish gavaged with Alexa Fluor 568 Dextran 24 hours prior to FACS. RNA was extracted from the FACS sorted cells and expression profiles were determined using Illumina HiSeq. Comparison of the sample groups allowed for identification of unique candidates. The sequence reads that passed quality filters were analyzed using HISAT2 and gene counts were analyzed using HTSeq. Overall design: mRNA profiles of 6 dpf cldn15la GFP positive intestinal epithelial cells IECs and cldn15la GFP Alexa Fluor 568 double positive lysosome rich enterocytes LREs were generated by RNA sequencing using Illumina HiSeq 2000. Two distinct samples with 3 replicates each.,,pubmed:31474562,,cldn15la GFP+ IECs 2,GSM3560344,,tissue:cldn15la GFP+ IECs|strain:EK|genotype/variation:wild type|age:6 dpf type:cldn15la GFP positive intestinal epithelial cells IECs,cldn15la GFP+ IECs 2,HiSeq Control Software used for basecalling Sequenced reads were trimmed for adapter sequences and low quality reads using FASTQ Groomer and FASTQ Quality Trimmer followed by alignment to the GRCz10 reference genome using HISAT2. The number of reads counted for each gene was calculated using HTSeq. Genome build: GRCz10 Supplementary files format and content: .tabular files containing HT seq counts for each gene in each sample.,cldn15la GFP+ IECs,Zebrafish larvae were gavaged with 1 2 nl of 2.5 mg/ml Alexa Fluor 568 Dextran at 5 dpf.,At 6 dpf 24 hrs post gavage zebrafish larvae were dissociated using Trypsin/EDTA and collagenase. Then two different intestinal populations were collected using fluorescence activated cell sorting FACS. Total RNA was prepared from each population using RNeasy Micro Plus Kit Qiagen. Quality control was evaluated by Qubit and 2100 Bioanalyzer. Clonetech ultra low input RNA libraries were prepared for sequencing using standard Illumina protocols.,,strain:EK|genotype/variation:wild type|age:6 dpf type:cldn15la GFP positive intestinal epithelial cells IECs,GSM3560344,GSM3560344: cldn15la GFP+ IECs 2; Danio rerio; RNA Seq,GSM3560344,,1,At 6 dpf 24 hrs post gavage zebrafish larvae were dissociated using Trypsin/EDTA and collagenase. Then two different intestinal populations were collected using fluorescence activated cell sorting FACS. Total RNA was prepared from each population using RNeasy Micro Plus Kit Qiagen. Quality control was evaluated by Qubit and 2100 Bioanalyzer. Clonetech ultra low input RNA libraries were prepared for sequencing using standard Illumina protocols.,GEO Accession:GSM3560344,RNA-Seq,TRANSCRIPTOMIC,cDNA,SINGLE,ILLUMINA,Illumina HiSeq 2000,,SRP178513,,,IEC_2.fastq.gz,fastq,4165555866.0,81677566.0,GSM3560344 r1,0:51 1:0,A:1164142809;C:924263682;G:930812689;T:1144479148;N:1857538,51,0,,,1164142809,924263682,930812689,1144479148,1857538,SRX5242685,SRS4245408,SRA833636,GEO,Duke University,1,0.92974,,0.09982,,0.7167,,0.5209,,51,,B,,usable mapping rate,illumina,hiseq_era,unknown,cdna_unspecified,unknown,bulk,unknown,unknown,,United States,2019-01-11,Larval,Larval,Undetermined,Undetermined
51022,SRR8435104,SRX5242684,SRS4245409,SRP178513,PRJNA514721,Lysosome Rich Enterocytes mediate protein absorption in the vertebrate gut,GSE124970,Transcriptome Analysis,The goal of this RNA seq experiment was to compare gene expression profiles of two different intestinal cell populations Intestinal epithelial cells that mostly reside in the anterior gut and Lysosome rich enterocytes that reside in mid intestine in zebrafish to better understand the characteristics of LREs and uncover the molecular players mediating the function of LREs. Two populations were FACS isolated from 6 dpf dpf TgBACcldn15la GFPpd1034 transgenic fish gavaged with Alexa Fluor 568 Dextran 24 hours prior to FACS. RNA was extracted from the FACS sorted cells and expression profiles were determined using Illumina HiSeq. Comparison of the sample groups allowed for identification of unique candidates. The sequence reads that passed quality filters were analyzed using HISAT2 and gene counts were analyzed using HTSeq. Overall design: mRNA profiles of 6 dpf cldn15la GFP positive intestinal epithelial cells IECs and cldn15la GFP Alexa Fluor 568 double positive lysosome rich enterocytes LREs were generated by RNA sequencing using Illumina HiSeq 2000. Two distinct samples with 3 replicates each.,,pubmed:31474562,,cldn15la GFP+ IECs 1,GSM3560343,,tissue:cldn15la GFP+ IECs|strain:EK|genotype/variation:wild type|age:6 dpf type:cldn15la GFP positive intestinal epithelial cells IECs,cldn15la GFP+ IECs 1,HiSeq Control Software used for basecalling Sequenced reads were trimmed for adapter sequences and low quality reads using FASTQ Groomer and FASTQ Quality Trimmer followed by alignment to the GRCz10 reference genome using HISAT2. The number of reads counted for each gene was calculated using HTSeq. Genome build: GRCz10 Supplementary files format and content: .tabular files containing HT seq counts for each gene in each sample.,cldn15la GFP+ IECs,Zebrafish larvae were gavaged with 1 2 nl of 2.5 mg/ml Alexa Fluor 568 Dextran at 5 dpf.,At 6 dpf 24 hrs post gavage zebrafish larvae were dissociated using Trypsin/EDTA and collagenase. Then two different intestinal populations were collected using fluorescence activated cell sorting FACS. Total RNA was prepared from each population using RNeasy Micro Plus Kit Qiagen. Quality control was evaluated by Qubit and 2100 Bioanalyzer. Clonetech ultra low input RNA libraries were prepared for sequencing using standard Illumina protocols.,,strain:EK|genotype/variation:wild type|age:6 dpf type:cldn15la GFP positive intestinal epithelial cells IECs,GSM3560343,GSM3560343: cldn15la GFP+ IECs 1; Danio rerio; RNA Seq,GSM3560343,,1,At 6 dpf 24 hrs post gavage zebrafish larvae were dissociated using Trypsin/EDTA and collagenase. Then two different intestinal populations were collected using fluorescence activated cell sorting FACS. Total RNA was prepared from each population using RNeasy Micro Plus Kit Qiagen. Quality control was evaluated by Qubit and 2100 Bioanalyzer. Clonetech ultra low input RNA libraries were prepared for sequencing using standard Illumina protocols.,GEO Accession:GSM3560343,RNA-Seq,TRANSCRIPTOMIC,cDNA,SINGLE,ILLUMINA,Illumina HiSeq 2000,,SRP178513,,,IEC_1.fastq.gz,fastq,3258191610.0,63886110.0,GSM3560343 r1,0:51 1:0,A:941514468;C:707367673;G:717548605;T:891005627;N:755237,51,0,,,941514468,707367673,717548605,891005627,755237,SRX5242684,SRS4245409,SRA833636,GEO,Duke University,1,0.91133,,0.12919,,0.76274,,0.60572,,51,,B,,usable mapping rate,illumina,hiseq_era,unknown,cdna_unspecified,unknown,bulk,unknown,unknown,,United States,2019-01-11,Larval,Larval,Undetermined,Undetermined
52210,SRR9021058,SRX5799154,SRS4730324,SRP195685,PRJNA541367,Global transcriptomic analysis of zebrafish glucagon receptor mutant,PRJNA541367,Other,We performed RNA sequencing RNA seq analysis of whole fish to provide a comprehensive view of its global transcriptomic regulation in this study.,,,,,WT 1,,replicate:biological replicate 1|strain:AB|age:7 days|sex:not applicable|tissue:total|BioSampleModel:Model organism or animal,,,,,,,,,Diano rerio transcriptome,WT 1 20190506 1,WT 1 20190506 1,RNA seq of WT Diano rerio,,,RNA-Seq,TRANSCRIPTOMIC,other,SINGLE,BGISEQ,BGISEQ-500,,SRP195685,,loader:fastq load.py,WT1.1.fq,fastq,1094498950.0,21889979.0,WT1.1.fq,0:50,A:291195764;C:255539280;G:262638316;T:284737693;N:387897,50,,,,291195764,255539280,262638316,284737693,387897,SRX5799154,SRS4730324,SRA883435,Xiamen University|School of Pharmaceutical Sciences,Xiamen University,1,0.94195,,0.09713,,0.66689,,0.47749,,50,,B,,usable mapping rate,bgi,bgi,unknown,random_priming,unknown,bulk,unknown,unknown,,China,2020-01-18,Larval,Larval,Undetermined,Undetermined
52211,SRR9021059,SRX5799153,SRS4730323,SRP195685,PRJNA541367,Global transcriptomic analysis of zebrafish glucagon receptor mutant,PRJNA541367,Other,We performed RNA sequencing RNA seq analysis of whole fish to provide a comprehensive view of its global transcriptomic regulation in this study.,,,,,WT 2,,replicate:biological replicate 2|strain:AB|age:7 days|sex:not applicable|tissue:total|BioSampleModel:Model organism or animal,,,,,,,,,Diano rerio transcriptome,WT 2 20190506 2,WT 2 20190506 2,RNA seq of WT Diano rerio,,,RNA-Seq,TRANSCRIPTOMIC,other,SINGLE,BGISEQ,BGISEQ-500,,SRP195685,,loader:fastq load.py,WT2.1.fq,fastq,1095133200.0,21902664.0,WT2.1.fq,0:50,A:290594757;C:255644044;G:259681140;T:288014102;N:1199157,50,,,,290594757,255644044,259681140,288014102,1199157,SRX5799153,SRS4730323,SRA883435,Xiamen University|School of Pharmaceutical Sciences,Xiamen University,1,0.93368,,0.09166,,0.67085,,0.46523,,50,,B,,usable mapping rate,bgi,bgi,unknown,random_priming,unknown,bulk,unknown,unknown,,China,2020-01-18,Larval,Larval,Undetermined,Undetermined
52212,SRR9021060,SRX5799152,SRS4730322,SRP195685,PRJNA541367,Global transcriptomic analysis of zebrafish glucagon receptor mutant,PRJNA541367,Other,We performed RNA sequencing RNA seq analysis of whole fish to provide a comprehensive view of its global transcriptomic regulation in this study.,,,,,WT 3,,replicate:biological replicate 3|strain:AB|age:7 days|sex:not applicable|tissue:total|BioSampleModel:Model organism or animal,,,,,,,,,Diano rerio transcriptome,WT 3 20190506 3,WT 3 20190506 3,RNA seq of WT Diano rerio,,,RNA-Seq,TRANSCRIPTOMIC,other,SINGLE,BGISEQ,BGISEQ-500,,SRP195685,,loader:fastq load.py,WT3.1.fq,fastq,1096083900.0,21921678.0,WT3.1.fq,0:50,A:290332094;C:256993500;G:263043956;T:285349722;N:364628,50,,,,290332094,256993500,263043956,285349722,364628,SRX5799152,SRS4730322,SRA883435,Xiamen University|School of Pharmaceutical Sciences,Xiamen University,1,0.94147,,0.10157,,0.66135,,0.47301,,50,,B,,usable mapping rate,bgi,bgi,unknown,random_priming,unknown,bulk,unknown,unknown,,China,2020-01-18,Larval,Larval,Undetermined,Undetermined