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 15550,ERR647595,ERX604031,ERS557915,ERP007147,PRJEB7420,Two Sets of Synthetic Spike in Controls for Size Selection and Data Normalisation in small RNA seq,ena-STUDY-UNIVERSITY OF AMSTERDAM-01-10-2014-14:02:22:856-622,Other,There is an increasing interest in complementing standard RNA seq experiments with small RNA expression data to obtain a comprehensive view of the transcriptome. Two aspects need to be considered when small RNA seq sRNA seq is used. First sRNA seq protocols are size selective and typically optimized for sequencing miRNAs. Second given the dynamic composition of the small RNA fraction a reliable normalization strategy is needed to identify differentially expressed sRNAs. To address both issues we here present two sets of synthetic RNA spike in controls for monitoring size selectivity and for performing normalization. Size spike ins comprising 18 oligoribonucleotides 10–300 nucleotides were designed and tested using controlled modifications to the size selectivity of sRNA seq. As an applied example the loss of RNA molecules <30 nucleotides during small RNA isolation from zebrafish oocytes is demonstrated. Normalization spike ins comprising 19 oligoribonucleotides were designed to use as an external reference for DESeq normalization. Spike in based normalization improved the quantification of predetermined fold changes. Lastly sRNA seq on female and male zebrafish demonstrated that the higher miRNA content in males was correctly preserved post spike in based normalization.,,,,Egg,SAMEA2796300,UNIVERSITY OF AMSTERDAM,Alias:Egg|ENA checklist:ERC000011|INSDC center alias:UNIVERSITY OF AMSTERDAM|INSDC center name:UNIVERSITY OF AMSTERDAM|INSDC first public:2014 11 29T17:02:28Z|INSDC last update:2014 10 01T14:29:23Z|INSDC status:public|SRA accession:ERS557915|Sample Name:ERS557915|Title:Zebrafish Egg samples|dev stage:Oocytes,,,,,,,,,Ion Torrent Proton sequencing,ena EXPERIMENT UNIVERSITY OF AMSTERDAM 01 10 2014 14:25:29:391 1,RID0024,1,,,miRNA-Seq,TRANSCRIPTOMIC,cDNA,SINGLE,ION_TORRENT,Ion Torrent Proton,,ERP007147,Ion Torrent Proton sequencing,ENA FIRST PUBLIC:2014 11 29|ENA LAST UPDATE:2018 11 16,RID0024_016.fastq.gz,fastq,6684767188.0,89052017.0,ena RUN UNIVERSITY OF AMSTERDAM 01 10 2014 14:25:29:391 1,0:75.07,A:1523328157;C:1795624453;G:1849675240;T:1516139338;N:0,75,,,,1523328157,1795624453,1849675240,1516139338,0,ERX604031,ERS557915,ERA363845,UNIVERSITY OF AMSTERDAM,UNIVERSITY OF AMSTERDAM,1,0.89536,,0.15322,,0.91421,,0.69019,,73,,B,,usable mapping rate,ion_torrent,ion_torrent,unknown,small_rna,unknown,bulk,unknown,unknown,,Netherlands,2014-10-01,Zygote,Embryo,Oocyte,Reproductive System 37991,SRR1265766,SRX529160,SRS598857,SRP041544,PRJNA245824,Deep sequencing of small RNA facilitates tissue and sex associated microRNA discovery in zebrafish,GSE57169,Transcriptome Analysis,The role of microRNAs in gene regulation has been well established. The extent of miRNA regulation also increases with increasing genome complexity. Though the number of genes appear to be equal between human and zebrafish substantially less microRNAs have been discovered in zebrafish compared to human Release 19. It appears that most of the miRNAs in zebrafish are yet to be discovered. We sequenced small RNAs from brain gut liver ovary testis eye heart and embryo of zebrafish. In brain gut and liver sequencing was done in male and female separately. Majority of the sequenced reads 16 62% mapped to known miRNAs with the exception of ovary 5.7% and testis 7.8%. Using the miRNA discovery tool miRDeep2 we discovered novel miRNAs from the un annotated reads that ranged from 7.6 to 23.0% with exceptions of ovary 51.4% and testis 55.2%. The prediction tool identified a total of 459 novel pre miRNAs. We compared expression of miRNAs between different tissues and between males and females to identify tissue associated and sex associated miRNAs respectively. These miRNAs could serve as putative biomarkers for these tissues. The brain and liver had highest number of tissue associated 22 and sex associated 34 miRNAs respectively. This study comprehensively identifies tissue and sex associated miRNAs in zebrafish. Further we have discovered 459 novel pre miRNAs 30% seed homology to human miRNA as a genomic resource which can facilitate further investigations to understand miRNA mRNA gene regulatory networks in zebrafish which will have implications in understanding the function of human homologs. Overall design: Known miRNA profiling novel miRNA discovery and identification of tissue associated and sex associated miRNAs from sRNA deep sequencing data of different tissues and embryo of zebrafish in triplicate was carried out using the Illumina HiSeq 2000 platform.,,pubmed:26574018,,Heart Replicate 3 sRNAseq,GSM1376649,,source name:Heart|tissue:Heart|genetic background:Wild type Singapore strain,Heart Replicate 3 sRNAseq,Illumina Casava 1.8.2 software used for basecalling. The sequenced reads were first subjected to adapter removal through the cutadapt program Martin 2011. The trimmed reads were then collapsed to remove redundancy and to obtain a unique sequence fasta file through the mapper module of miRDeep2 package Friedländer et al. 2012. The unique reads fasta file was then put through an elimination pipeline module Vaz et al. 2010 comprising of a series of sequence similarity searches with the annotated databases. At each step the reads were matched to an annotated database with a maximum of two mismatches. The matched reads were removed and the unmatched ones were further matched to another annotated database finally culminating into an un annotated pool of reads that served as a source of novel miRNAs and novel sRNAs. The known miRNA expression profile was generated by using the quantifier module of the miRDeep2 package that gives the read counts for the known miRNAs. The quantifier.pl command line used: perl quantifier.pl p m r t Zebrafish The raw reads expression profile generated for all the replicates of the samples were subjected to Trimmed Mean of M values TMM normalisation using the Bioconductor package edgeR Robinson et al. 2010. Genome build: ZV9 Supplementary files format and content: 1. 'Danio rerio known miRNA Rel19 profile Raw.txt': Tab delimited text file that includes the raw counts for the known mature miRNA miRBase Release 19. Supplementary files format and content: 2. 'Danio rerio known miRNA Rel19 profile Normalised.txt': Tab delimited text file that includes the Trimmed Mean of M values TMM normalised counts for the known mature miRNA miRBase Release 19. One of the replicate of Heart MZH008 failed to cluster with the other two replicates on basis of its known miRNA expression profile and hence was not used for further analysis.,Heart,N/A,Total RNA were extracted using mirVana™ miRNA Isolation Kit AM1560 Life Technologies. Tissues were homogenised in 1.5 ml microfuge tube containing Lysis/Binding buffer provided in the mirVana™ miRNA Isolation using a hand held pestle. Total RNA containing small RNA were purified following the manufacturer protocol. Small RNA libraries were prepared for sequencing using TruSeq Small RNA Sample Preparation Kit RS 200 0012 Illumina Inc.. Libraries were prepared according to manufacturer instructions. Briefly 1µg of good quality Total RNA per sample was used as starting material. 5’ and 3’ RNA adapters were ligated to each RNA molecule before reverse transcription to create single stranded cDNA. The cDNA was then amplified with PCR using a common primer and a primer containing a unique index sequence. The resulting PCR reactions were electrophoresed on 6% Novex TBE PAGE Gel Life Technologies and bands corresponding to adapter ligated constructs derived from 22 30 nucleotides small RNA fragments were excised from the gel. The small RNA were purified from the excised gel and validated on High Sensitivity DNA chips on a Bioanalyser Agilent Technologies before sequencing.,Fishes were purchased from a local supplier and acclimatized before tissue extraction.,tissue:Heart|genetic background:Wild type Singapore strain,GSM1376649,GSM1376649: Heart Replicate 3 sRNAseq; Danio rerio; miRNA Seq,GSM1376649,,1,Total RNA were extracted using mirVana™ miRNA Isolation Kit AM1560 Life Technologies. Tissues were homogenised in 1.5 ml microfuge tube containing Lysis/Binding buffer provided in the mirVana™ miRNA Isolation using a hand held pestle. Total RNA containing small RNA were purified following the manufacturer protocol. Small RNA libraries were prepared for sequencing using TruSeq Small RNA Sample Preparation Kit RS 200 0012 Illumina Inc.. Libraries were prepared according to manufacturer instructions. Briefly 1µg of good quality Total RNA per sample was used as starting material. 5’ and 3’ RNA adapters were ligated to each RNA molecule before reverse transcription to create single stranded cDNA. The cDNA was then amplified with PCR using a common primer and a primer containing a unique index sequence. The resulting PCR reactions were electrophoresed on 6% Novex TBE PAGE Gel Life Technologies and bands corresponding to adapter ligated constructs derived from 22 30 nucleotides small RNA fragments were excised from the gel. The small RNA were purified from the excised gel and validated on High Sensitivity DNA chips on a Bioanalyser Agilent Technologies before sequencing.,GEO Accession:GSM1376649,miRNA-Seq,TRANSCRIPTOMIC,size fractionation,SINGLE,ILLUMINA,Illumina HiSeq 2000,,SRP041544,,,MZH008_GATCAG_L005_R1.fastq.gz,fastq,4401229692.0,57910917.0,GSM1376649 r1,0:76,A:1009381958;C:1130057881;G:1173217392;T:1088123982;N:448479,76,,,,1009381958,1130057881,1173217392,1088123982,448479,SRX529160,SRS598857,SRA160430,GEO,"Expression and Signaling in Mesenchymal and Hematopoietic Stem Cells, Genome and Gene Expression Data Analysis Division, Bioinformatics Institute, A*STAR, Singapore",1,0.00129,,0.00046,,0.99882,,0.51351,,76,,T,,under 1.2% mapping rate,illumina,hiseq_era,unknown,size_fractionation,trueseq,bulk,unknown,unknown,,Singapore,2014-04-29,Undetermined,Embryo,Heart,Cardiovascular System 37992,SRR1265765,SRX529159,SRS598856,SRP041544,PRJNA245824,Deep sequencing of small RNA facilitates tissue and sex associated microRNA discovery in zebrafish,GSE57169,Transcriptome Analysis,The role of microRNAs in gene regulation has been well established. The extent of miRNA regulation also increases with increasing genome complexity. Though the number of genes appear to be equal between human and zebrafish substantially less microRNAs have been discovered in zebrafish compared to human Release 19. It appears that most of the miRNAs in zebrafish are yet to be discovered. We sequenced small RNAs from brain gut liver ovary testis eye heart and embryo of zebrafish. In brain gut and liver sequencing was done in male and female separately. Majority of the sequenced reads 16 62% mapped to known miRNAs with the exception of ovary 5.7% and testis 7.8%. Using the miRNA discovery tool miRDeep2 we discovered novel miRNAs from the un annotated reads that ranged from 7.6 to 23.0% with exceptions of ovary 51.4% and testis 55.2%. The prediction tool identified a total of 459 novel pre miRNAs. We compared expression of miRNAs between different tissues and between males and females to identify tissue associated and sex associated miRNAs respectively. These miRNAs could serve as putative biomarkers for these tissues. The brain and liver had highest number of tissue associated 22 and sex associated 34 miRNAs respectively. This study comprehensively identifies tissue and sex associated miRNAs in zebrafish. Further we have discovered 459 novel pre miRNAs 30% seed homology to human miRNA as a genomic resource which can facilitate further investigations to understand miRNA mRNA gene regulatory networks in zebrafish which will have implications in understanding the function of human homologs. Overall design: Known miRNA profiling novel miRNA discovery and identification of tissue associated and sex associated miRNAs from sRNA deep sequencing data of different tissues and embryo of zebrafish in triplicate was carried out using the Illumina HiSeq 2000 platform.,,pubmed:26574018,,Heart Replicate 2 sRNAseq,GSM1376648,,source name:Heart|tissue:Heart|genetic background:Wild type Singapore strain,Heart Replicate 2 sRNAseq,Illumina Casava 1.8.2 software used for basecalling. The sequenced reads were first subjected to adapter removal through the cutadapt program Martin 2011. The trimmed reads were then collapsed to remove redundancy and to obtain a unique sequence fasta file through the mapper module of miRDeep2 package Friedländer et al. 2012. The unique reads fasta file was then put through an elimination pipeline module Vaz et al. 2010 comprising of a series of sequence similarity searches with the annotated databases. At each step the reads were matched to an annotated database with a maximum of two mismatches. The matched reads were removed and the unmatched ones were further matched to another annotated database finally culminating into an un annotated pool of reads that served as a source of novel miRNAs and novel sRNAs. The known miRNA expression profile was generated by using the quantifier module of the miRDeep2 package that gives the read counts for the known miRNAs. The quantifier.pl command line used: perl quantifier.pl p m r t Zebrafish The raw reads expression profile generated for all the replicates of the samples were subjected to Trimmed Mean of M values TMM normalisation using the Bioconductor package edgeR Robinson et al. 2010. Genome build: ZV9 Supplementary files format and content: 1. 'Danio rerio known miRNA Rel19 profile Raw.txt': Tab delimited text file that includes the raw counts for the known mature miRNA miRBase Release 19. Supplementary files format and content: 2. 'Danio rerio known miRNA Rel19 profile Normalised.txt': Tab delimited text file that includes the Trimmed Mean of M values TMM normalised counts for the known mature miRNA miRBase Release 19. One of the replicate of Heart MZH008 failed to cluster with the other two replicates on basis of its known miRNA expression profile and hence was not used for further analysis.,Heart,N/A,Total RNA were extracted using mirVana™ miRNA Isolation Kit AM1560 Life Technologies. Tissues were homogenised in 1.5 ml microfuge tube containing Lysis/Binding buffer provided in the mirVana™ miRNA Isolation using a hand held pestle. Total RNA containing small RNA were purified following the manufacturer protocol. Small RNA libraries were prepared for sequencing using TruSeq Small RNA Sample Preparation Kit RS 200 0012 Illumina Inc.. Libraries were prepared according to manufacturer instructions. Briefly 1µg of good quality Total RNA per sample was used as starting material. 5’ and 3’ RNA adapters were ligated to each RNA molecule before reverse transcription to create single stranded cDNA. The cDNA was then amplified with PCR using a common primer and a primer containing a unique index sequence. The resulting PCR reactions were electrophoresed on 6% Novex TBE PAGE Gel Life Technologies and bands corresponding to adapter ligated constructs derived from 22 30 nucleotides small RNA fragments were excised from the gel. The small RNA were purified from the excised gel and validated on High Sensitivity DNA chips on a Bioanalyser Agilent Technologies before sequencing.,Fishes were purchased from a local supplier and acclimatized before tissue extraction.,tissue:Heart|genetic background:Wild type Singapore strain,GSM1376648,GSM1376648: Heart Replicate 2 sRNAseq; Danio rerio; miRNA Seq,GSM1376648,,1,Total RNA were extracted using mirVana™ miRNA Isolation Kit AM1560 Life Technologies. Tissues were homogenised in 1.5 ml microfuge tube containing Lysis/Binding buffer provided in the mirVana™ miRNA Isolation using a hand held pestle. Total RNA containing small RNA were purified following the manufacturer protocol. Small RNA libraries were prepared for sequencing using TruSeq Small RNA Sample Preparation Kit RS 200 0012 Illumina Inc.. Libraries were prepared according to manufacturer instructions. Briefly 1µg of good quality Total RNA per sample was used as starting material. 5’ and 3’ RNA adapters were ligated to each RNA molecule before reverse transcription to create single stranded cDNA. The cDNA was then amplified with PCR using a common primer and a primer containing a unique index sequence. The resulting PCR reactions were electrophoresed on 6% Novex TBE PAGE Gel Life Technologies and bands corresponding to adapter ligated constructs derived from 22 30 nucleotides small RNA fragments were excised from the gel. The small RNA were purified from the excised gel and validated on High Sensitivity DNA chips on a Bioanalyser Agilent Technologies before sequencing.,GEO Accession:GSM1376648,miRNA-Seq,TRANSCRIPTOMIC,size fractionation,SINGLE,ILLUMINA,Illumina HiSeq 2000,,SRP041544,,,MZH007_ACTTGA_L005_R1.fastq.gz,fastq,3202357508.0,42136283.0,GSM1376648 r1,0:76,A:666309720;C:845347679;G:846066601;T:844306103;N:327405,76,,,,666309720,845347679,846066601,844306103,327405,SRX529159,SRS598856,SRA160430,GEO,"Expression and Signaling in Mesenchymal and Hematopoietic Stem Cells, Genome and Gene Expression Data Analysis Division, Bioinformatics Institute, A*STAR, Singapore",1,0.00042,,3e-05,,0.99924,,0.56521,,76,,T,,under 1.2% mapping rate,illumina,hiseq_era,unknown,size_fractionation,trueseq,bulk,unknown,unknown,,Singapore,2014-04-29,Undetermined,Embryo,Heart,Cardiovascular System 37993,SRR1265764,SRX529158,SRS598855,SRP041544,PRJNA245824,Deep sequencing of small RNA facilitates tissue and sex associated microRNA discovery in zebrafish,GSE57169,Transcriptome Analysis,The role of microRNAs in gene regulation has been well established. The extent of miRNA regulation also increases with increasing genome complexity. Though the number of genes appear to be equal between human and zebrafish substantially less microRNAs have been discovered in zebrafish compared to human Release 19. It appears that most of the miRNAs in zebrafish are yet to be discovered. We sequenced small RNAs from brain gut liver ovary testis eye heart and embryo of zebrafish. In brain gut and liver sequencing was done in male and female separately. Majority of the sequenced reads 16 62% mapped to known miRNAs with the exception of ovary 5.7% and testis 7.8%. Using the miRNA discovery tool miRDeep2 we discovered novel miRNAs from the un annotated reads that ranged from 7.6 to 23.0% with exceptions of ovary 51.4% and testis 55.2%. The prediction tool identified a total of 459 novel pre miRNAs. We compared expression of miRNAs between different tissues and between males and females to identify tissue associated and sex associated miRNAs respectively. These miRNAs could serve as putative biomarkers for these tissues. The brain and liver had highest number of tissue associated 22 and sex associated 34 miRNAs respectively. This study comprehensively identifies tissue and sex associated miRNAs in zebrafish. Further we have discovered 459 novel pre miRNAs 30% seed homology to human miRNA as a genomic resource which can facilitate further investigations to understand miRNA mRNA gene regulatory networks in zebrafish which will have implications in understanding the function of human homologs. Overall design: Known miRNA profiling novel miRNA discovery and identification of tissue associated and sex associated miRNAs from sRNA deep sequencing data of different tissues and embryo of zebrafish in triplicate was carried out using the Illumina HiSeq 2000 platform.,,pubmed:26574018,,Heart Replicate 1 sRNAseq,GSM1376647,,source name:Heart|tissue:Heart|genetic background:Wild type Singapore strain,Heart Replicate 1 sRNAseq,Illumina Casava 1.8.2 software used for basecalling. The sequenced reads were first subjected to adapter removal through the cutadapt program Martin 2011. The trimmed reads were then collapsed to remove redundancy and to obtain a unique sequence fasta file through the mapper module of miRDeep2 package Friedländer et al. 2012. The unique reads fasta file was then put through an elimination pipeline module Vaz et al. 2010 comprising of a series of sequence similarity searches with the annotated databases. At each step the reads were matched to an annotated database with a maximum of two mismatches. The matched reads were removed and the unmatched ones were further matched to another annotated database finally culminating into an un annotated pool of reads that served as a source of novel miRNAs and novel sRNAs. The known miRNA expression profile was generated by using the quantifier module of the miRDeep2 package that gives the read counts for the known miRNAs. The quantifier.pl command line used: perl quantifier.pl p m r t Zebrafish The raw reads expression profile generated for all the replicates of the samples were subjected to Trimmed Mean of M values TMM normalisation using the Bioconductor package edgeR Robinson et al. 2010. Genome build: ZV9 Supplementary files format and content: 1. 'Danio rerio known miRNA Rel19 profile Raw.txt': Tab delimited text file that includes the raw counts for the known mature miRNA miRBase Release 19. Supplementary files format and content: 2. 'Danio rerio known miRNA Rel19 profile Normalised.txt': Tab delimited text file that includes the Trimmed Mean of M values TMM normalised counts for the known mature miRNA miRBase Release 19. One of the replicate of Heart MZH008 failed to cluster with the other two replicates on basis of its known miRNA expression profile and hence was not used for further analysis.,Heart,N/A,Total RNA were extracted using mirVana™ miRNA Isolation Kit AM1560 Life Technologies. Tissues were homogenised in 1.5 ml microfuge tube containing Lysis/Binding buffer provided in the mirVana™ miRNA Isolation using a hand held pestle. Total RNA containing small RNA were purified following the manufacturer protocol. Small RNA libraries were prepared for sequencing using TruSeq Small RNA Sample Preparation Kit RS 200 0012 Illumina Inc.. Libraries were prepared according to manufacturer instructions. Briefly 1µg of good quality Total RNA per sample was used as starting material. 5’ and 3’ RNA adapters were ligated to each RNA molecule before reverse transcription to create single stranded cDNA. The cDNA was then amplified with PCR using a common primer and a primer containing a unique index sequence. The resulting PCR reactions were electrophoresed on 6% Novex TBE PAGE Gel Life Technologies and bands corresponding to adapter ligated constructs derived from 22 30 nucleotides small RNA fragments were excised from the gel. The small RNA were purified from the excised gel and validated on High Sensitivity DNA chips on a Bioanalyser Agilent Technologies before sequencing.,Fishes were purchased from a local supplier and acclimatized before tissue extraction.,tissue:Heart|genetic background:Wild type Singapore strain,GSM1376647,GSM1376647: Heart Replicate 1 sRNAseq; Danio rerio; miRNA Seq,GSM1376647,,1,Total RNA were extracted using mirVana™ miRNA Isolation Kit AM1560 Life Technologies. Tissues were homogenised in 1.5 ml microfuge tube containing Lysis/Binding buffer provided in the mirVana™ miRNA Isolation using a hand held pestle. Total RNA containing small RNA were purified following the manufacturer protocol. Small RNA libraries were prepared for sequencing using TruSeq Small RNA Sample Preparation Kit RS 200 0012 Illumina Inc.. Libraries were prepared according to manufacturer instructions. Briefly 1µg of good quality Total RNA per sample was used as starting material. 5’ and 3’ RNA adapters were ligated to each RNA molecule before reverse transcription to create single stranded cDNA. The cDNA was then amplified with PCR using a common primer and a primer containing a unique index sequence. The resulting PCR reactions were electrophoresed on 6% Novex TBE PAGE Gel Life Technologies and bands corresponding to adapter ligated constructs derived from 22 30 nucleotides small RNA fragments were excised from the gel. The small RNA were purified from the excised gel and validated on High Sensitivity DNA chips on a Bioanalyser Agilent Technologies before sequencing.,GEO Accession:GSM1376647,miRNA-Seq,TRANSCRIPTOMIC,size fractionation,SINGLE,ILLUMINA,Illumina HiSeq 2000,,SRP041544,,,MZH002_CAGATC_L005_R1.fastq.gz,fastq,3777814232.0,49708082.0,GSM1376647 r1,0:76,A:791204432;C:1050679958;G:1001897360;T:933655799;N:376683,76,,,,791204432,1050679958,1001897360,933655799,376683,SRX529158,SRS598855,SRA160430,GEO,"Expression and Signaling in Mesenchymal and Hematopoietic Stem Cells, Genome and Gene Expression Data Analysis Division, Bioinformatics Institute, A*STAR, Singapore",1,0.00034,,4e-05,,0.99943,,0.62264,,76,,T,,under 1.2% mapping rate,illumina,hiseq_era,unknown,size_fractionation,trueseq,bulk,unknown,unknown,,Singapore,2014-04-29,Undetermined,Embryo,Heart,Cardiovascular System 37994,SRR1265763,SRX529157,SRS598854,SRP041544,PRJNA245824,Deep sequencing of small RNA facilitates tissue and sex associated microRNA discovery in zebrafish,GSE57169,Transcriptome Analysis,The role of microRNAs in gene regulation has been well established. The extent of miRNA regulation also increases with increasing genome complexity. Though the number of genes appear to be equal between human and zebrafish substantially less microRNAs have been discovered in zebrafish compared to human Release 19. It appears that most of the miRNAs in zebrafish are yet to be discovered. We sequenced small RNAs from brain gut liver ovary testis eye heart and embryo of zebrafish. In brain gut and liver sequencing was done in male and female separately. Majority of the sequenced reads 16 62% mapped to known miRNAs with the exception of ovary 5.7% and testis 7.8%. Using the miRNA discovery tool miRDeep2 we discovered novel miRNAs from the un annotated reads that ranged from 7.6 to 23.0% with exceptions of ovary 51.4% and testis 55.2%. The prediction tool identified a total of 459 novel pre miRNAs. We compared expression of miRNAs between different tissues and between males and females to identify tissue associated and sex associated miRNAs respectively. These miRNAs could serve as putative biomarkers for these tissues. The brain and liver had highest number of tissue associated 22 and sex associated 34 miRNAs respectively. This study comprehensively identifies tissue and sex associated miRNAs in zebrafish. Further we have discovered 459 novel pre miRNAs 30% seed homology to human miRNA as a genomic resource which can facilitate further investigations to understand miRNA mRNA gene regulatory networks in zebrafish which will have implications in understanding the function of human homologs. Overall design: Known miRNA profiling novel miRNA discovery and identification of tissue associated and sex associated miRNAs from sRNA deep sequencing data of different tissues and embryo of zebrafish in triplicate was carried out using the Illumina HiSeq 2000 platform.,,pubmed:26574018,,Eye Replicate 3 sRNAseq,GSM1376646,,source name:Eye|tissue:Eye|genetic background:Wild type Singapore strain,Eye Replicate 3 sRNAseq,Illumina Casava 1.8.2 software used for basecalling. The sequenced reads were first subjected to adapter removal through the cutadapt program Martin 2011. The trimmed reads were then collapsed to remove redundancy and to obtain a unique sequence fasta file through the mapper module of miRDeep2 package Friedländer et al. 2012. The unique reads fasta file was then put through an elimination pipeline module Vaz et al. 2010 comprising of a series of sequence similarity searches with the annotated databases. At each step the reads were matched to an annotated database with a maximum of two mismatches. The matched reads were removed and the unmatched ones were further matched to another annotated database finally culminating into an un annotated pool of reads that served as a source of novel miRNAs and novel sRNAs. The known miRNA expression profile was generated by using the quantifier module of the miRDeep2 package that gives the read counts for the known miRNAs. The quantifier.pl command line used: perl quantifier.pl p m r t Zebrafish The raw reads expression profile generated for all the replicates of the samples were subjected to Trimmed Mean of M values TMM normalisation using the Bioconductor package edgeR Robinson et al. 2010. Genome build: ZV9 Supplementary files format and content: 1. 'Danio rerio known miRNA Rel19 profile Raw.txt': Tab delimited text file that includes the raw counts for the known mature miRNA miRBase Release 19. Supplementary files format and content: 2. 'Danio rerio known miRNA Rel19 profile Normalised.txt': Tab delimited text file that includes the Trimmed Mean of M values TMM normalised counts for the known mature miRNA miRBase Release 19. One of the replicate of Heart MZH008 failed to cluster with the other two replicates on basis of its known miRNA expression profile and hence was not used for further analysis.,Eye,N/A,Total RNA were extracted using mirVana™ miRNA Isolation Kit AM1560 Life Technologies. Tissues were homogenised in 1.5 ml microfuge tube containing Lysis/Binding buffer provided in the mirVana™ miRNA Isolation using a hand held pestle. Total RNA containing small RNA were purified following the manufacturer protocol. Small RNA libraries were prepared for sequencing using TruSeq Small RNA Sample Preparation Kit RS 200 0012 Illumina Inc.. Libraries were prepared according to manufacturer instructions. Briefly 1µg of good quality Total RNA per sample was used as starting material. 5’ and 3’ RNA adapters were ligated to each RNA molecule before reverse transcription to create single stranded cDNA. The cDNA was then amplified with PCR using a common primer and a primer containing a unique index sequence. The resulting PCR reactions were electrophoresed on 6% Novex TBE PAGE Gel Life Technologies and bands corresponding to adapter ligated constructs derived from 22 30 nucleotides small RNA fragments were excised from the gel. The small RNA were purified from the excised gel and validated on High Sensitivity DNA chips on a Bioanalyser Agilent Technologies before sequencing.,Fishes were purchased from a local supplier and acclimatized before tissue extraction.,tissue:Eye|genetic background:Wild type Singapore strain,GSM1376646,GSM1376646: Eye Replicate 3 sRNAseq; Danio rerio; miRNA Seq,GSM1376646,,1,Total RNA were extracted using mirVana™ miRNA Isolation Kit AM1560 Life Technologies. Tissues were homogenised in 1.5 ml microfuge tube containing Lysis/Binding buffer provided in the mirVana™ miRNA Isolation using a hand held pestle. Total RNA containing small RNA were purified following the manufacturer protocol. Small RNA libraries were prepared for sequencing using TruSeq Small RNA Sample Preparation Kit RS 200 0012 Illumina Inc.. Libraries were prepared according to manufacturer instructions. Briefly 1µg of good quality Total RNA per sample was used as starting material. 5’ and 3’ RNA adapters were ligated to each RNA molecule before reverse transcription to create single stranded cDNA. The cDNA was then amplified with PCR using a common primer and a primer containing a unique index sequence. The resulting PCR reactions were electrophoresed on 6% Novex TBE PAGE Gel Life Technologies and bands corresponding to adapter ligated constructs derived from 22 30 nucleotides small RNA fragments were excised from the gel. The small RNA were purified from the excised gel and validated on High Sensitivity DNA chips on a Bioanalyser Agilent Technologies before sequencing.,GEO Accession:GSM1376646,miRNA-Seq,TRANSCRIPTOMIC,size fractionation,SINGLE,ILLUMINA,Illumina HiSeq 2000,,SRP041544,,,MZE014_GCCAAT_L005_R1.fastq.gz,fastq,299134784.0,3935984.0,GSM1376646 r1,0:76,A:62089027;C:82689882;G:78294122;T:76032871;N:28882,76,,,,62089027,82689882,78294122,76032871,28882,SRX529157,SRS598854,SRA160430,GEO,"Expression and Signaling in Mesenchymal and Hematopoietic Stem Cells, Genome and Gene Expression Data Analysis Division, Bioinformatics Institute, A*STAR, Singapore",1,0.00078,,8e-05,,0.99892,,0.66406,,76,,T,,under 1.2% mapping rate,illumina,hiseq_era,unknown,size_fractionation,trueseq,bulk,unknown,unknown,,Singapore,2014-04-29,Undetermined,Embryo,Eye,Sensory System 37995,SRR1265762,SRX529156,SRS598853,SRP041544,PRJNA245824,Deep sequencing of small RNA facilitates tissue and sex associated microRNA discovery in zebrafish,GSE57169,Transcriptome Analysis,The role of microRNAs in gene regulation has been well established. The extent of miRNA regulation also increases with increasing genome complexity. Though the number of genes appear to be equal between human and zebrafish substantially less microRNAs have been discovered in zebrafish compared to human Release 19. It appears that most of the miRNAs in zebrafish are yet to be discovered. We sequenced small RNAs from brain gut liver ovary testis eye heart and embryo of zebrafish. In brain gut and liver sequencing was done in male and female separately. Majority of the sequenced reads 16 62% mapped to known miRNAs with the exception of ovary 5.7% and testis 7.8%. Using the miRNA discovery tool miRDeep2 we discovered novel miRNAs from the un annotated reads that ranged from 7.6 to 23.0% with exceptions of ovary 51.4% and testis 55.2%. The prediction tool identified a total of 459 novel pre miRNAs. We compared expression of miRNAs between different tissues and between males and females to identify tissue associated and sex associated miRNAs respectively. These miRNAs could serve as putative biomarkers for these tissues. The brain and liver had highest number of tissue associated 22 and sex associated 34 miRNAs respectively. This study comprehensively identifies tissue and sex associated miRNAs in zebrafish. Further we have discovered 459 novel pre miRNAs 30% seed homology to human miRNA as a genomic resource which can facilitate further investigations to understand miRNA mRNA gene regulatory networks in zebrafish which will have implications in understanding the function of human homologs. Overall design: Known miRNA profiling novel miRNA discovery and identification of tissue associated and sex associated miRNAs from sRNA deep sequencing data of different tissues and embryo of zebrafish in triplicate was carried out using the Illumina HiSeq 2000 platform.,,pubmed:26574018,,Eye Replicate 2 sRNAseq,GSM1376645,,source name:Eye|tissue:Eye|genetic background:Wild type Singapore strain,Eye Replicate 2 sRNAseq,Illumina Casava 1.8.2 software used for basecalling. The sequenced reads were first subjected to adapter removal through the cutadapt program Martin 2011. The trimmed reads were then collapsed to remove redundancy and to obtain a unique sequence fasta file through the mapper module of miRDeep2 package Friedländer et al. 2012. The unique reads fasta file was then put through an elimination pipeline module Vaz et al. 2010 comprising of a series of sequence similarity searches with the annotated databases. At each step the reads were matched to an annotated database with a maximum of two mismatches. The matched reads were removed and the unmatched ones were further matched to another annotated database finally culminating into an un annotated pool of reads that served as a source of novel miRNAs and novel sRNAs. The known miRNA expression profile was generated by using the quantifier module of the miRDeep2 package that gives the read counts for the known miRNAs. The quantifier.pl command line used: perl quantifier.pl p m r t Zebrafish The raw reads expression profile generated for all the replicates of the samples were subjected to Trimmed Mean of M values TMM normalisation using the Bioconductor package edgeR Robinson et al. 2010. Genome build: ZV9 Supplementary files format and content: 1. 'Danio rerio known miRNA Rel19 profile Raw.txt': Tab delimited text file that includes the raw counts for the known mature miRNA miRBase Release 19. Supplementary files format and content: 2. 'Danio rerio known miRNA Rel19 profile Normalised.txt': Tab delimited text file that includes the Trimmed Mean of M values TMM normalised counts for the known mature miRNA miRBase Release 19. One of the replicate of Heart MZH008 failed to cluster with the other two replicates on basis of its known miRNA expression profile and hence was not used for further analysis.,Eye,N/A,Total RNA were extracted using mirVana™ miRNA Isolation Kit AM1560 Life Technologies. Tissues were homogenised in 1.5 ml microfuge tube containing Lysis/Binding buffer provided in the mirVana™ miRNA Isolation using a hand held pestle. Total RNA containing small RNA were purified following the manufacturer protocol. Small RNA libraries were prepared for sequencing using TruSeq Small RNA Sample Preparation Kit RS 200 0012 Illumina Inc.. Libraries were prepared according to manufacturer instructions. Briefly 1µg of good quality Total RNA per sample was used as starting material. 5’ and 3’ RNA adapters were ligated to each RNA molecule before reverse transcription to create single stranded cDNA. The cDNA was then amplified with PCR using a common primer and a primer containing a unique index sequence. The resulting PCR reactions were electrophoresed on 6% Novex TBE PAGE Gel Life Technologies and bands corresponding to adapter ligated constructs derived from 22 30 nucleotides small RNA fragments were excised from the gel. The small RNA were purified from the excised gel and validated on High Sensitivity DNA chips on a Bioanalyser Agilent Technologies before sequencing.,Fishes were purchased from a local supplier and acclimatized before tissue extraction.,tissue:Eye|genetic background:Wild type Singapore strain,GSM1376645,GSM1376645: Eye Replicate 2 sRNAseq; Danio rerio; miRNA Seq,GSM1376645,,1,Total RNA were extracted using mirVana™ miRNA Isolation Kit AM1560 Life Technologies. Tissues were homogenised in 1.5 ml microfuge tube containing Lysis/Binding buffer provided in the mirVana™ miRNA Isolation using a hand held pestle. Total RNA containing small RNA were purified following the manufacturer protocol. Small RNA libraries were prepared for sequencing using TruSeq Small RNA Sample Preparation Kit RS 200 0012 Illumina Inc.. Libraries were prepared according to manufacturer instructions. Briefly 1µg of good quality Total RNA per sample was used as starting material. 5’ and 3’ RNA adapters were ligated to each RNA molecule before reverse transcription to create single stranded cDNA. The cDNA was then amplified with PCR using a common primer and a primer containing a unique index sequence. The resulting PCR reactions were electrophoresed on 6% Novex TBE PAGE Gel Life Technologies and bands corresponding to adapter ligated constructs derived from 22 30 nucleotides small RNA fragments were excised from the gel. The small RNA were purified from the excised gel and validated on High Sensitivity DNA chips on a Bioanalyser Agilent Technologies before sequencing.,GEO Accession:GSM1376645,miRNA-Seq,TRANSCRIPTOMIC,size fractionation,SINGLE,ILLUMINA,Illumina HiSeq 2000,,SRP041544,,,MZE013_ACAGTG_L005_R1.fastq.gz,fastq,622465080.0,8190330.0,GSM1376645 r1,0:76,A:127621827;C:166524813;G:172833628;T:155425094;N:59718,76,,,,127621827,166524813,172833628,155425094,59718,SRX529156,SRS598853,SRA160430,GEO,"Expression and Signaling in Mesenchymal and Hematopoietic Stem Cells, Genome and Gene Expression Data Analysis Division, Bioinformatics Institute, A*STAR, Singapore",1,0.00132,,7e-05,,0.99886,,0.66956,,76,,T,,under 1.2% mapping rate,illumina,hiseq_era,unknown,size_fractionation,trueseq,bulk,unknown,unknown,,Singapore,2014-04-29,Undetermined,Embryo,Eye,Sensory System 37996,SRR1265761,SRX529155,SRS598852,SRP041544,PRJNA245824,Deep sequencing of small RNA facilitates tissue and sex associated microRNA discovery in zebrafish,GSE57169,Transcriptome Analysis,The role of microRNAs in gene regulation has been well established. The extent of miRNA regulation also increases with increasing genome complexity. Though the number of genes appear to be equal between human and zebrafish substantially less microRNAs have been discovered in zebrafish compared to human Release 19. It appears that most of the miRNAs in zebrafish are yet to be discovered. We sequenced small RNAs from brain gut liver ovary testis eye heart and embryo of zebrafish. In brain gut and liver sequencing was done in male and female separately. Majority of the sequenced reads 16 62% mapped to known miRNAs with the exception of ovary 5.7% and testis 7.8%. Using the miRNA discovery tool miRDeep2 we discovered novel miRNAs from the un annotated reads that ranged from 7.6 to 23.0% with exceptions of ovary 51.4% and testis 55.2%. The prediction tool identified a total of 459 novel pre miRNAs. We compared expression of miRNAs between different tissues and between males and females to identify tissue associated and sex associated miRNAs respectively. These miRNAs could serve as putative biomarkers for these tissues. The brain and liver had highest number of tissue associated 22 and sex associated 34 miRNAs respectively. This study comprehensively identifies tissue and sex associated miRNAs in zebrafish. Further we have discovered 459 novel pre miRNAs 30% seed homology to human miRNA as a genomic resource which can facilitate further investigations to understand miRNA mRNA gene regulatory networks in zebrafish which will have implications in understanding the function of human homologs. Overall design: Known miRNA profiling novel miRNA discovery and identification of tissue associated and sex associated miRNAs from sRNA deep sequencing data of different tissues and embryo of zebrafish in triplicate was carried out using the Illumina HiSeq 2000 platform.,,pubmed:26574018,,Eye Replicate 1 sRNAseq,GSM1376644,,source name:Eye|tissue:Eye|genetic background:Wild type Singapore strain,Eye Replicate 1 sRNAseq,Illumina Casava 1.8.2 software used for basecalling. The sequenced reads were first subjected to adapter removal through the cutadapt program Martin 2011. The trimmed reads were then collapsed to remove redundancy and to obtain a unique sequence fasta file through the mapper module of miRDeep2 package Friedländer et al. 2012. The unique reads fasta file was then put through an elimination pipeline module Vaz et al. 2010 comprising of a series of sequence similarity searches with the annotated databases. At each step the reads were matched to an annotated database with a maximum of two mismatches. The matched reads were removed and the unmatched ones were further matched to another annotated database finally culminating into an un annotated pool of reads that served as a source of novel miRNAs and novel sRNAs. The known miRNA expression profile was generated by using the quantifier module of the miRDeep2 package that gives the read counts for the known miRNAs. The quantifier.pl command line used: perl quantifier.pl p m r t Zebrafish The raw reads expression profile generated for all the replicates of the samples were subjected to Trimmed Mean of M values TMM normalisation using the Bioconductor package edgeR Robinson et al. 2010. Genome build: ZV9 Supplementary files format and content: 1. 'Danio rerio known miRNA Rel19 profile Raw.txt': Tab delimited text file that includes the raw counts for the known mature miRNA miRBase Release 19. Supplementary files format and content: 2. 'Danio rerio known miRNA Rel19 profile Normalised.txt': Tab delimited text file that includes the Trimmed Mean of M values TMM normalised counts for the known mature miRNA miRBase Release 19. One of the replicate of Heart MZH008 failed to cluster with the other two replicates on basis of its known miRNA expression profile and hence was not used for further analysis.,Eye,N/A,Total RNA were extracted using mirVana™ miRNA Isolation Kit AM1560 Life Technologies. Tissues were homogenised in 1.5 ml microfuge tube containing Lysis/Binding buffer provided in the mirVana™ miRNA Isolation using a hand held pestle. Total RNA containing small RNA were purified following the manufacturer protocol. Small RNA libraries were prepared for sequencing using TruSeq Small RNA Sample Preparation Kit RS 200 0012 Illumina Inc.. Libraries were prepared according to manufacturer instructions. Briefly 1µg of good quality Total RNA per sample was used as starting material. 5’ and 3’ RNA adapters were ligated to each RNA molecule before reverse transcription to create single stranded cDNA. The cDNA was then amplified with PCR using a common primer and a primer containing a unique index sequence. The resulting PCR reactions were electrophoresed on 6% Novex TBE PAGE Gel Life Technologies and bands corresponding to adapter ligated constructs derived from 22 30 nucleotides small RNA fragments were excised from the gel. The small RNA were purified from the excised gel and validated on High Sensitivity DNA chips on a Bioanalyser Agilent Technologies before sequencing.,Fishes were purchased from a local supplier and acclimatized before tissue extraction.,tissue:Eye|genetic background:Wild type Singapore strain,GSM1376644,GSM1376644: Eye Replicate 1 sRNAseq; Danio rerio; miRNA Seq,GSM1376644,,1,Total RNA were extracted using mirVana™ miRNA Isolation Kit AM1560 Life Technologies. Tissues were homogenised in 1.5 ml microfuge tube containing Lysis/Binding buffer provided in the mirVana™ miRNA Isolation using a hand held pestle. Total RNA containing small RNA were purified following the manufacturer protocol. Small RNA libraries were prepared for sequencing using TruSeq Small RNA Sample Preparation Kit RS 200 0012 Illumina Inc.. Libraries were prepared according to manufacturer instructions. Briefly 1µg of good quality Total RNA per sample was used as starting material. 5’ and 3’ RNA adapters were ligated to each RNA molecule before reverse transcription to create single stranded cDNA. The cDNA was then amplified with PCR using a common primer and a primer containing a unique index sequence. The resulting PCR reactions were electrophoresed on 6% Novex TBE PAGE Gel Life Technologies and bands corresponding to adapter ligated constructs derived from 22 30 nucleotides small RNA fragments were excised from the gel. The small RNA were purified from the excised gel and validated on High Sensitivity DNA chips on a Bioanalyser Agilent Technologies before sequencing.,GEO Accession:GSM1376644,miRNA-Seq,TRANSCRIPTOMIC,size fractionation,SINGLE,ILLUMINA,Illumina HiSeq 2000,,SRP041544,,,MZE008_TGACCA_L005_R1.fastq.gz,fastq,906617148.0,11929173.0,GSM1376644 r1,0:76,A:188700519;C:246755919;G:238402849;T:232669963;N:87898,76,,,,188700519,246755919,238402849,232669963,87898,SRX529155,SRS598852,SRA160430,GEO,"Expression and Signaling in Mesenchymal and Hematopoietic Stem Cells, Genome and Gene Expression Data Analysis Division, Bioinformatics Institute, A*STAR, Singapore",1,0.00073,,4e-05,,0.9991,,0.61788,,76,,T,,under 1.2% mapping rate,illumina,hiseq_era,unknown,size_fractionation,trueseq,bulk,unknown,unknown,,Singapore,2014-04-29,Undetermined,Embryo,Eye,Sensory System 37997,SRR1265760,SRX529154,SRS598851,SRP041544,PRJNA245824,Deep sequencing of small RNA facilitates tissue and sex associated microRNA discovery in zebrafish,GSE57169,Transcriptome Analysis,The role of microRNAs in gene regulation has been well established. The extent of miRNA regulation also increases with increasing genome complexity. Though the number of genes appear to be equal between human and zebrafish substantially less microRNAs have been discovered in zebrafish compared to human Release 19. It appears that most of the miRNAs in zebrafish are yet to be discovered. We sequenced small RNAs from brain gut liver ovary testis eye heart and embryo of zebrafish. In brain gut and liver sequencing was done in male and female separately. Majority of the sequenced reads 16 62% mapped to known miRNAs with the exception of ovary 5.7% and testis 7.8%. Using the miRNA discovery tool miRDeep2 we discovered novel miRNAs from the un annotated reads that ranged from 7.6 to 23.0% with exceptions of ovary 51.4% and testis 55.2%. The prediction tool identified a total of 459 novel pre miRNAs. We compared expression of miRNAs between different tissues and between males and females to identify tissue associated and sex associated miRNAs respectively. These miRNAs could serve as putative biomarkers for these tissues. The brain and liver had highest number of tissue associated 22 and sex associated 34 miRNAs respectively. This study comprehensively identifies tissue and sex associated miRNAs in zebrafish. Further we have discovered 459 novel pre miRNAs 30% seed homology to human miRNA as a genomic resource which can facilitate further investigations to understand miRNA mRNA gene regulatory networks in zebrafish which will have implications in understanding the function of human homologs. Overall design: Known miRNA profiling novel miRNA discovery and identification of tissue associated and sex associated miRNAs from sRNA deep sequencing data of different tissues and embryo of zebrafish in triplicate was carried out using the Illumina HiSeq 2000 platform.,,pubmed:26574018,,Testis Replicate 3 sRNAseq,GSM1376643,,source name:Testis|gender:male|tissue:Testis|genetic background:Wild type Singapore strain,Testis Replicate 3 sRNAseq,Illumina Casava 1.8.2 software used for basecalling. The sequenced reads were first subjected to adapter removal through the cutadapt program Martin 2011. The trimmed reads were then collapsed to remove redundancy and to obtain a unique sequence fasta file through the mapper module of miRDeep2 package Friedländer et al. 2012. The unique reads fasta file was then put through an elimination pipeline module Vaz et al. 2010 comprising of a series of sequence similarity searches with the annotated databases. At each step the reads were matched to an annotated database with a maximum of two mismatches. The matched reads were removed and the unmatched ones were further matched to another annotated database finally culminating into an un annotated pool of reads that served as a source of novel miRNAs and novel sRNAs. The known miRNA expression profile was generated by using the quantifier module of the miRDeep2 package that gives the read counts for the known miRNAs. The quantifier.pl command line used: perl quantifier.pl p m r t Zebrafish The raw reads expression profile generated for all the replicates of the samples were subjected to Trimmed Mean of M values TMM normalisation using the Bioconductor package edgeR Robinson et al. 2010. Genome build: ZV9 Supplementary files format and content: 1. 'Danio rerio known miRNA Rel19 profile Raw.txt': Tab delimited text file that includes the raw counts for the known mature miRNA miRBase Release 19. Supplementary files format and content: 2. 'Danio rerio known miRNA Rel19 profile Normalised.txt': Tab delimited text file that includes the Trimmed Mean of M values TMM normalised counts for the known mature miRNA miRBase Release 19. One of the replicate of Heart MZH008 failed to cluster with the other two replicates on basis of its known miRNA expression profile and hence was not used for further analysis.,Testis,N/A,Total RNA were extracted using mirVana™ miRNA Isolation Kit AM1560 Life Technologies. Tissues were homogenised in 1.5 ml microfuge tube containing Lysis/Binding buffer provided in the mirVana™ miRNA Isolation using a hand held pestle. Total RNA containing small RNA were purified following the manufacturer protocol. Small RNA libraries were prepared for sequencing using TruSeq Small RNA Sample Preparation Kit RS 200 0012 Illumina Inc.. Libraries were prepared according to manufacturer instructions. Briefly 1µg of good quality Total RNA per sample was used as starting material. 5’ and 3’ RNA adapters were ligated to each RNA molecule before reverse transcription to create single stranded cDNA. The cDNA was then amplified with PCR using a common primer and a primer containing a unique index sequence. The resulting PCR reactions were electrophoresed on 6% Novex TBE PAGE Gel Life Technologies and bands corresponding to adapter ligated constructs derived from 22 30 nucleotides small RNA fragments were excised from the gel. The small RNA were purified from the excised gel and validated on High Sensitivity DNA chips on a Bioanalyser Agilent Technologies before sequencing.,Fishes were purchased from a local supplier and acclimatized before tissue extraction.,gender:Male|tissue:Testis|genetic background:Wild type Singapore strain,GSM1376643,GSM1376643: Testis Replicate 3 sRNAseq; Danio rerio; miRNA Seq,GSM1376643,,1,Total RNA were extracted using mirVana™ miRNA Isolation Kit AM1560 Life Technologies. Tissues were homogenised in 1.5 ml microfuge tube containing Lysis/Binding buffer provided in the mirVana™ miRNA Isolation using a hand held pestle. Total RNA containing small RNA were purified following the manufacturer protocol. Small RNA libraries were prepared for sequencing using TruSeq Small RNA Sample Preparation Kit RS 200 0012 Illumina Inc.. Libraries were prepared according to manufacturer instructions. Briefly 1µg of good quality Total RNA per sample was used as starting material. 5’ and 3’ RNA adapters were ligated to each RNA molecule before reverse transcription to create single stranded cDNA. The cDNA was then amplified with PCR using a common primer and a primer containing a unique index sequence. The resulting PCR reactions were electrophoresed on 6% Novex TBE PAGE Gel Life Technologies and bands corresponding to adapter ligated constructs derived from 22 30 nucleotides small RNA fragments were excised from the gel. The small RNA were purified from the excised gel and validated on High Sensitivity DNA chips on a Bioanalyser Agilent Technologies before sequencing.,GEO Accession:GSM1376643,miRNA-Seq,TRANSCRIPTOMIC,size fractionation,SINGLE,ILLUMINA,Illumina HiSeq 2000,,SRP041544,,,MZT004_GCCAAT_L004_R1.fastq.gz,fastq,1096387628.0,14426153.0,GSM1376643 r1,0:76,A:268706118;C:286539627;G:262643519;T:278353167;N:145197,76,,,,268706118,286539627,262643519,278353167,145197,SRX529154,SRS598851,SRA160430,GEO,"Expression and Signaling in Mesenchymal and Hematopoietic Stem Cells, Genome and Gene Expression Data Analysis Division, Bioinformatics Institute, A*STAR, Singapore",1,0.00659,,0.00333,,0.99845,,0.7331,,76,,T,,under 1.2% mapping rate,illumina,hiseq_era,unknown,size_fractionation,trueseq,bulk,unknown,unknown,,Singapore,2014-04-29,Undetermined,Embryo,Gonad,Reproductive System 37998,SRR1265759,SRX529153,SRS598850,SRP041544,PRJNA245824,Deep sequencing of small RNA facilitates tissue and sex associated microRNA discovery in zebrafish,GSE57169,Transcriptome Analysis,The role of microRNAs in gene regulation has been well established. The extent of miRNA regulation also increases with increasing genome complexity. Though the number of genes appear to be equal between human and zebrafish substantially less microRNAs have been discovered in zebrafish compared to human Release 19. It appears that most of the miRNAs in zebrafish are yet to be discovered. We sequenced small RNAs from brain gut liver ovary testis eye heart and embryo of zebrafish. In brain gut and liver sequencing was done in male and female separately. Majority of the sequenced reads 16 62% mapped to known miRNAs with the exception of ovary 5.7% and testis 7.8%. Using the miRNA discovery tool miRDeep2 we discovered novel miRNAs from the un annotated reads that ranged from 7.6 to 23.0% with exceptions of ovary 51.4% and testis 55.2%. The prediction tool identified a total of 459 novel pre miRNAs. We compared expression of miRNAs between different tissues and between males and females to identify tissue associated and sex associated miRNAs respectively. These miRNAs could serve as putative biomarkers for these tissues. The brain and liver had highest number of tissue associated 22 and sex associated 34 miRNAs respectively. This study comprehensively identifies tissue and sex associated miRNAs in zebrafish. Further we have discovered 459 novel pre miRNAs 30% seed homology to human miRNA as a genomic resource which can facilitate further investigations to understand miRNA mRNA gene regulatory networks in zebrafish which will have implications in understanding the function of human homologs. Overall design: Known miRNA profiling novel miRNA discovery and identification of tissue associated and sex associated miRNAs from sRNA deep sequencing data of different tissues and embryo of zebrafish in triplicate was carried out using the Illumina HiSeq 2000 platform.,,pubmed:26574018,,Testis Replicate 2 sRNAseq,GSM1376642,,source name:Testis|gender:male|tissue:Testis|genetic background:Wild type Singapore strain,Testis Replicate 2 sRNAseq,Illumina Casava 1.8.2 software used for basecalling. The sequenced reads were first subjected to adapter removal through the cutadapt program Martin 2011. The trimmed reads were then collapsed to remove redundancy and to obtain a unique sequence fasta file through the mapper module of miRDeep2 package Friedländer et al. 2012. The unique reads fasta file was then put through an elimination pipeline module Vaz et al. 2010 comprising of a series of sequence similarity searches with the annotated databases. At each step the reads were matched to an annotated database with a maximum of two mismatches. The matched reads were removed and the unmatched ones were further matched to another annotated database finally culminating into an un annotated pool of reads that served as a source of novel miRNAs and novel sRNAs. The known miRNA expression profile was generated by using the quantifier module of the miRDeep2 package that gives the read counts for the known miRNAs. The quantifier.pl command line used: perl quantifier.pl p m r t Zebrafish The raw reads expression profile generated for all the replicates of the samples were subjected to Trimmed Mean of M values TMM normalisation using the Bioconductor package edgeR Robinson et al. 2010. Genome build: ZV9 Supplementary files format and content: 1. 'Danio rerio known miRNA Rel19 profile Raw.txt': Tab delimited text file that includes the raw counts for the known mature miRNA miRBase Release 19. Supplementary files format and content: 2. 'Danio rerio known miRNA Rel19 profile Normalised.txt': Tab delimited text file that includes the Trimmed Mean of M values TMM normalised counts for the known mature miRNA miRBase Release 19. One of the replicate of Heart MZH008 failed to cluster with the other two replicates on basis of its known miRNA expression profile and hence was not used for further analysis.,Testis,N/A,Total RNA were extracted using mirVana™ miRNA Isolation Kit AM1560 Life Technologies. Tissues were homogenised in 1.5 ml microfuge tube containing Lysis/Binding buffer provided in the mirVana™ miRNA Isolation using a hand held pestle. Total RNA containing small RNA were purified following the manufacturer protocol. Small RNA libraries were prepared for sequencing using TruSeq Small RNA Sample Preparation Kit RS 200 0012 Illumina Inc.. Libraries were prepared according to manufacturer instructions. Briefly 1µg of good quality Total RNA per sample was used as starting material. 5’ and 3’ RNA adapters were ligated to each RNA molecule before reverse transcription to create single stranded cDNA. The cDNA was then amplified with PCR using a common primer and a primer containing a unique index sequence. The resulting PCR reactions were electrophoresed on 6% Novex TBE PAGE Gel Life Technologies and bands corresponding to adapter ligated constructs derived from 22 30 nucleotides small RNA fragments were excised from the gel. The small RNA were purified from the excised gel and validated on High Sensitivity DNA chips on a Bioanalyser Agilent Technologies before sequencing.,Fishes were purchased from a local supplier and acclimatized before tissue extraction.,gender:Male|tissue:Testis|genetic background:Wild type Singapore strain,GSM1376642,GSM1376642: Testis Replicate 2 sRNAseq; Danio rerio; miRNA Seq,GSM1376642,,1,Total RNA were extracted using mirVana™ miRNA Isolation Kit AM1560 Life Technologies. Tissues were homogenised in 1.5 ml microfuge tube containing Lysis/Binding buffer provided in the mirVana™ miRNA Isolation using a hand held pestle. Total RNA containing small RNA were purified following the manufacturer protocol. Small RNA libraries were prepared for sequencing using TruSeq Small RNA Sample Preparation Kit RS 200 0012 Illumina Inc.. Libraries were prepared according to manufacturer instructions. Briefly 1µg of good quality Total RNA per sample was used as starting material. 5’ and 3’ RNA adapters were ligated to each RNA molecule before reverse transcription to create single stranded cDNA. The cDNA was then amplified with PCR using a common primer and a primer containing a unique index sequence. The resulting PCR reactions were electrophoresed on 6% Novex TBE PAGE Gel Life Technologies and bands corresponding to adapter ligated constructs derived from 22 30 nucleotides small RNA fragments were excised from the gel. The small RNA were purified from the excised gel and validated on High Sensitivity DNA chips on a Bioanalyser Agilent Technologies before sequencing.,GEO Accession:GSM1376642,miRNA-Seq,TRANSCRIPTOMIC,size fractionation,SINGLE,ILLUMINA,Illumina HiSeq 2000,,SRP041544,,,MZT003_ACAGTG_L004_R1.fastq.gz,fastq,1562745896.0,20562446.0,GSM1376642 r1,0:76,A:381752411;C:387452090;G:395892335;T:397438930;N:210130,76,,,,381752411,387452090,395892335,397438930,210130,SRX529153,SRS598850,SRA160430,GEO,"Expression and Signaling in Mesenchymal and Hematopoietic Stem Cells, Genome and Gene Expression Data Analysis Division, Bioinformatics Institute, A*STAR, Singapore",1,0.01222,,0.00651,,0.99788,,0.69591,,76,,B,,usable mapping rate,illumina,hiseq_era,unknown,size_fractionation,trueseq,bulk,unknown,unknown,,Singapore,2014-04-29,Undetermined,Embryo,Gonad,Reproductive System 37999,SRR1265758,SRX529152,SRS598849,SRP041544,PRJNA245824,Deep sequencing of small RNA facilitates tissue and sex associated microRNA discovery in zebrafish,GSE57169,Transcriptome Analysis,The role of microRNAs in gene regulation has been well established. The extent of miRNA regulation also increases with increasing genome complexity. Though the number of genes appear to be equal between human and zebrafish substantially less microRNAs have been discovered in zebrafish compared to human Release 19. It appears that most of the miRNAs in zebrafish are yet to be discovered. We sequenced small RNAs from brain gut liver ovary testis eye heart and embryo of zebrafish. In brain gut and liver sequencing was done in male and female separately. Majority of the sequenced reads 16 62% mapped to known miRNAs with the exception of ovary 5.7% and testis 7.8%. Using the miRNA discovery tool miRDeep2 we discovered novel miRNAs from the un annotated reads that ranged from 7.6 to 23.0% with exceptions of ovary 51.4% and testis 55.2%. The prediction tool identified a total of 459 novel pre miRNAs. We compared expression of miRNAs between different tissues and between males and females to identify tissue associated and sex associated miRNAs respectively. These miRNAs could serve as putative biomarkers for these tissues. The brain and liver had highest number of tissue associated 22 and sex associated 34 miRNAs respectively. This study comprehensively identifies tissue and sex associated miRNAs in zebrafish. Further we have discovered 459 novel pre miRNAs 30% seed homology to human miRNA as a genomic resource which can facilitate further investigations to understand miRNA mRNA gene regulatory networks in zebrafish which will have implications in understanding the function of human homologs. Overall design: Known miRNA profiling novel miRNA discovery and identification of tissue associated and sex associated miRNAs from sRNA deep sequencing data of different tissues and embryo of zebrafish in triplicate was carried out using the Illumina HiSeq 2000 platform.,,pubmed:26574018,,Testis Replicate 1 sRNAseq,GSM1376641,,source name:Testis|gender:male|tissue:Testis|genetic background:Wild type Singapore strain,Testis Replicate 1 sRNAseq,Illumina Casava 1.8.2 software used for basecalling. The sequenced reads were first subjected to adapter removal through the cutadapt program Martin 2011. The trimmed reads were then collapsed to remove redundancy and to obtain a unique sequence fasta file through the mapper module of miRDeep2 package Friedländer et al. 2012. The unique reads fasta file was then put through an elimination pipeline module Vaz et al. 2010 comprising of a series of sequence similarity searches with the annotated databases. At each step the reads were matched to an annotated database with a maximum of two mismatches. The matched reads were removed and the unmatched ones were further matched to another annotated database finally culminating into an un annotated pool of reads that served as a source of novel miRNAs and novel sRNAs. The known miRNA expression profile was generated by using the quantifier module of the miRDeep2 package that gives the read counts for the known miRNAs. The quantifier.pl command line used: perl quantifier.pl p m r t Zebrafish The raw reads expression profile generated for all the replicates of the samples were subjected to Trimmed Mean of M values TMM normalisation using the Bioconductor package edgeR Robinson et al. 2010. Genome build: ZV9 Supplementary files format and content: 1. 'Danio rerio known miRNA Rel19 profile Raw.txt': Tab delimited text file that includes the raw counts for the known mature miRNA miRBase Release 19. Supplementary files format and content: 2. 'Danio rerio known miRNA Rel19 profile Normalised.txt': Tab delimited text file that includes the Trimmed Mean of M values TMM normalised counts for the known mature miRNA miRBase Release 19. One of the replicate of Heart MZH008 failed to cluster with the other two replicates on basis of its known miRNA expression profile and hence was not used for further analysis.,Testis,N/A,Total RNA were extracted using mirVana™ miRNA Isolation Kit AM1560 Life Technologies. Tissues were homogenised in 1.5 ml microfuge tube containing Lysis/Binding buffer provided in the mirVana™ miRNA Isolation using a hand held pestle. Total RNA containing small RNA were purified following the manufacturer protocol. Small RNA libraries were prepared for sequencing using TruSeq Small RNA Sample Preparation Kit RS 200 0012 Illumina Inc.. Libraries were prepared according to manufacturer instructions. Briefly 1µg of good quality Total RNA per sample was used as starting material. 5’ and 3’ RNA adapters were ligated to each RNA molecule before reverse transcription to create single stranded cDNA. The cDNA was then amplified with PCR using a common primer and a primer containing a unique index sequence. The resulting PCR reactions were electrophoresed on 6% Novex TBE PAGE Gel Life Technologies and bands corresponding to adapter ligated constructs derived from 22 30 nucleotides small RNA fragments were excised from the gel. The small RNA were purified from the excised gel and validated on High Sensitivity DNA chips on a Bioanalyser Agilent Technologies before sequencing.,Fishes were purchased from a local supplier and acclimatized before tissue extraction.,gender:Male|tissue:Testis|genetic background:Wild type Singapore strain,GSM1376641,GSM1376641: Testis Replicate 1 sRNAseq; Danio rerio; miRNA Seq,GSM1376641,,1,Total RNA were extracted using mirVana™ miRNA Isolation Kit AM1560 Life Technologies. Tissues were homogenised in 1.5 ml microfuge tube containing Lysis/Binding buffer provided in the mirVana™ miRNA Isolation using a hand held pestle. Total RNA containing small RNA were purified following the manufacturer protocol. Small RNA libraries were prepared for sequencing using TruSeq Small RNA Sample Preparation Kit RS 200 0012 Illumina Inc.. Libraries were prepared according to manufacturer instructions. Briefly 1µg of good quality Total RNA per sample was used as starting material. 5’ and 3’ RNA adapters were ligated to each RNA molecule before reverse transcription to create single stranded cDNA. The cDNA was then amplified with PCR using a common primer and a primer containing a unique index sequence. The resulting PCR reactions were electrophoresed on 6% Novex TBE PAGE Gel Life Technologies and bands corresponding to adapter ligated constructs derived from 22 30 nucleotides small RNA fragments were excised from the gel. The small RNA were purified from the excised gel and validated on High Sensitivity DNA chips on a Bioanalyser Agilent Technologies before sequencing.,GEO Accession:GSM1376641,miRNA-Seq,TRANSCRIPTOMIC,size fractionation,SINGLE,ILLUMINA,Illumina HiSeq 2000,,SRP041544,,,MZT001_TGACCA_L004_R1.fastq.gz,fastq,1368892316.0,18011741.0,GSM1376641 r1,0:76,A:335715713;C:358829703;G:326742789;T:347419137;N:184974,76,,,,335715713,358829703,326742789,347419137,184974,SRX529152,SRS598849,SRA160430,GEO,"Expression and Signaling in Mesenchymal and Hematopoietic Stem Cells, Genome and Gene Expression Data Analysis Division, Bioinformatics Institute, A*STAR, Singapore",1,0.00032,,3e-05,,0.99943,,0.69387,,76,,T,,under 1.2% mapping rate,illumina,hiseq_era,unknown,size_fractionation,trueseq,bulk,unknown,unknown,,Singapore,2014-04-29,Undetermined,Embryo,Gonad,Reproductive System 38000,SRR1265757,SRX529151,SRS598848,SRP041544,PRJNA245824,Deep sequencing of small RNA facilitates tissue and sex associated microRNA discovery in zebrafish,GSE57169,Transcriptome Analysis,The role of microRNAs in gene regulation has been well established. The extent of miRNA regulation also increases with increasing genome complexity. Though the number of genes appear to be equal between human and zebrafish substantially less microRNAs have been discovered in zebrafish compared to human Release 19. It appears that most of the miRNAs in zebrafish are yet to be discovered. We sequenced small RNAs from brain gut liver ovary testis eye heart and embryo of zebrafish. In brain gut and liver sequencing was done in male and female separately. Majority of the sequenced reads 16 62% mapped to known miRNAs with the exception of ovary 5.7% and testis 7.8%. Using the miRNA discovery tool miRDeep2 we discovered novel miRNAs from the un annotated reads that ranged from 7.6 to 23.0% with exceptions of ovary 51.4% and testis 55.2%. The prediction tool identified a total of 459 novel pre miRNAs. We compared expression of miRNAs between different tissues and between males and females to identify tissue associated and sex associated miRNAs respectively. These miRNAs could serve as putative biomarkers for these tissues. The brain and liver had highest number of tissue associated 22 and sex associated 34 miRNAs respectively. This study comprehensively identifies tissue and sex associated miRNAs in zebrafish. Further we have discovered 459 novel pre miRNAs 30% seed homology to human miRNA as a genomic resource which can facilitate further investigations to understand miRNA mRNA gene regulatory networks in zebrafish which will have implications in understanding the function of human homologs. Overall design: Known miRNA profiling novel miRNA discovery and identification of tissue associated and sex associated miRNAs from sRNA deep sequencing data of different tissues and embryo of zebrafish in triplicate was carried out using the Illumina HiSeq 2000 platform.,,pubmed:26574018,,Ovary Replicate 3 sRNAseq,GSM1376640,,source name:Ovary|gender:female|tissue:Ovary|genetic background:Wild type Singapore strain,Ovary Replicate 3 sRNAseq,Illumina Casava 1.8.2 software used for basecalling. The sequenced reads were first subjected to adapter removal through the cutadapt program Martin 2011. The trimmed reads were then collapsed to remove redundancy and to obtain a unique sequence fasta file through the mapper module of miRDeep2 package Friedländer et al. 2012. The unique reads fasta file was then put through an elimination pipeline module Vaz et al. 2010 comprising of a series of sequence similarity searches with the annotated databases. At each step the reads were matched to an annotated database with a maximum of two mismatches. The matched reads were removed and the unmatched ones were further matched to another annotated database finally culminating into an un annotated pool of reads that served as a source of novel miRNAs and novel sRNAs. The known miRNA expression profile was generated by using the quantifier module of the miRDeep2 package that gives the read counts for the known miRNAs. The quantifier.pl command line used: perl quantifier.pl p m r t Zebrafish The raw reads expression profile generated for all the replicates of the samples were subjected to Trimmed Mean of M values TMM normalisation using the Bioconductor package edgeR Robinson et al. 2010. Genome build: ZV9 Supplementary files format and content: 1. 'Danio rerio known miRNA Rel19 profile Raw.txt': Tab delimited text file that includes the raw counts for the known mature miRNA miRBase Release 19. Supplementary files format and content: 2. 'Danio rerio known miRNA Rel19 profile Normalised.txt': Tab delimited text file that includes the Trimmed Mean of M values TMM normalised counts for the known mature miRNA miRBase Release 19. One of the replicate of Heart MZH008 failed to cluster with the other two replicates on basis of its known miRNA expression profile and hence was not used for further analysis.,Ovary,N/A,Total RNA were extracted using mirVana™ miRNA Isolation Kit AM1560 Life Technologies. Tissues were homogenised in 1.5 ml microfuge tube containing Lysis/Binding buffer provided in the mirVana™ miRNA Isolation using a hand held pestle. Total RNA containing small RNA were purified following the manufacturer protocol. Small RNA libraries were prepared for sequencing using TruSeq Small RNA Sample Preparation Kit RS 200 0012 Illumina Inc.. Libraries were prepared according to manufacturer instructions. Briefly 1µg of good quality Total RNA per sample was used as starting material. 5’ and 3’ RNA adapters were ligated to each RNA molecule before reverse transcription to create single stranded cDNA. The cDNA was then amplified with PCR using a common primer and a primer containing a unique index sequence. The resulting PCR reactions were electrophoresed on 6% Novex TBE PAGE Gel Life Technologies and bands corresponding to adapter ligated constructs derived from 22 30 nucleotides small RNA fragments were excised from the gel. The small RNA were purified from the excised gel and validated on High Sensitivity DNA chips on a Bioanalyser Agilent Technologies before sequencing.,Fishes were purchased from a local supplier and acclimatized before tissue extraction.,gender:Female|tissue:Ovary|genetic background:Wild type Singapore strain,GSM1376640,GSM1376640: Ovary Replicate 3 sRNAseq; Danio rerio; miRNA Seq,GSM1376640,,1,Total RNA were extracted using mirVana™ miRNA Isolation Kit AM1560 Life Technologies. Tissues were homogenised in 1.5 ml microfuge tube containing Lysis/Binding buffer provided in the mirVana™ miRNA Isolation using a hand held pestle. Total RNA containing small RNA were purified following the manufacturer protocol. Small RNA libraries were prepared for sequencing using TruSeq Small RNA Sample Preparation Kit RS 200 0012 Illumina Inc.. Libraries were prepared according to manufacturer instructions. Briefly 1µg of good quality Total RNA per sample was used as starting material. 5’ and 3’ RNA adapters were ligated to each RNA molecule before reverse transcription to create single stranded cDNA. The cDNA was then amplified with PCR using a common primer and a primer containing a unique index sequence. The resulting PCR reactions were electrophoresed on 6% Novex TBE PAGE Gel Life Technologies and bands corresponding to adapter ligated constructs derived from 22 30 nucleotides small RNA fragments were excised from the gel. The small RNA were purified from the excised gel and validated on High Sensitivity DNA chips on a Bioanalyser Agilent Technologies before sequencing.,GEO Accession:GSM1376640,miRNA-Seq,TRANSCRIPTOMIC,size fractionation,SINGLE,ILLUMINA,Illumina HiSeq 2000,,SRP041544,,,MZO006_GATCAG_L008_R1.fastq.gz,fastq,1411005984.0,27666784.0,GSM1376640 r1,0:51,A:326542153;C:314421825;G:411019622;T:358847379;N:175005,51,,,,326542153,314421825,411019622,358847379,175005,SRX529151,SRS598848,SRA160430,GEO,"Expression and Signaling in Mesenchymal and Hematopoietic Stem Cells, Genome and Gene Expression Data Analysis Division, Bioinformatics Institute, A*STAR, Singapore",1,0.00638,,0.00068,,0.99513,,0.75483,,51,,T,,under 1.2% mapping rate,illumina,hiseq_era,unknown,size_fractionation,trueseq,bulk,unknown,unknown,,Singapore,2014-04-29,Undetermined,Embryo,Gonad,Reproductive System 38001,SRR1265756,SRX529150,SRS598847,SRP041544,PRJNA245824,Deep sequencing of small RNA facilitates tissue and sex associated microRNA discovery in zebrafish,GSE57169,Transcriptome Analysis,The role of microRNAs in gene regulation has been well established. The extent of miRNA regulation also increases with increasing genome complexity. Though the number of genes appear to be equal between human and zebrafish substantially less microRNAs have been discovered in zebrafish compared to human Release 19. It appears that most of the miRNAs in zebrafish are yet to be discovered. We sequenced small RNAs from brain gut liver ovary testis eye heart and embryo of zebrafish. In brain gut and liver sequencing was done in male and female separately. Majority of the sequenced reads 16 62% mapped to known miRNAs with the exception of ovary 5.7% and testis 7.8%. Using the miRNA discovery tool miRDeep2 we discovered novel miRNAs from the un annotated reads that ranged from 7.6 to 23.0% with exceptions of ovary 51.4% and testis 55.2%. The prediction tool identified a total of 459 novel pre miRNAs. We compared expression of miRNAs between different tissues and between males and females to identify tissue associated and sex associated miRNAs respectively. These miRNAs could serve as putative biomarkers for these tissues. The brain and liver had highest number of tissue associated 22 and sex associated 34 miRNAs respectively. This study comprehensively identifies tissue and sex associated miRNAs in zebrafish. Further we have discovered 459 novel pre miRNAs 30% seed homology to human miRNA as a genomic resource which can facilitate further investigations to understand miRNA mRNA gene regulatory networks in zebrafish which will have implications in understanding the function of human homologs. Overall design: Known miRNA profiling novel miRNA discovery and identification of tissue associated and sex associated miRNAs from sRNA deep sequencing data of different tissues and embryo of zebrafish in triplicate was carried out using the Illumina HiSeq 2000 platform.,,pubmed:26574018,,Ovary Replicate 2 sRNAseq,GSM1376639,,source name:Ovary|gender:female|tissue:Ovary|genetic background:Wild type Singapore strain,Ovary Replicate 2 sRNAseq,Illumina Casava 1.8.2 software used for basecalling. The sequenced reads were first subjected to adapter removal through the cutadapt program Martin 2011. The trimmed reads were then collapsed to remove redundancy and to obtain a unique sequence fasta file through the mapper module of miRDeep2 package Friedländer et al. 2012. The unique reads fasta file was then put through an elimination pipeline module Vaz et al. 2010 comprising of a series of sequence similarity searches with the annotated databases. At each step the reads were matched to an annotated database with a maximum of two mismatches. The matched reads were removed and the unmatched ones were further matched to another annotated database finally culminating into an un annotated pool of reads that served as a source of novel miRNAs and novel sRNAs. The known miRNA expression profile was generated by using the quantifier module of the miRDeep2 package that gives the read counts for the known miRNAs. The quantifier.pl command line used: perl quantifier.pl p m r t Zebrafish The raw reads expression profile generated for all the replicates of the samples were subjected to Trimmed Mean of M values TMM normalisation using the Bioconductor package edgeR Robinson et al. 2010. Genome build: ZV9 Supplementary files format and content: 1. 'Danio rerio known miRNA Rel19 profile Raw.txt': Tab delimited text file that includes the raw counts for the known mature miRNA miRBase Release 19. Supplementary files format and content: 2. 'Danio rerio known miRNA Rel19 profile Normalised.txt': Tab delimited text file that includes the Trimmed Mean of M values TMM normalised counts for the known mature miRNA miRBase Release 19. One of the replicate of Heart MZH008 failed to cluster with the other two replicates on basis of its known miRNA expression profile and hence was not used for further analysis.,Ovary,N/A,Total RNA were extracted using mirVana™ miRNA Isolation Kit AM1560 Life Technologies. Tissues were homogenised in 1.5 ml microfuge tube containing Lysis/Binding buffer provided in the mirVana™ miRNA Isolation using a hand held pestle. Total RNA containing small RNA were purified following the manufacturer protocol. Small RNA libraries were prepared for sequencing using TruSeq Small RNA Sample Preparation Kit RS 200 0012 Illumina Inc.. Libraries were prepared according to manufacturer instructions. Briefly 1µg of good quality Total RNA per sample was used as starting material. 5’ and 3’ RNA adapters were ligated to each RNA molecule before reverse transcription to create single stranded cDNA. The cDNA was then amplified with PCR using a common primer and a primer containing a unique index sequence. The resulting PCR reactions were electrophoresed on 6% Novex TBE PAGE Gel Life Technologies and bands corresponding to adapter ligated constructs derived from 22 30 nucleotides small RNA fragments were excised from the gel. The small RNA were purified from the excised gel and validated on High Sensitivity DNA chips on a Bioanalyser Agilent Technologies before sequencing.,Fishes were purchased from a local supplier and acclimatized before tissue extraction.,gender:Female|tissue:Ovary|genetic background:Wild type Singapore strain,GSM1376639,GSM1376639: Ovary Replicate 2 sRNAseq; Danio rerio; miRNA Seq,GSM1376639,,1,Total RNA were extracted using mirVana™ miRNA Isolation Kit AM1560 Life Technologies. Tissues were homogenised in 1.5 ml microfuge tube containing Lysis/Binding buffer provided in the mirVana™ miRNA Isolation using a hand held pestle. Total RNA containing small RNA were purified following the manufacturer protocol. Small RNA libraries were prepared for sequencing using TruSeq Small RNA Sample Preparation Kit RS 200 0012 Illumina Inc.. Libraries were prepared according to manufacturer instructions. Briefly 1µg of good quality Total RNA per sample was used as starting material. 5’ and 3’ RNA adapters were ligated to each RNA molecule before reverse transcription to create single stranded cDNA. The cDNA was then amplified with PCR using a common primer and a primer containing a unique index sequence. The resulting PCR reactions were electrophoresed on 6% Novex TBE PAGE Gel Life Technologies and bands corresponding to adapter ligated constructs derived from 22 30 nucleotides small RNA fragments were excised from the gel. The small RNA were purified from the excised gel and validated on High Sensitivity DNA chips on a Bioanalyser Agilent Technologies before sequencing.,GEO Accession:GSM1376639,miRNA-Seq,TRANSCRIPTOMIC,size fractionation,SINGLE,ILLUMINA,Illumina HiSeq 2000,,SRP041544,,,MZO005_ACTTGA_L008_R1.fastq.gz,fastq,765419424.0,15008224.0,GSM1376639 r1,0:51,A:179455664;C:170237021;G:221342071;T:194287721;N:96947,51,,,,179455664,170237021,221342071,194287721,96947,SRX529150,SRS598847,SRA160430,GEO,"Expression and Signaling in Mesenchymal and Hematopoietic Stem Cells, Genome and Gene Expression Data Analysis Division, Bioinformatics Institute, A*STAR, Singapore",1,0.02512,,0.00355,,0.98212,,0.67744,,51,,B,,usable mapping rate,illumina,hiseq_era,unknown,size_fractionation,trueseq,bulk,unknown,unknown,,Singapore,2014-04-29,Undetermined,Embryo,Gonad,Reproductive System 38002,SRR1265755,SRX529149,SRS598846,SRP041544,PRJNA245824,Deep sequencing of small RNA facilitates tissue and sex associated microRNA discovery in zebrafish,GSE57169,Transcriptome Analysis,The role of microRNAs in gene regulation has been well established. The extent of miRNA regulation also increases with increasing genome complexity. Though the number of genes appear to be equal between human and zebrafish substantially less microRNAs have been discovered in zebrafish compared to human Release 19. It appears that most of the miRNAs in zebrafish are yet to be discovered. We sequenced small RNAs from brain gut liver ovary testis eye heart and embryo of zebrafish. In brain gut and liver sequencing was done in male and female separately. Majority of the sequenced reads 16 62% mapped to known miRNAs with the exception of ovary 5.7% and testis 7.8%. Using the miRNA discovery tool miRDeep2 we discovered novel miRNAs from the un annotated reads that ranged from 7.6 to 23.0% with exceptions of ovary 51.4% and testis 55.2%. The prediction tool identified a total of 459 novel pre miRNAs. We compared expression of miRNAs between different tissues and between males and females to identify tissue associated and sex associated miRNAs respectively. These miRNAs could serve as putative biomarkers for these tissues. The brain and liver had highest number of tissue associated 22 and sex associated 34 miRNAs respectively. This study comprehensively identifies tissue and sex associated miRNAs in zebrafish. Further we have discovered 459 novel pre miRNAs 30% seed homology to human miRNA as a genomic resource which can facilitate further investigations to understand miRNA mRNA gene regulatory networks in zebrafish which will have implications in understanding the function of human homologs. Overall design: Known miRNA profiling novel miRNA discovery and identification of tissue associated and sex associated miRNAs from sRNA deep sequencing data of different tissues and embryo of zebrafish in triplicate was carried out using the Illumina HiSeq 2000 platform.,,pubmed:26574018,,Ovary Replicate 1 sRNAseq,GSM1376638,,source name:Ovary|gender:female|tissue:Ovary|genetic background:Wild type Singapore strain,Ovary Replicate 1 sRNAseq,Illumina Casava 1.8.2 software used for basecalling. The sequenced reads were first subjected to adapter removal through the cutadapt program Martin 2011. The trimmed reads were then collapsed to remove redundancy and to obtain a unique sequence fasta file through the mapper module of miRDeep2 package Friedländer et al. 2012. The unique reads fasta file was then put through an elimination pipeline module Vaz et al. 2010 comprising of a series of sequence similarity searches with the annotated databases. At each step the reads were matched to an annotated database with a maximum of two mismatches. The matched reads were removed and the unmatched ones were further matched to another annotated database finally culminating into an un annotated pool of reads that served as a source of novel miRNAs and novel sRNAs. The known miRNA expression profile was generated by using the quantifier module of the miRDeep2 package that gives the read counts for the known miRNAs. The quantifier.pl command line used: perl quantifier.pl p m r t Zebrafish The raw reads expression profile generated for all the replicates of the samples were subjected to Trimmed Mean of M values TMM normalisation using the Bioconductor package edgeR Robinson et al. 2010. Genome build: ZV9 Supplementary files format and content: 1. 'Danio rerio known miRNA Rel19 profile Raw.txt': Tab delimited text file that includes the raw counts for the known mature miRNA miRBase Release 19. Supplementary files format and content: 2. 'Danio rerio known miRNA Rel19 profile Normalised.txt': Tab delimited text file that includes the Trimmed Mean of M values TMM normalised counts for the known mature miRNA miRBase Release 19. One of the replicate of Heart MZH008 failed to cluster with the other two replicates on basis of its known miRNA expression profile and hence was not used for further analysis.,Ovary,N/A,Total RNA were extracted using mirVana™ miRNA Isolation Kit AM1560 Life Technologies. Tissues were homogenised in 1.5 ml microfuge tube containing Lysis/Binding buffer provided in the mirVana™ miRNA Isolation using a hand held pestle. Total RNA containing small RNA were purified following the manufacturer protocol. Small RNA libraries were prepared for sequencing using TruSeq Small RNA Sample Preparation Kit RS 200 0012 Illumina Inc.. Libraries were prepared according to manufacturer instructions. Briefly 1µg of good quality Total RNA per sample was used as starting material. 5’ and 3’ RNA adapters were ligated to each RNA molecule before reverse transcription to create single stranded cDNA. The cDNA was then amplified with PCR using a common primer and a primer containing a unique index sequence. The resulting PCR reactions were electrophoresed on 6% Novex TBE PAGE Gel Life Technologies and bands corresponding to adapter ligated constructs derived from 22 30 nucleotides small RNA fragments were excised from the gel. The small RNA were purified from the excised gel and validated on High Sensitivity DNA chips on a Bioanalyser Agilent Technologies before sequencing.,Fishes were purchased from a local supplier and acclimatized before tissue extraction.,gender:Female|tissue:Ovary|genetic background:Wild type Singapore strain,GSM1376638,GSM1376638: Ovary Replicate 1 sRNAseq; Danio rerio; miRNA Seq,GSM1376638,,1,Total RNA were extracted using mirVana™ miRNA Isolation Kit AM1560 Life Technologies. Tissues were homogenised in 1.5 ml microfuge tube containing Lysis/Binding buffer provided in the mirVana™ miRNA Isolation using a hand held pestle. Total RNA containing small RNA were purified following the manufacturer protocol. Small RNA libraries were prepared for sequencing using TruSeq Small RNA Sample Preparation Kit RS 200 0012 Illumina Inc.. Libraries were prepared according to manufacturer instructions. Briefly 1µg of good quality Total RNA per sample was used as starting material. 5’ and 3’ RNA adapters were ligated to each RNA molecule before reverse transcription to create single stranded cDNA. The cDNA was then amplified with PCR using a common primer and a primer containing a unique index sequence. The resulting PCR reactions were electrophoresed on 6% Novex TBE PAGE Gel Life Technologies and bands corresponding to adapter ligated constructs derived from 22 30 nucleotides small RNA fragments were excised from the gel. The small RNA were purified from the excised gel and validated on High Sensitivity DNA chips on a Bioanalyser Agilent Technologies before sequencing.,GEO Accession:GSM1376638,miRNA-Seq,TRANSCRIPTOMIC,size fractionation,SINGLE,ILLUMINA,Illumina HiSeq 2000,,SRP041544,,,MZO004_CAGATC_L008_R1.fastq.gz,fastq,487558674.0,9559974.0,GSM1376638 r1,0:51,A:114833813;C:108951811;G:140408702;T:123302557;N:61791,51,,,,114833813,108951811,140408702,123302557,61791,SRX529149,SRS598846,SRA160430,GEO,"Expression and Signaling in Mesenchymal and Hematopoietic Stem Cells, Genome and Gene Expression Data Analysis Division, Bioinformatics Institute, A*STAR, Singapore",1,0.00298,,0.0004,,0.99644,,0.84584,,51,,T,,under 1.2% mapping rate,illumina,hiseq_era,unknown,size_fractionation,trueseq,bulk,unknown,unknown,,Singapore,2014-04-29,Undetermined,Embryo,Gonad,Reproductive System 38003,SRR1265754,SRX529148,SRS598845,SRP041544,PRJNA245824,Deep sequencing of small RNA facilitates tissue and sex associated microRNA discovery in zebrafish,GSE57169,Transcriptome Analysis,The role of microRNAs in gene regulation has been well established. The extent of miRNA regulation also increases with increasing genome complexity. Though the number of genes appear to be equal between human and zebrafish substantially less microRNAs have been discovered in zebrafish compared to human Release 19. It appears that most of the miRNAs in zebrafish are yet to be discovered. We sequenced small RNAs from brain gut liver ovary testis eye heart and embryo of zebrafish. In brain gut and liver sequencing was done in male and female separately. Majority of the sequenced reads 16 62% mapped to known miRNAs with the exception of ovary 5.7% and testis 7.8%. Using the miRNA discovery tool miRDeep2 we discovered novel miRNAs from the un annotated reads that ranged from 7.6 to 23.0% with exceptions of ovary 51.4% and testis 55.2%. The prediction tool identified a total of 459 novel pre miRNAs. We compared expression of miRNAs between different tissues and between males and females to identify tissue associated and sex associated miRNAs respectively. These miRNAs could serve as putative biomarkers for these tissues. The brain and liver had highest number of tissue associated 22 and sex associated 34 miRNAs respectively. This study comprehensively identifies tissue and sex associated miRNAs in zebrafish. Further we have discovered 459 novel pre miRNAs 30% seed homology to human miRNA as a genomic resource which can facilitate further investigations to understand miRNA mRNA gene regulatory networks in zebrafish which will have implications in understanding the function of human homologs. Overall design: Known miRNA profiling novel miRNA discovery and identification of tissue associated and sex associated miRNAs from sRNA deep sequencing data of different tissues and embryo of zebrafish in triplicate was carried out using the Illumina HiSeq 2000 platform.,,pubmed:26574018,,Female Liver Replicate 3 sRNAseq,GSM1376637,,source name:Female Liver|gender:female|tissue:Liver|genetic background:Wild type Singapore strain,Female Liver Replicate 3 sRNAseq,Illumina Casava 1.8.2 software used for basecalling. The sequenced reads were first subjected to adapter removal through the cutadapt program Martin 2011. The trimmed reads were then collapsed to remove redundancy and to obtain a unique sequence fasta file through the mapper module of miRDeep2 package Friedländer et al. 2012. The unique reads fasta file was then put through an elimination pipeline module Vaz et al. 2010 comprising of a series of sequence similarity searches with the annotated databases. At each step the reads were matched to an annotated database with a maximum of two mismatches. The matched reads were removed and the unmatched ones were further matched to another annotated database finally culminating into an un annotated pool of reads that served as a source of novel miRNAs and novel sRNAs. The known miRNA expression profile was generated by using the quantifier module of the miRDeep2 package that gives the read counts for the known miRNAs. The quantifier.pl command line used: perl quantifier.pl p m r t Zebrafish The raw reads expression profile generated for all the replicates of the samples were subjected to Trimmed Mean of M values TMM normalisation using the Bioconductor package edgeR Robinson et al. 2010. Genome build: ZV9 Supplementary files format and content: 1. 'Danio rerio known miRNA Rel19 profile Raw.txt': Tab delimited text file that includes the raw counts for the known mature miRNA miRBase Release 19. Supplementary files format and content: 2. 'Danio rerio known miRNA Rel19 profile Normalised.txt': Tab delimited text file that includes the Trimmed Mean of M values TMM normalised counts for the known mature miRNA miRBase Release 19. One of the replicate of Heart MZH008 failed to cluster with the other two replicates on basis of its known miRNA expression profile and hence was not used for further analysis.,Female Liver,N/A,Total RNA were extracted using mirVana™ miRNA Isolation Kit AM1560 Life Technologies. Tissues were homogenised in 1.5 ml microfuge tube containing Lysis/Binding buffer provided in the mirVana™ miRNA Isolation using a hand held pestle. Total RNA containing small RNA were purified following the manufacturer protocol. Small RNA libraries were prepared for sequencing using TruSeq Small RNA Sample Preparation Kit RS 200 0012 Illumina Inc.. Libraries were prepared according to manufacturer instructions. Briefly 1µg of good quality Total RNA per sample was used as starting material. 5’ and 3’ RNA adapters were ligated to each RNA molecule before reverse transcription to create single stranded cDNA. The cDNA was then amplified with PCR using a common primer and a primer containing a unique index sequence. The resulting PCR reactions were electrophoresed on 6% Novex TBE PAGE Gel Life Technologies and bands corresponding to adapter ligated constructs derived from 22 30 nucleotides small RNA fragments were excised from the gel. The small RNA were purified from the excised gel and validated on High Sensitivity DNA chips on a Bioanalyser Agilent Technologies before sequencing.,Fishes were purchased from a local supplier and acclimatized before tissue extraction.,gender:Female|tissue:Liver|genetic background:Wild type Singapore strain,GSM1376637,GSM1376637: Female Liver Replicate 3 sRNAseq; Danio rerio; miRNA Seq,GSM1376637,,1,Total RNA were extracted using mirVana™ miRNA Isolation Kit AM1560 Life Technologies. Tissues were homogenised in 1.5 ml microfuge tube containing Lysis/Binding buffer provided in the mirVana™ miRNA Isolation using a hand held pestle. Total RNA containing small RNA were purified following the manufacturer protocol. Small RNA libraries were prepared for sequencing using TruSeq Small RNA Sample Preparation Kit RS 200 0012 Illumina Inc.. Libraries were prepared according to manufacturer instructions. Briefly 1µg of good quality Total RNA per sample was used as starting material. 5’ and 3’ RNA adapters were ligated to each RNA molecule before reverse transcription to create single stranded cDNA. The cDNA was then amplified with PCR using a common primer and a primer containing a unique index sequence. The resulting PCR reactions were electrophoresed on 6% Novex TBE PAGE Gel Life Technologies and bands corresponding to adapter ligated constructs derived from 22 30 nucleotides small RNA fragments were excised from the gel. The small RNA were purified from the excised gel and validated on High Sensitivity DNA chips on a Bioanalyser Agilent Technologies before sequencing.,GEO Accession:GSM1376637,miRNA-Seq,TRANSCRIPTOMIC,size fractionation,SINGLE,ILLUMINA,Illumina HiSeq 2000,,SRP041544,,,MZL012_GCCAAT_L008_R1.fastq.gz,fastq,105717543.0,2072893.0,GSM1376637 r1,0:51,A:22408978;C:25732405;G:31681641;T:25880225;N:14294,51,,,,22408978,25732405,31681641,25880225,14294,SRX529148,SRS598845,SRA160430,GEO,"Expression and Signaling in Mesenchymal and Hematopoietic Stem Cells, Genome and Gene Expression Data Analysis Division, Bioinformatics Institute, A*STAR, Singapore",1,0.05572,,0.0017,,0.99691,,0.56539,,51,,B,,usable mapping rate,illumina,hiseq_era,unknown,size_fractionation,trueseq,bulk,unknown,unknown,,Singapore,2014-04-29,Undetermined,Embryo,Liver,Liver and Biliary System 38004,SRR1265753,SRX529147,SRS598844,SRP041544,PRJNA245824,Deep sequencing of small RNA facilitates tissue and sex associated microRNA discovery in zebrafish,GSE57169,Transcriptome Analysis,The role of microRNAs in gene regulation has been well established. The extent of miRNA regulation also increases with increasing genome complexity. Though the number of genes appear to be equal between human and zebrafish substantially less microRNAs have been discovered in zebrafish compared to human Release 19. It appears that most of the miRNAs in zebrafish are yet to be discovered. We sequenced small RNAs from brain gut liver ovary testis eye heart and embryo of zebrafish. In brain gut and liver sequencing was done in male and female separately. Majority of the sequenced reads 16 62% mapped to known miRNAs with the exception of ovary 5.7% and testis 7.8%. Using the miRNA discovery tool miRDeep2 we discovered novel miRNAs from the un annotated reads that ranged from 7.6 to 23.0% with exceptions of ovary 51.4% and testis 55.2%. The prediction tool identified a total of 459 novel pre miRNAs. We compared expression of miRNAs between different tissues and between males and females to identify tissue associated and sex associated miRNAs respectively. These miRNAs could serve as putative biomarkers for these tissues. The brain and liver had highest number of tissue associated 22 and sex associated 34 miRNAs respectively. This study comprehensively identifies tissue and sex associated miRNAs in zebrafish. Further we have discovered 459 novel pre miRNAs 30% seed homology to human miRNA as a genomic resource which can facilitate further investigations to understand miRNA mRNA gene regulatory networks in zebrafish which will have implications in understanding the function of human homologs. Overall design: Known miRNA profiling novel miRNA discovery and identification of tissue associated and sex associated miRNAs from sRNA deep sequencing data of different tissues and embryo of zebrafish in triplicate was carried out using the Illumina HiSeq 2000 platform.,,pubmed:26574018,,Female Liver Replicate 2 sRNAseq,GSM1376636,,source name:Female Liver|gender:female|tissue:Liver|genetic background:Wild type Singapore strain,Female Liver Replicate 2 sRNAseq,Illumina Casava 1.8.2 software used for basecalling. The sequenced reads were first subjected to adapter removal through the cutadapt program Martin 2011. The trimmed reads were then collapsed to remove redundancy and to obtain a unique sequence fasta file through the mapper module of miRDeep2 package Friedländer et al. 2012. The unique reads fasta file was then put through an elimination pipeline module Vaz et al. 2010 comprising of a series of sequence similarity searches with the annotated databases. At each step the reads were matched to an annotated database with a maximum of two mismatches. The matched reads were removed and the unmatched ones were further matched to another annotated database finally culminating into an un annotated pool of reads that served as a source of novel miRNAs and novel sRNAs. The known miRNA expression profile was generated by using the quantifier module of the miRDeep2 package that gives the read counts for the known miRNAs. The quantifier.pl command line used: perl quantifier.pl p m r t Zebrafish The raw reads expression profile generated for all the replicates of the samples were subjected to Trimmed Mean of M values TMM normalisation using the Bioconductor package edgeR Robinson et al. 2010. Genome build: ZV9 Supplementary files format and content: 1. 'Danio rerio known miRNA Rel19 profile Raw.txt': Tab delimited text file that includes the raw counts for the known mature miRNA miRBase Release 19. Supplementary files format and content: 2. 'Danio rerio known miRNA Rel19 profile Normalised.txt': Tab delimited text file that includes the Trimmed Mean of M values TMM normalised counts for the known mature miRNA miRBase Release 19. One of the replicate of Heart MZH008 failed to cluster with the other two replicates on basis of its known miRNA expression profile and hence was not used for further analysis.,Female Liver,N/A,Total RNA were extracted using mirVana™ miRNA Isolation Kit AM1560 Life Technologies. Tissues were homogenised in 1.5 ml microfuge tube containing Lysis/Binding buffer provided in the mirVana™ miRNA Isolation using a hand held pestle. Total RNA containing small RNA were purified following the manufacturer protocol. Small RNA libraries were prepared for sequencing using TruSeq Small RNA Sample Preparation Kit RS 200 0012 Illumina Inc.. Libraries were prepared according to manufacturer instructions. Briefly 1µg of good quality Total RNA per sample was used as starting material. 5’ and 3’ RNA adapters were ligated to each RNA molecule before reverse transcription to create single stranded cDNA. The cDNA was then amplified with PCR using a common primer and a primer containing a unique index sequence. The resulting PCR reactions were electrophoresed on 6% Novex TBE PAGE Gel Life Technologies and bands corresponding to adapter ligated constructs derived from 22 30 nucleotides small RNA fragments were excised from the gel. The small RNA were purified from the excised gel and validated on High Sensitivity DNA chips on a Bioanalyser Agilent Technologies before sequencing.,Fishes were purchased from a local supplier and acclimatized before tissue extraction.,gender:Female|tissue:Liver|genetic background:Wild type Singapore strain,GSM1376636,GSM1376636: Female Liver Replicate 2 sRNAseq; Danio rerio; miRNA Seq,GSM1376636,,1,Total RNA were extracted using mirVana™ miRNA Isolation Kit AM1560 Life Technologies. Tissues were homogenised in 1.5 ml microfuge tube containing Lysis/Binding buffer provided in the mirVana™ miRNA Isolation using a hand held pestle. Total RNA containing small RNA were purified following the manufacturer protocol. Small RNA libraries were prepared for sequencing using TruSeq Small RNA Sample Preparation Kit RS 200 0012 Illumina Inc.. Libraries were prepared according to manufacturer instructions. Briefly 1µg of good quality Total RNA per sample was used as starting material. 5’ and 3’ RNA adapters were ligated to each RNA molecule before reverse transcription to create single stranded cDNA. The cDNA was then amplified with PCR using a common primer and a primer containing a unique index sequence. The resulting PCR reactions were electrophoresed on 6% Novex TBE PAGE Gel Life Technologies and bands corresponding to adapter ligated constructs derived from 22 30 nucleotides small RNA fragments were excised from the gel. The small RNA were purified from the excised gel and validated on High Sensitivity DNA chips on a Bioanalyser Agilent Technologies before sequencing.,GEO Accession:GSM1376636,miRNA-Seq,TRANSCRIPTOMIC,size fractionation,SINGLE,ILLUMINA,Illumina HiSeq 2000,,SRP041544,,,MZL011_ACAGTG_L008_R1.fastq.gz,fastq,484614546.0,9502246.0,GSM1376636 r1,0:51,A:98373224;C:113894197;G:148444486;T:123841427;N:61212,51,,,,98373224,113894197,148444486,123841427,61212,SRX529147,SRS598844,SRA160430,GEO,"Expression and Signaling in Mesenchymal and Hematopoietic Stem Cells, Genome and Gene Expression Data Analysis Division, Bioinformatics Institute, A*STAR, Singapore",1,0.01517,,0.00112,,0.9964,,0.61558,,51,,B,,usable mapping rate,illumina,hiseq_era,unknown,size_fractionation,trueseq,bulk,unknown,unknown,,Singapore,2014-04-29,Undetermined,Embryo,Liver,Liver and Biliary System 38005,SRR1265752,SRX529146,SRS598843,SRP041544,PRJNA245824,Deep sequencing of small RNA facilitates tissue and sex associated microRNA discovery in zebrafish,GSE57169,Transcriptome Analysis,The role of microRNAs in gene regulation has been well established. The extent of miRNA regulation also increases with increasing genome complexity. Though the number of genes appear to be equal between human and zebrafish substantially less microRNAs have been discovered in zebrafish compared to human Release 19. It appears that most of the miRNAs in zebrafish are yet to be discovered. We sequenced small RNAs from brain gut liver ovary testis eye heart and embryo of zebrafish. In brain gut and liver sequencing was done in male and female separately. Majority of the sequenced reads 16 62% mapped to known miRNAs with the exception of ovary 5.7% and testis 7.8%. Using the miRNA discovery tool miRDeep2 we discovered novel miRNAs from the un annotated reads that ranged from 7.6 to 23.0% with exceptions of ovary 51.4% and testis 55.2%. The prediction tool identified a total of 459 novel pre miRNAs. We compared expression of miRNAs between different tissues and between males and females to identify tissue associated and sex associated miRNAs respectively. These miRNAs could serve as putative biomarkers for these tissues. The brain and liver had highest number of tissue associated 22 and sex associated 34 miRNAs respectively. This study comprehensively identifies tissue and sex associated miRNAs in zebrafish. Further we have discovered 459 novel pre miRNAs 30% seed homology to human miRNA as a genomic resource which can facilitate further investigations to understand miRNA mRNA gene regulatory networks in zebrafish which will have implications in understanding the function of human homologs. Overall design: Known miRNA profiling novel miRNA discovery and identification of tissue associated and sex associated miRNAs from sRNA deep sequencing data of different tissues and embryo of zebrafish in triplicate was carried out using the Illumina HiSeq 2000 platform.,,pubmed:26574018,,Female Liver Replicate 1 sRNAseq,GSM1376635,,source name:Female Liver|gender:female|tissue:Liver|genetic background:Wild type Singapore strain,Female Liver Replicate 1 sRNAseq,Illumina Casava 1.8.2 software used for basecalling. The sequenced reads were first subjected to adapter removal through the cutadapt program Martin 2011. The trimmed reads were then collapsed to remove redundancy and to obtain a unique sequence fasta file through the mapper module of miRDeep2 package Friedländer et al. 2012. The unique reads fasta file was then put through an elimination pipeline module Vaz et al. 2010 comprising of a series of sequence similarity searches with the annotated databases. At each step the reads were matched to an annotated database with a maximum of two mismatches. The matched reads were removed and the unmatched ones were further matched to another annotated database finally culminating into an un annotated pool of reads that served as a source of novel miRNAs and novel sRNAs. The known miRNA expression profile was generated by using the quantifier module of the miRDeep2 package that gives the read counts for the known miRNAs. The quantifier.pl command line used: perl quantifier.pl p m r t Zebrafish The raw reads expression profile generated for all the replicates of the samples were subjected to Trimmed Mean of M values TMM normalisation using the Bioconductor package edgeR Robinson et al. 2010. Genome build: ZV9 Supplementary files format and content: 1. 'Danio rerio known miRNA Rel19 profile Raw.txt': Tab delimited text file that includes the raw counts for the known mature miRNA miRBase Release 19. Supplementary files format and content: 2. 'Danio rerio known miRNA Rel19 profile Normalised.txt': Tab delimited text file that includes the Trimmed Mean of M values TMM normalised counts for the known mature miRNA miRBase Release 19. One of the replicate of Heart MZH008 failed to cluster with the other two replicates on basis of its known miRNA expression profile and hence was not used for further analysis.,Female Liver,N/A,Total RNA were extracted using mirVana™ miRNA Isolation Kit AM1560 Life Technologies. Tissues were homogenised in 1.5 ml microfuge tube containing Lysis/Binding buffer provided in the mirVana™ miRNA Isolation using a hand held pestle. Total RNA containing small RNA were purified following the manufacturer protocol. Small RNA libraries were prepared for sequencing using TruSeq Small RNA Sample Preparation Kit RS 200 0012 Illumina Inc.. Libraries were prepared according to manufacturer instructions. Briefly 1µg of good quality Total RNA per sample was used as starting material. 5’ and 3’ RNA adapters were ligated to each RNA molecule before reverse transcription to create single stranded cDNA. The cDNA was then amplified with PCR using a common primer and a primer containing a unique index sequence. The resulting PCR reactions were electrophoresed on 6% Novex TBE PAGE Gel Life Technologies and bands corresponding to adapter ligated constructs derived from 22 30 nucleotides small RNA fragments were excised from the gel. The small RNA were purified from the excised gel and validated on High Sensitivity DNA chips on a Bioanalyser Agilent Technologies before sequencing.,Fishes were purchased from a local supplier and acclimatized before tissue extraction.,gender:Female|tissue:Liver|genetic background:Wild type Singapore strain,GSM1376635,GSM1376635: Female Liver Replicate 1 sRNAseq; Danio rerio; miRNA Seq,GSM1376635,,1,Total RNA were extracted using mirVana™ miRNA Isolation Kit AM1560 Life Technologies. Tissues were homogenised in 1.5 ml microfuge tube containing Lysis/Binding buffer provided in the mirVana™ miRNA Isolation using a hand held pestle. Total RNA containing small RNA were purified following the manufacturer protocol. Small RNA libraries were prepared for sequencing using TruSeq Small RNA Sample Preparation Kit RS 200 0012 Illumina Inc.. Libraries were prepared according to manufacturer instructions. Briefly 1µg of good quality Total RNA per sample was used as starting material. 5’ and 3’ RNA adapters were ligated to each RNA molecule before reverse transcription to create single stranded cDNA. The cDNA was then amplified with PCR using a common primer and a primer containing a unique index sequence. The resulting PCR reactions were electrophoresed on 6% Novex TBE PAGE Gel Life Technologies and bands corresponding to adapter ligated constructs derived from 22 30 nucleotides small RNA fragments were excised from the gel. The small RNA were purified from the excised gel and validated on High Sensitivity DNA chips on a Bioanalyser Agilent Technologies before sequencing.,GEO Accession:GSM1376635,miRNA-Seq,TRANSCRIPTOMIC,size fractionation,SINGLE,ILLUMINA,Illumina HiSeq 2000,,SRP041544,,,MZL010_TGACCA_L008_R1.fastq.gz,fastq,304949706.0,5979406.0,GSM1376635 r1,0:51,A:62732698;C:71083849;G:92267430;T:78825237;N:40492,51,,,,62732698,71083849,92267430,78825237,40492,SRX529146,SRS598843,SRA160430,GEO,"Expression and Signaling in Mesenchymal and Hematopoietic Stem Cells, Genome and Gene Expression Data Analysis Division, Bioinformatics Institute, A*STAR, Singapore",1,0.01218,,0.001,,0.99709,,0.55264,,51,,B,,usable mapping rate,illumina,hiseq_era,unknown,size_fractionation,trueseq,bulk,unknown,unknown,,Singapore,2014-04-29,Undetermined,Embryo,Liver,Liver and Biliary System 38006,SRR1265751,SRX529145,SRS598842,SRP041544,PRJNA245824,Deep sequencing of small RNA facilitates tissue and sex associated microRNA discovery in zebrafish,GSE57169,Transcriptome Analysis,The role of microRNAs in gene regulation has been well established. The extent of miRNA regulation also increases with increasing genome complexity. Though the number of genes appear to be equal between human and zebrafish substantially less microRNAs have been discovered in zebrafish compared to human Release 19. It appears that most of the miRNAs in zebrafish are yet to be discovered. We sequenced small RNAs from brain gut liver ovary testis eye heart and embryo of zebrafish. In brain gut and liver sequencing was done in male and female separately. Majority of the sequenced reads 16 62% mapped to known miRNAs with the exception of ovary 5.7% and testis 7.8%. Using the miRNA discovery tool miRDeep2 we discovered novel miRNAs from the un annotated reads that ranged from 7.6 to 23.0% with exceptions of ovary 51.4% and testis 55.2%. The prediction tool identified a total of 459 novel pre miRNAs. We compared expression of miRNAs between different tissues and between males and females to identify tissue associated and sex associated miRNAs respectively. These miRNAs could serve as putative biomarkers for these tissues. The brain and liver had highest number of tissue associated 22 and sex associated 34 miRNAs respectively. This study comprehensively identifies tissue and sex associated miRNAs in zebrafish. Further we have discovered 459 novel pre miRNAs 30% seed homology to human miRNA as a genomic resource which can facilitate further investigations to understand miRNA mRNA gene regulatory networks in zebrafish which will have implications in understanding the function of human homologs. Overall design: Known miRNA profiling novel miRNA discovery and identification of tissue associated and sex associated miRNAs from sRNA deep sequencing data of different tissues and embryo of zebrafish in triplicate was carried out using the Illumina HiSeq 2000 platform.,,pubmed:26574018,,Male Liver Replicate 3 sRNAseq,GSM1376634,,source name:Male Liver|gender:male|tissue:Liver|genetic background:Wild type Singapore strain,Male Liver Replicate 3 sRNAseq,Illumina Casava 1.8.2 software used for basecalling. The sequenced reads were first subjected to adapter removal through the cutadapt program Martin 2011. The trimmed reads were then collapsed to remove redundancy and to obtain a unique sequence fasta file through the mapper module of miRDeep2 package Friedländer et al. 2012. The unique reads fasta file was then put through an elimination pipeline module Vaz et al. 2010 comprising of a series of sequence similarity searches with the annotated databases. At each step the reads were matched to an annotated database with a maximum of two mismatches. The matched reads were removed and the unmatched ones were further matched to another annotated database finally culminating into an un annotated pool of reads that served as a source of novel miRNAs and novel sRNAs. The known miRNA expression profile was generated by using the quantifier module of the miRDeep2 package that gives the read counts for the known miRNAs. The quantifier.pl command line used: perl quantifier.pl p m r t Zebrafish The raw reads expression profile generated for all the replicates of the samples were subjected to Trimmed Mean of M values TMM normalisation using the Bioconductor package edgeR Robinson et al. 2010. Genome build: ZV9 Supplementary files format and content: 1. 'Danio rerio known miRNA Rel19 profile Raw.txt': Tab delimited text file that includes the raw counts for the known mature miRNA miRBase Release 19. Supplementary files format and content: 2. 'Danio rerio known miRNA Rel19 profile Normalised.txt': Tab delimited text file that includes the Trimmed Mean of M values TMM normalised counts for the known mature miRNA miRBase Release 19. One of the replicate of Heart MZH008 failed to cluster with the other two replicates on basis of its known miRNA expression profile and hence was not used for further analysis.,Male Liver,N/A,Total RNA were extracted using mirVana™ miRNA Isolation Kit AM1560 Life Technologies. Tissues were homogenised in 1.5 ml microfuge tube containing Lysis/Binding buffer provided in the mirVana™ miRNA Isolation using a hand held pestle. Total RNA containing small RNA were purified following the manufacturer protocol. Small RNA libraries were prepared for sequencing using TruSeq Small RNA Sample Preparation Kit RS 200 0012 Illumina Inc.. Libraries were prepared according to manufacturer instructions. Briefly 1µg of good quality Total RNA per sample was used as starting material. 5’ and 3’ RNA adapters were ligated to each RNA molecule before reverse transcription to create single stranded cDNA. The cDNA was then amplified with PCR using a common primer and a primer containing a unique index sequence. The resulting PCR reactions were electrophoresed on 6% Novex TBE PAGE Gel Life Technologies and bands corresponding to adapter ligated constructs derived from 22 30 nucleotides small RNA fragments were excised from the gel. The small RNA were purified from the excised gel and validated on High Sensitivity DNA chips on a Bioanalyser Agilent Technologies before sequencing.,Fishes were purchased from a local supplier and acclimatized before tissue extraction.,gender:Male|tissue:Liver|genetic background:Wild type Singapore strain,GSM1376634,GSM1376634: Male Liver Replicate 3 sRNAseq; Danio rerio; miRNA Seq,GSM1376634,,1,Total RNA were extracted using mirVana™ miRNA Isolation Kit AM1560 Life Technologies. Tissues were homogenised in 1.5 ml microfuge tube containing Lysis/Binding buffer provided in the mirVana™ miRNA Isolation using a hand held pestle. Total RNA containing small RNA were purified following the manufacturer protocol. Small RNA libraries were prepared for sequencing using TruSeq Small RNA Sample Preparation Kit RS 200 0012 Illumina Inc.. Libraries were prepared according to manufacturer instructions. Briefly 1µg of good quality Total RNA per sample was used as starting material. 5’ and 3’ RNA adapters were ligated to each RNA molecule before reverse transcription to create single stranded cDNA. The cDNA was then amplified with PCR using a common primer and a primer containing a unique index sequence. The resulting PCR reactions were electrophoresed on 6% Novex TBE PAGE Gel Life Technologies and bands corresponding to adapter ligated constructs derived from 22 30 nucleotides small RNA fragments were excised from the gel. The small RNA were purified from the excised gel and validated on High Sensitivity DNA chips on a Bioanalyser Agilent Technologies before sequencing.,GEO Accession:GSM1376634,miRNA-Seq,TRANSCRIPTOMIC,size fractionation,SINGLE,ILLUMINA,Illumina HiSeq 2000,,SRP041544,,,MZL009_GATCAG_L007_R1.fastq.gz,fastq,287383266.0,5634966.0,GSM1376634 r1,0:51,A:54829818;C:73200212;G:89994996;T:69332773;N:25467,51,,,,54829818,73200212,89994996,69332773,25467,SRX529145,SRS598842,SRA160430,GEO,"Expression and Signaling in Mesenchymal and Hematopoietic Stem Cells, Genome and Gene Expression Data Analysis Division, Bioinformatics Institute, A*STAR, Singapore",1,0.00273,,0.00026,,0.99791,,0.69537,,51,,T,,under 1.2% mapping rate,illumina,hiseq_era,unknown,size_fractionation,trueseq,bulk,unknown,unknown,,Singapore,2014-04-29,Undetermined,Embryo,Liver,Liver and Biliary System 38007,SRR1265750,SRX529144,SRS598841,SRP041544,PRJNA245824,Deep sequencing of small RNA facilitates tissue and sex associated microRNA discovery in zebrafish,GSE57169,Transcriptome Analysis,The role of microRNAs in gene regulation has been well established. The extent of miRNA regulation also increases with increasing genome complexity. Though the number of genes appear to be equal between human and zebrafish substantially less microRNAs have been discovered in zebrafish compared to human Release 19. It appears that most of the miRNAs in zebrafish are yet to be discovered. We sequenced small RNAs from brain gut liver ovary testis eye heart and embryo of zebrafish. In brain gut and liver sequencing was done in male and female separately. Majority of the sequenced reads 16 62% mapped to known miRNAs with the exception of ovary 5.7% and testis 7.8%. Using the miRNA discovery tool miRDeep2 we discovered novel miRNAs from the un annotated reads that ranged from 7.6 to 23.0% with exceptions of ovary 51.4% and testis 55.2%. The prediction tool identified a total of 459 novel pre miRNAs. We compared expression of miRNAs between different tissues and between males and females to identify tissue associated and sex associated miRNAs respectively. These miRNAs could serve as putative biomarkers for these tissues. The brain and liver had highest number of tissue associated 22 and sex associated 34 miRNAs respectively. This study comprehensively identifies tissue and sex associated miRNAs in zebrafish. Further we have discovered 459 novel pre miRNAs 30% seed homology to human miRNA as a genomic resource which can facilitate further investigations to understand miRNA mRNA gene regulatory networks in zebrafish which will have implications in understanding the function of human homologs. Overall design: Known miRNA profiling novel miRNA discovery and identification of tissue associated and sex associated miRNAs from sRNA deep sequencing data of different tissues and embryo of zebrafish in triplicate was carried out using the Illumina HiSeq 2000 platform.,,pubmed:26574018,,Male Liver Replicate 2 sRNAseq,GSM1376633,,source name:Male Liver|gender:male|tissue:Liver|genetic background:Wild type Singapore strain,Male Liver Replicate 2 sRNAseq,Illumina Casava 1.8.2 software used for basecalling. The sequenced reads were first subjected to adapter removal through the cutadapt program Martin 2011. The trimmed reads were then collapsed to remove redundancy and to obtain a unique sequence fasta file through the mapper module of miRDeep2 package Friedländer et al. 2012. The unique reads fasta file was then put through an elimination pipeline module Vaz et al. 2010 comprising of a series of sequence similarity searches with the annotated databases. At each step the reads were matched to an annotated database with a maximum of two mismatches. The matched reads were removed and the unmatched ones were further matched to another annotated database finally culminating into an un annotated pool of reads that served as a source of novel miRNAs and novel sRNAs. The known miRNA expression profile was generated by using the quantifier module of the miRDeep2 package that gives the read counts for the known miRNAs. The quantifier.pl command line used: perl quantifier.pl p m r t Zebrafish The raw reads expression profile generated for all the replicates of the samples were subjected to Trimmed Mean of M values TMM normalisation using the Bioconductor package edgeR Robinson et al. 2010. Genome build: ZV9 Supplementary files format and content: 1. 'Danio rerio known miRNA Rel19 profile Raw.txt': Tab delimited text file that includes the raw counts for the known mature miRNA miRBase Release 19. Supplementary files format and content: 2. 'Danio rerio known miRNA Rel19 profile Normalised.txt': Tab delimited text file that includes the Trimmed Mean of M values TMM normalised counts for the known mature miRNA miRBase Release 19. One of the replicate of Heart MZH008 failed to cluster with the other two replicates on basis of its known miRNA expression profile and hence was not used for further analysis.,Male Liver,N/A,Total RNA were extracted using mirVana™ miRNA Isolation Kit AM1560 Life Technologies. Tissues were homogenised in 1.5 ml microfuge tube containing Lysis/Binding buffer provided in the mirVana™ miRNA Isolation using a hand held pestle. Total RNA containing small RNA were purified following the manufacturer protocol. Small RNA libraries were prepared for sequencing using TruSeq Small RNA Sample Preparation Kit RS 200 0012 Illumina Inc.. Libraries were prepared according to manufacturer instructions. Briefly 1µg of good quality Total RNA per sample was used as starting material. 5’ and 3’ RNA adapters were ligated to each RNA molecule before reverse transcription to create single stranded cDNA. The cDNA was then amplified with PCR using a common primer and a primer containing a unique index sequence. The resulting PCR reactions were electrophoresed on 6% Novex TBE PAGE Gel Life Technologies and bands corresponding to adapter ligated constructs derived from 22 30 nucleotides small RNA fragments were excised from the gel. The small RNA were purified from the excised gel and validated on High Sensitivity DNA chips on a Bioanalyser Agilent Technologies before sequencing.,Fishes were purchased from a local supplier and acclimatized before tissue extraction.,gender:Male|tissue:Liver|genetic background:Wild type Singapore strain,GSM1376633,GSM1376633: Male Liver Replicate 2 sRNAseq; Danio rerio; miRNA Seq,GSM1376633,,1,Total RNA were extracted using mirVana™ miRNA Isolation Kit AM1560 Life Technologies. Tissues were homogenised in 1.5 ml microfuge tube containing Lysis/Binding buffer provided in the mirVana™ miRNA Isolation using a hand held pestle. Total RNA containing small RNA were purified following the manufacturer protocol. Small RNA libraries were prepared for sequencing using TruSeq Small RNA Sample Preparation Kit RS 200 0012 Illumina Inc.. Libraries were prepared according to manufacturer instructions. Briefly 1µg of good quality Total RNA per sample was used as starting material. 5’ and 3’ RNA adapters were ligated to each RNA molecule before reverse transcription to create single stranded cDNA. The cDNA was then amplified with PCR using a common primer and a primer containing a unique index sequence. The resulting PCR reactions were electrophoresed on 6% Novex TBE PAGE Gel Life Technologies and bands corresponding to adapter ligated constructs derived from 22 30 nucleotides small RNA fragments were excised from the gel. The small RNA were purified from the excised gel and validated on High Sensitivity DNA chips on a Bioanalyser Agilent Technologies before sequencing.,GEO Accession:GSM1376633,miRNA-Seq,TRANSCRIPTOMIC,size fractionation,SINGLE,ILLUMINA,Illumina HiSeq 2000,,SRP041544,,,MZL008_ACTTGA_L007_R1.fastq.gz,fastq,595761753.0,11681603.0,GSM1376633 r1,0:51,A:111507488;C:155297338;G:186229891;T:142672923;N:54113,51,,,,111507488,155297338,186229891,142672923,54113,SRX529144,SRS598841,SRA160430,GEO,"Expression and Signaling in Mesenchymal and Hematopoietic Stem Cells, Genome and Gene Expression Data Analysis Division, Bioinformatics Institute, A*STAR, Singapore",1,0.00597,,0.00067,,0.99679,,0.72807,,51,,T,,under 1.2% mapping rate,illumina,hiseq_era,unknown,size_fractionation,trueseq,bulk,unknown,unknown,,Singapore,2014-04-29,Undetermined,Embryo,Liver,Liver and Biliary System 38008,SRR1265749,SRX529143,SRS598840,SRP041544,PRJNA245824,Deep sequencing of small RNA facilitates tissue and sex associated microRNA discovery in zebrafish,GSE57169,Transcriptome Analysis,The role of microRNAs in gene regulation has been well established. The extent of miRNA regulation also increases with increasing genome complexity. Though the number of genes appear to be equal between human and zebrafish substantially less microRNAs have been discovered in zebrafish compared to human Release 19. It appears that most of the miRNAs in zebrafish are yet to be discovered. We sequenced small RNAs from brain gut liver ovary testis eye heart and embryo of zebrafish. In brain gut and liver sequencing was done in male and female separately. Majority of the sequenced reads 16 62% mapped to known miRNAs with the exception of ovary 5.7% and testis 7.8%. Using the miRNA discovery tool miRDeep2 we discovered novel miRNAs from the un annotated reads that ranged from 7.6 to 23.0% with exceptions of ovary 51.4% and testis 55.2%. The prediction tool identified a total of 459 novel pre miRNAs. We compared expression of miRNAs between different tissues and between males and females to identify tissue associated and sex associated miRNAs respectively. These miRNAs could serve as putative biomarkers for these tissues. The brain and liver had highest number of tissue associated 22 and sex associated 34 miRNAs respectively. This study comprehensively identifies tissue and sex associated miRNAs in zebrafish. Further we have discovered 459 novel pre miRNAs 30% seed homology to human miRNA as a genomic resource which can facilitate further investigations to understand miRNA mRNA gene regulatory networks in zebrafish which will have implications in understanding the function of human homologs. Overall design: Known miRNA profiling novel miRNA discovery and identification of tissue associated and sex associated miRNAs from sRNA deep sequencing data of different tissues and embryo of zebrafish in triplicate was carried out using the Illumina HiSeq 2000 platform.,,pubmed:26574018,,Male Liver Replicate 1 sRNAseq,GSM1376632,,source name:Male Liver|gender:male|tissue:Liver|genetic background:Wild type Singapore strain,Male Liver Replicate 1 sRNAseq,Illumina Casava 1.8.2 software used for basecalling. The sequenced reads were first subjected to adapter removal through the cutadapt program Martin 2011. The trimmed reads were then collapsed to remove redundancy and to obtain a unique sequence fasta file through the mapper module of miRDeep2 package Friedländer et al. 2012. The unique reads fasta file was then put through an elimination pipeline module Vaz et al. 2010 comprising of a series of sequence similarity searches with the annotated databases. At each step the reads were matched to an annotated database with a maximum of two mismatches. The matched reads were removed and the unmatched ones were further matched to another annotated database finally culminating into an un annotated pool of reads that served as a source of novel miRNAs and novel sRNAs. The known miRNA expression profile was generated by using the quantifier module of the miRDeep2 package that gives the read counts for the known miRNAs. The quantifier.pl command line used: perl quantifier.pl p m r t Zebrafish The raw reads expression profile generated for all the replicates of the samples were subjected to Trimmed Mean of M values TMM normalisation using the Bioconductor package edgeR Robinson et al. 2010. Genome build: ZV9 Supplementary files format and content: 1. 'Danio rerio known miRNA Rel19 profile Raw.txt': Tab delimited text file that includes the raw counts for the known mature miRNA miRBase Release 19. Supplementary files format and content: 2. 'Danio rerio known miRNA Rel19 profile Normalised.txt': Tab delimited text file that includes the Trimmed Mean of M values TMM normalised counts for the known mature miRNA miRBase Release 19. One of the replicate of Heart MZH008 failed to cluster with the other two replicates on basis of its known miRNA expression profile and hence was not used for further analysis.,Male Liver,N/A,Total RNA were extracted using mirVana™ miRNA Isolation Kit AM1560 Life Technologies. Tissues were homogenised in 1.5 ml microfuge tube containing Lysis/Binding buffer provided in the mirVana™ miRNA Isolation using a hand held pestle. Total RNA containing small RNA were purified following the manufacturer protocol. Small RNA libraries were prepared for sequencing using TruSeq Small RNA Sample Preparation Kit RS 200 0012 Illumina Inc.. Libraries were prepared according to manufacturer instructions. Briefly 1µg of good quality Total RNA per sample was used as starting material. 5’ and 3’ RNA adapters were ligated to each RNA molecule before reverse transcription to create single stranded cDNA. The cDNA was then amplified with PCR using a common primer and a primer containing a unique index sequence. The resulting PCR reactions were electrophoresed on 6% Novex TBE PAGE Gel Life Technologies and bands corresponding to adapter ligated constructs derived from 22 30 nucleotides small RNA fragments were excised from the gel. The small RNA were purified from the excised gel and validated on High Sensitivity DNA chips on a Bioanalyser Agilent Technologies before sequencing.,Fishes were purchased from a local supplier and acclimatized before tissue extraction.,gender:Male|tissue:Liver|genetic background:Wild type Singapore strain,GSM1376632,GSM1376632: Male Liver Replicate 1 sRNAseq; Danio rerio; miRNA Seq,GSM1376632,,1,Total RNA were extracted using mirVana™ miRNA Isolation Kit AM1560 Life Technologies. Tissues were homogenised in 1.5 ml microfuge tube containing Lysis/Binding buffer provided in the mirVana™ miRNA Isolation using a hand held pestle. Total RNA containing small RNA were purified following the manufacturer protocol. Small RNA libraries were prepared for sequencing using TruSeq Small RNA Sample Preparation Kit RS 200 0012 Illumina Inc.. Libraries were prepared according to manufacturer instructions. Briefly 1µg of good quality Total RNA per sample was used as starting material. 5’ and 3’ RNA adapters were ligated to each RNA molecule before reverse transcription to create single stranded cDNA. The cDNA was then amplified with PCR using a common primer and a primer containing a unique index sequence. The resulting PCR reactions were electrophoresed on 6% Novex TBE PAGE Gel Life Technologies and bands corresponding to adapter ligated constructs derived from 22 30 nucleotides small RNA fragments were excised from the gel. The small RNA were purified from the excised gel and validated on High Sensitivity DNA chips on a Bioanalyser Agilent Technologies before sequencing.,GEO Accession:GSM1376632,miRNA-Seq,TRANSCRIPTOMIC,size fractionation,SINGLE,ILLUMINA,Illumina HiSeq 2000,,SRP041544,,,MZL007_CAGATC_L007_R1.fastq.gz,fastq,976402599.0,19145149.0,GSM1376632 r1,,,,,,,,,,,,SRX529143,SRS598840,SRA160430,GEO,"Expression and Signaling in Mesenchymal and Hematopoietic Stem Cells, Genome and Gene Expression Data Analysis Division, Bioinformatics Institute, A*STAR, Singapore",1,0.00348,,0.00035,,0.99742,,0.69292,,51,,T,,under 1.2% mapping rate,illumina,hiseq_era,unknown,size_fractionation,trueseq,bulk,unknown,unknown,,Singapore,2014-04-29,Undetermined,Embryo,Liver,Liver and Biliary System 38009,SRR1265748,SRX529142,SRS598839,SRP041544,PRJNA245824,Deep sequencing of small RNA facilitates tissue and sex associated microRNA discovery in zebrafish,GSE57169,Transcriptome Analysis,The role of microRNAs in gene regulation has been well established. The extent of miRNA regulation also increases with increasing genome complexity. Though the number of genes appear to be equal between human and zebrafish substantially less microRNAs have been discovered in zebrafish compared to human Release 19. It appears that most of the miRNAs in zebrafish are yet to be discovered. We sequenced small RNAs from brain gut liver ovary testis eye heart and embryo of zebrafish. In brain gut and liver sequencing was done in male and female separately. Majority of the sequenced reads 16 62% mapped to known miRNAs with the exception of ovary 5.7% and testis 7.8%. Using the miRNA discovery tool miRDeep2 we discovered novel miRNAs from the un annotated reads that ranged from 7.6 to 23.0% with exceptions of ovary 51.4% and testis 55.2%. The prediction tool identified a total of 459 novel pre miRNAs. We compared expression of miRNAs between different tissues and between males and females to identify tissue associated and sex associated miRNAs respectively. These miRNAs could serve as putative biomarkers for these tissues. The brain and liver had highest number of tissue associated 22 and sex associated 34 miRNAs respectively. This study comprehensively identifies tissue and sex associated miRNAs in zebrafish. Further we have discovered 459 novel pre miRNAs 30% seed homology to human miRNA as a genomic resource which can facilitate further investigations to understand miRNA mRNA gene regulatory networks in zebrafish which will have implications in understanding the function of human homologs. Overall design: Known miRNA profiling novel miRNA discovery and identification of tissue associated and sex associated miRNAs from sRNA deep sequencing data of different tissues and embryo of zebrafish in triplicate was carried out using the Illumina HiSeq 2000 platform.,,pubmed:26574018,,Female Gut Replicate 3 sRNAseq,GSM1376631,,source name:Female Gut|gender:female|tissue:Gut|genetic background:Wild type Singapore strain,Female Gut Replicate 3 sRNAseq,Illumina Casava 1.8.2 software used for basecalling. The sequenced reads were first subjected to adapter removal through the cutadapt program Martin 2011. The trimmed reads were then collapsed to remove redundancy and to obtain a unique sequence fasta file through the mapper module of miRDeep2 package Friedländer et al. 2012. The unique reads fasta file was then put through an elimination pipeline module Vaz et al. 2010 comprising of a series of sequence similarity searches with the annotated databases. At each step the reads were matched to an annotated database with a maximum of two mismatches. The matched reads were removed and the unmatched ones were further matched to another annotated database finally culminating into an un annotated pool of reads that served as a source of novel miRNAs and novel sRNAs. The known miRNA expression profile was generated by using the quantifier module of the miRDeep2 package that gives the read counts for the known miRNAs. The quantifier.pl command line used: perl quantifier.pl p m r t Zebrafish The raw reads expression profile generated for all the replicates of the samples were subjected to Trimmed Mean of M values TMM normalisation using the Bioconductor package edgeR Robinson et al. 2010. Genome build: ZV9 Supplementary files format and content: 1. 'Danio rerio known miRNA Rel19 profile Raw.txt': Tab delimited text file that includes the raw counts for the known mature miRNA miRBase Release 19. Supplementary files format and content: 2. 'Danio rerio known miRNA Rel19 profile Normalised.txt': Tab delimited text file that includes the Trimmed Mean of M values TMM normalised counts for the known mature miRNA miRBase Release 19. One of the replicate of Heart MZH008 failed to cluster with the other two replicates on basis of its known miRNA expression profile and hence was not used for further analysis.,Female Gut,N/A,Total RNA were extracted using mirVana™ miRNA Isolation Kit AM1560 Life Technologies. Tissues were homogenised in 1.5 ml microfuge tube containing Lysis/Binding buffer provided in the mirVana™ miRNA Isolation using a hand held pestle. Total RNA containing small RNA were purified following the manufacturer protocol. Small RNA libraries were prepared for sequencing using TruSeq Small RNA Sample Preparation Kit RS 200 0012 Illumina Inc.. Libraries were prepared according to manufacturer instructions. Briefly 1µg of good quality Total RNA per sample was used as starting material. 5’ and 3’ RNA adapters were ligated to each RNA molecule before reverse transcription to create single stranded cDNA. The cDNA was then amplified with PCR using a common primer and a primer containing a unique index sequence. The resulting PCR reactions were electrophoresed on 6% Novex TBE PAGE Gel Life Technologies and bands corresponding to adapter ligated constructs derived from 22 30 nucleotides small RNA fragments were excised from the gel. The small RNA were purified from the excised gel and validated on High Sensitivity DNA chips on a Bioanalyser Agilent Technologies before sequencing.,Fishes were purchased from a local supplier and acclimatized before tissue extraction.,gender:Female|tissue:Gut|genetic background:Wild type Singapore strain,GSM1376631,GSM1376631: Female Gut Replicate 3 sRNAseq; Danio rerio; miRNA Seq,GSM1376631,,1,Total RNA were extracted using mirVana™ miRNA Isolation Kit AM1560 Life Technologies. Tissues were homogenised in 1.5 ml microfuge tube containing Lysis/Binding buffer provided in the mirVana™ miRNA Isolation using a hand held pestle. Total RNA containing small RNA were purified following the manufacturer protocol. Small RNA libraries were prepared for sequencing using TruSeq Small RNA Sample Preparation Kit RS 200 0012 Illumina Inc.. Libraries were prepared according to manufacturer instructions. Briefly 1µg of good quality Total RNA per sample was used as starting material. 5’ and 3’ RNA adapters were ligated to each RNA molecule before reverse transcription to create single stranded cDNA. The cDNA was then amplified with PCR using a common primer and a primer containing a unique index sequence. The resulting PCR reactions were electrophoresed on 6% Novex TBE PAGE Gel Life Technologies and bands corresponding to adapter ligated constructs derived from 22 30 nucleotides small RNA fragments were excised from the gel. The small RNA were purified from the excised gel and validated on High Sensitivity DNA chips on a Bioanalyser Agilent Technologies before sequencing.,GEO Accession:GSM1376631,miRNA-Seq,TRANSCRIPTOMIC,size fractionation,SINGLE,ILLUMINA,Illumina HiSeq 2000,,SRP041544,,,MZG012_TTAGGC_L008_R1.fastq.gz,fastq,425902173.0,8351023.0,GSM1376631 r1,0:51,A:85733692;C:98728458;G:130104130;T:111282282;N:53611,51,,,,85733692,98728458,130104130,111282282,53611,SRX529142,SRS598839,SRA160430,GEO,"Expression and Signaling in Mesenchymal and Hematopoietic Stem Cells, Genome and Gene Expression Data Analysis Division, Bioinformatics Institute, A*STAR, Singapore",1,0.00598,,0.00074,,0.99565,,0.68818,,51,,T,,under 1.2% mapping rate,illumina,hiseq_era,unknown,size_fractionation,trueseq,bulk,unknown,unknown,,Singapore,2014-04-29,Undetermined,Embryo,Gut,Digestive System 38010,SRR1265747,SRX529141,SRS598838,SRP041544,PRJNA245824,Deep sequencing of small RNA facilitates tissue and sex associated microRNA discovery in zebrafish,GSE57169,Transcriptome Analysis,The role of microRNAs in gene regulation has been well established. The extent of miRNA regulation also increases with increasing genome complexity. Though the number of genes appear to be equal between human and zebrafish substantially less microRNAs have been discovered in zebrafish compared to human Release 19. It appears that most of the miRNAs in zebrafish are yet to be discovered. We sequenced small RNAs from brain gut liver ovary testis eye heart and embryo of zebrafish. In brain gut and liver sequencing was done in male and female separately. Majority of the sequenced reads 16 62% mapped to known miRNAs with the exception of ovary 5.7% and testis 7.8%. Using the miRNA discovery tool miRDeep2 we discovered novel miRNAs from the un annotated reads that ranged from 7.6 to 23.0% with exceptions of ovary 51.4% and testis 55.2%. The prediction tool identified a total of 459 novel pre miRNAs. We compared expression of miRNAs between different tissues and between males and females to identify tissue associated and sex associated miRNAs respectively. These miRNAs could serve as putative biomarkers for these tissues. The brain and liver had highest number of tissue associated 22 and sex associated 34 miRNAs respectively. This study comprehensively identifies tissue and sex associated miRNAs in zebrafish. Further we have discovered 459 novel pre miRNAs 30% seed homology to human miRNA as a genomic resource which can facilitate further investigations to understand miRNA mRNA gene regulatory networks in zebrafish which will have implications in understanding the function of human homologs. Overall design: Known miRNA profiling novel miRNA discovery and identification of tissue associated and sex associated miRNAs from sRNA deep sequencing data of different tissues and embryo of zebrafish in triplicate was carried out using the Illumina HiSeq 2000 platform.,,pubmed:26574018,,Female Gut Replicate 2 sRNAseq,GSM1376630,,source name:Female Gut|gender:female|tissue:Gut|genetic background:Wild type Singapore strain,Female Gut Replicate 2 sRNAseq,Illumina Casava 1.8.2 software used for basecalling. The sequenced reads were first subjected to adapter removal through the cutadapt program Martin 2011. The trimmed reads were then collapsed to remove redundancy and to obtain a unique sequence fasta file through the mapper module of miRDeep2 package Friedländer et al. 2012. The unique reads fasta file was then put through an elimination pipeline module Vaz et al. 2010 comprising of a series of sequence similarity searches with the annotated databases. At each step the reads were matched to an annotated database with a maximum of two mismatches. The matched reads were removed and the unmatched ones were further matched to another annotated database finally culminating into an un annotated pool of reads that served as a source of novel miRNAs and novel sRNAs. The known miRNA expression profile was generated by using the quantifier module of the miRDeep2 package that gives the read counts for the known miRNAs. The quantifier.pl command line used: perl quantifier.pl p m r t Zebrafish The raw reads expression profile generated for all the replicates of the samples were subjected to Trimmed Mean of M values TMM normalisation using the Bioconductor package edgeR Robinson et al. 2010. Genome build: ZV9 Supplementary files format and content: 1. 'Danio rerio known miRNA Rel19 profile Raw.txt': Tab delimited text file that includes the raw counts for the known mature miRNA miRBase Release 19. Supplementary files format and content: 2. 'Danio rerio known miRNA Rel19 profile Normalised.txt': Tab delimited text file that includes the Trimmed Mean of M values TMM normalised counts for the known mature miRNA miRBase Release 19. One of the replicate of Heart MZH008 failed to cluster with the other two replicates on basis of its known miRNA expression profile and hence was not used for further analysis.,Female Gut,N/A,Total RNA were extracted using mirVana™ miRNA Isolation Kit AM1560 Life Technologies. Tissues were homogenised in 1.5 ml microfuge tube containing Lysis/Binding buffer provided in the mirVana™ miRNA Isolation using a hand held pestle. Total RNA containing small RNA were purified following the manufacturer protocol. Small RNA libraries were prepared for sequencing using TruSeq Small RNA Sample Preparation Kit RS 200 0012 Illumina Inc.. Libraries were prepared according to manufacturer instructions. Briefly 1µg of good quality Total RNA per sample was used as starting material. 5’ and 3’ RNA adapters were ligated to each RNA molecule before reverse transcription to create single stranded cDNA. The cDNA was then amplified with PCR using a common primer and a primer containing a unique index sequence. The resulting PCR reactions were electrophoresed on 6% Novex TBE PAGE Gel Life Technologies and bands corresponding to adapter ligated constructs derived from 22 30 nucleotides small RNA fragments were excised from the gel. The small RNA were purified from the excised gel and validated on High Sensitivity DNA chips on a Bioanalyser Agilent Technologies before sequencing.,Fishes were purchased from a local supplier and acclimatized before tissue extraction.,gender:Female|tissue:Gut|genetic background:Wild type Singapore strain,GSM1376630,GSM1376630: Female Gut Replicate 2 sRNAseq; Danio rerio; miRNA Seq,GSM1376630,,1,Total RNA were extracted using mirVana™ miRNA Isolation Kit AM1560 Life Technologies. Tissues were homogenised in 1.5 ml microfuge tube containing Lysis/Binding buffer provided in the mirVana™ miRNA Isolation using a hand held pestle. Total RNA containing small RNA were purified following the manufacturer protocol. Small RNA libraries were prepared for sequencing using TruSeq Small RNA Sample Preparation Kit RS 200 0012 Illumina Inc.. Libraries were prepared according to manufacturer instructions. Briefly 1µg of good quality Total RNA per sample was used as starting material. 5’ and 3’ RNA adapters were ligated to each RNA molecule before reverse transcription to create single stranded cDNA. The cDNA was then amplified with PCR using a common primer and a primer containing a unique index sequence. The resulting PCR reactions were electrophoresed on 6% Novex TBE PAGE Gel Life Technologies and bands corresponding to adapter ligated constructs derived from 22 30 nucleotides small RNA fragments were excised from the gel. The small RNA were purified from the excised gel and validated on High Sensitivity DNA chips on a Bioanalyser Agilent Technologies before sequencing.,GEO Accession:GSM1376630,miRNA-Seq,TRANSCRIPTOMIC,size fractionation,SINGLE,ILLUMINA,Illumina HiSeq 2000,,SRP041544,,,MZG011_CGATGT_L008_R1.fastq.gz,fastq,464997192.0,9117592.0,GSM1376630 r1,0:51,A:94817360;C:107530735;G:141688278;T:120903676;N:57143,51,,,,94817360,107530735,141688278,120903676,57143,SRX529141,SRS598838,SRA160430,GEO,"Expression and Signaling in Mesenchymal and Hematopoietic Stem Cells, Genome and Gene Expression Data Analysis Division, Bioinformatics Institute, A*STAR, Singapore",1,0.00297,,0.00033,,0.9975,,0.62721,,51,,T,,under 1.2% mapping rate,illumina,hiseq_era,unknown,size_fractionation,trueseq,bulk,unknown,unknown,,Singapore,2014-04-29,Undetermined,Embryo,Gut,Digestive System 38011,SRR1265746,SRX529140,SRS598837,SRP041544,PRJNA245824,Deep sequencing of small RNA facilitates tissue and sex associated microRNA discovery in zebrafish,GSE57169,Transcriptome Analysis,The role of microRNAs in gene regulation has been well established. The extent of miRNA regulation also increases with increasing genome complexity. Though the number of genes appear to be equal between human and zebrafish substantially less microRNAs have been discovered in zebrafish compared to human Release 19. It appears that most of the miRNAs in zebrafish are yet to be discovered. We sequenced small RNAs from brain gut liver ovary testis eye heart and embryo of zebrafish. In brain gut and liver sequencing was done in male and female separately. Majority of the sequenced reads 16 62% mapped to known miRNAs with the exception of ovary 5.7% and testis 7.8%. Using the miRNA discovery tool miRDeep2 we discovered novel miRNAs from the un annotated reads that ranged from 7.6 to 23.0% with exceptions of ovary 51.4% and testis 55.2%. The prediction tool identified a total of 459 novel pre miRNAs. We compared expression of miRNAs between different tissues and between males and females to identify tissue associated and sex associated miRNAs respectively. These miRNAs could serve as putative biomarkers for these tissues. The brain and liver had highest number of tissue associated 22 and sex associated 34 miRNAs respectively. This study comprehensively identifies tissue and sex associated miRNAs in zebrafish. Further we have discovered 459 novel pre miRNAs 30% seed homology to human miRNA as a genomic resource which can facilitate further investigations to understand miRNA mRNA gene regulatory networks in zebrafish which will have implications in understanding the function of human homologs. Overall design: Known miRNA profiling novel miRNA discovery and identification of tissue associated and sex associated miRNAs from sRNA deep sequencing data of different tissues and embryo of zebrafish in triplicate was carried out using the Illumina HiSeq 2000 platform.,,pubmed:26574018,,Female Gut Replicate 1 sRNAseq,GSM1376629,,source name:Female Gut|gender:female|tissue:Gut|genetic background:Wild type Singapore strain,Female Gut Replicate 1 sRNAseq,Illumina Casava 1.8.2 software used for basecalling. The sequenced reads were first subjected to adapter removal through the cutadapt program Martin 2011. The trimmed reads were then collapsed to remove redundancy and to obtain a unique sequence fasta file through the mapper module of miRDeep2 package Friedländer et al. 2012. The unique reads fasta file was then put through an elimination pipeline module Vaz et al. 2010 comprising of a series of sequence similarity searches with the annotated databases. At each step the reads were matched to an annotated database with a maximum of two mismatches. The matched reads were removed and the unmatched ones were further matched to another annotated database finally culminating into an un annotated pool of reads that served as a source of novel miRNAs and novel sRNAs. The known miRNA expression profile was generated by using the quantifier module of the miRDeep2 package that gives the read counts for the known miRNAs. The quantifier.pl command line used: perl quantifier.pl p m r t Zebrafish The raw reads expression profile generated for all the replicates of the samples were subjected to Trimmed Mean of M values TMM normalisation using the Bioconductor package edgeR Robinson et al. 2010. Genome build: ZV9 Supplementary files format and content: 1. 'Danio rerio known miRNA Rel19 profile Raw.txt': Tab delimited text file that includes the raw counts for the known mature miRNA miRBase Release 19. Supplementary files format and content: 2. 'Danio rerio known miRNA Rel19 profile Normalised.txt': Tab delimited text file that includes the Trimmed Mean of M values TMM normalised counts for the known mature miRNA miRBase Release 19. One of the replicate of Heart MZH008 failed to cluster with the other two replicates on basis of its known miRNA expression profile and hence was not used for further analysis.,Female Gut,N/A,Total RNA were extracted using mirVana™ miRNA Isolation Kit AM1560 Life Technologies. Tissues were homogenised in 1.5 ml microfuge tube containing Lysis/Binding buffer provided in the mirVana™ miRNA Isolation using a hand held pestle. Total RNA containing small RNA were purified following the manufacturer protocol. Small RNA libraries were prepared for sequencing using TruSeq Small RNA Sample Preparation Kit RS 200 0012 Illumina Inc.. Libraries were prepared according to manufacturer instructions. Briefly 1µg of good quality Total RNA per sample was used as starting material. 5’ and 3’ RNA adapters were ligated to each RNA molecule before reverse transcription to create single stranded cDNA. The cDNA was then amplified with PCR using a common primer and a primer containing a unique index sequence. The resulting PCR reactions were electrophoresed on 6% Novex TBE PAGE Gel Life Technologies and bands corresponding to adapter ligated constructs derived from 22 30 nucleotides small RNA fragments were excised from the gel. The small RNA were purified from the excised gel and validated on High Sensitivity DNA chips on a Bioanalyser Agilent Technologies before sequencing.,Fishes were purchased from a local supplier and acclimatized before tissue extraction.,gender:Female|tissue:Gut|genetic background:Wild type Singapore strain,GSM1376629,GSM1376629: Female Gut Replicate 1 sRNAseq; Danio rerio; miRNA Seq,GSM1376629,,1,Total RNA were extracted using mirVana™ miRNA Isolation Kit AM1560 Life Technologies. Tissues were homogenised in 1.5 ml microfuge tube containing Lysis/Binding buffer provided in the mirVana™ miRNA Isolation using a hand held pestle. Total RNA containing small RNA were purified following the manufacturer protocol. Small RNA libraries were prepared for sequencing using TruSeq Small RNA Sample Preparation Kit RS 200 0012 Illumina Inc.. Libraries were prepared according to manufacturer instructions. Briefly 1µg of good quality Total RNA per sample was used as starting material. 5’ and 3’ RNA adapters were ligated to each RNA molecule before reverse transcription to create single stranded cDNA. The cDNA was then amplified with PCR using a common primer and a primer containing a unique index sequence. The resulting PCR reactions were electrophoresed on 6% Novex TBE PAGE Gel Life Technologies and bands corresponding to adapter ligated constructs derived from 22 30 nucleotides small RNA fragments were excised from the gel. The small RNA were purified from the excised gel and validated on High Sensitivity DNA chips on a Bioanalyser Agilent Technologies before sequencing.,GEO Accession:GSM1376629,miRNA-Seq,TRANSCRIPTOMIC,size fractionation,SINGLE,ILLUMINA,Illumina HiSeq 2000,,SRP041544,,,MZG010_ATCACG_L008_R1.fastq.gz,fastq,798808308.0,15662908.0,GSM1376629 r1,0:51,A:163944400;C:183125028;G:240040726;T:211597768;N:100386,51,,,,163944400,183125028,240040726,211597768,100386,SRX529140,SRS598837,SRA160430,GEO,"Expression and Signaling in Mesenchymal and Hematopoietic Stem Cells, Genome and Gene Expression Data Analysis Division, Bioinformatics Institute, A*STAR, Singapore",1,0.01106,,0.00122,,0.99466,,0.66862,,51,,T,,under 1.2% mapping rate,illumina,hiseq_era,unknown,size_fractionation,trueseq,bulk,unknown,unknown,,Singapore,2014-04-29,Undetermined,Embryo,Gut,Digestive System 38012,SRR1265745,SRX529139,SRS598836,SRP041544,PRJNA245824,Deep sequencing of small RNA facilitates tissue and sex associated microRNA discovery in zebrafish,GSE57169,Transcriptome Analysis,The role of microRNAs in gene regulation has been well established. The extent of miRNA regulation also increases with increasing genome complexity. Though the number of genes appear to be equal between human and zebrafish substantially less microRNAs have been discovered in zebrafish compared to human Release 19. It appears that most of the miRNAs in zebrafish are yet to be discovered. We sequenced small RNAs from brain gut liver ovary testis eye heart and embryo of zebrafish. In brain gut and liver sequencing was done in male and female separately. Majority of the sequenced reads 16 62% mapped to known miRNAs with the exception of ovary 5.7% and testis 7.8%. Using the miRNA discovery tool miRDeep2 we discovered novel miRNAs from the un annotated reads that ranged from 7.6 to 23.0% with exceptions of ovary 51.4% and testis 55.2%. The prediction tool identified a total of 459 novel pre miRNAs. We compared expression of miRNAs between different tissues and between males and females to identify tissue associated and sex associated miRNAs respectively. These miRNAs could serve as putative biomarkers for these tissues. The brain and liver had highest number of tissue associated 22 and sex associated 34 miRNAs respectively. This study comprehensively identifies tissue and sex associated miRNAs in zebrafish. Further we have discovered 459 novel pre miRNAs 30% seed homology to human miRNA as a genomic resource which can facilitate further investigations to understand miRNA mRNA gene regulatory networks in zebrafish which will have implications in understanding the function of human homologs. Overall design: Known miRNA profiling novel miRNA discovery and identification of tissue associated and sex associated miRNAs from sRNA deep sequencing data of different tissues and embryo of zebrafish in triplicate was carried out using the Illumina HiSeq 2000 platform.,,pubmed:26574018,,Male Gut Replicate 3 sRNAseq,GSM1376628,,source name:Male Gut|gender:male|tissue:Gut|genetic background:Wild type Singapore strain,Male Gut Replicate 3 sRNAseq,Illumina Casava 1.8.2 software used for basecalling. The sequenced reads were first subjected to adapter removal through the cutadapt program Martin 2011. The trimmed reads were then collapsed to remove redundancy and to obtain a unique sequence fasta file through the mapper module of miRDeep2 package Friedländer et al. 2012. The unique reads fasta file was then put through an elimination pipeline module Vaz et al. 2010 comprising of a series of sequence similarity searches with the annotated databases. At each step the reads were matched to an annotated database with a maximum of two mismatches. The matched reads were removed and the unmatched ones were further matched to another annotated database finally culminating into an un annotated pool of reads that served as a source of novel miRNAs and novel sRNAs. The known miRNA expression profile was generated by using the quantifier module of the miRDeep2 package that gives the read counts for the known miRNAs. The quantifier.pl command line used: perl quantifier.pl p m r t Zebrafish The raw reads expression profile generated for all the replicates of the samples were subjected to Trimmed Mean of M values TMM normalisation using the Bioconductor package edgeR Robinson et al. 2010. Genome build: ZV9 Supplementary files format and content: 1. 'Danio rerio known miRNA Rel19 profile Raw.txt': Tab delimited text file that includes the raw counts for the known mature miRNA miRBase Release 19. Supplementary files format and content: 2. 'Danio rerio known miRNA Rel19 profile Normalised.txt': Tab delimited text file that includes the Trimmed Mean of M values TMM normalised counts for the known mature miRNA miRBase Release 19. One of the replicate of Heart MZH008 failed to cluster with the other two replicates on basis of its known miRNA expression profile and hence was not used for further analysis.,Male Gut,N/A,Total RNA were extracted using mirVana™ miRNA Isolation Kit AM1560 Life Technologies. Tissues were homogenised in 1.5 ml microfuge tube containing Lysis/Binding buffer provided in the mirVana™ miRNA Isolation using a hand held pestle. Total RNA containing small RNA were purified following the manufacturer protocol. Small RNA libraries were prepared for sequencing using TruSeq Small RNA Sample Preparation Kit RS 200 0012 Illumina Inc.. Libraries were prepared according to manufacturer instructions. Briefly 1µg of good quality Total RNA per sample was used as starting material. 5’ and 3’ RNA adapters were ligated to each RNA molecule before reverse transcription to create single stranded cDNA. The cDNA was then amplified with PCR using a common primer and a primer containing a unique index sequence. The resulting PCR reactions were electrophoresed on 6% Novex TBE PAGE Gel Life Technologies and bands corresponding to adapter ligated constructs derived from 22 30 nucleotides small RNA fragments were excised from the gel. The small RNA were purified from the excised gel and validated on High Sensitivity DNA chips on a Bioanalyser Agilent Technologies before sequencing.,Fishes were purchased from a local supplier and acclimatized before tissue extraction.,gender:Male|tissue:Gut|genetic background:Wild type Singapore strain,GSM1376628,GSM1376628: Male Gut Replicate 3 sRNAseq; Danio rerio; miRNA Seq,GSM1376628,,1,Total RNA were extracted using mirVana™ miRNA Isolation Kit AM1560 Life Technologies. Tissues were homogenised in 1.5 ml microfuge tube containing Lysis/Binding buffer provided in the mirVana™ miRNA Isolation using a hand held pestle. Total RNA containing small RNA were purified following the manufacturer protocol. Small RNA libraries were prepared for sequencing using TruSeq Small RNA Sample Preparation Kit RS 200 0012 Illumina Inc.. Libraries were prepared according to manufacturer instructions. Briefly 1µg of good quality Total RNA per sample was used as starting material. 5’ and 3’ RNA adapters were ligated to each RNA molecule before reverse transcription to create single stranded cDNA. The cDNA was then amplified with PCR using a common primer and a primer containing a unique index sequence. The resulting PCR reactions were electrophoresed on 6% Novex TBE PAGE Gel Life Technologies and bands corresponding to adapter ligated constructs derived from 22 30 nucleotides small RNA fragments were excised from the gel. The small RNA were purified from the excised gel and validated on High Sensitivity DNA chips on a Bioanalyser Agilent Technologies before sequencing.,GEO Accession:GSM1376628,miRNA-Seq,TRANSCRIPTOMIC,size fractionation,SINGLE,ILLUMINA,Illumina HiSeq 2000,,SRP041544,,,MZG009_GCCAAT_L007_R1.fastq.gz,fastq,224291778.0,4397878.0,GSM1376628 r1,0:51,A:45043664;C:58692343;G:66840019;T:53695301;N:20451,51,,,,45043664,58692343,66840019,53695301,20451,SRX529139,SRS598836,SRA160430,GEO,"Expression and Signaling in Mesenchymal and Hematopoietic Stem Cells, Genome and Gene Expression Data Analysis Division, Bioinformatics Institute, A*STAR, Singapore",1,0.0015,,0.00021,,0.99829,,0.69477,,51,,T,,under 1.2% mapping rate,illumina,hiseq_era,unknown,size_fractionation,trueseq,bulk,unknown,unknown,,Singapore,2014-04-29,Undetermined,Embryo,Gut,Digestive System 38013,SRR1265743,SRX529138,SRS598835,SRP041544,PRJNA245824,Deep sequencing of small RNA facilitates tissue and sex associated microRNA discovery in zebrafish,GSE57169,Transcriptome Analysis,The role of microRNAs in gene regulation has been well established. The extent of miRNA regulation also increases with increasing genome complexity. Though the number of genes appear to be equal between human and zebrafish substantially less microRNAs have been discovered in zebrafish compared to human Release 19. It appears that most of the miRNAs in zebrafish are yet to be discovered. We sequenced small RNAs from brain gut liver ovary testis eye heart and embryo of zebrafish. In brain gut and liver sequencing was done in male and female separately. Majority of the sequenced reads 16 62% mapped to known miRNAs with the exception of ovary 5.7% and testis 7.8%. Using the miRNA discovery tool miRDeep2 we discovered novel miRNAs from the un annotated reads that ranged from 7.6 to 23.0% with exceptions of ovary 51.4% and testis 55.2%. The prediction tool identified a total of 459 novel pre miRNAs. We compared expression of miRNAs between different tissues and between males and females to identify tissue associated and sex associated miRNAs respectively. These miRNAs could serve as putative biomarkers for these tissues. The brain and liver had highest number of tissue associated 22 and sex associated 34 miRNAs respectively. This study comprehensively identifies tissue and sex associated miRNAs in zebrafish. Further we have discovered 459 novel pre miRNAs 30% seed homology to human miRNA as a genomic resource which can facilitate further investigations to understand miRNA mRNA gene regulatory networks in zebrafish which will have implications in understanding the function of human homologs. Overall design: Known miRNA profiling novel miRNA discovery and identification of tissue associated and sex associated miRNAs from sRNA deep sequencing data of different tissues and embryo of zebrafish in triplicate was carried out using the Illumina HiSeq 2000 platform.,,pubmed:26574018,,Male Gut Replicate 1 sRNAseq,GSM1376626,,source name:Male Gut|gender:male|tissue:Gut|genetic background:Wild type Singapore strain,Male Gut Replicate 1 sRNAseq,Illumina Casava 1.8.2 software used for basecalling. The sequenced reads were first subjected to adapter removal through the cutadapt program Martin 2011. The trimmed reads were then collapsed to remove redundancy and to obtain a unique sequence fasta file through the mapper module of miRDeep2 package Friedländer et al. 2012. The unique reads fasta file was then put through an elimination pipeline module Vaz et al. 2010 comprising of a series of sequence similarity searches with the annotated databases. At each step the reads were matched to an annotated database with a maximum of two mismatches. The matched reads were removed and the unmatched ones were further matched to another annotated database finally culminating into an un annotated pool of reads that served as a source of novel miRNAs and novel sRNAs. The known miRNA expression profile was generated by using the quantifier module of the miRDeep2 package that gives the read counts for the known miRNAs. The quantifier.pl command line used: perl quantifier.pl p m r t Zebrafish The raw reads expression profile generated for all the replicates of the samples were subjected to Trimmed Mean of M values TMM normalisation using the Bioconductor package edgeR Robinson et al. 2010. Genome build: ZV9 Supplementary files format and content: 1. 'Danio rerio known miRNA Rel19 profile Raw.txt': Tab delimited text file that includes the raw counts for the known mature miRNA miRBase Release 19. Supplementary files format and content: 2. 'Danio rerio known miRNA Rel19 profile Normalised.txt': Tab delimited text file that includes the Trimmed Mean of M values TMM normalised counts for the known mature miRNA miRBase Release 19. One of the replicate of Heart MZH008 failed to cluster with the other two replicates on basis of its known miRNA expression profile and hence was not used for further analysis.,Male Gut,N/A,Total RNA were extracted using mirVana™ miRNA Isolation Kit AM1560 Life Technologies. Tissues were homogenised in 1.5 ml microfuge tube containing Lysis/Binding buffer provided in the mirVana™ miRNA Isolation using a hand held pestle. Total RNA containing small RNA were purified following the manufacturer protocol. Small RNA libraries were prepared for sequencing using TruSeq Small RNA Sample Preparation Kit RS 200 0012 Illumina Inc.. Libraries were prepared according to manufacturer instructions. Briefly 1µg of good quality Total RNA per sample was used as starting material. 5’ and 3’ RNA adapters were ligated to each RNA molecule before reverse transcription to create single stranded cDNA. The cDNA was then amplified with PCR using a common primer and a primer containing a unique index sequence. The resulting PCR reactions were electrophoresed on 6% Novex TBE PAGE Gel Life Technologies and bands corresponding to adapter ligated constructs derived from 22 30 nucleotides small RNA fragments were excised from the gel. The small RNA were purified from the excised gel and validated on High Sensitivity DNA chips on a Bioanalyser Agilent Technologies before sequencing.,Fishes were purchased from a local supplier and acclimatized before tissue extraction.,gender:Male|tissue:Gut|genetic background:Wild type Singapore strain,GSM1376626,GSM1376626: Male Gut Replicate 1 sRNAseq; Danio rerio; miRNA Seq,GSM1376626,,1,Total RNA were extracted using mirVana™ miRNA Isolation Kit AM1560 Life Technologies. Tissues were homogenised in 1.5 ml microfuge tube containing Lysis/Binding buffer provided in the mirVana™ miRNA Isolation using a hand held pestle. Total RNA containing small RNA were purified following the manufacturer protocol. Small RNA libraries were prepared for sequencing using TruSeq Small RNA Sample Preparation Kit RS 200 0012 Illumina Inc.. Libraries were prepared according to manufacturer instructions. Briefly 1µg of good quality Total RNA per sample was used as starting material. 5’ and 3’ RNA adapters were ligated to each RNA molecule before reverse transcription to create single stranded cDNA. The cDNA was then amplified with PCR using a common primer and a primer containing a unique index sequence. The resulting PCR reactions were electrophoresed on 6% Novex TBE PAGE Gel Life Technologies and bands corresponding to adapter ligated constructs derived from 22 30 nucleotides small RNA fragments were excised from the gel. The small RNA were purified from the excised gel and validated on High Sensitivity DNA chips on a Bioanalyser Agilent Technologies before sequencing.,GEO Accession:GSM1376626,miRNA-Seq,TRANSCRIPTOMIC,size fractionation,SINGLE,ILLUMINA,Illumina HiSeq 2000,,SRP041544,,,MZG007_TGACCA_L007_R1.fastq.gz,fastq,1058961552.0,20763952.0,GSM1376626 r1,0:51,A:205056709;C:273349362;G:322710601;T:257753257;N:91623,51,,,,205056709,273349362,322710601,257753257,91623,SRX529138,SRS598835,SRA160430,GEO,"Expression and Signaling in Mesenchymal and Hematopoietic Stem Cells, Genome and Gene Expression Data Analysis Division, Bioinformatics Institute, A*STAR, Singapore",1,0.00382,,0.00043,,0.99746,,0.683,,51,,T,,under 1.2% mapping rate,illumina,hiseq_era,unknown,size_fractionation,trueseq,bulk,unknown,unknown,,Singapore,2014-04-29,Undetermined,Embryo,Gut,Digestive System 38014,SRR1265742,SRX529137,SRS598834,SRP041544,PRJNA245824,Deep sequencing of small RNA facilitates tissue and sex associated microRNA discovery in zebrafish,GSE57169,Transcriptome Analysis,The role of microRNAs in gene regulation has been well established. The extent of miRNA regulation also increases with increasing genome complexity. Though the number of genes appear to be equal between human and zebrafish substantially less microRNAs have been discovered in zebrafish compared to human Release 19. It appears that most of the miRNAs in zebrafish are yet to be discovered. We sequenced small RNAs from brain gut liver ovary testis eye heart and embryo of zebrafish. In brain gut and liver sequencing was done in male and female separately. Majority of the sequenced reads 16 62% mapped to known miRNAs with the exception of ovary 5.7% and testis 7.8%. Using the miRNA discovery tool miRDeep2 we discovered novel miRNAs from the un annotated reads that ranged from 7.6 to 23.0% with exceptions of ovary 51.4% and testis 55.2%. The prediction tool identified a total of 459 novel pre miRNAs. We compared expression of miRNAs between different tissues and between males and females to identify tissue associated and sex associated miRNAs respectively. These miRNAs could serve as putative biomarkers for these tissues. The brain and liver had highest number of tissue associated 22 and sex associated 34 miRNAs respectively. This study comprehensively identifies tissue and sex associated miRNAs in zebrafish. Further we have discovered 459 novel pre miRNAs 30% seed homology to human miRNA as a genomic resource which can facilitate further investigations to understand miRNA mRNA gene regulatory networks in zebrafish which will have implications in understanding the function of human homologs. Overall design: Known miRNA profiling novel miRNA discovery and identification of tissue associated and sex associated miRNAs from sRNA deep sequencing data of different tissues and embryo of zebrafish in triplicate was carried out using the Illumina HiSeq 2000 platform.,,pubmed:26574018,,Female Brain Replicate 3 sRNAseq,GSM1376625,,source name:Female Brain|gender:female|tissue:Brain|genetic background:Wild type Singapore strain,Female Brain Replicate 3 sRNAseq,Illumina Casava 1.8.2 software used for basecalling. The sequenced reads were first subjected to adapter removal through the cutadapt program Martin 2011. The trimmed reads were then collapsed to remove redundancy and to obtain a unique sequence fasta file through the mapper module of miRDeep2 package Friedländer et al. 2012. The unique reads fasta file was then put through an elimination pipeline module Vaz et al. 2010 comprising of a series of sequence similarity searches with the annotated databases. At each step the reads were matched to an annotated database with a maximum of two mismatches. The matched reads were removed and the unmatched ones were further matched to another annotated database finally culminating into an un annotated pool of reads that served as a source of novel miRNAs and novel sRNAs. The known miRNA expression profile was generated by using the quantifier module of the miRDeep2 package that gives the read counts for the known miRNAs. The quantifier.pl command line used: perl quantifier.pl p m r t Zebrafish The raw reads expression profile generated for all the replicates of the samples were subjected to Trimmed Mean of M values TMM normalisation using the Bioconductor package edgeR Robinson et al. 2010. Genome build: ZV9 Supplementary files format and content: 1. 'Danio rerio known miRNA Rel19 profile Raw.txt': Tab delimited text file that includes the raw counts for the known mature miRNA miRBase Release 19. Supplementary files format and content: 2. 'Danio rerio known miRNA Rel19 profile Normalised.txt': Tab delimited text file that includes the Trimmed Mean of M values TMM normalised counts for the known mature miRNA miRBase Release 19. One of the replicate of Heart MZH008 failed to cluster with the other two replicates on basis of its known miRNA expression profile and hence was not used for further analysis.,Female Brain,N/A,Total RNA were extracted using mirVana™ miRNA Isolation Kit AM1560 Life Technologies. Tissues were homogenised in 1.5 ml microfuge tube containing Lysis/Binding buffer provided in the mirVana™ miRNA Isolation using a hand held pestle. Total RNA containing small RNA were purified following the manufacturer protocol. Small RNA libraries were prepared for sequencing using TruSeq Small RNA Sample Preparation Kit RS 200 0012 Illumina Inc.. Libraries were prepared according to manufacturer instructions. Briefly 1µg of good quality Total RNA per sample was used as starting material. 5’ and 3’ RNA adapters were ligated to each RNA molecule before reverse transcription to create single stranded cDNA. The cDNA was then amplified with PCR using a common primer and a primer containing a unique index sequence. The resulting PCR reactions were electrophoresed on 6% Novex TBE PAGE Gel Life Technologies and bands corresponding to adapter ligated constructs derived from 22 30 nucleotides small RNA fragments were excised from the gel. The small RNA were purified from the excised gel and validated on High Sensitivity DNA chips on a Bioanalyser Agilent Technologies before sequencing.,Fishes were purchased from a local supplier and acclimatized before tissue extraction.,gender:Female|tissue:Brain|genetic background:Wild type Singapore strain,GSM1376625,GSM1376625: Female Brain Replicate 3 sRNAseq; Danio rerio; miRNA Seq,GSM1376625,,1,Total RNA were extracted using mirVana™ miRNA Isolation Kit AM1560 Life Technologies. Tissues were homogenised in 1.5 ml microfuge tube containing Lysis/Binding buffer provided in the mirVana™ miRNA Isolation using a hand held pestle. Total RNA containing small RNA were purified following the manufacturer protocol. Small RNA libraries were prepared for sequencing using TruSeq Small RNA Sample Preparation Kit RS 200 0012 Illumina Inc.. Libraries were prepared according to manufacturer instructions. Briefly 1µg of good quality Total RNA per sample was used as starting material. 5’ and 3’ RNA adapters were ligated to each RNA molecule before reverse transcription to create single stranded cDNA. The cDNA was then amplified with PCR using a common primer and a primer containing a unique index sequence. The resulting PCR reactions were electrophoresed on 6% Novex TBE PAGE Gel Life Technologies and bands corresponding to adapter ligated constructs derived from 22 30 nucleotides small RNA fragments were excised from the gel. The small RNA were purified from the excised gel and validated on High Sensitivity DNA chips on a Bioanalyser Agilent Technologies before sequencing.,GEO Accession:GSM1376625,miRNA-Seq,TRANSCRIPTOMIC,size fractionation,SINGLE,ILLUMINA,Illumina HiSeq 2000,,SRP041544,,,MZB012_CTTGTA_L007_R1.fastq.gz,fastq,657620928.0,12894528.0,GSM1376625 r1,0:51,A:127428594;C:157315630;G:203096060;T:169719399;N:61245,51,,,,127428594,157315630,203096060,169719399,61245,SRX529137,SRS598834,SRA160430,GEO,"Expression and Signaling in Mesenchymal and Hematopoietic Stem Cells, Genome and Gene Expression Data Analysis Division, Bioinformatics Institute, A*STAR, Singapore",1,0.01165,,0.00109,,0.99622,,0.72322,,51,,T,,under 1.2% mapping rate,illumina,hiseq_era,unknown,size_fractionation,trueseq,bulk,unknown,unknown,,Singapore,2014-04-29,Undetermined,Embryo,Brain,Nervous System 38015,SRR1265741,SRX529136,SRS598833,SRP041544,PRJNA245824,Deep sequencing of small RNA facilitates tissue and sex associated microRNA discovery in zebrafish,GSE57169,Transcriptome Analysis,The role of microRNAs in gene regulation has been well established. The extent of miRNA regulation also increases with increasing genome complexity. Though the number of genes appear to be equal between human and zebrafish substantially less microRNAs have been discovered in zebrafish compared to human Release 19. It appears that most of the miRNAs in zebrafish are yet to be discovered. We sequenced small RNAs from brain gut liver ovary testis eye heart and embryo of zebrafish. In brain gut and liver sequencing was done in male and female separately. Majority of the sequenced reads 16 62% mapped to known miRNAs with the exception of ovary 5.7% and testis 7.8%. Using the miRNA discovery tool miRDeep2 we discovered novel miRNAs from the un annotated reads that ranged from 7.6 to 23.0% with exceptions of ovary 51.4% and testis 55.2%. The prediction tool identified a total of 459 novel pre miRNAs. We compared expression of miRNAs between different tissues and between males and females to identify tissue associated and sex associated miRNAs respectively. These miRNAs could serve as putative biomarkers for these tissues. The brain and liver had highest number of tissue associated 22 and sex associated 34 miRNAs respectively. This study comprehensively identifies tissue and sex associated miRNAs in zebrafish. Further we have discovered 459 novel pre miRNAs 30% seed homology to human miRNA as a genomic resource which can facilitate further investigations to understand miRNA mRNA gene regulatory networks in zebrafish which will have implications in understanding the function of human homologs. Overall design: Known miRNA profiling novel miRNA discovery and identification of tissue associated and sex associated miRNAs from sRNA deep sequencing data of different tissues and embryo of zebrafish in triplicate was carried out using the Illumina HiSeq 2000 platform.,,pubmed:26574018,,Female Brain Replicate 2 sRNAseq,GSM1376624,,source name:Female Brain|gender:female|tissue:Brain|genetic background:Wild type Singapore strain,Female Brain Replicate 2 sRNAseq,Illumina Casava 1.8.2 software used for basecalling. The sequenced reads were first subjected to adapter removal through the cutadapt program Martin 2011. The trimmed reads were then collapsed to remove redundancy and to obtain a unique sequence fasta file through the mapper module of miRDeep2 package Friedländer et al. 2012. The unique reads fasta file was then put through an elimination pipeline module Vaz et al. 2010 comprising of a series of sequence similarity searches with the annotated databases. At each step the reads were matched to an annotated database with a maximum of two mismatches. The matched reads were removed and the unmatched ones were further matched to another annotated database finally culminating into an un annotated pool of reads that served as a source of novel miRNAs and novel sRNAs. The known miRNA expression profile was generated by using the quantifier module of the miRDeep2 package that gives the read counts for the known miRNAs. The quantifier.pl command line used: perl quantifier.pl p m r t Zebrafish The raw reads expression profile generated for all the replicates of the samples were subjected to Trimmed Mean of M values TMM normalisation using the Bioconductor package edgeR Robinson et al. 2010. Genome build: ZV9 Supplementary files format and content: 1. 'Danio rerio known miRNA Rel19 profile Raw.txt': Tab delimited text file that includes the raw counts for the known mature miRNA miRBase Release 19. Supplementary files format and content: 2. 'Danio rerio known miRNA Rel19 profile Normalised.txt': Tab delimited text file that includes the Trimmed Mean of M values TMM normalised counts for the known mature miRNA miRBase Release 19. One of the replicate of Heart MZH008 failed to cluster with the other two replicates on basis of its known miRNA expression profile and hence was not used for further analysis.,Female Brain,N/A,Total RNA were extracted using mirVana™ miRNA Isolation Kit AM1560 Life Technologies. Tissues were homogenised in 1.5 ml microfuge tube containing Lysis/Binding buffer provided in the mirVana™ miRNA Isolation using a hand held pestle. Total RNA containing small RNA were purified following the manufacturer protocol. Small RNA libraries were prepared for sequencing using TruSeq Small RNA Sample Preparation Kit RS 200 0012 Illumina Inc.. Libraries were prepared according to manufacturer instructions. Briefly 1µg of good quality Total RNA per sample was used as starting material. 5’ and 3’ RNA adapters were ligated to each RNA molecule before reverse transcription to create single stranded cDNA. The cDNA was then amplified with PCR using a common primer and a primer containing a unique index sequence. The resulting PCR reactions were electrophoresed on 6% Novex TBE PAGE Gel Life Technologies and bands corresponding to adapter ligated constructs derived from 22 30 nucleotides small RNA fragments were excised from the gel. The small RNA were purified from the excised gel and validated on High Sensitivity DNA chips on a Bioanalyser Agilent Technologies before sequencing.,Fishes were purchased from a local supplier and acclimatized before tissue extraction.,gender:Female|tissue:Brain|genetic background:Wild type Singapore strain,GSM1376624,GSM1376624: Female Brain Replicate 2 sRNAseq; Danio rerio; miRNA Seq,GSM1376624,,1,Total RNA were extracted using mirVana™ miRNA Isolation Kit AM1560 Life Technologies. Tissues were homogenised in 1.5 ml microfuge tube containing Lysis/Binding buffer provided in the mirVana™ miRNA Isolation using a hand held pestle. Total RNA containing small RNA were purified following the manufacturer protocol. Small RNA libraries were prepared for sequencing using TruSeq Small RNA Sample Preparation Kit RS 200 0012 Illumina Inc.. Libraries were prepared according to manufacturer instructions. Briefly 1µg of good quality Total RNA per sample was used as starting material. 5’ and 3’ RNA adapters were ligated to each RNA molecule before reverse transcription to create single stranded cDNA. The cDNA was then amplified with PCR using a common primer and a primer containing a unique index sequence. The resulting PCR reactions were electrophoresed on 6% Novex TBE PAGE Gel Life Technologies and bands corresponding to adapter ligated constructs derived from 22 30 nucleotides small RNA fragments were excised from the gel. The small RNA were purified from the excised gel and validated on High Sensitivity DNA chips on a Bioanalyser Agilent Technologies before sequencing.,GEO Accession:GSM1376624,miRNA-Seq,TRANSCRIPTOMIC,size fractionation,SINGLE,ILLUMINA,Illumina HiSeq 2000,,SRP041544,,,MZB011_GGCTAC_L007_R1.fastq.gz,fastq,197790903.0,3878253.0,GSM1376624 r1,0:51,A:39219508;C:48781853;G:60339090;T:49430999;N:19453,51,,,,39219508,48781853,60339090,49430999,19453,SRX529136,SRS598833,SRA160430,GEO,"Expression and Signaling in Mesenchymal and Hematopoietic Stem Cells, Genome and Gene Expression Data Analysis Division, Bioinformatics Institute, A*STAR, Singapore",1,0.00227,,0.00019,,0.99835,,0.67164,,51,,T,,under 1.2% mapping rate,illumina,hiseq_era,unknown,size_fractionation,trueseq,bulk,unknown,unknown,,Singapore,2014-04-29,Undetermined,Embryo,Brain,Nervous System 38016,SRR1265740,SRX529135,SRS598832,SRP041544,PRJNA245824,Deep sequencing of small RNA facilitates tissue and sex associated microRNA discovery in zebrafish,GSE57169,Transcriptome Analysis,The role of microRNAs in gene regulation has been well established. The extent of miRNA regulation also increases with increasing genome complexity. Though the number of genes appear to be equal between human and zebrafish substantially less microRNAs have been discovered in zebrafish compared to human Release 19. It appears that most of the miRNAs in zebrafish are yet to be discovered. We sequenced small RNAs from brain gut liver ovary testis eye heart and embryo of zebrafish. In brain gut and liver sequencing was done in male and female separately. Majority of the sequenced reads 16 62% mapped to known miRNAs with the exception of ovary 5.7% and testis 7.8%. Using the miRNA discovery tool miRDeep2 we discovered novel miRNAs from the un annotated reads that ranged from 7.6 to 23.0% with exceptions of ovary 51.4% and testis 55.2%. The prediction tool identified a total of 459 novel pre miRNAs. We compared expression of miRNAs between different tissues and between males and females to identify tissue associated and sex associated miRNAs respectively. These miRNAs could serve as putative biomarkers for these tissues. The brain and liver had highest number of tissue associated 22 and sex associated 34 miRNAs respectively. This study comprehensively identifies tissue and sex associated miRNAs in zebrafish. Further we have discovered 459 novel pre miRNAs 30% seed homology to human miRNA as a genomic resource which can facilitate further investigations to understand miRNA mRNA gene regulatory networks in zebrafish which will have implications in understanding the function of human homologs. Overall design: Known miRNA profiling novel miRNA discovery and identification of tissue associated and sex associated miRNAs from sRNA deep sequencing data of different tissues and embryo of zebrafish in triplicate was carried out using the Illumina HiSeq 2000 platform.,,pubmed:26574018,,Female Brain Replicate 1 sRNAseq,GSM1376623,,source name:Female Brain|gender:female|tissue:Brain|genetic background:Wild type Singapore strain,Female Brain Replicate 1 sRNAseq,Illumina Casava 1.8.2 software used for basecalling. The sequenced reads were first subjected to adapter removal through the cutadapt program Martin 2011. The trimmed reads were then collapsed to remove redundancy and to obtain a unique sequence fasta file through the mapper module of miRDeep2 package Friedländer et al. 2012. The unique reads fasta file was then put through an elimination pipeline module Vaz et al. 2010 comprising of a series of sequence similarity searches with the annotated databases. At each step the reads were matched to an annotated database with a maximum of two mismatches. The matched reads were removed and the unmatched ones were further matched to another annotated database finally culminating into an un annotated pool of reads that served as a source of novel miRNAs and novel sRNAs. The known miRNA expression profile was generated by using the quantifier module of the miRDeep2 package that gives the read counts for the known miRNAs. The quantifier.pl command line used: perl quantifier.pl p m r t Zebrafish The raw reads expression profile generated for all the replicates of the samples were subjected to Trimmed Mean of M values TMM normalisation using the Bioconductor package edgeR Robinson et al. 2010. Genome build: ZV9 Supplementary files format and content: 1. 'Danio rerio known miRNA Rel19 profile Raw.txt': Tab delimited text file that includes the raw counts for the known mature miRNA miRBase Release 19. Supplementary files format and content: 2. 'Danio rerio known miRNA Rel19 profile Normalised.txt': Tab delimited text file that includes the Trimmed Mean of M values TMM normalised counts for the known mature miRNA miRBase Release 19. One of the replicate of Heart MZH008 failed to cluster with the other two replicates on basis of its known miRNA expression profile and hence was not used for further analysis.,Female Brain,N/A,Total RNA were extracted using mirVana™ miRNA Isolation Kit AM1560 Life Technologies. Tissues were homogenised in 1.5 ml microfuge tube containing Lysis/Binding buffer provided in the mirVana™ miRNA Isolation using a hand held pestle. Total RNA containing small RNA were purified following the manufacturer protocol. Small RNA libraries were prepared for sequencing using TruSeq Small RNA Sample Preparation Kit RS 200 0012 Illumina Inc.. Libraries were prepared according to manufacturer instructions. Briefly 1µg of good quality Total RNA per sample was used as starting material. 5’ and 3’ RNA adapters were ligated to each RNA molecule before reverse transcription to create single stranded cDNA. The cDNA was then amplified with PCR using a common primer and a primer containing a unique index sequence. The resulting PCR reactions were electrophoresed on 6% Novex TBE PAGE Gel Life Technologies and bands corresponding to adapter ligated constructs derived from 22 30 nucleotides small RNA fragments were excised from the gel. The small RNA were purified from the excised gel and validated on High Sensitivity DNA chips on a Bioanalyser Agilent Technologies before sequencing.,Fishes were purchased from a local supplier and acclimatized before tissue extraction.,gender:Female|tissue:Brain|genetic background:Wild type Singapore strain,GSM1376623,GSM1376623: Female Brain Replicate 1 sRNAseq; Danio rerio; miRNA Seq,GSM1376623,,1,Total RNA were extracted using mirVana™ miRNA Isolation Kit AM1560 Life Technologies. Tissues were homogenised in 1.5 ml microfuge tube containing Lysis/Binding buffer provided in the mirVana™ miRNA Isolation using a hand held pestle. Total RNA containing small RNA were purified following the manufacturer protocol. Small RNA libraries were prepared for sequencing using TruSeq Small RNA Sample Preparation Kit RS 200 0012 Illumina Inc.. Libraries were prepared according to manufacturer instructions. Briefly 1µg of good quality Total RNA per sample was used as starting material. 5’ and 3’ RNA adapters were ligated to each RNA molecule before reverse transcription to create single stranded cDNA. The cDNA was then amplified with PCR using a common primer and a primer containing a unique index sequence. The resulting PCR reactions were electrophoresed on 6% Novex TBE PAGE Gel Life Technologies and bands corresponding to adapter ligated constructs derived from 22 30 nucleotides small RNA fragments were excised from the gel. The small RNA were purified from the excised gel and validated on High Sensitivity DNA chips on a Bioanalyser Agilent Technologies before sequencing.,GEO Accession:GSM1376623,miRNA-Seq,TRANSCRIPTOMIC,size fractionation,SINGLE,ILLUMINA,Illumina HiSeq 2000,,SRP041544,,,MZB010_TAGCTT_L007_R1.fastq.gz,fastq,127765710.0,2505210.0,GSM1376623 r1,0:51,A:24845648;C:31103830;G:38874684;T:32929436;N:12112,51,,,,24845648,31103830,38874684,32929436,12112,SRX529135,SRS598832,SRA160430,GEO,"Expression and Signaling in Mesenchymal and Hematopoietic Stem Cells, Genome and Gene Expression Data Analysis Division, Bioinformatics Institute, A*STAR, Singapore",1,0.02647,,0.00307,,0.99368,,0.59472,,51,,B,,usable mapping rate,illumina,hiseq_era,unknown,size_fractionation,trueseq,bulk,unknown,unknown,,Singapore,2014-04-29,Undetermined,Embryo,Brain,Nervous System 38017,SRR1265739,SRX529134,SRS598831,SRP041544,PRJNA245824,Deep sequencing of small RNA facilitates tissue and sex associated microRNA discovery in zebrafish,GSE57169,Transcriptome Analysis,The role of microRNAs in gene regulation has been well established. The extent of miRNA regulation also increases with increasing genome complexity. Though the number of genes appear to be equal between human and zebrafish substantially less microRNAs have been discovered in zebrafish compared to human Release 19. It appears that most of the miRNAs in zebrafish are yet to be discovered. We sequenced small RNAs from brain gut liver ovary testis eye heart and embryo of zebrafish. In brain gut and liver sequencing was done in male and female separately. Majority of the sequenced reads 16 62% mapped to known miRNAs with the exception of ovary 5.7% and testis 7.8%. Using the miRNA discovery tool miRDeep2 we discovered novel miRNAs from the un annotated reads that ranged from 7.6 to 23.0% with exceptions of ovary 51.4% and testis 55.2%. The prediction tool identified a total of 459 novel pre miRNAs. We compared expression of miRNAs between different tissues and between males and females to identify tissue associated and sex associated miRNAs respectively. These miRNAs could serve as putative biomarkers for these tissues. The brain and liver had highest number of tissue associated 22 and sex associated 34 miRNAs respectively. This study comprehensively identifies tissue and sex associated miRNAs in zebrafish. Further we have discovered 459 novel pre miRNAs 30% seed homology to human miRNA as a genomic resource which can facilitate further investigations to understand miRNA mRNA gene regulatory networks in zebrafish which will have implications in understanding the function of human homologs. Overall design: Known miRNA profiling novel miRNA discovery and identification of tissue associated and sex associated miRNAs from sRNA deep sequencing data of different tissues and embryo of zebrafish in triplicate was carried out using the Illumina HiSeq 2000 platform.,,pubmed:26574018,,Male Brain Replicate 3 sRNAseq,GSM1376622,,source name:Male Brain|gender:male|tissue:Brain|genetic background:Wild type Singapore strain,Male Brain Replicate 3 sRNAseq,Illumina Casava 1.8.2 software used for basecalling. The sequenced reads were first subjected to adapter removal through the cutadapt program Martin 2011. The trimmed reads were then collapsed to remove redundancy and to obtain a unique sequence fasta file through the mapper module of miRDeep2 package Friedländer et al. 2012. The unique reads fasta file was then put through an elimination pipeline module Vaz et al. 2010 comprising of a series of sequence similarity searches with the annotated databases. At each step the reads were matched to an annotated database with a maximum of two mismatches. The matched reads were removed and the unmatched ones were further matched to another annotated database finally culminating into an un annotated pool of reads that served as a source of novel miRNAs and novel sRNAs. The known miRNA expression profile was generated by using the quantifier module of the miRDeep2 package that gives the read counts for the known miRNAs. The quantifier.pl command line used: perl quantifier.pl p m r t Zebrafish The raw reads expression profile generated for all the replicates of the samples were subjected to Trimmed Mean of M values TMM normalisation using the Bioconductor package edgeR Robinson et al. 2010. Genome build: ZV9 Supplementary files format and content: 1. 'Danio rerio known miRNA Rel19 profile Raw.txt': Tab delimited text file that includes the raw counts for the known mature miRNA miRBase Release 19. Supplementary files format and content: 2. 'Danio rerio known miRNA Rel19 profile Normalised.txt': Tab delimited text file that includes the Trimmed Mean of M values TMM normalised counts for the known mature miRNA miRBase Release 19. One of the replicate of Heart MZH008 failed to cluster with the other two replicates on basis of its known miRNA expression profile and hence was not used for further analysis.,Male Brain,N/A,Total RNA were extracted using mirVana™ miRNA Isolation Kit AM1560 Life Technologies. Tissues were homogenised in 1.5 ml microfuge tube containing Lysis/Binding buffer provided in the mirVana™ miRNA Isolation using a hand held pestle. Total RNA containing small RNA were purified following the manufacturer protocol. Small RNA libraries were prepared for sequencing using TruSeq Small RNA Sample Preparation Kit RS 200 0012 Illumina Inc.. Libraries were prepared according to manufacturer instructions. Briefly 1µg of good quality Total RNA per sample was used as starting material. 5’ and 3’ RNA adapters were ligated to each RNA molecule before reverse transcription to create single stranded cDNA. The cDNA was then amplified with PCR using a common primer and a primer containing a unique index sequence. The resulting PCR reactions were electrophoresed on 6% Novex TBE PAGE Gel Life Technologies and bands corresponding to adapter ligated constructs derived from 22 30 nucleotides small RNA fragments were excised from the gel. The small RNA were purified from the excised gel and validated on High Sensitivity DNA chips on a Bioanalyser Agilent Technologies before sequencing.,Fishes were purchased from a local supplier and acclimatized before tissue extraction.,gender:Male|tissue:Brain|genetic background:Wild type Singapore strain,GSM1376622,GSM1376622: Male Brain Replicate 3 sRNAseq; Danio rerio; miRNA Seq,GSM1376622,,1,Total RNA were extracted using mirVana™ miRNA Isolation Kit AM1560 Life Technologies. Tissues were homogenised in 1.5 ml microfuge tube containing Lysis/Binding buffer provided in the mirVana™ miRNA Isolation using a hand held pestle. Total RNA containing small RNA were purified following the manufacturer protocol. Small RNA libraries were prepared for sequencing using TruSeq Small RNA Sample Preparation Kit RS 200 0012 Illumina Inc.. Libraries were prepared according to manufacturer instructions. Briefly 1µg of good quality Total RNA per sample was used as starting material. 5’ and 3’ RNA adapters were ligated to each RNA molecule before reverse transcription to create single stranded cDNA. The cDNA was then amplified with PCR using a common primer and a primer containing a unique index sequence. The resulting PCR reactions were electrophoresed on 6% Novex TBE PAGE Gel Life Technologies and bands corresponding to adapter ligated constructs derived from 22 30 nucleotides small RNA fragments were excised from the gel. The small RNA were purified from the excised gel and validated on High Sensitivity DNA chips on a Bioanalyser Agilent Technologies before sequencing.,GEO Accession:GSM1376622,miRNA-Seq,TRANSCRIPTOMIC,size fractionation,SINGLE,ILLUMINA,Illumina HiSeq 2000,,SRP041544,,,MZB009_TTAGGC_L007_R1.fastq.gz,fastq,749856876.0,14703076.0,GSM1376622 r1,0:51,A:142133111;C:197021938;G:231006890;T:179625504;N:69433,51,,,,142133111,197021938,231006890,179625504,69433,SRX529134,SRS598831,SRA160430,GEO,"Expression and Signaling in Mesenchymal and Hematopoietic Stem Cells, Genome and Gene Expression Data Analysis Division, Bioinformatics Institute, A*STAR, Singapore",1,0.00196,,0.00026,,0.99843,,0.64615,,51,,T,,under 1.2% mapping rate,illumina,hiseq_era,unknown,size_fractionation,trueseq,bulk,unknown,unknown,,Singapore,2014-04-29,Undetermined,Embryo,Brain,Nervous System 38018,SRR1265738,SRX529133,SRS598830,SRP041544,PRJNA245824,Deep sequencing of small RNA facilitates tissue and sex associated microRNA discovery in zebrafish,GSE57169,Transcriptome Analysis,The role of microRNAs in gene regulation has been well established. The extent of miRNA regulation also increases with increasing genome complexity. Though the number of genes appear to be equal between human and zebrafish substantially less microRNAs have been discovered in zebrafish compared to human Release 19. It appears that most of the miRNAs in zebrafish are yet to be discovered. We sequenced small RNAs from brain gut liver ovary testis eye heart and embryo of zebrafish. In brain gut and liver sequencing was done in male and female separately. Majority of the sequenced reads 16 62% mapped to known miRNAs with the exception of ovary 5.7% and testis 7.8%. Using the miRNA discovery tool miRDeep2 we discovered novel miRNAs from the un annotated reads that ranged from 7.6 to 23.0% with exceptions of ovary 51.4% and testis 55.2%. The prediction tool identified a total of 459 novel pre miRNAs. We compared expression of miRNAs between different tissues and between males and females to identify tissue associated and sex associated miRNAs respectively. These miRNAs could serve as putative biomarkers for these tissues. The brain and liver had highest number of tissue associated 22 and sex associated 34 miRNAs respectively. This study comprehensively identifies tissue and sex associated miRNAs in zebrafish. Further we have discovered 459 novel pre miRNAs 30% seed homology to human miRNA as a genomic resource which can facilitate further investigations to understand miRNA mRNA gene regulatory networks in zebrafish which will have implications in understanding the function of human homologs. Overall design: Known miRNA profiling novel miRNA discovery and identification of tissue associated and sex associated miRNAs from sRNA deep sequencing data of different tissues and embryo of zebrafish in triplicate was carried out using the Illumina HiSeq 2000 platform.,,pubmed:26574018,,Male Brain Replicate 2 sRNAseq,GSM1376621,,source name:Male Brain|gender:male|tissue:Brain|genetic background:Wild type Singapore strain,Male Brain Replicate 2 sRNAseq,Illumina Casava 1.8.2 software used for basecalling. The sequenced reads were first subjected to adapter removal through the cutadapt program Martin 2011. The trimmed reads were then collapsed to remove redundancy and to obtain a unique sequence fasta file through the mapper module of miRDeep2 package Friedländer et al. 2012. The unique reads fasta file was then put through an elimination pipeline module Vaz et al. 2010 comprising of a series of sequence similarity searches with the annotated databases. At each step the reads were matched to an annotated database with a maximum of two mismatches. The matched reads were removed and the unmatched ones were further matched to another annotated database finally culminating into an un annotated pool of reads that served as a source of novel miRNAs and novel sRNAs. The known miRNA expression profile was generated by using the quantifier module of the miRDeep2 package that gives the read counts for the known miRNAs. The quantifier.pl command line used: perl quantifier.pl p m r t Zebrafish The raw reads expression profile generated for all the replicates of the samples were subjected to Trimmed Mean of M values TMM normalisation using the Bioconductor package edgeR Robinson et al. 2010. Genome build: ZV9 Supplementary files format and content: 1. 'Danio rerio known miRNA Rel19 profile Raw.txt': Tab delimited text file that includes the raw counts for the known mature miRNA miRBase Release 19. Supplementary files format and content: 2. 'Danio rerio known miRNA Rel19 profile Normalised.txt': Tab delimited text file that includes the Trimmed Mean of M values TMM normalised counts for the known mature miRNA miRBase Release 19. One of the replicate of Heart MZH008 failed to cluster with the other two replicates on basis of its known miRNA expression profile and hence was not used for further analysis.,Male Brain,N/A,Total RNA were extracted using mirVana™ miRNA Isolation Kit AM1560 Life Technologies. Tissues were homogenised in 1.5 ml microfuge tube containing Lysis/Binding buffer provided in the mirVana™ miRNA Isolation using a hand held pestle. Total RNA containing small RNA were purified following the manufacturer protocol. Small RNA libraries were prepared for sequencing using TruSeq Small RNA Sample Preparation Kit RS 200 0012 Illumina Inc.. Libraries were prepared according to manufacturer instructions. Briefly 1µg of good quality Total RNA per sample was used as starting material. 5’ and 3’ RNA adapters were ligated to each RNA molecule before reverse transcription to create single stranded cDNA. The cDNA was then amplified with PCR using a common primer and a primer containing a unique index sequence. The resulting PCR reactions were electrophoresed on 6% Novex TBE PAGE Gel Life Technologies and bands corresponding to adapter ligated constructs derived from 22 30 nucleotides small RNA fragments were excised from the gel. The small RNA were purified from the excised gel and validated on High Sensitivity DNA chips on a Bioanalyser Agilent Technologies before sequencing.,Fishes were purchased from a local supplier and acclimatized before tissue extraction.,gender:Male|tissue:Brain|genetic background:Wild type Singapore strain,GSM1376621,GSM1376621: Male Brain Replicate 2 sRNAseq; Danio rerio; miRNA Seq,GSM1376621,,1,Total RNA were extracted using mirVana™ miRNA Isolation Kit AM1560 Life Technologies. Tissues were homogenised in 1.5 ml microfuge tube containing Lysis/Binding buffer provided in the mirVana™ miRNA Isolation using a hand held pestle. Total RNA containing small RNA were purified following the manufacturer protocol. Small RNA libraries were prepared for sequencing using TruSeq Small RNA Sample Preparation Kit RS 200 0012 Illumina Inc.. Libraries were prepared according to manufacturer instructions. Briefly 1µg of good quality Total RNA per sample was used as starting material. 5’ and 3’ RNA adapters were ligated to each RNA molecule before reverse transcription to create single stranded cDNA. The cDNA was then amplified with PCR using a common primer and a primer containing a unique index sequence. The resulting PCR reactions were electrophoresed on 6% Novex TBE PAGE Gel Life Technologies and bands corresponding to adapter ligated constructs derived from 22 30 nucleotides small RNA fragments were excised from the gel. The small RNA were purified from the excised gel and validated on High Sensitivity DNA chips on a Bioanalyser Agilent Technologies before sequencing.,GEO Accession:GSM1376621,miRNA-Seq,TRANSCRIPTOMIC,size fractionation,SINGLE,ILLUMINA,Illumina HiSeq 2000,,SRP041544,,,MZB008_CGATGT_L007_R1.fastq.gz,fastq,394620558.0,7737658.0,GSM1376621 r1,0:51,A:68213140;C:110690478;G:127130285;T:88550429;N:36226,51,,,,68213140,110690478,127130285,88550429,36226,SRX529133,SRS598830,SRA160430,GEO,"Expression and Signaling in Mesenchymal and Hematopoietic Stem Cells, Genome and Gene Expression Data Analysis Division, Bioinformatics Institute, A*STAR, Singapore",1,0.06427,,0.00768,,0.98859,,0.77971,,51,,B,,usable mapping rate,illumina,hiseq_era,unknown,size_fractionation,trueseq,bulk,unknown,unknown,,Singapore,2014-04-29,Undetermined,Embryo,Brain,Nervous System 38019,SRR1265737,SRX529132,SRS598829,SRP041544,PRJNA245824,Deep sequencing of small RNA facilitates tissue and sex associated microRNA discovery in zebrafish,GSE57169,Transcriptome Analysis,The role of microRNAs in gene regulation has been well established. The extent of miRNA regulation also increases with increasing genome complexity. Though the number of genes appear to be equal between human and zebrafish substantially less microRNAs have been discovered in zebrafish compared to human Release 19. It appears that most of the miRNAs in zebrafish are yet to be discovered. We sequenced small RNAs from brain gut liver ovary testis eye heart and embryo of zebrafish. In brain gut and liver sequencing was done in male and female separately. Majority of the sequenced reads 16 62% mapped to known miRNAs with the exception of ovary 5.7% and testis 7.8%. Using the miRNA discovery tool miRDeep2 we discovered novel miRNAs from the un annotated reads that ranged from 7.6 to 23.0% with exceptions of ovary 51.4% and testis 55.2%. The prediction tool identified a total of 459 novel pre miRNAs. We compared expression of miRNAs between different tissues and between males and females to identify tissue associated and sex associated miRNAs respectively. These miRNAs could serve as putative biomarkers for these tissues. The brain and liver had highest number of tissue associated 22 and sex associated 34 miRNAs respectively. This study comprehensively identifies tissue and sex associated miRNAs in zebrafish. Further we have discovered 459 novel pre miRNAs 30% seed homology to human miRNA as a genomic resource which can facilitate further investigations to understand miRNA mRNA gene regulatory networks in zebrafish which will have implications in understanding the function of human homologs. Overall design: Known miRNA profiling novel miRNA discovery and identification of tissue associated and sex associated miRNAs from sRNA deep sequencing data of different tissues and embryo of zebrafish in triplicate was carried out using the Illumina HiSeq 2000 platform.,,pubmed:26574018,,Male Brain Replicate 1 sRNAseq,GSM1376620,,source name:Male Brain|gender:male|tissue:Brain|genetic background:Wild type Singapore strain,Male Brain Replicate 1 sRNAseq,Illumina Casava 1.8.2 software used for basecalling. The sequenced reads were first subjected to adapter removal through the cutadapt program Martin 2011. The trimmed reads were then collapsed to remove redundancy and to obtain a unique sequence fasta file through the mapper module of miRDeep2 package Friedländer et al. 2012. The unique reads fasta file was then put through an elimination pipeline module Vaz et al. 2010 comprising of a series of sequence similarity searches with the annotated databases. At each step the reads were matched to an annotated database with a maximum of two mismatches. The matched reads were removed and the unmatched ones were further matched to another annotated database finally culminating into an un annotated pool of reads that served as a source of novel miRNAs and novel sRNAs. The known miRNA expression profile was generated by using the quantifier module of the miRDeep2 package that gives the read counts for the known miRNAs. The quantifier.pl command line used: perl quantifier.pl p m r t Zebrafish The raw reads expression profile generated for all the replicates of the samples were subjected to Trimmed Mean of M values TMM normalisation using the Bioconductor package edgeR Robinson et al. 2010. Genome build: ZV9 Supplementary files format and content: 1. 'Danio rerio known miRNA Rel19 profile Raw.txt': Tab delimited text file that includes the raw counts for the known mature miRNA miRBase Release 19. Supplementary files format and content: 2. 'Danio rerio known miRNA Rel19 profile Normalised.txt': Tab delimited text file that includes the Trimmed Mean of M values TMM normalised counts for the known mature miRNA miRBase Release 19. One of the replicate of Heart MZH008 failed to cluster with the other two replicates on basis of its known miRNA expression profile and hence was not used for further analysis.,Male Brain,N/A,Total RNA were extracted using mirVana™ miRNA Isolation Kit AM1560 Life Technologies. Tissues were homogenised in 1.5 ml microfuge tube containing Lysis/Binding buffer provided in the mirVana™ miRNA Isolation using a hand held pestle. Total RNA containing small RNA were purified following the manufacturer protocol. Small RNA libraries were prepared for sequencing using TruSeq Small RNA Sample Preparation Kit RS 200 0012 Illumina Inc.. Libraries were prepared according to manufacturer instructions. Briefly 1µg of good quality Total RNA per sample was used as starting material. 5’ and 3’ RNA adapters were ligated to each RNA molecule before reverse transcription to create single stranded cDNA. The cDNA was then amplified with PCR using a common primer and a primer containing a unique index sequence. The resulting PCR reactions were electrophoresed on 6% Novex TBE PAGE Gel Life Technologies and bands corresponding to adapter ligated constructs derived from 22 30 nucleotides small RNA fragments were excised from the gel. The small RNA were purified from the excised gel and validated on High Sensitivity DNA chips on a Bioanalyser Agilent Technologies before sequencing.,Fishes were purchased from a local supplier and acclimatized before tissue extraction.,gender:Male|tissue:Brain|genetic background:Wild type Singapore strain,GSM1376620,GSM1376620: Male Brain Replicate 1 sRNAseq; Danio rerio; miRNA Seq,GSM1376620,,1,Total RNA were extracted using mirVana™ miRNA Isolation Kit AM1560 Life Technologies. Tissues were homogenised in 1.5 ml microfuge tube containing Lysis/Binding buffer provided in the mirVana™ miRNA Isolation using a hand held pestle. Total RNA containing small RNA were purified following the manufacturer protocol. Small RNA libraries were prepared for sequencing using TruSeq Small RNA Sample Preparation Kit RS 200 0012 Illumina Inc.. Libraries were prepared according to manufacturer instructions. Briefly 1µg of good quality Total RNA per sample was used as starting material. 5’ and 3’ RNA adapters were ligated to each RNA molecule before reverse transcription to create single stranded cDNA. The cDNA was then amplified with PCR using a common primer and a primer containing a unique index sequence. The resulting PCR reactions were electrophoresed on 6% Novex TBE PAGE Gel Life Technologies and bands corresponding to adapter ligated constructs derived from 22 30 nucleotides small RNA fragments were excised from the gel. The small RNA were purified from the excised gel and validated on High Sensitivity DNA chips on a Bioanalyser Agilent Technologies before sequencing.,GEO Accession:GSM1376620,miRNA-Seq,TRANSCRIPTOMIC,size fractionation,SINGLE,ILLUMINA,Illumina HiSeq 2000,,SRP041544,,,MZB007_ATCACG_L007_R1.fastq.gz,fastq,329742489.0,6465539.0,GSM1376620 r1,0:51,A:60032454;C:91021987;G:104188224;T:74471433;N:28391,51,,,,60032454,91021987,104188224,74471433,28391,SRX529132,SRS598829,SRA160430,GEO,"Expression and Signaling in Mesenchymal and Hematopoietic Stem Cells, Genome and Gene Expression Data Analysis Division, Bioinformatics Institute, A*STAR, Singapore",1,0.00994,,0.00098,,0.99738,,0.77713,,51,,T,,under 1.2% mapping rate,illumina,hiseq_era,unknown,size_fractionation,trueseq,bulk,unknown,unknown,,Singapore,2014-04-29,Undetermined,Embryo,Brain,Nervous System 38020,SRR1265736,SRX529131,SRS598827,SRP041544,PRJNA245824,Deep sequencing of small RNA facilitates tissue and sex associated microRNA discovery in zebrafish,GSE57169,Transcriptome Analysis,The role of microRNAs in gene regulation has been well established. The extent of miRNA regulation also increases with increasing genome complexity. Though the number of genes appear to be equal between human and zebrafish substantially less microRNAs have been discovered in zebrafish compared to human Release 19. It appears that most of the miRNAs in zebrafish are yet to be discovered. We sequenced small RNAs from brain gut liver ovary testis eye heart and embryo of zebrafish. In brain gut and liver sequencing was done in male and female separately. Majority of the sequenced reads 16 62% mapped to known miRNAs with the exception of ovary 5.7% and testis 7.8%. Using the miRNA discovery tool miRDeep2 we discovered novel miRNAs from the un annotated reads that ranged from 7.6 to 23.0% with exceptions of ovary 51.4% and testis 55.2%. The prediction tool identified a total of 459 novel pre miRNAs. We compared expression of miRNAs between different tissues and between males and females to identify tissue associated and sex associated miRNAs respectively. These miRNAs could serve as putative biomarkers for these tissues. The brain and liver had highest number of tissue associated 22 and sex associated 34 miRNAs respectively. This study comprehensively identifies tissue and sex associated miRNAs in zebrafish. Further we have discovered 459 novel pre miRNAs 30% seed homology to human miRNA as a genomic resource which can facilitate further investigations to understand miRNA mRNA gene regulatory networks in zebrafish which will have implications in understanding the function of human homologs. Overall design: Known miRNA profiling novel miRNA discovery and identification of tissue associated and sex associated miRNAs from sRNA deep sequencing data of different tissues and embryo of zebrafish in triplicate was carried out using the Illumina HiSeq 2000 platform.,,pubmed:26574018,,Embryo Replicate 3 sRNAseq,GSM1376619,,source name:Embryo|tissue:Embryo|genetic background:Wild type Singapore strain,Embryo Replicate 3 sRNAseq,Illumina Casava 1.8.2 software used for basecalling. The sequenced reads were first subjected to adapter removal through the cutadapt program Martin 2011. The trimmed reads were then collapsed to remove redundancy and to obtain a unique sequence fasta file through the mapper module of miRDeep2 package Friedländer et al. 2012. The unique reads fasta file was then put through an elimination pipeline module Vaz et al. 2010 comprising of a series of sequence similarity searches with the annotated databases. At each step the reads were matched to an annotated database with a maximum of two mismatches. The matched reads were removed and the unmatched ones were further matched to another annotated database finally culminating into an un annotated pool of reads that served as a source of novel miRNAs and novel sRNAs. The known miRNA expression profile was generated by using the quantifier module of the miRDeep2 package that gives the read counts for the known miRNAs. The quantifier.pl command line used: perl quantifier.pl p m r t Zebrafish The raw reads expression profile generated for all the replicates of the samples were subjected to Trimmed Mean of M values TMM normalisation using the Bioconductor package edgeR Robinson et al. 2010. Genome build: ZV9 Supplementary files format and content: 1. 'Danio rerio known miRNA Rel19 profile Raw.txt': Tab delimited text file that includes the raw counts for the known mature miRNA miRBase Release 19. Supplementary files format and content: 2. 'Danio rerio known miRNA Rel19 profile Normalised.txt': Tab delimited text file that includes the Trimmed Mean of M values TMM normalised counts for the known mature miRNA miRBase Release 19. One of the replicate of Heart MZH008 failed to cluster with the other two replicates on basis of its known miRNA expression profile and hence was not used for further analysis.,Embryo,N/A,Total RNA were extracted using mirVana™ miRNA Isolation Kit AM1560 Life Technologies. Tissues were homogenised in 1.5 ml microfuge tube containing Lysis/Binding buffer provided in the mirVana™ miRNA Isolation using a hand held pestle. Total RNA containing small RNA were purified following the manufacturer protocol. Small RNA libraries were prepared for sequencing using TruSeq Small RNA Sample Preparation Kit RS 200 0012 Illumina Inc.. Libraries were prepared according to manufacturer instructions. Briefly 1µg of good quality Total RNA per sample was used as starting material. 5’ and 3’ RNA adapters were ligated to each RNA molecule before reverse transcription to create single stranded cDNA. The cDNA was then amplified with PCR using a common primer and a primer containing a unique index sequence. The resulting PCR reactions were electrophoresed on 6% Novex TBE PAGE Gel Life Technologies and bands corresponding to adapter ligated constructs derived from 22 30 nucleotides small RNA fragments were excised from the gel. The small RNA were purified from the excised gel and validated on High Sensitivity DNA chips on a Bioanalyser Agilent Technologies before sequencing.,Fishes were purchased from a local supplier and acclimatized before tissue extraction.,tissue:Embryo|genetic background:Wild type Singapore strain,GSM1376619,GSM1376619: Embryo Replicate 3 sRNAseq; Danio rerio; miRNA Seq,GSM1376619,,1,Total RNA were extracted using mirVana™ miRNA Isolation Kit AM1560 Life Technologies. Tissues were homogenised in 1.5 ml microfuge tube containing Lysis/Binding buffer provided in the mirVana™ miRNA Isolation using a hand held pestle. Total RNA containing small RNA were purified following the manufacturer protocol. Small RNA libraries were prepared for sequencing using TruSeq Small RNA Sample Preparation Kit RS 200 0012 Illumina Inc.. Libraries were prepared according to manufacturer instructions. Briefly 1µg of good quality Total RNA per sample was used as starting material. 5’ and 3’ RNA adapters were ligated to each RNA molecule before reverse transcription to create single stranded cDNA. The cDNA was then amplified with PCR using a common primer and a primer containing a unique index sequence. The resulting PCR reactions were electrophoresed on 6% Novex TBE PAGE Gel Life Technologies and bands corresponding to adapter ligated constructs derived from 22 30 nucleotides small RNA fragments were excised from the gel. The small RNA were purified from the excised gel and validated on High Sensitivity DNA chips on a Bioanalyser Agilent Technologies before sequencing.,GEO Accession:GSM1376619,miRNA-Seq,TRANSCRIPTOMIC,size fractionation,SINGLE,ILLUMINA,Illumina HiSeq 2000,,SRP041544,,,MZE006_CTTGTA_L008_R1.fastq.gz,fastq,1714180635.0,33611385.0,GSM1376619 r1,0:51,A:338559677;C:431494863;G:537012008;T:406904091;N:209996,51,,,,338559677,431494863,537012008,406904091,209996,SRX529131,SRS598827,SRA160430,GEO,"Expression and Signaling in Mesenchymal and Hematopoietic Stem Cells, Genome and Gene Expression Data Analysis Division, Bioinformatics Institute, A*STAR, Singapore",1,0.09044,,0.01776,,0.97782,,0.77023,,51,,B,,usable mapping rate,illumina,hiseq_era,unknown,size_fractionation,trueseq,bulk,unknown,unknown,,Singapore,2014-04-29,Undetermined,Embryo,Embryo Imprecise,All anatomical structures 38021,SRR1265735,SRX529130,SRS598828,SRP041544,PRJNA245824,Deep sequencing of small RNA facilitates tissue and sex associated microRNA discovery in zebrafish,GSE57169,Transcriptome Analysis,The role of microRNAs in gene regulation has been well established. The extent of miRNA regulation also increases with increasing genome complexity. Though the number of genes appear to be equal between human and zebrafish substantially less microRNAs have been discovered in zebrafish compared to human Release 19. It appears that most of the miRNAs in zebrafish are yet to be discovered. We sequenced small RNAs from brain gut liver ovary testis eye heart and embryo of zebrafish. In brain gut and liver sequencing was done in male and female separately. Majority of the sequenced reads 16 62% mapped to known miRNAs with the exception of ovary 5.7% and testis 7.8%. Using the miRNA discovery tool miRDeep2 we discovered novel miRNAs from the un annotated reads that ranged from 7.6 to 23.0% with exceptions of ovary 51.4% and testis 55.2%. The prediction tool identified a total of 459 novel pre miRNAs. We compared expression of miRNAs between different tissues and between males and females to identify tissue associated and sex associated miRNAs respectively. These miRNAs could serve as putative biomarkers for these tissues. The brain and liver had highest number of tissue associated 22 and sex associated 34 miRNAs respectively. This study comprehensively identifies tissue and sex associated miRNAs in zebrafish. Further we have discovered 459 novel pre miRNAs 30% seed homology to human miRNA as a genomic resource which can facilitate further investigations to understand miRNA mRNA gene regulatory networks in zebrafish which will have implications in understanding the function of human homologs. Overall design: Known miRNA profiling novel miRNA discovery and identification of tissue associated and sex associated miRNAs from sRNA deep sequencing data of different tissues and embryo of zebrafish in triplicate was carried out using the Illumina HiSeq 2000 platform.,,pubmed:26574018,,Embryo Replicate 2 sRNAseq,GSM1376618,,source name:Embryo|tissue:Embryo|genetic background:Wild type Singapore strain,Embryo Replicate 2 sRNAseq,Illumina Casava 1.8.2 software used for basecalling. The sequenced reads were first subjected to adapter removal through the cutadapt program Martin 2011. The trimmed reads were then collapsed to remove redundancy and to obtain a unique sequence fasta file through the mapper module of miRDeep2 package Friedländer et al. 2012. The unique reads fasta file was then put through an elimination pipeline module Vaz et al. 2010 comprising of a series of sequence similarity searches with the annotated databases. At each step the reads were matched to an annotated database with a maximum of two mismatches. The matched reads were removed and the unmatched ones were further matched to another annotated database finally culminating into an un annotated pool of reads that served as a source of novel miRNAs and novel sRNAs. The known miRNA expression profile was generated by using the quantifier module of the miRDeep2 package that gives the read counts for the known miRNAs. The quantifier.pl command line used: perl quantifier.pl p m r t Zebrafish The raw reads expression profile generated for all the replicates of the samples were subjected to Trimmed Mean of M values TMM normalisation using the Bioconductor package edgeR Robinson et al. 2010. Genome build: ZV9 Supplementary files format and content: 1. 'Danio rerio known miRNA Rel19 profile Raw.txt': Tab delimited text file that includes the raw counts for the known mature miRNA miRBase Release 19. Supplementary files format and content: 2. 'Danio rerio known miRNA Rel19 profile Normalised.txt': Tab delimited text file that includes the Trimmed Mean of M values TMM normalised counts for the known mature miRNA miRBase Release 19. One of the replicate of Heart MZH008 failed to cluster with the other two replicates on basis of its known miRNA expression profile and hence was not used for further analysis.,Embryo,N/A,Total RNA were extracted using mirVana™ miRNA Isolation Kit AM1560 Life Technologies. Tissues were homogenised in 1.5 ml microfuge tube containing Lysis/Binding buffer provided in the mirVana™ miRNA Isolation using a hand held pestle. Total RNA containing small RNA were purified following the manufacturer protocol. Small RNA libraries were prepared for sequencing using TruSeq Small RNA Sample Preparation Kit RS 200 0012 Illumina Inc.. Libraries were prepared according to manufacturer instructions. Briefly 1µg of good quality Total RNA per sample was used as starting material. 5’ and 3’ RNA adapters were ligated to each RNA molecule before reverse transcription to create single stranded cDNA. The cDNA was then amplified with PCR using a common primer and a primer containing a unique index sequence. The resulting PCR reactions were electrophoresed on 6% Novex TBE PAGE Gel Life Technologies and bands corresponding to adapter ligated constructs derived from 22 30 nucleotides small RNA fragments were excised from the gel. The small RNA were purified from the excised gel and validated on High Sensitivity DNA chips on a Bioanalyser Agilent Technologies before sequencing.,Fishes were purchased from a local supplier and acclimatized before tissue extraction.,tissue:Embryo|genetic background:Wild type Singapore strain,GSM1376618,GSM1376618: Embryo Replicate 2 sRNAseq; Danio rerio; miRNA Seq,GSM1376618,,1,Total RNA were extracted using mirVana™ miRNA Isolation Kit AM1560 Life Technologies. Tissues were homogenised in 1.5 ml microfuge tube containing Lysis/Binding buffer provided in the mirVana™ miRNA Isolation using a hand held pestle. Total RNA containing small RNA were purified following the manufacturer protocol. Small RNA libraries were prepared for sequencing using TruSeq Small RNA Sample Preparation Kit RS 200 0012 Illumina Inc.. Libraries were prepared according to manufacturer instructions. Briefly 1µg of good quality Total RNA per sample was used as starting material. 5’ and 3’ RNA adapters were ligated to each RNA molecule before reverse transcription to create single stranded cDNA. The cDNA was then amplified with PCR using a common primer and a primer containing a unique index sequence. The resulting PCR reactions were electrophoresed on 6% Novex TBE PAGE Gel Life Technologies and bands corresponding to adapter ligated constructs derived from 22 30 nucleotides small RNA fragments were excised from the gel. The small RNA were purified from the excised gel and validated on High Sensitivity DNA chips on a Bioanalyser Agilent Technologies before sequencing.,GEO Accession:GSM1376618,miRNA-Seq,TRANSCRIPTOMIC,size fractionation,SINGLE,ILLUMINA,Illumina HiSeq 2000,,SRP041544,,,MZE005_GGCTAC_L008_R1.fastq.gz,fastq,736486002.0,14440902.0,GSM1376618 r1,0:51,A:145757737;C:194417932;G:231157927;T:165060763;N:91643,51,,,,145757737,194417932,231157927,165060763,91643,SRX529130,SRS598828,SRA160430,GEO,"Expression and Signaling in Mesenchymal and Hematopoietic Stem Cells, Genome and Gene Expression Data Analysis Division, Bioinformatics Institute, A*STAR, Singapore",1,0.01133,,0.00234,,0.99515,,0.73854,,51,,T,,under 1.2% mapping rate,illumina,hiseq_era,unknown,size_fractionation,trueseq,bulk,unknown,unknown,,Singapore,2014-04-29,Undetermined,Embryo,Embryo Imprecise,All anatomical structures 38022,SRR1265734,SRX529129,SRS598825,SRP041544,PRJNA245824,Deep sequencing of small RNA facilitates tissue and sex associated microRNA discovery in zebrafish,GSE57169,Transcriptome Analysis,The role of microRNAs in gene regulation has been well established. The extent of miRNA regulation also increases with increasing genome complexity. Though the number of genes appear to be equal between human and zebrafish substantially less microRNAs have been discovered in zebrafish compared to human Release 19. It appears that most of the miRNAs in zebrafish are yet to be discovered. We sequenced small RNAs from brain gut liver ovary testis eye heart and embryo of zebrafish. In brain gut and liver sequencing was done in male and female separately. Majority of the sequenced reads 16 62% mapped to known miRNAs with the exception of ovary 5.7% and testis 7.8%. Using the miRNA discovery tool miRDeep2 we discovered novel miRNAs from the un annotated reads that ranged from 7.6 to 23.0% with exceptions of ovary 51.4% and testis 55.2%. The prediction tool identified a total of 459 novel pre miRNAs. We compared expression of miRNAs between different tissues and between males and females to identify tissue associated and sex associated miRNAs respectively. These miRNAs could serve as putative biomarkers for these tissues. The brain and liver had highest number of tissue associated 22 and sex associated 34 miRNAs respectively. This study comprehensively identifies tissue and sex associated miRNAs in zebrafish. Further we have discovered 459 novel pre miRNAs 30% seed homology to human miRNA as a genomic resource which can facilitate further investigations to understand miRNA mRNA gene regulatory networks in zebrafish which will have implications in understanding the function of human homologs. Overall design: Known miRNA profiling novel miRNA discovery and identification of tissue associated and sex associated miRNAs from sRNA deep sequencing data of different tissues and embryo of zebrafish in triplicate was carried out using the Illumina HiSeq 2000 platform.,,pubmed:26574018,,Embryo Replicate 1 sRNAseq,GSM1376617,,source name:Embryo|tissue:Embryo|genetic background:Wild type Singapore strain,Embryo Replicate 1 sRNAseq,Illumina Casava 1.8.2 software used for basecalling. The sequenced reads were first subjected to adapter removal through the cutadapt program Martin 2011. The trimmed reads were then collapsed to remove redundancy and to obtain a unique sequence fasta file through the mapper module of miRDeep2 package Friedländer et al. 2012. The unique reads fasta file was then put through an elimination pipeline module Vaz et al. 2010 comprising of a series of sequence similarity searches with the annotated databases. At each step the reads were matched to an annotated database with a maximum of two mismatches. The matched reads were removed and the unmatched ones were further matched to another annotated database finally culminating into an un annotated pool of reads that served as a source of novel miRNAs and novel sRNAs. The known miRNA expression profile was generated by using the quantifier module of the miRDeep2 package that gives the read counts for the known miRNAs. The quantifier.pl command line used: perl quantifier.pl p m r t Zebrafish The raw reads expression profile generated for all the replicates of the samples were subjected to Trimmed Mean of M values TMM normalisation using the Bioconductor package edgeR Robinson et al. 2010. Genome build: ZV9 Supplementary files format and content: 1. 'Danio rerio known miRNA Rel19 profile Raw.txt': Tab delimited text file that includes the raw counts for the known mature miRNA miRBase Release 19. Supplementary files format and content: 2. 'Danio rerio known miRNA Rel19 profile Normalised.txt': Tab delimited text file that includes the Trimmed Mean of M values TMM normalised counts for the known mature miRNA miRBase Release 19. One of the replicate of Heart MZH008 failed to cluster with the other two replicates on basis of its known miRNA expression profile and hence was not used for further analysis.,Embryo,N/A,Total RNA were extracted using mirVana™ miRNA Isolation Kit AM1560 Life Technologies. Tissues were homogenised in 1.5 ml microfuge tube containing Lysis/Binding buffer provided in the mirVana™ miRNA Isolation using a hand held pestle. Total RNA containing small RNA were purified following the manufacturer protocol. Small RNA libraries were prepared for sequencing using TruSeq Small RNA Sample Preparation Kit RS 200 0012 Illumina Inc.. Libraries were prepared according to manufacturer instructions. Briefly 1µg of good quality Total RNA per sample was used as starting material. 5’ and 3’ RNA adapters were ligated to each RNA molecule before reverse transcription to create single stranded cDNA. The cDNA was then amplified with PCR using a common primer and a primer containing a unique index sequence. The resulting PCR reactions were electrophoresed on 6% Novex TBE PAGE Gel Life Technologies and bands corresponding to adapter ligated constructs derived from 22 30 nucleotides small RNA fragments were excised from the gel. The small RNA were purified from the excised gel and validated on High Sensitivity DNA chips on a Bioanalyser Agilent Technologies before sequencing.,Fishes were purchased from a local supplier and acclimatized before tissue extraction.,tissue:Embryo|genetic background:Wild type Singapore strain,GSM1376617,GSM1376617: Embryo Replicate 1 sRNAseq; Danio rerio; miRNA Seq,GSM1376617,,1,Total RNA were extracted using mirVana™ miRNA Isolation Kit AM1560 Life Technologies. Tissues were homogenised in 1.5 ml microfuge tube containing Lysis/Binding buffer provided in the mirVana™ miRNA Isolation using a hand held pestle. Total RNA containing small RNA were purified following the manufacturer protocol. Small RNA libraries were prepared for sequencing using TruSeq Small RNA Sample Preparation Kit RS 200 0012 Illumina Inc.. Libraries were prepared according to manufacturer instructions. Briefly 1µg of good quality Total RNA per sample was used as starting material. 5’ and 3’ RNA adapters were ligated to each RNA molecule before reverse transcription to create single stranded cDNA. The cDNA was then amplified with PCR using a common primer and a primer containing a unique index sequence. The resulting PCR reactions were electrophoresed on 6% Novex TBE PAGE Gel Life Technologies and bands corresponding to adapter ligated constructs derived from 22 30 nucleotides small RNA fragments were excised from the gel. The small RNA were purified from the excised gel and validated on High Sensitivity DNA chips on a Bioanalyser Agilent Technologies before sequencing.,GEO Accession:GSM1376617,miRNA-Seq,TRANSCRIPTOMIC,size fractionation,SINGLE,ILLUMINA,Illumina HiSeq 2000,,SRP041544,,,MZE004_TAGCTT_L008_R1.fastq.gz,fastq,477426912.0,9361312.0,GSM1376617 r1,0:51,A:93534991;C:123428376;G:148877677;T:111524753;N:61115,51,,,,93534991,123428376,148877677,111524753,61115,SRX529129,SRS598825,SRA160430,GEO,"Expression and Signaling in Mesenchymal and Hematopoietic Stem Cells, Genome and Gene Expression Data Analysis Division, Bioinformatics Institute, A*STAR, Singapore",1,0.02061,,0.00461,,0.99379,,0.8448,,51,,B,,usable mapping rate,illumina,hiseq_era,unknown,size_fractionation,trueseq,bulk,unknown,unknown,,Singapore,2014-04-29,Undetermined,Embryo,Embryo Imprecise,All anatomical structures 38023,SRR1265744,SRX529128,SRS598826,SRP041544,PRJNA245824,Deep sequencing of small RNA facilitates tissue and sex associated microRNA discovery in zebrafish,GSE57169,Transcriptome Analysis,The role of microRNAs in gene regulation has been well established. The extent of miRNA regulation also increases with increasing genome complexity. Though the number of genes appear to be equal between human and zebrafish substantially less microRNAs have been discovered in zebrafish compared to human Release 19. It appears that most of the miRNAs in zebrafish are yet to be discovered. We sequenced small RNAs from brain gut liver ovary testis eye heart and embryo of zebrafish. In brain gut and liver sequencing was done in male and female separately. Majority of the sequenced reads 16 62% mapped to known miRNAs with the exception of ovary 5.7% and testis 7.8%. Using the miRNA discovery tool miRDeep2 we discovered novel miRNAs from the un annotated reads that ranged from 7.6 to 23.0% with exceptions of ovary 51.4% and testis 55.2%. The prediction tool identified a total of 459 novel pre miRNAs. We compared expression of miRNAs between different tissues and between males and females to identify tissue associated and sex associated miRNAs respectively. These miRNAs could serve as putative biomarkers for these tissues. The brain and liver had highest number of tissue associated 22 and sex associated 34 miRNAs respectively. This study comprehensively identifies tissue and sex associated miRNAs in zebrafish. Further we have discovered 459 novel pre miRNAs 30% seed homology to human miRNA as a genomic resource which can facilitate further investigations to understand miRNA mRNA gene regulatory networks in zebrafish which will have implications in understanding the function of human homologs. Overall design: Known miRNA profiling novel miRNA discovery and identification of tissue associated and sex associated miRNAs from sRNA deep sequencing data of different tissues and embryo of zebrafish in triplicate was carried out using the Illumina HiSeq 2000 platform.,,pubmed:26574018,,Male Gut Replicate 2 sRNAseq,GSM1376627,,source name:Male Gut|gender:male|tissue:Gut|genetic background:Wild type Singapore strain,Male Gut Replicate 2 sRNAseq,Illumina Casava 1.8.2 software used for basecalling. The sequenced reads were first subjected to adapter removal through the cutadapt program Martin 2011. The trimmed reads were then collapsed to remove redundancy and to obtain a unique sequence fasta file through the mapper module of miRDeep2 package Friedländer et al. 2012. The unique reads fasta file was then put through an elimination pipeline module Vaz et al. 2010 comprising of a series of sequence similarity searches with the annotated databases. At each step the reads were matched to an annotated database with a maximum of two mismatches. The matched reads were removed and the unmatched ones were further matched to another annotated database finally culminating into an un annotated pool of reads that served as a source of novel miRNAs and novel sRNAs. The known miRNA expression profile was generated by using the quantifier module of the miRDeep2 package that gives the read counts for the known miRNAs. The quantifier.pl command line used: perl quantifier.pl p m r t Zebrafish The raw reads expression profile generated for all the replicates of the samples were subjected to Trimmed Mean of M values TMM normalisation using the Bioconductor package edgeR Robinson et al. 2010. Genome build: ZV9 Supplementary files format and content: 1. 'Danio rerio known miRNA Rel19 profile Raw.txt': Tab delimited text file that includes the raw counts for the known mature miRNA miRBase Release 19. Supplementary files format and content: 2. 'Danio rerio known miRNA Rel19 profile Normalised.txt': Tab delimited text file that includes the Trimmed Mean of M values TMM normalised counts for the known mature miRNA miRBase Release 19. One of the replicate of Heart MZH008 failed to cluster with the other two replicates on basis of its known miRNA expression profile and hence was not used for further analysis.,Male Gut,N/A,Total RNA were extracted using mirVana™ miRNA Isolation Kit AM1560 Life Technologies. Tissues were homogenised in 1.5 ml microfuge tube containing Lysis/Binding buffer provided in the mirVana™ miRNA Isolation using a hand held pestle. Total RNA containing small RNA were purified following the manufacturer protocol. Small RNA libraries were prepared for sequencing using TruSeq Small RNA Sample Preparation Kit RS 200 0012 Illumina Inc.. Libraries were prepared according to manufacturer instructions. Briefly 1µg of good quality Total RNA per sample was used as starting material. 5’ and 3’ RNA adapters were ligated to each RNA molecule before reverse transcription to create single stranded cDNA. The cDNA was then amplified with PCR using a common primer and a primer containing a unique index sequence. The resulting PCR reactions were electrophoresed on 6% Novex TBE PAGE Gel Life Technologies and bands corresponding to adapter ligated constructs derived from 22 30 nucleotides small RNA fragments were excised from the gel. The small RNA were purified from the excised gel and validated on High Sensitivity DNA chips on a Bioanalyser Agilent Technologies before sequencing.,Fishes were purchased from a local supplier and acclimatized before tissue extraction.,gender:Male|tissue:Gut|genetic background:Wild type Singapore strain,GSM1376627,GSM1376627: Male Gut Replicate 2 sRNAseq; Danio rerio; miRNA Seq,GSM1376627,,1,Total RNA were extracted using mirVana™ miRNA Isolation Kit AM1560 Life Technologies. Tissues were homogenised in 1.5 ml microfuge tube containing Lysis/Binding buffer provided in the mirVana™ miRNA Isolation using a hand held pestle. Total RNA containing small RNA were purified following the manufacturer protocol. Small RNA libraries were prepared for sequencing using TruSeq Small RNA Sample Preparation Kit RS 200 0012 Illumina Inc.. Libraries were prepared according to manufacturer instructions. Briefly 1µg of good quality Total RNA per sample was used as starting material. 5’ and 3’ RNA adapters were ligated to each RNA molecule before reverse transcription to create single stranded cDNA. The cDNA was then amplified with PCR using a common primer and a primer containing a unique index sequence. The resulting PCR reactions were electrophoresed on 6% Novex TBE PAGE Gel Life Technologies and bands corresponding to adapter ligated constructs derived from 22 30 nucleotides small RNA fragments were excised from the gel. The small RNA were purified from the excised gel and validated on High Sensitivity DNA chips on a Bioanalyser Agilent Technologies before sequencing.,GEO Accession:GSM1376627,miRNA-Seq,TRANSCRIPTOMIC,size fractionation,SINGLE,ILLUMINA,Illumina HiSeq 2000,,SRP041544,,,MZG008_ACAGTG_L007_R1.fastq.gz,fastq,541064457.0,10609107.0,GSM1376627 r1,0:51,A:104798947;C:136927266;G:166713427;T:132575036;N:49781,51,,,,104798947,136927266,166713427,132575036,49781,SRX529128,SRS598826,SRA160430,GEO,"Expression and Signaling in Mesenchymal and Hematopoietic Stem Cells, Genome and Gene Expression Data Analysis Division, Bioinformatics Institute, A*STAR, Singapore",1,0.00679,,0.00072,,0.99655,,0.72132,,51,,T,,under 1.2% mapping rate,illumina,hiseq_era,unknown,size_fractionation,trueseq,bulk,unknown,unknown,,Singapore,2014-04-29,Undetermined,Embryo,Gut,Digestive System 38042,SRR1371226,SRX585640,SRS631986,SRP043064,PRJNA252044,Transcriptome Analysis Reveals a Comprehensive Regulatory Network Involved in the Zebrafish Model of Diamond Blackfan Anemia from RPL5 Deficiency [miRNA Seq],GSE58344,Transcriptome Analysis,In this study we generated a zebrafish model of DBA with RPL5 morphants and implemented high throughput RNA seq and miRNA seq to identify key genes lncRNAs and miRNAs during zebrafish development and hematopoiesis. We found that RPL5 is required for both primitive and definitive hematopoiesis processes that are partially mediated by the P53 pathway. Several genes such as cirh1a noc2l tars and nol6 and miRNAs such as dre miR 10a* dre miR 722 dre miR 737 and dre miR 142a 3p were significantly deregulated and these changes may play a crucial role in hematopoiesis ribosome biogenesis and development process. We also characterized the lncRNome in zebrafish with RPL5 deficiency. By constructing a comprehensive regulatory network we identified central node genes in the network connected to the P53 pathway almost all of which were targeted by the significantly deregulated miRNAs listed above. Our results therefore establish a regulatory network for critical genes and miRNAs involved in the RPL5 deficient zebrafish model and provide a comprehensive basis for the molecular pathogenesis of RPL5 mediated DBA and other ribosomopathies. Overall design: Determine the differences of miRNome between RPL5 deficient and MO control zebrafish embryos for understanding the complex molecular pathogenesis of mutant RPL5 mediated human diseases,parent bioproject:PRJNA252043,pubmed:26961822,,RPL5 MO [miRNA],GSM1408095,,tissue:embryo|genotype/variation:RPL5 morpholino knockdown|developmental stage:48hpf,RPL5 MO [miRNA],FASTX Toolkit clipper was used to remove sequencing adapters. The .fastq file was converted to a tab delimited file which held only the unique sequence read and its corresponding number of copies. The files were uploaded to DSAP http://dsap.cgu.edu.tw/index.htm for clustering of tags classification of non coding small RNAs and miRNAs basis on sequencing homology search against the Rfam and miRBase database respectively. The differential expressed miRNAs were detected by R package DEGseq using the output data of DSAP. Genome build: Zv9,embryo,Zebrafish embryos at the one cell stage were injected with the MOs using an Microinjector WPI SYS PV830. Based on initial injection trials 2 5 ng MO and control MO was chosen as the optimal concentration.,Immediately post harvesting 40 50 pooled embryos at 48 hpf from different experiment replicates were snap frozen in liquid nitrogen and stored at 80°C. Total RNA was extracted from the pooled embryos using TRIzol Invitrogen according to the manufacturer’s instructions. small RNA libraries were constructed using the Illumina miRNA Seq library preparation kit according to the manufacturer’s instructions.,Zebrafish embryos were kept in a 28.5℃ incubator to 48hpf,genotype/variation:RPL5 morpholino knockdown|developmental stage:48hpf,GSM1408095,GSM1408095: RPL5 MO [miRNA]; Danio rerio; miRNA Seq,GSM1408095,,1,Immediately post harvesting 40 50 pooled embryos at 48 hpf from different experiment replicates were snap frozen in liquid nitrogen and stored at 80°C. Total RNA was extracted from the pooled embryos using TRIzol Invitrogen according to the manufacturer’s instructions. small RNA libraries were constructed using the Illumina miRNA Seq library preparation kit according to the manufacturer’s instructions.,GEO Accession:GSM1408095,miRNA-Seq,TRANSCRIPTOMIC,size fractionation,SINGLE,ILLUMINA,Illumina HiSeq 2000,,SRP043064,,,s_7_IDX19_1.fq,fastq,1093234725.0,13496725.0,GSM1408095 r1,0:81,A:263908052;C:257987133;G:278889068;T:292410262;N:40210,81,,,,263908052,257987133,278889068,292410262,40210,SRX585640,SRS631986,SRA169796,GEO,Beijing Institute of Genomics,1,3e-05,,0.0,,0.99991,,0.5,,81,,T,,under 1.2% mapping rate,illumina,hiseq_era,unknown,size_fractionation,unknown,bulk,unknown,unknown,,China,2014-06-10,Hatching,Embryo,Embryo Imprecise,All anatomical structures 38043,SRR1371225,SRX585639,SRS631982,SRP043064,PRJNA252044,Transcriptome Analysis Reveals a Comprehensive Regulatory Network Involved in the Zebrafish Model of Diamond Blackfan Anemia from RPL5 Deficiency [miRNA Seq],GSE58344,Transcriptome Analysis,In this study we generated a zebrafish model of DBA with RPL5 morphants and implemented high throughput RNA seq and miRNA seq to identify key genes lncRNAs and miRNAs during zebrafish development and hematopoiesis. We found that RPL5 is required for both primitive and definitive hematopoiesis processes that are partially mediated by the P53 pathway. Several genes such as cirh1a noc2l tars and nol6 and miRNAs such as dre miR 10a* dre miR 722 dre miR 737 and dre miR 142a 3p were significantly deregulated and these changes may play a crucial role in hematopoiesis ribosome biogenesis and development process. We also characterized the lncRNome in zebrafish with RPL5 deficiency. By constructing a comprehensive regulatory network we identified central node genes in the network connected to the P53 pathway almost all of which were targeted by the significantly deregulated miRNAs listed above. Our results therefore establish a regulatory network for critical genes and miRNAs involved in the RPL5 deficient zebrafish model and provide a comprehensive basis for the molecular pathogenesis of RPL5 mediated DBA and other ribosomopathies. Overall design: Determine the differences of miRNome between RPL5 deficient and MO control zebrafish embryos for understanding the complex molecular pathogenesis of mutant RPL5 mediated human diseases,parent bioproject:PRJNA252043,pubmed:26961822,,morpholino control [miRNA],GSM1408094,,tissue:embryo|genotype/variation:control morpholino|developmental stage:48hpf,morpholino control [miRNA],FASTX Toolkit clipper was used to remove sequencing adapters. The .fastq file was converted to a tab delimited file which held only the unique sequence read and its corresponding number of copies. The files were uploaded to DSAP http://dsap.cgu.edu.tw/index.htm for clustering of tags classification of non coding small RNAs and miRNAs basis on sequencing homology search against the Rfam and miRBase database respectively. The differential expressed miRNAs were detected by R package DEGseq using the output data of DSAP. Genome build: Zv9,embryo,Zebrafish embryos at the one cell stage were injected with the MOs using an Microinjector WPI SYS PV830. Based on initial injection trials 2 5 ng MO and control MO was chosen as the optimal concentration.,Immediately post harvesting 40 50 pooled embryos at 48 hpf from different experiment replicates were snap frozen in liquid nitrogen and stored at 80°C. Total RNA was extracted from the pooled embryos using TRIzol Invitrogen according to the manufacturer’s instructions. small RNA libraries were constructed using the Illumina miRNA Seq library preparation kit according to the manufacturer’s instructions.,Zebrafish embryos were kept in a 28.5℃ incubator to 48hpf,genotype/variation:control morpholino|developmental stage:48hpf,GSM1408094,GSM1408094: morpholino control [miRNA]; Danio rerio; miRNA Seq,GSM1408094,,1,Immediately post harvesting 40 50 pooled embryos at 48 hpf from different experiment replicates were snap frozen in liquid nitrogen and stored at 80°C. Total RNA was extracted from the pooled embryos using TRIzol Invitrogen according to the manufacturer’s instructions. small RNA libraries were constructed using the Illumina miRNA Seq library preparation kit according to the manufacturer’s instructions.,GEO Accession:GSM1408094,miRNA-Seq,TRANSCRIPTOMIC,size fractionation,SINGLE,ILLUMINA,Illumina HiSeq 2000,,SRP043064,,,,,308681847.0,3810887.0,GSM1408094 r1,0:81,A:63686404;C:75263287;G:80056961;T:89650625;N:24570,81,,,,63686404,75263287,80056961,89650625,24570,SRX585639,SRS631982,SRA169796,GEO,Beijing Institute of Genomics,1,8e-05,,2e-05,,0.99991,,0.42857,,81,,T,,under 1.2% mapping rate,illumina,hiseq_era,unknown,size_fractionation,unknown,bulk,unknown,unknown,,China,2014-06-10,Hatching,Embryo,Embryo Imprecise,All anatomical structures 38252,SRR1593717,SRX718003,SRS713863,SRP048545,PRJNA262696,Adenylation of maternally inherited microRNAs by Wispy,GSE61931,Other,Early development depends heavily on accurate control of maternally inherited mRNAs and yet it remains unknown how maternal microRNAs miRNAs are regulated during maternal to zygotic transition MZT. We here find that maternal miRNAs are highly adenylated at their three prime ends in mature oocytes and early embryos. Pervasive adenylation is observed in oocytes of fly sea urchin and mouse indicating that maternal miRNA adenylation may be widely conserved in animals. We identify Wispy as the enzyme responsible for miRNA adenylation in flies. Wispy is known to be expressed specifically in oocytes and early embryos and function as a noncanonical polyA polymerase. Knockout of wispy abrogates miRNA adenylation and induces miRNA accumulation in fly eggs whereas overexpression of Wispy increases adenylation and reduces miRNA levels in S2 cells. Adenylation occurs on both the 5p and 3p miRNAs indicating that Wispy acts on miRNAs post Dicer processing. We further find that Wispy interacts with Ago1 through protein protein interaction which may allow the effective and selective adenylation of miRNAs. Thus adenylation may contribute to the clearance of maternally deposited miRNAs during MZT. Our work provides the first mechanistic insights into the regulation of maternal miRNAs and illustrates the importance of RNA tailing in development. Overall design: MiRNA expression and modification profile during early embryo development of fruit fly and zebra fish using high throughput sequencing,,pubmed:25454948,,Zeb fish Emb t 24h,GSM1517418,,tissue:embryo|genotype/variation:WT|developmental stage:embryo 24h,Zeb fish Emb t 24h,The base calling was done by Illumina Pipeline CASAVA v1.8.2. The 3′ adaptor sequences starting with “TGGAATTC” were removed and the sequence reads with short length <16 nt or artifacts e.g. long homopolymer or low quality Phred quality <30 in >15% of nucleotides were filtered out using the FASTX Toolkit http://hannonlab.cshl.edu/fastx toolkit/. Filtered sequence reads from Drosophila melanogaster and Danio rerio were aligned to dm3 and danRer7 reference genomes from UCSC respectively. The BWA short read aligner Li and Durbin 2009 version 0.7.5a r405 was used for the alignment with options of ‘18nt long seed length’ and ‘no allowed mismatches in the seed region. Each aligned read was classified using intersectBed in Bedtools Quinlan and Hall 2010 with annotations retrieved from RefSeq GtRNAdb FlyBase RepeatMasker Rfam and miRBase. We collected reads that perfectly match to the mature miRNA sequences annotated in miRBase as well as those that have 3’ additions to the perfectly matching sequences. Sample wise normalization of miRNA read counts was done by TMM normalization Robinson and Oshlack 2010 using edgR package http://www.bioconductor.org/packages/release/bioc/html/edgeR.html. Genome build: dm3 GCF 000001215.2; danRer7 GCA 000002035.2 Supplementary files format and content: *.classcount.csv : comma separated files containing sequencing statistics. Column class indicates each class of RNA. Column reads indicates number of sequence reads mapped on each class of RNA. Column proportion indicates the read count proportion to the total pre processed reads of each class of RNA; dme miRNA TMM.csv : comma separated files containing expression level of miRNAs normalized by TMM. Column hairpin indicates name of each mature miRNA. Rest of the columns indicates the normalized expression levels of each mature miRNA in each sample.,embryo,,Small RNA cDNA libraries were generated using TruSeq small RNA sample preparation kit Illumina according to manufacturer’s guide. For each library 10 ug of total RNA was separated on 15% urea PAGE. RNA of 15 29 nt was gel purified and then ligated to the 3’ adaptor with T4 RNA ligase2 truncated NEB. post gel purification of 3’ adaptor ligated RNA the 5’ adaptor ligation was performed using T4 RNA ligase1. The ligation product was reverse transcribed by SuperScript II Life Technologies and amplified by PCR with Phusion DNA polymerase. The cDNA libraries were sequenced by HiSeq 2000 or HiSeq 2500. Total RNA was extracted using TRIzol reagent for each experimental condition.,,genotype/variation:WT|developmental stage:embryo 24h,GSM1517418,GSM1517418: Zeb fish Emb t 24h; Danio rerio; miRNA Seq,GSM1517418,,1,Small RNA cDNA libraries were generated using TruSeq small RNA sample preparation kit Illumina according to manufacturer’s guide. For each library 10 ug of total RNA was separated on 15% urea PAGE. RNA of 15 29 nt was gel purified and then ligated to the 3’ adaptor with T4 RNA ligase2 truncated NEB. post gel purification of 3’ adaptor ligated RNA the 5’ adaptor ligation was performed using T4 RNA ligase1. The ligation product was reverse transcribed by SuperScript II Life Technologies and amplified by PCR with Phusion DNA polymerase. The cDNA libraries were sequenced by HiSeq 2000 or HiSeq 2500. Total RNA was extracted using TRIzol reagent for each experimental condition.,GEO Accession:GSM1517418,miRNA-Seq,TRANSCRIPTOMIC,size fractionation,SINGLE,ILLUMINA,Illumina HiSeq 2000,,SRP048545,,,Zeb_fish_Emb_t_24h_1.fastq.gz,fastq,2747798604.0,53878404.0,GSM1517418 r1,0:51,A:675086979;C:579211488;G:812576920;T:680856005;N:67212,51,,,,675086979,579211488,812576920,680856005,67212,SRX718003,SRS713863,SRA188351,GEO,"Narry Kim Lab, School of Biological Sciences, Seoul National University",1,0.0,,0.0,,1.0,,,,51,,T,,under 1.2% mapping rate,illumina,hiseq_era,3prime,size_fractionation,trueseq,bulk,unknown,unknown,,South Korea,2014-09-30,Pharyngula,Embryo,Embryo Imprecise,All anatomical structures 38253,SRR1593716,SRX718002,SRS713862,SRP048545,PRJNA262696,Adenylation of maternally inherited microRNAs by Wispy,GSE61931,Other,Early development depends heavily on accurate control of maternally inherited mRNAs and yet it remains unknown how maternal microRNAs miRNAs are regulated during maternal to zygotic transition MZT. We here find that maternal miRNAs are highly adenylated at their three prime ends in mature oocytes and early embryos. Pervasive adenylation is observed in oocytes of fly sea urchin and mouse indicating that maternal miRNA adenylation may be widely conserved in animals. We identify Wispy as the enzyme responsible for miRNA adenylation in flies. Wispy is known to be expressed specifically in oocytes and early embryos and function as a noncanonical polyA polymerase. Knockout of wispy abrogates miRNA adenylation and induces miRNA accumulation in fly eggs whereas overexpression of Wispy increases adenylation and reduces miRNA levels in S2 cells. Adenylation occurs on both the 5p and 3p miRNAs indicating that Wispy acts on miRNAs post Dicer processing. We further find that Wispy interacts with Ago1 through protein protein interaction which may allow the effective and selective adenylation of miRNAs. Thus adenylation may contribute to the clearance of maternally deposited miRNAs during MZT. Our work provides the first mechanistic insights into the regulation of maternal miRNAs and illustrates the importance of RNA tailing in development. Overall design: MiRNA expression and modification profile during early embryo development of fruit fly and zebra fish using high throughput sequencing,,pubmed:25454948,,Zeb fish Emb t 30m,GSM1517417,,tissue:embryo|genotype/variation:WT|developmental stage:embryo 30m,Zeb fish Emb t 30m,The base calling was done by Illumina Pipeline CASAVA v1.8.2. The 3′ adaptor sequences starting with “TGGAATTC” were removed and the sequence reads with short length <16 nt or artifacts e.g. long homopolymer or low quality Phred quality <30 in >15% of nucleotides were filtered out using the FASTX Toolkit http://hannonlab.cshl.edu/fastx toolkit/. Filtered sequence reads from Drosophila melanogaster and Danio rerio were aligned to dm3 and danRer7 reference genomes from UCSC respectively. The BWA short read aligner Li and Durbin 2009 version 0.7.5a r405 was used for the alignment with options of ‘18nt long seed length’ and ‘no allowed mismatches in the seed region. Each aligned read was classified using intersectBed in Bedtools Quinlan and Hall 2010 with annotations retrieved from RefSeq GtRNAdb FlyBase RepeatMasker Rfam and miRBase. We collected reads that perfectly match to the mature miRNA sequences annotated in miRBase as well as those that have 3’ additions to the perfectly matching sequences. Sample wise normalization of miRNA read counts was done by TMM normalization Robinson and Oshlack 2010 using edgR package http://www.bioconductor.org/packages/release/bioc/html/edgeR.html. Genome build: dm3 GCF 000001215.2; danRer7 GCA 000002035.2 Supplementary files format and content: *.classcount.csv : comma separated files containing sequencing statistics. Column class indicates each class of RNA. Column reads indicates number of sequence reads mapped on each class of RNA. Column proportion indicates the read count proportion to the total pre processed reads of each class of RNA; dme miRNA TMM.csv : comma separated files containing expression level of miRNAs normalized by TMM. Column hairpin indicates name of each mature miRNA. Rest of the columns indicates the normalized expression levels of each mature miRNA in each sample.,embryo,,Small RNA cDNA libraries were generated using TruSeq small RNA sample preparation kit Illumina according to manufacturer’s guide. For each library 10 ug of total RNA was separated on 15% urea PAGE. RNA of 15 29 nt was gel purified and then ligated to the 3’ adaptor with T4 RNA ligase2 truncated NEB. post gel purification of 3’ adaptor ligated RNA the 5’ adaptor ligation was performed using T4 RNA ligase1. The ligation product was reverse transcribed by SuperScript II Life Technologies and amplified by PCR with Phusion DNA polymerase. The cDNA libraries were sequenced by HiSeq 2000 or HiSeq 2500. Total RNA was extracted using TRIzol reagent for each experimental condition.,,genotype/variation:WT|developmental stage:embryo 30m,GSM1517417,GSM1517417: Zeb fish Emb t 30m; Danio rerio; miRNA Seq,GSM1517417,,1,Small RNA cDNA libraries were generated using TruSeq small RNA sample preparation kit Illumina according to manufacturer’s guide. For each library 10 ug of total RNA was separated on 15% urea PAGE. RNA of 15 29 nt was gel purified and then ligated to the 3’ adaptor with T4 RNA ligase2 truncated NEB. post gel purification of 3’ adaptor ligated RNA the 5’ adaptor ligation was performed using T4 RNA ligase1. The ligation product was reverse transcribed by SuperScript II Life Technologies and amplified by PCR with Phusion DNA polymerase. The cDNA libraries were sequenced by HiSeq 2000 or HiSeq 2500. Total RNA was extracted using TRIzol reagent for each experimental condition.,GEO Accession:GSM1517417,miRNA-Seq,TRANSCRIPTOMIC,size fractionation,SINGLE,ILLUMINA,Illumina HiSeq 2000,,SRP048545,,,Zeb_fish_Emb_t_30m_1.fastq.gz,fastq,3380715591.0,66288541.0,GSM1517417 r1,0:51,A:854040134;C:726173965;G:952338238;T:848081062;N:82192,51,,,,854040134,726173965,952338238,848081062,82192,SRX718002,SRS713862,SRA188351,GEO,"Narry Kim Lab, School of Biological Sciences, Seoul National University",1,1e-05,,0.0,,0.99997,,1.0,,51,,T,,under 1.2% mapping rate,illumina,hiseq_era,3prime,size_fractionation,trueseq,bulk,unknown,unknown,,South Korea,2014-09-30,Undetermined,Embryo,Embryo Imprecise,All anatomical structures 38254,SRR1593715,SRX718001,SRS713861,SRP048545,PRJNA262696,Adenylation of maternally inherited microRNAs by Wispy,GSE61931,Other,Early development depends heavily on accurate control of maternally inherited mRNAs and yet it remains unknown how maternal microRNAs miRNAs are regulated during maternal to zygotic transition MZT. We here find that maternal miRNAs are highly adenylated at their three prime ends in mature oocytes and early embryos. Pervasive adenylation is observed in oocytes of fly sea urchin and mouse indicating that maternal miRNA adenylation may be widely conserved in animals. We identify Wispy as the enzyme responsible for miRNA adenylation in flies. Wispy is known to be expressed specifically in oocytes and early embryos and function as a noncanonical polyA polymerase. Knockout of wispy abrogates miRNA adenylation and induces miRNA accumulation in fly eggs whereas overexpression of Wispy increases adenylation and reduces miRNA levels in S2 cells. Adenylation occurs on both the 5p and 3p miRNAs indicating that Wispy acts on miRNAs post Dicer processing. We further find that Wispy interacts with Ago1 through protein protein interaction which may allow the effective and selective adenylation of miRNAs. Thus adenylation may contribute to the clearance of maternally deposited miRNAs during MZT. Our work provides the first mechanistic insights into the regulation of maternal miRNAs and illustrates the importance of RNA tailing in development. Overall design: MiRNA expression and modification profile during early embryo development of fruit fly and zebra fish using high throughput sequencing,,pubmed:25454948,,Zeb fish Emb t 10m,GSM1517416,,tissue:embryo|genotype/variation:WT|developmental stage:embryo 10m,Zeb fish Emb t 10m,The base calling was done by Illumina Pipeline CASAVA v1.8.2. The 3′ adaptor sequences starting with “TGGAATTC” were removed and the sequence reads with short length <16 nt or artifacts e.g. long homopolymer or low quality Phred quality <30 in >15% of nucleotides were filtered out using the FASTX Toolkit http://hannonlab.cshl.edu/fastx toolkit/. Filtered sequence reads from Drosophila melanogaster and Danio rerio were aligned to dm3 and danRer7 reference genomes from UCSC respectively. The BWA short read aligner Li and Durbin 2009 version 0.7.5a r405 was used for the alignment with options of ‘18nt long seed length’ and ‘no allowed mismatches in the seed region. Each aligned read was classified using intersectBed in Bedtools Quinlan and Hall 2010 with annotations retrieved from RefSeq GtRNAdb FlyBase RepeatMasker Rfam and miRBase. We collected reads that perfectly match to the mature miRNA sequences annotated in miRBase as well as those that have 3’ additions to the perfectly matching sequences. Sample wise normalization of miRNA read counts was done by TMM normalization Robinson and Oshlack 2010 using edgR package http://www.bioconductor.org/packages/release/bioc/html/edgeR.html. Genome build: dm3 GCF 000001215.2; danRer7 GCA 000002035.2 Supplementary files format and content: *.classcount.csv : comma separated files containing sequencing statistics. Column class indicates each class of RNA. Column reads indicates number of sequence reads mapped on each class of RNA. Column proportion indicates the read count proportion to the total pre processed reads of each class of RNA; dme miRNA TMM.csv : comma separated files containing expression level of miRNAs normalized by TMM. Column hairpin indicates name of each mature miRNA. Rest of the columns indicates the normalized expression levels of each mature miRNA in each sample.,embryo,,Small RNA cDNA libraries were generated using TruSeq small RNA sample preparation kit Illumina according to manufacturer’s guide. For each library 10 ug of total RNA was separated on 15% urea PAGE. RNA of 15 29 nt was gel purified and then ligated to the 3’ adaptor with T4 RNA ligase2 truncated NEB. post gel purification of 3’ adaptor ligated RNA the 5’ adaptor ligation was performed using T4 RNA ligase1. The ligation product was reverse transcribed by SuperScript II Life Technologies and amplified by PCR with Phusion DNA polymerase. The cDNA libraries were sequenced by HiSeq 2000 or HiSeq 2500. Total RNA was extracted using TRIzol reagent for each experimental condition.,,genotype/variation:WT|developmental stage:embryo 10m,GSM1517416,GSM1517416: Zeb fish Emb t 10m; Danio rerio; miRNA Seq,GSM1517416,,1,Small RNA cDNA libraries were generated using TruSeq small RNA sample preparation kit Illumina according to manufacturer’s guide. For each library 10 ug of total RNA was separated on 15% urea PAGE. RNA of 15 29 nt was gel purified and then ligated to the 3’ adaptor with T4 RNA ligase2 truncated NEB. post gel purification of 3’ adaptor ligated RNA the 5’ adaptor ligation was performed using T4 RNA ligase1. The ligation product was reverse transcribed by SuperScript II Life Technologies and amplified by PCR with Phusion DNA polymerase. The cDNA libraries were sequenced by HiSeq 2000 or HiSeq 2500. Total RNA was extracted using TRIzol reagent for each experimental condition.,GEO Accession:GSM1517416,miRNA-Seq,TRANSCRIPTOMIC,size fractionation,SINGLE,ILLUMINA,Illumina HiSeq 2000,,SRP048545,,,Zeb_fish_Emb_t_10m_1.fastq.gz,fastq,3339395697.0,65478347.0,GSM1517416 r1,0:51,A:847877403;C:714050198;G:934084609;T:843302102;N:81385,51,,,,847877403,714050198,934084609,843302102,81385,SRX718001,SRS713861,SRA188351,GEO,"Narry Kim Lab, School of Biological Sciences, Seoul National University",1,0.0,,0.0,,1.0,,,,51,,T,,under 1.2% mapping rate,illumina,hiseq_era,3prime,size_fractionation,trueseq,bulk,unknown,unknown,,South Korea,2014-09-30,Undetermined,Embryo,Embryo Imprecise,All anatomical structures 38255,SRR1593714,SRX718000,SRS713860,SRP048545,PRJNA262696,Adenylation of maternally inherited microRNAs by Wispy,GSE61931,Other,Early development depends heavily on accurate control of maternally inherited mRNAs and yet it remains unknown how maternal microRNAs miRNAs are regulated during maternal to zygotic transition MZT. We here find that maternal miRNAs are highly adenylated at their three prime ends in mature oocytes and early embryos. Pervasive adenylation is observed in oocytes of fly sea urchin and mouse indicating that maternal miRNA adenylation may be widely conserved in animals. We identify Wispy as the enzyme responsible for miRNA adenylation in flies. Wispy is known to be expressed specifically in oocytes and early embryos and function as a noncanonical polyA polymerase. Knockout of wispy abrogates miRNA adenylation and induces miRNA accumulation in fly eggs whereas overexpression of Wispy increases adenylation and reduces miRNA levels in S2 cells. Adenylation occurs on both the 5p and 3p miRNAs indicating that Wispy acts on miRNAs post Dicer processing. We further find that Wispy interacts with Ago1 through protein protein interaction which may allow the effective and selective adenylation of miRNAs. Thus adenylation may contribute to the clearance of maternally deposited miRNAs during MZT. Our work provides the first mechanistic insights into the regulation of maternal miRNAs and illustrates the importance of RNA tailing in development. Overall design: MiRNA expression and modification profile during early embryo development of fruit fly and zebra fish using high throughput sequencing,,pubmed:25454948,,Zeb fish Emb t 0m,GSM1517415,,tissue:egg|genotype/variation:WT|developmental stage:embryo 0m,Zeb fish Emb t 0m,The base calling was done by Illumina Pipeline CASAVA v1.8.2. The 3′ adaptor sequences starting with “TGGAATTC” were removed and the sequence reads with short length <16 nt or artifacts e.g. long homopolymer or low quality Phred quality <30 in >15% of nucleotides were filtered out using the FASTX Toolkit http://hannonlab.cshl.edu/fastx toolkit/. Filtered sequence reads from Drosophila melanogaster and Danio rerio were aligned to dm3 and danRer7 reference genomes from UCSC respectively. The BWA short read aligner Li and Durbin 2009 version 0.7.5a r405 was used for the alignment with options of ‘18nt long seed length’ and ‘no allowed mismatches in the seed region. Each aligned read was classified using intersectBed in Bedtools Quinlan and Hall 2010 with annotations retrieved from RefSeq GtRNAdb FlyBase RepeatMasker Rfam and miRBase. We collected reads that perfectly match to the mature miRNA sequences annotated in miRBase as well as those that have 3’ additions to the perfectly matching sequences. Sample wise normalization of miRNA read counts was done by TMM normalization Robinson and Oshlack 2010 using edgR package http://www.bioconductor.org/packages/release/bioc/html/edgeR.html. Genome build: dm3 GCF 000001215.2; danRer7 GCA 000002035.2 Supplementary files format and content: *.classcount.csv : comma separated files containing sequencing statistics. Column class indicates each class of RNA. Column reads indicates number of sequence reads mapped on each class of RNA. Column proportion indicates the read count proportion to the total pre processed reads of each class of RNA; dme miRNA TMM.csv : comma separated files containing expression level of miRNAs normalized by TMM. Column hairpin indicates name of each mature miRNA. Rest of the columns indicates the normalized expression levels of each mature miRNA in each sample.,egg,,Small RNA cDNA libraries were generated using TruSeq small RNA sample preparation kit Illumina according to manufacturer’s guide. For each library 10 ug of total RNA was separated on 15% urea PAGE. RNA of 15 29 nt was gel purified and then ligated to the 3’ adaptor with T4 RNA ligase2 truncated NEB. post gel purification of 3’ adaptor ligated RNA the 5’ adaptor ligation was performed using T4 RNA ligase1. The ligation product was reverse transcribed by SuperScript II Life Technologies and amplified by PCR with Phusion DNA polymerase. The cDNA libraries were sequenced by HiSeq 2000 or HiSeq 2500. Total RNA was extracted using TRIzol reagent for each experimental condition.,,genotype/variation:WT|developmental stage:embryo 0m,GSM1517415,GSM1517415: Zeb fish Emb t 0m; Danio rerio; miRNA Seq,GSM1517415,,1,Small RNA cDNA libraries were generated using TruSeq small RNA sample preparation kit Illumina according to manufacturer’s guide. For each library 10 ug of total RNA was separated on 15% urea PAGE. RNA of 15 29 nt was gel purified and then ligated to the 3’ adaptor with T4 RNA ligase2 truncated NEB. post gel purification of 3’ adaptor ligated RNA the 5’ adaptor ligation was performed using T4 RNA ligase1. The ligation product was reverse transcribed by SuperScript II Life Technologies and amplified by PCR with Phusion DNA polymerase. The cDNA libraries were sequenced by HiSeq 2000 or HiSeq 2500. Total RNA was extracted using TRIzol reagent for each experimental condition.,GEO Accession:GSM1517415,miRNA-Seq,TRANSCRIPTOMIC,size fractionation,SINGLE,ILLUMINA,Illumina HiSeq 2000,,SRP048545,,,Zeb_fish_Emb_t_0m_1.fastq.gz,fastq,3135589293.0,61482143.0,GSM1517415 r1,0:51,A:800912828;C:671516191;G:883139862;T:779944407;N:76005,51,,,,800912828,671516191,883139862,779944407,76005,SRX718000,SRS713860,SRA188351,GEO,"Narry Kim Lab, School of Biological Sciences, Seoul National University",1,0.0,,0.0,,1.0,,,,51,,T,,under 1.2% mapping rate,illumina,hiseq_era,3prime,size_fractionation,trueseq,bulk,unknown,unknown,,South Korea,2014-09-30,Undetermined,Embryo,Embryo Imprecise,All anatomical structures 38256,SRR1596061,SRX719267,SRS715451,SRP048591,PRJNA262865,Identification and Characterization of MicroRNAs in Zebrafish Spermatozoa by Illumina Sequencing,GSE61984,Other,MicroRNAs miRNAs are involved in nearly every biological process examined to date. Mounting evidence show that some spermatozoa specific miRNAs play important roles in the regulation of spermatogenesis and germ cells development but little is known of the exact identity and function of miRNA in sperm cells or their potential involvement in spermatogenesis and germ cells development. Here we investigated the spermatozoa miRNA profiles using illumina deep sequencing combined with bioinformatic analysis using zebrafish as a model system. Deep sequencing of small RNAs yielded 12 million raw reads from zebrafish spermatozoa. Analysis showed that the noncoding RNA of the spermatozoa included tRNA rRNA snRNA snoRNA and miRNA. By mapping to the zebrafish genome we identified 400 novel and 204 conserved miRNAs which could be grouped into 104 families including zebrafish specific families such as mir 731 mir 724 mir 725 mir 729 and mir 2185. We report the first characterization of the miRNAs profiling in zebrafish spermatozoa. The obtained spermatozoa miRNAs profiling will serve as valuable resources to systematically study spermatogenesis in fish and vertebrate. Overall design: Examination of small RNA populations in zebrafish spermatozoa,,pubmed:26418264,,zebrafish sperm,GSM1517943,,tissue:Zebrafish Spermatozoa|cell type:Spermatozoa|strain:AB wild type,zebrafish sperm,The sequencing data were analyzed as described previously by Xu et al 2014. The low quality reads were filtered to remove reads without xxx 3’ adaptor 5’ adaptor contaminant reads reads without xxx insert fragment reads containing polyA stretches and reads of less than 18 nt. Next the remaining sequences clean reads were mapped to the zebrafish genome using SOAP with a tolerance of one mismatch to analyze their distribution The sequences were aligned against known miRNA precursors and mature miRNAs deposited in the miRBase 20.0 to identify conserved miRNAs. The clean reads were compared against the sRNAs rRNAs tRNAs snRNAs snoRNA miRNA deposited in the GenBank and Rfam http://www.sanger.ac.uk/resources/databases/rfam.html databases to annotate the sRNA sequences. Because some sRNA tags might map to more than one category we used priority rules to ensure that every unique sRNA was mapped to only one annotation as follows: rRNA etc. GenBank >Rfam >known miRNA >repeat >exon >intron. Genome build: miRBase 20.0 Supplementary files format and content: zebrafish miRNA count.txt include RPKM values of each known miRNA in this sample,Zebrafish Spermatozoa,,Total RNA was isolated from sample using Trizol reagent Invitrogen USA in accordance with the manufacturer’s protocol. RNA integrity was confirmed using the 2100 Bioanalyzer Agilent Technologies. RNA samples that passed the quality check were sent to BGI Shenzhen China for sRNA library construction and Solexa sequencing using standard protocols on the Illumina Hiseq 2000 platform.,,cell type:Spermatozoa|strain:AB wild type,GSM1517943,GSM1517943: zebrafish sperm; Danio rerio; miRNA Seq,GSM1517943,,1,Total RNA was isolated from sample using Trizol reagent Invitrogen USA in accordance with the manufacturer’s protocol. RNA integrity was confirmed using the 2100 Bioanalyzer Agilent Technologies. RNA samples that passed the quality check were sent to BGI Shenzhen China for sRNA library construction and Solexa sequencing using standard protocols on the Illumina Hiseq 2000 platform.,GEO Accession:GSM1517943,miRNA-Seq,TRANSCRIPTOMIC,size fractionation,SINGLE,ILLUMINA,Illumina HiSeq 2000,,SRP048591,,,zebrafish-sperm5.fq.bz2,fastq,588000000.0,12000000.0,GSM1517943 r1,0:49,A:122673394;C:136175879;G:140377184;T:188702650;N:70893,49,,,,122673394,136175879,140377184,188702650,70893,SRX719267,SRS715451,SRA188511,GEO,SUN YAT-SEN UNIVERSITY,1,2e-05,,0.0,,0.99997,,1.0,,49,,T,,under 1.2% mapping rate,illumina,hiseq_era,unknown,size_fractionation,unknown,bulk,unknown,unknown,,China,2014-10-02,Zygote,Embryo,Oocyte,Reproductive System 38321,SRR1732707,SRX822003,SRS801698,SRP051503,PRJNA271079,Discovering miRNA regulatory networks in Holt Oram Syndrome using a Zebrafish model [miRNA seq],GSE64465,Transcriptome Analysis,To investigate the complex regulatory networks disrupted in Holt Oram Syndrome we characterized genome widely the miRNA and mRNA expression profiles in WT and Tbx5 depleted zebrafish embryos at two development time points 24 hpf and 48 hpf. Overall design: The zebrafish gene Tbx5a was silenced with antisense morpholino oligonucleotide MO Tbx5a against the TSS of the gene. A MO CT was used in CT samples. 1 5ng morpholinos were injected into the yolk of 1 cell stage embryos and total RNA extracted from xxx embryos collected at xxx and 48hpf.The Zebrafish wild type AB strain line was used.,parent bioproject:PRJNA271069,pubmed:27471727,,Emb MO Ct 48hpf,GSM1571860,,source name:Embryos MO Ct 48hpf|tissue:embryo|strain:AB|treatment:Mo Ct injection|developmental stage:48hpf,Emb MO Ct 48hpf,Basecalls performed using CASAVA v1.8 Sequenced reads were trimmed for adaptor sequence. Reads were algned to miRBase v20 using miRExpress v2.1.3 Normalized abundance measurements from DESeq Genome build: miRBase v20 Supplementary files format and content: tab delimited text file includes normalized read count per sample,Embryos MO Ct 48hpf,1 cell stage zebrafish embryos were microinjected with 1 5 ng of morpholino against dre Tbx5a MO Tbx5a or with 1 5 ng of control morpholino,For each library 1 μg of total RNA was submitted to the small RNA v1.5 sample preparation protocol llumina Inc. San Diego USA cDNA was amplified with 13 PCR cycle. cDNAs with size between 90 to 100 nt were purified independently for each sample by 10% Novex TBE polyacrylamide gel electrophoresis Invitrogen and eluted into 300 µl elution buffer Illumina for at least 2 hours at room temperature to enrich for molecules containing inserts in the range of 18–33 nt.,Zebrafish was raised and maintained under standard laboratory conditions Westerfileld M zebrafish book in Zebrafish Housing Systems Tecniplast Varese Italy.,tissue:embryo|strain:AB|treatment:Mo Ct injection|developmental stage:48hpf,GSM1571860,GSM1571860: Emb MO Ct 48hpf; Danio rerio; miRNA Seq,GSM1571860,,1,For each library 1 μg of total RNA was submitted to the small RNA v1.5 sample preparation protocol llumina Inc. San Diego USA cDNA was amplified with 13 PCR cycle. cDNAs with size between 90 to 100 nt were purified independently for each sample by 10% Novex TBE polyacrylamide gel electrophoresis Invitrogen and eluted into 300 µl elution buffer Illumina for at least 2 hours at room temperature to enrich for molecules containing inserts in the range of 18–33 nt.,GEO Accession:GSM1571860,miRNA-Seq,TRANSCRIPTOMIC,size fractionation,SINGLE,ILLUMINA,Illumina Genome Analyzer IIx,,SRP051503,,,L.T.fq.gz,fastq,338322717.0,11175516.0,GSM1571860 r1,0:30.27 1:0,A:72708202;C:91561004;G:102921744;T:71122135;N:9632,30,0,,,72708202,91561004,102921744,71122135,9632,SRX822003,SRS801698,SRA221043,GEO,"IIT, CNR",1,0.86712,,0.22408,,0.92725,,0.50365,,23,,B,,usable mapping rate,illumina,early_illumina,unknown,size_fractionation,unknown,bulk,unknown,unknown,,Italy,2014-12-23,Hatching,Embryo,Embryo Imprecise,All anatomical structures 38322,SRR1732706,SRX822002,SRS801697,SRP051503,PRJNA271079,Discovering miRNA regulatory networks in Holt Oram Syndrome using a Zebrafish model [miRNA seq],GSE64465,Transcriptome Analysis,To investigate the complex regulatory networks disrupted in Holt Oram Syndrome we characterized genome widely the miRNA and mRNA expression profiles in WT and Tbx5 depleted zebrafish embryos at two development time points 24 hpf and 48 hpf. Overall design: The zebrafish gene Tbx5a was silenced with antisense morpholino oligonucleotide MO Tbx5a against the TSS of the gene. A MO CT was used in CT samples. 1 5ng morpholinos were injected into the yolk of 1 cell stage embryos and total RNA extracted from xxx embryos collected at xxx and 48hpf.The Zebrafish wild type AB strain line was used.,parent bioproject:PRJNA271069,pubmed:27471727,,Emb MO Tbx5a 48hpf,GSM1571859,,source name:Embryos MO Tbx5a 48hpf|tissue:embryo|strain:AB|treatment:Mo MOTbx5a injection|developmental stage:48hpf,Emb MO Tbx5a 48hpf,Basecalls performed using CASAVA v1.8 Sequenced reads were trimmed for adaptor sequence. Reads were algned to miRBase v20 using miRExpress v2.1.3 Normalized abundance measurements from DESeq Genome build: miRBase v20 Supplementary files format and content: tab delimited text file includes normalized read count per sample,Embryos MO Tbx5a 48hpf,1 cell stage zebrafish embryos were microinjected with 1 5 ng of morpholino against dre Tbx5a MO Tbx5a or with 1 5 ng of control morpholino,For each library 1 μg of total RNA was submitted to the small RNA v1.5 sample preparation protocol llumina Inc. San Diego USA cDNA was amplified with 13 PCR cycle. cDNAs with size between 90 to 100 nt were purified independently for each sample by 10% Novex TBE polyacrylamide gel electrophoresis Invitrogen and eluted into 300 µl elution buffer Illumina for at least 2 hours at room temperature to enrich for molecules containing inserts in the range of 18–33 nt.,Zebrafish was raised and maintained under standard laboratory conditions Westerfileld M zebrafish book in Zebrafish Housing Systems Tecniplast Varese Italy.,tissue:embryo|strain:AB|treatment:Mo MOTbx5a injection|developmental stage:48hpf,GSM1571859,GSM1571859: Emb MO Tbx5a 48hpf; Danio rerio; miRNA Seq,GSM1571859,,1,For each library 1 μg of total RNA was submitted to the small RNA v1.5 sample preparation protocol llumina Inc. San Diego USA cDNA was amplified with 13 PCR cycle. cDNAs with size between 90 to 100 nt were purified independently for each sample by 10% Novex TBE polyacrylamide gel electrophoresis Invitrogen and eluted into 300 µl elution buffer Illumina for at least 2 hours at room temperature to enrich for molecules containing inserts in the range of 18–33 nt.,GEO Accession:GSM1571859,miRNA-Seq,TRANSCRIPTOMIC,size fractionation,SINGLE,ILLUMINA,Illumina Genome Analyzer IIx,,SRP051503,,,I.T.fq.gz,fastq,262219132.0,10137926.0,GSM1571859 r1,0:25.87 1:0,A:60415193;C:62111082;G:75168882;T:64515539;N:8436,25,0,,,60415193,62111082,75168882,64515539,8436,SRX822002,SRS801697,SRA221043,GEO,"IIT, CNR",1,0.52287,,0.13984,,0.8788,,0.6354,,30,,B,,usable mapping rate,illumina,early_illumina,unknown,size_fractionation,unknown,bulk,unknown,unknown,,Italy,2014-12-23,Hatching,Embryo,Embryo Imprecise,All anatomical structures 38323,SRR1732705,SRX822001,SRS801696,SRP051503,PRJNA271079,Discovering miRNA regulatory networks in Holt Oram Syndrome using a Zebrafish model [miRNA seq],GSE64465,Transcriptome Analysis,To investigate the complex regulatory networks disrupted in Holt Oram Syndrome we characterized genome widely the miRNA and mRNA expression profiles in WT and Tbx5 depleted zebrafish embryos at two development time points 24 hpf and 48 hpf. Overall design: The zebrafish gene Tbx5a was silenced with antisense morpholino oligonucleotide MO Tbx5a against the TSS of the gene. A MO CT was used in CT samples. 1 5ng morpholinos were injected into the yolk of 1 cell stage embryos and total RNA extracted from xxx embryos collected at xxx and 48hpf.The Zebrafish wild type AB strain line was used.,parent bioproject:PRJNA271069,pubmed:27471727,,Emb MO Ct 24hpf rep2,GSM1571858,,source name:Embryos MO Ct 24hpf replicate2|tissue:embryo|strain:AB|treatment:Mo Ct injection|developmental stage:24hpf,Emb MO Ct 24hpf rep2,Basecalls performed using CASAVA v1.8 Sequenced reads were trimmed for adaptor sequence. Reads were algned to miRBase v20 using miRExpress v2.1.3 Normalized abundance measurements from DESeq Genome build: miRBase v20 Supplementary files format and content: tab delimited text file includes normalized read count per sample,Embryos MO Ct 24hpf replicate2,1 cell stage zebrafish embryos were microinjected with 1 5 ng of morpholino against dre Tbx5a MO Tbx5a or with 1 5 ng of control morpholino,For each library 1 μg of total RNA was submitted to the small RNA v1.5 sample preparation protocol llumina Inc. San Diego USA cDNA was amplified with 13 PCR cycle. cDNAs with size between 90 to 100 nt were purified independently for each sample by 10% Novex TBE polyacrylamide gel electrophoresis Invitrogen and eluted into 300 µl elution buffer Illumina for at least 2 hours at room temperature to enrich for molecules containing inserts in the range of 18–33 nt.,Zebrafish was raised and maintained under standard laboratory conditions Westerfileld M zebrafish book in Zebrafish Housing Systems Tecniplast Varese Italy.,tissue:embryo|strain:AB|treatment:Mo Ct injection|developmental stage:24hpf,GSM1571858,GSM1571858: Emb MO Ct 24hpf rep2; Danio rerio; miRNA Seq,GSM1571858,,1,For each library 1 μg of total RNA was submitted to the small RNA v1.5 sample preparation protocol llumina Inc. San Diego USA cDNA was amplified with 13 PCR cycle. cDNAs with size between 90 to 100 nt were purified independently for each sample by 10% Novex TBE polyacrylamide gel electrophoresis Invitrogen and eluted into 300 µl elution buffer Illumina for at least 2 hours at room temperature to enrich for molecules containing inserts in the range of 18–33 nt.,GEO Accession:GSM1571858,miRNA-Seq,TRANSCRIPTOMIC,size fractionation,SINGLE,ILLUMINA,Illumina Genome Analyzer IIx,,SRP051503,,,H.T.fq.gz,fastq,281909951.0,10806197.0,GSM1571858 r1,0:26.09 1:0,A:66055828;C:65184020;G:81768559;T:68892445;N:9099,26,0,,,66055828,65184020,81768559,68892445,9099,SRX822001,SRS801696,SRA221043,GEO,"IIT, CNR",1,0.56084,,0.23499,,0.86819,,0.64638,,22,,B,,usable mapping rate,illumina,early_illumina,unknown,size_fractionation,unknown,bulk,unknown,unknown,,Italy,2014-12-23,Pharyngula,Embryo,Embryo Imprecise,All anatomical structures 38324,SRR1732704,SRX822000,SRS801695,SRP051503,PRJNA271079,Discovering miRNA regulatory networks in Holt Oram Syndrome using a Zebrafish model [miRNA seq],GSE64465,Transcriptome Analysis,To investigate the complex regulatory networks disrupted in Holt Oram Syndrome we characterized genome widely the miRNA and mRNA expression profiles in WT and Tbx5 depleted zebrafish embryos at two development time points 24 hpf and 48 hpf. Overall design: The zebrafish gene Tbx5a was silenced with antisense morpholino oligonucleotide MO Tbx5a against the TSS of the gene. A MO CT was used in CT samples. 1 5ng morpholinos were injected into the yolk of 1 cell stage embryos and total RNA extracted from xxx embryos collected at xxx and 48hpf.The Zebrafish wild type AB strain line was used.,parent bioproject:PRJNA271069,pubmed:27471727,,Emb MO Ct 24hpf rep1,GSM1571857,,source name:Embryos MO Ct 24hpf replicate1|tissue:embryo|strain:AB|treatment:Mo Ct injection|developmental stage:24hpf,Emb MO Ct 24hpf rep1,Basecalls performed using CASAVA v1.8 Sequenced reads were trimmed for adaptor sequence. Reads were algned to miRBase v20 using miRExpress v2.1.3 Normalized abundance measurements from DESeq Genome build: miRBase v20 Supplementary files format and content: tab delimited text file includes normalized read count per sample,Embryos MO Ct 24hpf replicate1,1 cell stage zebrafish embryos were microinjected with 1 5 ng of morpholino against dre Tbx5a MO Tbx5a or with 1 5 ng of control morpholino,For each library 1 μg of total RNA was submitted to the small RNA v1.5 sample preparation protocol llumina Inc. San Diego USA cDNA was amplified with 13 PCR cycle. cDNAs with size between 90 to 100 nt were purified independently for each sample by 10% Novex TBE polyacrylamide gel electrophoresis Invitrogen and eluted into 300 µl elution buffer Illumina for at least 2 hours at room temperature to enrich for molecules containing inserts in the range of 18–33 nt.,Zebrafish was raised and maintained under standard laboratory conditions Westerfileld M zebrafish book in Zebrafish Housing Systems Tecniplast Varese Italy.,tissue:embryo|strain:AB|treatment:Mo Ct injection|developmental stage:24hpf,GSM1571857,GSM1571857: Emb MO Ct 24hpf rep1; Danio rerio; miRNA Seq,GSM1571857,,1,For each library 1 μg of total RNA was submitted to the small RNA v1.5 sample preparation protocol llumina Inc. San Diego USA cDNA was amplified with 13 PCR cycle. cDNAs with size between 90 to 100 nt were purified independently for each sample by 10% Novex TBE polyacrylamide gel electrophoresis Invitrogen and eluted into 300 µl elution buffer Illumina for at least 2 hours at room temperature to enrich for molecules containing inserts in the range of 18–33 nt.,GEO Accession:GSM1571857,miRNA-Seq,TRANSCRIPTOMIC,size fractionation,SINGLE,ILLUMINA,Illumina Genome Analyzer IIx,,SRP051503,,,G.T.fq.gz,fastq,541546124.0,19319535.0,GSM1571857 r1,0:28.03 1:0,A:126881333;C:133281439;G:163930613;T:117435553;N:17186,28,0,,,126881333,133281439,163930613,117435553,17186,SRX822000,SRS801695,SRA221043,GEO,"IIT, CNR",1,0.53436,,0.20796,,0.9009,,0.55394,,34,,B,,usable mapping rate,illumina,early_illumina,unknown,size_fractionation,unknown,bulk,unknown,unknown,,Italy,2014-12-23,Pharyngula,Embryo,Embryo Imprecise,All anatomical structures 38325,SRR1732703,SRX821999,SRS801694,SRP051503,PRJNA271079,Discovering miRNA regulatory networks in Holt Oram Syndrome using a Zebrafish model [miRNA seq],GSE64465,Transcriptome Analysis,To investigate the complex regulatory networks disrupted in Holt Oram Syndrome we characterized genome widely the miRNA and mRNA expression profiles in WT and Tbx5 depleted zebrafish embryos at two development time points 24 hpf and 48 hpf. Overall design: The zebrafish gene Tbx5a was silenced with antisense morpholino oligonucleotide MO Tbx5a against the TSS of the gene. A MO CT was used in CT samples. 1 5ng morpholinos were injected into the yolk of 1 cell stage embryos and total RNA extracted from xxx embryos collected at xxx and 48hpf.The Zebrafish wild type AB strain line was used.,parent bioproject:PRJNA271069,pubmed:27471727,,Emb MO Tbx5a 24hpf rep2,GSM1571856,,source name:Embryos MO Tbx5a 24hpf replicate2|tissue:embryo|strain:AB|treatment:Mo MOTbx5a injection|developmental stage:24hpf,Emb MO Tbx5a 24hpf rep2,Basecalls performed using CASAVA v1.8 Sequenced reads were trimmed for adaptor sequence. Reads were algned to miRBase v20 using miRExpress v2.1.3 Normalized abundance measurements from DESeq Genome build: miRBase v20 Supplementary files format and content: tab delimited text file includes normalized read count per sample,Embryos MO Tbx5a 24hpf replicate2,1 cell stage zebrafish embryos were microinjected with 1 5 ng of morpholino against dre Tbx5a MO Tbx5a or with 1 5 ng of control morpholino,For each library 1 μg of total RNA was submitted to the small RNA v1.5 sample preparation protocol llumina Inc. San Diego USA cDNA was amplified with 13 PCR cycle. cDNAs with size between 90 to 100 nt were purified independently for each sample by 10% Novex TBE polyacrylamide gel electrophoresis Invitrogen and eluted into 300 µl elution buffer Illumina for at least 2 hours at room temperature to enrich for molecules containing inserts in the range of 18–33 nt.,Zebrafish was raised and maintained under standard laboratory conditions Westerfileld M zebrafish book in Zebrafish Housing Systems Tecniplast Varese Italy.,tissue:embryo|strain:AB|treatment:Mo MOTbx5a injection|developmental stage:24hpf,GSM1571856,GSM1571856: Emb MO Tbx5a 24hpf rep2; Danio rerio; miRNA Seq,GSM1571856,,1,For each library 1 μg of total RNA was submitted to the small RNA v1.5 sample preparation protocol llumina Inc. San Diego USA cDNA was amplified with 13 PCR cycle. cDNAs with size between 90 to 100 nt were purified independently for each sample by 10% Novex TBE polyacrylamide gel electrophoresis Invitrogen and eluted into 300 µl elution buffer Illumina for at least 2 hours at room temperature to enrich for molecules containing inserts in the range of 18–33 nt.,GEO Accession:GSM1571856,miRNA-Seq,TRANSCRIPTOMIC,size fractionation,SINGLE,ILLUMINA,Illumina Genome Analyzer IIx,,SRP051503,,,F.T.fq.gz,fastq,362513460.0,13684345.0,GSM1571856 r1,0:26.49 1:0,A:82709386;C:83987865;G:107681867;T:88122760;N:11582,26,0,,,82709386,83987865,107681867,88122760,11582,SRX821999,SRS801694,SRA221043,GEO,"IIT, CNR",1,0.58925,,0.2498,,0.86821,,0.65549,,30,,B,,usable mapping rate,illumina,early_illumina,unknown,size_fractionation,unknown,bulk,unknown,unknown,,Italy,2014-12-23,Pharyngula,Embryo,Embryo Imprecise,All anatomical structures 38326,SRR1732702,SRX821998,SRS801693,SRP051503,PRJNA271079,Discovering miRNA regulatory networks in Holt Oram Syndrome using a Zebrafish model [miRNA seq],GSE64465,Transcriptome Analysis,To investigate the complex regulatory networks disrupted in Holt Oram Syndrome we characterized genome widely the miRNA and mRNA expression profiles in WT and Tbx5 depleted zebrafish embryos at two development time points 24 hpf and 48 hpf. Overall design: The zebrafish gene Tbx5a was silenced with antisense morpholino oligonucleotide MO Tbx5a against the TSS of the gene. A MO CT was used in CT samples. 1 5ng morpholinos were injected into the yolk of 1 cell stage embryos and total RNA extracted from xxx embryos collected at xxx and 48hpf.The Zebrafish wild type AB strain line was used.,parent bioproject:PRJNA271069,pubmed:27471727,,Emb MO Tbx5a 24hpf rep1,GSM1571855,,source name:Embryos MO Tbx5a 24hpf replicate1|tissue:embryo|strain:AB|treatment:Mo MOTbx5a injection|developmental stage:24hpf,Emb MO Tbx5a 24hpf rep1,Basecalls performed using CASAVA v1.8 Sequenced reads were trimmed for adaptor sequence. Reads were algned to miRBase v20 using miRExpress v2.1.3 Normalized abundance measurements from DESeq Genome build: miRBase v20 Supplementary files format and content: tab delimited text file includes normalized read count per sample,Embryos MO Tbx5a 24hpf replicate1,1 cell stage zebrafish embryos were microinjected with 1 5 ng of morpholino against dre Tbx5a MO Tbx5a or with 1 5 ng of control morpholino,For each library 1 μg of total RNA was submitted to the small RNA v1.5 sample preparation protocol llumina Inc. San Diego USA cDNA was amplified with 13 PCR cycle. cDNAs with size between 90 to 100 nt were purified independently for each sample by 10% Novex TBE polyacrylamide gel electrophoresis Invitrogen and eluted into 300 µl elution buffer Illumina for at least 2 hours at room temperature to enrich for molecules containing inserts in the range of 18–33 nt.,Zebrafish was raised and maintained under standard laboratory conditions Westerfileld M zebrafish book in Zebrafish Housing Systems Tecniplast Varese Italy.,tissue:embryo|strain:AB|treatment:Mo MOTbx5a injection|developmental stage:24hpf,GSM1571855,GSM1571855: Emb MO Tbx5a 24hpf rep1; Danio rerio; miRNA Seq,GSM1571855,,1,For each library 1 μg of total RNA was submitted to the small RNA v1.5 sample preparation protocol llumina Inc. San Diego USA cDNA was amplified with 13 PCR cycle. cDNAs with size between 90 to 100 nt were purified independently for each sample by 10% Novex TBE polyacrylamide gel electrophoresis Invitrogen and eluted into 300 µl elution buffer Illumina for at least 2 hours at room temperature to enrich for molecules containing inserts in the range of 18–33 nt.,GEO Accession:GSM1571855,miRNA-Seq,TRANSCRIPTOMIC,size fractionation,SINGLE,ILLUMINA,Illumina Genome Analyzer IIx,,SRP051503,,,E.T.fq.gz,fastq,399134579.0,13766109.0,GSM1571855 r1,0:28.99 1:0,A:88725326;C:102855219;G:121123717;T:86418155;N:12162,28,0,,,88725326,102855219,121123717,86418155,12162,SRX821998,SRS801693,SRA221043,GEO,"IIT, CNR",1,0.66472,,0.25948,,0.89623,,0.54913,,34,,B,,usable mapping rate,illumina,early_illumina,unknown,size_fractionation,unknown,bulk,unknown,unknown,,Italy,2014-12-23,Pharyngula,Embryo,Embryo Imprecise,All anatomical structures 39620,SRR1873560,SRX915240,SRS870234,SRP056014,PRJNA277780,Identification of small non coding RNAs in zebrafish,GSE66718,Transcriptome Analysis,MicroRNAs miRNAs are a new class of small RNAs of approximately 22 nucleotides in length that control eukaryotic gene expression by fine tuning mRNA translation. They regulate a wide variety of biological processes namely developmental timing cell differentiation cell proliferation immune response and infection. For this reason their identification is essential to understand eukaryotic biology. Their small size low abundance and high instability complicated early identification; however cloning/Sanger sequencing and new generation genome sequencing approaches overcame most technical hurdles and are being used for rapid miRNA identification in many eukaryotes. We have applied 454 DNA pyrosequencing technology to miRNA discovery in zebrafish Danio rerio. For this a series of cDNA libraries were prepared from small non coding RNAs isolated at different embryonic time points and from fully developed organs. Each cDNA library was tagged with specific sequences and was sequenced using the Roche FLX genome sequencer. This approach retrieved 90% of the 192 miRNAs previously identified by cloning/Sanger sequencing and bioinformatics and 25 novel miRNAs were predicted. Overall design: Small RNA libraries were prepared from different zebrafish developmental stages namely 24 hpf 72 hpf 96 hpf 5 dpf dpf 45 dpf young adult and from adult brain eyes gills heart skin and fins.,,pubmed:26694924,,24hpf,GSM1630504,,source name:24 hpf embryos|strain/background:AB|genotype/variation:wild type|tissue:whole body|developmental stage:embryo|age:24hpf,24hpf,Base calling and quality trimming of sequence reads was carried out using the Genome Sequencer FLX software. Raw images were processed to remove background noise and the data was normalized. TAGs and adapter sequences of zebrafish developmental and adult tissues samples were then identified and trimmed and those reads with correct TAGs and adapters > 15 nt were retrieved for downstream analysis using the miRDeep software https://www.mdc berlin.de/8551903/en/. miRDeep aligned the sequences against the zebrafish genome using megaBlast with seed length set at 12 the traditional blast output and minimum local identity set at 100. The blast output was then parsed for miRDeep uploading and aligned sequences with a maximum of 2 mismatches in the three prime end were retrieved. Reads that matched more than 10 different genome loci were discarded and only those with one or more alignments were kept and using the remaining alignments as guidelines the potential precursors were excised from the genome. The secondary structure of putative precursors was predicted using RNAfold and signatures were created by retaining reads that aligned perfectly with those putative precursors to generate the signature format. Finally miRDeep predicted miRNAs by discarding non plausible Dicer products and scoring plausible ones. To assess seed conservation plausible Dicer processing sequences were blasted against a local version of mature miRNAs from miRBase 12.0 that lacked zebrafish miRNA sequences. Borderline miRNA candidates were also resolved by determining their relative stability using Randfold. To distinguish between novel and known miRNAs selected pre miRNAs were blasted against Danio rerio stem loop sequences miRBase and those that did not produce any or produced imperfect alignments were scored as novel miRNAs. Pairs of signatures and structures were used to estimate the number of false positives by randomly permutation using miRDeep. To overcome the inherent lack of sensitivity of miRDeep novel transcripts encoding miRNAs predicted by bioinformatics were retrieved from Ensembl 5.2 using BioMart and from literature predictions. These sequences were then used to perform a megaBlast search against our data with seed length set at 12. The transcripts with perfect matches and alignment length larger than 18 nt were kept for further processing. These transcripts were then compared with the mature miRNAs present in miRBase 12.0 and those that produced imperfect alignments or did not produce alignments were considered new miRNAs. Read numbers were normalized as described by Chen and colleagues Genes & Development 2005 19:1288 1293 and a miRNA expression profile using identical number of reads for each sample was generated. The number of reads between samples was normalized as indicated below: Expression Reads = [1000 x NRmiRNAXY]/ TNRmiRNAsY where NRmiRNAXY is the number of reads of miRNAX X = any miRNA in sample Y and TNRmiRNAsY is the total number of miRNAs in sample Y. 1000 is an arbitrary number of reads. The data was transformed into log2 scale to build the heat map using the MeV 4.0 software package http://www.tm4.org/mev.html. Genome build: Zv8 Supplementary files format and content: Tab delimited text files include the miRNA IDs sequences and respective raw counts post data processing for each sample.,24 hpf embryos,,"100 μg of total RNA from each sample was isolated using TRIzol® and small RNAs were enriched by differential precipitation using polyethylene glycol. Total RNAs were fractioned using 12% denaturing PAGE and small RNAs of 15 30 nt were gel isolated using Gel Filtration cartridges from Edge Biosystems. For cDNA synthesis the small RNA molecules previously isolated were first ligated to a three prime adapter AMP five primep five primep/CTGTAGGCACCATCAATdi deoxyC three prime in absence of ATP and gel excised in the range of 35 and 50 nt. A second ligation was performed with the five prime adapter ""Nelson's linker"" five primeATCGTrArGrGrCrArCrCrUrGrArArA three prime for 1 hour at 37°C followed by phenol extraction. First strand cDNA synthesis was then performed using a specific three prime primer and Superscript™ III reverse transcriptase Invitrogen. RNase H treated cDNA was PCR amplified with adapter specific primers. Each sample contained a specific TAG constituted by 3 nucleotides as detailed next. 24hpf ATC; 72hpf ACT; 96hpf CAG; 5dpf ATG; 45dpf CCG; entire adult GTA; brain CGG; Heart CTG; Eyes GCT; fins GTT; skin TAC; gills TCC. PCR products were then run on 10% denaturing PAGE containing 7 M urea and the corresponding band 100 nt was eluted from the gel with Probe Elution Buffer from Ambion at 37°C overnight. These products were used for the emulsion PCR. Parallel DNA pyrosequencing was performed using the Genome Sequencer FLX Roche following established protocols for DNA library sequencing.",Wild type AB zebrafish strain was maintained at 28ºC on a 14 h light/10 h dark cycle.,strain/background:AB|genotype/variation:wild type|tissue:whole body|developmental stage:embryo|age:24hpf,GSM1630504,GSM1630504: 24hpf; Danio rerio; miRNA Seq,GSM1630504,,1,"100 μg of total RNA from each sample was isolated using TRIzol® and small RNAs were enriched by differential precipitation using polyethylene glycol. Total RNAs were fractioned using 12% denaturing PAGE and small RNAs of 15 30 nt were gel isolated using Gel Filtration cartridges from Edge Biosystems. For cDNA synthesis the small RNA molecules previously isolated were first ligated to a three prime adapter AMP five primep five primep/CTGTAGGCACCATCAATdi deoxyC three prime in absence of ATP and gel excised in the range of 35 and 50 nt. A second ligation was performed with the five prime adapter ""Nelson's linker"" five primeATCGTrArGrGrCrArCrCrUrGrArArA three prime for 1 hour at 37°C followed by phenol extraction. First strand cDNA synthesis was then performed using a specific three prime primer and Superscript™ III reverse transcriptase Invitrogen. RNase H treated cDNA was PCR amplified with adapter specific primers. Each sample contained a specific TAG constituted by 3 nucleotides as detailed next. 24hpf ATC; 72hpf ACT; 96hpf CAG; 5dpf ATG; 45dpf CCG; entire adult GTA; brain CGG; Heart CTG; Eyes GCT; fins GTT; skin TAC; gills TCC. PCR products were then run on 10% denaturing PAGE containing 7 M urea and the corresponding band 100 nt was eluted from the gel with Probe Elution Buffer from Ambion at 37°C overnight. These products were used for the emulsion PCR. Parallel DNA pyrosequencing was performed using the Genome Sequencer FLX Roche following established protocols for DNA library sequencing.",GEO Accession:GSM1630504,miRNA-Seq,TRANSCRIPTOMIC,size fractionation,SINGLE,LS454,454 GS FLX,,SRP056014,,,,,6831.0,129.0,GSM1630504 r1,0:4 1:48.95,A:1947;C:1747;G:1688;T:1424;N:25,4,48,,,1947,1747,1688,1424,25,SRX915240,SRS870234,SRA246117,GEO,University of Aveiro,1,0.0,,0.0,,1.0,,,,46,,T,,under 1.2% mapping rate,legacy,early,3prime,size_fractionation,unknown,bulk,other_seq,454,,Portugal,2015-03-09,Pharyngula,Embryo,Trunk,Surface Structure 39703,SRR2057604,SRX1054376,SRS957216,SRP059278,PRJNA286201,MicroRNA 19a replacement partially rescues fin and cardiac defects in zebrafish model of Holt Oram syndrome [miRNA seq],GSE69690,Transcriptome Analysis,The regulative role of miRNAs in Holt Oram Syndrome is investigated in a zebrafish model. Overall design: The zebrafish gene Tbx5a was silenced with antisense morpholino oligonucleotide MO Tbx5a against the TSS of the gene. A MO CT was used in CT sample. 1.5ng morpholinos were injected into the yolk of 1 cell stage embryos and total RNA extracted from xxx embryos collected at xxxhpf.The Zebrafish wild type AB strain line was used.,parent bioproject:PRJNA286199,pubmed:26657204,,Emb MO Ct 48hpf [miRNA seq],GSM1707594,,source name:Embryos MO Ct 48hpf|strain background:AB|infected with:MO C|tissue:embryo|developmental stage:48hpf,Emb MO Ct 48hpf [miRNA seq],Basecalls performed using GA Pipeline v1.5 Sequenced reads were filtered for low quality and trimmed for three prime adaptor sequence. Reads were algned to mirBase v16.0 using CLC workbench Expression values were normalized to reads per million rpm Supplementary files format and content: tab delimited text file includes normalized read count per sample,Embryos MO Ct 48hpf,1 cell stage zebrafish embryos were microinjected with 1 5 ng of morpholino against dre Tbx5a MO Tbx5a or with 1 5 ng of control morpholino,For each library 1 μg of total RNA was submitted to the small RNA v1.5 sample preparation protocol llumina Inc. San Diego USA cDNA was amplified with 13 PCR cycle. cDNAs with size between 90 to 100 nt were purified independently for each sample by 10% Novex TBE polyacrylamide gel electrophoresis Invitrogen and eluted into 300 µl elution buffer Illumina for at least 2 hours at room temperature to enrich for molecules containing inserts in the range of 18–33 nt.,Zebrafish was raised and maintained under standard laboratory conditions Westerfileld M zebrafish book in Zebrafish Housing Systems Tecniplast Varese Italy.,strain background:AB|infected with:MO C|tissue:embryo|developmental stage:48hpf,GSM1707594,GSM1707594: Emb MO Ct 48hpf [miRNA seq]; Danio rerio; miRNA Seq,GSM1707594,,1,For each library 1 μg of total RNA was submitted to the small RNA v1.5 sample preparation protocol llumina Inc. San Diego USA cDNA was amplified with 13 PCR cycle. cDNAs with size between 90 to 100 nt were purified independently for each sample by 10% Novex TBE polyacrylamide gel electrophoresis Invitrogen and eluted into 300 µl elution buffer Illumina for at least 2 hours at room temperature to enrich for molecules containing inserts in the range of 18–33 nt.,GEO Accession:GSM1707594,miRNA-Seq,TRANSCRIPTOMIC,size fractionation,SINGLE,ILLUMINA,Illumina Genome Analyzer IIx,,SRP059278,,,Dre_FC_4.fq.gz,fastq,1033068440.0,25826711.0,GSM1707594 r1,0:40,A:417902194;C:195580811;G:153264728;T:266159736;N:160971,40,,,,417902194,195580811,153264728,266159736,160971,SRX1054376,SRS957216,SRA272222,GEO,"IIT, CNR",1,0.05412,,0.01319,,0.97693,,0.22489,,40,,B,,usable mapping rate,illumina,early_illumina,unknown,size_fractionation,unknown,bulk,unknown,unknown,,Italy,2015-06-09,Hatching,Embryo,Embryo Imprecise,All anatomical structures 39704,SRR2057603,SRX1054375,SRS957217,SRP059278,PRJNA286201,MicroRNA 19a replacement partially rescues fin and cardiac defects in zebrafish model of Holt Oram syndrome [miRNA seq],GSE69690,Transcriptome Analysis,The regulative role of miRNAs in Holt Oram Syndrome is investigated in a zebrafish model. Overall design: The zebrafish gene Tbx5a was silenced with antisense morpholino oligonucleotide MO Tbx5a against the TSS of the gene. A MO CT was used in CT sample. 1.5ng morpholinos were injected into the yolk of 1 cell stage embryos and total RNA extracted from xxx embryos collected at xxxhpf.The Zebrafish wild type AB strain line was used.,parent bioproject:PRJNA286199,pubmed:26657204,,Emb MO Tbx5a 48hpf [miRNA seq],GSM1707593,,source name:Embryos MO Tbx5a 48hpf|strain background:AB|infected with:MO Tbx5a|tissue:embryo|developmental stage:48hpf,Emb MO Tbx5a 48hpf [miRNA seq],Basecalls performed using GA Pipeline v1.5 Sequenced reads were filtered for low quality and trimmed for three prime adaptor sequence. Reads were algned to mirBase v16.0 using CLC workbench Expression values were normalized to reads per million rpm Supplementary files format and content: tab delimited text file includes normalized read count per sample,Embryos MO Tbx5a 48hpf,1 cell stage zebrafish embryos were microinjected with 1 5 ng of morpholino against dre Tbx5a MO Tbx5a or with 1 5 ng of control morpholino,For each library 1 μg of total RNA was submitted to the small RNA v1.5 sample preparation protocol llumina Inc. San Diego USA cDNA was amplified with 13 PCR cycle. cDNAs with size between 90 to 100 nt were purified independently for each sample by 10% Novex TBE polyacrylamide gel electrophoresis Invitrogen and eluted into 300 µl elution buffer Illumina for at least 2 hours at room temperature to enrich for molecules containing inserts in the range of 18–33 nt.,Zebrafish was raised and maintained under standard laboratory conditions Westerfileld M zebrafish book in Zebrafish Housing Systems Tecniplast Varese Italy.,strain background:AB|infected with:MO Tbx5a|tissue:embryo|developmental stage:48hpf,GSM1707593,GSM1707593: Emb MO Tbx5a 48hpf [miRNA seq]; Danio rerio; miRNA Seq,GSM1707593,,1,For each library 1 μg of total RNA was submitted to the small RNA v1.5 sample preparation protocol llumina Inc. San Diego USA cDNA was amplified with 13 PCR cycle. cDNAs with size between 90 to 100 nt were purified independently for each sample by 10% Novex TBE polyacrylamide gel electrophoresis Invitrogen and eluted into 300 µl elution buffer Illumina for at least 2 hours at room temperature to enrich for molecules containing inserts in the range of 18–33 nt.,GEO Accession:GSM1707593,miRNA-Seq,TRANSCRIPTOMIC,size fractionation,SINGLE,ILLUMINA,Illumina Genome Analyzer IIx,,SRP059278,,,Dre_FC_3.fq.gz,fastq,1038855840.0,25971396.0,GSM1707593 r1,0:40,A:430923990;C:193052690;G:149627446;T:265119627;N:132087,40,,,,430923990,193052690,149627446,265119627,132087,SRX1054375,SRS957217,SRA272222,GEO,"IIT, CNR",1,0.01858,,0.00322,,0.98699,,0.23156,,40,,B,,usable mapping rate,illumina,early_illumina,unknown,size_fractionation,unknown,bulk,unknown,unknown,,Italy,2015-06-09,Hatching,Embryo,Embryo Imprecise,All anatomical structures 39760,SRR2127901,SRX1118699,SRS1011434,SRP061587,PRJNA290964,Next Generation Sequencing Facilitates Quantitative Analysis of Ochratoxin A treated with 6 hpf 48 hpf zebrafish embryos,GSE71346,Transcriptome Analysis,To investigate the effects of ochratoxin A on microRNA expressions in zebrafish embryos. Overall design: Ochratoxin A mediated miRNA expression in zebrafish embryos which were exposed from 6 hpf ttwo xxx hpf with doses of 0 and 0.5 micromolar.,,pubmed:30090366,,6 48 0.5µM OTA [miRNA seq],GSM1832841,,tissue:embryo control|strain:Wild Type AB line|developemental stage:6 hpf embryos|exposed to:0.5 µM ochratoxin A from 6 hpf to 48 hpf,6 48 0.5µM OTA [miRNA seq],Initially the sequences generated went through a filtering process to obtain qualified reads. ConDeTri was implemented to trim or remove the reads according to the quality score. Qualified reads post filtering low quality data were analyzed using miRDeep2 to clip the 3′ adapter sequence and discarding reads shorter than 18 nucleotides before aligning reads to the Zebrafish genome from UCSC. Only reads that mapped perfectly to the genome five or less times were used for miRNA detection since miRNAs usually map to few genomic locations. MiRDeep2 estimates expression levels of known miRNAs and also identifies novel miRNAs. Genome build: GCF 000002035.4 Supplementary files format and content: bed file for the location of miRNA mapped to chromosome,embryo control,6 hpf embryos were treated with ochratoxin A 0.5 mM till 48 hpf.,Total RNA was extracted by Trizol® Reagent Invitrogen USA according to the instruction manual. RNA purified was quantified at OD260nm by using a ND 1000 spectrophotometer Nanodrop Technology USA and qualitated by using a Bioanalyzer 2100 Agilent Technology USA with RNA 6000 labchip kit Agilent Technologies USA. The small RNA library construction and deep sequencing was carried out at biotechnology company Welgene Taipei Taiwan. Samples were prepared using Illumina sample preparation kit according to the TruSeq Small RNA Sample Preparation Guide.The 3′ and 5′ adaptors were ligated to total RNA and reverse transcription followed by PCR amplification. The enriched cDNA constructs were size fractionated and purified on a 6% polyacrylamide gel electrophoresis and the bands containing the 18 40 nucleotide RNA fragments 140 155 nucleotide in length with both adapters.  Libraries were sequenced on an Illumina GAIIx instrument 50 cycle single read . Sequencing data was processed with the Illumina software,zebrafish embryos were selected at 6 hph with normal development.,strain:Wild Type AB line|developemental stage:6 hpf embryos|exposed to:0.5 µM ochratoxin A from 6 hpf to 48 hpf,GSM1832841,GSM1832841: 6 48 0.5µM OTA [miRNA seq]; Danio rerio; miRNA Seq,GSM1832841,,1,Total RNA was extracted by Trizol® Reagent Invitrogen USA according to the instruction manual. RNA purified was quantified at OD260nm by using a ND 1000 spectrophotometer Nanodrop Technology USA and qualitated by using a Bioanalyzer 2100 Agilent Technology USA with RNA 6000 labchip kit Agilent Technologies USA. The small RNA library construction and deep sequencing was carried out at biotechnology company Welgene Taipei Taiwan. Samples were prepared using Illumina sample preparation kit according to the TruSeq Small RNA Sample Preparation Guide.The 3′ and 5′ adaptors were ligated to total RNA and reverse transcription followed by PCR amplification. The enriched cDNA constructs were size fractionated and purified on a 6% polyacrylamide gel electrophoresis and the bands containing the 18 40 nucleotide RNA fragments 140 155 nucleotide in length with both adapters.  Libraries were sequenced on an Illumina GAIIx instrument 50 cycle single read . Sequencing data was processed with the Illumina software,GEO Accession:GSM1832841,miRNA-Seq,TRANSCRIPTOMIC,size fractionation,SINGLE,ILLUMINA,Illumina Genome Analyzer IIx,,SRP061587,,,6_48_0.5um_OTA.fastq.gz,fastq,310077729.0,6130868.0,GSM1832841 r1,0:50.58 1:0,A:74462826;C:72958352;G:87201353;T:75455198;N:0,50,0,,,74462826,72958352,87201353,75455198,0,SRX1118699,SRS1011434,SRA280185,GEO,ntu,1,0.00671,,0.00134,,0.99594,,0.39026,,51,,T,,under 1.2% mapping rate,illumina,early_illumina,unknown,size_fractionation,trueseq,bulk,unknown,unknown,,Unknown,2015-07-25,Gastrula,Embryo,Embryo Imprecise,All anatomical structures 39761,SRR2127900,SRX1118698,SRS1011435,SRP061587,PRJNA290964,Next Generation Sequencing Facilitates Quantitative Analysis of Ochratoxin A treated with 6 hpf 48 hpf zebrafish embryos,GSE71346,Transcriptome Analysis,To investigate the effects of ochratoxin A on microRNA expressions in zebrafish embryos. Overall design: Ochratoxin A mediated miRNA expression in zebrafish embryos which were exposed from 6 hpf ttwo xxx hpf with doses of 0 and 0.5 micromolar.,,pubmed:30090366,,6 48 control [miRNA seq],GSM1832840,,tissue:embryo control|strain:Wild Type AB line|developemental stage:6 hpf embryos|exposed to:n1 control,6 48 control [miRNA seq],Initially the sequences generated went through a filtering process to obtain qualified reads. ConDeTri was implemented to trim or remove the reads according to the quality score. Qualified reads post filtering low quality data were analyzed using miRDeep2 to clip the 3′ adapter sequence and discarding reads shorter than 18 nucleotides before aligning reads to the Zebrafish genome from UCSC. Only reads that mapped perfectly to the genome five or less times were used for miRNA detection since miRNAs usually map to few genomic locations. MiRDeep2 estimates expression levels of known miRNAs and also identifies novel miRNAs. Genome build: GCF 000002035.4 Supplementary files format and content: bed file for the location of miRNA mapped to chromosome,embryo control,6 hpf embryos were treated with ochratoxin A 0.5 mM till 48 hpf.,Total RNA was extracted by Trizol® Reagent Invitrogen USA according to the instruction manual. RNA purified was quantified at OD260nm by using a ND 1000 spectrophotometer Nanodrop Technology USA and qualitated by using a Bioanalyzer 2100 Agilent Technology USA with RNA 6000 labchip kit Agilent Technologies USA. The small RNA library construction and deep sequencing was carried out at biotechnology company Welgene Taipei Taiwan. Samples were prepared using Illumina sample preparation kit according to the TruSeq Small RNA Sample Preparation Guide.The 3′ and 5′ adaptors were ligated to total RNA and reverse transcription followed by PCR amplification. The enriched cDNA constructs were size fractionated and purified on a 6% polyacrylamide gel electrophoresis and the bands containing the 18 40 nucleotide RNA fragments 140 155 nucleotide in length with both adapters.  Libraries were sequenced on an Illumina GAIIx instrument 50 cycle single read . Sequencing data was processed with the Illumina software,zebrafish embryos were selected at 6 hph with normal development.,strain:Wild Type AB line|developemental stage:6 hpf embryos|exposed to:n1 control,GSM1832840,GSM1832840: 6 48 control [miRNA seq]; Danio rerio; miRNA Seq,GSM1832840,,1,Total RNA was extracted by Trizol® Reagent Invitrogen USA according to the instruction manual. RNA purified was quantified at OD260nm by using a ND 1000 spectrophotometer Nanodrop Technology USA and qualitated by using a Bioanalyzer 2100 Agilent Technology USA with RNA 6000 labchip kit Agilent Technologies USA. The small RNA library construction and deep sequencing was carried out at biotechnology company Welgene Taipei Taiwan. Samples were prepared using Illumina sample preparation kit according to the TruSeq Small RNA Sample Preparation Guide.The 3′ and 5′ adaptors were ligated to total RNA and reverse transcription followed by PCR amplification. The enriched cDNA constructs were size fractionated and purified on a 6% polyacrylamide gel electrophoresis and the bands containing the 18 40 nucleotide RNA fragments 140 155 nucleotide in length with both adapters.  Libraries were sequenced on an Illumina GAIIx instrument 50 cycle single read . Sequencing data was processed with the Illumina software,GEO Accession:GSM1832840,miRNA-Seq,TRANSCRIPTOMIC,size fractionation,SINGLE,ILLUMINA,Illumina Genome Analyzer IIx,,SRP061587,,,6_48_control.fastq.gz,fastq,308947811.0,6107500.0,GSM1832840 r1,0:50.58 1:0,A:75126425;C:71798677;G:85490341;T:76532368;N:0,50,0,,,75126425,71798677,85490341,76532368,0,SRX1118698,SRS1011435,SRA280185,GEO,ntu,1,0.00833,,0.00166,,0.99476,,0.42762,,51,,T,,under 1.2% mapping rate,illumina,early_illumina,unknown,size_fractionation,trueseq,bulk,unknown,unknown,,Unknown,2015-07-25,Gastrula,Embryo,Embryo Imprecise,All anatomical structures 40975,SRR3498291,SRX1756837,SRS1433368,SRP074848,PRJNA321321,microRNAs Establish and Maintain Uniform Cellular Phenotypes during the Architecture of Complex Tissues,GSE81340,Transcriptome Analysis,Proper functioning of tissues requires cells to behave in uniform well organized ways. Conversely many diseases involve increased cellular heterogeneity due to genetic and epigenetic alterations. Defining the mechanisms that counteract phenotypic variability is therefore critical to understand how tissues sustain homeostasis. Here we carried out a single cell resolution screen of zebrafish embryonic blood vessels upon mutagenesis of single microRNA miRNA genes and multi gene miRNA families. We found that miRNA mutants exhibit a profound increase in cellular phenotypic variability of specific vascular traits. Genome wide analysis of endothelial miRNA target genes identified antagonistic regulatory nodes of vascular growth and morphogenesis signaling that allow variable cell behaviors when derepressed. Remarkably lack of such miRNA activity greatly sensitized the vascular system to microenvironmental changes induced by pharmacological stress. We uncover a previously unrecognized role of miRNAs as a widespread protective mechanism that limits variability in cellular phenotypes. This discovery marks an important advance in our comprehension of how miRNAs function in the physiology of higher organisms. Overall design: Analysis of differential genes expression in Zebrafish endothelial cells for 4 different developmental stages in duplicate,parent bioproject:PRJNA321317,pubmed:28350988;pubmed:33273096,,NoEndo 48hpf E2,GSM2150816,,source name:Endothelial cell|developmental stage:48hpf|tissue:Endothelial|stain:GFP,NoEndo 48hpf E2,Illumina Casava1.7 software used for basecalling. Sequenced reads were trimmed for adaptor sequence and masked for low complexity or low quality sequence then mapped to Zv9 whole genome using STAR v2.3.0 Fragments Per Kilobase Of Exon Per Million Fragments Mapped FPKM were calculated using Cufflink software Annotation gtf for Zv9 Genome build: Zv9 Supplementary files format and content: tab delimited text files include RPKM values for each Sample ...,Endothelial cell,,Transgenic fish were treated with Liberase to disociate the cells. post FACS sorting the GFP positive cells were lisate and RNA was harvested using Trizol reagent. Illumina TruSeq RNA libraries were prepared for sequencing using standard Illumina protocols,Zebrafish embryos were raised according standard protocols at 28˚C and according to protocols approved by Yale University Institutional Animal Care and Use Committee # 2015 11473.,developmental stage:48hpf|tissue:Endothelial|stain:GFP,GSM2150816,GSM2150816: NoEndo 48hpf E2; Danio rerio; miRNA Seq,GSM2150816,,1,Transgenic fish were treated with Liberase to disociate the cells. post FACS sorting the GFP positive cells were lisate and RNA was harvested using Trizol reagent. Illumina TruSeq RNA libraries were prepared for sequencing using standard Illumina protocols,GEO Accession:GSM2150816,miRNA-Seq,TRANSCRIPTOMIC,size fractionation,SINGLE,ILLUMINA,Illumina Genome Analyzer,,SRP074848,,,NoEndo_48hpf_E2.fastq.gz,fastq,553364740.0,7281115.0,GSM2150816 r1,0:76,A:129173344;C:134804122;G:141026546;T:148331467;N:29261,76,,,,129173344,134804122,141026546,148331467,29261,SRX1756837,SRS1433368,SRA424808,GEO,"Internal Medicine, Yale University",1,1e-05,,0.0,,0.99997,,0.0,,76,,T,,under 1.2% mapping rate,illumina,early_illumina,unknown,size_fractionation,trueseq,bulk,unknown,unknown,,United States,2016-05-11,Hatching,Embryo,Endothelium,Cardiovascular System 40976,SRR3498290,SRX1756836,SRS1433367,SRP074848,PRJNA321321,microRNAs Establish and Maintain Uniform Cellular Phenotypes during the Architecture of Complex Tissues,GSE81340,Transcriptome Analysis,Proper functioning of tissues requires cells to behave in uniform well organized ways. Conversely many diseases involve increased cellular heterogeneity due to genetic and epigenetic alterations. Defining the mechanisms that counteract phenotypic variability is therefore critical to understand how tissues sustain homeostasis. Here we carried out a single cell resolution screen of zebrafish embryonic blood vessels upon mutagenesis of single microRNA miRNA genes and multi gene miRNA families. We found that miRNA mutants exhibit a profound increase in cellular phenotypic variability of specific vascular traits. Genome wide analysis of endothelial miRNA target genes identified antagonistic regulatory nodes of vascular growth and morphogenesis signaling that allow variable cell behaviors when derepressed. Remarkably lack of such miRNA activity greatly sensitized the vascular system to microenvironmental changes induced by pharmacological stress. We uncover a previously unrecognized role of miRNAs as a widespread protective mechanism that limits variability in cellular phenotypes. This discovery marks an important advance in our comprehension of how miRNAs function in the physiology of higher organisms. Overall design: Analysis of differential genes expression in Zebrafish endothelial cells for 4 different developmental stages in duplicate,parent bioproject:PRJNA321317,pubmed:28350988;pubmed:33273096,,NoEndo 48hpf E1,GSM2150815,,source name:Endothelial cell|developmental stage:48hpf|tissue:Endothelial|stain:GFP,NoEndo 48hpf E1,Illumina Casava1.7 software used for basecalling. Sequenced reads were trimmed for adaptor sequence and masked for low complexity or low quality sequence then mapped to Zv9 whole genome using STAR v2.3.0 Fragments Per Kilobase Of Exon Per Million Fragments Mapped FPKM were calculated using Cufflink software Annotation gtf for Zv9 Genome build: Zv9 Supplementary files format and content: tab delimited text files include RPKM values for each Sample ...,Endothelial cell,,Transgenic fish were treated with Liberase to disociate the cells. post FACS sorting the GFP positive cells were lisate and RNA was harvested using Trizol reagent. Illumina TruSeq RNA libraries were prepared for sequencing using standard Illumina protocols,Zebrafish embryos were raised according standard protocols at 28˚C and according to protocols approved by Yale University Institutional Animal Care and Use Committee # 2015 11473.,developmental stage:48hpf|tissue:Endothelial|stain:GFP,GSM2150815,GSM2150815: NoEndo 48hpf E1; Danio rerio; miRNA Seq,GSM2150815,,1,Transgenic fish were treated with Liberase to disociate the cells. post FACS sorting the GFP positive cells were lisate and RNA was harvested using Trizol reagent. Illumina TruSeq RNA libraries were prepared for sequencing using standard Illumina protocols,GEO Accession:GSM2150815,miRNA-Seq,TRANSCRIPTOMIC,size fractionation,SINGLE,ILLUMINA,Illumina Genome Analyzer,,SRP074848,,,NoEndo_48hpf_E1.fastq.gz,fastq,1204752152.0,15852002.0,GSM2150815 r1,0:76,A:297517299;C:293969730;G:317491224;T:295696492;N:77407,76,,,,297517299,293969730,317491224,295696492,77407,SRX1756836,SRS1433367,SRA424808,GEO,"Internal Medicine, Yale University",1,0.0,,0.0,,1.0,,,,76,,T,,under 1.2% mapping rate,illumina,early_illumina,unknown,size_fractionation,trueseq,bulk,unknown,unknown,,United States,2016-05-11,Hatching,Embryo,Endothelium,Cardiovascular System 40977,SRR3498289,SRX1756835,SRS1433366,SRP074848,PRJNA321321,microRNAs Establish and Maintain Uniform Cellular Phenotypes during the Architecture of Complex Tissues,GSE81340,Transcriptome Analysis,Proper functioning of tissues requires cells to behave in uniform well organized ways. Conversely many diseases involve increased cellular heterogeneity due to genetic and epigenetic alterations. Defining the mechanisms that counteract phenotypic variability is therefore critical to understand how tissues sustain homeostasis. Here we carried out a single cell resolution screen of zebrafish embryonic blood vessels upon mutagenesis of single microRNA miRNA genes and multi gene miRNA families. We found that miRNA mutants exhibit a profound increase in cellular phenotypic variability of specific vascular traits. Genome wide analysis of endothelial miRNA target genes identified antagonistic regulatory nodes of vascular growth and morphogenesis signaling that allow variable cell behaviors when derepressed. Remarkably lack of such miRNA activity greatly sensitized the vascular system to microenvironmental changes induced by pharmacological stress. We uncover a previously unrecognized role of miRNAs as a widespread protective mechanism that limits variability in cellular phenotypes. This discovery marks an important advance in our comprehension of how miRNAs function in the physiology of higher organisms. Overall design: Analysis of differential genes expression in Zebrafish endothelial cells for 4 different developmental stages in duplicate,parent bioproject:PRJNA321317,pubmed:28350988;pubmed:33273096,,NoEndo 24hpf E1,GSM2150814,,source name:Endothelial cell|developmental stage:24hpf|tissue:Endothelial|stain:GFP,NoEndo 24hpf E1,Illumina Casava1.7 software used for basecalling. Sequenced reads were trimmed for adaptor sequence and masked for low complexity or low quality sequence then mapped to Zv9 whole genome using STAR v2.3.0 Fragments Per Kilobase Of Exon Per Million Fragments Mapped FPKM were calculated using Cufflink software Annotation gtf for Zv9 Genome build: Zv9 Supplementary files format and content: tab delimited text files include RPKM values for each Sample ...,Endothelial cell,,Transgenic fish were treated with Liberase to disociate the cells. post FACS sorting the GFP positive cells were lisate and RNA was harvested using Trizol reagent. Illumina TruSeq RNA libraries were prepared for sequencing using standard Illumina protocols,Zebrafish embryos were raised according standard protocols at 28˚C and according to protocols approved by Yale University Institutional Animal Care and Use Committee # 2015 11473.,developmental stage:24hpf|tissue:Endothelial|stain:GFP,GSM2150814,GSM2150814: NoEndo 24hpf E1; Danio rerio; miRNA Seq,GSM2150814,,1,Transgenic fish were treated with Liberase to disociate the cells. post FACS sorting the GFP positive cells were lisate and RNA was harvested using Trizol reagent. Illumina TruSeq RNA libraries were prepared for sequencing using standard Illumina protocols,GEO Accession:GSM2150814,miRNA-Seq,TRANSCRIPTOMIC,size fractionation,SINGLE,ILLUMINA,Illumina Genome Analyzer,,SRP074848,,,NoEndo_24hpf_E1.fastq.gz,fastq,1422085704.0,18711654.0,GSM2150814 r1,0:76,A:347700492;C:356065333;G:376424133;T:341806001;N:89745,76,,,,347700492,356065333,376424133,341806001,89745,SRX1756835,SRS1433366,SRA424808,GEO,"Internal Medicine, Yale University",1,0.0,,0.0,,1.0,,,,76,,T,,under 1.2% mapping rate,illumina,early_illumina,unknown,size_fractionation,trueseq,bulk,unknown,unknown,,United States,2016-05-11,Pharyngula,Embryo,Endothelium,Cardiovascular System 40981,SRR3498285,SRX1756831,SRS1433362,SRP074848,PRJNA321321,microRNAs Establish and Maintain Uniform Cellular Phenotypes during the Architecture of Complex Tissues,GSE81340,Transcriptome Analysis,Proper functioning of tissues requires cells to behave in uniform well organized ways. Conversely many diseases involve increased cellular heterogeneity due to genetic and epigenetic alterations. Defining the mechanisms that counteract phenotypic variability is therefore critical to understand how tissues sustain homeostasis. Here we carried out a single cell resolution screen of zebrafish embryonic blood vessels upon mutagenesis of single microRNA miRNA genes and multi gene miRNA families. We found that miRNA mutants exhibit a profound increase in cellular phenotypic variability of specific vascular traits. Genome wide analysis of endothelial miRNA target genes identified antagonistic regulatory nodes of vascular growth and morphogenesis signaling that allow variable cell behaviors when derepressed. Remarkably lack of such miRNA activity greatly sensitized the vascular system to microenvironmental changes induced by pharmacological stress. We uncover a previously unrecognized role of miRNAs as a widespread protective mechanism that limits variability in cellular phenotypes. This discovery marks an important advance in our comprehension of how miRNAs function in the physiology of higher organisms. Overall design: Analysis of differential genes expression in Zebrafish endothelial cells for 4 different developmental stages in duplicate,parent bioproject:PRJNA321317,pubmed:28350988;pubmed:33273096,,Endo 48hpf E2,GSM2150810,,source name:Endothelial cell|developmental stage:48hpf|tissue:Endothelial|stain:GFP,Endo 48hpf E2,Illumina Casava1.7 software used for basecalling. Sequenced reads were trimmed for adaptor sequence and masked for low complexity or low quality sequence then mapped to Zv9 whole genome using STAR v2.3.0 Fragments Per Kilobase Of Exon Per Million Fragments Mapped FPKM were calculated using Cufflink software Annotation gtf for Zv9 Genome build: Zv9 Supplementary files format and content: tab delimited text files include RPKM values for each Sample ...,Endothelial cell,,Transgenic fish were treated with Liberase to disociate the cells. post FACS sorting the GFP positive cells were lisate and RNA was harvested using Trizol reagent. Illumina TruSeq RNA libraries were prepared for sequencing using standard Illumina protocols,Zebrafish embryos were raised according standard protocols at 28˚C and according to protocols approved by Yale University Institutional Animal Care and Use Committee # 2015 11473.,developmental stage:48hpf|tissue:Endothelial|stain:GFP,GSM2150810,GSM2150810: Endo 48hpf E2; Danio rerio; miRNA Seq,GSM2150810,,1,Transgenic fish were treated with Liberase to disociate the cells. post FACS sorting the GFP positive cells were lisate and RNA was harvested using Trizol reagent. Illumina TruSeq RNA libraries were prepared for sequencing using standard Illumina protocols,GEO Accession:GSM2150810,miRNA-Seq,TRANSCRIPTOMIC,size fractionation,SINGLE,ILLUMINA,Illumina Genome Analyzer,,SRP074848,,,Endo_48hpf_E2.fastq.gz,fastq,1254556624.0,16507324.0,GSM2150810 r1,0:76,A:316229540;C:323340793;G:307552357;T:307354555;N:79379,76,,,,316229540,323340793,307552357,307354555,79379,SRX1756831,SRS1433362,SRA424808,GEO,"Internal Medicine, Yale University",1,0.0,,0.0,,1.0,,,,76,,T,,under 1.2% mapping rate,illumina,early_illumina,unknown,size_fractionation,trueseq,bulk,unknown,unknown,,United States,2016-05-11,Hatching,Embryo,Endothelium,Cardiovascular System 40982,SRR3498284,SRX1756830,SRS1433361,SRP074848,PRJNA321321,microRNAs Establish and Maintain Uniform Cellular Phenotypes during the Architecture of Complex Tissues,GSE81340,Transcriptome Analysis,Proper functioning of tissues requires cells to behave in uniform well organized ways. Conversely many diseases involve increased cellular heterogeneity due to genetic and epigenetic alterations. Defining the mechanisms that counteract phenotypic variability is therefore critical to understand how tissues sustain homeostasis. Here we carried out a single cell resolution screen of zebrafish embryonic blood vessels upon mutagenesis of single microRNA miRNA genes and multi gene miRNA families. We found that miRNA mutants exhibit a profound increase in cellular phenotypic variability of specific vascular traits. Genome wide analysis of endothelial miRNA target genes identified antagonistic regulatory nodes of vascular growth and morphogenesis signaling that allow variable cell behaviors when derepressed. Remarkably lack of such miRNA activity greatly sensitized the vascular system to microenvironmental changes induced by pharmacological stress. We uncover a previously unrecognized role of miRNAs as a widespread protective mechanism that limits variability in cellular phenotypes. This discovery marks an important advance in our comprehension of how miRNAs function in the physiology of higher organisms. Overall design: Analysis of differential genes expression in Zebrafish endothelial cells for 4 different developmental stages in duplicate,parent bioproject:PRJNA321317,pubmed:28350988;pubmed:33273096,,Endo 48hpf E1,GSM2150809,,source name:Endothelial cell|developmental stage:48hpf|tissue:Endothelial|stain:GFP,Endo 48hpf E1,Illumina Casava1.7 software used for basecalling. Sequenced reads were trimmed for adaptor sequence and masked for low complexity or low quality sequence then mapped to Zv9 whole genome using STAR v2.3.0 Fragments Per Kilobase Of Exon Per Million Fragments Mapped FPKM were calculated using Cufflink software Annotation gtf for Zv9 Genome build: Zv9 Supplementary files format and content: tab delimited text files include RPKM values for each Sample ...,Endothelial cell,,Transgenic fish were treated with Liberase to disociate the cells. post FACS sorting the GFP positive cells were lisate and RNA was harvested using Trizol reagent. Illumina TruSeq RNA libraries were prepared for sequencing using standard Illumina protocols,Zebrafish embryos were raised according standard protocols at 28˚C and according to protocols approved by Yale University Institutional Animal Care and Use Committee # 2015 11473.,developmental stage:48hpf|tissue:Endothelial|stain:GFP,GSM2150809,GSM2150809: Endo 48hpf E1; Danio rerio; miRNA Seq,GSM2150809,,1,Transgenic fish were treated with Liberase to disociate the cells. post FACS sorting the GFP positive cells were lisate and RNA was harvested using Trizol reagent. Illumina TruSeq RNA libraries were prepared for sequencing using standard Illumina protocols,GEO Accession:GSM2150809,miRNA-Seq,TRANSCRIPTOMIC,size fractionation,SINGLE,ILLUMINA,Illumina Genome Analyzer,,SRP074848,,,Endo_48hpf_E1.fastq.gz,fastq,1449497080.0,19072330.0,GSM2150809 r1,0:76,A:362564557;C:370330864;G:364749441;T:351760774;N:91444,76,,,,362564557,370330864,364749441,351760774,91444,SRX1756830,SRS1433361,SRA424808,GEO,"Internal Medicine, Yale University",1,0.0,,0.0,,1.0,,,,76,,T,,under 1.2% mapping rate,illumina,early_illumina,unknown,size_fractionation,trueseq,bulk,unknown,unknown,,United States,2016-05-11,Hatching,Embryo,Endothelium,Cardiovascular System 40983,SRR3498283,SRX1756829,SRS1433360,SRP074848,PRJNA321321,microRNAs Establish and Maintain Uniform Cellular Phenotypes during the Architecture of Complex Tissues,GSE81340,Transcriptome Analysis,Proper functioning of tissues requires cells to behave in uniform well organized ways. Conversely many diseases involve increased cellular heterogeneity due to genetic and epigenetic alterations. Defining the mechanisms that counteract phenotypic variability is therefore critical to understand how tissues sustain homeostasis. Here we carried out a single cell resolution screen of zebrafish embryonic blood vessels upon mutagenesis of single microRNA miRNA genes and multi gene miRNA families. We found that miRNA mutants exhibit a profound increase in cellular phenotypic variability of specific vascular traits. Genome wide analysis of endothelial miRNA target genes identified antagonistic regulatory nodes of vascular growth and morphogenesis signaling that allow variable cell behaviors when derepressed. Remarkably lack of such miRNA activity greatly sensitized the vascular system to microenvironmental changes induced by pharmacological stress. We uncover a previously unrecognized role of miRNAs as a widespread protective mechanism that limits variability in cellular phenotypes. This discovery marks an important advance in our comprehension of how miRNAs function in the physiology of higher organisms. Overall design: Analysis of differential genes expression in Zebrafish endothelial cells for 4 different developmental stages in duplicate,parent bioproject:PRJNA321317,pubmed:28350988;pubmed:33273096,,Endo 24hpf E1,GSM2150808,,source name:Endothelial cell|developmental stage:24hpf|tissue:Endothelial|stain:GFP,Endo 24hpf E1,Illumina Casava1.7 software used for basecalling. Sequenced reads were trimmed for adaptor sequence and masked for low complexity or low quality sequence then mapped to Zv9 whole genome using STAR v2.3.0 Fragments Per Kilobase Of Exon Per Million Fragments Mapped FPKM were calculated using Cufflink software Annotation gtf for Zv9 Genome build: Zv9 Supplementary files format and content: tab delimited text files include RPKM values for each Sample ...,Endothelial cell,,Transgenic fish were treated with Liberase to disociate the cells. post FACS sorting the GFP positive cells were lisate and RNA was harvested using Trizol reagent. Illumina TruSeq RNA libraries were prepared for sequencing using standard Illumina protocols,Zebrafish embryos were raised according standard protocols at 28˚C and according to protocols approved by Yale University Institutional Animal Care and Use Committee # 2015 11473.,developmental stage:24hpf|tissue:Endothelial|stain:GFP,GSM2150808,GSM2150808: Endo 24hpf E1; Danio rerio; miRNA Seq,GSM2150808,,1,Transgenic fish were treated with Liberase to disociate the cells. post FACS sorting the GFP positive cells were lisate and RNA was harvested using Trizol reagent. Illumina TruSeq RNA libraries were prepared for sequencing using standard Illumina protocols,GEO Accession:GSM2150808,miRNA-Seq,TRANSCRIPTOMIC,size fractionation,SINGLE,ILLUMINA,Illumina Genome Analyzer,,SRP074848,,,Endo_24hpf_E1.fastq.gz,fastq,1527500440.0,20098690.0,GSM2150808 r1,0:76,A:356712587;C:354608109;G:432977038;T:383106520;N:96186,76,,,,356712587,354608109,432977038,383106520,96186,SRX1756829,SRS1433360,SRA424808,GEO,"Internal Medicine, Yale University",1,0.0,,0.0,,1.0,,,,76,,T,,under 1.2% mapping rate,illumina,early_illumina,unknown,size_fractionation,trueseq,bulk,unknown,unknown,,United States,2016-05-11,Pharyngula,Embryo,Endothelium,Cardiovascular System 41406,SRR4423130,SRX2245314,SRS1745863,SRP091534,PRJNA347637,Danio rerio and Xenopus laevis Raw sequence reads,PRJNA347637,Other,To study the transcriptome during development,,,,,Time course 10 Dr,,strain:not applicable|isolate:not applicable|breed:ABTL|cultivar:not applicable|ecotype:not applicable|age:not applicable|dev stage:prim 16 stage|sex:not determined|tissue:single embryo|BioSampleModel:Model organism or animal,,,,,,,,,miRNA Seq of Zebrafish: prim 16 stage31 hpf,348 10,348 10,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. A few modifications were made during purification steps in the small RNAseq to allow sequencing of longer RNAs up to 200 nt than with standard sRNA protocols. Namely: 153 µl ethanol instead of 120 µl during purification of cDNA and 134 µl ethanol instead of 110 µl in protocol.,,,miRNA-Seq,TRANSCRIPTOMIC,cDNA,SINGLE,ION_TORRENT,Ion Torrent Proton,,SRP091534,,,S10small.fastq,fastq,427409571.0,5026564.0,S10small.fastq,0:85.03,A:98026046;C:116630773;G:114413502;T:98339250;N:0,85,,,,98026046,116630773,114413502,98339250,0,SRX2245314,SRS1745863,SRA485147,Universiteit van Amsterdam|SILS,Universiteit van Amsterdam,1,0.81583,,0.17938,,0.9094,,0.63072,,126,,B,,usable mapping rate,ion_torrent,ion_torrent,unknown,small_rna,unknown,bulk,unknown,unknown,,Netherlands,2016-10-19,Pharyngula,Embryo,Embryo Imprecise,All anatomical structures 41407,SRR4423129,SRX2245313,SRS1745862,SRP091534,PRJNA347637,Danio rerio and Xenopus laevis Raw sequence reads,PRJNA347637,Other,To study the transcriptome during development,,,,,Time course 9 Dr,,strain:not applicable|isolate:not applicable|breed:ABTL|cultivar:not applicable|ecotype:not applicable|age:not applicable|dev stage:prim 5 stage|sex:not determined|tissue:single embryo|BioSampleModel:Model organism or animal,,,,,,,,,miRNA Seq of Zebrafish: prim 5 stage24 hpf,348 9,348 9,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. A few modifications were made during purification steps in the small RNAseq to allow sequencing of longer RNAs up to 200 nt than with standard sRNA protocols. Namely: 153 µl ethanol instead of 120 µl during purification of cDNA and 134 µl ethanol instead of 110 µl in protocol.,,,miRNA-Seq,TRANSCRIPTOMIC,cDNA,SINGLE,ION_TORRENT,Ion Torrent Proton,,SRP091534,,,S09small.fastq,fastq,516614705.0,6246071.0,S09small.fastq,0:82.71,A:117786535;C:140799134;G:139362428;T:118666608;N:0,82,,,,117786535,140799134,139362428,118666608,0,SRX2245313,SRS1745862,SRA485147,Universiteit van Amsterdam|SILS,Universiteit van Amsterdam,1,0.81132,,0.18952,,0.88925,,0.69719,,17,,B,,usable mapping rate,ion_torrent,ion_torrent,unknown,small_rna,unknown,bulk,unknown,unknown,,Netherlands,2016-10-19,Pharyngula,Embryo,Embryo Imprecise,All anatomical structures 41409,SRR4423127,SRX2245311,SRS1745851,SRP091534,PRJNA347637,Danio rerio and Xenopus laevis Raw sequence reads,PRJNA347637,Other,To study the transcriptome during development,,,,,Time course 11 Dr,,strain:not applicable|isolate:not applicable|breed:ABTL|cultivar:not applicable|ecotype:not applicable|age:not applicable|dev stage:long pec stage|sex:not determined|tissue:single embryo|BioSampleModel:Model organism or animal,,,,,,,,,miRNA Seq of Zebrafish: long pec stage48 hpf,348 11,348 11,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. A few modifications were made during purification steps in the small RNAseq to allow sequencing of longer RNAs up to 200 nt than with standard sRNA protocols. Namely: 153 µl ethanol instead of 120 µl during purification of cDNA and 134 µl ethanol instead of 110 µl in protocol.,,,miRNA-Seq,TRANSCRIPTOMIC,cDNA,SINGLE,ION_TORRENT,Ion Torrent Proton,,SRP091534,,,S11small.fastq,fastq,405003101.0,5197273.0,S11small.fastq,0:77.93,A:93494059;C:109265919;G:106696649;T:95546474;N:0,77,,,,93494059,109265919,106696649,95546474,0,SRX2245311,SRS1745851,SRA485147,Universiteit van Amsterdam|SILS,Universiteit van Amsterdam,1,0.78244,,0.17047,,0.93379,,0.6272,,30,,B,,usable mapping rate,ion_torrent,ion_torrent,unknown,small_rna,unknown,bulk,unknown,unknown,,Netherlands,2016-10-19,Hatching,Embryo,Embryo Imprecise,All anatomical structures 41428,SRR4423108,SRX2245292,SRS1745857,SRP091534,PRJNA347637,Danio rerio and Xenopus laevis Raw sequence reads,PRJNA347637,Other,To study the transcriptome during development,,,,,Time course 5 Dr,,strain:not applicable|isolate:not applicable|breed:ABTL|cultivar:not applicable|ecotype:not applicable|age:not applicable|dev stage:90% epiboly stage|sex:not determined|tissue:single embryo|BioSampleModel:Model organism or animal,,,,,,,,,miRNA Seq of Zebrafish: 90% epiboly stage 9 hpf,348 5,348 5,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. A few modifications were made during purification steps in the small RNAseq to allow sequencing of longer RNAs up to 200 nt than with standard sRNA protocols. Namely: 153 µl ethanol instead of 120 µl during purification of cDNA and 134 µl ethanol instead of 110 µl in protocol.,,,miRNA-Seq,TRANSCRIPTOMIC,cDNA,SINGLE,ION_TORRENT,Ion Torrent Proton,,SRP091534,,,S05small.fastq,fastq,412237561.0,3386443.0,S05small.fastq,0:121.73,A:91644321;C:118905395;G:115070912;T:86616933;N:0,121,,,,91644321,118905395,115070912,86616933,0,SRX2245292,SRS1745857,SRA485147,Universiteit van Amsterdam|SILS,Universiteit van Amsterdam,1,0.81233,,0.06309,,0.93385,,0.93973,,163,,B,,usable mapping rate,ion_torrent,ion_torrent,unknown,small_rna,unknown,bulk,unknown,unknown,,Netherlands,2016-10-19,Gastrula,Embryo,Embryo Imprecise,All anatomical structures 41429,SRR4423107,SRX2245291,SRS1745856,SRP091534,PRJNA347637,Danio rerio and Xenopus laevis Raw sequence reads,PRJNA347637,Other,To study the transcriptome during development,,,,,Time course 6 Dr,,strain:not applicable|isolate:not applicable|breed:ABTL|cultivar:not applicable|ecotype:not applicable|age:not applicable|dev stage:4 somite stage|sex:not determined|tissue:single embryo|BioSampleModel:Model organism or animal,,,,,,,,,miRNA Seq of Zebrafish: 4 somite stage11.3 hpf,348 6,348 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. A few modifications were made during purification steps in the small RNAseq to allow sequencing of longer RNAs up to 200 nt than with standard sRNA protocols. Namely: 153 µl ethanol instead of 120 µl during purification of cDNA and 134 µl ethanol instead of 110 µl in protocol.,,,miRNA-Seq,TRANSCRIPTOMIC,cDNA,SINGLE,ION_TORRENT,Ion Torrent Proton,,SRP091534,,,S06small.fastq,fastq,535288776.0,4443685.0,S06small.fastq,0:120.46,A:119322177;C:152704452;G:149509408;T:113752739;N:0,120,,,,119322177,152704452,149509408,113752739,0,SRX2245291,SRS1745856,SRA485147,Universiteit van Amsterdam|SILS,Universiteit van Amsterdam,1,0.82872,,0.09035,,0.93194,,0.81296,,159,,B,,usable mapping rate,ion_torrent,ion_torrent,unknown,small_rna,unknown,bulk,unknown,unknown,,Netherlands,2016-10-19,Segmentation,Embryo,Embryo Imprecise,All anatomical structures 41430,SRR4423106,SRX2245290,SRS1745854,SRP091534,PRJNA347637,Danio rerio and Xenopus laevis Raw sequence reads,PRJNA347637,Other,To study the transcriptome during development,,,,,Time course 3 Dr,,strain:not applicable|isolate:not applicable|breed:ABTL|cultivar:not applicable|ecotype:not applicable|age:not applicable|dev stage:zfs:0000015 stage|sex:not determined|tissue:single embryo|BioSampleModel:Model organism or animal,,,,,,,,,miRNA Seq of Zebrafish: zfs:0000015 stage 4.7 hpf,348 3,348 3,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. A few modifications were made during purification steps in the small RNAseq to allow sequencing of longer RNAs up to 200 nt than with standard sRNA protocols. Namely: 153 µl ethanol instead of 120 µl during purification of cDNA and 134 µl ethanol instead of 110 µl in protocol.,,,miRNA-Seq,TRANSCRIPTOMIC,cDNA,SINGLE,ION_TORRENT,Ion Torrent Proton,,SRP091534,,,S03small.fastq,fastq,1025732824.0,7452991.0,S03small.fastq,0:137.63,A:225573059;C:298586545;G:288470386;T:213102834;N:0,137,,,,225573059,298586545,288470386,213102834,0,SRX2245290,SRS1745854,SRA485147,Universiteit van Amsterdam|SILS,Universiteit van Amsterdam,1,0.8983,,0.04271,,0.95546,,0.91281,,159,,B,,usable mapping rate,ion_torrent,ion_torrent,unknown,small_rna,unknown,bulk,unknown,unknown,,Netherlands,2016-10-19,Blastula,Embryo,Embryo Imprecise,All anatomical structures 41431,SRR4423105,SRX2245289,SRS1745855,SRP091534,PRJNA347637,Danio rerio and Xenopus laevis Raw sequence reads,PRJNA347637,Other,To study the transcriptome during development,,,,,Time course 4 Dr,,strain:not applicable|isolate:not applicable|breed:ABTL|cultivar:not applicable|ecotype:not applicable|age:not applicable|dev stage:70% epiboly stage|sex:not determined|tissue:single embryo|BioSampleModel:Model organism or animal,,,,,,,,,miRNA Seq of Zebrafish: 70% epiboly stage7 hpf,348 4,348 4,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. A few modifications were made during purification steps in the small RNAseq to allow sequencing of longer RNAs up to 200 nt than with standard sRNA protocols. Namely: 153 µl ethanol instead of 120 µl during purification of cDNA and 134 µl ethanol instead of 110 µl in protocol.,,,miRNA-Seq,TRANSCRIPTOMIC,cDNA,SINGLE,ION_TORRENT,Ion Torrent Proton,,SRP091534,,,S04small.fastq,fastq,193259658.0,1840126.0,S04small.fastq,0:105.03,A:43516548;C:54669405;G:53501927;T:41571778;N:0,105,,,,43516548,54669405,53501927,41571778,0,SRX2245289,SRS1745855,SRA485147,Universiteit van Amsterdam|SILS,Universiteit van Amsterdam,1,0.81053,,0.16265,,0.90698,,0.92112,,159,,B,,usable mapping rate,ion_torrent,ion_torrent,unknown,small_rna,unknown,bulk,unknown,unknown,,Netherlands,2016-10-19,Gastrula,Embryo,Embryo Imprecise,All anatomical structures 41432,SRR4423104,SRX2245288,SRS1745853,SRP091534,PRJNA347637,Danio rerio and Xenopus laevis Raw sequence reads,PRJNA347637,Other,To study the transcriptome during development,,,,,Time course 1 Dr,,strain:not applicable|isolate:not applicable|breed:ABTL|cultivar:not applicable|ecotype:not applicable|age:not applicable|dev stage:64 cells|sex:not determined|tissue:single embryo|BioSampleModel:Model organism or animal,,,,,,,,,miRNA Seq of Zebrafish: 64 cells2 hpf,348 1,348 1,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. A few modifications were made during purification steps in the small RNAseq to allow sequencing of longer RNAs up to 200 nt than with standard sRNA protocols. Namely: 153 µl ethanol instead of 120 µl during purification of cDNA and 134 µl ethanol instead of 110 µl in protocol.,,,miRNA-Seq,TRANSCRIPTOMIC,cDNA,SINGLE,ION_TORRENT,Ion Torrent Proton,,SRP091534,,,S01small.fastq,fastq,91910627.0,1396009.0,S01small.fastq,0:65.84,A:21663404;C:25661192;G:25069267;T:19516764;N:0,65,,,,21663404,25661192,25069267,19516764,0,SRX2245288,SRS1745853,SRA485147,Universiteit van Amsterdam|SILS,Universiteit van Amsterdam,1,0.56828,,0.1715,,0.92435,,0.90047,,34,,B,,usable mapping rate,ion_torrent,ion_torrent,unknown,small_rna,unknown,bulk,unknown,unknown,,Netherlands,2016-10-19,Cleavage,Embryo,Embryo Imprecise,All anatomical structures 41433,SRR4423103,SRX2245287,SRS1745852,SRP091534,PRJNA347637,Danio rerio and Xenopus laevis Raw sequence reads,PRJNA347637,Other,To study the transcriptome during development,,,,,Time course 2 Dr,,strain:not applicable|isolate:not applicable|breed:ABTL|cultivar:not applicable|ecotype:not applicable|age:not applicable|dev stage:high stage|sex:not determined|tissue:single embryo|BioSampleModel:Model organism or animal,,,,,,,,,miRNA Seq of Zebrafish: high stage3.3 hpf,348 2,348 2,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. A few modifications were made during purification steps in the small RNAseq to allow sequencing of longer RNAs up to 200 nt than with standard sRNA protocols. Namely: 153 µl ethanol instead of 120 µl during purification of cDNA and 134 µl ethanol instead of 110 µl in protocol.,,,miRNA-Seq,TRANSCRIPTOMIC,cDNA,SINGLE,ION_TORRENT,Ion Torrent Proton,,SRP091534,,,S02small.fastq,fastq,304535574.0,3376105.0,S02small.fastq,0:90.20,A:69193719;C:84372087;G:86707481;T:64262287;N:0,90,,,,69193719,84372087,86707481,64262287,0,SRX2245287,SRS1745852,SRA485147,Universiteit van Amsterdam|SILS,Universiteit van Amsterdam,1,0.56812,,0.09695,,0.93474,,0.93654,,51,,B,,usable mapping rate,ion_torrent,ion_torrent,unknown,small_rna,unknown,bulk,unknown,unknown,,Netherlands,2016-10-19,Blastula,Embryo,Embryo Imprecise,All anatomical structures 41436,SRR4423100,SRX2245284,SRS1745849,SRP091534,PRJNA347637,Danio rerio and Xenopus laevis Raw sequence reads,PRJNA347637,Other,To study the transcriptome during development,,,,,Time course 7 Dr,,strain:not applicable|isolate:not applicable|breed:ABTL|cultivar:not applicable|ecotype:not applicable|age:not applicable|dev stage:12 somite stage|sex:not determined|tissue:single embryo|BioSampleModel:Model organism or animal,,,,,,,,,miRNA Seq of Zebrafish: 12 somite stage15 hpf,348 7,348 7,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. A few modifications were made during purification steps in the small RNAseq to allow sequencing of longer RNAs up to 200 nt than with standard sRNA protocols. Namely: 153 µl ethanol instead of 120 µl during purification of cDNA and 134 µl ethanol instead of 110 µl in protocol.,,,miRNA-Seq,TRANSCRIPTOMIC,cDNA,SINGLE,ION_TORRENT,Ion Torrent Proton,,SRP091534,,,S07small.fastq,fastq,279201769.0,2713759.0,S07small.fastq,0:102.88,A:61655863;C:78667355;G:77702440;T:61176111;N:0,102,,,,61655863,78667355,77702440,61176111,0,SRX2245284,SRS1745849,SRA485147,Universiteit van Amsterdam|SILS,Universiteit van Amsterdam,1,0.79087,,0.10046,,0.89221,,0.77892,,158,,B,,usable mapping rate,ion_torrent,ion_torrent,unknown,small_rna,unknown,bulk,unknown,unknown,,Netherlands,2016-10-19,Segmentation,Embryo,Embryo Imprecise,All anatomical structures 41437,SRR4423099,SRX2245283,SRS1745848,SRP091534,PRJNA347637,Danio rerio and Xenopus laevis Raw sequence reads,PRJNA347637,Other,To study the transcriptome during development,,,,,Time course 8 Dr,,strain:not applicable|isolate:not applicable|breed:ABTL|cultivar:not applicable|ecotype:not applicable|age:not applicable|dev stage:22 somite stage|sex:not determined|tissue:single embryo|BioSampleModel:Model organism or animal,,,,,,,,,miRNA Seq of Zebrafish: 22 somite stage20 hpf,348 8,348 8,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. A few modifications were made during purification steps in the small RNAseq to allow sequencing of longer RNAs up to 200 nt than with standard sRNA protocols. Namely: 153 µl ethanol instead of 120 µl during purification of cDNA and 134 µl ethanol instead of 110 µl in protocol.,,,miRNA-Seq,TRANSCRIPTOMIC,cDNA,SINGLE,ION_TORRENT,Ion Torrent Proton,,SRP091534,,,S08small.fastq,fastq,520785540.0,4495080.0,S08small.fastq,0:115.86,A:115224831;C:149325753;G:144978190;T:111256766;N:0,115,,,,115224831,149325753,144978190,111256766,0,SRX2245283,SRS1745848,SRA485147,Universiteit van Amsterdam|SILS,Universiteit van Amsterdam,1,0.83781,,0.08976,,0.92904,,0.80492,,183,,B,,usable mapping rate,ion_torrent,ion_torrent,unknown,small_rna,unknown,bulk,unknown,unknown,,Netherlands,2016-10-19,Segmentation,Embryo,Embryo Imprecise,All anatomical structures 41457,SRR4449278,SRX2267734,SRS1758938,SRP092030,PRJNA350377,Zebrafish Danio Rerio small RNA seq at approx. 50% epiboly,PRJNA350377,Transcriptome Analysis,Small RNAseq experiment of individual embryos from the 8 different spawns taken at gastrulation at approximately 50% epiboly,,,Danio rerio embryo at approx. 50% epiboly,Danio rerio embryo at approx. 50% epiboly,S09 RID0445,,strain:ABTL|dev stage:54% epiboly|sex:not applicable|tissue:whole embryo|BioSampleModel:Model organism or animal,,,,,,,,,S09,S09 RID0445,S09 RID0445,Bar coded small RNA sequencing libraries were generated using the Ion Total RNA Seq Kit v2 and the Ion Xpress RNA Seq bar coding kit Thermo Fisher Scientific. Size distribution and yield of the resulting barcoded libraries were assessed using the 2200 TapeStation System with Agilent D1K ScreenTapes Agilent Technologies. Libraries were prepared for sequencing on the Ion Chef System Thermo Fisher Scientific. Sequencing was performed on an Ion Proton System using Ion PI v3 chips Thermo Fisher Scientific.,,,miRNA-Seq,TRANSCRIPTOMIC,cDNA,SINGLE,ION_TORRENT,Ion Torrent Proton,,SRP092030,,,IonXpressRNA_009_rawlib.basecaller.bam,bam,56886794.0,2186951.0,IonXpressRNA 009 rawlib.basecaller.bam,0:26.01,A:15763527;C:12934017;G:13233004;T:14956246;N:0,26,,,,15763527,12934017,13233004,14956246,0,SRX2267734,SRS1758938,SRA486759,"UNIVERSITY OF AMSTERDAM, SILS|RB&AB","UNIVERSITY OF AMSTERDAM, SILS",1,0.6501,,0.44849,,0.83465,,0.59625,,26,,B,,usable mapping rate,ion_torrent,ion_torrent,unknown,small_rna,unknown,bulk,unknown,unknown,,Netherlands,2016-10-25,Gastrula,Embryo,Whole Organism,All anatomical structures 41458,SRR4449277,SRX2267733,SRS1758937,SRP092030,PRJNA350377,Zebrafish Danio Rerio small RNA seq at approx. 50% epiboly,PRJNA350377,Transcriptome Analysis,Small RNAseq experiment of individual embryos from the 8 different spawns taken at gastrulation at approximately 50% epiboly,,,Danio rerio embryo at approx. 50% epiboly,Danio rerio embryo at approx. 50% epiboly,S10 RID0445,,strain:ABTL|dev stage:51% epiboly|sex:not applicable|tissue:whole embryo|BioSampleModel:Model organism or animal,,,,,,,,,S10,S10 RID0445,S10 RID0445,Bar coded small RNA sequencing libraries were generated using the Ion Total RNA Seq Kit v2 and the Ion Xpress RNA Seq bar coding kit Thermo Fisher Scientific. Size distribution and yield of the resulting barcoded libraries were assessed using the 2200 TapeStation System with Agilent D1K ScreenTapes Agilent Technologies. Libraries were prepared for sequencing on the Ion Chef System Thermo Fisher Scientific. Sequencing was performed on an Ion Proton System using Ion PI v3 chips Thermo Fisher Scientific.,,,miRNA-Seq,TRANSCRIPTOMIC,cDNA,SINGLE,ION_TORRENT,Ion Torrent Proton,,SRP092030,,,IonXpressRNA_010_rawlib.basecaller.bam,bam,63108712.0,2361941.0,IonXpressRNA 010 rawlib.basecaller.bam,0:26.72,A:16956361;C:14496251;G:15049416;T:16606684;N:0,26,,,,16956361,14496251,15049416,16606684,0,SRX2267733,SRS1758937,SRA486759,"UNIVERSITY OF AMSTERDAM, SILS|RB&AB","UNIVERSITY OF AMSTERDAM, SILS",1,0.64387,,0.42592,,0.81091,,0.58276,,22,,B,,usable mapping rate,ion_torrent,ion_torrent,unknown,small_rna,unknown,bulk,unknown,unknown,,Netherlands,2017-11-01,Gastrula,Embryo,Whole Organism,All anatomical structures 41459,SRR4449276,SRX2267732,SRS1758936,SRP092030,PRJNA350377,Zebrafish Danio Rerio small RNA seq at approx. 50% epiboly,PRJNA350377,Transcriptome Analysis,Small RNAseq experiment of individual embryos from the 8 different spawns taken at gastrulation at approximately 50% epiboly,,,Danio rerio embryo at approx. 50% epiboly,Danio rerio embryo at approx. 50% epiboly,S07 RID0445,,strain:ABTL|dev stage:47% epiboly|sex:not applicable|tissue:whole embryo|BioSampleModel:Model organism or animal,,,,,,,,,S07,S07 RID0445,S07 RID0445,Bar coded small RNA sequencing libraries were generated using the Ion Total RNA Seq Kit v2 and the Ion Xpress RNA Seq bar coding kit Thermo Fisher Scientific. Size distribution and yield of the resulting barcoded libraries were assessed using the 2200 TapeStation System with Agilent D1K ScreenTapes Agilent Technologies. Libraries were prepared for sequencing on the Ion Chef System Thermo Fisher Scientific. Sequencing was performed on an Ion Proton System using Ion PI v3 chips Thermo Fisher Scientific.,,,miRNA-Seq,TRANSCRIPTOMIC,cDNA,SINGLE,ION_TORRENT,Ion Torrent Proton,,SRP092030,,,IonXpressRNA_007_rawlib.basecaller.bam,bam,50356775.0,1885340.0,IonXpressRNA 007 rawlib.basecaller.bam,0:26.71,A:13603929;C:11508700;G:12096780;T:13147366;N:0,26,,,,13603929,11508700,12096780,13147366,0,SRX2267732,SRS1758936,SRA486759,"UNIVERSITY OF AMSTERDAM, SILS|RB&AB","UNIVERSITY OF AMSTERDAM, SILS",1,0.63582,,0.39586,,0.79839,,0.56846,,22,,B,,usable mapping rate,ion_torrent,ion_torrent,unknown,small_rna,unknown,bulk,unknown,unknown,,Netherlands,2017-11-01,Gastrula,Embryo,Whole Organism,All anatomical structures 41460,SRR4449275,SRX2267731,SRS1758935,SRP092030,PRJNA350377,Zebrafish Danio Rerio small RNA seq at approx. 50% epiboly,PRJNA350377,Transcriptome Analysis,Small RNAseq experiment of individual embryos from the 8 different spawns taken at gastrulation at approximately 50% epiboly,,,Danio rerio embryo at approx. 50% epiboly,Danio rerio embryo at approx. 50% epiboly,S08 RID0445,,strain:ABTL|dev stage:53% epiboly|sex:not applicable|tissue:whole embryo|BioSampleModel:Model organism or animal,,,,,,,,,S08,S08 RID0445,S08 RID0445,Bar coded small RNA sequencing libraries were generated using the Ion Total RNA Seq Kit v2 and the Ion Xpress RNA Seq bar coding kit Thermo Fisher Scientific. Size distribution and yield of the resulting barcoded libraries were assessed using the 2200 TapeStation System with Agilent D1K ScreenTapes Agilent Technologies. Libraries were prepared for sequencing on the Ion Chef System Thermo Fisher Scientific. Sequencing was performed on an Ion Proton System using Ion PI v3 chips Thermo Fisher Scientific.,,,miRNA-Seq,TRANSCRIPTOMIC,cDNA,SINGLE,ION_TORRENT,Ion Torrent Proton,,SRP092030,,,IonXpressRNA_008_rawlib.basecaller.bam,bam,63655011.0,2486240.0,IonXpressRNA 008 rawlib.basecaller.bam,0:25.60,A:17274215;C:14286496;G:15277222;T:16817078;N:0,25,,,,17274215,14286496,15277222,16817078,0,SRX2267731,SRS1758935,SRA486759,"UNIVERSITY OF AMSTERDAM, SILS|RB&AB","UNIVERSITY OF AMSTERDAM, SILS",1,0.64165,,0.41617,,0.79931,,0.56754,,34,,B,,usable mapping rate,ion_torrent,ion_torrent,unknown,small_rna,unknown,bulk,unknown,unknown,,Netherlands,2017-11-01,Gastrula,Embryo,Whole Organism,All anatomical structures 41461,SRR4449274,SRX2267730,SRS1758933,SRP092030,PRJNA350377,Zebrafish Danio Rerio small RNA seq at approx. 50% epiboly,PRJNA350377,Transcriptome Analysis,Small RNAseq experiment of individual embryos from the 8 different spawns taken at gastrulation at approximately 50% epiboly,,,Danio rerio embryo at approx. 50% epiboly,Danio rerio embryo at approx. 50% epiboly,S05 RID0445,,strain:ABTL|dev stage:58% epiboly|sex:not applicable|tissue:whole embryo|BioSampleModel:Model organism or animal,,,,,,,,,S05,S05 RID0445,S05 RID0445,Bar coded small RNA sequencing libraries were generated using the Ion Total RNA Seq Kit v2 and the Ion Xpress RNA Seq bar coding kit Thermo Fisher Scientific. Size distribution and yield of the resulting barcoded libraries were assessed using the 2200 TapeStation System with Agilent D1K ScreenTapes Agilent Technologies. Libraries were prepared for sequencing on the Ion Chef System Thermo Fisher Scientific. Sequencing was performed on an Ion Proton System using Ion PI v3 chips Thermo Fisher Scientific.,,,miRNA-Seq,TRANSCRIPTOMIC,cDNA,SINGLE,ION_TORRENT,Ion Torrent Proton,,SRP092030,,,IonXpressRNA_005_rawlib.basecaller.bam,bam,36352941.0,1403002.0,IonXpressRNA 005 rawlib.basecaller.bam,0:25.91,A:10088289;C:8176923;G:8667822;T:9419907;N:0,25,,,,10088289,8176923,8667822,9419907,0,SRX2267730,SRS1758933,SRA486759,"UNIVERSITY OF AMSTERDAM, SILS|RB&AB","UNIVERSITY OF AMSTERDAM, SILS",1,0.59289,,0.36407,,0.80213,,0.57695,,26,,B,,usable mapping rate,ion_torrent,ion_torrent,unknown,small_rna,unknown,bulk,unknown,unknown,,Netherlands,2017-11-01,Gastrula,Embryo,Whole Organism,All anatomical structures 41462,SRR4449273,SRX2267729,SRS1758934,SRP092030,PRJNA350377,Zebrafish Danio Rerio small RNA seq at approx. 50% epiboly,PRJNA350377,Transcriptome Analysis,Small RNAseq experiment of individual embryos from the 8 different spawns taken at gastrulation at approximately 50% epiboly,,,Danio rerio embryo at approx. 50% epiboly,Danio rerio embryo at approx. 50% epiboly,S06 RID0445,,strain:ABTL|dev stage:43% epiboly|sex:not applicable|tissue:whole embryo|BioSampleModel:Model organism or animal,,,,,,,,,S06,S06 RID0445,S06 RID0445,Bar coded small RNA sequencing libraries were generated using the Ion Total RNA Seq Kit v2 and the Ion Xpress RNA Seq bar coding kit Thermo Fisher Scientific. Size distribution and yield of the resulting barcoded libraries were assessed using the 2200 TapeStation System with Agilent D1K ScreenTapes Agilent Technologies. Libraries were prepared for sequencing on the Ion Chef System Thermo Fisher Scientific. Sequencing was performed on an Ion Proton System using Ion PI v3 chips Thermo Fisher Scientific.,,,miRNA-Seq,TRANSCRIPTOMIC,cDNA,SINGLE,ION_TORRENT,Ion Torrent Proton,,SRP092030,,,IonXpressRNA_006_rawlib.basecaller.bam,bam,41157611.0,1592351.0,IonXpressRNA 006 rawlib.basecaller.bam,0:25.85,A:11322629;C:9228187;G:9750979;T:10855816;N:0,25,,,,11322629,9228187,9750979,10855816,0,SRX2267729,SRS1758934,SRA486759,"UNIVERSITY OF AMSTERDAM, SILS|RB&AB","UNIVERSITY OF AMSTERDAM, SILS",1,0.63095,,0.40683,,0.8003,,0.56985,,29,,B,,usable mapping rate,ion_torrent,ion_torrent,unknown,small_rna,unknown,bulk,unknown,unknown,,Netherlands,2017-11-01,Gastrula,Embryo,Whole Organism,All anatomical structures 41463,SRR4449272,SRX2267728,SRS1758932,SRP092030,PRJNA350377,Zebrafish Danio Rerio small RNA seq at approx. 50% epiboly,PRJNA350377,Transcriptome Analysis,Small RNAseq experiment of individual embryos from the 8 different spawns taken at gastrulation at approximately 50% epiboly,,,Danio rerio embryo at approx. 50% epiboly,Danio rerio embryo at approx. 50% epiboly,S03 RID0445,,strain:ABTL|dev stage:55% epiboly|sex:not applicable|tissue:whole embryo|BioSampleModel:Model organism or animal,,,,,,,,,S03,S03 RID0445,S03 RID0445,Bar coded small RNA sequencing libraries were generated using the Ion Total RNA Seq Kit v2 and the Ion Xpress RNA Seq bar coding kit Thermo Fisher Scientific. Size distribution and yield of the resulting barcoded libraries were assessed using the 2200 TapeStation System with Agilent D1K ScreenTapes Agilent Technologies. Libraries were prepared for sequencing on the Ion Chef System Thermo Fisher Scientific. Sequencing was performed on an Ion Proton System using Ion PI v3 chips Thermo Fisher Scientific.,,,miRNA-Seq,TRANSCRIPTOMIC,cDNA,SINGLE,ION_TORRENT,Ion Torrent Proton,,SRP092030,,,IonXpressRNA_003_rawlib.basecaller.bam,bam,60356442.0,2057592.0,IonXpressRNA 003 rawlib.basecaller.bam,0:29.33,A:17060096;C:13661341;G:13721228;T:15913777;N:0,29,,,,17060096,13661341,13721228,15913777,0,SRX2267728,SRS1758932,SRA486759,"UNIVERSITY OF AMSTERDAM, SILS|RB&AB","UNIVERSITY OF AMSTERDAM, SILS",1,0.73029,,0.49935,,0.8225,,0.56029,,30,,B,,usable mapping rate,ion_torrent,ion_torrent,unknown,small_rna,unknown,bulk,unknown,unknown,,Netherlands,2017-11-01,Gastrula,Embryo,Whole Organism,All anatomical structures 41464,SRR4449271,SRX2267727,SRS1758931,SRP092030,PRJNA350377,Zebrafish Danio Rerio small RNA seq at approx. 50% epiboly,PRJNA350377,Transcriptome Analysis,Small RNAseq experiment of individual embryos from the 8 different spawns taken at gastrulation at approximately 50% epiboly,,,Danio rerio embryo at approx. 50% epiboly,Danio rerio embryo at approx. 50% epiboly,S04 RID0445,,strain:ABTL|dev stage:54% epiboly|sex:not applicable|tissue:whole embryo|BioSampleModel:Model organism or animal,,,,,,,,,S04,S04 RID0445,S04 RID0445,Bar coded small RNA sequencing libraries were generated using the Ion Total RNA Seq Kit v2 and the Ion Xpress RNA Seq bar coding kit Thermo Fisher Scientific. Size distribution and yield of the resulting barcoded libraries were assessed using the 2200 TapeStation System with Agilent D1K ScreenTapes Agilent Technologies. Libraries were prepared for sequencing on the Ion Chef System Thermo Fisher Scientific. Sequencing was performed on an Ion Proton System using Ion PI v3 chips Thermo Fisher Scientific.,,,miRNA-Seq,TRANSCRIPTOMIC,cDNA,SINGLE,ION_TORRENT,Ion Torrent Proton,,SRP092030,,,IonXpressRNA_004_rawlib.basecaller.bam,bam,55705225.0,2055064.0,IonXpressRNA 004 rawlib.basecaller.bam,0:27.11,A:15806355;C:12308008;G:12579212;T:15011650;N:0,27,,,,15806355,12308008,12579212,15011650,0,SRX2267727,SRS1758931,SRA486759,"UNIVERSITY OF AMSTERDAM, SILS|RB&AB","UNIVERSITY OF AMSTERDAM, SILS",1,0.70796,,0.49815,,0.81444,,0.54452,,41,,B,,usable mapping rate,ion_torrent,ion_torrent,unknown,small_rna,unknown,bulk,unknown,unknown,,Netherlands,2017-11-01,Gastrula,Embryo,Whole Organism,All anatomical structures 41465,SRR4449270,SRX2267726,SRS1758930,SRP092030,PRJNA350377,Zebrafish Danio Rerio small RNA seq at approx. 50% epiboly,PRJNA350377,Transcriptome Analysis,Small RNAseq experiment of individual embryos from the 8 different spawns taken at gastrulation at approximately 50% epiboly,,,Danio rerio embryo at approx. 50% epiboly,Danio rerio embryo at approx. 50% epiboly,S01 RID0445,,strain:ABTL|dev stage:50% epiboly|sex:not applicable|tissue:whole embryo|BioSampleModel:Model organism or animal,,,,,,,,,S01,S01 RID0445,S01 RID0445,Bar coded small RNA sequencing libraries were generated using the Ion Total RNA Seq Kit v2 and the Ion Xpress RNA Seq bar coding kit Thermo Fisher Scientific. Size distribution and yield of the resulting barcoded libraries were assessed using the 2200 TapeStation System with Agilent D1K ScreenTapes Agilent Technologies. Libraries were prepared for sequencing on the Ion Chef System Thermo Fisher Scientific. Sequencing was performed on an Ion Proton System using Ion PI v3 chips Thermo Fisher Scientific.,,,miRNA-Seq,TRANSCRIPTOMIC,cDNA,SINGLE,ION_TORRENT,Ion Torrent Proton,,SRP092030,,,IonXpressRNA_001_rawlib.basecaller.bam,bam,35407241.0,1342552.0,IonXpressRNA 001 rawlib.basecaller.bam,0:26.37,A:9988109;C:7841340;G:8187069;T:9390723;N:0,26,,,,9988109,7841340,8187069,9390723,0,SRX2267726,SRS1758930,SRA486759,"UNIVERSITY OF AMSTERDAM, SILS|RB&AB","UNIVERSITY OF AMSTERDAM, SILS",1,0.63621,,0.43661,,0.80992,,0.53899,,31,,B,,usable mapping rate,ion_torrent,ion_torrent,unknown,small_rna,unknown,bulk,unknown,unknown,,Netherlands,2017-11-01,Gastrula,Embryo,Whole Organism,All anatomical structures 41466,SRR4449269,SRX2267725,SRS1758928,SRP092030,PRJNA350377,Zebrafish Danio Rerio small RNA seq at approx. 50% epiboly,PRJNA350377,Transcriptome Analysis,Small RNAseq experiment of individual embryos from the 8 different spawns taken at gastrulation at approximately 50% epiboly,,,Danio rerio embryo at approx. 50% epiboly,Danio rerio embryo at approx. 50% epiboly,S02 RID0445,,strain:ABTL|dev stage:55% epiboly|sex:not applicable|tissue:whole embryo|BioSampleModel:Model organism or animal,,,,,,,,,S02,S02 RID0445,S02 RID0445,Bar coded small RNA sequencing libraries were generated using the Ion Total RNA Seq Kit v2 and the Ion Xpress RNA Seq bar coding kit Thermo Fisher Scientific. Size distribution and yield of the resulting barcoded libraries were assessed using the 2200 TapeStation System with Agilent D1K ScreenTapes Agilent Technologies. Libraries were prepared for sequencing on the Ion Chef System Thermo Fisher Scientific. Sequencing was performed on an Ion Proton System using Ion PI v3 chips Thermo Fisher Scientific.,,,miRNA-Seq,TRANSCRIPTOMIC,cDNA,SINGLE,ION_TORRENT,Ion Torrent Proton,,SRP092030,,,IonXpressRNA_002_rawlib.basecaller.bam,bam,40875445.0,1512601.0,IonXpressRNA 002 rawlib.basecaller.bam,0:27.02,A:11593378;C:9124451;G:9444184;T:10713432;N:0,27,,,,11593378,9124451,9444184,10713432,0,SRX2267725,SRS1758928,SRA486759,"UNIVERSITY OF AMSTERDAM, SILS|RB&AB","UNIVERSITY OF AMSTERDAM, SILS",1,0.66621,,0.45417,,0.8127,,0.55033,,21,,B,,usable mapping rate,ion_torrent,ion_torrent,unknown,small_rna,unknown,bulk,unknown,unknown,,Netherlands,2017-11-01,Gastrula,Embryo,Whole Organism,All anatomical structures 41467,SRR4449267,SRX2267724,SRS1758927,SRP092030,PRJNA350377,Zebrafish Danio Rerio small RNA seq at approx. 50% epiboly,PRJNA350377,Transcriptome Analysis,Small RNAseq experiment of individual embryos from the 8 different spawns taken at gastrulation at approximately 50% epiboly,,,Danio rerio embryo at approx. 50% epiboly,Danio rerio embryo at approx. 50% epiboly,S15 RID0445,,strain:ABTL|dev stage:52% epiboly|sex:not applicable|tissue:whole embryo|BioSampleModel:Model organism or animal,,,,,,,,,S15,S15 RID0445,S15 RID0445,Bar coded small RNA sequencing libraries were generated using the Ion Total RNA Seq Kit v2 and the Ion Xpress RNA Seq bar coding kit Thermo Fisher Scientific. Size distribution and yield of the resulting barcoded libraries were assessed using the 2200 TapeStation System with Agilent D1K ScreenTapes Agilent Technologies. Libraries were prepared for sequencing on the Ion Chef System Thermo Fisher Scientific. Sequencing was performed on an Ion Proton System using Ion PI v3 chips Thermo Fisher Scientific.,,,miRNA-Seq,TRANSCRIPTOMIC,cDNA,SINGLE,ION_TORRENT,Ion Torrent Proton,,SRP092030,,,IonXpressRNA_015_rawlib.basecaller.bam,bam,58421266.0,2091074.0,IonXpressRNA 015 rawlib.basecaller.bam,0:27.94,A:16715618;C:13019609;G:13014639;T:15671400;N:0,27,,,,16715618,13019609,13014639,15671400,0,SRX2267724,SRS1758927,SRA486759,"UNIVERSITY OF AMSTERDAM, SILS|RB&AB","UNIVERSITY OF AMSTERDAM, SILS",1,0.71786,,0.51457,,0.83863,,0.53442,,29,,B,,usable mapping rate,ion_torrent,ion_torrent,unknown,small_rna,unknown,bulk,unknown,unknown,,Netherlands,2017-11-01,Gastrula,Embryo,Whole Organism,All anatomical structures 41468,SRR4449266,SRX2267723,SRS1758929,SRP092030,PRJNA350377,Zebrafish Danio Rerio small RNA seq at approx. 50% epiboly,PRJNA350377,Transcriptome Analysis,Small RNAseq experiment of individual embryos from the 8 different spawns taken at gastrulation at approximately 50% epiboly,,,Danio rerio embryo at approx. 50% epiboly,Danio rerio embryo at approx. 50% epiboly,S16 RID0445,,strain:ABTL|dev stage:54% epiboly|sex:not applicable|tissue:whole embryo|BioSampleModel:Model organism or animal,,,,,,,,,S16,S16 RID0445,S16 RID0445,Bar coded small RNA sequencing libraries were generated using the Ion Total RNA Seq Kit v2 and the Ion Xpress RNA Seq bar coding kit Thermo Fisher Scientific. Size distribution and yield of the resulting barcoded libraries were assessed using the 2200 TapeStation System with Agilent D1K ScreenTapes Agilent Technologies. Libraries were prepared for sequencing on the Ion Chef System Thermo Fisher Scientific. Sequencing was performed on an Ion Proton System using Ion PI v3 chips Thermo Fisher Scientific.,,,miRNA-Seq,TRANSCRIPTOMIC,cDNA,SINGLE,ION_TORRENT,Ion Torrent Proton,,SRP092030,,,IonXpressRNA_016_rawlib.basecaller.bam,bam,55022551.0,2073507.0,IonXpressRNA 016 rawlib.basecaller.bam,0:26.54,A:15319738;C:12288588;G:12653066;T:14761159;N:0,26,,,,15319738,12288588,12653066,14761159,0,SRX2267723,SRS1758929,SRA486759,"UNIVERSITY OF AMSTERDAM, SILS|RB&AB","UNIVERSITY OF AMSTERDAM, SILS",1,0.68905,,0.46941,,0.80306,,0.55981,,26,,B,,usable mapping rate,ion_torrent,ion_torrent,unknown,small_rna,unknown,bulk,unknown,unknown,,Netherlands,2017-11-01,Gastrula,Embryo,Whole Organism,All anatomical structures 41469,SRR4449265,SRX2267722,SRS1758926,SRP092030,PRJNA350377,Zebrafish Danio Rerio small RNA seq at approx. 50% epiboly,PRJNA350377,Transcriptome Analysis,Small RNAseq experiment of individual embryos from the 8 different spawns taken at gastrulation at approximately 50% epiboly,,,Danio rerio embryo at approx. 50% epiboly,Danio rerio embryo at approx. 50% epiboly,S13 RID0445,,strain:ABTL|dev stage:55% epiboly|sex:not applicable|tissue:whole embryo|BioSampleModel:Model organism or animal,,,,,,,,,S13,S13 RID0445,S13 RID0445,Bar coded small RNA sequencing libraries were generated using the Ion Total RNA Seq Kit v2 and the Ion Xpress RNA Seq bar coding kit Thermo Fisher Scientific. Size distribution and yield of the resulting barcoded libraries were assessed using the 2200 TapeStation System with Agilent D1K ScreenTapes Agilent Technologies. Libraries were prepared for sequencing on the Ion Chef System Thermo Fisher Scientific. Sequencing was performed on an Ion Proton System using Ion PI v3 chips Thermo Fisher Scientific.,,,miRNA-Seq,TRANSCRIPTOMIC,cDNA,SINGLE,ION_TORRENT,Ion Torrent Proton,,SRP092030,,,IonXpressRNA_013_rawlib.basecaller.bam,bam,49641484.0,2028008.0,IonXpressRNA 013 rawlib.basecaller.bam,0:24.48,A:13840820;C:11016762;G:11715475;T:13068427;N:0,24,,,,13840820,11016762,11715475,13068427,0,SRX2267722,SRS1758926,SRA486759,"UNIVERSITY OF AMSTERDAM, SILS|RB&AB","UNIVERSITY OF AMSTERDAM, SILS",1,0.55355,,0.3659,,0.81576,,0.55987,,22,,B,,usable mapping rate,ion_torrent,ion_torrent,unknown,small_rna,unknown,bulk,unknown,unknown,,Netherlands,2017-11-01,Gastrula,Embryo,Whole Organism,All anatomical structures 41470,SRR4449264,SRX2267721,SRS1758925,SRP092030,PRJNA350377,Zebrafish Danio Rerio small RNA seq at approx. 50% epiboly,PRJNA350377,Transcriptome Analysis,Small RNAseq experiment of individual embryos from the 8 different spawns taken at gastrulation at approximately 50% epiboly,,,Danio rerio embryo at approx. 50% epiboly,Danio rerio embryo at approx. 50% epiboly,S14 RID0445,,strain:ABTL|dev stage:56% epiboly|sex:not applicable|tissue:whole embryo|BioSampleModel:Model organism or animal,,,,,,,,,S14,S14 RID0445,S14 RID0445,Bar coded small RNA sequencing libraries were generated using the Ion Total RNA Seq Kit v2 and the Ion Xpress RNA Seq bar coding kit Thermo Fisher Scientific. Size distribution and yield of the resulting barcoded libraries were assessed using the 2200 TapeStation System with Agilent D1K ScreenTapes Agilent Technologies. Libraries were prepared for sequencing on the Ion Chef System Thermo Fisher Scientific. Sequencing was performed on an Ion Proton System using Ion PI v3 chips Thermo Fisher Scientific.,,,miRNA-Seq,TRANSCRIPTOMIC,cDNA,SINGLE,ION_TORRENT,Ion Torrent Proton,,SRP092030,,,IonXpressRNA_014_rawlib.basecaller.bam,bam,52969826.0,2019609.0,IonXpressRNA 014 rawlib.basecaller.bam,0:26.23,A:14762618;C:11847782;G:12164393;T:14195033;N:0,26,,,,14762618,11847782,12164393,14195033,0,SRX2267721,SRS1758925,SRA486759,"UNIVERSITY OF AMSTERDAM, SILS|RB&AB","UNIVERSITY OF AMSTERDAM, SILS",1,0.65926,,0.45113,,0.80515,,0.56221,,22,,B,,usable mapping rate,ion_torrent,ion_torrent,unknown,small_rna,unknown,bulk,unknown,unknown,,Netherlands,2017-11-01,Gastrula,Embryo,Whole Organism,All anatomical structures 41471,SRR4449263,SRX2267720,SRS1758923,SRP092030,PRJNA350377,Zebrafish Danio Rerio small RNA seq at approx. 50% epiboly,PRJNA350377,Transcriptome Analysis,Small RNAseq experiment of individual embryos from the 8 different spawns taken at gastrulation at approximately 50% epiboly,,,Danio rerio embryo at approx. 50% epiboly,Danio rerio embryo at approx. 50% epiboly,S11 RID0445,,strain:ABTL|dev stage:56% epiboly|sex:not applicable|tissue:whole embryo|BioSampleModel:Model organism or animal,,,,,,,,,S11,S11 RID0445,S11 RID0445,Bar coded small RNA sequencing libraries were generated using the Ion Total RNA Seq Kit v2 and the Ion Xpress RNA Seq bar coding kit Thermo Fisher Scientific. Size distribution and yield of the resulting barcoded libraries were assessed using the 2200 TapeStation System with Agilent D1K ScreenTapes Agilent Technologies. Libraries were prepared for sequencing on the Ion Chef System Thermo Fisher Scientific. Sequencing was performed on an Ion Proton System using Ion PI v3 chips Thermo Fisher Scientific.,,,miRNA-Seq,TRANSCRIPTOMIC,cDNA,SINGLE,ION_TORRENT,Ion Torrent Proton,,SRP092030,,,IonXpressRNA_011_rawlib.basecaller.bam,bam,54877334.0,2122171.0,IonXpressRNA 011 rawlib.basecaller.bam,0:25.86,A:14884144;C:12539815;G:13173981;T:14279394;N:0,25,,,,14884144,12539815,13173981,14279394,0,SRX2267720,SRS1758923,SRA486759,"UNIVERSITY OF AMSTERDAM, SILS|RB&AB","UNIVERSITY OF AMSTERDAM, SILS",1,0.62581,,0.40704,,0.82002,,0.59605,,20,,B,,usable mapping rate,ion_torrent,ion_torrent,unknown,small_rna,unknown,bulk,unknown,unknown,,Netherlands,2017-11-01,Gastrula,Embryo,Whole Organism,All anatomical structures 41472,SRR4449262,SRX2267719,SRS1758924,SRP092030,PRJNA350377,Zebrafish Danio Rerio small RNA seq at approx. 50% epiboly,PRJNA350377,Transcriptome Analysis,Small RNAseq experiment of individual embryos from the 8 different spawns taken at gastrulation at approximately 50% epiboly,,,Danio rerio embryo at approx. 50% epiboly,Danio rerio embryo at approx. 50% epiboly,S12 RID0445,,strain:ABTL|dev stage:53% epiboly|sex:not applicable|tissue:whole embryo|BioSampleModel:Model organism or animal,,,,,,,,,S12,S12 RID0445,S12 RID0445,Bar coded small RNA sequencing libraries were generated using the Ion Total RNA Seq Kit v2 and the Ion Xpress RNA Seq bar coding kit Thermo Fisher Scientific. Size distribution and yield of the resulting barcoded libraries were assessed using the 2200 TapeStation System with Agilent D1K ScreenTapes Agilent Technologies. Libraries were prepared for sequencing on the Ion Chef System Thermo Fisher Scientific. Sequencing was performed on an Ion Proton System using Ion PI v3 chips Thermo Fisher Scientific.,,,miRNA-Seq,TRANSCRIPTOMIC,cDNA,SINGLE,ION_TORRENT,Ion Torrent Proton,,SRP092030,,,IonXpressRNA_012_rawlib.basecaller.bam,bam,51987914.0,1937451.0,IonXpressRNA 012 rawlib.basecaller.bam,0:26.83,A:14499922;C:11778716;G:11957347;T:13751929;N:0,26,,,,14499922,11778716,11957347,13751929,0,SRX2267719,SRS1758924,SRA486759,"UNIVERSITY OF AMSTERDAM, SILS|RB&AB","UNIVERSITY OF AMSTERDAM, SILS",1,0.67286,,0.44698,,0.80919,,0.58291,,29,,B,,usable mapping rate,ion_torrent,ion_torrent,unknown,small_rna,unknown,bulk,unknown,unknown,,Netherlands,2017-11-01,Gastrula,Embryo,Whole Organism,All anatomical structures 49101,SRR7726444,SRX4582847,SRS3697100,SRP158508,PRJNA487021,MicroRNA expression signatures for gata4/5/6 knocking down in zebrafish,GSE118850,Transcriptome Analysis,Previous works showed that gata4/5/6 lie at the hierarchical apex of the regulatory network of the hemangioblast formation and primitive myelopoiesis in zebrafish. To explore the roles of miRNAs in zebrafish primitive myelopoiesis we employed deep sequencing to analyze the difference of miRNA expression profiles between gata4/5/6 knockdown embryos gata5/6 morphants and control embryos. Overall design: The embryos microinjected with control MO or gata5/6 MOs at 1 cell stage were collected at 14 hpf for collected for miRNA deep sequencing.The microinjection amount was 1 nl solution containing 6.25 ng gata5 MO and 1.25 ng gata6 MO or 7.5 ng control MO per embryo.,,,,G56 miRNA,GSM3349122,,tissue:G56 embryos|genotype:gata4/5/6 knockdown|developmental stage:embryos|age:14hpf,G56 miRNA,The cDNA library was sequenced using Illumina Solexa following version 8 multiplexed single read sequencing recipe. Fastx fastx toolkit 0.0.13.2 was used to preprocess the original reads of the sequence. The CLC genomics workbench5.5 was applied to match the preprocessed sequence to the Sanger miRBase database version 19.0. Genome build: Sanger miRBase database version 19.0 Supplementary files format and content: .csv file includes small RNA sequences and counts Supplementary files format and content: .xls file includes effective reads and fold changes,G56 embryos,Morpholinos MOs were purchased from Gene Tools http://www.gene tools.com. MOs were dissolved in nanopure water and microinjected into the embryos at xxx cell stages. The microinjection amount was 1 nl solution containing 6.25 ng gata5 MO and 1.25 ng gata6 MO or 7.5 ng control MO per embryo. The embryos microinjected with control MO or gata5/6 MOs at 1 cell stage were collected at 14 hpf for analyzing the miRNA expression changes affected by knocking down gata4/5/6.,Total RNA was isolated from 80 of the 14 hpf embryos and its quantity was examined by electrophoresis using Agilent Bioanalyzer 2100 Agilent Technologies Santa Clara US. The miRNA was isolated using mirVana miRNA Isolation Kit Life technologies USA from the total RNA. The 3’ and 5’ adaptors were added to the miRNA sequentially. cDNA was then reverse transcribed from the miRNA and amplified using a PCR reaction 98℃ 30 s 11 × 98℃ 10 s 60℃ 30 s 72 ℃ 15 s for 72 ℃ 10 min 4℃. The cDNA was separated by 6% Novex TBE PAGE Gel for collecting the fragments with 147 157 nt long. The cDNA library was constructed and the quantity was examined using a commercial kit Qubit™ dsDNA HS Aglient 2100. The concentration of the library was no lower than 0.5 ng/µl and the size of cDNA was 140 160 bp.,Zebrafish were housed in the zebrafish room of Model Animal Research Center Nanjing University in accordance with IACUC approved protocol. All methods were performed in accordance with the relevant guidelines and regulations.,genotype:gata4/5/6 knockdown|developmental stage:embryos|age:14hpf,GSM3349122,GSM3349122: G56 miRNA; Danio rerio; miRNA Seq,GSM3349122,,1,Total RNA was isolated from 80 of the 14 hpf embryos and its quantity was examined by electrophoresis using Agilent Bioanalyzer 2100 Agilent Technologies Santa Clara US. The miRNA was isolated using mirVana miRNA Isolation Kit Life technologies USA from the total RNA. The three prime and five prime adaptors were added to the miRNA sequentially. cDNA was then reverse transcribed from the miRNA and amplified using a PCR reaction 98℃ 30 s 11 × 98℃ 10 s 60℃ 30 s 72 ℃ 15 s for 72 ℃ 10 min 4℃. The cDNA was separated by 6% Novex TBE PAGE Gel for collecting the fragments with 147 157 nt long. The cDNA library was constructed and the quantity was examined using a commercial kit Qubit™ dsDNA HS Aglient 2100. The concentration of the library was no lower than 0.5 ng/µl and the size of cDNA was 140 160 bp.,GEO Accession:GSM3349122,miRNA-Seq,TRANSCRIPTOMIC,size fractionation,SINGLE,ILLUMINA,Illumina MiSeq,,SRP158508,,,,,655037050.0,13100741.0,GSM3349122 r1,0:50 1:0,A:161448247;C:135821164;G:200213833;T:156824030;N:729776,50,0,,,161448247,135821164,200213833,156824030,729776,SRX4582847,SRS3697100,SRA761361,GEO,Nanjing University,1,0.00066,,6e-05,,0.99896,,0.64583,,50,,T,,under 1.2% mapping rate,illumina,miseq,unknown,size_fractionation,unknown,bulk,unknown,unknown,,China,2018-08-21,Segmentation,Embryo,Embryo Imprecise,All anatomical structures 49102,SRR7726443,SRX4582846,SRS3697099,SRP158508,PRJNA487021,MicroRNA expression signatures for gata4/5/6 knocking down in zebrafish,GSE118850,Transcriptome Analysis,Previous works showed that gata4/5/6 lie at the hierarchical apex of the regulatory network of the hemangioblast formation and primitive myelopoiesis in zebrafish. To explore the roles of miRNAs in zebrafish primitive myelopoiesis we employed deep sequencing to analyze the difference of miRNA expression profiles between gata4/5/6 knockdown embryos gata5/6 morphants and control embryos. Overall design: The embryos microinjected with control MO or gata5/6 MOs at 1 cell stage were collected at 14 hpf for collected for miRNA deep sequencing.The microinjection amount was 1 nl solution containing 6.25 ng gata5 MO and 1.25 ng gata6 MO or 7.5 ng control MO per embryo.,,,,WT miRNA,GSM3349121,,tissue:WT embryos|genotype:wild type|developmental stage:embryos|age:14hpf,WT miRNA,The cDNA library was sequenced using Illumina Solexa following version 8 multiplexed single read sequencing recipe. Fastx fastx toolkit 0.0.13.2 was used to preprocess the original reads of the sequence. The CLC genomics workbench5.5 was applied to match the preprocessed sequence to the Sanger miRBase database version 19.0. Genome build: Sanger miRBase database version 19.0 Supplementary files format and content: .csv file includes small RNA sequences and counts Supplementary files format and content: .xls file includes effective reads and fold changes,WT embryos,Morpholinos MOs were purchased from Gene Tools http://www.gene tools.com. MOs were dissolved in nanopure water and microinjected into the embryos at xxx cell stages. The microinjection amount was 1 nl solution containing 6.25 ng gata5 MO and 1.25 ng gata6 MO or 7.5 ng control MO per embryo. The embryos microinjected with control MO or gata5/6 MOs at 1 cell stage were collected at 14 hpf for analyzing the miRNA expression changes affected by knocking down gata4/5/6.,Total RNA was isolated from 80 of the 14 hpf embryos and its quantity was examined by electrophoresis using Agilent Bioanalyzer 2100 Agilent Technologies Santa Clara US. The miRNA was isolated using mirVana miRNA Isolation Kit Life technologies USA from the total RNA. The 3’ and 5’ adaptors were added to the miRNA sequentially. cDNA was then reverse transcribed from the miRNA and amplified using a PCR reaction 98℃ 30 s 11 × 98℃ 10 s 60℃ 30 s 72 ℃ 15 s for 72 ℃ 10 min 4℃. The cDNA was separated by 6% Novex TBE PAGE Gel for collecting the fragments with 147 157 nt long. The cDNA library was constructed and the quantity was examined using a commercial kit Qubit™ dsDNA HS Aglient 2100. The concentration of the library was no lower than 0.5 ng/µl and the size of cDNA was 140 160 bp.,Zebrafish were housed in the zebrafish room of Model Animal Research Center Nanjing University in accordance with IACUC approved protocol. All methods were performed in accordance with the relevant guidelines and regulations.,genotype:wild type|developmental stage:embryos|age:14hpf,GSM3349121,GSM3349121: WT miRNA; Danio rerio; miRNA Seq,GSM3349121,,1,Total RNA was isolated from 80 of the 14 hpf embryos and its quantity was examined by electrophoresis using Agilent Bioanalyzer 2100 Agilent Technologies Santa Clara US. The miRNA was isolated using mirVana miRNA Isolation Kit Life technologies USA from the total RNA. The three prime and five prime adaptors were added to the miRNA sequentially. cDNA was then reverse transcribed from the miRNA and amplified using a PCR reaction 98℃ 30 s 11 × 98℃ 10 s 60℃ 30 s 72 ℃ 15 s for 72 ℃ 10 min 4℃. The cDNA was separated by 6% Novex TBE PAGE Gel for collecting the fragments with 147 157 nt long. The cDNA library was constructed and the quantity was examined using a commercial kit Qubit™ dsDNA HS Aglient 2100. The concentration of the library was no lower than 0.5 ng/µl and the size of cDNA was 140 160 bp.,GEO Accession:GSM3349121,miRNA-Seq,TRANSCRIPTOMIC,size fractionation,SINGLE,ILLUMINA,Illumina MiSeq,,SRP158508,,,,,627151350.0,12543027.0,GSM3349121 r1,0:50 1:0,A:153340174;C:128104541;G:192611227;T:152395340;N:700068,50,0,,,153340174,128104541,192611227,152395340,700068,SRX4582846,SRS3697099,SRA761361,GEO,Nanjing University,1,0.0006,,0.00012,,0.99904,,0.60759,,50,,T,,under 1.2% mapping rate,illumina,miseq,unknown,size_fractionation,unknown,bulk,unknown,unknown,,China,2018-08-21,Segmentation,Embryo,Embryo Imprecise,All anatomical structures 53169,SRR9697470,SRX6455747,SRS5113424,SRP215029,PRJNA555064,Identification and characterization of miRNAs involved in cold acclimation of zebrafish ZF4 cells,GSE134399,Transcriptome Analysis,MicroRNAs miRNAs play vital roles in various biological processes by leading to mRNA cleavage or translational repression and are also involved in multiple stress conditions. However the detailed roles of miRNAs in cold acclimation in fish are still unclear. In the present study high throughput sequencing was performed to identify miRNAs from 6 small RNA libraries from the zebrafish embryonic fibroblast ZF4 cells under control 28°C 30 days and cold acclimation 18°C 30 days conditions. A total of 414 miRNAs 349 known and 65 novel were identified. Among those miRNAs 24 19 known and 5 novel were up regulated and 23 9 known and 14 novel were down regulated in cold acclimated cells. The Gene Ontology GO and Kyoto Encyclopaedia of Genes and Genomes KEGG enrichment analyses indicated that the known differentially expressed miRNAs DE miRNA are involved in cold acclimation by regulation of phosphorylation cell junction intracellular signal transduction ECM receptor interaction and so on. Moreover dre miR 100 3p inhibitor or dre miR 16b mimics could protect ZF4 cells under cold stress indicating the involvement of miRNA in cold acclimation. In summary the present data show that miRNAs are closely involved in cold acclimation in fish and provide information for further understanding of the roles of miRNAs in cold acclimation. Overall design: ZF4 cells were cultured at 28 °C as control and at 18 °C for 30 days seperately. Each condition has three biological replica.,,pubmed:31923196,,ZF4 18 30d cold3,GSM3946004,,tissue:embryonic fibroblast cells|cell line:ZF4|cell type:fibroblast cell line|growth temperature:cultured at 18 C for 30 days|treatment:cold treatment for 30 days,ZF4 18 30d cold3,Illumina Casava1.8 software used for basecalling. Clean reads were obtained from raw sequences post removing all low quality reads N% > 5% or with ploy A contaminants reads smaller than 17 nt or longer than 35 nt and trimming the adapters. Clean reads were mapped to zebrafish reference non coding RNA sequences danRer10 ftp://ftp.ensembl.org/pub/release 91/fasta/ danio rerio/ncrna/ using bowtie 2.3.0 To identify the miRNAs associated with cold acclimation clean reads were aligned to known zebrafish miRNAs database miRBase22 http://www.mirbase.org/ using bowtie2.3.0. The miRNAs expression levels were estimated by TPM Transcripts per million Genome build: GRCz10 Supplementary files format and content: tab delimited text files include TPM values for novel micRNAs,embryonic fibroblast cells,For cold acclimation ZF4 cells were seeded at 50% confluence and the next day transferred to an incubator at 18˚C 5% CO2 in the same medium for 30 days.,Total RNA was extracted using miRNeasy Mini Kit 217004 Qiagen and purified by RNAClean XP Kit A63987 Beckman Coulter and RNase Free DNase Set 79254 Qiagen. Libraries were pooled and sequenced using the Illumina HiSeq machine as 50 bp single end sequencing reads.,ZF4 cell line was from the American Type Culture Collection ATCC CRL 2050. Cells were cultured in Dulbecco's modified Eagle's medium/F12 nutrient mix SH30023.01B Hyclone Thermo Scientific supplemented with 10% fetal bovine serum 10099141 Gibco Life technologies 1% penicillin streptomycin glutamine solution SV30082.01 Hyclone Thermo Scientificat 28°C 5% CO2.,cell line:ZF4|cell type:fibroblast cell line|growth temperature:cultured at 18 C for 30 days|treatment:cold treatment for 30 days,GSM3946004,GSM3946004: ZF4 18 30d cold3; Danio rerio; miRNA Seq,GSM3946004,,1,Total RNA was extracted using miRNeasy Mini Kit 217004 Qiagen and purified by RNAClean XP Kit A63987 Beckman Coulter and RNase Free DNase Set 79254 Qiagen. Libraries were pooled and sequenced using the Illumina HiSeq machine as 50 bp single end sequencing reads.,GEO Accession:GSM3946004,miRNA-Seq,TRANSCRIPTOMIC,size fractionation,SINGLE,ILLUMINA,Illumina HiSeq X Ten,,SRP215029,,,6.fq.gz,fastq,888718150.0,17774363.0,GSM3946004 r1,0:50,A:200112040;C:206776226;G:254640770;T:227172753;N:16361,50,,,,200112040,206776226,254640770,227172753,16361,SRX6455747,SRS5113424,SRA922199,GEO,"Key Laboratory of Exploration and Utilization of Aquatic Genetic Resources, College of Fisheries and Life Science, Shanghai Ocean University",1,0.00546,,0.00027,,0.99799,,0.4985,,50,,T,,under 1.2% mapping rate,illumina,hiseq_era,unknown,size_fractionation,unknown,bulk,unknown,unknown,,China,2019-07-17,Undetermined,Embryo,Embryo Imprecise,All anatomical structures 53170,SRR9697469,SRX6455746,SRS5113421,SRP215029,PRJNA555064,Identification and characterization of miRNAs involved in cold acclimation of zebrafish ZF4 cells,GSE134399,Transcriptome Analysis,MicroRNAs miRNAs play vital roles in various biological processes by leading to mRNA cleavage or translational repression and are also involved in multiple stress conditions. However the detailed roles of miRNAs in cold acclimation in fish are still unclear. In the present study high throughput sequencing was performed to identify miRNAs from 6 small RNA libraries from the zebrafish embryonic fibroblast ZF4 cells under control 28°C 30 days and cold acclimation 18°C 30 days conditions. A total of 414 miRNAs 349 known and 65 novel were identified. Among those miRNAs 24 19 known and 5 novel were up regulated and 23 9 known and 14 novel were down regulated in cold acclimated cells. The Gene Ontology GO and Kyoto Encyclopaedia of Genes and Genomes KEGG enrichment analyses indicated that the known differentially expressed miRNAs DE miRNA are involved in cold acclimation by regulation of phosphorylation cell junction intracellular signal transduction ECM receptor interaction and so on. Moreover dre miR 100 3p inhibitor or dre miR 16b mimics could protect ZF4 cells under cold stress indicating the involvement of miRNA in cold acclimation. In summary the present data show that miRNAs are closely involved in cold acclimation in fish and provide information for further understanding of the roles of miRNAs in cold acclimation. Overall design: ZF4 cells were cultured at 28 °C as control and at 18 °C for 30 days seperately. Each condition has three biological replica.,,pubmed:31923196,,ZF4 18 30d cold2,GSM3946003,,tissue:embryonic fibroblast cells|cell line:ZF4|cell type:fibroblast cell line|growth temperature:cultured at 18 C for 30 days|treatment:cold treatment for 30 days,ZF4 18 30d cold2,Illumina Casava1.8 software used for basecalling. Clean reads were obtained from raw sequences post removing all low quality reads N% > 5% or with ploy A contaminants reads smaller than 17 nt or longer than 35 nt and trimming the adapters. Clean reads were mapped to zebrafish reference non coding RNA sequences danRer10 ftp://ftp.ensembl.org/pub/release 91/fasta/ danio rerio/ncrna/ using bowtie 2.3.0 To identify the miRNAs associated with cold acclimation clean reads were aligned to known zebrafish miRNAs database miRBase22 http://www.mirbase.org/ using bowtie2.3.0. The miRNAs expression levels were estimated by TPM Transcripts per million Genome build: GRCz10 Supplementary files format and content: tab delimited text files include TPM values for novel micRNAs,embryonic fibroblast cells,For cold acclimation ZF4 cells were seeded at 50% confluence and the next day transferred to an incubator at 18˚C 5% CO2 in the same medium for 30 days.,Total RNA was extracted using miRNeasy Mini Kit 217004 Qiagen and purified by RNAClean XP Kit A63987 Beckman Coulter and RNase Free DNase Set 79254 Qiagen. Libraries were pooled and sequenced using the Illumina HiSeq machine as 50 bp single end sequencing reads.,ZF4 cell line was from the American Type Culture Collection ATCC CRL 2050. Cells were cultured in Dulbecco's modified Eagle's medium/F12 nutrient mix SH30023.01B Hyclone Thermo Scientific supplemented with 10% fetal bovine serum 10099141 Gibco Life technologies 1% penicillin streptomycin glutamine solution SV30082.01 Hyclone Thermo Scientificat 28°C 5% CO2.,cell line:ZF4|cell type:fibroblast cell line|growth temperature:cultured at 18 C for 30 days|treatment:cold treatment for 30 days,GSM3946003,GSM3946003: ZF4 18 30d cold2; Danio rerio; miRNA Seq,GSM3946003,,1,Total RNA was extracted using miRNeasy Mini Kit 217004 Qiagen and purified by RNAClean XP Kit A63987 Beckman Coulter and RNase Free DNase Set 79254 Qiagen. Libraries were pooled and sequenced using the Illumina HiSeq machine as 50 bp single end sequencing reads.,GEO Accession:GSM3946003,miRNA-Seq,TRANSCRIPTOMIC,size fractionation,SINGLE,ILLUMINA,Illumina HiSeq X Ten,,SRP215029,,,5.fq.gz,fastq,853031700.0,17060634.0,GSM3946003 r1,0:50,A:192338096;C:205750986;G:242627478;T:212299265;N:15875,50,,,,192338096,205750986,242627478,212299265,15875,SRX6455746,SRS5113421,SRA922199,GEO,"Key Laboratory of Exploration and Utilization of Aquatic Genetic Resources, College of Fisheries and Life Science, Shanghai Ocean University",1,0.00538,,0.00045,,0.99738,,0.47457,,50,,T,,under 1.2% mapping rate,illumina,hiseq_era,unknown,size_fractionation,unknown,bulk,unknown,unknown,,China,2019-07-17,Undetermined,Embryo,Embryo Imprecise,All anatomical structures 53171,SRR9697468,SRX6455745,SRS5113422,SRP215029,PRJNA555064,Identification and characterization of miRNAs involved in cold acclimation of zebrafish ZF4 cells,GSE134399,Transcriptome Analysis,MicroRNAs miRNAs play vital roles in various biological processes by leading to mRNA cleavage or translational repression and are also involved in multiple stress conditions. However the detailed roles of miRNAs in cold acclimation in fish are still unclear. In the present study high throughput sequencing was performed to identify miRNAs from 6 small RNA libraries from the zebrafish embryonic fibroblast ZF4 cells under control 28°C 30 days and cold acclimation 18°C 30 days conditions. A total of 414 miRNAs 349 known and 65 novel were identified. Among those miRNAs 24 19 known and 5 novel were up regulated and 23 9 known and 14 novel were down regulated in cold acclimated cells. The Gene Ontology GO and Kyoto Encyclopaedia of Genes and Genomes KEGG enrichment analyses indicated that the known differentially expressed miRNAs DE miRNA are involved in cold acclimation by regulation of phosphorylation cell junction intracellular signal transduction ECM receptor interaction and so on. Moreover dre miR 100 3p inhibitor or dre miR 16b mimics could protect ZF4 cells under cold stress indicating the involvement of miRNA in cold acclimation. In summary the present data show that miRNAs are closely involved in cold acclimation in fish and provide information for further understanding of the roles of miRNAs in cold acclimation. Overall design: ZF4 cells were cultured at 28 °C as control and at 18 °C for 30 days seperately. Each condition has three biological replica.,,pubmed:31923196,,ZF4 18 30d cold1,GSM3946002,,tissue:embryonic fibroblast cells|cell line:ZF4|cell type:fibroblast cell line|growth temperature:cultured at 18 C for 30 days|treatment:cold treatment for 30 days,ZF4 18 30d cold1,Illumina Casava1.8 software used for basecalling. Clean reads were obtained from raw sequences post removing all low quality reads N% > 5% or with ploy A contaminants reads smaller than 17 nt or longer than 35 nt and trimming the adapters. Clean reads were mapped to zebrafish reference non coding RNA sequences danRer10 ftp://ftp.ensembl.org/pub/release 91/fasta/ danio rerio/ncrna/ using bowtie 2.3.0 To identify the miRNAs associated with cold acclimation clean reads were aligned to known zebrafish miRNAs database miRBase22 http://www.mirbase.org/ using bowtie2.3.0. The miRNAs expression levels were estimated by TPM Transcripts per million Genome build: GRCz10 Supplementary files format and content: tab delimited text files include TPM values for novel micRNAs,embryonic fibroblast cells,For cold acclimation ZF4 cells were seeded at 50% confluence and the next day transferred to an incubator at 18˚C 5% CO2 in the same medium for 30 days.,Total RNA was extracted using miRNeasy Mini Kit 217004 Qiagen and purified by RNAClean XP Kit A63987 Beckman Coulter and RNase Free DNase Set 79254 Qiagen. Libraries were pooled and sequenced using the Illumina HiSeq machine as 50 bp single end sequencing reads.,ZF4 cell line was from the American Type Culture Collection ATCC CRL 2050. Cells were cultured in Dulbecco's modified Eagle's medium/F12 nutrient mix SH30023.01B Hyclone Thermo Scientific supplemented with 10% fetal bovine serum 10099141 Gibco Life technologies 1% penicillin streptomycin glutamine solution SV30082.01 Hyclone Thermo Scientificat 28°C 5% CO2.,cell line:ZF4|cell type:fibroblast cell line|growth temperature:cultured at 18 C for 30 days|treatment:cold treatment for 30 days,GSM3946002,GSM3946002: ZF4 18 30d cold1; Danio rerio; miRNA Seq,GSM3946002,,1,Total RNA was extracted using miRNeasy Mini Kit 217004 Qiagen and purified by RNAClean XP Kit A63987 Beckman Coulter and RNase Free DNase Set 79254 Qiagen. Libraries were pooled and sequenced using the Illumina HiSeq machine as 50 bp single end sequencing reads.,GEO Accession:GSM3946002,miRNA-Seq,TRANSCRIPTOMIC,size fractionation,SINGLE,ILLUMINA,Illumina HiSeq X Ten,,SRP215029,,,4.fq.gz,fastq,878731000.0,17574620.0,GSM3946002 r1,0:50,A:196907854;C:209105082;G:251308531;T:221393524;N:16009,50,,,,196907854,209105082,251308531,221393524,16009,SRX6455745,SRS5113422,SRA922199,GEO,"Key Laboratory of Exploration and Utilization of Aquatic Genetic Resources, College of Fisheries and Life Science, Shanghai Ocean University",1,0.01219,,0.00089,,0.99691,,0.52247,,50,,B,,usable mapping rate,illumina,hiseq_era,unknown,size_fractionation,unknown,bulk,unknown,unknown,,China,2019-07-17,Undetermined,Embryo,Embryo Imprecise,All anatomical structures 53172,SRR9697467,SRX6455744,SRS5113420,SRP215029,PRJNA555064,Identification and characterization of miRNAs involved in cold acclimation of zebrafish ZF4 cells,GSE134399,Transcriptome Analysis,MicroRNAs miRNAs play vital roles in various biological processes by leading to mRNA cleavage or translational repression and are also involved in multiple stress conditions. However the detailed roles of miRNAs in cold acclimation in fish are still unclear. In the present study high throughput sequencing was performed to identify miRNAs from 6 small RNA libraries from the zebrafish embryonic fibroblast ZF4 cells under control 28°C 30 days and cold acclimation 18°C 30 days conditions. A total of 414 miRNAs 349 known and 65 novel were identified. Among those miRNAs 24 19 known and 5 novel were up regulated and 23 9 known and 14 novel were down regulated in cold acclimated cells. The Gene Ontology GO and Kyoto Encyclopaedia of Genes and Genomes KEGG enrichment analyses indicated that the known differentially expressed miRNAs DE miRNA are involved in cold acclimation by regulation of phosphorylation cell junction intracellular signal transduction ECM receptor interaction and so on. Moreover dre miR 100 3p inhibitor or dre miR 16b mimics could protect ZF4 cells under cold stress indicating the involvement of miRNA in cold acclimation. In summary the present data show that miRNAs are closely involved in cold acclimation in fish and provide information for further understanding of the roles of miRNAs in cold acclimation. Overall design: ZF4 cells were cultured at 28 °C as control and at 18 °C for 30 days seperately. Each condition has three biological replica.,,pubmed:31923196,,ZF4 28 con3,GSM3946001,,tissue:embryonic fibroblast cells|cell line:ZF4|cell type:fibroblast cell line|growth temperature:normal cultured 28 C|treatment:control,ZF4 28 con3,Illumina Casava1.8 software used for basecalling. Clean reads were obtained from raw sequences post removing all low quality reads N% > 5% or with ploy A contaminants reads smaller than 17 nt or longer than 35 nt and trimming the adapters. Clean reads were mapped to zebrafish reference non coding RNA sequences danRer10 ftp://ftp.ensembl.org/pub/release 91/fasta/ danio rerio/ncrna/ using bowtie 2.3.0 To identify the miRNAs associated with cold acclimation clean reads were aligned to known zebrafish miRNAs database miRBase22 http://www.mirbase.org/ using bowtie2.3.0. The miRNAs expression levels were estimated by TPM Transcripts per million Genome build: GRCz10 Supplementary files format and content: tab delimited text files include TPM values for novel micRNAs,embryonic fibroblast cells,For cold acclimation ZF4 cells were seeded at 50% confluence and the next day transferred to an incubator at 18˚C 5% CO2 in the same medium for 30 days.,Total RNA was extracted using miRNeasy Mini Kit 217004 Qiagen and purified by RNAClean XP Kit A63987 Beckman Coulter and RNase Free DNase Set 79254 Qiagen. Libraries were pooled and sequenced using the Illumina HiSeq machine as 50 bp single end sequencing reads.,ZF4 cell line was from the American Type Culture Collection ATCC CRL 2050. Cells were cultured in Dulbecco's modified Eagle's medium/F12 nutrient mix SH30023.01B Hyclone Thermo Scientific supplemented with 10% fetal bovine serum 10099141 Gibco Life technologies 1% penicillin streptomycin glutamine solution SV30082.01 Hyclone Thermo Scientificat 28°C 5% CO2.,cell line:ZF4|cell type:fibroblast cell line|growth temperature:normal cultured 28 C|treatment:control,GSM3946001,GSM3946001: ZF4 28 con3; Danio rerio; miRNA Seq,GSM3946001,,1,Total RNA was extracted using miRNeasy Mini Kit 217004 Qiagen and purified by RNAClean XP Kit A63987 Beckman Coulter and RNase Free DNase Set 79254 Qiagen. Libraries were pooled and sequenced using the Illumina HiSeq machine as 50 bp single end sequencing reads.,GEO Accession:GSM3946001,miRNA-Seq,TRANSCRIPTOMIC,size fractionation,SINGLE,ILLUMINA,Illumina HiSeq X Ten,,SRP215029,,,3.fq.gz,fastq,908953950.0,18179079.0,GSM3946001 r1,0:50,A:206519605;C:210829105;G:259204569;T:232383846;N:16825,50,,,,206519605,210829105,259204569,232383846,16825,SRX6455744,SRS5113420,SRA922199,GEO,"Key Laboratory of Exploration and Utilization of Aquatic Genetic Resources, College of Fisheries and Life Science, Shanghai Ocean University",1,0.00508,,0.00042,,0.99756,,0.48,,50,,T,,under 1.2% mapping rate,illumina,hiseq_era,unknown,size_fractionation,unknown,bulk,unknown,unknown,,China,2019-07-17,Undetermined,Embryo,Embryo Imprecise,All anatomical structures 53173,SRR9697466,SRX6455743,SRS5113423,SRP215029,PRJNA555064,Identification and characterization of miRNAs involved in cold acclimation of zebrafish ZF4 cells,GSE134399,Transcriptome Analysis,MicroRNAs miRNAs play vital roles in various biological processes by leading to mRNA cleavage or translational repression and are also involved in multiple stress conditions. However the detailed roles of miRNAs in cold acclimation in fish are still unclear. In the present study high throughput sequencing was performed to identify miRNAs from 6 small RNA libraries from the zebrafish embryonic fibroblast ZF4 cells under control 28°C 30 days and cold acclimation 18°C 30 days conditions. A total of 414 miRNAs 349 known and 65 novel were identified. Among those miRNAs 24 19 known and 5 novel were up regulated and 23 9 known and 14 novel were down regulated in cold acclimated cells. The Gene Ontology GO and Kyoto Encyclopaedia of Genes and Genomes KEGG enrichment analyses indicated that the known differentially expressed miRNAs DE miRNA are involved in cold acclimation by regulation of phosphorylation cell junction intracellular signal transduction ECM receptor interaction and so on. Moreover dre miR 100 3p inhibitor or dre miR 16b mimics could protect ZF4 cells under cold stress indicating the involvement of miRNA in cold acclimation. In summary the present data show that miRNAs are closely involved in cold acclimation in fish and provide information for further understanding of the roles of miRNAs in cold acclimation. Overall design: ZF4 cells were cultured at 28 °C as control and at 18 °C for 30 days seperately. Each condition has three biological replica.,,pubmed:31923196,,ZF4 28 con2,GSM3946000,,tissue:embryonic fibroblast cells|cell line:ZF4|cell type:fibroblast cell line|growth temperature:normal cultured 28 C|treatment:control,ZF4 28 con2,Illumina Casava1.8 software used for basecalling. Clean reads were obtained from raw sequences post removing all low quality reads N% > 5% or with ploy A contaminants reads smaller than 17 nt or longer than 35 nt and trimming the adapters. Clean reads were mapped to zebrafish reference non coding RNA sequences danRer10 ftp://ftp.ensembl.org/pub/release 91/fasta/ danio rerio/ncrna/ using bowtie 2.3.0 To identify the miRNAs associated with cold acclimation clean reads were aligned to known zebrafish miRNAs database miRBase22 http://www.mirbase.org/ using bowtie2.3.0. The miRNAs expression levels were estimated by TPM Transcripts per million Genome build: GRCz10 Supplementary files format and content: tab delimited text files include TPM values for novel micRNAs,embryonic fibroblast cells,For cold acclimation ZF4 cells were seeded at 50% confluence and the next day transferred to an incubator at 18˚C 5% CO2 in the same medium for 30 days.,Total RNA was extracted using miRNeasy Mini Kit 217004 Qiagen and purified by RNAClean XP Kit A63987 Beckman Coulter and RNase Free DNase Set 79254 Qiagen. Libraries were pooled and sequenced using the Illumina HiSeq machine as 50 bp single end sequencing reads.,ZF4 cell line was from the American Type Culture Collection ATCC CRL 2050. Cells were cultured in Dulbecco's modified Eagle's medium/F12 nutrient mix SH30023.01B Hyclone Thermo Scientific supplemented with 10% fetal bovine serum 10099141 Gibco Life technologies 1% penicillin streptomycin glutamine solution SV30082.01 Hyclone Thermo Scientificat 28°C 5% CO2.,cell line:ZF4|cell type:fibroblast cell line|growth temperature:normal cultured 28 C|treatment:control,GSM3946000,GSM3946000: ZF4 28 con2; Danio rerio; miRNA Seq,GSM3946000,,1,Total RNA was extracted using miRNeasy Mini Kit 217004 Qiagen and purified by RNAClean XP Kit A63987 Beckman Coulter and RNase Free DNase Set 79254 Qiagen. Libraries were pooled and sequenced using the Illumina HiSeq machine as 50 bp single end sequencing reads.,GEO Accession:GSM3946000,miRNA-Seq,TRANSCRIPTOMIC,size fractionation,SINGLE,ILLUMINA,Illumina HiSeq X Ten,,SRP215029,,,2.fq.gz,fastq,876929500.0,17538590.0,GSM3946000 r1,0:50,A:198651931;C:204780756;G:249251465;T:224229047;N:16301,50,,,,198651931,204780756,249251465,224229047,16301,SRX6455743,SRS5113423,SRA922199,GEO,"Key Laboratory of Exploration and Utilization of Aquatic Genetic Resources, College of Fisheries and Life Science, Shanghai Ocean University",1,0.01465,,0.00237,,0.99559,,0.5232,,50,,B,,usable mapping rate,illumina,hiseq_era,unknown,size_fractionation,unknown,bulk,unknown,unknown,,China,2019-07-17,Undetermined,Embryo,Embryo Imprecise,All anatomical structures 53174,SRR9697465,SRX6455742,SRS5113425,SRP215029,PRJNA555064,Identification and characterization of miRNAs involved in cold acclimation of zebrafish ZF4 cells,GSE134399,Transcriptome Analysis,MicroRNAs miRNAs play vital roles in various biological processes by leading to mRNA cleavage or translational repression and are also involved in multiple stress conditions. However the detailed roles of miRNAs in cold acclimation in fish are still unclear. In the present study high throughput sequencing was performed to identify miRNAs from 6 small RNA libraries from the zebrafish embryonic fibroblast ZF4 cells under control 28°C 30 days and cold acclimation 18°C 30 days conditions. A total of 414 miRNAs 349 known and 65 novel were identified. Among those miRNAs 24 19 known and 5 novel were up regulated and 23 9 known and 14 novel were down regulated in cold acclimated cells. The Gene Ontology GO and Kyoto Encyclopaedia of Genes and Genomes KEGG enrichment analyses indicated that the known differentially expressed miRNAs DE miRNA are involved in cold acclimation by regulation of phosphorylation cell junction intracellular signal transduction ECM receptor interaction and so on. Moreover dre miR 100 3p inhibitor or dre miR 16b mimics could protect ZF4 cells under cold stress indicating the involvement of miRNA in cold acclimation. In summary the present data show that miRNAs are closely involved in cold acclimation in fish and provide information for further understanding of the roles of miRNAs in cold acclimation. Overall design: ZF4 cells were cultured at 28 °C as control and at 18 °C for 30 days seperately. Each condition has three biological replica.,,pubmed:31923196,,ZF4 28 con1,GSM3945999,,tissue:embryonic fibroblast cells|cell line:ZF4|cell type:fibroblast cell line|growth temperature:normal cultured 28 C|treatment:control,ZF4 28 con1,Illumina Casava1.8 software used for basecalling. Clean reads were obtained from raw sequences post removing all low quality reads N% > 5% or with ploy A contaminants reads smaller than 17 nt or longer than 35 nt and trimming the adapters. Clean reads were mapped to zebrafish reference non coding RNA sequences danRer10 ftp://ftp.ensembl.org/pub/release 91/fasta/ danio rerio/ncrna/ using bowtie 2.3.0 To identify the miRNAs associated with cold acclimation clean reads were aligned to known zebrafish miRNAs database miRBase22 http://www.mirbase.org/ using bowtie2.3.0. The miRNAs expression levels were estimated by TPM Transcripts per million Genome build: GRCz10 Supplementary files format and content: tab delimited text files include TPM values for novel micRNAs,embryonic fibroblast cells,For cold acclimation ZF4 cells were seeded at 50% confluence and the next day transferred to an incubator at 18˚C 5% CO2 in the same medium for 30 days.,Total RNA was extracted using miRNeasy Mini Kit 217004 Qiagen and purified by RNAClean XP Kit A63987 Beckman Coulter and RNase Free DNase Set 79254 Qiagen. Libraries were pooled and sequenced using the Illumina HiSeq machine as 50 bp single end sequencing reads.,ZF4 cell line was from the American Type Culture Collection ATCC CRL 2050. Cells were cultured in Dulbecco's modified Eagle's medium/F12 nutrient mix SH30023.01B Hyclone Thermo Scientific supplemented with 10% fetal bovine serum 10099141 Gibco Life technologies 1% penicillin streptomycin glutamine solution SV30082.01 Hyclone Thermo Scientificat 28°C 5% CO2.,cell line:ZF4|cell type:fibroblast cell line|growth temperature:normal cultured 28 C|treatment:control,GSM3945999,GSM3945999: ZF4 28 con1; Danio rerio; miRNA Seq,GSM3945999,,1,Total RNA was extracted using miRNeasy Mini Kit 217004 Qiagen and purified by RNAClean XP Kit A63987 Beckman Coulter and RNase Free DNase Set 79254 Qiagen. Libraries were pooled and sequenced using the Illumina HiSeq machine as 50 bp single end sequencing reads.,GEO Accession:GSM3945999,miRNA-Seq,TRANSCRIPTOMIC,size fractionation,SINGLE,ILLUMINA,Illumina HiSeq X Ten,,SRP215029,,,1.fq.gz,fastq,957098100.0,19141962.0,GSM3945999 r1,0:50,A:217645979;C:223129215;G:273039214;T:243266316;N:17376,50,,,,217645979,223129215,273039214,243266316,17376,SRX6455742,SRS5113425,SRA922199,GEO,"Key Laboratory of Exploration and Utilization of Aquatic Genetic Resources, College of Fisheries and Life Science, Shanghai Ocean University",1,0.00967,,0.0007,,0.99701,,0.51905,,50,,T,,under 1.2% mapping rate,illumina,hiseq_era,unknown,size_fractionation,unknown,bulk,unknown,unknown,,China,2019-07-17,Undetermined,Embryo,Embryo Imprecise,All anatomical structures 55539,SRR10532695,SRX7216660,SRS5719128,SRP233258,PRJNA591815,Ago2 dependent processing allows miR 451 to evade the global microRNA turnover elicited during erythropoiesis,PRJNA591815,Other,MicroRNAs are sequentially processed by two RNAse III enzymes Drosha and Dicer. miR 451 is the only known miRNA whose processing bypasses Dicer and instead relies on the slicer activity of Argonaute 2 Ago2. MiR 451 is highly conserved in vertebrates and regulates erythrocyte maturation where it becomes the most abundant miRNA. However the basis for the non canonical biogenesis of miR 451 is unclear. In this study we tested the hypothesis that miR 144 represses Dicer in a negative feedback loop during erythropoiesis and enhances miR 451 biogenesis. Loss of miR 144 mediated Dicer repression in zebrafish embryos and human cells leads to increased canonical miRNA production and impaired miR 451 maturation.,,,,,miR 144 mutant,,isolate:Lab reared|age:2 days|sex:not applicable|tissue:peripheral blood|genotype:miR 144 / |phenotype:wild type|treatment:n1|BioSampleModel:Model organism or animal,,,,,,,,,Small RNA from peripheral blood from 2 dpf zebrafish embryos miR 451 mutant,sRNA Mut miR 144,sRNA Mut miR 144,Small RNA libraries were prepared from total RNA 0.5 g isolated from peripheral blood of wild type WT and miR 144 / embryos at 48 hpf Small RNAs were size selected in 10% denaturing polyacrylamide gel in 1X TBE in range from 18 to 75 bp. RNA extraction from the gel was achieved by incubation in 0.3 M NaCl overnight at 4C with following precipitation with isopropanol. Pre adenylated 3 custom adaptor WT: /5PHOS/N*NCACAAGATCGGAAGAGCACACGTCTGAACTCCAGTCAC/3ddC/; miR 144 / :/5PHOS/N*NAGAGAGATCGGAAGAGCACACGTCTGAACTCCAGTCAC/3ddC/ were ligated to small RNAs by T4 RNA ligase for 2 h at 22 C. post ligated products were size selected by gel from non ligated adaptor. Reverse transcription was performed by SuperScript III Reverse Transcription kit Thermo Fisher using custom RT Cloning Primer /5PHOS/NNNNAGATCGGAAGAGCGTCGTGTAGGGAAAGAGTGTAGATCTCGGTGGTCGC SPC18 GGATCC SPC18 GTGACTGGAGTTCAGACGTGTGCTC. Then cDNA products were isolated by gel selection and then circularized by CircLigase ssDNA Ligase Epicentre. cDNA libraries were amplified in reactions containing forward and reverse Illumina index primers.,,,miRNA-Seq,TRANSCRIPTOMIC,size fractionation,SINGLE,ILLUMINA,NextSeq 500,,SRP233258,,,sRNA-miR-144.fastq.gz,fastq,284208421.0,7813754.0,sRNA miR 144.fastq.gz,0:36.37,A:63063755;C:66933795;G:92235682;T:61966771;N:8418,36,,,,63063755,66933795,92235682,61966771,8418,SRX7216660,SRS5719128,SRA1002853,University of East Anglia|Biological Sciences,University of East Anglia,1,0.02041,,0.00444,,0.98512,,0.44771,,28,,B,,usable mapping rate,illumina,nextseq,unknown,size_fractionation,unknown,bulk,unknown,unknown,,United Kingdom,2019-11-26,Hatching,Embryo,Blood,Hematopoietic System 55540,SRR10532696,SRX7216659,SRS5719127,SRP233258,PRJNA591815,Ago2 dependent processing allows miR 451 to evade the global microRNA turnover elicited during erythropoiesis,PRJNA591815,Other,MicroRNAs are sequentially processed by two RNAse III enzymes Drosha and Dicer. miR 451 is the only known miRNA whose processing bypasses Dicer and instead relies on the slicer activity of Argonaute 2 Ago2. MiR 451 is highly conserved in vertebrates and regulates erythrocyte maturation where it becomes the most abundant miRNA. However the basis for the non canonical biogenesis of miR 451 is unclear. In this study we tested the hypothesis that miR 144 represses Dicer in a negative feedback loop during erythropoiesis and enhances miR 451 biogenesis. Loss of miR 144 mediated Dicer repression in zebrafish embryos and human cells leads to increased canonical miRNA production and impaired miR 451 maturation.,,,,,wild type,,isolate:Lab reared|age:2 days|sex:not applicable|tissue:peripheral blood|genotype:wild type|phenotype:wild type|treatment:n1|BioSampleModel:Model organism or animal,,,,,,,,,Small RNA from peripheral blood from 2 dpf zebrafish embryos wild type,sRNA WT,sRNA WT,Small RNA libraries were prepared from total RNA 0.5 g isolated from peripheral blood of wild type WT and miR 144 / embryos at 48 hpf Small RNAs were size selected in 10% denaturing polyacrylamide gel in 1X TBE in range from 18 to 75 bp. RNA extraction from the gel was achieved by incubation in 0.3 M NaCl overnight at 4C with following precipitation with isopropanol. Pre adenylated 3 custom adaptor WT: /5PHOS/N*NCACAAGATCGGAAGAGCACACGTCTGAACTCCAGTCAC/3ddC/; miR 144 / :/5PHOS/N*NAGAGAGATCGGAAGAGCACACGTCTGAACTCCAGTCAC/3ddC/ were ligated to small RNAs by T4 RNA ligase for 2 h at 22 C. post ligated products were size selected by gel from non ligated adaptor. Reverse transcription was performed by SuperScript III Reverse Transcription kit Thermo Fisher using custom RT Cloning Primer /5PHOS/NNNNAGATCGGAAGAGCGTCGTGTAGGGAAAGAGTGTAGATCTCGGTGGTCGC SPC18 GGATCC SPC18 GTGACTGGAGTTCAGACGTGTGCTC. Then cDNA products were isolated by gel selection and then circularized by CircLigase ssDNA Ligase Epicentre. cDNA libraries were amplified in reactions containing forward and reverse Illumina index primers.,,,miRNA-Seq,TRANSCRIPTOMIC,size fractionation,SINGLE,ILLUMINA,NextSeq 500,,SRP233258,,,sRNA-WT.fastq.gz,fastq,294275059.0,8550051.0,sRNA WT.fastq.gz,0:34.42,A:65237071;C:85092331;G:80441993;T:63494506;N:9158,34,,,,65237071,85092331,80441993,63494506,9158,SRX7216659,SRS5719127,SRA1002853,University of East Anglia|Biological Sciences,University of East Anglia,1,0.00854,,0.00213,,0.99184,,0.55467,,31,,T,,under 1.2% mapping rate,illumina,nextseq,unknown,size_fractionation,unknown,bulk,unknown,unknown,,United Kingdom,2019-11-26,Hatching,Embryo,Blood,Hematopoietic System 57186,SRR11263444,SRX7870077,SRS6278494,SRP251978,PRJNA611062,Functional Characterization and Expression Analyses Show Differential Roles of Maternal and Zygotic Dgcr8 in Early Embryonic Development [miRNA seq],GSE146605,Transcriptome Analysis,Expression Analyses Show Differential Roles of Maternal and Zygotic Dgcr8 in Early Embryonic Development Overall design: Methods: Embronic miRNA expression of 4.5 hpf wild type WT and maternal zygotic mutant MZdgcr8 zebrafish were generated by deep sequencing in triplicate.,parent bioproject:PRJNA611061,,,miRNA of MZdgcr8 3,GSM4396432,,source name:Embryo|strain:AB|tissue:embryo|age:4.5hpf|genotype:MZdgcr8,miRNA of MZdgcr8 3,Subsequently unique sequences with length in 1825 nucleotide were mapped to specific species precursors in miRBase 22.0 by BLAST search to identify known miRNAs and novel 3p and 5p derived miRNAs. Length variation at both three prime and five prime ends and one mismatch inside of the sequence were allowed in the alignment. The unique sequences mapping to specific species mature miRNAs in hairpin arms were identified as known miRNAs. The unique sequences mapping to the other arm of known specific species precursor hairpin opposite to the annotated mature miRNA containing arm were considered to be novel 5p or 3p derived miRNA candidates. The remaining sequences were mapped to other selected species precursors with the exclusion of specific species in miRBase 22.0 by BLAST search and the mapped pre miRNAs were further BLASTed against the specific species genomes to determine their genomic locations. The above two we defined as known miRNAs. The unmapped sequences were BLASTed against the genomes and the hairpin RNA structures containing sequences were predicated from the flank 120 nt sequences using RNAfold software http://rna.tbi.univie.ac. at/cgi bin/RNAfold.cgi. The criteria for secondary structure prediction were: 1 number of nucleotides in one bulge in stem ≤12 2 number of base pairs in the stem region of the predicted hairpin ≥16 3 cutoff of free energy kCal/mol ≤ 15 4 length of hairpin up and down stems + terminal loop ≥50 5 length of hairpin loop ≤200. 6 number of nucleotides in one bulge in mature region ≤4 7 number of biased errors in one bulge in mature region ≤2 8 number of biased bulges in mature region ≤2 9 number of errors in mature region ≤4 10 number of base pairs in the mature region of the predicted hairpin ≥12 11 percent of mature in stem ≥80. Supplementary files format and content: excel expression profiles,Embryo,,small RNA was extracted from MZdcgr8 and Wild type embryos 50 embryos per sample at zfs:0000015 stage of early development representing 4.5 hpf using miRNeasy Mini Kit Qiagen. RNA libraries were prepared for sequencing using standard Illumina protocols,,strain:AB|tissue:embryo|age:4.5hpf|genotype:MZdgcr8,GSM4396432,GSM4396432: miRNA of MZdgcr8 3; Danio rerio; miRNA Seq,GSM4396432,,1,small RNA was extracted from MZdcgr8 and Wild type embryos 50 embryos per sample at zfs:0000015 stage of early development representing 4.5 hpf using miRNeasy Mini Kit Qiagen. RNA libraries were prepared for sequencing using standard Illumina protocols,GEO Accession:GSM4396432,miRNA-Seq,TRANSCRIPTOMIC,size fractionation,SINGLE,ILLUMINA,Illumina HiSeq 2500,,SRP251978,,,MZ_3_miRNA.fq.gz,fastq,602855750.0,12057115.0,GSM4396432 r1,0:50 1:0,A:146678206;C:139956283;G:181049484;T:135139840;N:31937,50,0,,,146678206,139956283,181049484,135139840,31937,SRX7870077,SRS6278494,SRA1052219,GEO,The Chinese University of Hong Kong,1,0.00091,,0.0001,,0.9987,,0.73076,,50,,T,,under 1.2% mapping rate,illumina,hiseq_era,5prime,size_fractionation,unknown,bulk,unknown,unknown,,China,2020-03-08,Blastula,Embryo,Embryo Imprecise,All anatomical structures 57187,SRR11263443,SRX7870076,SRS6278493,SRP251978,PRJNA611062,Functional Characterization and Expression Analyses Show Differential Roles of Maternal and Zygotic Dgcr8 in Early Embryonic Development [miRNA seq],GSE146605,Transcriptome Analysis,Expression Analyses Show Differential Roles of Maternal and Zygotic Dgcr8 in Early Embryonic Development Overall design: Methods: Embronic miRNA expression of 4.5 hpf wild type WT and maternal zygotic mutant MZdgcr8 zebrafish were generated by deep sequencing in triplicate.,parent bioproject:PRJNA611061,,,miRNA of MZdgcr8 2,GSM4396431,,source name:Embryo|strain:AB|tissue:embryo|age:4.5hpf|genotype:MZdgcr8,miRNA of MZdgcr8 2,Subsequently unique sequences with length in 1825 nucleotide were mapped to specific species precursors in miRBase 22.0 by BLAST search to identify known miRNAs and novel 3p and 5p derived miRNAs. Length variation at both three prime and five prime ends and one mismatch inside of the sequence were allowed in the alignment. The unique sequences mapping to specific species mature miRNAs in hairpin arms were identified as known miRNAs. The unique sequences mapping to the other arm of known specific species precursor hairpin opposite to the annotated mature miRNA containing arm were considered to be novel 5p or 3p derived miRNA candidates. The remaining sequences were mapped to other selected species precursors with the exclusion of specific species in miRBase 22.0 by BLAST search and the mapped pre miRNAs were further BLASTed against the specific species genomes to determine their genomic locations. The above two we defined as known miRNAs. The unmapped sequences were BLASTed against the genomes and the hairpin RNA structures containing sequences were predicated from the flank 120 nt sequences using RNAfold software http://rna.tbi.univie.ac. at/cgi bin/RNAfold.cgi. The criteria for secondary structure prediction were: 1 number of nucleotides in one bulge in stem ≤12 2 number of base pairs in the stem region of the predicted hairpin ≥16 3 cutoff of free energy kCal/mol ≤ 15 4 length of hairpin up and down stems + terminal loop ≥50 5 length of hairpin loop ≤200. 6 number of nucleotides in one bulge in mature region ≤4 7 number of biased errors in one bulge in mature region ≤2 8 number of biased bulges in mature region ≤2 9 number of errors in mature region ≤4 10 number of base pairs in the mature region of the predicted hairpin ≥12 11 percent of mature in stem ≥80. Supplementary files format and content: excel expression profiles,Embryo,,small RNA was extracted from MZdcgr8 and Wild type embryos 50 embryos per sample at zfs:0000015 stage of early development representing 4.5 hpf using miRNeasy Mini Kit Qiagen. RNA libraries were prepared for sequencing using standard Illumina protocols,,strain:AB|tissue:embryo|age:4.5hpf|genotype:MZdgcr8,GSM4396431,GSM4396431: miRNA of MZdgcr8 2; Danio rerio; miRNA Seq,GSM4396431,,1,small RNA was extracted from MZdcgr8 and Wild type embryos 50 embryos per sample at zfs:0000015 stage of early development representing 4.5 hpf using miRNeasy Mini Kit Qiagen. RNA libraries were prepared for sequencing using standard Illumina protocols,GEO Accession:GSM4396431,miRNA-Seq,TRANSCRIPTOMIC,size fractionation,SINGLE,ILLUMINA,Illumina HiSeq 2500,,SRP251978,,,MZ_2_miRNA.fq.gz,fastq,532605954.0,10443254.0,GSM4396431 r1,0:51 1:0,A:124901241;C:134604417;G:148078897;T:124932015;N:89384,51,0,,,124901241,134604417,148078897,124932015,89384,SRX7870076,SRS6278493,SRA1052219,GEO,The Chinese University of Hong Kong,1,0.0002,,2e-05,,0.99935,,0.51428,,51,,T,,under 1.2% mapping rate,illumina,hiseq_era,5prime,size_fractionation,unknown,bulk,unknown,unknown,,China,2020-03-08,Blastula,Embryo,Embryo Imprecise,All anatomical structures 57188,SRR11263442,SRX7870075,SRS6278492,SRP251978,PRJNA611062,Functional Characterization and Expression Analyses Show Differential Roles of Maternal and Zygotic Dgcr8 in Early Embryonic Development [miRNA seq],GSE146605,Transcriptome Analysis,Expression Analyses Show Differential Roles of Maternal and Zygotic Dgcr8 in Early Embryonic Development Overall design: Methods: Embronic miRNA expression of 4.5 hpf wild type WT and maternal zygotic mutant MZdgcr8 zebrafish were generated by deep sequencing in triplicate.,parent bioproject:PRJNA611061,,,miRNA of MZdgcr8 1,GSM4396430,,source name:Embryo|strain:AB|tissue:embryo|age:4.5hpf|genotype:MZdgcr8,miRNA of MZdgcr8 1,Subsequently unique sequences with length in 1825 nucleotide were mapped to specific species precursors in miRBase 22.0 by BLAST search to identify known miRNAs and novel 3p and 5p derived miRNAs. Length variation at both three prime and five prime ends and one mismatch inside of the sequence were allowed in the alignment. The unique sequences mapping to specific species mature miRNAs in hairpin arms were identified as known miRNAs. The unique sequences mapping to the other arm of known specific species precursor hairpin opposite to the annotated mature miRNA containing arm were considered to be novel 5p or 3p derived miRNA candidates. The remaining sequences were mapped to other selected species precursors with the exclusion of specific species in miRBase 22.0 by BLAST search and the mapped pre miRNAs were further BLASTed against the specific species genomes to determine their genomic locations. The above two we defined as known miRNAs. The unmapped sequences were BLASTed against the genomes and the hairpin RNA structures containing sequences were predicated from the flank 120 nt sequences using RNAfold software http://rna.tbi.univie.ac. at/cgi bin/RNAfold.cgi. The criteria for secondary structure prediction were: 1 number of nucleotides in one bulge in stem ≤12 2 number of base pairs in the stem region of the predicted hairpin ≥16 3 cutoff of free energy kCal/mol ≤ 15 4 length of hairpin up and down stems + terminal loop ≥50 5 length of hairpin loop ≤200. 6 number of nucleotides in one bulge in mature region ≤4 7 number of biased errors in one bulge in mature region ≤2 8 number of biased bulges in mature region ≤2 9 number of errors in mature region ≤4 10 number of base pairs in the mature region of the predicted hairpin ≥12 11 percent of mature in stem ≥80. Supplementary files format and content: excel expression profiles,Embryo,,small RNA was extracted from MZdcgr8 and Wild type embryos 50 embryos per sample at zfs:0000015 stage of early development representing 4.5 hpf using miRNeasy Mini Kit Qiagen. RNA libraries were prepared for sequencing using standard Illumina protocols,,strain:AB|tissue:embryo|age:4.5hpf|genotype:MZdgcr8,GSM4396430,GSM4396430: miRNA of MZdgcr8 1; Danio rerio; miRNA Seq,GSM4396430,,1,small RNA was extracted from MZdcgr8 and Wild type embryos 50 embryos per sample at zfs:0000015 stage of early development representing 4.5 hpf using miRNeasy Mini Kit Qiagen. RNA libraries were prepared for sequencing using standard Illumina protocols,GEO Accession:GSM4396430,miRNA-Seq,TRANSCRIPTOMIC,size fractionation,SINGLE,ILLUMINA,Illumina HiSeq 2500,,SRP251978,,,MZ_1_miRNA.fq.gz,fastq,588374148.0,11536748.0,GSM4396430 r1,0:51 1:0,A:137533072;C:149724383;G:163915952;T:137198731;N:2010,51,0,,,137533072,149724383,163915952,137198731,2010,SRX7870075,SRS6278492,SRA1052219,GEO,The Chinese University of Hong Kong,1,0.0014,,0.00031,,0.99795,,0.62441,,51,,T,,under 1.2% mapping rate,illumina,hiseq_era,5prime,size_fractionation,unknown,bulk,unknown,unknown,,China,2020-03-08,Blastula,Embryo,Embryo Imprecise,All anatomical structures 57189,SRR11263441,SRX7870074,SRS6278490,SRP251978,PRJNA611062,Functional Characterization and Expression Analyses Show Differential Roles of Maternal and Zygotic Dgcr8 in Early Embryonic Development [miRNA seq],GSE146605,Transcriptome Analysis,Expression Analyses Show Differential Roles of Maternal and Zygotic Dgcr8 in Early Embryonic Development Overall design: Methods: Embronic miRNA expression of 4.5 hpf wild type WT and maternal zygotic mutant MZdgcr8 zebrafish were generated by deep sequencing in triplicate.,parent bioproject:PRJNA611061,,,miRNA of Wild type 3,GSM4396429,,source name:Embryo|strain:AB|tissue:embryo|age:4.5hpf|genotype:wild type,miRNA of Wild type 3,Subsequently unique sequences with length in 1825 nucleotide were mapped to specific species precursors in miRBase 22.0 by BLAST search to identify known miRNAs and novel 3p and 5p derived miRNAs. Length variation at both three prime and five prime ends and one mismatch inside of the sequence were allowed in the alignment. The unique sequences mapping to specific species mature miRNAs in hairpin arms were identified as known miRNAs. The unique sequences mapping to the other arm of known specific species precursor hairpin opposite to the annotated mature miRNA containing arm were considered to be novel 5p or 3p derived miRNA candidates. The remaining sequences were mapped to other selected species precursors with the exclusion of specific species in miRBase 22.0 by BLAST search and the mapped pre miRNAs were further BLASTed against the specific species genomes to determine their genomic locations. The above two we defined as known miRNAs. The unmapped sequences were BLASTed against the genomes and the hairpin RNA structures containing sequences were predicated from the flank 120 nt sequences using RNAfold software http://rna.tbi.univie.ac. at/cgi bin/RNAfold.cgi. The criteria for secondary structure prediction were: 1 number of nucleotides in one bulge in stem ≤12 2 number of base pairs in the stem region of the predicted hairpin ≥16 3 cutoff of free energy kCal/mol ≤ 15 4 length of hairpin up and down stems + terminal loop ≥50 5 length of hairpin loop ≤200. 6 number of nucleotides in one bulge in mature region ≤4 7 number of biased errors in one bulge in mature region ≤2 8 number of biased bulges in mature region ≤2 9 number of errors in mature region ≤4 10 number of base pairs in the mature region of the predicted hairpin ≥12 11 percent of mature in stem ≥80. Supplementary files format and content: excel expression profiles,Embryo,,small RNA was extracted from MZdcgr8 and Wild type embryos 50 embryos per sample at zfs:0000015 stage of early development representing 4.5 hpf using miRNeasy Mini Kit Qiagen. RNA libraries were prepared for sequencing using standard Illumina protocols,,strain:AB|tissue:embryo|age:4.5hpf|genotype:wild type,GSM4396429,GSM4396429: miRNA of Wild type 3; Danio rerio; miRNA Seq,GSM4396429,,1,small RNA was extracted from MZdcgr8 and Wild type embryos 50 embryos per sample at zfs:0000015 stage of early development representing 4.5 hpf using miRNeasy Mini Kit Qiagen. RNA libraries were prepared for sequencing using standard Illumina protocols,GEO Accession:GSM4396429,miRNA-Seq,TRANSCRIPTOMIC,size fractionation,SINGLE,ILLUMINA,Illumina HiSeq 2500,,SRP251978,,,WT_3_miRNA.fq.gz,fastq,688929450.0,13778589.0,GSM4396429 r1,0:50 1:0,A:171239999;C:140558088;G:209452609;T:167641448;N:37306,50,0,,,171239999,140558088,209452609,167641448,37306,SRX7870074,SRS6278490,SRA1052219,GEO,The Chinese University of Hong Kong,1,0.00247,,0.00016,,0.99797,,0.60356,,50,,T,,under 1.2% mapping rate,illumina,hiseq_era,5prime,size_fractionation,unknown,bulk,unknown,unknown,,China,2020-03-08,Blastula,Embryo,Embryo Imprecise,All anatomical structures 57190,SRR11263440,SRX7870073,SRS6278491,SRP251978,PRJNA611062,Functional Characterization and Expression Analyses Show Differential Roles of Maternal and Zygotic Dgcr8 in Early Embryonic Development [miRNA seq],GSE146605,Transcriptome Analysis,Expression Analyses Show Differential Roles of Maternal and Zygotic Dgcr8 in Early Embryonic Development Overall design: Methods: Embronic miRNA expression of 4.5 hpf wild type WT and maternal zygotic mutant MZdgcr8 zebrafish were generated by deep sequencing in triplicate.,parent bioproject:PRJNA611061,,,miRNA of Wild type 2,GSM4396428,,source name:Embryo|strain:AB|tissue:embryo|age:4.5hpf|genotype:wild type,miRNA of Wild type 2,Subsequently unique sequences with length in 1825 nucleotide were mapped to specific species precursors in miRBase 22.0 by BLAST search to identify known miRNAs and novel 3p and 5p derived miRNAs. Length variation at both three prime and five prime ends and one mismatch inside of the sequence were allowed in the alignment. The unique sequences mapping to specific species mature miRNAs in hairpin arms were identified as known miRNAs. The unique sequences mapping to the other arm of known specific species precursor hairpin opposite to the annotated mature miRNA containing arm were considered to be novel 5p or 3p derived miRNA candidates. The remaining sequences were mapped to other selected species precursors with the exclusion of specific species in miRBase 22.0 by BLAST search and the mapped pre miRNAs were further BLASTed against the specific species genomes to determine their genomic locations. The above two we defined as known miRNAs. The unmapped sequences were BLASTed against the genomes and the hairpin RNA structures containing sequences were predicated from the flank 120 nt sequences using RNAfold software http://rna.tbi.univie.ac. at/cgi bin/RNAfold.cgi. The criteria for secondary structure prediction were: 1 number of nucleotides in one bulge in stem ≤12 2 number of base pairs in the stem region of the predicted hairpin ≥16 3 cutoff of free energy kCal/mol ≤ 15 4 length of hairpin up and down stems + terminal loop ≥50 5 length of hairpin loop ≤200. 6 number of nucleotides in one bulge in mature region ≤4 7 number of biased errors in one bulge in mature region ≤2 8 number of biased bulges in mature region ≤2 9 number of errors in mature region ≤4 10 number of base pairs in the mature region of the predicted hairpin ≥12 11 percent of mature in stem ≥80. Supplementary files format and content: excel expression profiles,Embryo,,small RNA was extracted from MZdcgr8 and Wild type embryos 50 embryos per sample at zfs:0000015 stage of early development representing 4.5 hpf using miRNeasy Mini Kit Qiagen. RNA libraries were prepared for sequencing using standard Illumina protocols,,strain:AB|tissue:embryo|age:4.5hpf|genotype:wild type,GSM4396428,GSM4396428: miRNA of Wild type 2; Danio rerio; miRNA Seq,GSM4396428,,1,small RNA was extracted from MZdcgr8 and Wild type embryos 50 embryos per sample at zfs:0000015 stage of early development representing 4.5 hpf using miRNeasy Mini Kit Qiagen. RNA libraries were prepared for sequencing using standard Illumina protocols,GEO Accession:GSM4396428,miRNA-Seq,TRANSCRIPTOMIC,size fractionation,SINGLE,ILLUMINA,Illumina HiSeq 2500,,SRP251978,,,WT_2_miRNA.fq.gz,fastq,680017935.0,13333685.0,GSM4396428 r1,0:51 1:0,A:161673690;C:168811670;G:190321246;T:159208682;N:2647,51,0,,,161673690,168811670,190321246,159208682,2647,SRX7870073,SRS6278491,SRA1052219,GEO,The Chinese University of Hong Kong,1,0.03809,,0.00119,,0.99318,,0.59584,,51,,B,,usable mapping rate,illumina,hiseq_era,5prime,size_fractionation,unknown,bulk,unknown,unknown,,China,2020-03-08,Blastula,Embryo,Embryo Imprecise,All anatomical structures