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
11130,ERR9979395,ERX9520370,ERS12499848,ERP139765,PRJEB54901,Single cell RNA sequencing of germ free zebrafish embryos,E-MTAB-11984,Transcriptome Analysis,The present study was conducted in the frame of the EU funded Graphene Flagship project. We previously evaluated the impact of graphene oxide GO on the gut microbiome in adult zebrafish by performing 16S rRNA gene sequencing in wild type versus AhR deficient zebrafish. Here we performed single cell RNA sequencing 10x Genomics on whole dissociated germ free GF zebrafish embryos exposed at 5 dpf to GO plus the microbial metabolite butyrate to gain insight into the impact on specific cell populations in GF zebrafish.,ENA FIRST PUBLIC:2022 07 22|ENA LAST UPDATE:2022 07 22,,Protocols: The generation of germ free zebrafish wild type AB followed previously established protocols [1]. In brief 2 hpf embryos were transferred to petri dishes with sterile E3 medium supplemented with ampicillin 100 μg/mL kanamycin 5 μg/mL and amphotericin B 250 ng/mL and incubated at 28°C. At 50% epiboly up to shield stage 6 hpf the embryos were surface disinfected with 0.1% of polyvinylpyrroidone iodine PVP I for exactly 2 min followed by 0.003% sterile bleach immersion for 18 min. The embryos were then rinsed with sterile E3 medium transferred to flasks and incubated at 28°C. The viability was monitored and sterile medium was refreshed daily. At day 4 the hatched embryos were used for the sterility validation. A day 5 germ free zebrafish were exposed to the combination of GO 30 µg/mL and butyrate 2.5 mM for 24 h. GO and BA were pre incubated for 1 h prior to the exposure. Twenty larvae were used as one replicate four replicates i.e. eighty larvae in total were used for each condition. post the exposure zebrafish larvae were dissociated for single cell suspension following the published protocol [2]. Briefly zebrafish larvae were euthanized with 0.01% of tricaine for 5 min collected in 1.5 mL tube and washed with PBS for three times. The dissociation was initiated by adding 500 μL of pre warmed enzyme mix containing 460 μL of 0.25% trypsin EDTA Gibco and 40 μL of collagenase Sigma Aldrich at the concentration of 100 mg/mL followed by mechanical dissociation using P1000 and then P200 pipette tips in heat block at 30 °C until the tissue was no longer visible about 10 min. The dissociation was then stopped by adding 800 μL DMEM Corning Cat# 10 013 CV with 10% FBS Fisher Scientific. The cell pellets were collected by centrifuging at 1000 rpm for 5 min at RT followed by washing with PBS. The cells were next resuspended in 0.5 mL DMEM with 10% FBS. Four replicates from each condition were pooled together at this step and filtered through 40 μm nylon mesh with an additional washing using DMEM with 10% FBS. The cell suspension was then stained with a fluorescent DNA dye DRAQ7 to exclude non viable cells Invitrogen Cat# D15106 at the dose of 3 μM for 10 min at room temperature before the fluorescence activated cell sorting BD FACSAria III BD Biosciences NJ USA. The sorting was performed using a 100 microns nozzle with the flow rate of 2 and temperature control at 4 °C and gated based on forward scatter and DRAQ7. The DRAQ7 negative cells of each sample were FACS sorted into the tubes containing DMEM with 10% FBS and placed on ice immediately post the sorting. The cells were then proceeded with the single cell RNA sequencing analysis. 1. Pham LN Kanther M Semova I & Rawls JF. Methods for generating and colonizing gnotobiotic zebrafish. Nat. Protoc. 3 1862 1875 2008. 2. Bresciani E Broadbridge E Liu PP An efficient dissociation protocol for generation of single cell suspension from zebrafish embryos and larvae MethodsX. 5 1287 1290 2018. Single cell RNA sequencing scRNA seq was performed by Eukaryotic Single Cell Genomics Facility at SciLifeLab Stockholm. The single cells collected from FACS sorting were loaded on a 10x GemCode Single Cell Instrument 10x Genomics Pleasanton USA to generate single cell gel beads in emulsion GEMs using the Chromium Next GEM Single Cell three prime GEM Library & Gel Bead Kit v3.1 10x Genomics following the manufacture's protocol. Briefly GEMs were generated by combining barcoded Single Cell three prime v3.1 Gel Beads a Master Mix containing cells and Partitioning Oil onto Chromium Next GEM Chip G. Following GEMs generation the Gel Bead was dissolved primers containing an Illumina TruSeq Read 1read 1 sequencing primer 16 nt 10x Barcode 12 nt unique molecular identifier UMI and 30 nt polydT sequence were released and the co partitioned cells were lysed. The nucleic acid library construction was performed using the Chromium Next GEM Single Cell three prime GEM Library & Gel Bead Kit v3.1 10x Genomics 16 rxns PN 1000268 following the manufacture's protocol. post GEMs generation primers were mixed with the cell lysate and a Master Mix containing reverse transcription RT reagents to produce barcoded full length cDNA from polyadenylated mRNA. Silane magnetic beads were used to purify the first strand cDNA from the post GEM RT reaction mixture which included leftover biochemical reagents and primers. Barcoded full length cDNA was amplified via PCR to generate sufficient mass for library construction. Enzymatic fragmentation and size selection were used to optimize the cDNA amplicon size. P5 P7 i7 and i5 sample indexes and TruSeq Read 2 read 2 primer sequence were added via End Repair A tailing Adaptor Ligation and PCR. The final libraries containing the P5 and P7 primers used in Illumina amplification were prepared for an estimated 5000 nuclei per sample.,Sample 2 WT GO+BA,SAMEA110401656,"Institute of Environmental Medicine, Karolinska Institutet",ENA FIRST PUBLIC:2022 07 22|ENA LAST UPDATE:2022 07 22|External Id:SAMEA110401656|INSDC center alias:Institute of Environmental Medicine Karolinska Institutet|INSDC center name:Institute of Environmental Medicine Karolinska Institutet|INSDC first public:2022 07 22T16:26:50Z|INSDC last update:2022 07 22T16:26:50Z|INSDC status:public|Submitter Id:E MTAB 11984:Sample 2 WT GO+BA|age:5|broker name:ArrayExpress|common name:zebrafish|developmental stage:embryo|genotype:wild type genotype|individual:pool of 80 individuals|isolate:not applicable|organism part:whole organism|sample name:E MTAB 11984:Sample 2 WT GO+BA|sex:not available|stimulus:graphene oxide 30 ug/mL and butyrate 2.5 mM|strain:AB,,,,,,,,,Illumina NovaSeq 6000 paired end sequencing; Single cell RNA sequencing of germ free zebrafish embryos,E MTAB 11984:Sample 2 WT GO+BA p,Sample 2 WT GO+BA p,Single cell RNA sequencing of germ free zebrafish embryos,The generation of germ free zebrafish wild type AB followed previously established protocols [1]. In brief 2 hpf embryos were transferred to petri dishes with sterile E3 medium supplemented with ampicillin 100 μg/mL kanamycin 5 μg/mL and amphotericin B 250 ng/mL and incubated at 28°C. At 50% epiboly up to shield stage 6 hpf the embryos were surface disinfected with 0.1% of polyvinylpyrroidone iodine PVP I for exactly 2 min followed by 0.003% sterile bleach immersion for 18 min. The embryos were then rinsed with sterile E3 medium transferred to flasks and incubated at 28°C. The viability was monitored and sterile medium was refreshed daily. At day 4 the hatched embryos were used for the sterility validation. A day 5 germ free zebrafish were exposed to the combination of GO 30 µg/mL and butyrate 2.5 mM for 24 h. GO and BA were pre incubated for 1 h prior to the exposure. Twenty larvae were used as one replicate four replicates i.e. eighty larvae in total were used for each condition. post the exposure zebrafish larvae were dissociated for single cell suspension following the published protocol [2]. Briefly zebrafish larvae were euthanized with 0.01% of tricaine for 5 min collected in 1.5 mL tube and washed with PBS for three times. The dissociation was initiated by adding 500 μL of pre warmed enzyme mix containing 460 μL of 0.25% trypsin EDTA Gibco and 40 μL of collagenase Sigma Aldrich at the concentration of 100 mg/mL followed by mechanical dissociation using P1000 and then P200 pipette tips in heat block at 30 °C until the tissue was no longer visible about 10 min. The dissociation was then stopped by adding 800 μL DMEM Corning Cat# 10 013 CV with 10% FBS Fisher Scientific. The cell pellets were collected by centrifuging at 1000 rpm for 5 min at RT followed by washing with PBS. The cells were next resuspended in 0.5 mL DMEM with 10% FBS. Four replicates from each condition were pooled together at this step and filtered through 40 μm nylon mesh with an additional washing using DMEM with 10% FBS. The cell suspension was then stained with a fluorescent DNA dye DRAQ7 to exclude non viable cells Invitrogen Cat# D15106 at the dose of 3 μM for 10 min at room temperature before the fluorescence activated cell sorting BD FACSAria III BD Biosciences NJ USA. The sorting was performed using a 100 microns nozzle with the flow rate of 2 and temperature control at 4 °C and gated based on forward scatter and DRAQ7. The DRAQ7 negative cells of each sample were FACS sorted into the tubes containing DMEM with 10% FBS and placed on ice immediately post the sorting. The cells were then proceeded with the single cell RNA sequencing analysis. 1. Pham LN Kanther M Semova I & Rawls JF. Methods for generating and colonizing gnotobiotic zebrafish. Nat. Protoc. 3 1862 1875 2008. 2. Bresciani E Broadbridge E Liu PP An efficient dissociation protocol for generation of single cell suspension from zebrafish embryos and larvae MethodsX. 5 1287 1290 2018. Single cell RNA sequencing scRNA seq was performed by Eukaryotic Single Cell Genomics Facility at SciLifeLab Stockholm. The single cells collected from FACS sorting were loaded on a 10x GemCode Single Cell Instrument 10x Genomics Pleasanton USA to generate single cell gel beads in emulsion GEMs using the Chromium Next GEM Single Cell three prime GEM Library & Gel Bead Kit v3.1 10x Genomics following the manufacture's protocol. Briefly GEMs were generated by combining barcoded Single Cell three prime v3.1 Gel Beads a Master Mix containing cells and Partitioning Oil onto Chromium Next GEM Chip G. Following GEMs generation the Gel Bead was dissolved primers containing an Illumina TruSeq Read 1read 1 sequencing primer 16 nt 10x Barcode 12 nt unique molecular identifier UMI and 30 nt polydT sequence were released and the co partitioned cells were lysed. The nucleic acid library construction was performed using the Chromium Next GEM Single Cell three prime GEM Library & Gel Bead Kit v3.1 10x Genomics 16 rxns PN 1000268 following the manufacture's protocol. post GEMs generation primers were mixed with the cell lysate and a Master Mix containing reverse transcription RT reagents to produce barcoded full length cDNA from polyadenylated mRNA. Silane magnetic beads were used to purify the first strand cDNA from the post GEM RT reaction mixture which included leftover biochemical reagents and primers. Barcoded full length cDNA was amplified via PCR to generate sufficient mass for library construction. Enzymatic fragmentation and size selection were used to optimize the cDNA amplicon size. P5 P7 i7 and i5 sample indexes and TruSeq Read 2 read 2 primer sequence were added via End Repair A tailing Adaptor Ligation and PCR. The final libraries containing the P5 and P7 primers used in Illumina amplification were prepared for an estimated 5000 nuclei per sample.,Experimental Factor: stimulus:graphene oxide 30 ug/mL and butyrate 2.5 mM,AMPLICON,TRANSCRIPTOMIC SINGLE CELL,size fractionation,PAIRED,ILLUMINA,Illumina NovaSeq 6000,,ERP139765,Illumina NovaSeq 6000 paired end sequencing; Single cell RNA sequencing of germ free zebrafish embryos,ENA FIRST PUBLIC:2022 07 22|ENA LAST UPDATE:2022 07 22,P22202_7002_S2_L002_R1_001.fastq.gz P22202_7002_S2_L002_R2_001.fastq.gz,fastq fastq,18144406998.0,153766161.0,E MTAB 11984:P22202 7002 S2 L002,0:28 1:90,A:5277424121;C:3880928155;G:4118706097;T:4866649878;N:698747,28,90,,,5277424121,3880928155,4118706097,4866649878,698747,ERX9520370,ERS12499848,ERA16483151,"Institute of Environmental Medicine, Karolinska Institutet|European Nucleotide Archive","Institute of Environmental Medicine, Karolinska Institutet|European Nucleotide Archive",2,0.0109,0.90145,0.0053,0.21373,0.98746,0.79423,0.41198,0.54447,28,90,T,B,sc-like readlen,illumina,novaseq_era,full_length,size_fractionation,trueseq,sc,single_cell_droplet,10x,,Sweden,2022-07-22,Multi-stage,Embryo,Whole Organism,All anatomical structures
11131,ERR9979394,ERX9520370,ERS12499848,ERP139765,PRJEB54901,Single cell RNA sequencing of germ free zebrafish embryos,E-MTAB-11984,Transcriptome Analysis,The present study was conducted in the frame of the EU funded Graphene Flagship project. We previously evaluated the impact of graphene oxide GO on the gut microbiome in adult zebrafish by performing 16S rRNA gene sequencing in wild type versus AhR deficient zebrafish. Here we performed single cell RNA sequencing 10x Genomics on whole dissociated germ free GF zebrafish embryos exposed at 5 dpf to GO plus the microbial metabolite butyrate to gain insight into the impact on specific cell populations in GF zebrafish.,ENA FIRST PUBLIC:2022 07 22|ENA LAST UPDATE:2022 07 22,,Protocols: The generation of germ free zebrafish wild type AB followed previously established protocols [1]. In brief 2 hpf embryos were transferred to petri dishes with sterile E3 medium supplemented with ampicillin 100 μg/mL kanamycin 5 μg/mL and amphotericin B 250 ng/mL and incubated at 28°C. At 50% epiboly up to shield stage 6 hpf the embryos were surface disinfected with 0.1% of polyvinylpyrroidone iodine PVP I for exactly 2 min followed by 0.003% sterile bleach immersion for 18 min. The embryos were then rinsed with sterile E3 medium transferred to flasks and incubated at 28°C. The viability was monitored and sterile medium was refreshed daily. At day 4 the hatched embryos were used for the sterility validation. A day 5 germ free zebrafish were exposed to the combination of GO 30 µg/mL and butyrate 2.5 mM for 24 h. GO and BA were pre incubated for 1 h prior to the exposure. Twenty larvae were used as one replicate four replicates i.e. eighty larvae in total were used for each condition. post the exposure zebrafish larvae were dissociated for single cell suspension following the published protocol [2]. Briefly zebrafish larvae were euthanized with 0.01% of tricaine for 5 min collected in 1.5 mL tube and washed with PBS for three times. The dissociation was initiated by adding 500 μL of pre warmed enzyme mix containing 460 μL of 0.25% trypsin EDTA Gibco and 40 μL of collagenase Sigma Aldrich at the concentration of 100 mg/mL followed by mechanical dissociation using P1000 and then P200 pipette tips in heat block at 30 °C until the tissue was no longer visible about 10 min. The dissociation was then stopped by adding 800 μL DMEM Corning Cat# 10 013 CV with 10% FBS Fisher Scientific. The cell pellets were collected by centrifuging at 1000 rpm for 5 min at RT followed by washing with PBS. The cells were next resuspended in 0.5 mL DMEM with 10% FBS. Four replicates from each condition were pooled together at this step and filtered through 40 μm nylon mesh with an additional washing using DMEM with 10% FBS. The cell suspension was then stained with a fluorescent DNA dye DRAQ7 to exclude non viable cells Invitrogen Cat# D15106 at the dose of 3 μM for 10 min at room temperature before the fluorescence activated cell sorting BD FACSAria III BD Biosciences NJ USA. The sorting was performed using a 100 microns nozzle with the flow rate of 2 and temperature control at 4 °C and gated based on forward scatter and DRAQ7. The DRAQ7 negative cells of each sample were FACS sorted into the tubes containing DMEM with 10% FBS and placed on ice immediately post the sorting. The cells were then proceeded with the single cell RNA sequencing analysis. 1. Pham LN Kanther M Semova I & Rawls JF. Methods for generating and colonizing gnotobiotic zebrafish. Nat. Protoc. 3 1862 1875 2008. 2. Bresciani E Broadbridge E Liu PP An efficient dissociation protocol for generation of single cell suspension from zebrafish embryos and larvae MethodsX. 5 1287 1290 2018. Single cell RNA sequencing scRNA seq was performed by Eukaryotic Single Cell Genomics Facility at SciLifeLab Stockholm. The single cells collected from FACS sorting were loaded on a 10x GemCode Single Cell Instrument 10x Genomics Pleasanton USA to generate single cell gel beads in emulsion GEMs using the Chromium Next GEM Single Cell three prime GEM Library & Gel Bead Kit v3.1 10x Genomics following the manufacture's protocol. Briefly GEMs were generated by combining barcoded Single Cell three prime v3.1 Gel Beads a Master Mix containing cells and Partitioning Oil onto Chromium Next GEM Chip G. Following GEMs generation the Gel Bead was dissolved primers containing an Illumina TruSeq Read 1read 1 sequencing primer 16 nt 10x Barcode 12 nt unique molecular identifier UMI and 30 nt polydT sequence were released and the co partitioned cells were lysed. The nucleic acid library construction was performed using the Chromium Next GEM Single Cell three prime GEM Library & Gel Bead Kit v3.1 10x Genomics 16 rxns PN 1000268 following the manufacture's protocol. post GEMs generation primers were mixed with the cell lysate and a Master Mix containing reverse transcription RT reagents to produce barcoded full length cDNA from polyadenylated mRNA. Silane magnetic beads were used to purify the first strand cDNA from the post GEM RT reaction mixture which included leftover biochemical reagents and primers. Barcoded full length cDNA was amplified via PCR to generate sufficient mass for library construction. Enzymatic fragmentation and size selection were used to optimize the cDNA amplicon size. P5 P7 i7 and i5 sample indexes and TruSeq Read 2 read 2 primer sequence were added via End Repair A tailing Adaptor Ligation and PCR. The final libraries containing the P5 and P7 primers used in Illumina amplification were prepared for an estimated 5000 nuclei per sample.,Sample 2 WT GO+BA,SAMEA110401656,"Institute of Environmental Medicine, Karolinska Institutet",ENA FIRST PUBLIC:2022 07 22|ENA LAST UPDATE:2022 07 22|External Id:SAMEA110401656|INSDC center alias:Institute of Environmental Medicine Karolinska Institutet|INSDC center name:Institute of Environmental Medicine Karolinska Institutet|INSDC first public:2022 07 22T16:26:50Z|INSDC last update:2022 07 22T16:26:50Z|INSDC status:public|Submitter Id:E MTAB 11984:Sample 2 WT GO+BA|age:5|broker name:ArrayExpress|common name:zebrafish|developmental stage:embryo|genotype:wild type genotype|individual:pool of 80 individuals|isolate:not applicable|organism part:whole organism|sample name:E MTAB 11984:Sample 2 WT GO+BA|sex:not available|stimulus:graphene oxide 30 ug/mL and butyrate 2.5 mM|strain:AB,,,,,,,,,Illumina NovaSeq 6000 paired end sequencing; Single cell RNA sequencing of germ free zebrafish embryos,E MTAB 11984:Sample 2 WT GO+BA p,Sample 2 WT GO+BA p,Single cell RNA sequencing of germ free zebrafish embryos,The generation of germ free zebrafish wild type AB followed previously established protocols [1]. In brief 2 hpf embryos were transferred to petri dishes with sterile E3 medium supplemented with ampicillin 100 μg/mL kanamycin 5 μg/mL and amphotericin B 250 ng/mL and incubated at 28°C. At 50% epiboly up to shield stage 6 hpf the embryos were surface disinfected with 0.1% of polyvinylpyrroidone iodine PVP I for exactly 2 min followed by 0.003% sterile bleach immersion for 18 min. The embryos were then rinsed with sterile E3 medium transferred to flasks and incubated at 28°C. The viability was monitored and sterile medium was refreshed daily. At day 4 the hatched embryos were used for the sterility validation. A day 5 germ free zebrafish were exposed to the combination of GO 30 µg/mL and butyrate 2.5 mM for 24 h. GO and BA were pre incubated for 1 h prior to the exposure. Twenty larvae were used as one replicate four replicates i.e. eighty larvae in total were used for each condition. post the exposure zebrafish larvae were dissociated for single cell suspension following the published protocol [2]. Briefly zebrafish larvae were euthanized with 0.01% of tricaine for 5 min collected in 1.5 mL tube and washed with PBS for three times. The dissociation was initiated by adding 500 μL of pre warmed enzyme mix containing 460 μL of 0.25% trypsin EDTA Gibco and 40 μL of collagenase Sigma Aldrich at the concentration of 100 mg/mL followed by mechanical dissociation using P1000 and then P200 pipette tips in heat block at 30 °C until the tissue was no longer visible about 10 min. The dissociation was then stopped by adding 800 μL DMEM Corning Cat# 10 013 CV with 10% FBS Fisher Scientific. The cell pellets were collected by centrifuging at 1000 rpm for 5 min at RT followed by washing with PBS. The cells were next resuspended in 0.5 mL DMEM with 10% FBS. Four replicates from each condition were pooled together at this step and filtered through 40 μm nylon mesh with an additional washing using DMEM with 10% FBS. The cell suspension was then stained with a fluorescent DNA dye DRAQ7 to exclude non viable cells Invitrogen Cat# D15106 at the dose of 3 μM for 10 min at room temperature before the fluorescence activated cell sorting BD FACSAria III BD Biosciences NJ USA. The sorting was performed using a 100 microns nozzle with the flow rate of 2 and temperature control at 4 °C and gated based on forward scatter and DRAQ7. The DRAQ7 negative cells of each sample were FACS sorted into the tubes containing DMEM with 10% FBS and placed on ice immediately post the sorting. The cells were then proceeded with the single cell RNA sequencing analysis. 1. Pham LN Kanther M Semova I & Rawls JF. Methods for generating and colonizing gnotobiotic zebrafish. Nat. Protoc. 3 1862 1875 2008. 2. Bresciani E Broadbridge E Liu PP An efficient dissociation protocol for generation of single cell suspension from zebrafish embryos and larvae MethodsX. 5 1287 1290 2018. Single cell RNA sequencing scRNA seq was performed by Eukaryotic Single Cell Genomics Facility at SciLifeLab Stockholm. The single cells collected from FACS sorting were loaded on a 10x GemCode Single Cell Instrument 10x Genomics Pleasanton USA to generate single cell gel beads in emulsion GEMs using the Chromium Next GEM Single Cell three prime GEM Library & Gel Bead Kit v3.1 10x Genomics following the manufacture's protocol. Briefly GEMs were generated by combining barcoded Single Cell three prime v3.1 Gel Beads a Master Mix containing cells and Partitioning Oil onto Chromium Next GEM Chip G. Following GEMs generation the Gel Bead was dissolved primers containing an Illumina TruSeq Read 1read 1 sequencing primer 16 nt 10x Barcode 12 nt unique molecular identifier UMI and 30 nt polydT sequence were released and the co partitioned cells were lysed. The nucleic acid library construction was performed using the Chromium Next GEM Single Cell three prime GEM Library & Gel Bead Kit v3.1 10x Genomics 16 rxns PN 1000268 following the manufacture's protocol. post GEMs generation primers were mixed with the cell lysate and a Master Mix containing reverse transcription RT reagents to produce barcoded full length cDNA from polyadenylated mRNA. Silane magnetic beads were used to purify the first strand cDNA from the post GEM RT reaction mixture which included leftover biochemical reagents and primers. Barcoded full length cDNA was amplified via PCR to generate sufficient mass for library construction. Enzymatic fragmentation and size selection were used to optimize the cDNA amplicon size. P5 P7 i7 and i5 sample indexes and TruSeq Read 2 read 2 primer sequence were added via End Repair A tailing Adaptor Ligation and PCR. The final libraries containing the P5 and P7 primers used in Illumina amplification were prepared for an estimated 5000 nuclei per sample.,Experimental Factor: stimulus:graphene oxide 30 ug/mL and butyrate 2.5 mM,AMPLICON,TRANSCRIPTOMIC SINGLE CELL,size fractionation,PAIRED,ILLUMINA,Illumina NovaSeq 6000,,ERP139765,Illumina NovaSeq 6000 paired end sequencing; Single cell RNA sequencing of germ free zebrafish embryos,ENA FIRST PUBLIC:2022 07 22|ENA LAST UPDATE:2022 07 22,P22202_7002_S2_L001_R1_001.fastq.gz P22202_7002_S2_L001_R2_001.fastq.gz,fastq fastq,18458951574.0,156431793.0,E MTAB 11984:P22202 7002 S2 L001,0:28 1:90,A:5372920926;C:3946687814;G:4185647697;T:4953205454;N:489683,28,90,,,5372920926,3946687814,4185647697,4953205454,489683,ERX9520370,ERS12499848,ERA16483151,"Institute of Environmental Medicine, Karolinska Institutet|European Nucleotide Archive","Institute of Environmental Medicine, Karolinska Institutet|European Nucleotide Archive",2,0.01037,0.90168,0.0048,0.21246,0.98752,0.79297,0.42601,0.54996,28,90,T,B,sc-like readlen,illumina,novaseq_era,full_length,size_fractionation,trueseq,sc,single_cell_droplet,10x,,Sweden,2022-07-22,Multi-stage,Embryo,Whole Organism,All anatomical structures
11132,ERR9979392,ERX9520369,ERS12499847,ERP139765,PRJEB54901,Single cell RNA sequencing of germ free zebrafish embryos,E-MTAB-11984,Transcriptome Analysis,The present study was conducted in the frame of the EU funded Graphene Flagship project. We previously evaluated the impact of graphene oxide GO on the gut microbiome in adult zebrafish by performing 16S rRNA gene sequencing in wild type versus AhR deficient zebrafish. Here we performed single cell RNA sequencing 10x Genomics on whole dissociated germ free GF zebrafish embryos exposed at 5 dpf to GO plus the microbial metabolite butyrate to gain insight into the impact on specific cell populations in GF zebrafish.,ENA FIRST PUBLIC:2022 07 22|ENA LAST UPDATE:2022 07 22,,Protocols: The generation of germ free zebrafish wild type AB followed previously established protocols [1]. In brief 2 hpf embryos were transferred to petri dishes with sterile E3 medium supplemented with ampicillin 100 μg/mL kanamycin 5 μg/mL and amphotericin B 250 ng/mL and incubated at 28°C. At 50% epiboly up to shield stage 6 hpf the embryos were surface disinfected with 0.1% of polyvinylpyrroidone iodine PVP I for exactly 2 min followed by 0.003% sterile bleach immersion for 18 min. The embryos were then rinsed with sterile E3 medium transferred to flasks and incubated at 28°C. The viability was monitored and sterile medium was refreshed daily. At day 4 the hatched embryos were used for the sterility validation. A day 5 germ free zebrafish were exposed to the combination of GO 30 µg/mL and butyrate 2.5 mM for 24 h. GO and BA were pre incubated for 1 h prior to the exposure. Twenty larvae were used as one replicate four replicates i.e. eighty larvae in total were used for each condition. post the exposure zebrafish larvae were dissociated for single cell suspension following the published protocol [2]. Briefly zebrafish larvae were euthanized with 0.01% of tricaine for 5 min collected in 1.5 mL tube and washed with PBS for three times. The dissociation was initiated by adding 500 μL of pre warmed enzyme mix containing 460 μL of 0.25% trypsin EDTA Gibco and 40 μL of collagenase Sigma Aldrich at the concentration of 100 mg/mL followed by mechanical dissociation using P1000 and then P200 pipette tips in heat block at 30 °C until the tissue was no longer visible about 10 min. The dissociation was then stopped by adding 800 μL DMEM Corning Cat# 10 013 CV with 10% FBS Fisher Scientific. The cell pellets were collected by centrifuging at 1000 rpm for 5 min at RT followed by washing with PBS. The cells were next resuspended in 0.5 mL DMEM with 10% FBS. Four replicates from each condition were pooled together at this step and filtered through 40 μm nylon mesh with an additional washing using DMEM with 10% FBS. The cell suspension was then stained with a fluorescent DNA dye DRAQ7 to exclude non viable cells Invitrogen Cat# D15106 at the dose of 3 μM for 10 min at room temperature before the fluorescence activated cell sorting BD FACSAria III BD Biosciences NJ USA. The sorting was performed using a 100 microns nozzle with the flow rate of 2 and temperature control at 4 °C and gated based on forward scatter and DRAQ7. The DRAQ7 negative cells of each sample were FACS sorted into the tubes containing DMEM with 10% FBS and placed on ice immediately post the sorting. The cells were then proceeded with the single cell RNA sequencing analysis. 1. Pham LN Kanther M Semova I & Rawls JF. Methods for generating and colonizing gnotobiotic zebrafish. Nat. Protoc. 3 1862 1875 2008. 2. Bresciani E Broadbridge E Liu PP An efficient dissociation protocol for generation of single cell suspension from zebrafish embryos and larvae MethodsX. 5 1287 1290 2018. Single cell RNA sequencing scRNA seq was performed by Eukaryotic Single Cell Genomics Facility at SciLifeLab Stockholm. The single cells collected from FACS sorting were loaded on a 10x GemCode Single Cell Instrument 10x Genomics Pleasanton USA to generate single cell gel beads in emulsion GEMs using the Chromium Next GEM Single Cell three prime GEM Library & Gel Bead Kit v3.1 10x Genomics following the manufacture's protocol. Briefly GEMs were generated by combining barcoded Single Cell three prime v3.1 Gel Beads a Master Mix containing cells and Partitioning Oil onto Chromium Next GEM Chip G. Following GEMs generation the Gel Bead was dissolved primers containing an Illumina TruSeq Read 1read 1 sequencing primer 16 nt 10x Barcode 12 nt unique molecular identifier UMI and 30 nt polydT sequence were released and the co partitioned cells were lysed. The nucleic acid library construction was performed using the Chromium Next GEM Single Cell three prime GEM Library & Gel Bead Kit v3.1 10x Genomics 16 rxns PN 1000268 following the manufacture's protocol. post GEMs generation primers were mixed with the cell lysate and a Master Mix containing reverse transcription RT reagents to produce barcoded full length cDNA from polyadenylated mRNA. Silane magnetic beads were used to purify the first strand cDNA from the post GEM RT reaction mixture which included leftover biochemical reagents and primers. Barcoded full length cDNA was amplified via PCR to generate sufficient mass for library construction. Enzymatic fragmentation and size selection were used to optimize the cDNA amplicon size. P5 P7 i7 and i5 sample indexes and TruSeq Read 2 read 2 primer sequence were added via End Repair A tailing Adaptor Ligation and PCR. The final libraries containing the P5 and P7 primers used in Illumina amplification were prepared for an estimated 5000 nuclei per sample.,Sample 1 WT control,SAMEA110401655,"Institute of Environmental Medicine, Karolinska Institutet",ENA FIRST PUBLIC:2022 07 22|ENA LAST UPDATE:2022 07 22|External Id:SAMEA110401655|INSDC center alias:Institute of Environmental Medicine Karolinska Institutet|INSDC center name:Institute of Environmental Medicine Karolinska Institutet|INSDC first public:2022 07 22T16:26:50Z|INSDC last update:2022 07 22T16:26:50Z|INSDC status:public|Submitter Id:E MTAB 11984:Sample 1 WT control|age:5|broker name:ArrayExpress|common name:zebrafish|developmental stage:embryo|genotype:wild type genotype|individual:pool of 80 individuals|isolate:not applicable|organism part:whole organism|sample name:E MTAB 11984:Sample 1 WT control|sex:not available|stimulus:n1|strain:AB,,,,,,,,,Illumina NovaSeq 6000 paired end sequencing; Single cell RNA sequencing of germ free zebrafish embryos,E MTAB 11984:Sample 1 WT control p,Sample 1 WT control p,Single cell RNA sequencing of germ free zebrafish embryos,The generation of germ free zebrafish wild type AB followed previously established protocols [1]. In brief 2 hpf embryos were transferred to petri dishes with sterile E3 medium supplemented with ampicillin 100 μg/mL kanamycin 5 μg/mL and amphotericin B 250 ng/mL and incubated at 28°C. At 50% epiboly up to shield stage 6 hpf the embryos were surface disinfected with 0.1% of polyvinylpyrroidone iodine PVP I for exactly 2 min followed by 0.003% sterile bleach immersion for 18 min. The embryos were then rinsed with sterile E3 medium transferred to flasks and incubated at 28°C. The viability was monitored and sterile medium was refreshed daily. At day 4 the hatched embryos were used for the sterility validation. A day 5 germ free zebrafish were exposed to the combination of GO 30 µg/mL and butyrate 2.5 mM for 24 h. GO and BA were pre incubated for 1 h prior to the exposure. Twenty larvae were used as one replicate four replicates i.e. eighty larvae in total were used for each condition. post the exposure zebrafish larvae were dissociated for single cell suspension following the published protocol [2]. Briefly zebrafish larvae were euthanized with 0.01% of tricaine for 5 min collected in 1.5 mL tube and washed with PBS for three times. The dissociation was initiated by adding 500 μL of pre warmed enzyme mix containing 460 μL of 0.25% trypsin EDTA Gibco and 40 μL of collagenase Sigma Aldrich at the concentration of 100 mg/mL followed by mechanical dissociation using P1000 and then P200 pipette tips in heat block at 30 °C until the tissue was no longer visible about 10 min. The dissociation was then stopped by adding 800 μL DMEM Corning Cat# 10 013 CV with 10% FBS Fisher Scientific. The cell pellets were collected by centrifuging at 1000 rpm for 5 min at RT followed by washing with PBS. The cells were next resuspended in 0.5 mL DMEM with 10% FBS. Four replicates from each condition were pooled together at this step and filtered through 40 μm nylon mesh with an additional washing using DMEM with 10% FBS. The cell suspension was then stained with a fluorescent DNA dye DRAQ7 to exclude non viable cells Invitrogen Cat# D15106 at the dose of 3 μM for 10 min at room temperature before the fluorescence activated cell sorting BD FACSAria III BD Biosciences NJ USA. The sorting was performed using a 100 microns nozzle with the flow rate of 2 and temperature control at 4 °C and gated based on forward scatter and DRAQ7. The DRAQ7 negative cells of each sample were FACS sorted into the tubes containing DMEM with 10% FBS and placed on ice immediately post the sorting. The cells were then proceeded with the single cell RNA sequencing analysis. 1. Pham LN Kanther M Semova I & Rawls JF. Methods for generating and colonizing gnotobiotic zebrafish. Nat. Protoc. 3 1862 1875 2008. 2. Bresciani E Broadbridge E Liu PP An efficient dissociation protocol for generation of single cell suspension from zebrafish embryos and larvae MethodsX. 5 1287 1290 2018. Single cell RNA sequencing scRNA seq was performed by Eukaryotic Single Cell Genomics Facility at SciLifeLab Stockholm. The single cells collected from FACS sorting were loaded on a 10x GemCode Single Cell Instrument 10x Genomics Pleasanton USA to generate single cell gel beads in emulsion GEMs using the Chromium Next GEM Single Cell three prime GEM Library & Gel Bead Kit v3.1 10x Genomics following the manufacture's protocol. Briefly GEMs were generated by combining barcoded Single Cell three prime v3.1 Gel Beads a Master Mix containing cells and Partitioning Oil onto Chromium Next GEM Chip G. Following GEMs generation the Gel Bead was dissolved primers containing an Illumina TruSeq Read 1read 1 sequencing primer 16 nt 10x Barcode 12 nt unique molecular identifier UMI and 30 nt polydT sequence were released and the co partitioned cells were lysed. The nucleic acid library construction was performed using the Chromium Next GEM Single Cell three prime GEM Library & Gel Bead Kit v3.1 10x Genomics 16 rxns PN 1000268 following the manufacture's protocol. post GEMs generation primers were mixed with the cell lysate and a Master Mix containing reverse transcription RT reagents to produce barcoded full length cDNA from polyadenylated mRNA. Silane magnetic beads were used to purify the first strand cDNA from the post GEM RT reaction mixture which included leftover biochemical reagents and primers. Barcoded full length cDNA was amplified via PCR to generate sufficient mass for library construction. Enzymatic fragmentation and size selection were used to optimize the cDNA amplicon size. P5 P7 i7 and i5 sample indexes and TruSeq Read 2 read 2 primer sequence were added via End Repair A tailing Adaptor Ligation and PCR. The final libraries containing the P5 and P7 primers used in Illumina amplification were prepared for an estimated 5000 nuclei per sample.,Experimental Factor: stimulus:n1,AMPLICON,TRANSCRIPTOMIC SINGLE CELL,size fractionation,PAIRED,ILLUMINA,Illumina NovaSeq 6000,,ERP139765,Illumina NovaSeq 6000 paired end sequencing; Single cell RNA sequencing of germ free zebrafish embryos,ENA FIRST PUBLIC:2022 07 22|ENA LAST UPDATE:2022 07 22,P22202_7001_S1_L001_R1_001.fastq.gz P22202_7001_S1_L001_R2_001.fastq.gz,fastq fastq,19396994226.0,164381307.0,E MTAB 11984:P22202 7001 S1 L001,0:28 1:90,A:5665199484;C:4091196594;G:4415211076;T:5224866754;N:520318,28,90,,,5665199484,4091196594,4415211076,5224866754,520318,ERX9520369,ERS12499847,ERA16483151,"Institute of Environmental Medicine, Karolinska Institutet|European Nucleotide Archive","Institute of Environmental Medicine, Karolinska Institutet|European Nucleotide Archive",2,0.01093,0.89238,0.00557,0.232,0.98764,0.79444,0.40806,0.54781,28,90,T,B,sc-like readlen,illumina,novaseq_era,full_length,size_fractionation,trueseq,sc,single_cell_droplet,10x,,Sweden,2022-07-22,Multi-stage,Embryo,Whole Organism,All anatomical structures
11133,ERR9979393,ERX9520369,ERS12499847,ERP139765,PRJEB54901,Single cell RNA sequencing of germ free zebrafish embryos,E-MTAB-11984,Transcriptome Analysis,The present study was conducted in the frame of the EU funded Graphene Flagship project. We previously evaluated the impact of graphene oxide GO on the gut microbiome in adult zebrafish by performing 16S rRNA gene sequencing in wild type versus AhR deficient zebrafish. Here we performed single cell RNA sequencing 10x Genomics on whole dissociated germ free GF zebrafish embryos exposed at 5 dpf to GO plus the microbial metabolite butyrate to gain insight into the impact on specific cell populations in GF zebrafish.,ENA FIRST PUBLIC:2022 07 22|ENA LAST UPDATE:2022 07 22,,Protocols: The generation of germ free zebrafish wild type AB followed previously established protocols [1]. In brief 2 hpf embryos were transferred to petri dishes with sterile E3 medium supplemented with ampicillin 100 μg/mL kanamycin 5 μg/mL and amphotericin B 250 ng/mL and incubated at 28°C. At 50% epiboly up to shield stage 6 hpf the embryos were surface disinfected with 0.1% of polyvinylpyrroidone iodine PVP I for exactly 2 min followed by 0.003% sterile bleach immersion for 18 min. The embryos were then rinsed with sterile E3 medium transferred to flasks and incubated at 28°C. The viability was monitored and sterile medium was refreshed daily. At day 4 the hatched embryos were used for the sterility validation. A day 5 germ free zebrafish were exposed to the combination of GO 30 µg/mL and butyrate 2.5 mM for 24 h. GO and BA were pre incubated for 1 h prior to the exposure. Twenty larvae were used as one replicate four replicates i.e. eighty larvae in total were used for each condition. post the exposure zebrafish larvae were dissociated for single cell suspension following the published protocol [2]. Briefly zebrafish larvae were euthanized with 0.01% of tricaine for 5 min collected in 1.5 mL tube and washed with PBS for three times. The dissociation was initiated by adding 500 μL of pre warmed enzyme mix containing 460 μL of 0.25% trypsin EDTA Gibco and 40 μL of collagenase Sigma Aldrich at the concentration of 100 mg/mL followed by mechanical dissociation using P1000 and then P200 pipette tips in heat block at 30 °C until the tissue was no longer visible about 10 min. The dissociation was then stopped by adding 800 μL DMEM Corning Cat# 10 013 CV with 10% FBS Fisher Scientific. The cell pellets were collected by centrifuging at 1000 rpm for 5 min at RT followed by washing with PBS. The cells were next resuspended in 0.5 mL DMEM with 10% FBS. Four replicates from each condition were pooled together at this step and filtered through 40 μm nylon mesh with an additional washing using DMEM with 10% FBS. The cell suspension was then stained with a fluorescent DNA dye DRAQ7 to exclude non viable cells Invitrogen Cat# D15106 at the dose of 3 μM for 10 min at room temperature before the fluorescence activated cell sorting BD FACSAria III BD Biosciences NJ USA. The sorting was performed using a 100 microns nozzle with the flow rate of 2 and temperature control at 4 °C and gated based on forward scatter and DRAQ7. The DRAQ7 negative cells of each sample were FACS sorted into the tubes containing DMEM with 10% FBS and placed on ice immediately post the sorting. The cells were then proceeded with the single cell RNA sequencing analysis. 1. Pham LN Kanther M Semova I & Rawls JF. Methods for generating and colonizing gnotobiotic zebrafish. Nat. Protoc. 3 1862 1875 2008. 2. Bresciani E Broadbridge E Liu PP An efficient dissociation protocol for generation of single cell suspension from zebrafish embryos and larvae MethodsX. 5 1287 1290 2018. Single cell RNA sequencing scRNA seq was performed by Eukaryotic Single Cell Genomics Facility at SciLifeLab Stockholm. The single cells collected from FACS sorting were loaded on a 10x GemCode Single Cell Instrument 10x Genomics Pleasanton USA to generate single cell gel beads in emulsion GEMs using the Chromium Next GEM Single Cell three prime GEM Library & Gel Bead Kit v3.1 10x Genomics following the manufacture's protocol. Briefly GEMs were generated by combining barcoded Single Cell three prime v3.1 Gel Beads a Master Mix containing cells and Partitioning Oil onto Chromium Next GEM Chip G. Following GEMs generation the Gel Bead was dissolved primers containing an Illumina TruSeq Read 1read 1 sequencing primer 16 nt 10x Barcode 12 nt unique molecular identifier UMI and 30 nt polydT sequence were released and the co partitioned cells were lysed. The nucleic acid library construction was performed using the Chromium Next GEM Single Cell three prime GEM Library & Gel Bead Kit v3.1 10x Genomics 16 rxns PN 1000268 following the manufacture's protocol. post GEMs generation primers were mixed with the cell lysate and a Master Mix containing reverse transcription RT reagents to produce barcoded full length cDNA from polyadenylated mRNA. Silane magnetic beads were used to purify the first strand cDNA from the post GEM RT reaction mixture which included leftover biochemical reagents and primers. Barcoded full length cDNA was amplified via PCR to generate sufficient mass for library construction. Enzymatic fragmentation and size selection were used to optimize the cDNA amplicon size. P5 P7 i7 and i5 sample indexes and TruSeq Read 2 read 2 primer sequence were added via End Repair A tailing Adaptor Ligation and PCR. The final libraries containing the P5 and P7 primers used in Illumina amplification were prepared for an estimated 5000 nuclei per sample.,Sample 1 WT control,SAMEA110401655,"Institute of Environmental Medicine, Karolinska Institutet",ENA FIRST PUBLIC:2022 07 22|ENA LAST UPDATE:2022 07 22|External Id:SAMEA110401655|INSDC center alias:Institute of Environmental Medicine Karolinska Institutet|INSDC center name:Institute of Environmental Medicine Karolinska Institutet|INSDC first public:2022 07 22T16:26:50Z|INSDC last update:2022 07 22T16:26:50Z|INSDC status:public|Submitter Id:E MTAB 11984:Sample 1 WT control|age:5|broker name:ArrayExpress|common name:zebrafish|developmental stage:embryo|genotype:wild type genotype|individual:pool of 80 individuals|isolate:not applicable|organism part:whole organism|sample name:E MTAB 11984:Sample 1 WT control|sex:not available|stimulus:n1|strain:AB,,,,,,,,,Illumina NovaSeq 6000 paired end sequencing; Single cell RNA sequencing of germ free zebrafish embryos,E MTAB 11984:Sample 1 WT control p,Sample 1 WT control p,Single cell RNA sequencing of germ free zebrafish embryos,The generation of germ free zebrafish wild type AB followed previously established protocols [1]. In brief 2 hpf embryos were transferred to petri dishes with sterile E3 medium supplemented with ampicillin 100 μg/mL kanamycin 5 μg/mL and amphotericin B 250 ng/mL and incubated at 28°C. At 50% epiboly up to shield stage 6 hpf the embryos were surface disinfected with 0.1% of polyvinylpyrroidone iodine PVP I for exactly 2 min followed by 0.003% sterile bleach immersion for 18 min. The embryos were then rinsed with sterile E3 medium transferred to flasks and incubated at 28°C. The viability was monitored and sterile medium was refreshed daily. At day 4 the hatched embryos were used for the sterility validation. A day 5 germ free zebrafish were exposed to the combination of GO 30 µg/mL and butyrate 2.5 mM for 24 h. GO and BA were pre incubated for 1 h prior to the exposure. Twenty larvae were used as one replicate four replicates i.e. eighty larvae in total were used for each condition. post the exposure zebrafish larvae were dissociated for single cell suspension following the published protocol [2]. Briefly zebrafish larvae were euthanized with 0.01% of tricaine for 5 min collected in 1.5 mL tube and washed with PBS for three times. The dissociation was initiated by adding 500 μL of pre warmed enzyme mix containing 460 μL of 0.25% trypsin EDTA Gibco and 40 μL of collagenase Sigma Aldrich at the concentration of 100 mg/mL followed by mechanical dissociation using P1000 and then P200 pipette tips in heat block at 30 °C until the tissue was no longer visible about 10 min. The dissociation was then stopped by adding 800 μL DMEM Corning Cat# 10 013 CV with 10% FBS Fisher Scientific. The cell pellets were collected by centrifuging at 1000 rpm for 5 min at RT followed by washing with PBS. The cells were next resuspended in 0.5 mL DMEM with 10% FBS. Four replicates from each condition were pooled together at this step and filtered through 40 μm nylon mesh with an additional washing using DMEM with 10% FBS. The cell suspension was then stained with a fluorescent DNA dye DRAQ7 to exclude non viable cells Invitrogen Cat# D15106 at the dose of 3 μM for 10 min at room temperature before the fluorescence activated cell sorting BD FACSAria III BD Biosciences NJ USA. The sorting was performed using a 100 microns nozzle with the flow rate of 2 and temperature control at 4 °C and gated based on forward scatter and DRAQ7. The DRAQ7 negative cells of each sample were FACS sorted into the tubes containing DMEM with 10% FBS and placed on ice immediately post the sorting. The cells were then proceeded with the single cell RNA sequencing analysis. 1. Pham LN Kanther M Semova I & Rawls JF. Methods for generating and colonizing gnotobiotic zebrafish. Nat. Protoc. 3 1862 1875 2008. 2. Bresciani E Broadbridge E Liu PP An efficient dissociation protocol for generation of single cell suspension from zebrafish embryos and larvae MethodsX. 5 1287 1290 2018. Single cell RNA sequencing scRNA seq was performed by Eukaryotic Single Cell Genomics Facility at SciLifeLab Stockholm. The single cells collected from FACS sorting were loaded on a 10x GemCode Single Cell Instrument 10x Genomics Pleasanton USA to generate single cell gel beads in emulsion GEMs using the Chromium Next GEM Single Cell three prime GEM Library & Gel Bead Kit v3.1 10x Genomics following the manufacture's protocol. Briefly GEMs were generated by combining barcoded Single Cell three prime v3.1 Gel Beads a Master Mix containing cells and Partitioning Oil onto Chromium Next GEM Chip G. Following GEMs generation the Gel Bead was dissolved primers containing an Illumina TruSeq Read 1read 1 sequencing primer 16 nt 10x Barcode 12 nt unique molecular identifier UMI and 30 nt polydT sequence were released and the co partitioned cells were lysed. The nucleic acid library construction was performed using the Chromium Next GEM Single Cell three prime GEM Library & Gel Bead Kit v3.1 10x Genomics 16 rxns PN 1000268 following the manufacture's protocol. post GEMs generation primers were mixed with the cell lysate and a Master Mix containing reverse transcription RT reagents to produce barcoded full length cDNA from polyadenylated mRNA. Silane magnetic beads were used to purify the first strand cDNA from the post GEM RT reaction mixture which included leftover biochemical reagents and primers. Barcoded full length cDNA was amplified via PCR to generate sufficient mass for library construction. Enzymatic fragmentation and size selection were used to optimize the cDNA amplicon size. P5 P7 i7 and i5 sample indexes and TruSeq Read 2 read 2 primer sequence were added via End Repair A tailing Adaptor Ligation and PCR. The final libraries containing the P5 and P7 primers used in Illumina amplification were prepared for an estimated 5000 nuclei per sample.,Experimental Factor: stimulus:n1,AMPLICON,TRANSCRIPTOMIC SINGLE CELL,size fractionation,PAIRED,ILLUMINA,Illumina NovaSeq 6000,,ERP139765,Illumina NovaSeq 6000 paired end sequencing; Single cell RNA sequencing of germ free zebrafish embryos,ENA FIRST PUBLIC:2022 07 22|ENA LAST UPDATE:2022 07 22,P22202_7001_S1_L002_R1_001.fastq.gz P22202_7001_S1_L002_R2_001.fastq.gz,fastq fastq,19063958224.0,161558968.0,E MTAB 11984:P22202 7001 S1 L002,0:28 1:90,A:5563588848;C:4022930643;G:4344549562;T:5132136743;N:752428,28,90,,,5563588848,4022930643,4344549562,5132136743,752428,ERX9520369,ERS12499847,ERA16483151,"Institute of Environmental Medicine, Karolinska Institutet|European Nucleotide Archive","Institute of Environmental Medicine, Karolinska Institutet|European Nucleotide Archive",2,0.01118,0.89308,0.00573,0.23128,0.98737,0.79354,0.39264,0.54552,28,90,T,B,sc-like readlen,illumina,novaseq_era,full_length,size_fractionation,trueseq,sc,single_cell_droplet,10x,,Sweden,2022-07-22,Multi-stage,Embryo,Whole Organism,All anatomical structures
11134,ERR9981089,ERX9522049,ERS12503451,ERP139797,PRJEB54930,Single cell RNA sequencing of lck GFP transgenic zebrafish,E-MTAB-11991,Transcriptome Analysis,The present study was conducted in the frame of the EU funded Graphene Flagship project. The aim is to evaluate the impact of graphene oxide GO on the innate immune system using zebrafish as a model. We previously performed single cell RNA sequencing of germ free zebrafish embryos exposed to GO plus the microbial metabolite butyrate BA. Here we performed a follow up experiment using germ free lck GFP transgenic fish in which the zebrafish were exposed to GO plus BA at xxx dpf. The embryos were then dissociated and subsequently sorted on lck and submitted for single cell RNA sequencing using 10x Genomics.,ENA FIRST PUBLIC:2022 07 23|ENA LAST UPDATE:2022 07 23,,Protocols: The generation of germ free Tglck:GFP zebrafish followed previously established protocols [1]. In brief 2 hpf embryos were transferred to petri dishes with sterile E3 medium supplemented with ampicillin 100 μg/mL kanamycin 5 μg/mL and amphotericin B 250 ng/mL and incubated at 28°C. At 50% epiboly up to shield stage 6 hpf the embryos were surface disinfected with 0.1% of polyvinylpyrroidone iodine PVP I for exactly 2 min followed by 0.003% sterile bleach immersion for 18 min. The embryos were then rinsed with sterile E3 medium transferred to flasks and incubated at 28°C. The viability was monitored and sterile medium was refreshed daily. At day 4 the hatched embryos were used for the sterility validation. A day 5 germ free Tglck:GFP zebrafish were exposed to the combination of GO 30 µg/mL and butyrate 2.5 mM for 24 h. GO and BA were pre incubated for 1 h prior to the exposure. Fifty larvae were used as one replicate four replicates i.e. two hundred larvae in total were used for each condition. post the exposure zebrafish larvae were dissociated for single cell suspension following the published protocol [2]. Briefly zebrafish larvae were euthanized with 0.01% of tricaine for 5 min collected in 1.5 mL tube and washed with PBS for three times. The dissociation was initiated by adding 500 μL of pre warmed enzyme mix containing 460 μL of 0.25% trypsin EDTA Gibco and 40 μL of collagenase Sigma Aldrich at the concentration of 100 mg/mL followed by mechanical dissociation using P1000 and then P200 pipette tips in heat block at 30 °C until the tissue was no longer visible about 10 min. The dissociation was then stopped by adding 800 μL DMEM Corning Cat# 10 013 CV with 10% FBS Fisher Scientific. The cell pellets were collected by centrifuging at 1000 rpm for 5 min at RT followed by washing with PBS. The cells were next resuspended in 0.5 mL DMEM with 10% FBS. Four replicates from each condition were pooled together at this step and filtered through 40 μm nylon mesh with an additional washing using DMEM with 10% FBS. The cell suspension was then stained with a fluorescent DNA dye DRAQ7 to exclude non viable cells Invitrogen Cat# D15106 at the dose of 3 μM for 10 min at room temperature before the fluorescence activated cell sorting BD FACSAria III BD Biosciences NJ USA. The sorting was performed using a 100 microns nozzle with the flow rate of 2 and temperature control at 4 °C and gated based on forward scatter and DRAQ7. The DRAQ7 lck+ cells of each sample were FACS sorted into the tubes containing DMEM with 10% FBS and placed on ice immediately post the sorting. The cells were then proceeded with the single cell RNA sequencing analysis. 1. Pham LN Kanther M Semova I & Rawls JF. Methods for generating and colonizing gnotobiotic zebrafish. Nat. Protoc. 3 1862 1875 2008. 2. Bresciani E Broadbridge E Liu PP An efficient dissociation protocol for generation of single cell suspension from zebrafish embryos and larvae MethodsX. 5 1287 1290 2018. Single cell RNA sequencing scRNA seq was performed by Eukaryotic Single Cell Genomics Facility at SciLifeLab Stockholm. The single cells collected from FACS sorting were loaded on a 10x GemCode Single Cell Instrument 10x Genomics Pleasanton USA to generate single cell gel beads in emulsion GEMs using the Chromium Next GEM Single Cell three prime GEM Library & Gel Bead Kit v3.1 10x Genomics following the manufacture's protocol. Briefly GEMs were generated by combining barcoded Single Cell three prime v3.1 Gel Beads a Master Mix containing cells and Partitioning Oil onto Chromium Next GEM Chip G. Following GEMs generation the Gel Bead was dissolved primers containing an Illumina TruSeq Read 1read 1 sequencing primer 16 nt 10x Barcode 12 nt unique molecular identifier UMI and 30 nt polydT sequence were released and the co partitioned cells were lysed. The nucleic acid library construction was performed using the Chromium Next GEM Single Cell three prime GEM Library & Gel Bead Kit v3.1 10x Genomics 16 rxns PN 1000268 following the manufacture's protocol. post GEMs generation primers were mixed with the cell lysate and a Master Mix containing reverse transcription RT reagents to produce barcoded full length cDNA from polyadenylated mRNA. Silane magnetic beads were used to purify the first strand cDNA from the post GEM RT reaction mixture which included leftover biochemical reagents and primers. Barcoded full length cDNA was amplified via PCR to generate sufficient mass for library construction. Enzymatic fragmentation and size selection were used to optimize the cDNA amplicon size. P5 P7 i7 and i5 sample indexes and TruSeq Read 2 read 2 primer sequence were added via End Repair A tailing Adaptor Ligation and PCR. The final libraries containing the P5 and P7 primers used in Illumina amplification were prepared for an estimated 5000 nuclei per sample.,Sample 1 lck control,SAMEA110406305,"Institute of Environmental Medicine, Karolinska Institutet",ENA FIRST PUBLIC:2022 07 23|ENA LAST UPDATE:2022 07 23|External Id:SAMEA110406305|INSDC center alias:Institute of Environmental Medicine Karolinska Institutet|INSDC center name:Institute of Environmental Medicine Karolinska Institutet|INSDC first public:2022 07 23T04:33:35Z|INSDC last update:2022 07 23T04:33:35Z|INSDC status:public|Submitter Id:E MTAB 11991:Sample 1 lck control|age:5|broker name:ArrayExpress|common name:zebrafish|developmental stage:larva|disease:normal|genotype:wild type genotype|isolate:not applicable|organism part:whole organism|sample name:E MTAB 11991:Sample 1 lck control|strain:Tglck:GFP,,,,,,,,,Illumina NovaSeq 6000 paired end sequencing; Single cell RNA sequencing of lck GFP transgenic zebrafish,E MTAB 11991:Sample 1 lck control p,Sample 1 lck control p,Single cell RNA sequencing of lck GFP transgenic zebrafish,The generation of germ free Tglck:GFP zebrafish followed previously established protocols [1]. In brief 2 hpf embryos were transferred to petri dishes with sterile E3 medium supplemented with ampicillin 100 μg/mL kanamycin 5 μg/mL and amphotericin B 250 ng/mL and incubated at 28°C. At 50% epiboly up to shield stage 6 hpf the embryos were surface disinfected with 0.1% of polyvinylpyrroidone iodine PVP I for exactly 2 min followed by 0.003% sterile bleach immersion for 18 min. The embryos were then rinsed with sterile E3 medium transferred to flasks and incubated at 28°C. The viability was monitored and sterile medium was refreshed daily. At day 4 the hatched embryos were used for the sterility validation. A day 5 germ free Tglck:GFP zebrafish were exposed to the combination of GO 30 µg/mL and butyrate 2.5 mM for 24 h. GO and BA were pre incubated for 1 h prior to the exposure. Fifty larvae were used as one replicate four replicates i.e. two hundred larvae in total were used for each condition. post the exposure zebrafish larvae were dissociated for single cell suspension following the published protocol [2]. Briefly zebrafish larvae were euthanized with 0.01% of tricaine for 5 min collected in 1.5 mL tube and washed with PBS for three times. The dissociation was initiated by adding 500 μL of pre warmed enzyme mix containing 460 μL of 0.25% trypsin EDTA Gibco and 40 μL of collagenase Sigma Aldrich at the concentration of 100 mg/mL followed by mechanical dissociation using P1000 and then P200 pipette tips in heat block at 30 °C until the tissue was no longer visible about 10 min. The dissociation was then stopped by adding 800 μL DMEM Corning Cat# 10 013 CV with 10% FBS Fisher Scientific. The cell pellets were collected by centrifuging at 1000 rpm for 5 min at RT followed by washing with PBS. The cells were next resuspended in 0.5 mL DMEM with 10% FBS. Four replicates from each condition were pooled together at this step and filtered through 40 μm nylon mesh with an additional washing using DMEM with 10% FBS. The cell suspension was then stained with a fluorescent DNA dye DRAQ7 to exclude non viable cells Invitrogen Cat# D15106 at the dose of 3 μM for 10 min at room temperature before the fluorescence activated cell sorting BD FACSAria III BD Biosciences NJ USA. The sorting was performed using a 100 microns nozzle with the flow rate of 2 and temperature control at 4 °,Experimental Factor: stimulus:n1,AMPLICON,TRANSCRIPTOMIC SINGLE CELL,size fractionation,PAIRED,ILLUMINA,Illumina NovaSeq 6000,,ERP139797,Illumina NovaSeq 6000 paired end sequencing; Single cell RNA sequencing of lck GFP transgenic zebrafish,ENA FIRST PUBLIC:2022 07 23|ENA LAST UPDATE:2022 07 23,P25452_2002_S2_L001_R1_001.fastq.gz P25452_2002_S2_L001_R2_001.fastq.gz,fastq fastq,60177283876.0,509976982.0,E MTAB 11991:P25452 2002 S2 L001,0:28 1:90,A:17254566438;C:13547211711;G:14188233429;T:15185192817;N:2079481,28,90,,,17254566438,13547211711,14188233429,15185192817,2079481,ERX9522049,ERS12503451,ERA16488297,"Institute of Environmental Medicine, Karolinska Institutet|European Nucleotide Archive","Institute of Environmental Medicine, Karolinska Institutet|European Nucleotide Archive",2,0.00671,0.93031,0.00231,0.11028,0.9932,0.82227,0.30887,0.58272,28,90,T,B,sc-like readlen,illumina,novaseq_era,full_length,size_fractionation,trueseq,sc,single_cell_droplet,10x,,Sweden,2022-07-23,Larval,Larval,Whole Organism,All anatomical structures
11135,ERR9981090,ERX9522049,ERS12503451,ERP139797,PRJEB54930,Single cell RNA sequencing of lck GFP transgenic zebrafish,E-MTAB-11991,Transcriptome Analysis,The present study was conducted in the frame of the EU funded Graphene Flagship project. The aim is to evaluate the impact of graphene oxide GO on the innate immune system using zebrafish as a model. We previously performed single cell RNA sequencing of germ free zebrafish embryos exposed to GO plus the microbial metabolite butyrate BA. Here we performed a follow up experiment using germ free lck GFP transgenic fish in which the zebrafish were exposed to GO plus BA at xxx dpf. The embryos were then dissociated and subsequently sorted on lck and submitted for single cell RNA sequencing using 10x Genomics.,ENA FIRST PUBLIC:2022 07 23|ENA LAST UPDATE:2022 07 23,,Protocols: The generation of germ free Tglck:GFP zebrafish followed previously established protocols [1]. In brief 2 hpf embryos were transferred to petri dishes with sterile E3 medium supplemented with ampicillin 100 μg/mL kanamycin 5 μg/mL and amphotericin B 250 ng/mL and incubated at 28°C. At 50% epiboly up to shield stage 6 hpf the embryos were surface disinfected with 0.1% of polyvinylpyrroidone iodine PVP I for exactly 2 min followed by 0.003% sterile bleach immersion for 18 min. The embryos were then rinsed with sterile E3 medium transferred to flasks and incubated at 28°C. The viability was monitored and sterile medium was refreshed daily. At day 4 the hatched embryos were used for the sterility validation. A day 5 germ free Tglck:GFP zebrafish were exposed to the combination of GO 30 µg/mL and butyrate 2.5 mM for 24 h. GO and BA were pre incubated for 1 h prior to the exposure. Fifty larvae were used as one replicate four replicates i.e. two hundred larvae in total were used for each condition. post the exposure zebrafish larvae were dissociated for single cell suspension following the published protocol [2]. Briefly zebrafish larvae were euthanized with 0.01% of tricaine for 5 min collected in 1.5 mL tube and washed with PBS for three times. The dissociation was initiated by adding 500 μL of pre warmed enzyme mix containing 460 μL of 0.25% trypsin EDTA Gibco and 40 μL of collagenase Sigma Aldrich at the concentration of 100 mg/mL followed by mechanical dissociation using P1000 and then P200 pipette tips in heat block at 30 °C until the tissue was no longer visible about 10 min. The dissociation was then stopped by adding 800 μL DMEM Corning Cat# 10 013 CV with 10% FBS Fisher Scientific. The cell pellets were collected by centrifuging at 1000 rpm for 5 min at RT followed by washing with PBS. The cells were next resuspended in 0.5 mL DMEM with 10% FBS. Four replicates from each condition were pooled together at this step and filtered through 40 μm nylon mesh with an additional washing using DMEM with 10% FBS. The cell suspension was then stained with a fluorescent DNA dye DRAQ7 to exclude non viable cells Invitrogen Cat# D15106 at the dose of 3 μM for 10 min at room temperature before the fluorescence activated cell sorting BD FACSAria III BD Biosciences NJ USA. The sorting was performed using a 100 microns nozzle with the flow rate of 2 and temperature control at 4 °C and gated based on forward scatter and DRAQ7. The DRAQ7 lck+ cells of each sample were FACS sorted into the tubes containing DMEM with 10% FBS and placed on ice immediately post the sorting. The cells were then proceeded with the single cell RNA sequencing analysis. 1. Pham LN Kanther M Semova I & Rawls JF. Methods for generating and colonizing gnotobiotic zebrafish. Nat. Protoc. 3 1862 1875 2008. 2. Bresciani E Broadbridge E Liu PP An efficient dissociation protocol for generation of single cell suspension from zebrafish embryos and larvae MethodsX. 5 1287 1290 2018. Single cell RNA sequencing scRNA seq was performed by Eukaryotic Single Cell Genomics Facility at SciLifeLab Stockholm. The single cells collected from FACS sorting were loaded on a 10x GemCode Single Cell Instrument 10x Genomics Pleasanton USA to generate single cell gel beads in emulsion GEMs using the Chromium Next GEM Single Cell three prime GEM Library & Gel Bead Kit v3.1 10x Genomics following the manufacture's protocol. Briefly GEMs were generated by combining barcoded Single Cell three prime v3.1 Gel Beads a Master Mix containing cells and Partitioning Oil onto Chromium Next GEM Chip G. Following GEMs generation the Gel Bead was dissolved primers containing an Illumina TruSeq Read 1read 1 sequencing primer 16 nt 10x Barcode 12 nt unique molecular identifier UMI and 30 nt polydT sequence were released and the co partitioned cells were lysed. The nucleic acid library construction was performed using the Chromium Next GEM Single Cell three prime GEM Library & Gel Bead Kit v3.1 10x Genomics 16 rxns PN 1000268 following the manufacture's protocol. post GEMs generation primers were mixed with the cell lysate and a Master Mix containing reverse transcription RT reagents to produce barcoded full length cDNA from polyadenylated mRNA. Silane magnetic beads were used to purify the first strand cDNA from the post GEM RT reaction mixture which included leftover biochemical reagents and primers. Barcoded full length cDNA was amplified via PCR to generate sufficient mass for library construction. Enzymatic fragmentation and size selection were used to optimize the cDNA amplicon size. P5 P7 i7 and i5 sample indexes and TruSeq Read 2 read 2 primer sequence were added via End Repair A tailing Adaptor Ligation and PCR. The final libraries containing the P5 and P7 primers used in Illumina amplification were prepared for an estimated 5000 nuclei per sample.,Sample 1 lck control,SAMEA110406305,"Institute of Environmental Medicine, Karolinska Institutet",ENA FIRST PUBLIC:2022 07 23|ENA LAST UPDATE:2022 07 23|External Id:SAMEA110406305|INSDC center alias:Institute of Environmental Medicine Karolinska Institutet|INSDC center name:Institute of Environmental Medicine Karolinska Institutet|INSDC first public:2022 07 23T04:33:35Z|INSDC last update:2022 07 23T04:33:35Z|INSDC status:public|Submitter Id:E MTAB 11991:Sample 1 lck control|age:5|broker name:ArrayExpress|common name:zebrafish|developmental stage:larva|disease:normal|genotype:wild type genotype|isolate:not applicable|organism part:whole organism|sample name:E MTAB 11991:Sample 1 lck control|strain:Tglck:GFP,,,,,,,,,Illumina NovaSeq 6000 paired end sequencing; Single cell RNA sequencing of lck GFP transgenic zebrafish,E MTAB 11991:Sample 1 lck control p,Sample 1 lck control p,Single cell RNA sequencing of lck GFP transgenic zebrafish,The generation of germ free Tglck:GFP zebrafish followed previously established protocols [1]. In brief 2 hpf embryos were transferred to petri dishes with sterile E3 medium supplemented with ampicillin 100 μg/mL kanamycin 5 μg/mL and amphotericin B 250 ng/mL and incubated at 28°C. At 50% epiboly up to shield stage 6 hpf the embryos were surface disinfected with 0.1% of polyvinylpyrroidone iodine PVP I for exactly 2 min followed by 0.003% sterile bleach immersion for 18 min. The embryos were then rinsed with sterile E3 medium transferred to flasks and incubated at 28°C. The viability was monitored and sterile medium was refreshed daily. At day 4 the hatched embryos were used for the sterility validation. A day 5 germ free Tglck:GFP zebrafish were exposed to the combination of GO 30 µg/mL and butyrate 2.5 mM for 24 h. GO and BA were pre incubated for 1 h prior to the exposure. Fifty larvae were used as one replicate four replicates i.e. two hundred larvae in total were used for each condition. post the exposure zebrafish larvae were dissociated for single cell suspension following the published protocol [2]. Briefly zebrafish larvae were euthanized with 0.01% of tricaine for 5 min collected in 1.5 mL tube and washed with PBS for three times. The dissociation was initiated by adding 500 μL of pre warmed enzyme mix containing 460 μL of 0.25% trypsin EDTA Gibco and 40 μL of collagenase Sigma Aldrich at the concentration of 100 mg/mL followed by mechanical dissociation using P1000 and then P200 pipette tips in heat block at 30 °C until the tissue was no longer visible about 10 min. The dissociation was then stopped by adding 800 μL DMEM Corning Cat# 10 013 CV with 10% FBS Fisher Scientific. The cell pellets were collected by centrifuging at 1000 rpm for 5 min at RT followed by washing with PBS. The cells were next resuspended in 0.5 mL DMEM with 10% FBS. Four replicates from each condition were pooled together at this step and filtered through 40 μm nylon mesh with an additional washing using DMEM with 10% FBS. The cell suspension was then stained with a fluorescent DNA dye DRAQ7 to exclude non viable cells Invitrogen Cat# D15106 at the dose of 3 μM for 10 min at room temperature before the fluorescence activated cell sorting BD FACSAria III BD Biosciences NJ USA. The sorting was performed using a 100 microns nozzle with the flow rate of 2 and temperature control at 4 °,Experimental Factor: stimulus:n1,AMPLICON,TRANSCRIPTOMIC SINGLE CELL,size fractionation,PAIRED,ILLUMINA,Illumina NovaSeq 6000,,ERP139797,Illumina NovaSeq 6000 paired end sequencing; Single cell RNA sequencing of lck GFP transgenic zebrafish,ENA FIRST PUBLIC:2022 07 23|ENA LAST UPDATE:2022 07 23,P25452_2002_S2_L002_R1_001.fastq.gz P25452_2002_S2_L002_R2_001.fastq.gz,fastq fastq,60597886144.0,513541408.0,E MTAB 11991:P25452 2002 S2 L002,0:28 1:90,A:17368154358;C:13649089056;G:14296037620;T:15282869484;N:1735626,28,90,,,17368154358,13649089056,14296037620,15282869484,1735626,ERX9522049,ERS12503451,ERA16488297,"Institute of Environmental Medicine, Karolinska Institutet|European Nucleotide Archive","Institute of Environmental Medicine, Karolinska Institutet|European Nucleotide Archive",2,0.00656,0.92899,0.00211,0.11059,0.99334,0.82335,0.32311,0.57644,28,90,T,B,sc-like readlen,illumina,novaseq_era,full_length,size_fractionation,trueseq,sc,single_cell_droplet,10x,,Sweden,2022-07-23,Larval,Larval,Whole Organism,All anatomical structures
11136,ERR9981087,ERX9522048,ERS12503450,ERP139797,PRJEB54930,Single cell RNA sequencing of lck GFP transgenic zebrafish,E-MTAB-11991,Transcriptome Analysis,The present study was conducted in the frame of the EU funded Graphene Flagship project. The aim is to evaluate the impact of graphene oxide GO on the innate immune system using zebrafish as a model. We previously performed single cell RNA sequencing of germ free zebrafish embryos exposed to GO plus the microbial metabolite butyrate BA. Here we performed a follow up experiment using germ free lck GFP transgenic fish in which the zebrafish were exposed to GO plus BA at xxx dpf. The embryos were then dissociated and subsequently sorted on lck and submitted for single cell RNA sequencing using 10x Genomics.,ENA FIRST PUBLIC:2022 07 23|ENA LAST UPDATE:2022 07 23,,Protocols: The generation of germ free Tglck:GFP zebrafish followed previously established protocols [1]. In brief 2 hpf embryos were transferred to petri dishes with sterile E3 medium supplemented with ampicillin 100 μg/mL kanamycin 5 μg/mL and amphotericin B 250 ng/mL and incubated at 28°C. At 50% epiboly up to shield stage 6 hpf the embryos were surface disinfected with 0.1% of polyvinylpyrroidone iodine PVP I for exactly 2 min followed by 0.003% sterile bleach immersion for 18 min. The embryos were then rinsed with sterile E3 medium transferred to flasks and incubated at 28°C. The viability was monitored and sterile medium was refreshed daily. At day 4 the hatched embryos were used for the sterility validation. A day 5 germ free Tglck:GFP zebrafish were exposed to the combination of GO 30 µg/mL and butyrate 2.5 mM for 24 h. GO and BA were pre incubated for 1 h prior to the exposure. Fifty larvae were used as one replicate four replicates i.e. two hundred larvae in total were used for each condition. post the exposure zebrafish larvae were dissociated for single cell suspension following the published protocol [2]. Briefly zebrafish larvae were euthanized with 0.01% of tricaine for 5 min collected in 1.5 mL tube and washed with PBS for three times. The dissociation was initiated by adding 500 μL of pre warmed enzyme mix containing 460 μL of 0.25% trypsin EDTA Gibco and 40 μL of collagenase Sigma Aldrich at the concentration of 100 mg/mL followed by mechanical dissociation using P1000 and then P200 pipette tips in heat block at 30 °C until the tissue was no longer visible about 10 min. The dissociation was then stopped by adding 800 μL DMEM Corning Cat# 10 013 CV with 10% FBS Fisher Scientific. The cell pellets were collected by centrifuging at 1000 rpm for 5 min at RT followed by washing with PBS. The cells were next resuspended in 0.5 mL DMEM with 10% FBS. Four replicates from each condition were pooled together at this step and filtered through 40 μm nylon mesh with an additional washing using DMEM with 10% FBS. The cell suspension was then stained with a fluorescent DNA dye DRAQ7 to exclude non viable cells Invitrogen Cat# D15106 at the dose of 3 μM for 10 min at room temperature before the fluorescence activated cell sorting BD FACSAria III BD Biosciences NJ USA. The sorting was performed using a 100 microns nozzle with the flow rate of 2 and temperature control at 4 °C and gated based on forward scatter and DRAQ7. The DRAQ7 lck+ cells of each sample were FACS sorted into the tubes containing DMEM with 10% FBS and placed on ice immediately post the sorting. The cells were then proceeded with the single cell RNA sequencing analysis. 1. Pham LN Kanther M Semova I & Rawls JF. Methods for generating and colonizing gnotobiotic zebrafish. Nat. Protoc. 3 1862 1875 2008. 2. Bresciani E Broadbridge E Liu PP An efficient dissociation protocol for generation of single cell suspension from zebrafish embryos and larvae MethodsX. 5 1287 1290 2018. Single cell RNA sequencing scRNA seq was performed by Eukaryotic Single Cell Genomics Facility at SciLifeLab Stockholm. The single cells collected from FACS sorting were loaded on a 10x GemCode Single Cell Instrument 10x Genomics Pleasanton USA to generate single cell gel beads in emulsion GEMs using the Chromium Next GEM Single Cell three prime GEM Library & Gel Bead Kit v3.1 10x Genomics following the manufacture's protocol. Briefly GEMs were generated by combining barcoded Single Cell three prime v3.1 Gel Beads a Master Mix containing cells and Partitioning Oil onto Chromium Next GEM Chip G. Following GEMs generation the Gel Bead was dissolved primers containing an Illumina TruSeq Read 1read 1 sequencing primer 16 nt 10x Barcode 12 nt unique molecular identifier UMI and 30 nt polydT sequence were released and the co partitioned cells were lysed. The nucleic acid library construction was performed using the Chromium Next GEM Single Cell three prime GEM Library & Gel Bead Kit v3.1 10x Genomics 16 rxns PN 1000268 following the manufacture's protocol. post GEMs generation primers were mixed with the cell lysate and a Master Mix containing reverse transcription RT reagents to produce barcoded full length cDNA from polyadenylated mRNA. Silane magnetic beads were used to purify the first strand cDNA from the post GEM RT reaction mixture which included leftover biochemical reagents and primers. Barcoded full length cDNA was amplified via PCR to generate sufficient mass for library construction. Enzymatic fragmentation and size selection were used to optimize the cDNA amplicon size. P5 P7 i7 and i5 sample indexes and TruSeq Read 2 read 2 primer sequence were added via End Repair A tailing Adaptor Ligation and PCR. The final libraries containing the P5 and P7 primers used in Illumina amplification were prepared for an estimated 5000 nuclei per sample.,Sample 2 lck GO+BA,SAMEA110406304,"Institute of Environmental Medicine, Karolinska Institutet",ENA FIRST PUBLIC:2022 07 23|ENA LAST UPDATE:2022 07 23|External Id:SAMEA110406304|INSDC center alias:Institute of Environmental Medicine Karolinska Institutet|INSDC center name:Institute of Environmental Medicine Karolinska Institutet|INSDC first public:2022 07 23T04:33:35Z|INSDC last update:2022 07 23T04:33:35Z|INSDC status:public|Submitter Id:E MTAB 11991:Sample 2 lck GO+BA|age:5|broker name:ArrayExpress|common name:zebrafish|developmental stage:larva|disease:normal|genotype:wild type genotype|isolate:not applicable|organism part:whole organism|sample name:E MTAB 11991:Sample 2 lck GO+BA|strain:Tglck:GFP,,,,,,,,,Illumina NovaSeq 6000 paired end sequencing; Single cell RNA sequencing of lck GFP transgenic zebrafish,E MTAB 11991:Sample 2 lck GO+BA p,Sample 2 lck GO+BA p,Single cell RNA sequencing of lck GFP transgenic zebrafish,The generation of germ free Tglck:GFP zebrafish followed previously established protocols [1]. In brief 2 hpf embryos were transferred to petri dishes with sterile E3 medium supplemented with ampicillin 100 μg/mL kanamycin 5 μg/mL and amphotericin B 250 ng/mL and incubated at 28°C. At 50% epiboly up to shield stage 6 hpf the embryos were surface disinfected with 0.1% of polyvinylpyrroidone iodine PVP I for exactly 2 min followed by 0.003% sterile bleach immersion for 18 min. The embryos were then rinsed with sterile E3 medium transferred to flasks and incubated at 28°C. The viability was monitored and sterile medium was refreshed daily. At day 4 the hatched embryos were used for the sterility validation. A day 5 germ free Tglck:GFP zebrafish were exposed to the combination of GO 30 µg/mL and butyrate 2.5 mM for 24 h. GO and BA were pre incubated for 1 h prior to the exposure. Fifty larvae were used as one replicate four replicates i.e. two hundred larvae in total were used for each condition. post the exposure zebrafish larvae were dissociated for single cell suspension following the published protocol [2]. Briefly zebrafish larvae were euthanized with 0.01% of tricaine for 5 min collected in 1.5 mL tube and washed with PBS for three times. The dissociation was initiated by adding 500 μL of pre warmed enzyme mix containing 460 μL of 0.25% trypsin EDTA Gibco and 40 μL of collagenase Sigma Aldrich at the concentration of 100 mg/mL followed by mechanical dissociation using P1000 and then P200 pipette tips in heat block at 30 °C until the tissue was no longer visible about 10 min. The dissociation was then stopped by adding 800 μL DMEM Corning Cat# 10 013 CV with 10% FBS Fisher Scientific. The cell pellets were collected by centrifuging at 1000 rpm for 5 min at RT followed by washing with PBS. The cells were next resuspended in 0.5 mL DMEM with 10% FBS. Four replicates from each condition were pooled together at this step and filtered through 40 μm nylon mesh with an additional washing using DMEM with 10% FBS. The cell suspension was then stained with a fluorescent DNA dye DRAQ7 to exclude non viable cells Invitrogen Cat# D15106 at the dose of 3 μM for 10 min at room temperature before the fluorescence activated cell sorting BD FACSAria III BD Biosciences NJ USA. The sorting was performed using a 100 microns nozzle with the flow rate of 2 and temperature control at 4 °C and gated based on forward scatter and DRAQ7. The DRAQ7 lck+ cells of each sample were FACS sorted into the tubes containing DMEM with 10% FBS and placed on ice immediately post the sorting. The cells were then proceeded with the single cell RNA sequencing analysis. 1. Pham LN Kanther M Semova I & Rawls JF. Methods for generating and colonizing gnotobiotic zebrafish. Nat. Protoc. 3 1862 1875 2008. 2. Bresciani E Broadbridge E Liu PP An efficient dissociation protocol for generation of single cell suspension from zebrafish embryos and larvae MethodsX. 5 1287 1290 2018. Single cell RNA sequencing scRNA seq was performed by Eukaryotic Single Cell Genomics Facility at SciLifeLab Stockholm. The single cells collected from FACS sorting were loaded on a 10x GemCode Single Cell Instrument 10x Genomics Pleasanton USA to generate single cell gel beads in emulsion GEMs using the Chromium Next GEM Single Cell three prime GEM Library & Gel Bead Kit v3.1 10x Genomics following the manufacture's protocol. Briefly GEMs were generated by combining barcoded Single Cell three prime v3.1 Gel Beads a Master Mix containing cells and Partitioning Oil onto Chromium Next GEM Chip G. Following GEMs generation the Gel Bead was dissolved primers containing an Illumina TruSeq Read 1read 1 sequencing primer 16 nt 10x Barcode 12 nt unique molecular identifier UMI and 30 nt polydT sequence were released and the co partitioned cells were lysed. The nucleic acid library construction was performed using the Chromium Next GEM Single Cell three prime GEM Library & Gel Bead Kit v3.1 10x Genomics 16 rxns PN 1000268 following the manufacture's protocol. post GEMs generation primers were mixed with the cell lysate and a Master Mix containing reverse transcription RT reagents to produce barcoded full length cDNA from polyadenylated mRNA. Silane magnetic beads were used to purify the first strand cDNA from the post GEM RT reaction mixture which included leftover biochemical reagents and primers. Barcoded full length cDNA was amplified via PCR to generate sufficient mass for library construction. Enzymatic fragmentation and size selection were used to optimize the cDNA amplicon size. P5 P7 i7 and i5 sample indexes and TruSeq Read 2 read 2 primer sequence were added via End Repair A tailing Adaptor Ligation and PCR. The final libraries containing the P5 and P7 primers used in Illumina amplification were prepared for an estimated 5000 nuclei per sample.,Experimental Factor: stimulus:graphene oxide 30 microgram per milliliter|Experimental Factor: compound:butyrate|Experimental Factor: dose:2.5,AMPLICON,TRANSCRIPTOMIC SINGLE CELL,size fractionation,PAIRED,ILLUMINA,Illumina NovaSeq 6000,,ERP139797,Illumina NovaSeq 6000 paired end sequencing; Single cell RNA sequencing of lck GFP transgenic zebrafish,ENA FIRST PUBLIC:2022 07 23|ENA LAST UPDATE:2022 07 23,P25452_2001_S1_L001_R1_001.fastq.gz P25452_2001_S1_L001_R2_001.fastq.gz,fastq fastq,20866120186.0,176831527.0,E MTAB 11991:P25452 2001 S1 L001,0:28 1:90,A:5933525376;C:4737179804;G:5025711080;T:5168983880;N:720046,28,90,,,5933525376,4737179804,5025711080,5168983880,720046,ERX9522048,ERS12503450,ERA16488297,"Institute of Environmental Medicine, Karolinska Institutet|European Nucleotide Archive","Institute of Environmental Medicine, Karolinska Institutet|European Nucleotide Archive",2,0.00805,0.92622,0.00259,0.11842,0.99302,0.83027,0.2729,0.57699,28,90,T,B,sc-like readlen,illumina,novaseq_era,full_length,size_fractionation,trueseq,sc,single_cell_droplet,10x,,Sweden,2022-07-23,Larval,Larval,Whole Organism,All anatomical structures
11137,ERR9981088,ERX9522048,ERS12503450,ERP139797,PRJEB54930,Single cell RNA sequencing of lck GFP transgenic zebrafish,E-MTAB-11991,Transcriptome Analysis,The present study was conducted in the frame of the EU funded Graphene Flagship project. The aim is to evaluate the impact of graphene oxide GO on the innate immune system using zebrafish as a model. We previously performed single cell RNA sequencing of germ free zebrafish embryos exposed to GO plus the microbial metabolite butyrate BA. Here we performed a follow up experiment using germ free lck GFP transgenic fish in which the zebrafish were exposed to GO plus BA at xxx dpf. The embryos were then dissociated and subsequently sorted on lck and submitted for single cell RNA sequencing using 10x Genomics.,ENA FIRST PUBLIC:2022 07 23|ENA LAST UPDATE:2022 07 23,,Protocols: The generation of germ free Tglck:GFP zebrafish followed previously established protocols [1]. In brief 2 hpf embryos were transferred to petri dishes with sterile E3 medium supplemented with ampicillin 100 μg/mL kanamycin 5 μg/mL and amphotericin B 250 ng/mL and incubated at 28°C. At 50% epiboly up to shield stage 6 hpf the embryos were surface disinfected with 0.1% of polyvinylpyrroidone iodine PVP I for exactly 2 min followed by 0.003% sterile bleach immersion for 18 min. The embryos were then rinsed with sterile E3 medium transferred to flasks and incubated at 28°C. The viability was monitored and sterile medium was refreshed daily. At day 4 the hatched embryos were used for the sterility validation. A day 5 germ free Tglck:GFP zebrafish were exposed to the combination of GO 30 µg/mL and butyrate 2.5 mM for 24 h. GO and BA were pre incubated for 1 h prior to the exposure. Fifty larvae were used as one replicate four replicates i.e. two hundred larvae in total were used for each condition. post the exposure zebrafish larvae were dissociated for single cell suspension following the published protocol [2]. Briefly zebrafish larvae were euthanized with 0.01% of tricaine for 5 min collected in 1.5 mL tube and washed with PBS for three times. The dissociation was initiated by adding 500 μL of pre warmed enzyme mix containing 460 μL of 0.25% trypsin EDTA Gibco and 40 μL of collagenase Sigma Aldrich at the concentration of 100 mg/mL followed by mechanical dissociation using P1000 and then P200 pipette tips in heat block at 30 °C until the tissue was no longer visible about 10 min. The dissociation was then stopped by adding 800 μL DMEM Corning Cat# 10 013 CV with 10% FBS Fisher Scientific. The cell pellets were collected by centrifuging at 1000 rpm for 5 min at RT followed by washing with PBS. The cells were next resuspended in 0.5 mL DMEM with 10% FBS. Four replicates from each condition were pooled together at this step and filtered through 40 μm nylon mesh with an additional washing using DMEM with 10% FBS. The cell suspension was then stained with a fluorescent DNA dye DRAQ7 to exclude non viable cells Invitrogen Cat# D15106 at the dose of 3 μM for 10 min at room temperature before the fluorescence activated cell sorting BD FACSAria III BD Biosciences NJ USA. The sorting was performed using a 100 microns nozzle with the flow rate of 2 and temperature control at 4 °C and gated based on forward scatter and DRAQ7. The DRAQ7 lck+ cells of each sample were FACS sorted into the tubes containing DMEM with 10% FBS and placed on ice immediately post the sorting. The cells were then proceeded with the single cell RNA sequencing analysis. 1. Pham LN Kanther M Semova I & Rawls JF. Methods for generating and colonizing gnotobiotic zebrafish. Nat. Protoc. 3 1862 1875 2008. 2. Bresciani E Broadbridge E Liu PP An efficient dissociation protocol for generation of single cell suspension from zebrafish embryos and larvae MethodsX. 5 1287 1290 2018. Single cell RNA sequencing scRNA seq was performed by Eukaryotic Single Cell Genomics Facility at SciLifeLab Stockholm. The single cells collected from FACS sorting were loaded on a 10x GemCode Single Cell Instrument 10x Genomics Pleasanton USA to generate single cell gel beads in emulsion GEMs using the Chromium Next GEM Single Cell three prime GEM Library & Gel Bead Kit v3.1 10x Genomics following the manufacture's protocol. Briefly GEMs were generated by combining barcoded Single Cell three prime v3.1 Gel Beads a Master Mix containing cells and Partitioning Oil onto Chromium Next GEM Chip G. Following GEMs generation the Gel Bead was dissolved primers containing an Illumina TruSeq Read 1read 1 sequencing primer 16 nt 10x Barcode 12 nt unique molecular identifier UMI and 30 nt polydT sequence were released and the co partitioned cells were lysed. The nucleic acid library construction was performed using the Chromium Next GEM Single Cell three prime GEM Library & Gel Bead Kit v3.1 10x Genomics 16 rxns PN 1000268 following the manufacture's protocol. post GEMs generation primers were mixed with the cell lysate and a Master Mix containing reverse transcription RT reagents to produce barcoded full length cDNA from polyadenylated mRNA. Silane magnetic beads were used to purify the first strand cDNA from the post GEM RT reaction mixture which included leftover biochemical reagents and primers. Barcoded full length cDNA was amplified via PCR to generate sufficient mass for library construction. Enzymatic fragmentation and size selection were used to optimize the cDNA amplicon size. P5 P7 i7 and i5 sample indexes and TruSeq Read 2 read 2 primer sequence were added via End Repair A tailing Adaptor Ligation and PCR. The final libraries containing the P5 and P7 primers used in Illumina amplification were prepared for an estimated 5000 nuclei per sample.,Sample 2 lck GO+BA,SAMEA110406304,"Institute of Environmental Medicine, Karolinska Institutet",ENA FIRST PUBLIC:2022 07 23|ENA LAST UPDATE:2022 07 23|External Id:SAMEA110406304|INSDC center alias:Institute of Environmental Medicine Karolinska Institutet|INSDC center name:Institute of Environmental Medicine Karolinska Institutet|INSDC first public:2022 07 23T04:33:35Z|INSDC last update:2022 07 23T04:33:35Z|INSDC status:public|Submitter Id:E MTAB 11991:Sample 2 lck GO+BA|age:5|broker name:ArrayExpress|common name:zebrafish|developmental stage:larva|disease:normal|genotype:wild type genotype|isolate:not applicable|organism part:whole organism|sample name:E MTAB 11991:Sample 2 lck GO+BA|strain:Tglck:GFP,,,,,,,,,Illumina NovaSeq 6000 paired end sequencing; Single cell RNA sequencing of lck GFP transgenic zebrafish,E MTAB 11991:Sample 2 lck GO+BA p,Sample 2 lck GO+BA p,Single cell RNA sequencing of lck GFP transgenic zebrafish,The generation of germ free Tglck:GFP zebrafish followed previously established protocols [1]. In brief 2 hpf embryos were transferred to petri dishes with sterile E3 medium supplemented with ampicillin 100 μg/mL kanamycin 5 μg/mL and amphotericin B 250 ng/mL and incubated at 28°C. At 50% epiboly up to shield stage 6 hpf the embryos were surface disinfected with 0.1% of polyvinylpyrroidone iodine PVP I for exactly 2 min followed by 0.003% sterile bleach immersion for 18 min. The embryos were then rinsed with sterile E3 medium transferred to flasks and incubated at 28°C. The viability was monitored and sterile medium was refreshed daily. At day 4 the hatched embryos were used for the sterility validation. A day 5 germ free Tglck:GFP zebrafish were exposed to the combination of GO 30 µg/mL and butyrate 2.5 mM for 24 h. GO and BA were pre incubated for 1 h prior to the exposure. Fifty larvae were used as one replicate four replicates i.e. two hundred larvae in total were used for each condition. post the exposure zebrafish larvae were dissociated for single cell suspension following the published protocol [2]. Briefly zebrafish larvae were euthanized with 0.01% of tricaine for 5 min collected in 1.5 mL tube and washed with PBS for three times. The dissociation was initiated by adding 500 μL of pre warmed enzyme mix containing 460 μL of 0.25% trypsin EDTA Gibco and 40 μL of collagenase Sigma Aldrich at the concentration of 100 mg/mL followed by mechanical dissociation using P1000 and then P200 pipette tips in heat block at 30 °C until the tissue was no longer visible about 10 min. The dissociation was then stopped by adding 800 μL DMEM Corning Cat# 10 013 CV with 10% FBS Fisher Scientific. The cell pellets were collected by centrifuging at 1000 rpm for 5 min at RT followed by washing with PBS. The cells were next resuspended in 0.5 mL DMEM with 10% FBS. Four replicates from each condition were pooled together at this step and filtered through 40 μm nylon mesh with an additional washing using DMEM with 10% FBS. The cell suspension was then stained with a fluorescent DNA dye DRAQ7 to exclude non viable cells Invitrogen Cat# D15106 at the dose of 3 μM for 10 min at room temperature before the fluorescence activated cell sorting BD FACSAria III BD Biosciences NJ USA. The sorting was performed using a 100 microns nozzle with the flow rate of 2 and temperature control at 4 °C and gated based on forward scatter and DRAQ7. The DRAQ7 lck+ cells of each sample were FACS sorted into the tubes containing DMEM with 10% FBS and placed on ice immediately post the sorting. The cells were then proceeded with the single cell RNA sequencing analysis. 1. Pham LN Kanther M Semova I & Rawls JF. Methods for generating and colonizing gnotobiotic zebrafish. Nat. Protoc. 3 1862 1875 2008. 2. Bresciani E Broadbridge E Liu PP An efficient dissociation protocol for generation of single cell suspension from zebrafish embryos and larvae MethodsX. 5 1287 1290 2018. Single cell RNA sequencing scRNA seq was performed by Eukaryotic Single Cell Genomics Facility at SciLifeLab Stockholm. The single cells collected from FACS sorting were loaded on a 10x GemCode Single Cell Instrument 10x Genomics Pleasanton USA to generate single cell gel beads in emulsion GEMs using the Chromium Next GEM Single Cell three prime GEM Library & Gel Bead Kit v3.1 10x Genomics following the manufacture's protocol. Briefly GEMs were generated by combining barcoded Single Cell three prime v3.1 Gel Beads a Master Mix containing cells and Partitioning Oil onto Chromium Next GEM Chip G. Following GEMs generation the Gel Bead was dissolved primers containing an Illumina TruSeq Read 1read 1 sequencing primer 16 nt 10x Barcode 12 nt unique molecular identifier UMI and 30 nt polydT sequence were released and the co partitioned cells were lysed. The nucleic acid library construction was performed using the Chromium Next GEM Single Cell three prime GEM Library & Gel Bead Kit v3.1 10x Genomics 16 rxns PN 1000268 following the manufacture's protocol. post GEMs generation primers were mixed with the cell lysate and a Master Mix containing reverse transcription RT reagents to produce barcoded full length cDNA from polyadenylated mRNA. Silane magnetic beads were used to purify the first strand cDNA from the post GEM RT reaction mixture which included leftover biochemical reagents and primers. Barcoded full length cDNA was amplified via PCR to generate sufficient mass for library construction. Enzymatic fragmentation and size selection were used to optimize the cDNA amplicon size. P5 P7 i7 and i5 sample indexes and TruSeq Read 2 read 2 primer sequence were added via End Repair A tailing Adaptor Ligation and PCR. The final libraries containing the P5 and P7 primers used in Illumina amplification were prepared for an estimated 5000 nuclei per sample.,Experimental Factor: stimulus:graphene oxide 30 microgram per milliliter|Experimental Factor: compound:butyrate|Experimental Factor: dose:2.5,AMPLICON,TRANSCRIPTOMIC SINGLE CELL,size fractionation,PAIRED,ILLUMINA,Illumina NovaSeq 6000,,ERP139797,Illumina NovaSeq 6000 paired end sequencing; Single cell RNA sequencing of lck GFP transgenic zebrafish,ENA FIRST PUBLIC:2022 07 23|ENA LAST UPDATE:2022 07 23,P25452_2001_S1_L002_R1_001.fastq.gz P25452_2001_S1_L002_R2_001.fastq.gz,fastq fastq,21068682172.0,178548154.0,E MTAB 11991:P25452 2001 S1 L002,0:28 1:90,A:5987758267;C:4786100132;G:5078292970;T:5215926275;N:604528,28,90,,,5987758267,4786100132,5078292970,5215926275,604528,ERX9522048,ERS12503450,ERA16488297,"Institute of Environmental Medicine, Karolinska Institutet|European Nucleotide Archive","Institute of Environmental Medicine, Karolinska Institutet|European Nucleotide Archive",2,0.00813,0.92702,0.00264,0.11874,0.99283,0.82737,0.30228,0.56929,28,90,T,B,sc-like readlen,illumina,novaseq_era,full_length,size_fractionation,trueseq,sc,single_cell_droplet,10x,,Sweden,2022-07-23,Larval,Larval,Whole Organism,All anatomical structures
28514,SRR26502432,SRX22206245,SRS19261598,SRP468057,PRJNA1027976,Danio rerio BCR rep seq Raw sequence reads,PRJNA1027976,Other,A library of B cell receptors including IgM and IgZ2 was constructed using the SMARTer Human BCR Profiling Kit to understand its expression in the AB strain of zebrafish.,,,AB strain zebrafish was used to collect a library of IgM and IgZ2 at 28 days post the TNP KLH via IP injection.,Zebrafish AB IP TNP KLH 28d,IPTNP 28d AB,,strain:AB|dev stage:adult|sex:not determined|tissue:kidney gill Intestines|collection date:2022|geo loc name:not applicable|health state:health|treatment:IP TNP KLH|BioSampleModel:Model organism or animal,,,,,,,,,Rep Seq of zebrafish AB IgZ2 at 28 days post the TNP KLH via IP injection: adult kidney fish2,zebrafish AB Kidney IP TNPKLH IgZ2 Fish2,zebrafish AB Kidney IP TNPKLH IgZ2 Fish2,A method was designed for constructing a AB strain zebrafish B cell receptor BCR library based on the SMARTer Human BCR IgG IgM HKL Profiling Kit. Fish2 kidneys were harvested 28 days post IP injected TNP KLH to construct an IgZ2 library.,,,AMPLICON,TRANSCRIPTOMIC,Oligo-dT,PAIRED,ILLUMINA,Illumina MiSeq,,SRP468057,,,IPTNP_28d_AB_Ki_Z2_Fish2_clean_R1.fastq.gz IPTNP_28d_AB_Ki_Z2_Fish2_clean_R2.fastq.gz,fastq fastq,223722000.0,372870.0,IPTNP 28d AB Ki Z2 Fish2 clean R1.fastq.gz,0:300 1:300,A:60349354;C:49977478;G:49698065;T:63696951;N:152,300,300,,,60349354,49977478,49698065,63696951,152,SRX22206245,SRS19261598,SRA1738863,Sun Yat-sen University|School of Life Sciences,Sun Yat-sen University,2,0.00039,0.56274,0.0,0.03514,0.99977,0.99977,0.13793,0.0001,300,300,T,B,mate1 technical by mapping diff,illumina,miseq,full_length,poly_a,smarter,bulk,unknown,unknown,,China,2023-10-25,Adult,Adult,Multi-tissue,Multi-system
28515,SRR26502433,SRX22206244,SRS19261598,SRP468057,PRJNA1027976,Danio rerio BCR rep seq Raw sequence reads,PRJNA1027976,Other,A library of B cell receptors including IgM and IgZ2 was constructed using the SMARTer Human BCR Profiling Kit to understand its expression in the AB strain of zebrafish.,,,AB strain zebrafish was used to collect a library of IgM and IgZ2 at 28 days post the TNP KLH via IP injection.,Zebrafish AB IP TNP KLH 28d,IPTNP 28d AB,,strain:AB|dev stage:adult|sex:not determined|tissue:kidney gill Intestines|collection date:2022|geo loc name:not applicable|health state:health|treatment:IP TNP KLH|BioSampleModel:Model organism or animal,,,,,,,,,Rep Seq of zebrafish AB IgM at 28 days post the TNP KLH via IP injection: adult kidney fish2,zebrafish AB Kidney IP TNPKLH IgM Fish2,zebrafish AB Kidney IP TNPKLH IgM Fish2,A method was designed for constructing a AB strain zebrafish B cell receptor BCR library based on the SMARTer Human BCR IgG IgM HKL Profiling Kit. Fish2 kidneys were harvested 28 days post IP injected TNP KLH to construct an IgM library.,,,AMPLICON,TRANSCRIPTOMIC,Oligo-dT,PAIRED,ILLUMINA,Illumina MiSeq,,SRP468057,,,IPTNP_28d_AB_Ki_M_Fish2_clean_R2.fastq.gz IPTNP_28d_AB_Ki_M_Fish2_clean_R1.fastq.gz,fastq fastq,1296356400.0,2160594.0,IPTNP 28d AB Ki M Fish2 clean R1.fastq.gz,0:300 1:300,A:345599628;C:292675523;G:307032178;T:351048163;N:908,300,300,,,345599628,292675523,307032178,351048163,908,SRX22206244,SRS19261598,SRA1738863,Sun Yat-sen University|School of Life Sciences,Sun Yat-sen University,2,0.13277,0.493,0.0,0.0538,0.99997,0.99983,0.0,0.00016,300,300,B,B,mate1-mate2 similar by mapping diff,illumina,miseq,full_length,poly_a,smarter,bulk,unknown,unknown,,China,2023-10-25,Adult,Adult,Multi-tissue,Multi-system
28516,SRR26502438,SRX22206239,SRS19261598,SRP468057,PRJNA1027976,Danio rerio BCR rep seq Raw sequence reads,PRJNA1027976,Other,A library of B cell receptors including IgM and IgZ2 was constructed using the SMARTer Human BCR Profiling Kit to understand its expression in the AB strain of zebrafish.,,,AB strain zebrafish was used to collect a library of IgM and IgZ2 at 28 days post the TNP KLH via IP injection.,Zebrafish AB IP TNP KLH 28d,IPTNP 28d AB,,strain:AB|dev stage:adult|sex:not determined|tissue:kidney gill Intestines|collection date:2022|geo loc name:not applicable|health state:health|treatment:IP TNP KLH|BioSampleModel:Model organism or animal,,,,,,,,,Rep Seq of zebrafish AB IgZ2 at 28 days post the TNP KLH via IP injection: adult kidney fish6,zebrafish AB Kidney IP TNPKLH IgZ2 Fish6,zebrafish AB Kidney IP TNPKLH IgZ2 Fish6,A method was designed for constructing a AB strain zebrafish B cell receptor BCR library based on the SMARTer Human BCR IgG IgM HKL Profiling Kit. Fish6 kidneys were harvested 28 days post IP injected TNP KLH to construct an IgZ2 library.,,,AMPLICON,TRANSCRIPTOMIC,Oligo-dT,PAIRED,ILLUMINA,Illumina MiSeq,,SRP468057,,,IPTNP_28d_AB_Ki_Z2_Fish6_clean_R1.fastq.gz IPTNP_28d_AB_Ki_Z2_Fish6_clean_R2.fastq.gz,fastq fastq,36927000.0,61545.0,IPTNP 28d AB Ki Z2 Fish6 clean R1.fastq.gz,0:300 1:300,A:10692726;C:8421425;G:7948050;T:9864799;N:0,300,300,,,10692726,8421425,7948050,9864799,0,SRX22206239,SRS19261598,SRA1738863,Sun Yat-sen University|School of Life Sciences,Sun Yat-sen University,2,0.00217,0.43144,0.00031,0.04455,0.99902,0.99926,0.46153,0.00207,300,300,T,B,mate1 technical by mapping diff,illumina,miseq,full_length,poly_a,smarter,bulk,unknown,unknown,,China,2023-10-25,Adult,Adult,Multi-tissue,Multi-system
28517,SRR26502439,SRX22206238,SRS19261598,SRP468057,PRJNA1027976,Danio rerio BCR rep seq Raw sequence reads,PRJNA1027976,Other,A library of B cell receptors including IgM and IgZ2 was constructed using the SMARTer Human BCR Profiling Kit to understand its expression in the AB strain of zebrafish.,,,AB strain zebrafish was used to collect a library of IgM and IgZ2 at 28 days post the TNP KLH via IP injection.,Zebrafish AB IP TNP KLH 28d,IPTNP 28d AB,,strain:AB|dev stage:adult|sex:not determined|tissue:kidney gill Intestines|collection date:2022|geo loc name:not applicable|health state:health|treatment:IP TNP KLH|BioSampleModel:Model organism or animal,,,,,,,,,Rep Seq of zebrafish AB IgM at 28 days post the TNP KLH via IP injection: adult kidney fish6,zebrafish AB Kidney IP TNPKLH IgM Fish6,zebrafish AB Kidney IP TNPKLH IgM Fish6,A method was designed for constructing a AB strain zebrafish B cell receptor BCR library based on the SMARTer Human BCR IgG IgM HKL Profiling Kit. Fish6 kidneys were harvested 28 days post IP injected TNP KLH to construct an IgM library.,,,AMPLICON,TRANSCRIPTOMIC,Oligo-dT,PAIRED,ILLUMINA,Illumina MiSeq,,SRP468057,,,IPTNP_28d_AB_Ki_M_Fish6_clean_R1.fastq.gz IPTNP_28d_AB_Ki_M_Fish6_clean_R2.fastq.gz,fastq fastq,579266400.0,965444.0,IPTNP 28d AB Ki M Fish6 clean R1.fastq.gz,0:300 1:300,A:155729386;C:133391465;G:134161096;T:155984401;N:52,300,300,,,155729386,133391465,134161096,155984401,52,SRX22206238,SRS19261598,SRA1738863,Sun Yat-sen University|School of Life Sciences,Sun Yat-sen University,2,0.10691,0.50696,0.0,0.06888,0.99989,0.99975,0.00022,0.00014,300,300,T,B,mate1 technical by mapping diff,illumina,miseq,full_length,poly_a,smarter,bulk,unknown,unknown,,China,2023-10-25,Adult,Adult,Multi-tissue,Multi-system
28518,SRR26502440,SRX22206237,SRS19261598,SRP468057,PRJNA1027976,Danio rerio BCR rep seq Raw sequence reads,PRJNA1027976,Other,A library of B cell receptors including IgM and IgZ2 was constructed using the SMARTer Human BCR Profiling Kit to understand its expression in the AB strain of zebrafish.,,,AB strain zebrafish was used to collect a library of IgM and IgZ2 at 28 days post the TNP KLH via IP injection.,Zebrafish AB IP TNP KLH 28d,IPTNP 28d AB,,strain:AB|dev stage:adult|sex:not determined|tissue:kidney gill Intestines|collection date:2022|geo loc name:not applicable|health state:health|treatment:IP TNP KLH|BioSampleModel:Model organism or animal,,,,,,,,,Rep Seq of zebrafish AB IgZ2 at 28 days post the TNP KLH via IP injection: adult kidney fish5,zebrafish AB Kidney IP TNPKLH IgZ2 Fish5,zebrafish AB Kidney IP TNPKLH IgZ2 Fish5,A method was designed for constructing a AB strain zebrafish B cell receptor BCR library based on the SMARTer Human BCR IgG IgM HKL Profiling Kit. Fish5 kidneys were harvested 28 days post IP injected TNP KLH to construct an IgZ2 library.,,,AMPLICON,TRANSCRIPTOMIC,Oligo-dT,PAIRED,ILLUMINA,Illumina MiSeq,,SRP468057,,,IPTNP_28d_AB_Ki_Z2_Fish5_clean_R1.fastq.gz IPTNP_28d_AB_Ki_Z2_Fish5_clean_R2.fastq.gz,fastq fastq,72321600.0,120536.0,IPTNP 28d AB Ki Z2 Fish5 clean R1.fastq.gz,0:300 1:300,A:20213882;C:16497376;G:15762001;T:19848333;N:8,300,300,,,20213882,16497376,15762001,19848333,8,SRX22206237,SRS19261598,SRA1738863,Sun Yat-sen University|School of Life Sciences,Sun Yat-sen University,2,0.00248,0.52445,0.00015,0.04429,0.99902,0.99918,0.13142,0.00403,300,300,T,B,mate1 technical by mapping diff,illumina,miseq,full_length,poly_a,smarter,bulk,unknown,unknown,,China,2023-10-25,Adult,Adult,Multi-tissue,Multi-system
28519,SRR26502441,SRX22206236,SRS19261598,SRP468057,PRJNA1027976,Danio rerio BCR rep seq Raw sequence reads,PRJNA1027976,Other,A library of B cell receptors including IgM and IgZ2 was constructed using the SMARTer Human BCR Profiling Kit to understand its expression in the AB strain of zebrafish.,,,AB strain zebrafish was used to collect a library of IgM and IgZ2 at 28 days post the TNP KLH via IP injection.,Zebrafish AB IP TNP KLH 28d,IPTNP 28d AB,,strain:AB|dev stage:adult|sex:not determined|tissue:kidney gill Intestines|collection date:2022|geo loc name:not applicable|health state:health|treatment:IP TNP KLH|BioSampleModel:Model organism or animal,,,,,,,,,Rep Seq of zebrafish AB IgM at 28 days post the TNP KLH via IP injection: adult kidney fish5,zebrafish AB Kidney IP TNPKLH IgM Fish5,zebrafish AB Kidney IP TNPKLH IgM Fish5,A method was designed for constructing a AB strain zebrafish B cell receptor BCR library based on the SMARTer Human BCR IgG IgM HKL Profiling Kit. Fish5 kidneys were harvested 28 days post IP injected TNP KLH to construct an IgM library.,,,AMPLICON,TRANSCRIPTOMIC,Oligo-dT,PAIRED,ILLUMINA,Illumina MiSeq,,SRP468057,,,IPTNP_28d_AB_Ki_M_Fish5_clean_R1.fastq.gz IPTNP_28d_AB_Ki_M_Fish5_clean_R2.fastq.gz,fastq fastq,627508800.0,1045848.0,IPTNP 28d AB Ki M Fish5 clean R1.fastq.gz,0:300 1:300,A:166970849;C:144788459;G:146254051;T:169495382;N:59,300,300,,,166970849,144788459,146254051,169495382,59,SRX22206236,SRS19261598,SRA1738863,Sun Yat-sen University|School of Life Sciences,Sun Yat-sen University,2,0.14044,0.5736,0.0,0.07097,0.99997,0.99983,0.0,0.00011,300,300,T,B,mate1 technical by mapping diff,illumina,miseq,full_length,poly_a,smarter,bulk,unknown,unknown,,China,2023-10-25,Adult,Adult,Multi-tissue,Multi-system
28520,SRR26502442,SRX22206235,SRS19261598,SRP468057,PRJNA1027976,Danio rerio BCR rep seq Raw sequence reads,PRJNA1027976,Other,A library of B cell receptors including IgM and IgZ2 was constructed using the SMARTer Human BCR Profiling Kit to understand its expression in the AB strain of zebrafish.,,,AB strain zebrafish was used to collect a library of IgM and IgZ2 at 28 days post the TNP KLH via IP injection.,Zebrafish AB IP TNP KLH 28d,IPTNP 28d AB,,strain:AB|dev stage:adult|sex:not determined|tissue:kidney gill Intestines|collection date:2022|geo loc name:not applicable|health state:health|treatment:IP TNP KLH|BioSampleModel:Model organism or animal,,,,,,,,,Rep Seq of zebrafish AB IgZ2 at 28 days post the TNP KLH via IP injection: adult kidney fish4,zebrafish AB Kidney IP TNPKLH IgZ2 Fish4,zebrafish AB Kidney IP TNPKLH IgZ2 Fish4,A method was designed for constructing a AB strain zebrafish B cell receptor BCR library based on the SMARTer Human BCR IgG IgM HKL Profiling Kit. Fish4 kidneys were harvested 28 days post IP injected TNP KLH to construct an IgZ2 library.,,,AMPLICON,TRANSCRIPTOMIC,Oligo-dT,PAIRED,ILLUMINA,Illumina MiSeq,,SRP468057,,,IPTNP_28d_AB_Ki_Z2_Fish4_clean_R1.fastq.gz IPTNP_28d_AB_Ki_Z2_Fish4_clean_R2.fastq.gz,fastq fastq,84922800.0,141538.0,IPTNP 28d AB Ki Z2 Fish4 clean R1.fastq.gz,0:300 1:300,A:24137795;C:19238356;G:18271192;T:23275452;N:5,300,300,,,24137795,19238356,18271192,23275452,5,SRX22206235,SRS19261598,SRA1738863,Sun Yat-sen University|School of Life Sciences,Sun Yat-sen University,2,0.00273,0.51115,7e-05,0.05752,0.99924,0.99939,0.14655,0.00062,300,300,T,B,mate1 technical by mapping diff,illumina,miseq,full_length,poly_a,smarter,bulk,unknown,unknown,,China,2023-10-25,Adult,Adult,Multi-tissue,Multi-system
28521,SRR26502443,SRX22206234,SRS19261598,SRP468057,PRJNA1027976,Danio rerio BCR rep seq Raw sequence reads,PRJNA1027976,Other,A library of B cell receptors including IgM and IgZ2 was constructed using the SMARTer Human BCR Profiling Kit to understand its expression in the AB strain of zebrafish.,,,AB strain zebrafish was used to collect a library of IgM and IgZ2 at 28 days post the TNP KLH via IP injection.,Zebrafish AB IP TNP KLH 28d,IPTNP 28d AB,,strain:AB|dev stage:adult|sex:not determined|tissue:kidney gill Intestines|collection date:2022|geo loc name:not applicable|health state:health|treatment:IP TNP KLH|BioSampleModel:Model organism or animal,,,,,,,,,Rep Seq of zebrafish AB IgM at 28 days post the TNP KLH via IP injection: adult kidney fish4,zebrafish AB Kidney IP TNPKLH IgM Fish4,zebrafish AB Kidney IP TNPKLH IgM Fish4,A method was designed for constructing a AB strain zebrafish B cell receptor BCR library based on the SMARTer Human BCR IgG IgM HKL Profiling Kit. Fish4 kidneys were harvested 28 days post IP injected TNP KLH to construct an IgM library.,,,AMPLICON,TRANSCRIPTOMIC,Oligo-dT,PAIRED,ILLUMINA,Illumina MiSeq,,SRP468057,,,IPTNP_28d_AB_Ki_M_Fish4_clean_R1.fastq.gz IPTNP_28d_AB_Ki_M_Fish4_clean_R2.fastq.gz,fastq fastq,538648200.0,897747.0,IPTNP 28d AB Ki M Fish4 clean R1.fastq.gz,0:300 1:300,A:144890138;C:124184645;G:124940661;T:144632730;N:26,300,300,,,144890138,124184645,124940661,144632730,26,SRX22206234,SRS19261598,SRA1738863,Sun Yat-sen University|School of Life Sciences,Sun Yat-sen University,2,0.17776,0.53894,0.0,0.07275,0.99991,0.99975,7e-05,0.00013,300,300,B,B,mate1-mate2 similar by mapping diff,illumina,miseq,full_length,poly_a,smarter,bulk,unknown,unknown,,China,2023-10-25,Adult,Adult,Multi-tissue,Multi-system
28522,SRR26502444,SRX22206233,SRS19261598,SRP468057,PRJNA1027976,Danio rerio BCR rep seq Raw sequence reads,PRJNA1027976,Other,A library of B cell receptors including IgM and IgZ2 was constructed using the SMARTer Human BCR Profiling Kit to understand its expression in the AB strain of zebrafish.,,,AB strain zebrafish was used to collect a library of IgM and IgZ2 at 28 days post the TNP KLH via IP injection.,Zebrafish AB IP TNP KLH 28d,IPTNP 28d AB,,strain:AB|dev stage:adult|sex:not determined|tissue:kidney gill Intestines|collection date:2022|geo loc name:not applicable|health state:health|treatment:IP TNP KLH|BioSampleModel:Model organism or animal,,,,,,,,,Rep Seq of zebrafish AB IgZ2 at 28 days post the TNP KLH via IP injection: adult kidney fish3,zebrafish AB Kidney IP TNPKLH IgZ2 Fish3,zebrafish AB Kidney IP TNPKLH IgZ2 Fish3,A method was designed for constructing a AB strain zebrafish B cell receptor BCR library based on the SMARTer Human BCR IgG IgM HKL Profiling Kit. Fish3 kidneys were harvested 28 days post IP injected TNP KLH to construct an IgZ2 library.,,,AMPLICON,TRANSCRIPTOMIC,Oligo-dT,PAIRED,ILLUMINA,Illumina MiSeq,,SRP468057,,,IPTNP_28d_AB_Ki_Z2_Fish3_clean_R1.fastq.gz IPTNP_28d_AB_Ki_Z2_Fish3_clean_R2.fastq.gz,fastq fastq,130978800.0,218298.0,IPTNP 28d AB Ki Z2 Fish3 clean R1.fastq.gz,0:300 1:300,A:36642819;C:29649925;G:28560355;T:36125688;N:13,300,300,,,36642819,29649925,28560355,36125688,13,SRX22206233,SRS19261598,SRA1738863,Sun Yat-sen University|School of Life Sciences,Sun Yat-sen University,2,0.00233,0.44747,4e-05,0.05829,0.99933,0.99939,0.07443,0.00038,300,300,T,B,mate1 technical by mapping diff,illumina,miseq,full_length,poly_a,smarter,bulk,unknown,unknown,,China,2023-10-25,Adult,Adult,Multi-tissue,Multi-system
28523,SRR26502445,SRX22206232,SRS19261598,SRP468057,PRJNA1027976,Danio rerio BCR rep seq Raw sequence reads,PRJNA1027976,Other,A library of B cell receptors including IgM and IgZ2 was constructed using the SMARTer Human BCR Profiling Kit to understand its expression in the AB strain of zebrafish.,,,AB strain zebrafish was used to collect a library of IgM and IgZ2 at 28 days post the TNP KLH via IP injection.,Zebrafish AB IP TNP KLH 28d,IPTNP 28d AB,,strain:AB|dev stage:adult|sex:not determined|tissue:kidney gill Intestines|collection date:2022|geo loc name:not applicable|health state:health|treatment:IP TNP KLH|BioSampleModel:Model organism or animal,,,,,,,,,Rep Seq of zebrafish AB IgM at 28 days post the TNP KLH via IP injection: adult kidney fish3,zebrafish AB Kidney IP TNPKLH IgM Fish3,zebrafish AB Kidney IP TNPKLH IgM Fish3,A method was designed for constructing a AB strain zebrafish B cell receptor BCR library based on the SMARTer Human BCR IgG IgM HKL Profiling Kit. Fish3 kidneys were harvested 28 days post IP injected TNP KLH to construct an IgM library.,,,AMPLICON,TRANSCRIPTOMIC,Oligo-dT,PAIRED,ILLUMINA,Illumina MiSeq,,SRP468057,,,IPTNP_28d_AB_Ki_M_Fish3_clean_R1.fastq.gz IPTNP_28d_AB_Ki_M_Fish3_clean_R2.fastq.gz,fastq fastq,771168000.0,1285280.0,IPTNP 28d AB Ki M Fish3 clean R1.fastq.gz,0:300 1:300,A:208307845;C:178771404;G:179327317;T:204761363;N:71,300,300,,,208307845,178771404,179327317,204761363,71,SRX22206232,SRS19261598,SRA1738863,Sun Yat-sen University|School of Life Sciences,Sun Yat-sen University,2,0.10754,0.46893,1e-05,0.06264,0.99993,0.99985,0.00015,7e-05,300,300,T,B,mate1 technical by mapping diff,illumina,miseq,full_length,poly_a,smarter,bulk,unknown,unknown,,China,2023-10-25,Adult,Adult,Multi-tissue,Multi-system
28524,SRR26502448,SRX22206229,SRS19261598,SRP468057,PRJNA1027976,Danio rerio BCR rep seq Raw sequence reads,PRJNA1027976,Other,A library of B cell receptors including IgM and IgZ2 was constructed using the SMARTer Human BCR Profiling Kit to understand its expression in the AB strain of zebrafish.,,,AB strain zebrafish was used to collect a library of IgM and IgZ2 at 28 days post the TNP KLH via IP injection.,Zebrafish AB IP TNP KLH 28d,IPTNP 28d AB,,strain:AB|dev stage:adult|sex:not determined|tissue:kidney gill Intestines|collection date:2022|geo loc name:not applicable|health state:health|treatment:IP TNP KLH|BioSampleModel:Model organism or animal,,,,,,,,,Rep Seq of zebrafish AB IgZ2 at 28 days post the TNP KLH via IP injection: adult kidney fish1,zebrafish AB Kidney IP TNPKLH IgZ2 Fish1,zebrafish AB Kidney IP TNPKLH IgZ2 Fish1,A method was designed for constructing a AB strain zebrafish B cell receptor BCR library based on the SMARTer Human BCR IgG IgM HKL Profiling Kit. Fish1 kidneys were harvested 28 days post IP injected TNP KLH to construct an IgZ2 library.,,,AMPLICON,TRANSCRIPTOMIC,Oligo-dT,PAIRED,ILLUMINA,Illumina MiSeq,,SRP468057,,,IPTNP_28d_AB_Ki_Z2_Fish1_clean_R1.fastq.gz IPTNP_28d_AB_Ki_Z2_Fish1_clean_R2.fastq.gz,fastq fastq,542712000.0,904520.0,IPTNP 28d AB Ki Z2 Fish1 clean R1.fastq.gz,0:300 1:300,A:146626751;C:121353093;G:120763062;T:153968769;N:325,300,300,,,146626751,121353093,120763062,153968769,325,SRX22206229,SRS19261598,SRA1738863,Sun Yat-sen University|School of Life Sciences,Sun Yat-sen University,2,0.00068,0.42171,0.0,0.03977,0.99991,0.99987,0.0196,6e-05,300,300,T,B,mate1 technical by mapping diff,illumina,miseq,full_length,poly_a,smarter,bulk,unknown,unknown,,China,2023-10-25,Adult,Adult,Multi-tissue,Multi-system
28525,SRR26502449,SRX22206228,SRS19261598,SRP468057,PRJNA1027976,Danio rerio BCR rep seq Raw sequence reads,PRJNA1027976,Other,A library of B cell receptors including IgM and IgZ2 was constructed using the SMARTer Human BCR Profiling Kit to understand its expression in the AB strain of zebrafish.,,,AB strain zebrafish was used to collect a library of IgM and IgZ2 at 28 days post the TNP KLH via IP injection.,Zebrafish AB IP TNP KLH 28d,IPTNP 28d AB,,strain:AB|dev stage:adult|sex:not determined|tissue:kidney gill Intestines|collection date:2022|geo loc name:not applicable|health state:health|treatment:IP TNP KLH|BioSampleModel:Model organism or animal,,,,,,,,,Rep Seq of zebrafish AB IgM at 28 days post the TNP KLH via IP injection: adult kidney fish1,zebrafish AB Kidney IP TNPKLH IgM Fish1,zebrafish AB Kidney IP TNPKLH IgM Fish1,A method was designed for constructing a AB strain zebrafish B cell receptor BCR library based on the SMARTer Human BCR IgG IgM HKL Profiling Kit. Fish1 kidneys were harvested 28 days post IP injected TNP KLH to construct an IgM library.,,,AMPLICON,TRANSCRIPTOMIC,Oligo-dT,PAIRED,ILLUMINA,Illumina MiSeq,,SRP468057,,,IPTNP_28d_AB_Ki_M_Fish1_clean_R1.fastq.gz IPTNP_28d_AB_Ki_M_Fish1_clean_R2.fastq.gz,fastq fastq,1346198400.0,2243664.0,IPTNP 28d AB Ki M Fish1 clean R1.fastq.gz,0:300 1:300,A:363410047;C:305388036;G:321604982;T:355794421;N:914,300,300,,,363410047,305388036,321604982,355794421,914,SRX22206228,SRS19261598,SRA1738863,Sun Yat-sen University|School of Life Sciences,Sun Yat-sen University,2,0.12792,0.47382,2e-05,0.04534,0.99991,0.99981,0.00019,8e-05,300,300,B,B,mate1-mate2 similar by mapping diff,illumina,miseq,full_length,poly_a,smarter,bulk,unknown,unknown,,China,2023-10-25,Adult,Adult,Multi-tissue,Multi-system
28526,SRR26502105,SRX22205912,SRS19261295,SRP468057,PRJNA1027976,Danio rerio BCR rep seq Raw sequence reads,PRJNA1027976,Other,A library of B cell receptors including IgM and IgZ2 was constructed using the SMARTer Human BCR Profiling Kit to understand its expression in the AB strain of zebrafish.,,,AB strain zebrafish was used to collect a library of IgM and IgZ2 at 28 days post the Vibrio anguillarum via IP injection.,Zebrafish AB IP Va 28d,IPVa 28d AB,,strain:AB|dev stage:adult|sex:not determined|tissue:kidney gill Intestines|collection date:2022|geo loc name:not applicable|health state:health|treatment:IP Vibrio anguillarum|BioSampleModel:Model organism or animal,,,,,,,,,Rep Seq of zebrafish AB IgZ2 at 28 days post the Vibrio anguillarum via IP injection: adult kidney fish2,zebrafish AB Kidney IP Va IgZ2 Fish2,zebrafish AB Kidney IP Va IgZ2 Fish2,A method was designed for constructing a AB strain zebrafish B cell receptor BCR library based on the SMARTer Human BCR IgG IgM HKL Profiling Kit. Fish2 kidneys were harvested 28 days post IP injected Vibrio anguillarum to construct an IgZ2 library.,,,AMPLICON,TRANSCRIPTOMIC,Oligo-dT,PAIRED,ILLUMINA,Illumina MiSeq,,SRP468057,,,IPVa_28d_AB_Ki_Z2_Fish2_clean_R1.fastq.gz IPVa_28d_AB_Ki_Z2_Fish2_clean_R2.fastq.gz,fastq fastq,148917000.0,248195.0,IPVa 28d AB Ki Z2 Fish2 clean R1.fastq.gz,0:300 1:300,A:40902871;C:33748474;G:32788902;T:41456104;N:20649,300,300,,,40902871,33748474,32788902,41456104,20649,SRX22205912,SRS19261295,SRA1738828,Sun Yat-sen University|School of Life Sciences,Sun Yat-sen University,2,0.00127,0.21671,4e-05,0.02384,0.99939,0.99953,0.14285,0.00065,300,300,T,B,mate1 technical by mapping diff,illumina,miseq,full_length,poly_a,smarter,bulk,unknown,unknown,,China,2023-10-25,Adult,Adult,Multi-tissue,Multi-system
28527,SRR26502106,SRX22205911,SRS19261295,SRP468057,PRJNA1027976,Danio rerio BCR rep seq Raw sequence reads,PRJNA1027976,Other,A library of B cell receptors including IgM and IgZ2 was constructed using the SMARTer Human BCR Profiling Kit to understand its expression in the AB strain of zebrafish.,,,AB strain zebrafish was used to collect a library of IgM and IgZ2 at 28 days post the Vibrio anguillarum via IP injection.,Zebrafish AB IP Va 28d,IPVa 28d AB,,strain:AB|dev stage:adult|sex:not determined|tissue:kidney gill Intestines|collection date:2022|geo loc name:not applicable|health state:health|treatment:IP Vibrio anguillarum|BioSampleModel:Model organism or animal,,,,,,,,,Rep Seq of zebrafish AB IgM at 28 days post the Vibrio anguillarum via IP injection: adult kidney fish2,zebrafish AB Kidney IP Va IgM Fish2,zebrafish AB Kidney IP Va IgM Fish2,A method was designed for constructing a AB strain zebrafish B cell receptor BCR library based on the SMARTer Human BCR IgG IgM HKL Profiling Kit. Fish2 kidneys were harvested 28 days post IP injected Vibrio anguillarum to construct an IgM library.,,,AMPLICON,TRANSCRIPTOMIC,Oligo-dT,PAIRED,ILLUMINA,Illumina MiSeq,,SRP468057,,,IPVa_28d_AB_Ki_M_Fish2_clean_R1.fastq.gz IPVa_28d_AB_Ki_M_Fish2_clean_R2.fastq.gz,fastq fastq,1400700000.0,2334500.0,IPVa 28d AB Ki M Fish2 clean R1.fastq.gz,0:300 1:300,A:382658780;C:319810107;G:330740047;T:367285987;N:205079,300,300,,,382658780,319810107,330740047,367285987,205079,SRX22205911,SRS19261295,SRA1738828,Sun Yat-sen University|School of Life Sciences,Sun Yat-sen University,2,0.12814,0.36107,0.0,0.0523,0.99997,0.99985,0.0,0.00014,300,300,B,B,mate1-mate2 similar by mapping diff,illumina,miseq,full_length,poly_a,smarter,bulk,unknown,unknown,,China,2023-10-25,Adult,Adult,Multi-tissue,Multi-system
28528,SRR26502115,SRX22205902,SRS19261295,SRP468057,PRJNA1027976,Danio rerio BCR rep seq Raw sequence reads,PRJNA1027976,Other,A library of B cell receptors including IgM and IgZ2 was constructed using the SMARTer Human BCR Profiling Kit to understand its expression in the AB strain of zebrafish.,,,AB strain zebrafish was used to collect a library of IgM and IgZ2 at 28 days post the Vibrio anguillarum via IP injection.,Zebrafish AB IP Va 28d,IPVa 28d AB,,strain:AB|dev stage:adult|sex:not determined|tissue:kidney gill Intestines|collection date:2022|geo loc name:not applicable|health state:health|treatment:IP Vibrio anguillarum|BioSampleModel:Model organism or animal,,,,,,,,,Rep Seq of zebrafish AB IgZ2 at 28 days post the Vibrio anguillarum via IP injection: adult kidney fish1,zebrafish AB Kidney IP Va IgZ2 Fish1,zebrafish AB Kidney IP Va IgZ2 Fish1,A method was designed for constructing a AB strain zebrafish B cell receptor BCR library based on the SMARTer Human BCR IgG IgM HKL Profiling Kit. Fish1 kidneys were harvested 28 days post IP injected Vibrio anguillarum to construct an IgZ2 library.,,,AMPLICON,TRANSCRIPTOMIC,Oligo-dT,PAIRED,ILLUMINA,Illumina MiSeq,,SRP468057,,,IPVa_28d_AB_Ki_Z2_Fish1_clean_R1.fastq.gz IPVa_28d_AB_Ki_Z2_Fish1_clean_R2.fastq.gz,fastq fastq,96198600.0,160331.0,IPVa 28d AB Ki Z2 Fish1 clean R1.fastq.gz,0:300 1:300,A:26939421;C:21370857;G:21135801;T:26737674;N:14847,300,300,,,26939421,21370857,21135801,26737674,14847,SRX22205902,SRS19261295,SRA1738828,Sun Yat-sen University|School of Life Sciences,Sun Yat-sen University,2,0.00209,0.50064,5e-05,0.05156,0.99955,0.99969,0.06435,0.00015,300,300,T,B,mate1 technical by mapping diff,illumina,miseq,full_length,poly_a,smarter,bulk,unknown,unknown,,China,2023-10-25,Adult,Adult,Multi-tissue,Multi-system
28529,SRR26502116,SRX22205901,SRS19261295,SRP468057,PRJNA1027976,Danio rerio BCR rep seq Raw sequence reads,PRJNA1027976,Other,A library of B cell receptors including IgM and IgZ2 was constructed using the SMARTer Human BCR Profiling Kit to understand its expression in the AB strain of zebrafish.,,,AB strain zebrafish was used to collect a library of IgM and IgZ2 at 28 days post the Vibrio anguillarum via IP injection.,Zebrafish AB IP Va 28d,IPVa 28d AB,,strain:AB|dev stage:adult|sex:not determined|tissue:kidney gill Intestines|collection date:2022|geo loc name:not applicable|health state:health|treatment:IP Vibrio anguillarum|BioSampleModel:Model organism or animal,,,,,,,,,Rep Seq of zebrafish AB IgM at 28 days post the Vibrio anguillarum via IP injection: adult kidney fish1,zebrafish AB Kidney IP Va IgM Fish1,zebrafish AB Kidney IP Va IgM Fish1,A method was designed for constructing a AB strain zebrafish B cell receptor BCR library based on the SMARTer Human BCR IgG IgM HKL Profiling Kit. Fish1 kidneys were harvested 28 days post IP injected Vibrio anguillarum to construct an IgM library.,,,AMPLICON,TRANSCRIPTOMIC,Oligo-dT,PAIRED,ILLUMINA,Illumina MiSeq,,SRP468057,,,IPVa_28d_AB_Ki_M_Fish1_clean_R1.fastq.gz IPVa_28d_AB_Ki_M_Fish1_clean_R2.fastq.gz,fastq fastq,1208007000.0,2013345.0,IPVa 28d AB Ki M Fish1 clean R1.fastq.gz,0:300 1:300,A:333262499;C:274287635;G:285027652;T:315252859;N:176355,300,300,,,333262499,274287635,285027652,315252859,176355,SRX22205901,SRS19261295,SRA1738828,Sun Yat-sen University|School of Life Sciences,Sun Yat-sen University,2,0.11556,0.31221,0.0,0.04066,0.99993,0.99985,0.00017,0.00028,300,300,B,B,mate1-mate2 similar by mapping diff,illumina,miseq,full_length,poly_a,smarter,bulk,unknown,unknown,,China,2023-10-25,Adult,Adult,Multi-tissue,Multi-system
28530,SRR26488229,SRX22192101,SRS19248767,SRP468057,PRJNA1027976,Danio rerio BCR rep seq Raw sequence reads,PRJNA1027976,Other,A library of B cell receptors including IgM and IgZ2 was constructed using the SMARTer Human BCR Profiling Kit to understand its expression in the AB strain of zebrafish.,,,Kidney tissue from AB strain zebrafish was used to collect a library of IgM and IgZ2 without xxx.,Zebrafish AB Kidney Unimmunization,UI AB,,strain:AB|dev stage:adult|sex:not determined|tissue:kidney gill Intestines|collection date:2022|geo loc name:not applicable|health state:health|treatment:Unimmunization|BioSampleModel:Model organism or animal,,,,,,,,,Rep Seq of zebrafish AB IgZ2 without xxx: adult kidney fish4,zebrafish AB Kidney Unimmunization IgZ2 Fish4,zebrafish AB Kidney Unimmunization IgZ2 Fish4,A method was designed for constructing a AB strain zebrafish B cell receptor BCR library based on the SMARTer Human BCR IgG IgM HKL Profiling Kit. In the 11 nave individuals without xxx a single AB zebrafish kidney was utilized to construct a library of fish4 IgZ2.,,,AMPLICON,TRANSCRIPTOMIC,Oligo-dT,PAIRED,ILLUMINA,Illumina MiSeq,,SRP468057,,,UI_AB_Ki_Z2_Fish4_clean_R1.fastq.gz UI_AB_Ki_Z2_Fish4_clean_R2.fastq.gz,fastq fastq,452866800.0,754778.0,UI AB Ki Z2 Fish4 clean R1.fastq.gz,0:300 1:300,A:119823464;C:102645888;G:102371143;T:127641629;N:384676,300,300,,,119823464,102645888,102371143,127641629,384676,SRX22192101,SRS19248767,SRA1738037,Sun Yat-sen University|School of Life Sciences,Sun Yat-sen University,2,0.00081,0.39173,0.0,0.16017,0.99981,0.99979,0.04273,0.00056,300,300,T,B,mate1 technical by mapping diff,illumina,miseq,full_length,poly_a,smarter,bulk,unknown,unknown,,China,2023-10-24,Adult,Adult,Multi-tissue,Multi-system
28531,SRR26488230,SRX22192100,SRS19248767,SRP468057,PRJNA1027976,Danio rerio BCR rep seq Raw sequence reads,PRJNA1027976,Other,A library of B cell receptors including IgM and IgZ2 was constructed using the SMARTer Human BCR Profiling Kit to understand its expression in the AB strain of zebrafish.,,,Kidney tissue from AB strain zebrafish was used to collect a library of IgM and IgZ2 without xxx.,Zebrafish AB Kidney Unimmunization,UI AB,,strain:AB|dev stage:adult|sex:not determined|tissue:kidney gill Intestines|collection date:2022|geo loc name:not applicable|health state:health|treatment:Unimmunization|BioSampleModel:Model organism or animal,,,,,,,,,Rep Seq of zebrafish AB IgM without xxx: adult kidney fish4,zebrafish AB Kidney Unimmunization IgM Fish4,zebrafish AB Kidney Unimmunization IgM Fish4,A method was designed for constructing a AB strain zebrafish B cell receptor BCR library based on the SMARTer Human BCR IgG IgM HKL Profiling Kit. In the 11 nave individuals without xxx a single AB zebrafish kidney was utilized to construct a library of fish4 IgM.,,,AMPLICON,TRANSCRIPTOMIC,Oligo-dT,PAIRED,ILLUMINA,Illumina MiSeq,,SRP468057,,,UI_AB_Ki_M_Fish4_clean_R2.fastq.gz UI_AB_Ki_M_Fish4_clean_R1.fastq.gz,fastq fastq,1175273400.0,1958789.0,UI AB Ki M Fish4 clean R1.fastq.gz,0:300 1:300,A:320768072;C:266946605;G:278763949;T:307641532;N:1153242,300,300,,,320768072,266946605,278763949,307641532,1153242,SRX22192100,SRS19248767,SRA1738037,Sun Yat-sen University|School of Life Sciences,Sun Yat-sen University,2,0.36646,0.48405,0.0,0.0978,0.99993,0.99981,3e-05,7e-05,300,300,B,B,biological fallback assumption,illumina,miseq,full_length,poly_a,smarter,bulk,unknown,unknown,,China,2023-10-24,Adult,Adult,Multi-tissue,Multi-system
28532,SRR26488233,SRX22192097,SRS19248767,SRP468057,PRJNA1027976,Danio rerio BCR rep seq Raw sequence reads,PRJNA1027976,Other,A library of B cell receptors including IgM and IgZ2 was constructed using the SMARTer Human BCR Profiling Kit to understand its expression in the AB strain of zebrafish.,,,Kidney tissue from AB strain zebrafish was used to collect a library of IgM and IgZ2 without xxx.,Zebrafish AB Kidney Unimmunization,UI AB,,strain:AB|dev stage:adult|sex:not determined|tissue:kidney gill Intestines|collection date:2022|geo loc name:not applicable|health state:health|treatment:Unimmunization|BioSampleModel:Model organism or animal,,,,,,,,,Rep Seq of zebrafish AB IgZ2 without xxx: adult kidney fish2,zebrafish AB Kidney Unimmunization IgZ2 Fish2,zebrafish AB Kidney Unimmunization IgZ2 Fish2,A method was designed for constructing a AB strain zebrafish B cell receptor BCR library based on the SMARTer Human BCR IgG IgM HKL Profiling Kit. In the 11 nave individuals without xxx a single AB zebrafish kidney was utilized to construct a library of fish2 IgZ2.,,,AMPLICON,TRANSCRIPTOMIC,Oligo-dT,PAIRED,ILLUMINA,Illumina MiSeq,,SRP468057,,,UI_AB_Ki_Z2_Fish2_clean_R2.fastq.gz UI_AB_Ki_Z2_Fish2_clean_R1.fastq.gz,fastq fastq,180337528.0,299564.0,UI AB Ki Z2 Fish2 clean R1.fastq.gz,0:301 1:301,A:50544268;C:41015792;G:40132471;T:48636308;N:8689,301,301,,,50544268,41015792,40132471,48636308,8689,SRX22192097,SRS19248767,SRA1738037,Sun Yat-sen University|School of Life Sciences,Sun Yat-sen University,2,0.00202,0.27435,0.00016,0.05953,0.99736,0.99866,0.41224,0.00434,301,301,T,B,mate1 technical by mapping diff,illumina,miseq,full_length,poly_a,smarter,bulk,unknown,unknown,,China,2023-10-24,Adult,Adult,Multi-tissue,Multi-system
28533,SRR26488236,SRX22192094,SRS19248767,SRP468057,PRJNA1027976,Danio rerio BCR rep seq Raw sequence reads,PRJNA1027976,Other,A library of B cell receptors including IgM and IgZ2 was constructed using the SMARTer Human BCR Profiling Kit to understand its expression in the AB strain of zebrafish.,,,Kidney tissue from AB strain zebrafish was used to collect a library of IgM and IgZ2 without xxx.,Zebrafish AB Kidney Unimmunization,UI AB,,strain:AB|dev stage:adult|sex:not determined|tissue:kidney gill Intestines|collection date:2022|geo loc name:not applicable|health state:health|treatment:Unimmunization|BioSampleModel:Model organism or animal,,,,,,,,,Rep Seq of zebrafish AB IgM without xxx: adult kidney fish2,zebrafish AB Kidney Unimmunization IgM Fish2,zebrafish AB Kidney Unimmunization IgM Fish2,A method was designed for constructing a AB strain zebrafish B cell receptor BCR library based on the SMARTer Human BCR IgG IgM HKL Profiling Kit. In the 11 nave individuals without xxx a single AB zebrafish kidney was utilized to construct a library of fish2 IgM.,,,AMPLICON,TRANSCRIPTOMIC,Oligo-dT,PAIRED,ILLUMINA,Illumina MiSeq,,SRP468057,,,UI_AB_Ki_M_Fish2_clean_R1.fastq.gz UI_AB_Ki_M_Fish2_clean_R2.fastq.gz,fastq fastq,235187554.0,390677.0,UI AB Ki M Fish2 clean R1.fastq.gz,0:301 1:301,A:63276642;C:54233985;G:55195713;T:62481210;N:4,301,301,,,63276642,54233985,55195713,62481210,4,SRX22192094,SRS19248767,SRA1738037,Sun Yat-sen University|School of Life Sciences,Sun Yat-sen University,2,0.12903,0.42746,0.0,0.0323,0.99995,0.99987,0.0,9e-05,301,301,B,B,mate1-mate2 similar by mapping diff,illumina,miseq,full_length,poly_a,smarter,bulk,unknown,unknown,,China,2023-10-24,Adult,Adult,Multi-tissue,Multi-system
28534,SRR26488237,SRX22192093,SRS19248767,SRP468057,PRJNA1027976,Danio rerio BCR rep seq Raw sequence reads,PRJNA1027976,Other,A library of B cell receptors including IgM and IgZ2 was constructed using the SMARTer Human BCR Profiling Kit to understand its expression in the AB strain of zebrafish.,,,Kidney tissue from AB strain zebrafish was used to collect a library of IgM and IgZ2 without xxx.,Zebrafish AB Kidney Unimmunization,UI AB,,strain:AB|dev stage:adult|sex:not determined|tissue:kidney gill Intestines|collection date:2022|geo loc name:not applicable|health state:health|treatment:Unimmunization|BioSampleModel:Model organism or animal,,,,,,,,,Rep Seq of zebrafish AB IgZ2 without xxx: adult kidney fish10,zebrafish AB Kidney Unimmunization IgZ2 Fish10,zebrafish AB Kidney Unimmunization IgZ2 Fish10,A method was designed for constructing a AB strain zebrafish B cell receptor BCR library based on the SMARTer Human BCR IgG IgM HKL Profiling Kit. In the 11 nave individuals without xxx a single AB zebrafish kidney was utilized to construct a library of fish10 IgZ2.,,,AMPLICON,TRANSCRIPTOMIC,Oligo-dT,PAIRED,ILLUMINA,Illumina MiSeq,,SRP468057,,,UI_AB_Ki_Z2_Fish10_clean_R1.fastq.gz UI_AB_Ki_Z2_Fish10_clean_R2.fastq.gz,fastq fastq,187774200.0,312957.0,UI AB Ki Z2 Fish10 clean R1.fastq.gz,0:300 1:300,A:51941827;C:41824457;G:42259702;T:51589508;N:158706,300,300,,,51941827,41824457,42259702,51589508,158706,SRX22192093,SRS19248767,SRA1738037,Sun Yat-sen University|School of Life Sciences,Sun Yat-sen University,2,0.00197,0.48348,4e-05,0.02602,0.99981,0.99985,0.02049,4e-05,300,300,T,B,mate1 technical by mapping diff,illumina,miseq,full_length,poly_a,smarter,bulk,unknown,unknown,,China,2023-10-24,Adult,Adult,Multi-tissue,Multi-system
28535,SRR26488238,SRX22192092,SRS19248767,SRP468057,PRJNA1027976,Danio rerio BCR rep seq Raw sequence reads,PRJNA1027976,Other,A library of B cell receptors including IgM and IgZ2 was constructed using the SMARTer Human BCR Profiling Kit to understand its expression in the AB strain of zebrafish.,,,Kidney tissue from AB strain zebrafish was used to collect a library of IgM and IgZ2 without xxx.,Zebrafish AB Kidney Unimmunization,UI AB,,strain:AB|dev stage:adult|sex:not determined|tissue:kidney gill Intestines|collection date:2022|geo loc name:not applicable|health state:health|treatment:Unimmunization|BioSampleModel:Model organism or animal,,,,,,,,,Rep Seq of zebrafish AB IgM without xxx: adult kidney fish10,zebrafish AB Kidney Unimmunization IgM Fish10,zebrafish AB Kidney Unimmunization IgM Fish10,A method was designed for constructing a AB strain zebrafish B cell receptor BCR library based on the SMARTer Human BCR IgG IgM HKL Profiling Kit. In the 11 nave individuals without xxx a single AB zebrafish kidney was utilized to construct a library of fish10 IgM.,,,AMPLICON,TRANSCRIPTOMIC,Oligo-dT,PAIRED,ILLUMINA,Illumina MiSeq,,SRP468057,,,UI_AB_Ki_M_Fish10_clean_R1.fastq.gz UI_AB_Ki_M_Fish10_clean_R2.fastq.gz,fastq fastq,1348929600.0,2248216.0,UI AB Ki M Fish10 clean R1.fastq.gz,0:300 1:300,A:372533980;C:296280069;G:315957178;T:362830159;N:1328214,300,300,,,372533980,296280069,315957178,362830159,1328214,SRX22192092,SRS19248767,SRA1738037,Sun Yat-sen University|School of Life Sciences,Sun Yat-sen University,2,0.04106,0.65457,0.0,0.01839,0.99995,0.99987,0.00017,2e-05,300,300,T,B,mate1 technical by mapping diff,illumina,miseq,full_length,poly_a,smarter,bulk,unknown,unknown,,China,2023-10-24,Adult,Adult,Multi-tissue,Multi-system
28536,SRR26488247,SRX22192083,SRS19248767,SRP468057,PRJNA1027976,Danio rerio BCR rep seq Raw sequence reads,PRJNA1027976,Other,A library of B cell receptors including IgM and IgZ2 was constructed using the SMARTer Human BCR Profiling Kit to understand its expression in the AB strain of zebrafish.,,,Kidney tissue from AB strain zebrafish was used to collect a library of IgM and IgZ2 without xxx.,Zebrafish AB Kidney Unimmunization,UI AB,,strain:AB|dev stage:adult|sex:not determined|tissue:kidney gill Intestines|collection date:2022|geo loc name:not applicable|health state:health|treatment:Unimmunization|BioSampleModel:Model organism or animal,,,,,,,,,Rep Seq of zebrafish AB IgZ2 without xxx: adult kidney fish1,zebrafish AB Kidney Unimmunization IgZ2 Fish1,zebrafish AB Kidney Unimmunization IgZ2 Fish1,A method was designed for constructing a AB strain zebrafish B cell receptor BCR library based on the SMARTer Human BCR IgG IgM HKL Profiling Kit. In the 11 nave individuals without xxx a single AB zebrafish kidney was utilized to construct a library of fish1 IgZ2.,,,AMPLICON,TRANSCRIPTOMIC,Oligo-dT,PAIRED,ILLUMINA,Illumina MiSeq,,SRP468057,,,UI_AB_Ki_Z2_Fish1_clean_R1.fastq.gz UI_AB_Ki_Z2_Fish1_clean_R2.fastq.gz,fastq fastq,74076702.0,123051.0,UI AB Ki Z2 Fish1 clean R1.fastq.gz,0:301 1:301,A:21163846;C:16505697;G:16394698;T:20009432;N:3029,301,301,,,21163846,16505697,16394698,20009432,3029,SRX22192083,SRS19248767,SRA1738037,Sun Yat-sen University|School of Life Sciences,Sun Yat-sen University,2,0.00345,0.35918,0.00037,0.01229,0.99797,0.99888,0.46913,0.00408,301,301,T,B,mate1 technical by mapping diff,illumina,miseq,full_length,poly_a,smarter,bulk,unknown,unknown,,China,2023-10-24,Adult,Adult,Multi-tissue,Multi-system
28537,SRR26488248,SRX22192082,SRS19248767,SRP468057,PRJNA1027976,Danio rerio BCR rep seq Raw sequence reads,PRJNA1027976,Other,A library of B cell receptors including IgM and IgZ2 was constructed using the SMARTer Human BCR Profiling Kit to understand its expression in the AB strain of zebrafish.,,,Kidney tissue from AB strain zebrafish was used to collect a library of IgM and IgZ2 without xxx.,Zebrafish AB Kidney Unimmunization,UI AB,,strain:AB|dev stage:adult|sex:not determined|tissue:kidney gill Intestines|collection date:2022|geo loc name:not applicable|health state:health|treatment:Unimmunization|BioSampleModel:Model organism or animal,,,,,,,,,Rep Seq of zebrafish AB IgM without xxx: adult kidney fish1,zebrafish AB Kidney Unimmunization IgM Fish1,zebrafish AB Kidney Unimmunization IgM Fish1,A method was designed for constructing a AB strain zebrafish B cell receptor BCR library based on the SMARTer Human BCR IgG IgM HKL Profiling Kit. In the 11 nave individuals without xxx a single AB zebrafish kidney was utilized to construct a library of fish1 IgM.,,,AMPLICON,TRANSCRIPTOMIC,Oligo-dT,PAIRED,ILLUMINA,Illumina MiSeq,,SRP468057,,,UI_AB_Ki_M_Fish1_clean_R1.fastq.gz UI_AB_Ki_M_Fish1_clean_R2.fastq.gz,fastq fastq,237047132.0,393766.0,UI AB Ki M Fish1 clean R1.fastq.gz,0:301 1:301,A:64821499;C:55151969;G:56692025;T:60381634;N:5,301,301,,,64821499,55151969,56692025,60381634,5,SRX22192082,SRS19248767,SRA1738037,Sun Yat-sen University|School of Life Sciences,Sun Yat-sen University,2,0.11965,0.51034,0.0,0.01727,0.99995,0.99987,8e-05,2e-05,301,301,T,B,mate1 technical by mapping diff,illumina,miseq,full_length,poly_a,smarter,bulk,unknown,unknown,,China,2023-10-24,Adult,Adult,Multi-tissue,Multi-system
40376,SRR3166964,SRX1583817,SRS1295580,SRP070056,PRJNA309588,Analysis of the T cell response in Zebrafish,PRJNA309588,Other,Our understanding of T cell receptor TCR repertoire diversity and response tochallenge is still incomplete. For example TCR clones shared by different individuals withminimal alteration to germline gene sequences public clones are detectable in all vertebrates but their significance is unknown. We exploited the experimental advantages offered by thezebrafish to analyze the complete TCR repertoire and its response to self and foreign antigens.We found that cross reactive public TCRs dominate the T cell response endowing the TCRrepertoire with the ability to cope with diverse antigenic challenges. These features of vertebratepublic TCRs provide a mechanism for the rapid generation of protective T cell immunityallowing a short temporal window for the development of more specific private T cell responses.,,,,,TCRA library 28d Calm4,,breed:AB|chain:alpha|index:26|sex:male|time point:28d|tissue:whole fish|age:1y|BioSampleModel:Model organism or animal,,,,,,,,,TCRa sequencing of zebrafish: whole zebrafish: Sample TCRA library 28d Calm4,116 28d Calm4 alpha,116 28d Calm4 alpha,five prime RACE amplification of TCRa transcript,,,AMPLICON,TRANSCRIPTOMIC,RACE,PAIRED,ILLUMINA,Illumina HiSeq 2000,3000Application ReadForward11Application ReadReverse151,SRP070056,,,read1_116_28d_Calm4_alpha.fq.gz read2_116_28d_Calm4_alpha.fq.gz,fastq fastq,12052440600.0,40174802.0,116 28d Calm4 alpha files,0:150 1:150,A:3274476247;C:2324807837;G:3578878507;T:2848354560;N:25923449,150,150,,,3274476247,2324807837,3578878507,2848354560,25923449,SRX1583817,SRS1295580,SRA353254,SRA,Bar-Ilan University,2,0.00096,0.22917,0.00017,0.19822,0.99906,0.99762,0.35172,0.6189,150,150,T,B,mate1 technical by mapping diff,illumina,hiseq_era,unknown,random_priming,unknown,bulk,unknown,unknown,,Israel,2017-02-12,Undetermined,Undetermined,Whole Organism,All anatomical structures
40377,SRR3166963,SRX1583816,SRS1295581,SRP070056,PRJNA309588,Analysis of the T cell response in Zebrafish,PRJNA309588,Other,Our understanding of T cell receptor TCR repertoire diversity and response tochallenge is still incomplete. For example TCR clones shared by different individuals withminimal alteration to germline gene sequences public clones are detectable in all vertebrates but their significance is unknown. We exploited the experimental advantages offered by thezebrafish to analyze the complete TCR repertoire and its response to self and foreign antigens.We found that cross reactive public TCRs dominate the T cell response endowing the TCRrepertoire with the ability to cope with diverse antigenic challenges. These features of vertebratepublic TCRs provide a mechanism for the rapid generation of protective T cell immunityallowing a short temporal window for the development of more specific private T cell responses.,,,,,TCRA library 28d Calm2,,breed:AB|chain:alpha|index:25|sex:male|time point:28d|tissue:whole fish|age:1y|BioSampleModel:Model organism or animal,,,,,,,,,TCRa sequencing of zebrafish: whole zebrafish: Sample TCRA library 28d Calm2,114 28d Calm2 alpha,114 28d Calm2 alpha,five prime RACE amplification of TCRa transcript,,,AMPLICON,TRANSCRIPTOMIC,RACE,PAIRED,ILLUMINA,Illumina HiSeq 2000,3000Application ReadForward11Application ReadReverse151,SRP070056,,,read1_114_28d_Calm2_alpha.fq.gz read2_114_28d_Calm2_alpha.fq.gz,fastq fastq,4957122900.0,16523743.0,114 28d Calm2 alpha files,0:150 1:150,A:1398510544;C:988027281;G:1244120221;T:1316350204;N:10114650,150,150,,,1398510544,988027281,1244120221,1316350204,10114650,SRX1583816,SRS1295581,SRA353254,SRA,Bar-Ilan University,2,0.00167,0.03332,0.00146,0.028,0.99967,0.99896,0.15789,0.60731,150,150,T,T,mates < 9% mapping rate,illumina,hiseq_era,unknown,random_priming,unknown,bulk,unknown,unknown,,Israel,2017-02-12,Undetermined,Undetermined,Whole Organism,All anatomical structures
40378,SRR3166962,SRX1583815,SRS1295582,SRP070056,PRJNA309588,Analysis of the T cell response in Zebrafish,PRJNA309588,Other,Our understanding of T cell receptor TCR repertoire diversity and response tochallenge is still incomplete. For example TCR clones shared by different individuals withminimal alteration to germline gene sequences public clones are detectable in all vertebrates but their significance is unknown. We exploited the experimental advantages offered by thezebrafish to analyze the complete TCR repertoire and its response to self and foreign antigens.We found that cross reactive public TCRs dominate the T cell response endowing the TCRrepertoire with the ability to cope with diverse antigenic challenges. These features of vertebratepublic TCRs provide a mechanism for the rapid generation of protective T cell immunityallowing a short temporal window for the development of more specific private T cell responses.,,,,,TCRA library 28d KLH6,,breed:AB|chain:alpha|index:21|sex:male|time point:28d|tissue:whole fish|age:1y|BioSampleModel:Model organism or animal,,,,,,,,,TCRa sequencing of zebrafish: whole zebrafish: Sample TCRA library 28d KLH6,110 28d KLH6 alpha,110 28d KLH6 alpha,five prime RACE amplification of TCRa transcript,,,AMPLICON,TRANSCRIPTOMIC,RACE,PAIRED,ILLUMINA,Illumina HiSeq 2000,3000Application ReadForward11Application ReadReverse151,SRP070056,,,read1_110_28d_KLH6_alpha.fq.gz read2_110_28d_KLH6_alpha.fq.gz,fastq fastq,6270530700.0,20901769.0,110 28d KLH6 alpha files,0:150 1:150,A:1802311183;C:1236560108;G:1561615962;T:1659163742;N:10879705,150,150,,,1802311183,1236560108,1561615962,1659163742,10879705,SRX1583815,SRS1295582,SRA353254,SRA,Bar-Ilan University,2,0.00179,0.13512,0.00073,0.11592,0.99967,0.99855,0.21568,0.87835,150,150,T,B,mate1 technical by mapping diff,illumina,hiseq_era,unknown,random_priming,unknown,bulk,unknown,unknown,,Israel,2017-02-12,Undetermined,Undetermined,Whole Organism,All anatomical structures
40379,SRR3166961,SRX1583814,SRS1295583,SRP070056,PRJNA309588,Analysis of the T cell response in Zebrafish,PRJNA309588,Other,Our understanding of T cell receptor TCR repertoire diversity and response tochallenge is still incomplete. For example TCR clones shared by different individuals withminimal alteration to germline gene sequences public clones are detectable in all vertebrates but their significance is unknown. We exploited the experimental advantages offered by thezebrafish to analyze the complete TCR repertoire and its response to self and foreign antigens.We found that cross reactive public TCRs dominate the T cell response endowing the TCRrepertoire with the ability to cope with diverse antigenic challenges. These features of vertebratepublic TCRs provide a mechanism for the rapid generation of protective T cell immunityallowing a short temporal window for the development of more specific private T cell responses.,,,,,TCRA library 28d PHA6,,breed:AB|chain:alpha|index:32|sex:male|time point:28d|tissue:whole fish|age:1y|BioSampleModel:Model organism or animal,,,,,,,,,TCRa sequencing of zebrafish: whole zebrafish: Sample TCRA library 28d PHA6,102 28d PHA6 alpha,102 28d PHA6 alpha,five prime RACE amplification of TCRa transcript,,,AMPLICON,TRANSCRIPTOMIC,RACE,PAIRED,ILLUMINA,Illumina HiSeq 2000,3000Application ReadForward11Application ReadReverse151,SRP070056,,,read1_102_28d_PHA6_alpha.fq.gz read2_102_28d_PHA6_alpha.fq.gz,fastq fastq,10067723700.0,33559079.0,102 28d PHA6 alpha files,0:150 1:150,A:2803515995;C:2027880463;G:2649055724;T:2566963260;N:20308258,150,150,,,2803515995,2027880463,2649055724,2566963260,20308258,SRX1583814,SRS1295583,SRA353254,SRA,Bar-Ilan University,2,0.00158,0.04576,0.00056,0.03839,0.99922,0.99831,0.3246,0.40078,150,150,T,T,mates < 9% mapping rate,illumina,hiseq_era,unknown,random_priming,unknown,bulk,unknown,unknown,,Israel,2016-02-14,Undetermined,Undetermined,Whole Organism,All anatomical structures
40380,SRR3166960,SRX1583813,SRS1295584,SRP070056,PRJNA309588,Analysis of the T cell response in Zebrafish,PRJNA309588,Other,Our understanding of T cell receptor TCR repertoire diversity and response tochallenge is still incomplete. For example TCR clones shared by different individuals withminimal alteration to germline gene sequences public clones are detectable in all vertebrates but their significance is unknown. We exploited the experimental advantages offered by thezebrafish to analyze the complete TCR repertoire and its response to self and foreign antigens.We found that cross reactive public TCRs dominate the T cell response endowing the TCRrepertoire with the ability to cope with diverse antigenic challenges. These features of vertebratepublic TCRs provide a mechanism for the rapid generation of protective T cell immunityallowing a short temporal window for the development of more specific private T cell responses.,,,,,TCRA library 7d KLH2,,breed:AB|chain:alpha|index:34|sex:male|time point:7d|tissue:whole fish|age:1y|BioSampleModel:Model organism or animal,,,,,,,,,TCRa sequencing of zebrafish: whole zebrafish: Sample TCRA library 7d KLH2,16 7d KLH2 alpha,16 7d KLH2 alpha,five prime RACE amplification of TCRa transcript,,,AMPLICON,TRANSCRIPTOMIC,RACE,PAIRED,ILLUMINA,Illumina HiSeq 2000,3000Application ReadForward11Application ReadReverse151,SRP070056,,,read1_16_7d_KLH2_alpha.fq.gz read2_16_7d_KLH2_alpha.fq.gz,fastq fastq,2783317500.0,9277725.0,16 7d KLH2 alpha files,0:150 1:150,A:761370556;C:556705024;G:719835894;T:727504605;N:17901421,150,150,,,761370556,556705024,719835894,727504605,17901421,SRX1583813,SRS1295584,SRA353254,SRA,Bar-Ilan University,2,0.00143,0.13658,0.0008,0.11879,0.99935,0.99876,0.25409,0.87567,150,150,T,B,mate1 technical by mapping diff,illumina,hiseq_era,unknown,random_priming,unknown,bulk,unknown,unknown,,Israel,2016-02-14,Undetermined,Undetermined,Whole Organism,All anatomical structures
40381,SRR3166959,SRX1583812,SRS1295585,SRP070056,PRJNA309588,Analysis of the T cell response in Zebrafish,PRJNA309588,Other,Our understanding of T cell receptor TCR repertoire diversity and response tochallenge is still incomplete. For example TCR clones shared by different individuals withminimal alteration to germline gene sequences public clones are detectable in all vertebrates but their significance is unknown. We exploited the experimental advantages offered by thezebrafish to analyze the complete TCR repertoire and its response to self and foreign antigens.We found that cross reactive public TCRs dominate the T cell response endowing the TCRrepertoire with the ability to cope with diverse antigenic challenges. These features of vertebratepublic TCRs provide a mechanism for the rapid generation of protective T cell immunityallowing a short temporal window for the development of more specific private T cell responses.,,,,,TCRA library 21d KLH6,,breed:AB|chain:alpha|index:24|sex:male|time point:21d|tissue:whole fish|age:1y|BioSampleModel:Model organism or animal,,,,,,,,,TCRa sequencing of zebrafish: whole zebrafish: Sample TCRA library 21d KLH6,78 21d KLH6 alpha,78 21d KLH6 alpha,five prime RACE amplification of TCRa transcript,,,AMPLICON,TRANSCRIPTOMIC,RACE,PAIRED,ILLUMINA,Illumina HiSeq 2000,3000Application ReadForward11Application ReadReverse151,SRP070056,,,read1_78_21d_KLH6_alpha.fq.gz read2_78_21d_KLH6_alpha.fq.gz,fastq fastq,7720614900.0,25735383.0,78 21d KLH6 alpha files,0:150 1:150,A:2163229607;C:1591913203;G:1963558161;T:1998596363;N:3317566,150,150,,,2163229607,1591913203,1963558161,1998596363,3317566,SRX1583812,SRS1295585,SRA353254,SRA,Bar-Ilan University,2,0.00105,0.04913,0.00036,0.04186,0.99937,0.99835,0.14393,0.4819,150,150,T,T,mates < 9% mapping rate,illumina,hiseq_era,unknown,random_priming,unknown,bulk,unknown,unknown,,Israel,2017-02-12,Undetermined,Undetermined,Whole Organism,All anatomical structures
40382,SRR3166958,SRX1583811,SRS1295586,SRP070056,PRJNA309588,Analysis of the T cell response in Zebrafish,PRJNA309588,Other,Our understanding of T cell receptor TCR repertoire diversity and response tochallenge is still incomplete. For example TCR clones shared by different individuals withminimal alteration to germline gene sequences public clones are detectable in all vertebrates but their significance is unknown. We exploited the experimental advantages offered by thezebrafish to analyze the complete TCR repertoire and its response to self and foreign antigens.We found that cross reactive public TCRs dominate the T cell response endowing the TCRrepertoire with the ability to cope with diverse antigenic challenges. These features of vertebratepublic TCRs provide a mechanism for the rapid generation of protective T cell immunityallowing a short temporal window for the development of more specific private T cell responses.,,,,,TCRA library 7d Calm6,,breed:AB|chain:alpha|index:33|sex:male|time point:7d|tissue:whole fish|age:1y|BioSampleModel:Model organism or animal,,,,,,,,,TCRa sequencing of zebrafish: whole zebrafish: Sample TCRA library 7d Calm6,27 7d Calm6 alpha,27 7d Calm6 alpha,five prime RACE amplification of TCRa transcript,,,AMPLICON,TRANSCRIPTOMIC,RACE,PAIRED,ILLUMINA,Illumina HiSeq 2000,3000Application ReadForward11Application ReadReverse151,SRP070056,,,read1_27_7d_Calm6_alpha.fq.gz read2_27_7d_Calm6_alpha.fq.gz,fastq fastq,4337226600.0,14457422.0,27 7d Calm6 alpha files,0:150 1:150,A:1174401516;C:871068073;G:1145864920;T:1118174763;N:27717328,150,150,,,1174401516,871068073,1145864920,1118174763,27717328,SRX1583811,SRS1295586,SRA353254,SRA,Bar-Ilan University,2,0.002,0.032,0.0007,0.02494,0.99924,0.99912,0.38,0.38606,150,150,T,T,mates < 9% mapping rate,illumina,hiseq_era,unknown,random_priming,unknown,bulk,unknown,unknown,,Israel,2016-02-14,Undetermined,Undetermined,Whole Organism,All anatomical structures
40383,SRR3166957,SRX1583810,SRS1295587,SRP070056,PRJNA309588,Analysis of the T cell response in Zebrafish,PRJNA309588,Other,Our understanding of T cell receptor TCR repertoire diversity and response tochallenge is still incomplete. For example TCR clones shared by different individuals withminimal alteration to germline gene sequences public clones are detectable in all vertebrates but their significance is unknown. We exploited the experimental advantages offered by thezebrafish to analyze the complete TCR repertoire and its response to self and foreign antigens.We found that cross reactive public TCRs dominate the T cell response endowing the TCRrepertoire with the ability to cope with diverse antigenic challenges. These features of vertebratepublic TCRs provide a mechanism for the rapid generation of protective T cell immunityallowing a short temporal window for the development of more specific private T cell responses.,,,,,TCRA library 7d PHA7,,breed:AB|chain:alpha|index:36|sex:male|time point:7d|tissue:whole fish|age:1y|BioSampleModel:Model organism or animal,,,,,,,,,TCRa sequencing of zebrafish: whole zebrafish: Sample TCRA library 7d PHA7,14 7d PHA7 alpha,14 7d PHA7 alpha,five prime RACE amplification of TCRa transcript,,,AMPLICON,TRANSCRIPTOMIC,RACE,PAIRED,ILLUMINA,Illumina HiSeq 2000,3000Application ReadForward11Application ReadReverse151,SRP070056,,,read1_14_7d_PHA7_alpha.fq.gz read2_14_7d_PHA7_alpha.fq.gz,fastq fastq,3401366100.0,11337887.0,14 7d PHA7 alpha files,,,,,,,,,,,,SRX1583810,SRS1295587,SRA353254,SRA,Bar-Ilan University,2,0.00357,0.02242,0.00202,0.01952,0.99902,0.99811,0.35016,0.5424,150,150,T,T,mates < 9% mapping rate,illumina,hiseq_era,unknown,random_priming,unknown,bulk,unknown,unknown,,Israel,2017-02-12,Undetermined,Undetermined,Whole Organism,All anatomical structures
40384,SRR3166956,SRX1583809,SRS1295588,SRP070056,PRJNA309588,Analysis of the T cell response in Zebrafish,PRJNA309588,Other,Our understanding of T cell receptor TCR repertoire diversity and response tochallenge is still incomplete. For example TCR clones shared by different individuals withminimal alteration to germline gene sequences public clones are detectable in all vertebrates but their significance is unknown. We exploited the experimental advantages offered by thezebrafish to analyze the complete TCR repertoire and its response to self and foreign antigens.We found that cross reactive public TCRs dominate the T cell response endowing the TCRrepertoire with the ability to cope with diverse antigenic challenges. These features of vertebratepublic TCRs provide a mechanism for the rapid generation of protective T cell immunityallowing a short temporal window for the development of more specific private T cell responses.,,,,,TCRA library 7d PHA3,,breed:AB|chain:alpha|index:35|sex:male|time point:7d|tissue:whole fish|age:1y|BioSampleModel:Model organism or animal,,,,,,,,,TCRa sequencing of zebrafish: whole zebrafish: Sample TCRA library 7d PHA3,10 7d PHA3 alpha,10 7d PHA3 alpha,five prime RACE amplification of TCRa transcript,,,AMPLICON,TRANSCRIPTOMIC,RACE,PAIRED,ILLUMINA,Illumina HiSeq 2000,3000Application ReadForward11Application ReadReverse151,SRP070056,,,read2_10_7d_PHA3_alpha.fq.gz read1_10_7d_PHA3_alpha.fq.gz,fastq fastq,4293459300.0,14311531.0,10 7d PHA3 alpha files,0:150 1:150,A:1208054755;C:855800391;G:1072212534;T:1129932131;N:27459489,150,150,,,1208054755,855800391,1072212534,1129932131,27459489,SRX1583809,SRS1295588,SRA353254,SRA,Bar-Ilan University,2,0.00174,0.05155,0.0009,0.0472,0.99937,0.9989,0.2256,0.60714,150,150,T,T,mates < 9% mapping rate,illumina,hiseq_era,unknown,random_priming,unknown,bulk,unknown,unknown,,Israel,2017-02-12,Undetermined,Undetermined,Whole Organism,All anatomical structures
40385,SRR3166955,SRX1583808,SRS1295589,SRP070056,PRJNA309588,Analysis of the T cell response in Zebrafish,PRJNA309588,Other,Our understanding of T cell receptor TCR repertoire diversity and response tochallenge is still incomplete. For example TCR clones shared by different individuals withminimal alteration to germline gene sequences public clones are detectable in all vertebrates but their significance is unknown. We exploited the experimental advantages offered by thezebrafish to analyze the complete TCR repertoire and its response to self and foreign antigens.We found that cross reactive public TCRs dominate the T cell response endowing the TCRrepertoire with the ability to cope with diverse antigenic challenges. These features of vertebratepublic TCRs provide a mechanism for the rapid generation of protective T cell immunityallowing a short temporal window for the development of more specific private T cell responses.,,,,,TCRB library 28d Calm7,,breed:AB|chain:beta|index:56|sex:male|time point:28d|tissue:whole fish|age:1y|BioSampleModel:Model organism or animal,,,,,,,,,TCRb sequencing of zebrafish: whole zebrafish: Sample TCRB library 28d Calm7,119 28d Calm7 beta,119 28d Calm7 beta,five prime RACE amplification of TCRb transcript,,,AMPLICON,TRANSCRIPTOMIC,RACE,PAIRED,ILLUMINA,Illumina HiSeq 2000,3000Application ReadForward11Application ReadReverse151,SRP070056,,,read1_119_28d_Calm7_beta.fq.gz read2_119_28d_Calm7_beta.fq.gz,fastq fastq,3494941800.0,11649806.0,119 28d Calm7 beta files,0:150 1:150,A:1262121526;C:602497563;G:790544892;T:738346792;N:101431027,150,150,,,1262121526,602497563,790544892,738346792,101431027,SRX1583808,SRS1295589,SRA353254,SRA,Bar-Ilan University,2,3e-05,0.00179,0.0,7e-05,0.99997,0.99831,0.0,0.42009,150,150,T,T,mates < 9% mapping rate,illumina,hiseq_era,unknown,random_priming,unknown,bulk,unknown,unknown,,Israel,2017-02-12,Undetermined,Undetermined,Whole Organism,All anatomical structures
40386,SRR3166954,SRX1583807,SRS1295590,SRP070056,PRJNA309588,Analysis of the T cell response in Zebrafish,PRJNA309588,Other,Our understanding of T cell receptor TCR repertoire diversity and response tochallenge is still incomplete. For example TCR clones shared by different individuals withminimal alteration to germline gene sequences public clones are detectable in all vertebrates but their significance is unknown. We exploited the experimental advantages offered by thezebrafish to analyze the complete TCR repertoire and its response to self and foreign antigens.We found that cross reactive public TCRs dominate the T cell response endowing the TCRrepertoire with the ability to cope with diverse antigenic challenges. These features of vertebratepublic TCRs provide a mechanism for the rapid generation of protective T cell immunityallowing a short temporal window for the development of more specific private T cell responses.,,,,,TCRB library 28d Calm5,,breed:AB|chain:beta|index:55|sex:male|time point:28d|tissue:whole fish|age:1y|BioSampleModel:Model organism or animal,,,,,,,,,TCRb sequencing of zebrafish: whole zebrafish: Sample TCRB library 28d Calm5,117 28d Calm5 beta,117 28d Calm5 beta,five prime RACE amplification of TCRb transcript,,,AMPLICON,TRANSCRIPTOMIC,RACE,PAIRED,ILLUMINA,Illumina HiSeq 2000,3000Application ReadForward11Application ReadReverse151,SRP070056,,,read2_117_28d_Calm5_beta.fq.gz read1_117_28d_Calm5_beta.fq.gz,fastq fastq,2950876200.0,9836254.0,117 28d Calm5 beta files,0:150 1:150,A:1025845698;C:505599350;G:688977765;T:634738210;N:95715177,150,150,,,1025845698,505599350,688977765,634738210,95715177,SRX1583807,SRS1295590,SRA353254,SRA,Bar-Ilan University,2,0.0,0.00023,0.0,0.0,1.0,0.99987,,0.07692,150,150,T,T,mates < 9% mapping rate,illumina,hiseq_era,unknown,random_priming,unknown,bulk,unknown,unknown,,Israel,2016-03-02,Undetermined,Undetermined,Whole Organism,All anatomical structures
40387,SRR3166953,SRX1583806,SRS1295591,SRP070056,PRJNA309588,Analysis of the T cell response in Zebrafish,PRJNA309588,Other,Our understanding of T cell receptor TCR repertoire diversity and response tochallenge is still incomplete. For example TCR clones shared by different individuals withminimal alteration to germline gene sequences public clones are detectable in all vertebrates but their significance is unknown. We exploited the experimental advantages offered by thezebrafish to analyze the complete TCR repertoire and its response to self and foreign antigens.We found that cross reactive public TCRs dominate the T cell response endowing the TCRrepertoire with the ability to cope with diverse antigenic challenges. These features of vertebratepublic TCRs provide a mechanism for the rapid generation of protective T cell immunityallowing a short temporal window for the development of more specific private T cell responses.,,,,,TCRB library 28d Calm3,,breed:AB|chain:beta|index:54|sex:male|time point:28d|tissue:whole fish|age:1y|BioSampleModel:Model organism or animal,,,,,,,,,TCRb sequencing of zebrafish: whole zebrafish: Sample TCRB library 28d Calm3,115 28d Calm3 beta,115 28d Calm3 beta,five prime RACE amplification of TCRb transcript,,,AMPLICON,TRANSCRIPTOMIC,RACE,PAIRED,ILLUMINA,Illumina HiSeq 2000,3000Application ReadForward11Application ReadReverse151,SRP070056,,,read1_115_28d_Calm3_beta.fq.gz read2_115_28d_Calm3_beta.fq.gz,fastq fastq,1913218200.0,6377394.0,115 28d Calm3 beta files,0:150 1:150,A:637646003;C:349779874;G:435732113;T:430619528;N:59440682,150,150,,,637646003,349779874,435732113,430619528,59440682,SRX1583806,SRS1295591,SRA353254,SRA,Bar-Ilan University,2,0.0,0.02438,0.0,0.00184,1.0,0.99908,,0.01511,150,150,T,T,mates < 9% mapping rate,illumina,hiseq_era,unknown,random_priming,unknown,bulk,unknown,unknown,,Israel,2017-02-12,Undetermined,Undetermined,Whole Organism,All anatomical structures
40388,SRR3166952,SRX1583805,SRS1295592,SRP070056,PRJNA309588,Analysis of the T cell response in Zebrafish,PRJNA309588,Other,Our understanding of T cell receptor TCR repertoire diversity and response tochallenge is still incomplete. For example TCR clones shared by different individuals withminimal alteration to germline gene sequences public clones are detectable in all vertebrates but their significance is unknown. We exploited the experimental advantages offered by thezebrafish to analyze the complete TCR repertoire and its response to self and foreign antigens.We found that cross reactive public TCRs dominate the T cell response endowing the TCRrepertoire with the ability to cope with diverse antigenic challenges. These features of vertebratepublic TCRs provide a mechanism for the rapid generation of protective T cell immunityallowing a short temporal window for the development of more specific private T cell responses.,,,,,TCRB library 28d KLH6,,breed:AB|chain:beta|index:27|sex:male|time point:28d|tissue:whole fish|age:1y|BioSampleModel:Model organism or animal,,,,,,,,,TCRb sequencing of zebrafish: whole zebrafish: Sample TCRB library 28d KLH6,110 28d KLH6 beta,110 28d KLH6 beta,five prime RACE amplification of TCRb transcript,,,AMPLICON,TRANSCRIPTOMIC,RACE,PAIRED,ILLUMINA,Illumina HiSeq 2000,3000Application ReadForward11Application ReadReverse151,SRP070056,,,read1_110_28d_KLH6_beta.fq.gz read2_110_28d_KLH6_beta.fq.gz,fastq fastq,2689206600.0,8964022.0,110 28d KLH6 beta files,0:150 1:150,A:807762783;C:503825062;G:585283183;T:703818890;N:88516682,150,150,,,807762783,503825062,585283183,703818890,88516682,SRX1583805,SRS1295592,SRA353254,SRA,Bar-Ilan University,2,0.00014,0.3078,0.0,0.02202,0.99975,0.99095,0.38888,0.10297,150,150,T,B,mate1 technical by mapping diff,illumina,hiseq_era,unknown,random_priming,unknown,bulk,unknown,unknown,,Israel,2017-02-12,Undetermined,Undetermined,Whole Organism,All anatomical structures
40389,SRR3166951,SRX1583804,SRS1295593,SRP070056,PRJNA309588,Analysis of the T cell response in Zebrafish,PRJNA309588,Other,Our understanding of T cell receptor TCR repertoire diversity and response tochallenge is still incomplete. For example TCR clones shared by different individuals withminimal alteration to germline gene sequences public clones are detectable in all vertebrates but their significance is unknown. We exploited the experimental advantages offered by thezebrafish to analyze the complete TCR repertoire and its response to self and foreign antigens.We found that cross reactive public TCRs dominate the T cell response endowing the TCRrepertoire with the ability to cope with diverse antigenic challenges. These features of vertebratepublic TCRs provide a mechanism for the rapid generation of protective T cell immunityallowing a short temporal window for the development of more specific private T cell responses.,,,,,TCRB library 28d KLH2,,breed:AB|chain:beta|index:23|sex:male|time point:28d|tissue:whole fish|age:1y|BioSampleModel:Model organism or animal,,,,,,,,,TCRb sequencing of zebrafish: whole zebrafish: Sample TCRB library 28d KLH2,106 28d KLH2 beta,106 28d KLH2 beta,five prime RACE amplification of TCRb transcript,,,AMPLICON,TRANSCRIPTOMIC,RACE,PAIRED,ILLUMINA,Illumina HiSeq 2000,3000Application ReadForward11Application ReadReverse151,SRP070056,,,read2_106_28d_KLH2_beta.fq.gz read1_106_28d_KLH2_beta.fq.gz,fastq fastq,2795086200.0,9316954.0,106 28d KLH2 beta files,0:150 1:150,A:897420089;C:470460508;G:621809014;T:712999451;N:92397138,150,150,,,897420089,470460508,621809014,712999451,92397138,SRX1583804,SRS1295593,SRA353254,SRA,Bar-Ilan University,2,0.0,0.05106,0.0,0.00859,1.0,0.99943,,0.01388,150,150,T,T,mates < 9% mapping rate,illumina,hiseq_era,unknown,random_priming,unknown,bulk,unknown,unknown,,Israel,2016-03-02,Undetermined,Undetermined,Whole Organism,All anatomical structures
40390,SRR3166950,SRX1583803,SRS1295594,SRP070056,PRJNA309588,Analysis of the T cell response in Zebrafish,PRJNA309588,Other,Our understanding of T cell receptor TCR repertoire diversity and response tochallenge is still incomplete. For example TCR clones shared by different individuals withminimal alteration to germline gene sequences public clones are detectable in all vertebrates but their significance is unknown. We exploited the experimental advantages offered by thezebrafish to analyze the complete TCR repertoire and its response to self and foreign antigens.We found that cross reactive public TCRs dominate the T cell response endowing the TCRrepertoire with the ability to cope with diverse antigenic challenges. These features of vertebratepublic TCRs provide a mechanism for the rapid generation of protective T cell immunityallowing a short temporal window for the development of more specific private T cell responses.,,,,,TCRB library 28d KLH1,,breed:AB|chain:beta|index:22|sex:male|time point:28d|tissue:whole fish|age:1y|BioSampleModel:Model organism or animal,,,,,,,,,TCRb sequencing of zebrafish: whole zebrafish: Sample TCRB library 28d KLH1,105 28d KLH1 beta,105 28d KLH1 beta,five prime RACE amplification of TCRb transcript,,,AMPLICON,TRANSCRIPTOMIC,RACE,PAIRED,ILLUMINA,Illumina HiSeq 2000,3000Application ReadForward11Application ReadReverse151,SRP070056,,,read1_105_28d_KLH1_beta.fq.gz read2_105_28d_KLH1_beta.fq.gz,fastq fastq,1768628700.0,5895429.0,105 28d KLH1 beta files,0:150 1:150,A:486366963;C:366398128;G:389871583;T:478235213;N:47756813,150,150,,,486366963,366398128,389871583,478235213,47756813,SRX1583803,SRS1295594,SRA353254,SRA,Bar-Ilan University,2,4e-05,0.09054,3e-05,0.01597,1.0,0.99931,,0.00767,150,150,T,B,mate1 technical by mapping diff,illumina,hiseq_era,unknown,random_priming,unknown,bulk,unknown,unknown,,Israel,2017-02-12,Undetermined,Undetermined,Whole Organism,All anatomical structures
40391,SRR3166949,SRX1583802,SRS1295595,SRP070056,PRJNA309588,Analysis of the T cell response in Zebrafish,PRJNA309588,Other,Our understanding of T cell receptor TCR repertoire diversity and response tochallenge is still incomplete. For example TCR clones shared by different individuals withminimal alteration to germline gene sequences public clones are detectable in all vertebrates but their significance is unknown. We exploited the experimental advantages offered by thezebrafish to analyze the complete TCR repertoire and its response to self and foreign antigens.We found that cross reactive public TCRs dominate the T cell response endowing the TCRrepertoire with the ability to cope with diverse antigenic challenges. These features of vertebratepublic TCRs provide a mechanism for the rapid generation of protective T cell immunityallowing a short temporal window for the development of more specific private T cell responses.,,,,,TCRB library 28d PHA7,,breed:AB|chain:beta|index:30|sex:male|time point:28d|tissue:whole fish|age:1y|BioSampleModel:Model organism or animal,,,,,,,,,TCRb sequencing of zebrafish: whole zebrafish: Sample TCRB library 28d PHA7,103 28d PHA7 beta,103 28d PHA7 beta,five prime RACE amplification of TCRb transcript,,,AMPLICON,TRANSCRIPTOMIC,RACE,PAIRED,ILLUMINA,Illumina HiSeq 2000,3000Application ReadForward11Application ReadReverse151,SRP070056,,,read1_103_28d_PHA7_beta.fq.gz read2_103_28d_PHA7_beta.fq.gz,fastq fastq,2234344500.0,7447815.0,103 28d PHA7 beta files,0:150 1:150,A:628358242;C:462371909;G:526170885;T:548473987;N:68969477,150,150,,,628358242,462371909,526170885,548473987,68969477,SRX1583802,SRS1295595,SRA353254,SRA,Bar-Ilan University,2,0.00104,0.68691,5e-05,0.01999,0.99894,0.97281,0.23076,0.44172,150,150,T,B,mate1 technical by mapping diff,illumina,hiseq_era,unknown,random_priming,unknown,bulk,unknown,unknown,,Israel,2016-03-02,Undetermined,Undetermined,Whole Organism,All anatomical structures
40392,SRR3166948,SRX1583801,SRS1295596,SRP070056,PRJNA309588,Analysis of the T cell response in Zebrafish,PRJNA309588,Other,Our understanding of T cell receptor TCR repertoire diversity and response tochallenge is still incomplete. For example TCR clones shared by different individuals withminimal alteration to germline gene sequences public clones are detectable in all vertebrates but their significance is unknown. We exploited the experimental advantages offered by thezebrafish to analyze the complete TCR repertoire and its response to self and foreign antigens.We found that cross reactive public TCRs dominate the T cell response endowing the TCRrepertoire with the ability to cope with diverse antigenic challenges. These features of vertebratepublic TCRs provide a mechanism for the rapid generation of protective T cell immunityallowing a short temporal window for the development of more specific private T cell responses.,,,,,TCRB library 28d PHA5,,breed:AB|chain:beta|index:29|sex:male|time point:28d|tissue:whole fish|age:1y|BioSampleModel:Model organism or animal,,,,,,,,,TCRb sequencing of zebrafish: whole zebrafish: Sample TCRB library 28d PHA5,101 28d PHA5 beta,101 28d PHA5 beta,five prime RACE amplification of TCRb transcript,,,AMPLICON,TRANSCRIPTOMIC,RACE,PAIRED,ILLUMINA,Illumina HiSeq 2000,3000Application ReadForward11Application ReadReverse151,SRP070056,,,read1_101_28d_PHA5_beta.fq.gz read2_101_28d_PHA5_beta.fq.gz,fastq fastq,1356278400.0,4520928.0,101 28d PHA5 beta files,0:150 1:150,A:372190640;C:278464953;G:294268430;T:378226253;N:33128124,150,150,,,372190640,278464953,294268430,378226253,33128124,SRX1583801,SRS1295596,SRA353254,SRA,Bar-Ilan University,2,0.00254,0.10913,0.0001,0.01715,0.99995,0.99904,0.01106,0.01084,150,150,T,B,mate1 technical by mapping diff,illumina,hiseq_era,unknown,random_priming,unknown,bulk,unknown,unknown,,Israel,2017-02-12,Undetermined,Undetermined,Whole Organism,All anatomical structures
40393,SRR3166947,SRX1583800,SRS1295597,SRP070056,PRJNA309588,Analysis of the T cell response in Zebrafish,PRJNA309588,Other,Our understanding of T cell receptor TCR repertoire diversity and response tochallenge is still incomplete. For example TCR clones shared by different individuals withminimal alteration to germline gene sequences public clones are detectable in all vertebrates but their significance is unknown. We exploited the experimental advantages offered by thezebrafish to analyze the complete TCR repertoire and its response to self and foreign antigens.We found that cross reactive public TCRs dominate the T cell response endowing the TCRrepertoire with the ability to cope with diverse antigenic challenges. These features of vertebratepublic TCRs provide a mechanism for the rapid generation of protective T cell immunityallowing a short temporal window for the development of more specific private T cell responses.,,,,,TCRB library 28d PHA2,,breed:AB|chain:beta|index:28|sex:male|time point:28d|tissue:whole fish|age:1y|BioSampleModel:Model organism or animal,,,,,,,,,TCRb sequencing of zebrafish: whole zebrafish: Sample TCRB library 28d PHA2,98 28d PHA2 beta,98 28d PHA2 beta,five prime RACE amplification of TCRb transcript,,,AMPLICON,TRANSCRIPTOMIC,RACE,PAIRED,ILLUMINA,Illumina HiSeq 2000,3000Application ReadForward11Application ReadReverse151,SRP070056,,,read2_98_28d_PHA2_beta.fq.gz read1_98_28d_PHA2_beta.fq.gz,fastq fastq,4533755400.0,15112518.0,98 28d PHA2 beta files,0:150 1:150,A:1508096116;C:749853448;G:1051562277;T:1142392486;N:81851073,150,150,,,1508096116,749853448,1051562277,1142392486,81851073,SRX1583800,SRS1295597,SRA353254,SRA,Bar-Ilan University,2,0.0,0.33493,0.0,0.02388,1.0,0.99758,,0.15819,150,150,T,B,mate1 technical by mapping diff,illumina,hiseq_era,unknown,random_priming,unknown,bulk,unknown,unknown,,Israel,2017-02-12,Undetermined,Undetermined,Whole Organism,All anatomical structures
40394,SRR3166946,SRX1583799,SRS1295598,SRP070056,PRJNA309588,Analysis of the T cell response in Zebrafish,PRJNA309588,Other,Our understanding of T cell receptor TCR repertoire diversity and response tochallenge is still incomplete. For example TCR clones shared by different individuals withminimal alteration to germline gene sequences public clones are detectable in all vertebrates but their significance is unknown. We exploited the experimental advantages offered by thezebrafish to analyze the complete TCR repertoire and its response to self and foreign antigens.We found that cross reactive public TCRs dominate the T cell response endowing the TCRrepertoire with the ability to cope with diverse antigenic challenges. These features of vertebratepublic TCRs provide a mechanism for the rapid generation of protective T cell immunityallowing a short temporal window for the development of more specific private T cell responses.,,,,,TCRB library 28d IFA 5,,breed:AB|chain:beta|index:11|sex:male|time point:28d|tissue:whole fish|age:1y|BioSampleModel:Model organism or animal,,,,,,,,,TCRb sequencing of zebrafish: whole zebrafish: Sample TCRB library 28d IFA 5,93 28d IFA 5 beta,93 28d IFA 5 beta,five prime RACE amplification of TCRb transcript,,,AMPLICON,TRANSCRIPTOMIC,RACE,PAIRED,ILLUMINA,Illumina HiSeq 2000,3000Application ReadForward11Application ReadReverse151,SRP070056,,,read1_93_28d_IFA_5_beta.fq.gz read2_93_28d_IFA_5_beta.fq.gz,fastq fastq,1526394600.0,5087982.0,93 28d IFA 5 beta files,0:150 1:150,A:431910708;C:323148774;G:334806769;T:417586287;N:18942062,150,150,,,431910708,323148774,334806769,417586287,18942062,SRX1583799,SRS1295598,SRA353254,SRA,Bar-Ilan University,2,0.00039,0.31457,0.00015,0.00771,0.99963,0.98468,0.28947,0.16209,150,150,T,B,mate1 technical by mapping diff,illumina,hiseq_era,unknown,random_priming,unknown,bulk,unknown,unknown,,Israel,2017-02-12,Undetermined,Undetermined,Whole Organism,All anatomical structures
40395,SRR3166945,SRX1583798,SRS1295599,SRP070056,PRJNA309588,Analysis of the T cell response in Zebrafish,PRJNA309588,Other,Our understanding of T cell receptor TCR repertoire diversity and response tochallenge is still incomplete. For example TCR clones shared by different individuals withminimal alteration to germline gene sequences public clones are detectable in all vertebrates but their significance is unknown. We exploited the experimental advantages offered by thezebrafish to analyze the complete TCR repertoire and its response to self and foreign antigens.We found that cross reactive public TCRs dominate the T cell response endowing the TCRrepertoire with the ability to cope with diverse antigenic challenges. These features of vertebratepublic TCRs provide a mechanism for the rapid generation of protective T cell immunityallowing a short temporal window for the development of more specific private T cell responses.,,,,,TCRB library 28d IFA 2,,breed:AB|chain:beta|index:10|sex:male|time point:28d|tissue:whole fish|age:1y|BioSampleModel:Model organism or animal,,,,,,,,,TCRb sequencing of zebrafish: whole zebrafish: Sample TCRB library 28d IFA 2,90 28d IFA 2 beta,90 28d IFA 2 beta,five prime RACE amplification of TCRb transcript,,,AMPLICON,TRANSCRIPTOMIC,RACE,PAIRED,ILLUMINA,Illumina HiSeq 2000,3000Application ReadForward11Application ReadReverse151,SRP070056,,,read1_90_28d_IFA_2_beta.fq.gz read2_90_28d_IFA_2_beta.fq.gz,fastq fastq,2345298300.0,7817661.0,90 28d IFA 2 beta files,0:150 1:150,A:753823005;C:419081900;G:516233583;T:613533931;N:42625881,150,150,,,753823005,419081900,516233583,613533931,42625881,SRX1583798,SRS1295599,SRA353254,SRA,Bar-Ilan University,2,0.00015,0.38592,3e-05,0.00508,0.99985,0.99385,0.33333,0.06202,150,150,T,B,mate1 technical by mapping diff,illumina,hiseq_era,unknown,random_priming,unknown,bulk,unknown,unknown,,Israel,2017-02-12,Undetermined,Undetermined,Whole Organism,All anatomical structures
40396,SRR3166944,SRX1583797,SRS1295600,SRP070056,PRJNA309588,Analysis of the T cell response in Zebrafish,PRJNA309588,Other,Our understanding of T cell receptor TCR repertoire diversity and response tochallenge is still incomplete. For example TCR clones shared by different individuals withminimal alteration to germline gene sequences public clones are detectable in all vertebrates but their significance is unknown. We exploited the experimental advantages offered by thezebrafish to analyze the complete TCR repertoire and its response to self and foreign antigens.We found that cross reactive public TCRs dominate the T cell response endowing the TCRrepertoire with the ability to cope with diverse antigenic challenges. These features of vertebratepublic TCRs provide a mechanism for the rapid generation of protective T cell immunityallowing a short temporal window for the development of more specific private T cell responses.,,,,,TCRB library 28d IFA 1,,breed:AB|chain:beta|index:28|sex:male|time point:28d|tissue:whole fish|age:1y|BioSampleModel:Model organism or animal,,,,,,,,,TCRb sequencing of zebrafish: whole zebrafish: Sample TCRB library 28d IFA 1,89 28d IFA 1 beta,89 28d IFA 1 beta,five prime RACE amplification of TCRb transcript,,,AMPLICON,TRANSCRIPTOMIC,RACE,PAIRED,ILLUMINA,Illumina HiSeq 2000,3000Application ReadForward11Application ReadReverse151,SRP070056,,,read1_89_28d_IFA_1_beta.fq.gz read2_89_28d_IFA_1_beta.fq.gz,fastq fastq,2029349400.0,6764498.0,89 28d IFA 1 beta files,0:150 1:150,A:714287901;C:360307311;G:472841677;T:446872160;N:35040351,150,150,,,714287901,360307311,472841677,446872160,35040351,SRX1583797,SRS1295600,SRA353254,SRA,Bar-Ilan University,2,0.0,0.06313,0.0,0.01031,1.0,0.99703,,0.15591,150,150,T,T,mates < 9% mapping rate,illumina,hiseq_era,unknown,random_priming,unknown,bulk,unknown,unknown,,Israel,2017-02-12,Undetermined,Undetermined,Whole Organism,All anatomical structures
40397,SRR3166943,SRX1583796,SRS1295601,SRP070056,PRJNA309588,Analysis of the T cell response in Zebrafish,PRJNA309588,Other,Our understanding of T cell receptor TCR repertoire diversity and response tochallenge is still incomplete. For example TCR clones shared by different individuals withminimal alteration to germline gene sequences public clones are detectable in all vertebrates but their significance is unknown. We exploited the experimental advantages offered by thezebrafish to analyze the complete TCR repertoire and its response to self and foreign antigens.We found that cross reactive public TCRs dominate the T cell response endowing the TCRrepertoire with the ability to cope with diverse antigenic challenges. These features of vertebratepublic TCRs provide a mechanism for the rapid generation of protective T cell immunityallowing a short temporal window for the development of more specific private T cell responses.,,,,,TCRB library 21d Calm6,,breed:AB|chain:beta|index:44|sex:male|time point:21d|tissue:whole fish|age:1y|BioSampleModel:Model organism or animal,,,,,,,,,TCRb sequencing of zebrafish: whole zebrafish: Sample TCRB library 21d Calm6,86 21d Calm6 beta,86 21d Calm6 beta,five prime RACE amplification of TCRb transcript,,,AMPLICON,TRANSCRIPTOMIC,RACE,PAIRED,ILLUMINA,Illumina HiSeq 2000,3000Application ReadForward11Application ReadReverse151,SRP070056,,,read2_86_21d_Calm6_beta.fq.gz read1_86_21d_Calm6_beta.fq.gz,fastq fastq,2610499200.0,8701664.0,86 21d Calm6 beta files,0:150 1:150,A:764524163;C:544491001;G:601533912;T:654396223;N:45553901,150,150,,,764524163,544491001,601533912,654396223,45553901,SRX1583796,SRS1295601,SRA353254,SRA,Bar-Ilan University,2,0.00108,0.63356,0.00012,0.12284,0.99837,0.96193,0.21768,0.38237,150,150,T,B,mate1 technical by mapping diff,illumina,hiseq_era,unknown,random_priming,unknown,bulk,unknown,unknown,,Israel,2016-03-02,Undetermined,Undetermined,Whole Organism,All anatomical structures
40398,SRR3166942,SRX1583795,SRS1295602,SRP070056,PRJNA309588,Analysis of the T cell response in Zebrafish,PRJNA309588,Other,Our understanding of T cell receptor TCR repertoire diversity and response tochallenge is still incomplete. For example TCR clones shared by different individuals withminimal alteration to germline gene sequences public clones are detectable in all vertebrates but their significance is unknown. We exploited the experimental advantages offered by thezebrafish to analyze the complete TCR repertoire and its response to self and foreign antigens.We found that cross reactive public TCRs dominate the T cell response endowing the TCRrepertoire with the ability to cope with diverse antigenic challenges. These features of vertebratepublic TCRs provide a mechanism for the rapid generation of protective T cell immunityallowing a short temporal window for the development of more specific private T cell responses.,,,,,TCRB library 21d Calm5,,breed:AB|chain:beta|index:43|sex:male|time point:21d|tissue:whole fish|age:1y|BioSampleModel:Model organism or animal,,,,,,,,,TCRb sequencing of zebrafish: whole zebrafish: Sample TCRB library 21d Calm5,85 21d Calm5 beta,85 21d Calm5 beta,five prime RACE amplification of TCRb transcript,,,AMPLICON,TRANSCRIPTOMIC,RACE,PAIRED,ILLUMINA,Illumina HiSeq 2000,3000Application ReadForward11Application ReadReverse151,SRP070056,,,read1_85_21d_Calm5_beta.fq.gz read2_85_21d_Calm5_beta.fq.gz,fastq fastq,2700056100.0,9000187.0,85 21d Calm5 beta files,0:150 1:150,A:755011216;C:593419169;G:623123170;T:688658373;N:39844172,150,150,,,755011216,593419169,623123170,688658373,39844172,SRX1583795,SRS1295602,SRA353254,SRA,Bar-Ilan University,2,0.00244,0.68155,0.00026,0.01492,0.99766,0.96597,0.24863,0.31823,150,150,T,B,mate1 technical by mapping diff,illumina,hiseq_era,unknown,random_priming,unknown,bulk,unknown,unknown,,Israel,2017-02-12,Undetermined,Undetermined,Whole Organism,All anatomical structures
40399,SRR3166941,SRX1583794,SRS1295603,SRP070056,PRJNA309588,Analysis of the T cell response in Zebrafish,PRJNA309588,Other,Our understanding of T cell receptor TCR repertoire diversity and response tochallenge is still incomplete. For example TCR clones shared by different individuals withminimal alteration to germline gene sequences public clones are detectable in all vertebrates but their significance is unknown. We exploited the experimental advantages offered by thezebrafish to analyze the complete TCR repertoire and its response to self and foreign antigens.We found that cross reactive public TCRs dominate the T cell response endowing the TCRrepertoire with the ability to cope with diverse antigenic challenges. These features of vertebratepublic TCRs provide a mechanism for the rapid generation of protective T cell immunityallowing a short temporal window for the development of more specific private T cell responses.,,,,,TCRB library 21d Calm1,,breed:AB|chain:beta|index:42|sex:male|time point:21d|tissue:whole fish|age:1y|BioSampleModel:Model organism or animal,,,,,,,,,TCRb sequencing of zebrafish: whole zebrafish: Sample TCRB library 21d Calm1,81 21d Calm1 beta,81 21d Calm1 beta,five prime RACE amplification of TCRb transcript,,,AMPLICON,TRANSCRIPTOMIC,RACE,PAIRED,ILLUMINA,Illumina HiSeq 2000,3000Application ReadForward11Application ReadReverse151,SRP070056,,,read1_81_21d_Calm1_beta.fq.gz read2_81_21d_Calm1_beta.fq.gz,fastq fastq,2296683900.0,7655613.0,81 21d Calm1 beta files,0:150 1:150,A:776751441;C:430253074;G:528909259;T:525320137;N:35449989,150,150,,,776751441,430253074,528909259,525320137,35449989,SRX1583794,SRS1295603,SRA353254,SRA,Bar-Ilan University,2,2e-05,0.0464,0.0,0.00091,0.99997,0.99882,0.0,0.0134,150,150,T,T,mates < 9% mapping rate,illumina,hiseq_era,unknown,random_priming,unknown,bulk,unknown,unknown,,Israel,2016-03-02,Undetermined,Undetermined,Whole Organism,All anatomical structures
40400,SRR3166940,SRX1583793,SRS1295604,SRP070056,PRJNA309588,Analysis of the T cell response in Zebrafish,PRJNA309588,Other,Our understanding of T cell receptor TCR repertoire diversity and response tochallenge is still incomplete. For example TCR clones shared by different individuals withminimal alteration to germline gene sequences public clones are detectable in all vertebrates but their significance is unknown. We exploited the experimental advantages offered by thezebrafish to analyze the complete TCR repertoire and its response to self and foreign antigens.We found that cross reactive public TCRs dominate the T cell response endowing the TCRrepertoire with the ability to cope with diverse antigenic challenges. These features of vertebratepublic TCRs provide a mechanism for the rapid generation of protective T cell immunityallowing a short temporal window for the development of more specific private T cell responses.,,,,,TCRB library 21d KLH6,,breed:AB|chain:beta|index:50|sex:male|time point:21d|tissue:whole fish|age:1y|BioSampleModel:Model organism or animal,,,,,,,,,TCRb sequencing of zebrafish: whole zebrafish: Sample TCRB library 21d KLH6,78 21d KLH6 beta,78 21d KLH6 beta,five prime RACE amplification of TCRb transcript,,,AMPLICON,TRANSCRIPTOMIC,RACE,PAIRED,ILLUMINA,Illumina HiSeq 2000,3000Application ReadForward11Application ReadReverse151,SRP070056,,,read1_78_21d_KLH6_beta.fq.gz read2_78_21d_KLH6_beta.fq.gz,fastq fastq,1500221100.0,5000737.0,78 21d KLH6 beta files,0:150 1:150,A:435807096;C:294707078;G:337922064;T:361615328;N:70169534,150,150,,,435807096,294707078,337922064,361615328,70169534,SRX1583793,SRS1295604,SRA353254,SRA,Bar-Ilan University,2,5e-05,0.37212,3e-05,0.03128,0.99997,0.99358,0.0,0.11962,150,150,T,B,mate1 technical by mapping diff,illumina,hiseq_era,unknown,random_priming,unknown,bulk,unknown,unknown,,Israel,2017-02-12,Undetermined,Undetermined,Whole Organism,All anatomical structures
40401,SRR3166939,SRX1583792,SRS1295605,SRP070056,PRJNA309588,Analysis of the T cell response in Zebrafish,PRJNA309588,Other,Our understanding of T cell receptor TCR repertoire diversity and response tochallenge is still incomplete. For example TCR clones shared by different individuals withminimal alteration to germline gene sequences public clones are detectable in all vertebrates but their significance is unknown. We exploited the experimental advantages offered by thezebrafish to analyze the complete TCR repertoire and its response to self and foreign antigens.We found that cross reactive public TCRs dominate the T cell response endowing the TCRrepertoire with the ability to cope with diverse antigenic challenges. These features of vertebratepublic TCRs provide a mechanism for the rapid generation of protective T cell immunityallowing a short temporal window for the development of more specific private T cell responses.,,,,,TCRB library 21d KLH5,,breed:AB|chain:beta|index:49|sex:male|time point:21d|tissue:whole fish|age:1y|BioSampleModel:Model organism or animal,,,,,,,,,TCRb sequencing of zebrafish: whole zebrafish: Sample TCRB library 21d KLH5,77 21d KLH5 beta,77 21d KLH5 beta,five prime RACE amplification of TCRb transcript,,,AMPLICON,TRANSCRIPTOMIC,RACE,PAIRED,ILLUMINA,Illumina HiSeq 2000,3000Application ReadForward11Application ReadReverse151,SRP070056,,,read1_77_21d_KLH5_beta.fq.gz read2_77_21d_KLH5_beta.fq.gz,fastq fastq,2106732600.0,7022442.0,77 21d KLH5 beta files,0:150 1:150,A:696373936;C:376059887;G:465978414;T:465485185;N:102835178,150,150,,,696373936,376059887,465978414,465485185,102835178,SRX1583792,SRS1295605,SRA353254,SRA,Bar-Ilan University,2,0.0,0.04625,0.0,0.00381,1.0,0.99979,,0.00123,150,150,T,T,mates < 9% mapping rate,illumina,hiseq_era,unknown,random_priming,unknown,bulk,unknown,unknown,,Israel,2017-02-12,Undetermined,Undetermined,Whole Organism,All anatomical structures
40402,SRR3166938,SRX1583791,SRS1295606,SRP070056,PRJNA309588,Analysis of the T cell response in Zebrafish,PRJNA309588,Other,Our understanding of T cell receptor TCR repertoire diversity and response tochallenge is still incomplete. For example TCR clones shared by different individuals withminimal alteration to germline gene sequences public clones are detectable in all vertebrates but their significance is unknown. We exploited the experimental advantages offered by thezebrafish to analyze the complete TCR repertoire and its response to self and foreign antigens.We found that cross reactive public TCRs dominate the T cell response endowing the TCRrepertoire with the ability to cope with diverse antigenic challenges. These features of vertebratepublic TCRs provide a mechanism for the rapid generation of protective T cell immunityallowing a short temporal window for the development of more specific private T cell responses.,,,,,TCRB library 21d KLH1,,breed:AB|chain:beta|index:48|sex:male|time point:21d|tissue:whole fish|age:1y|BioSampleModel:Model organism or animal,,,,,,,,,TCRb sequencing of zebrafish: whole zebrafish: Sample TCRB library 21d KLH1,73 21d KLH1 beta,73 21d KLH1 beta,five prime RACE amplification of TCRb transcript,,,AMPLICON,TRANSCRIPTOMIC,RACE,PAIRED,ILLUMINA,Illumina HiSeq 2000,3000Application ReadForward11Application ReadReverse151,SRP070056,,,read2_73_21d_KLH1_beta.fq.gz read1_73_21d_KLH1_beta.fq.gz,fastq fastq,3554391900.0,11847973.0,73 21d KLH1 beta files,0:150 1:150,A:1312477977;C:598886813;G:787337227;T:686894043;N:168795840,150,150,,,1312477977,598886813,787337227,686894043,168795840,SRX1583791,SRS1295606,SRA353254,SRA,Bar-Ilan University,2,6e-05,0.00136,5e-05,0.00019,1.0,0.99983,,0.0303,150,150,T,T,mates < 9% mapping rate,illumina,hiseq_era,unknown,random_priming,unknown,bulk,unknown,unknown,,Israel,2017-02-12,Undetermined,Undetermined,Whole Organism,All anatomical structures
40403,SRR3166937,SRX1583790,SRS1295607,SRP070056,PRJNA309588,Analysis of the T cell response in Zebrafish,PRJNA309588,Other,Our understanding of T cell receptor TCR repertoire diversity and response tochallenge is still incomplete. For example TCR clones shared by different individuals withminimal alteration to germline gene sequences public clones are detectable in all vertebrates but their significance is unknown. We exploited the experimental advantages offered by thezebrafish to analyze the complete TCR repertoire and its response to self and foreign antigens.We found that cross reactive public TCRs dominate the T cell response endowing the TCRrepertoire with the ability to cope with diverse antigenic challenges. These features of vertebratepublic TCRs provide a mechanism for the rapid generation of protective T cell immunityallowing a short temporal window for the development of more specific private T cell responses.,,,,,TCRB library 21d PHA6,,breed:AB|chain:beta|index:53|sex:male|time point:21d|tissue:whole fish|age:1y|BioSampleModel:Model organism or animal,,,,,,,,,TCRb sequencing of zebrafish: whole zebrafish: Sample TCRB library 21d PHA6,70 21d PHA6 beta,70 21d PHA6 beta,five prime RACE amplification of TCRb transcript,,,AMPLICON,TRANSCRIPTOMIC,RACE,PAIRED,ILLUMINA,Illumina HiSeq 2000,3000Application ReadForward11Application ReadReverse151,SRP070056,,,read2_70_21d_PHA6_beta.fq.gz read1_70_21d_PHA6_beta.fq.gz,fastq fastq,4238076900.0,14126923.0,70 21d PHA6 beta files,0:150 1:150,A:1519543327;C:710498920;G:932091678;T:844220454;N:231722521,150,150,,,1519543327,710498920,932091678,844220454,231722521,SRX1583790,SRS1295607,SRA353254,SRA,Bar-Ilan University,2,0.00023,0.00772,7e-05,0.00068,0.99991,0.99851,0.25,0.08615,150,150,T,T,mates < 9% mapping rate,illumina,hiseq_era,unknown,random_priming,unknown,bulk,unknown,unknown,,Israel,2017-02-12,Undetermined,Undetermined,Whole Organism,All anatomical structures
40404,SRR3166936,SRX1583789,SRS1295608,SRP070056,PRJNA309588,Analysis of the T cell response in Zebrafish,PRJNA309588,Other,Our understanding of T cell receptor TCR repertoire diversity and response tochallenge is still incomplete. For example TCR clones shared by different individuals withminimal alteration to germline gene sequences public clones are detectable in all vertebrates but their significance is unknown. We exploited the experimental advantages offered by thezebrafish to analyze the complete TCR repertoire and its response to self and foreign antigens.We found that cross reactive public TCRs dominate the T cell response endowing the TCRrepertoire with the ability to cope with diverse antigenic challenges. These features of vertebratepublic TCRs provide a mechanism for the rapid generation of protective T cell immunityallowing a short temporal window for the development of more specific private T cell responses.,,,,,TCRB library 21d PHA4,,breed:AB|chain:beta|index:52|sex:male|time point:21d|tissue:whole fish|age:1y|BioSampleModel:Model organism or animal,,,,,,,,,TCRb sequencing of zebrafish: whole zebrafish: Sample TCRB library 21d PHA4,68 21d PHA4 beta,68 21d PHA4 beta,five prime RACE amplification of TCRb transcript,,,AMPLICON,TRANSCRIPTOMIC,RACE,PAIRED,ILLUMINA,Illumina HiSeq 2000,3000Application ReadForward11Application ReadReverse151,SRP070056,,,read1_68_21d_PHA4_beta.fq.gz read2_68_21d_PHA4_beta.fq.gz,fastq fastq,2030511600.0,6768372.0,68 21d PHA4 beta files,0:150 1:150,A:659873688;C:307551211;G:388669539;T:566328083;N:108089079,150,150,,,659873688,307551211,388669539,566328083,108089079,SRX1583789,SRS1295608,SRA353254,SRA,Bar-Ilan University,2,0.00029,0.24246,3e-05,0.05929,0.99971,0.99214,0.4,0.16492,150,150,T,B,mate1 technical by mapping diff,illumina,hiseq_era,unknown,random_priming,unknown,bulk,unknown,unknown,,Israel,2017-02-12,Undetermined,Undetermined,Whole Organism,All anatomical structures
40405,SRR3166935,SRX1583788,SRS1295609,SRP070056,PRJNA309588,Analysis of the T cell response in Zebrafish,PRJNA309588,Other,Our understanding of T cell receptor TCR repertoire diversity and response tochallenge is still incomplete. For example TCR clones shared by different individuals withminimal alteration to germline gene sequences public clones are detectable in all vertebrates but their significance is unknown. We exploited the experimental advantages offered by thezebrafish to analyze the complete TCR repertoire and its response to self and foreign antigens.We found that cross reactive public TCRs dominate the T cell response endowing the TCRrepertoire with the ability to cope with diverse antigenic challenges. These features of vertebratepublic TCRs provide a mechanism for the rapid generation of protective T cell immunityallowing a short temporal window for the development of more specific private T cell responses.,,,,,TCRB library 21d PHA1,,breed:AB|chain:beta|index:51|sex:male|time point:21d|tissue:whole fish|age:1y|BioSampleModel:Model organism or animal,,,,,,,,,TCRb sequencing of zebrafish: whole zebrafish: Sample TCRB library 21d PHA1,65 21d PHA1 beta,65 21d PHA1 beta,five prime RACE amplification of TCRb transcript,,,AMPLICON,TRANSCRIPTOMIC,RACE,PAIRED,ILLUMINA,Illumina HiSeq 2000,3000Application ReadForward11Application ReadReverse151,SRP070056,,,read1_65_21d_PHA1_beta.fq.gz read2_65_21d_PHA1_beta.fq.gz,fastq fastq,930240600.0,3100802.0,65 21d PHA1 beta files,0:150 1:150,A:259486434;C:184043790;G:197463162;T:250422190;N:38825024,150,150,,,259486434,184043790,197463162,250422190,38825024,SRX1583788,SRS1295609,SRA353254,SRA,Bar-Ilan University,2,0.00012,0.14868,0.0,0.02051,0.99963,0.99111,0.36842,0.258,150,150,T,B,mate1 technical by mapping diff,illumina,hiseq_era,unknown,random_priming,unknown,bulk,unknown,unknown,,Israel,2017-02-12,Undetermined,Undetermined,Whole Organism,All anatomical structures
40406,SRR3166934,SRX1583787,SRS1295610,SRP070056,PRJNA309588,Analysis of the T cell response in Zebrafish,PRJNA309588,Other,Our understanding of T cell receptor TCR repertoire diversity and response tochallenge is still incomplete. For example TCR clones shared by different individuals withminimal alteration to germline gene sequences public clones are detectable in all vertebrates but their significance is unknown. We exploited the experimental advantages offered by thezebrafish to analyze the complete TCR repertoire and its response to self and foreign antigens.We found that cross reactive public TCRs dominate the T cell response endowing the TCRrepertoire with the ability to cope with diverse antigenic challenges. These features of vertebratepublic TCRs provide a mechanism for the rapid generation of protective T cell immunityallowing a short temporal window for the development of more specific private T cell responses.,,,,,TCRB library 21d IFA 8,,breed:AB|chain:beta|index:47|sex:male|time point:21d|tissue:whole fish|age:1y|BioSampleModel:Model organism or animal,,,,,,,,,TCRb sequencing of zebrafish: whole zebrafish: Sample TCRB library 21d IFA 8,64 21d IFA 8 beta,64 21d IFA 8 beta,five prime RACE amplification of TCRb transcript,,,AMPLICON,TRANSCRIPTOMIC,RACE,PAIRED,ILLUMINA,Illumina HiSeq 2000,3000Application ReadForward11Application ReadReverse151,SRP070056,,,read1_64_21d_IFA_8_beta.fq.gz read2_64_21d_IFA_8_beta.fq.gz,fastq fastq,1461868800.0,4872896.0,64 21d IFA 8 beta files,0:150 1:150,A:462418747;C:247121586;G:284662907;T:394116911;N:73548649,150,150,,,462418747,247121586,284662907,394116911,73548649,SRX1583787,SRS1295610,SRA353254,SRA,Bar-Ilan University,2,0.0001,0.17532,0.0,0.04988,0.99983,0.99843,0.25,0.01908,150,150,T,B,mate1 technical by mapping diff,illumina,hiseq_era,unknown,random_priming,unknown,bulk,unknown,unknown,,Israel,2017-02-12,Undetermined,Undetermined,Whole Organism,All anatomical structures
40407,SRR3166933,SRX1583786,SRS1295611,SRP070056,PRJNA309588,Analysis of the T cell response in Zebrafish,PRJNA309588,Other,Our understanding of T cell receptor TCR repertoire diversity and response tochallenge is still incomplete. For example TCR clones shared by different individuals withminimal alteration to germline gene sequences public clones are detectable in all vertebrates but their significance is unknown. We exploited the experimental advantages offered by thezebrafish to analyze the complete TCR repertoire and its response to self and foreign antigens.We found that cross reactive public TCRs dominate the T cell response endowing the TCRrepertoire with the ability to cope with diverse antigenic challenges. These features of vertebratepublic TCRs provide a mechanism for the rapid generation of protective T cell immunityallowing a short temporal window for the development of more specific private T cell responses.,,,,,TCRB library 21d IFA 4,,breed:AB|chain:beta|index:46|sex:male|time point:21d|tissue:whole fish|age:1y|BioSampleModel:Model organism or animal,,,,,,,,,TCRb sequencing of zebrafish: whole zebrafish: Sample TCRB library 21d IFA 4,60 21d IFA 4 beta,60 21d IFA 4 beta,five prime RACE amplification of TCRb transcript,,,AMPLICON,TRANSCRIPTOMIC,RACE,PAIRED,ILLUMINA,Illumina HiSeq 2000,3000Application ReadForward11Application ReadReverse151,SRP070056,,,read2_60_21d_IFA_4_beta.fq.gz read1_60_21d_IFA_4_beta.fq.gz,fastq fastq,4128399900.0,13761333.0,60 21d IFA 4 beta files,0:150 1:150,A:1332478795;C:800389451;G:937176538;T:950735272;N:107619844,150,150,,,1332478795,800389451,937176538,950735272,107619844,SRX1583786,SRS1295611,SRA353254,SRA,Bar-Ilan University,2,0.00043,0.19668,5e-05,0.00597,0.99953,0.9782,0.2647,0.35656,150,150,T,B,mate1 technical by mapping diff,illumina,hiseq_era,unknown,random_priming,unknown,bulk,unknown,unknown,,Israel,2017-02-12,Undetermined,Undetermined,Whole Organism,All anatomical structures
40408,SRR3166932,SRX1583785,SRS1295612,SRP070056,PRJNA309588,Analysis of the T cell response in Zebrafish,PRJNA309588,Other,Our understanding of T cell receptor TCR repertoire diversity and response tochallenge is still incomplete. For example TCR clones shared by different individuals withminimal alteration to germline gene sequences public clones are detectable in all vertebrates but their significance is unknown. We exploited the experimental advantages offered by thezebrafish to analyze the complete TCR repertoire and its response to self and foreign antigens.We found that cross reactive public TCRs dominate the T cell response endowing the TCRrepertoire with the ability to cope with diverse antigenic challenges. These features of vertebratepublic TCRs provide a mechanism for the rapid generation of protective T cell immunityallowing a short temporal window for the development of more specific private T cell responses.,,,,,TCRB library 21d IFA 2,,breed:AB|chain:beta|index:45|sex:male|time point:21d|tissue:whole fish|age:1y|BioSampleModel:Model organism or animal,,,,,,,,,TCRb sequencing of zebrafish: whole zebrafish: Sample TCRB library 21d IFA 2,58 21d IFA 2 beta,58 21d IFA 2 beta,five prime RACE amplification of TCRb transcript,,,AMPLICON,TRANSCRIPTOMIC,RACE,PAIRED,ILLUMINA,Illumina HiSeq 2000,3000Application ReadForward11Application ReadReverse151,SRP070056,,,read2_58_21d_IFA_2_beta.fq.gz read1_58_21d_IFA_2_beta.fq.gz,fastq fastq,5035078800.0,16783596.0,58 21d IFA 2 beta files,0:150 1:150,A:1714919930;C:839542402;G:1121993893;T:1220614755;N:138007820,150,150,,,1714919930,839542402,1121993893,1220614755,138007820,SRX1583785,SRS1295612,SRA353254,SRA,Bar-Ilan University,2,0.0,0.17551,0.0,0.00318,1.0,0.99833,,0.10802,150,150,T,B,mate1 technical by mapping diff,illumina,hiseq_era,unknown,random_priming,unknown,bulk,unknown,unknown,,Israel,2016-03-02,Undetermined,Undetermined,Whole Organism,All anatomical structures
40409,SRR3166931,SRX1583784,SRS1295613,SRP070056,PRJNA309588,Analysis of the T cell response in Zebrafish,PRJNA309588,Other,Our understanding of T cell receptor TCR repertoire diversity and response tochallenge is still incomplete. For example TCR clones shared by different individuals withminimal alteration to germline gene sequences public clones are detectable in all vertebrates but their significance is unknown. We exploited the experimental advantages offered by thezebrafish to analyze the complete TCR repertoire and its response to self and foreign antigens.We found that cross reactive public TCRs dominate the T cell response endowing the TCRrepertoire with the ability to cope with diverse antigenic challenges. These features of vertebratepublic TCRs provide a mechanism for the rapid generation of protective T cell immunityallowing a short temporal window for the development of more specific private T cell responses.,,,,,TCRB library 14d Calm6,,breed:AB|chain:beta|index:37|sex:male|time point:14d|tissue:whole fish|age:1y|BioSampleModel:Model organism or animal,,,,,,,,,TCRb sequencing of zebrafish: whole zebrafish: Sample TCRB library 14d Calm6,55 14d Calm6 beta,55 14d Calm6 beta,five prime RACE amplification of TCRb transcript,,,AMPLICON,TRANSCRIPTOMIC,RACE,PAIRED,ILLUMINA,Illumina HiSeq 2000,3000Application ReadForward11Application ReadReverse151,SRP070056,,,read1_55_14d_Calm6_beta.fq.gz read2_55_14d_Calm6_beta.fq.gz,fastq fastq,1028012700.0,3426709.0,55 14d Calm6 beta files,0:150 1:150,A:295958360;C:207583542;G:216651025;T:284035600;N:23784173,150,150,,,295958360,207583542,216651025,284035600,23784173,SRX1583784,SRS1295613,SRA353254,SRA,Bar-Ilan University,2,5e-05,0.16498,0.0,0.01748,0.99989,0.99253,0.33333,0.12385,150,150,T,B,mate1 technical by mapping diff,illumina,hiseq_era,unknown,random_priming,unknown,bulk,unknown,unknown,,Israel,2016-03-02,Undetermined,Undetermined,Whole Organism,All anatomical structures
40410,SRR3166930,SRX1583783,SRS1295614,SRP070056,PRJNA309588,Analysis of the T cell response in Zebrafish,PRJNA309588,Other,Our understanding of T cell receptor TCR repertoire diversity and response tochallenge is still incomplete. For example TCR clones shared by different individuals withminimal alteration to germline gene sequences public clones are detectable in all vertebrates but their significance is unknown. We exploited the experimental advantages offered by thezebrafish to analyze the complete TCR repertoire and its response to self and foreign antigens.We found that cross reactive public TCRs dominate the T cell response endowing the TCRrepertoire with the ability to cope with diverse antigenic challenges. These features of vertebratepublic TCRs provide a mechanism for the rapid generation of protective T cell immunityallowing a short temporal window for the development of more specific private T cell responses.,,,,,TCRB library Naive6,,breed:AB|chain:beta|index:31|sex:male|tissue:whole fish|age:1y|BioSampleModel:Model organism or animal,,,,,,,,,TCRb sequencing of zebrafish: whole zebrafish: Sample TCRB library Naive6,126 Naive6 beta,126 Naive6 beta,five prime RACE amplification of TCRb transcript,,,AMPLICON,TRANSCRIPTOMIC,RACE,PAIRED,ILLUMINA,Illumina HiSeq 2000,3000Application ReadForward11Application ReadReverse151,SRP070056,,,read2_126_Naive6_beta.fq.gz read1_126_Naive6_beta.fq.gz,fastq fastq,1984909800.0,6616366.0,126 Naive6 beta files,0:150 1:150,A:574002364;C:411972224;G:452963561;T:493883048;N:52088603,150,150,,,574002364,411972224,452963561,493883048,52088603,SRX1583783,SRS1295614,SRA353254,SRA,Bar-Ilan University,2,0.0007,0.73767,5e-05,0.01562,0.99928,0.9754,0.16,0.44061,150,150,T,B,mate1 technical by mapping diff,illumina,hiseq_era,unknown,random_priming,unknown,bulk,unknown,unknown,,Israel,2017-02-12,Undetermined,Undetermined,Whole Organism,All anatomical structures
40411,SRR3166929,SRX1583782,SRS1295615,SRP070056,PRJNA309588,Analysis of the T cell response in Zebrafish,PRJNA309588,Other,Our understanding of T cell receptor TCR repertoire diversity and response tochallenge is still incomplete. For example TCR clones shared by different individuals withminimal alteration to germline gene sequences public clones are detectable in all vertebrates but their significance is unknown. We exploited the experimental advantages offered by thezebrafish to analyze the complete TCR repertoire and its response to self and foreign antigens.We found that cross reactive public TCRs dominate the T cell response endowing the TCRrepertoire with the ability to cope with diverse antigenic challenges. These features of vertebratepublic TCRs provide a mechanism for the rapid generation of protective T cell immunityallowing a short temporal window for the development of more specific private T cell responses.,,,,,TCRB library 14d IFA1,,breed:AB|chain:beta|index:38|sex:male|time point:14d|tissue:whole fish|age:1y|BioSampleModel:Model organism or animal,,,,,,,,,TCRb sequencing of zebrafish: whole zebrafish: Sample TCRB library 14d IFA1,36 14d IFA1 beta,36 14d IFA1 beta,five prime RACE amplification of TCRb transcript,,,AMPLICON,TRANSCRIPTOMIC,RACE,PAIRED,ILLUMINA,Illumina HiSeq 2000,3000Application ReadForward11Application ReadReverse151,SRP070056,,,read2_36_14d_IFA1_beta.fq.gz read1_36_14d_IFA1_beta.fq.gz,fastq fastq,2641709400.0,8805698.0,36 14d IFA1 beta files,0:150 1:150,A:828430279;C:516389015;G:603137557;T:652458512;N:41294037,150,150,,,828430279,516389015,603137557,652458512,41294037,SRX1583782,SRS1295615,SRA353254,SRA,Bar-Ilan University,2,6e-05,0.17777,1e-05,0.00441,0.99991,0.99243,0.5,0.07212,150,150,T,B,mate1 technical by mapping diff,illumina,hiseq_era,unknown,random_priming,unknown,bulk,unknown,unknown,,Israel,2017-02-12,Undetermined,Undetermined,Whole Organism,All anatomical structures
40412,SRR3166928,SRX1583781,SRS1295616,SRP070056,PRJNA309588,Analysis of the T cell response in Zebrafish,PRJNA309588,Other,Our understanding of T cell receptor TCR repertoire diversity and response tochallenge is still incomplete. For example TCR clones shared by different individuals withminimal alteration to germline gene sequences public clones are detectable in all vertebrates but their significance is unknown. We exploited the experimental advantages offered by thezebrafish to analyze the complete TCR repertoire and its response to self and foreign antigens.We found that cross reactive public TCRs dominate the T cell response endowing the TCRrepertoire with the ability to cope with diverse antigenic challenges. These features of vertebratepublic TCRs provide a mechanism for the rapid generation of protective T cell immunityallowing a short temporal window for the development of more specific private T cell responses.,,,,,TCRB library 14d PHA7,,breed:AB|chain:beta|index:41|sex:male|time point:14d|tissue:whole fish|age:1y|BioSampleModel:Model organism or animal,,,,,,,,,TCRb sequencing of zebrafish: whole zebrafish: Sample TCRB library 14d PHA7,35 14d PHA7 beta,35 14d PHA7 beta,five prime RACE amplification of TCRb transcript,,,AMPLICON,TRANSCRIPTOMIC,RACE,PAIRED,ILLUMINA,Illumina HiSeq 2000,3000Application ReadForward11Application ReadReverse151,SRP070056,,,read2_35_14d_PHA7_beta.fq.gz read1_35_14d_PHA7_beta.fq.gz,fastq fastq,2481744900.0,8272483.0,35 14d PHA7 beta files,0:150 1:150,A:684148801;C:534638425;G:555073374;T:671216692;N:36667608,150,150,,,684148801,534638425,555073374,671216692,36667608,SRX1583781,SRS1295616,SRA353254,SRA,Bar-Ilan University,2,0.00054,0.3447,8e-05,0.03511,0.9991,0.97049,0.29411,0.37357,150,150,T,B,mate1 technical by mapping diff,illumina,hiseq_era,unknown,random_priming,unknown,bulk,unknown,unknown,,Israel,2017-02-12,Undetermined,Undetermined,Whole Organism,All anatomical structures
40413,SRR3166927,SRX1583780,SRS1295617,SRP070056,PRJNA309588,Analysis of the T cell response in Zebrafish,PRJNA309588,Other,Our understanding of T cell receptor TCR repertoire diversity and response tochallenge is still incomplete. For example TCR clones shared by different individuals withminimal alteration to germline gene sequences public clones are detectable in all vertebrates but their significance is unknown. We exploited the experimental advantages offered by thezebrafish to analyze the complete TCR repertoire and its response to self and foreign antigens.We found that cross reactive public TCRs dominate the T cell response endowing the TCRrepertoire with the ability to cope with diverse antigenic challenges. These features of vertebratepublic TCRs provide a mechanism for the rapid generation of protective T cell immunityallowing a short temporal window for the development of more specific private T cell responses.,,,,,TCRB library 14d PHA6,,breed:AB|chain:beta|index:40|sex:male|time point:14d|tissue:whole fish|age:1y|BioSampleModel:Model organism or animal,,,,,,,,,TCRb sequencing of zebrafish: whole zebrafish: Sample TCRB library 14d PHA6,34 14d PHA6 beta,34 14d PHA6 beta,five prime RACE amplification of TCRb transcript,,,AMPLICON,TRANSCRIPTOMIC,RACE,PAIRED,ILLUMINA,Illumina HiSeq 2000,3000Application ReadForward11Application ReadReverse151,SRP070056,,,read1_34_14d_PHA6_beta.fq.gz read2_34_14d_PHA6_beta.fq.gz,fastq fastq,2149899000.0,7166330.0,34 14d PHA6 beta files,0:150 1:150,A:603640552;C:452244383;G:474826068;T:587177894;N:32010103,150,150,,,603640552,452244383,474826068,587177894,32010103,SRX1583780,SRS1295617,SRA353254,SRA,Bar-Ilan University,2,4e-05,0.16994,0.0,0.14727,0.99991,0.99342,0.0,0.31047,150,150,T,B,mate1 technical by mapping diff,illumina,hiseq_era,unknown,random_priming,unknown,bulk,unknown,unknown,,Israel,2016-03-02,Undetermined,Undetermined,Whole Organism,All anatomical structures
40414,SRR3166926,SRX1583779,SRS1295618,SRP070056,PRJNA309588,Analysis of the T cell response in Zebrafish,PRJNA309588,Other,Our understanding of T cell receptor TCR repertoire diversity and response tochallenge is still incomplete. For example TCR clones shared by different individuals withminimal alteration to germline gene sequences public clones are detectable in all vertebrates but their significance is unknown. We exploited the experimental advantages offered by thezebrafish to analyze the complete TCR repertoire and its response to self and foreign antigens.We found that cross reactive public TCRs dominate the T cell response endowing the TCRrepertoire with the ability to cope with diverse antigenic challenges. These features of vertebratepublic TCRs provide a mechanism for the rapid generation of protective T cell immunityallowing a short temporal window for the development of more specific private T cell responses.,,,,,TCRB library 14d PHA5,,breed:AB|chain:beta|index:39|sex:male|time point:14d|tissue:whole fish|age:1y|BioSampleModel:Model organism or animal,,,,,,,,,TCRb sequencing of zebrafish: whole zebrafish: Sample TCRB library 14d PHA5,33 14d PHA5 beta,33 14d PHA5 beta,five prime RACE amplification of TCRb transcript,,,AMPLICON,TRANSCRIPTOMIC,RACE,PAIRED,ILLUMINA,Illumina HiSeq 2000,3000Application ReadForward11Application ReadReverse151,SRP070056,,,read1_33_14d_PHA5_beta.fq.gz read2_33_14d_PHA5_beta.fq.gz,fastq fastq,4781329500.0,15937765.0,33 14d PHA5 beta files,0:150 1:150,A:1564269921;C:790001191;G:1015752339;T:1331170138;N:80135911,150,150,,,1564269921,790001191,1015752339,1331170138,80135911,SRX1583779,SRS1295618,SRA353254,SRA,Bar-Ilan University,2,0.00034,0.20127,0.00018,0.00887,0.99989,0.99567,0.05263,0.08667,150,150,T,B,mate1 technical by mapping diff,illumina,hiseq_era,unknown,random_priming,unknown,bulk,unknown,unknown,,Israel,2016-03-02,Undetermined,Undetermined,Whole Organism,All anatomical structures
42968,SRR5892584,SRX3058354,SRS2404188,SRP114766,PRJNA396480,Danio rerio Raw sequence reads,PRJNA396480,Other,A Reduced Zebrafish Transcriptome Method to Assess Environmental Toxicants Using Embryo Test,,,,,MF,,breed:TU|isolation source:lab|collection date:2017 01 27|geo loc name:China|tissue:embryos|age:32hpf|identified by:MF REF DMSO 3|BioSampleModel:Invertebrate,,,,,,,,,MF DMSO 3,40,40,solvent control for MF treatments replication 3,,,AMPLICON,TRANSCRIPTOMIC,PCR,SINGLE,ION_TORRENT,Ion Torrent Proton,,SRP114766,,,MF-DMSO-3.gz,fastq,125472592.0,1204687.0,MF DMSO 3.gz,0:104.15,A:29674919;C:33269421;G:33090427;T:29437825;N:0,104,,,,29674919,33269421,33090427,29437825,0,SRX3058354,SRS2404188,SRA595054,Zebrafish embryo|School of the environment,Zebrafish embryo,1,0.96782,,0.00028,,0.97096,,0.44758,,89,,B,,usable mapping rate,ion_torrent,ion_torrent,unknown,random_priming,unknown,bulk,unknown,unknown,,Unknown,2017-08-03,Pharyngula,Embryo,Embryo Imprecise,All anatomical structures
42969,SRR5892585,SRX3058353,SRS2404188,SRP114766,PRJNA396480,Danio rerio Raw sequence reads,PRJNA396480,Other,A Reduced Zebrafish Transcriptome Method to Assess Environmental Toxicants Using Embryo Test,,,,,MF,,breed:TU|isolation source:lab|collection date:2017 01 27|geo loc name:China|tissue:embryos|age:32hpf|identified by:MF REF DMSO 3|BioSampleModel:Invertebrate,,,,,,,,,MF DMSO 2,39,39,solvent control for MF treatments replication 2,,,AMPLICON,TRANSCRIPTOMIC,PCR,SINGLE,ION_TORRENT,Ion Torrent Proton,,SRP114766,,,MF-DMSO-2.gz,fastq,99884913.0,971141.0,MF DMSO 2.gz,0:102.85,A:23598949;C:26322425;G:26544412;T:23419127;N:0,102,,,,23598949,26322425,26544412,23419127,0,SRX3058353,SRS2404188,SRA595054,Zebrafish embryo|School of the environment,Zebrafish embryo,1,0.97296,,0.00027,,0.97092,,0.46658,,95,,B,,usable mapping rate,ion_torrent,ion_torrent,unknown,random_priming,unknown,bulk,unknown,unknown,,Unknown,2017-08-03,Pharyngula,Embryo,Embryo Imprecise,All anatomical structures
42970,SRR5892586,SRX3058352,SRS2404189,SRP114766,PRJNA396480,Danio rerio Raw sequence reads,PRJNA396480,Other,A Reduced Zebrafish Transcriptome Method to Assess Environmental Toxicants Using Embryo Test,,,,,DMSO,,breed:TU|isolation source:lab|collection date:2016 11 07|geo loc name:China|tissue:embryos|age:32hpf|identified by:DMSO 1 batchA|BioSampleModel:Invertebrate,,,,,,,,,DMSO batchD 2,71,71,embryo post 8 32hpf solvent control exposurereplication 2 in forth batch,,,AMPLICON,TRANSCRIPTOMIC,PCR,SINGLE,ION_TORRENT,Ion Torrent Proton,,SRP114766,,,DMSO-batch4-2.gz,fastq,121679118.0,1146532.0,DMSO batchD 2.gz,0:106.13,A:28957172;C:31903260;G:31955173;T:28863513;N:0,106,,,,28957172,31903260,31955173,28863513,0,SRX3058352,SRS2404189,SRA595054,Zebrafish embryo|School of the environment,Zebrafish embryo,1,0.94833,,0.0003,,0.97019,,0.46856,,99,,B,,usable mapping rate,ion_torrent,ion_torrent,unknown,random_priming,unknown,bulk,unknown,unknown,,Unknown,2017-08-03,Pharyngula,Embryo,Embryo Imprecise,All anatomical structures
42971,SRR5892587,SRX3058351,SRS2404189,SRP114766,PRJNA396480,Danio rerio Raw sequence reads,PRJNA396480,Other,A Reduced Zebrafish Transcriptome Method to Assess Environmental Toxicants Using Embryo Test,,,,,DMSO,,breed:TU|isolation source:lab|collection date:2016 11 07|geo loc name:China|tissue:embryos|age:32hpf|identified by:DMSO 1 batchA|BioSampleModel:Invertebrate,,,,,,,,,DMSO batchE 1,73,73,embryo post 8 32hpf solvent control exposurereplication 1 in fifth batch,,,AMPLICON,TRANSCRIPTOMIC,PCR,SINGLE,ION_TORRENT,Ion Torrent Proton,,SRP114766,,,DMSO-batch5-1.gz,fastq,123397953.0,1167071.0,DMSO batchE 1.gz,0:105.73,A:28979230;C:32683758;G:32531951;T:29203014;N:0,105,,,,28979230,32683758,32531951,29203014,0,SRX3058351,SRS2404189,SRA595054,Zebrafish embryo|School of the environment,Zebrafish embryo,1,0.95859,,0.00022,,0.97072,,0.45965,,53,,B,,usable mapping rate,ion_torrent,ion_torrent,unknown,random_priming,unknown,bulk,unknown,unknown,,Unknown,2017-08-03,Pharyngula,Embryo,Embryo Imprecise,All anatomical structures
42972,SRR5892588,SRX3058350,SRS2404188,SRP114766,PRJNA396480,Danio rerio Raw sequence reads,PRJNA396480,Other,A Reduced Zebrafish Transcriptome Method to Assess Environmental Toxicants Using Embryo Test,,,,,MF,,breed:TU|isolation source:lab|collection date:2017 01 27|geo loc name:China|tissue:embryos|age:32hpf|identified by:MF REF DMSO 3|BioSampleModel:Invertebrate,,,,,,,,,MF REF2,32,32,embryo post 8 32hpf 2 REF MFexposure,,,AMPLICON,TRANSCRIPTOMIC,PCR,SINGLE,ION_TORRENT,Ion Torrent Proton,,SRP114766,,,MF-REF2.gz,fastq,118386968.0,1138153.0,MF REF2.gz,0:104.02,A:27897906;C:31473696;G:31180817;T:27834549;N:0,104,,,,27897906,31473696,31180817,27834549,0,SRX3058350,SRS2404188,SRA595054,Zebrafish embryo|School of the environment,Zebrafish embryo,1,0.97077,,0.00031,,0.97078,,0.4628,,98,,B,,usable mapping rate,ion_torrent,ion_torrent,unknown,random_priming,unknown,bulk,unknown,unknown,,Unknown,2017-08-03,Pharyngula,Embryo,Embryo Imprecise,All anatomical structures
42973,SRR5892589,SRX3058349,SRS2404188,SRP114766,PRJNA396480,Danio rerio Raw sequence reads,PRJNA396480,Other,A Reduced Zebrafish Transcriptome Method to Assess Environmental Toxicants Using Embryo Test,,,,,MF,,breed:TU|isolation source:lab|collection date:2017 01 27|geo loc name:China|tissue:embryos|age:32hpf|identified by:MF REF DMSO 3|BioSampleModel:Invertebrate,,,,,,,,,MF REF10,31,31,embryo post 8 32hpf 10 REF MF exposure,,,AMPLICON,TRANSCRIPTOMIC,PCR,SINGLE,ION_TORRENT,Ion Torrent Proton,,SRP114766,,,MF-REF10.gz,fastq,102454725.0,1000173.0,MF REF10.gz,0:102.44,A:24358570;C:27069059;G:26881004;T:24146092;N:0,102,,,,24358570,27069059,26881004,24146092,0,SRX3058349,SRS2404188,SRA595054,Zebrafish embryo|School of the environment,Zebrafish embryo,1,0.97646,,0.00032,,0.97096,,0.44494,,99,,B,,usable mapping rate,ion_torrent,ion_torrent,unknown,random_priming,unknown,bulk,unknown,unknown,,Unknown,2017-08-03,Pharyngula,Embryo,Embryo Imprecise,All anatomical structures
42974,SRR5892590,SRX3058348,SRS2404188,SRP114766,PRJNA396480,Danio rerio Raw sequence reads,PRJNA396480,Other,A Reduced Zebrafish Transcriptome Method to Assess Environmental Toxicants Using Embryo Test,,,,,MF,,breed:TU|isolation source:lab|collection date:2017 01 27|geo loc name:China|tissue:embryos|age:32hpf|identified by:MF REF DMSO 3|BioSampleModel:Invertebrate,,,,,,,,,MF REF0.08,34,34,embryo post 8 32hpf 0.08 REF MF exposure,,,AMPLICON,TRANSCRIPTOMIC,PCR,SINGLE,ION_TORRENT,Ion Torrent Proton,,SRP114766,,,MF-REF0.08.gz,fastq,120057844.0,1117682.0,MF REF0.08.gz,0:107.42,A:28224691;C:31792991;G:31542256;T:28497906;N:0,107,,,,28224691,31792991,31542256,28497906,0,SRX3058348,SRS2404188,SRA595054,Zebrafish embryo|School of the environment,Zebrafish embryo,1,0.95452,,0.0002,,0.97114,,0.45435,,99,,B,,usable mapping rate,ion_torrent,ion_torrent,unknown,random_priming,unknown,bulk,unknown,unknown,,Unknown,2017-08-03,Pharyngula,Embryo,Embryo Imprecise,All anatomical structures
42975,SRR5892591,SRX3058347,SRS2404188,SRP114766,PRJNA396480,Danio rerio Raw sequence reads,PRJNA396480,Other,A Reduced Zebrafish Transcriptome Method to Assess Environmental Toxicants Using Embryo Test,,,,,MF,,breed:TU|isolation source:lab|collection date:2017 01 27|geo loc name:China|tissue:embryos|age:32hpf|identified by:MF REF DMSO 3|BioSampleModel:Invertebrate,,,,,,,,,MF REF0.4,33,33,embryo post 8 32hpf 0.4 REF MF exposure,,,AMPLICON,TRANSCRIPTOMIC,PCR,SINGLE,ION_TORRENT,Ion Torrent Proton,,SRP114766,,,MF-REF0.4.gz,fastq,180105044.0,1745166.0,MF REF0.4.gz,0:103.20,A:42458831;C:47872884;G:47284824;T:42488505;N:0,103,,,,42458831,47872884,47284824,42488505,0,SRX3058347,SRS2404188,SRA595054,Zebrafish embryo|School of the environment,Zebrafish embryo,1,0.97346,,0.0003,,0.97076,,0.4492,,99,,B,,usable mapping rate,ion_torrent,ion_torrent,unknown,random_priming,unknown,bulk,unknown,unknown,,Unknown,2017-08-03,Pharyngula,Embryo,Embryo Imprecise,All anatomical structures
42976,SRR5892592,SRX3058346,SRS2404188,SRP114766,PRJNA396480,Danio rerio Raw sequence reads,PRJNA396480,Other,A Reduced Zebrafish Transcriptome Method to Assess Environmental Toxicants Using Embryo Test,,,,,MF,,breed:TU|isolation source:lab|collection date:2017 01 27|geo loc name:China|tissue:embryos|age:32hpf|identified by:MF REF DMSO 3|BioSampleModel:Invertebrate,,,,,,,,,MF REF0.0032,36,36,embryo post 8 32hpf 0.0032 REF MF exposure,,,AMPLICON,TRANSCRIPTOMIC,PCR,SINGLE,ION_TORRENT,Ion Torrent Proton,,SRP114766,,,MF-REF0.0032.gz,fastq,118651783.0,1150496.0,MF REF0.0032.gz,0:103.13,A:28100611;C:31226792;G:31323929;T:28000451;N:0,103,,,,28100611,31226792,31323929,28000451,0,SRX3058346,SRS2404188,SRA595054,Zebrafish embryo|School of the environment,Zebrafish embryo,1,0.97372,,0.00029,,0.97076,,0.44374,,209,,B,,usable mapping rate,ion_torrent,ion_torrent,unknown,random_priming,unknown,bulk,unknown,unknown,,Unknown,2017-08-03,Pharyngula,Embryo,Embryo Imprecise,All anatomical structures
42977,SRR5892593,SRX3058345,SRS2404188,SRP114766,PRJNA396480,Danio rerio Raw sequence reads,PRJNA396480,Other,A Reduced Zebrafish Transcriptome Method to Assess Environmental Toxicants Using Embryo Test,,,,,MF,,breed:TU|isolation source:lab|collection date:2017 01 27|geo loc name:China|tissue:embryos|age:32hpf|identified by:MF REF DMSO 3|BioSampleModel:Invertebrate,,,,,,,,,MF REF0.016,35,35,embryo post 8 32hpf 0.016 REF MF exposure,,,AMPLICON,TRANSCRIPTOMIC,PCR,SINGLE,ION_TORRENT,Ion Torrent Proton,,SRP114766,,,MF-REF0.016.gz,fastq,120264407.0,1144665.0,MF REF0.016.gz,0:105.07,A:28327111;C:31914661;G:31543876;T:28478759;N:0,105,,,,28327111,31914661,31543876,28478759,0,SRX3058345,SRS2404188,SRA595054,Zebrafish embryo|School of the environment,Zebrafish embryo,1,0.96809,,0.00037,,0.97021,,0.476,,95,,B,,usable mapping rate,ion_torrent,ion_torrent,unknown,random_priming,unknown,bulk,unknown,unknown,,Unknown,2017-08-03,Pharyngula,Embryo,Embryo Imprecise,All anatomical structures
42978,SRR5892594,SRX3058344,SRS2404188,SRP114766,PRJNA396480,Danio rerio Raw sequence reads,PRJNA396480,Other,A Reduced Zebrafish Transcriptome Method to Assess Environmental Toxicants Using Embryo Test,,,,,MF,,breed:TU|isolation source:lab|collection date:2017 01 27|geo loc name:China|tissue:embryos|age:32hpf|identified by:MF REF DMSO 3|BioSampleModel:Invertebrate,,,,,,,,,MF DMSO 1,38,38,solvent control for MF treatments replication 1,,,AMPLICON,TRANSCRIPTOMIC,PCR,SINGLE,ION_TORRENT,Ion Torrent Proton,,SRP114766,,,MF-DMSO-1.gz,fastq,112685903.0,1086206.0,MF DMSO 1.gz,0:103.74,A:26477784;C:30135462;G:29566470;T:26506187;N:0,103,,,,26477784,30135462,29566470,26506187,0,SRX3058344,SRS2404188,SRA595054,Zebrafish embryo|School of the environment,Zebrafish embryo,1,0.96856,,0.00033,,0.97053,,0.47169,,99,,B,,usable mapping rate,ion_torrent,ion_torrent,unknown,random_priming,unknown,bulk,unknown,unknown,,Unknown,2017-08-03,Pharyngula,Embryo,Embryo Imprecise,All anatomical structures
42979,SRR5892595,SRX3058343,SRS2404188,SRP114766,PRJNA396480,Danio rerio Raw sequence reads,PRJNA396480,Other,A Reduced Zebrafish Transcriptome Method to Assess Environmental Toxicants Using Embryo Test,,,,,MF,,breed:TU|isolation source:lab|collection date:2017 01 27|geo loc name:China|tissue:embryos|age:32hpf|identified by:MF REF DMSO 3|BioSampleModel:Invertebrate,,,,,,,,,MF REF0.00064,37,37,embryo post 8 32hpf 0.00064 REF MF exposure,,,AMPLICON,TRANSCRIPTOMIC,PCR,SINGLE,ION_TORRENT,Ion Torrent Proton,,SRP114766,,,MF-REF0.00064.gz,fastq,138041498.0,1329985.0,MF REF0.00064.gz,0:103.79,A:32831449;C:36507596;G:36517879;T:32184574;N:0,103,,,,32831449,36507596,36517879,32184574,0,SRX3058343,SRS2404188,SRA595054,Zebrafish embryo|School of the environment,Zebrafish embryo,1,0.9711,,0.00032,,0.97037,,0.45908,,99,,B,,usable mapping rate,ion_torrent,ion_torrent,unknown,random_priming,unknown,bulk,unknown,unknown,,Unknown,2017-08-03,Pharyngula,Embryo,Embryo Imprecise,All anatomical structures
42980,SRR5892596,SRX3058342,SRS2404190,SRP114766,PRJNA396480,Danio rerio Raw sequence reads,PRJNA396480,Other,A Reduced Zebrafish Transcriptome Method to Assess Environmental Toxicants Using Embryo Test,,,,,BPA,,breed:TU|isolation source:lab|collection date:2017 01 13|geo loc name:China|tissue:embryos|age:32hpf|identified by:BPA 10 1 batchA|BioSampleModel:Invertebrate,,,,,,,,,BPA batchA DMSO 3,14,14,solvent control for BPA treatments replication 3,,,AMPLICON,TRANSCRIPTOMIC,PCR,SINGLE,ION_TORRENT,Ion Torrent Proton,,SRP114766,,,BPA-batch1-DMSO-3.gz,fastq,128677198.0,1267014.0,BPA batchA DMSO 3.gz,0:101.56,A:30121409;C:34158183;G:33947254;T:30450352;N:0,101,,,,30121409,34158183,33947254,30450352,0,SRX3058342,SRS2404190,SRA595054,Zebrafish embryo|School of the environment,Zebrafish embryo,1,0.9747,,0.00038,,0.96997,,0.45436,,39,,B,,usable mapping rate,ion_torrent,ion_torrent,unknown,random_priming,unknown,bulk,unknown,unknown,,Unknown,2017-08-03,Pharyngula,Embryo,Embryo Imprecise,All anatomical structures
42981,SRR5892597,SRX3058341,SRS2404190,SRP114766,PRJNA396480,Danio rerio Raw sequence reads,PRJNA396480,Other,A Reduced Zebrafish Transcriptome Method to Assess Environmental Toxicants Using Embryo Test,,,,,BPA,,breed:TU|isolation source:lab|collection date:2017 01 13|geo loc name:China|tissue:embryos|age:32hpf|identified by:BPA 10 1 batchA|BioSampleModel:Invertebrate,,,,,,,,,BPA batchA DMSO 2,13,13,solvent control for BPA treatments replication 2,,,AMPLICON,TRANSCRIPTOMIC,PCR,SINGLE,ION_TORRENT,Ion Torrent Proton,,SRP114766,,,BPA-batch1-DMSO-2.gz,fastq,139753534.0,1344733.0,BPA batchA DMSO 2.gz,0:103.93,A:32634342;C:37124460;G:36974717;T:33020015;N:0,103,,,,32634342,37124460,36974717,33020015,0,SRX3058341,SRS2404190,SRA595054,Zebrafish embryo|School of the environment,Zebrafish embryo,1,0.96389,,0.0003,,0.97061,,0.4625,,130,,B,,usable mapping rate,ion_torrent,ion_torrent,unknown,random_priming,unknown,bulk,unknown,unknown,,Unknown,2017-08-03,Pharyngula,Embryo,Embryo Imprecise,All anatomical structures
42982,SRR5892598,SRX3058340,SRS2404190,SRP114766,PRJNA396480,Danio rerio Raw sequence reads,PRJNA396480,Other,A Reduced Zebrafish Transcriptome Method to Assess Environmental Toxicants Using Embryo Test,,,,,BPA,,breed:TU|isolation source:lab|collection date:2017 01 13|geo loc name:China|tissue:embryos|age:32hpf|identified by:BPA 10 1 batchA|BioSampleModel:Invertebrate,,,,,,,,,BPA batchA DMSO 1,12,12,solvent control for BPA treatments replication 1,,,AMPLICON,TRANSCRIPTOMIC,PCR,SINGLE,ION_TORRENT,Ion Torrent Proton,,SRP114766,,,BPA-batch1-DMSO-1.gz,fastq,87146396.0,838028.0,BPA batchA DMSO 1.gz,0:103.99,A:20425737;C:23194839;G:22979017;T:20546803;N:0,103,,,,20425737,23194839,22979017,20546803,0,SRX3058340,SRS2404190,SRA595054,Zebrafish embryo|School of the environment,Zebrafish embryo,1,0.96674,,0.00031,,0.97023,,0.45374,,293,,B,,usable mapping rate,ion_torrent,ion_torrent,unknown,random_priming,unknown,bulk,unknown,unknown,,Unknown,2017-08-03,Pharyngula,Embryo,Embryo Imprecise,All anatomical structures
42983,SRR5892599,SRX3058339,SRS2404190,SRP114766,PRJNA396480,Danio rerio Raw sequence reads,PRJNA396480,Other,A Reduced Zebrafish Transcriptome Method to Assess Environmental Toxicants Using Embryo Test,,,,,BPA,,breed:TU|isolation source:lab|collection date:2017 01 13|geo loc name:China|tissue:embryos|age:32hpf|identified by:BPA 10 1 batchA|BioSampleModel:Invertebrate,,,,,,,,,BPA batchA 0.00001米收,11,11,embryo post 8 32hpf 0.00001米收 BPA exposure,,,AMPLICON,TRANSCRIPTOMIC,PCR,SINGLE,ION_TORRENT,Ion Torrent Proton,,SRP114766,,,BPA-batch1-0.00001.gz,fastq,181136622.0,1697148.0,BPA batchA 0.00001.gz,0:106.73,A:42674421;C:48091657;G:47628809;T:42741735;N:0,106,,,,42674421,48091657,47628809,42741735,0,SRX3058339,SRS2404190,SRA595054,Zebrafish embryo|School of the environment,Zebrafish embryo,1,0.94555,,0.00034,,0.96995,,0.46606,,127,,B,,usable mapping rate,ion_torrent,ion_torrent,unknown,random_priming,unknown,bulk,unknown,unknown,,Unknown,2017-08-03,Pharyngula,Embryo,Embryo Imprecise,All anatomical structures
42984,SRR5892600,SRX3058338,SRS2404190,SRP114766,PRJNA396480,Danio rerio Raw sequence reads,PRJNA396480,Other,A Reduced Zebrafish Transcriptome Method to Assess Environmental Toxicants Using Embryo Test,,,,,BPA,,breed:TU|isolation source:lab|collection date:2017 01 13|geo loc name:China|tissue:embryos|age:32hpf|identified by:BPA 10 1 batchA|BioSampleModel:Invertebrate,,,,,,,,,BPA batchB DMSO 1,18,18,solvent control for BPA treatments replication 1 of second batch,,,AMPLICON,TRANSCRIPTOMIC,PCR,SINGLE,ION_TORRENT,Ion Torrent Proton,,SRP114766,,,BPA-batch2-DMSO-1.gz,fastq,190360408.0,1826565.0,BPA batchB DMSO 1.gz,0:104.22,A:45053834;C:50530050;G:49994950;T:44781574;N:0,104,,,,45053834,50530050,49994950,44781574,0,SRX3058338,SRS2404190,SRA595054,Zebrafish embryo|School of the environment,Zebrafish embryo,1,0.95851,,0.0005,,0.97064,,0.48533,,98,,B,,usable mapping rate,ion_torrent,ion_torrent,unknown,random_priming,unknown,bulk,unknown,unknown,,Unknown,2017-08-03,Pharyngula,Embryo,Embryo Imprecise,All anatomical structures
42985,SRR5892601,SRX3058337,SRS2404190,SRP114766,PRJNA396480,Danio rerio Raw sequence reads,PRJNA396480,Other,A Reduced Zebrafish Transcriptome Method to Assess Environmental Toxicants Using Embryo Test,,,,,BPA,,breed:TU|isolation source:lab|collection date:2017 01 13|geo loc name:China|tissue:embryos|age:32hpf|identified by:BPA 10 1 batchA|BioSampleModel:Invertebrate,,,,,,,,,BPA batchB 10米收 3,17,17,embryo post 8 32hpf 10米收 BPA exposure replication 3 of second batch,,,AMPLICON,TRANSCRIPTOMIC,PCR,SINGLE,ION_TORRENT,Ion Torrent Proton,,SRP114766,,,BPA-batch2-10-3.gz,fastq,129958171.0,1234884.0,BPA batchB 10 3.gz,0:105.24,A:30593687;C:34649249;G:33959196;T:30756039;N:0,105,,,,30593687,34649249,33959196,30756039,0,SRX3058337,SRS2404190,SRA595054,Zebrafish embryo|School of the environment,Zebrafish embryo,1,0.95837,,0.00038,,0.97021,,0.43259,,90,,B,,usable mapping rate,ion_torrent,ion_torrent,unknown,random_priming,unknown,bulk,unknown,unknown,,Unknown,2017-08-03,Pharyngula,Embryo,Embryo Imprecise,All anatomical structures
42986,SRR5892602,SRX3058336,SRS2404190,SRP114766,PRJNA396480,Danio rerio Raw sequence reads,PRJNA396480,Other,A Reduced Zebrafish Transcriptome Method to Assess Environmental Toxicants Using Embryo Test,,,,,BPA,,breed:TU|isolation source:lab|collection date:2017 01 13|geo loc name:China|tissue:embryos|age:32hpf|identified by:BPA 10 1 batchA|BioSampleModel:Invertebrate,,,,,,,,,BPA batchB 10米收 2,16,16,embryo post 8 32hpf 10米收 BPA exposure replication 2 of second batch,,,AMPLICON,TRANSCRIPTOMIC,PCR,SINGLE,ION_TORRENT,Ion Torrent Proton,,SRP114766,,,BPA-batch2-10-2.gz,fastq,111526287.0,1065508.0,BPA batchB 10 2.gz,,,,,,,,,,,,SRX3058336,SRS2404190,SRA595054,Zebrafish embryo|School of the environment,Zebrafish embryo,1,0.95874,,0.00036,,0.97088,,0.47485,,91,,B,,usable mapping rate,ion_torrent,ion_torrent,unknown,random_priming,unknown,bulk,unknown,unknown,,Unknown,2017-08-03,Pharyngula,Embryo,Embryo Imprecise,All anatomical structures
42987,SRR5892603,SRX3058335,SRS2404190,SRP114766,PRJNA396480,Danio rerio Raw sequence reads,PRJNA396480,Other,A Reduced Zebrafish Transcriptome Method to Assess Environmental Toxicants Using Embryo Test,,,,,BPA,,breed:TU|isolation source:lab|collection date:2017 01 13|geo loc name:China|tissue:embryos|age:32hpf|identified by:BPA 10 1 batchA|BioSampleModel:Invertebrate,,,,,,,,,BPA batchB 10米收 1,15,15,embryo post 8 32hpf 10米收 BPA exposure replication 1 of second batch,,,AMPLICON,TRANSCRIPTOMIC,PCR,SINGLE,ION_TORRENT,Ion Torrent Proton,,SRP114766,,,BPA-batch2-10-1.gz,fastq,148236004.0,1405950.0,BPA batchB 10 1.gz,0:105.43,A:34932381;C:39440691;G:38952209;T:34910723;N:0,105,,,,34932381,39440691,38952209,34910723,0,SRX3058335,SRS2404190,SRA595054,Zebrafish embryo|School of the environment,Zebrafish embryo,1,0.94847,,0.00039,,0.97104,,0.44543,,147,,B,,usable mapping rate,ion_torrent,ion_torrent,unknown,random_priming,unknown,bulk,unknown,unknown,,Unknown,2017-08-03,Pharyngula,Embryo,Embryo Imprecise,All anatomical structures
42988,SRR5892604,SRX3058334,SRS2404191,SRP114766,PRJNA396480,Danio rerio Raw sequence reads,PRJNA396480,Other,A Reduced Zebrafish Transcriptome Method to Assess Environmental Toxicants Using Embryo Test,,,,,RW,,breed:TU|isolation source:lab|collection date:2017 01 27|geo loc name:China|tissue:embryos|age:32hpf|identified by:RW REF10|BioSampleModel:Invertebrate,,,,,,,,,RW DMSO 1,58,58,solvent control for RW treatments replication 1,,,AMPLICON,TRANSCRIPTOMIC,PCR,SINGLE,ION_TORRENT,Ion Torrent Proton,,SRP114766,,,RW-DMSO-1.gz,fastq,90296522.0,881436.0,RW DMSO 1.gz,0:102.44,A:21245787;C:24001505;G:23627578;T:21421652;N:0,102,,,,21245787,24001505,23627578,21421652,0,SRX3058334,SRS2404191,SRA595054,Zebrafish embryo|School of the environment,Zebrafish embryo,1,0.97259,,0.00038,,0.97059,,0.46653,,89,,B,,usable mapping rate,ion_torrent,ion_torrent,unknown,random_priming,unknown,bulk,unknown,unknown,,Unknown,2017-08-03,Pharyngula,Embryo,Embryo Imprecise,All anatomical structures
42989,SRR5892605,SRX3058333,SRS2404191,SRP114766,PRJNA396480,Danio rerio Raw sequence reads,PRJNA396480,Other,A Reduced Zebrafish Transcriptome Method to Assess Environmental Toxicants Using Embryo Test,,,,,RW,,breed:TU|isolation source:lab|collection date:2017 01 27|geo loc name:China|tissue:embryos|age:32hpf|identified by:RW REF10|BioSampleModel:Invertebrate,,,,,,,,,RW REF0.00064,57,57,embryo post 8 32hpf 0.00064 REF RW exposure,,,AMPLICON,TRANSCRIPTOMIC,PCR,SINGLE,ION_TORRENT,Ion Torrent Proton,,SRP114766,,,RW-REF0.00064.gz,fastq,119148594.0,1136559.0,RW REF0.00064.gz,0:104.83,A:28408032;C:31308813;G:31437438;T:27994311;N:0,104,,,,28408032,31308813,31437438,27994311,0,SRX3058333,SRS2404191,SRA595054,Zebrafish embryo|School of the environment,Zebrafish embryo,1,0.96623,,0.00038,,0.97041,,0.46244,,99,,B,,usable mapping rate,ion_torrent,ion_torrent,unknown,random_priming,unknown,bulk,unknown,unknown,,Unknown,2017-08-03,Pharyngula,Embryo,Embryo Imprecise,All anatomical structures
42990,SRR5892606,SRX3058332,SRS2404190,SRP114766,PRJNA396480,Danio rerio Raw sequence reads,PRJNA396480,Other,A Reduced Zebrafish Transcriptome Method to Assess Environmental Toxicants Using Embryo Test,,,,,BPA,,breed:TU|isolation source:lab|collection date:2017 01 13|geo loc name:China|tissue:embryos|age:32hpf|identified by:BPA 10 1 batchA|BioSampleModel:Invertebrate,,,,,,,,,BPA batchB DMSO 3,20,20,solvent control for BPA treatments replication 3 of second batch,,,AMPLICON,TRANSCRIPTOMIC,PCR,SINGLE,ION_TORRENT,Ion Torrent Proton,,SRP114766,,,BPA-batch2-DMSO-3.gz,fastq,132185040.0,1292999.0,BPA batchB DMSO 3.gz,0:102.23,A:31141243;C:35151786;G:34801554;T:31090457;N:0,102,,,,31141243,35151786,34801554,31090457,0,SRX3058332,SRS2404190,SRA595054,Zebrafish embryo|School of the environment,Zebrafish embryo,1,0.96648,,0.00044,,0.9712,,0.46006,,89,,B,,usable mapping rate,ion_torrent,ion_torrent,unknown,random_priming,unknown,bulk,unknown,unknown,,Unknown,2017-08-03,Pharyngula,Embryo,Embryo Imprecise,All anatomical structures
42991,SRR5892607,SRX3058331,SRS2404190,SRP114766,PRJNA396480,Danio rerio Raw sequence reads,PRJNA396480,Other,A Reduced Zebrafish Transcriptome Method to Assess Environmental Toxicants Using Embryo Test,,,,,BPA,,breed:TU|isolation source:lab|collection date:2017 01 13|geo loc name:China|tissue:embryos|age:32hpf|identified by:BPA 10 1 batchA|BioSampleModel:Invertebrate,,,,,,,,,BPA batchB DMSO 2,19,19,solvent control for BPA treatments replication 2 of second batch,,,AMPLICON,TRANSCRIPTOMIC,PCR,SINGLE,ION_TORRENT,Ion Torrent Proton,,SRP114766,,,BPA-batch2-DMSO-2.gz,fastq,198715047.0,1945773.0,BPA batchB DMSO 2.gz,0:102.13,A:46860862;C:52753060;G:52418957;T:46682168;N:0,102,,,,46860862,52753060,52418957,46682168,0,SRX3058331,SRS2404190,SRA595054,Zebrafish embryo|School of the environment,Zebrafish embryo,1,0.96434,,0.00054,,0.97102,,0.48108,,89,,B,,usable mapping rate,ion_torrent,ion_torrent,unknown,random_priming,unknown,bulk,unknown,unknown,,Unknown,2017-08-03,Pharyngula,Embryo,Embryo Imprecise,All anatomical structures
42992,SRR5892608,SRX3058330,SRS2404191,SRP114766,PRJNA396480,Danio rerio Raw sequence reads,PRJNA396480,Other,A Reduced Zebrafish Transcriptome Method to Assess Environmental Toxicants Using Embryo Test,,,,,RW,,breed:TU|isolation source:lab|collection date:2017 01 27|geo loc name:China|tissue:embryos|age:32hpf|identified by:RW REF10|BioSampleModel:Invertebrate,,,,,,,,,RW REF0.08,54,54,embryo post 8 32hpf 0.08 REF RW exposure,,,AMPLICON,TRANSCRIPTOMIC,PCR,SINGLE,ION_TORRENT,Ion Torrent Proton,,SRP114766,,,RW-REF0.08.gz,fastq,127136654.0,1214911.0,RW REF0.08.gz,0:104.65,A:30233425;C:33478062;G:33472258;T:29952909;N:0,104,,,,30233425,33478062,33472258,29952909,0,SRX3058330,SRS2404191,SRA595054,Zebrafish embryo|School of the environment,Zebrafish embryo,1,0.96691,,0.0003,,0.97055,,0.46819,,99,,B,,usable mapping rate,ion_torrent,ion_torrent,unknown,random_priming,unknown,bulk,unknown,unknown,,Unknown,2017-08-03,Pharyngula,Embryo,Embryo Imprecise,All anatomical structures
42993,SRR5892609,SRX3058329,SRS2404191,SRP114766,PRJNA396480,Danio rerio Raw sequence reads,PRJNA396480,Other,A Reduced Zebrafish Transcriptome Method to Assess Environmental Toxicants Using Embryo Test,,,,,RW,,breed:TU|isolation source:lab|collection date:2017 01 27|geo loc name:China|tissue:embryos|age:32hpf|identified by:RW REF10|BioSampleModel:Invertebrate,,,,,,,,,RW REF0.4,53,53,embryo post 8 32hpf 0.4 REF RW exposure,,,AMPLICON,TRANSCRIPTOMIC,PCR,SINGLE,ION_TORRENT,Ion Torrent Proton,,SRP114766,,,RW-REF0.4.gz,fastq,129289322.0,1244319.0,RW REF0.4.gz,0:103.90,A:30777918;C:34167997;G:33984655;T:30358752;N:0,103,,,,30777918,34167997,33984655,30358752,0,SRX3058329,SRS2404191,SRA595054,Zebrafish embryo|School of the environment,Zebrafish embryo,1,0.97109,,0.00047,,0.97068,,0.45379,,99,,B,,usable mapping rate,ion_torrent,ion_torrent,unknown,random_priming,unknown,bulk,unknown,unknown,,Unknown,2017-08-03,Pharyngula,Embryo,Embryo Imprecise,All anatomical structures
42994,SRR5892610,SRX3058328,SRS2404191,SRP114766,PRJNA396480,Danio rerio Raw sequence reads,PRJNA396480,Other,A Reduced Zebrafish Transcriptome Method to Assess Environmental Toxicants Using Embryo Test,,,,,RW,,breed:TU|isolation source:lab|collection date:2017 01 27|geo loc name:China|tissue:embryos|age:32hpf|identified by:RW REF10|BioSampleModel:Invertebrate,,,,,,,,,RW REF2,52,52,embryo post 8 32hpf 2 REF RW exposure,,,AMPLICON,TRANSCRIPTOMIC,PCR,SINGLE,ION_TORRENT,Ion Torrent Proton,,SRP114766,,,RW-REF2.gz,fastq,135626205.0,1336064.0,RW REF2.gz,0:101.51,A:31940807;C:35945322;G:35661876;T:32078200;N:0,101,,,,31940807,35945322,35661876,32078200,0,SRX3058328,SRS2404191,SRA595054,Zebrafish embryo|School of the environment,Zebrafish embryo,1,0.97398,,0.00037,,0.971,,0.44795,,101,,B,,usable mapping rate,ion_torrent,ion_torrent,unknown,random_priming,unknown,bulk,unknown,unknown,,Unknown,2017-08-03,Pharyngula,Embryo,Embryo Imprecise,All anatomical structures
42995,SRR5892611,SRX3058327,SRS2404191,SRP114766,PRJNA396480,Danio rerio Raw sequence reads,PRJNA396480,Other,A Reduced Zebrafish Transcriptome Method to Assess Environmental Toxicants Using Embryo Test,,,,,RW,,breed:TU|isolation source:lab|collection date:2017 01 27|geo loc name:China|tissue:embryos|age:32hpf|identified by:RW REF10|BioSampleModel:Invertebrate,,,,,,,,,RW REF10,51,51,embryo post 8 32hpf 10 REF RW exposure,,,AMPLICON,TRANSCRIPTOMIC,PCR,SINGLE,ION_TORRENT,Ion Torrent Proton,,SRP114766,,,RW-REF10.gz,fastq,114472762.0,1101957.0,RW REF10.gz,0:103.88,A:27165344;C:30313463;G:29951959;T:27041996;N:0,103,,,,27165344,30313463,29951959,27041996,0,SRX3058327,SRS2404191,SRA595054,Zebrafish embryo|School of the environment,Zebrafish embryo,1,0.96908,,0.0003,,0.9709,,0.47528,,94,,B,,usable mapping rate,ion_torrent,ion_torrent,unknown,random_priming,unknown,bulk,unknown,unknown,,Unknown,2017-08-03,Pharyngula,Embryo,Embryo Imprecise,All anatomical structures
42996,SRR5892612,SRX3058326,SRS2404191,SRP114766,PRJNA396480,Danio rerio Raw sequence reads,PRJNA396480,Other,A Reduced Zebrafish Transcriptome Method to Assess Environmental Toxicants Using Embryo Test,,,,,RW,,breed:TU|isolation source:lab|collection date:2017 01 27|geo loc name:China|tissue:embryos|age:32hpf|identified by:RW REF10|BioSampleModel:Invertebrate,,,,,,,,,RW REF0.0032,56,56,embryo post 8 32hpf 0.0032 REF RW exposure,,,AMPLICON,TRANSCRIPTOMIC,PCR,SINGLE,ION_TORRENT,Ion Torrent Proton,,SRP114766,,,RW-REF0.0032.gz,fastq,132020159.0,1278212.0,RW REF0.0032.gz,0:103.29,A:31188115;C:34954540;G:34762155;T:31115349;N:0,103,,,,31188115,34954540,34762155,31115349,0,SRX3058326,SRS2404191,SRA595054,Zebrafish embryo|School of the environment,Zebrafish embryo,1,0.96987,,0.00023,,0.97128,,0.4595,,99,,B,,usable mapping rate,ion_torrent,ion_torrent,unknown,random_priming,unknown,bulk,unknown,unknown,,Unknown,2017-08-03,Pharyngula,Embryo,Embryo Imprecise,All anatomical structures