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
8092,ERR2402432,ERX2443286,ERS2295360,ERP107516,PRJEB25583,The transcriptome of Gfi1aa and/or Gfi1b depleted primitive red blood cells in zebrafish embryos,ena-STUDY-DPSQ-14-03-2018-19:09:10:340-151,Other,The zebrafish gene trap line qmc551 carries a gene trap transposon in intron 1 of the gene gfi1aa which a encodes a transcriptional repressor. The presence of the transposon interferes with the transcription of the gfi1aa gene during haematopoiesis. Despite the lack of Gfi1aa expression primitive red blood cell development appears to be normal due to functional redundancy with a second gene called gfi1b. Loss of Gfi1aa and Gfi1b protein expression in embryos that are homozygous for qmc551 and injected with gfi1b morpholinos leads to maturation defects in primitive red blood cells. Here we performed an RNA sequencing experiment to study the early programming of Gfi1aa and/or Gfi1b depleted primitive red blood cells. For this purpose we made use of the gene trap's gfp reporter gene expression in the primitive red blood cells to isolate these cells by fluorescence activated cell sorting from either qmc551 heterozygous or homozygous 20 hpf embryos that were or were not injected with the gfi1b morpholinos at the one cell stage. Batches of 200 embryos were dissociated in a Liberase Blendzyme solution. GFP positive primitive red blood cells were isolated by fluorescence activated cell sorting. 3 samples of between 1700 and 4000 cells were collected per batch. Total RNA was isolated from the cells of each of the 4 x 3 samples Het1 3 HetMO1 3 Hom1 3 and HomMO1 3 and used to generate full length cDNA of polyadenylated transcripts. Following cDNA amplification and library preparation paired end 75 bp reads were generated on the Illumina NextSeq500 sequencing platform.,ENA FIRST PUBLIC:2018 10 12|ENA LAST UPDATE:2018 03 14,,Hom MO rep3,Gfi1aa and/or Gfi1b depleted primitive red blood cells in zebrafish embryos,SAMEA104693977,DPSQ,ENA FIRST PUBLIC:2018 10 12T17:03:15Z|ENA LAST UPDATE:2018 03 14T19:09:14Z|External Id:SAMEA104693977|INSDC center name:DPSQ|INSDC first public:2018 10 12T17:03:15Z|INSDC last update:2018 03 14T19:09:14Z|INSDC status:public|Submitter Id:CM12|common name:zebrafish|sample name:CM12|scientific name:Danio rerio,,,,,,,,,NextSeq 500 paired end sequencing,ena EXPERIMENT DPSQ 14 03 2018 19:09:09:420 12,unspecified,1,,,RNA-Seq,TRANSCRIPTOMIC,Oligo-dT,PAIRED,ILLUMINA,NextSeq 500,,ERP107516,NextSeq 500 paired end sequencing,ENA FIRST PUBLIC:2018 10 12|ENA LAST UPDATE:2018 11 16,CM12.trimmed.read_1.fastq.gz CM12.trimmed.read_2.fastq.gz,fastq fastq,5384061477.0,38388598.0,ena RUN DPSQ 14 03 2018 19:09:09:420 12,0:70.70 1:69.55,A:1490429493;C:1197976503;G:1220014984;T:1475615043;N:25454,70,69,,,1490429493,1197976503,1220014984,1475615043,25454,ERX2443286,ERS2295360,ERA1246315,European Nucleotide Archive,"Deep Seq department, Centre for Genetics and Genomics, The University of Nottingham, United Kingdom",2,0.92285,0.9206,0.06862,0.0688,0.73983,0.74566,0.4752,0.49125,76,75,B,B,biological fallback assumption,illumina,nextseq,full_length,poly_a,unknown,bulk,unknown,unknown,,United Kingdom,2018-03-14,Undetermined,Embryo,Blood,Hematopoietic System
8093,ERR2402431,ERX2443285,ERS2295359,ERP107516,PRJEB25583,The transcriptome of Gfi1aa and/or Gfi1b depleted primitive red blood cells in zebrafish embryos,ena-STUDY-DPSQ-14-03-2018-19:09:10:340-151,Other,The zebrafish gene trap line qmc551 carries a gene trap transposon in intron 1 of the gene gfi1aa which a encodes a transcriptional repressor. The presence of the transposon interferes with the transcription of the gfi1aa gene during haematopoiesis. Despite the lack of Gfi1aa expression primitive red blood cell development appears to be normal due to functional redundancy with a second gene called gfi1b. Loss of Gfi1aa and Gfi1b protein expression in embryos that are homozygous for qmc551 and injected with gfi1b morpholinos leads to maturation defects in primitive red blood cells. Here we performed an RNA sequencing experiment to study the early programming of Gfi1aa and/or Gfi1b depleted primitive red blood cells. For this purpose we made use of the gene trap's gfp reporter gene expression in the primitive red blood cells to isolate these cells by fluorescence activated cell sorting from either qmc551 heterozygous or homozygous 20 hpf embryos that were or were not injected with the gfi1b morpholinos at the one cell stage. Batches of 200 embryos were dissociated in a Liberase Blendzyme solution. GFP positive primitive red blood cells were isolated by fluorescence activated cell sorting. 3 samples of between 1700 and 4000 cells were collected per batch. Total RNA was isolated from the cells of each of the 4 x 3 samples Het1 3 HetMO1 3 Hom1 3 and HomMO1 3 and used to generate full length cDNA of polyadenylated transcripts. Following cDNA amplification and library preparation paired end 75 bp reads were generated on the Illumina NextSeq500 sequencing platform.,ENA FIRST PUBLIC:2018 10 12|ENA LAST UPDATE:2018 03 14,,Hom MO rep2,Gfi1aa and/or Gfi1b depleted primitive red blood cells in zebrafish embryos,SAMEA104693976,DPSQ,ENA FIRST PUBLIC:2018 10 12T17:03:15Z|ENA LAST UPDATE:2018 03 14T19:09:14Z|External Id:SAMEA104693976|INSDC center name:DPSQ|INSDC first public:2018 10 12T17:03:15Z|INSDC last update:2018 03 14T19:09:14Z|INSDC status:public|Submitter Id:CM11|common name:zebrafish|sample name:CM11|scientific name:Danio rerio,,,,,,,,,NextSeq 500 paired end sequencing,ena EXPERIMENT DPSQ 14 03 2018 19:09:09:420 11,unspecified,1,,,RNA-Seq,TRANSCRIPTOMIC,Oligo-dT,PAIRED,ILLUMINA,NextSeq 500,,ERP107516,NextSeq 500 paired end sequencing,ENA FIRST PUBLIC:2018 10 12|ENA LAST UPDATE:2018 11 16,CM11.trimmed.read_1.fastq.gz CM11.trimmed.read_2.fastq.gz,fastq fastq,5472085589.0,38860681.0,ena RUN DPSQ 14 03 2018 19:09:09:420 11,0:70.98 1:69.83,A:1514986213;C:1217661004;G:1240412104;T:1499000816;N:25452,70,69,,,1514986213,1217661004,1240412104,1499000816,25452,ERX2443285,ERS2295359,ERA1246315,European Nucleotide Archive,"Deep Seq department, Centre for Genetics and Genomics, The University of Nottingham, United Kingdom",2,0.91987,0.91874,0.0693,0.07042,0.74042,0.74629,0.48229,0.49144,76,76,B,B,biological fallback assumption,illumina,nextseq,full_length,poly_a,unknown,bulk,unknown,unknown,,United Kingdom,2018-03-14,Undetermined,Embryo,Blood,Hematopoietic System
8094,ERR2402430,ERX2443284,ERS2295358,ERP107516,PRJEB25583,The transcriptome of Gfi1aa and/or Gfi1b depleted primitive red blood cells in zebrafish embryos,ena-STUDY-DPSQ-14-03-2018-19:09:10:340-151,Other,The zebrafish gene trap line qmc551 carries a gene trap transposon in intron 1 of the gene gfi1aa which a encodes a transcriptional repressor. The presence of the transposon interferes with the transcription of the gfi1aa gene during haematopoiesis. Despite the lack of Gfi1aa expression primitive red blood cell development appears to be normal due to functional redundancy with a second gene called gfi1b. Loss of Gfi1aa and Gfi1b protein expression in embryos that are homozygous for qmc551 and injected with gfi1b morpholinos leads to maturation defects in primitive red blood cells. Here we performed an RNA sequencing experiment to study the early programming of Gfi1aa and/or Gfi1b depleted primitive red blood cells. For this purpose we made use of the gene trap's gfp reporter gene expression in the primitive red blood cells to isolate these cells by fluorescence activated cell sorting from either qmc551 heterozygous or homozygous 20 hpf embryos that were or were not injected with the gfi1b morpholinos at the one cell stage. Batches of 200 embryos were dissociated in a Liberase Blendzyme solution. GFP positive primitive red blood cells were isolated by fluorescence activated cell sorting. 3 samples of between 1700 and 4000 cells were collected per batch. Total RNA was isolated from the cells of each of the 4 x 3 samples Het1 3 HetMO1 3 Hom1 3 and HomMO1 3 and used to generate full length cDNA of polyadenylated transcripts. Following cDNA amplification and library preparation paired end 75 bp reads were generated on the Illumina NextSeq500 sequencing platform.,ENA FIRST PUBLIC:2018 10 12|ENA LAST UPDATE:2018 03 14,,Hom MO rep1,Gfi1aa and/or Gfi1b depleted primitive red blood cells in zebrafish embryos,SAMEA104693975,DPSQ,ENA FIRST PUBLIC:2018 10 12T17:03:15Z|ENA LAST UPDATE:2018 03 14T19:09:14Z|External Id:SAMEA104693975|INSDC center name:DPSQ|INSDC first public:2018 10 12T17:03:15Z|INSDC last update:2018 03 14T19:09:14Z|INSDC status:public|Submitter Id:CM10|common name:zebrafish|sample name:CM10|scientific name:Danio rerio,,,,,,,,,NextSeq 500 paired end sequencing,ena EXPERIMENT DPSQ 14 03 2018 19:09:09:420 10,unspecified,1,,,RNA-Seq,TRANSCRIPTOMIC,Oligo-dT,PAIRED,ILLUMINA,NextSeq 500,,ERP107516,NextSeq 500 paired end sequencing,ENA FIRST PUBLIC:2018 10 12|ENA LAST UPDATE:2018 11 16,CM10.trimmed.read_1.fastq.gz CM10.trimmed.read_2.fastq.gz,fastq fastq,6091085806.0,43064771.0,ena RUN DPSQ 14 03 2018 19:09:09:420 10,0:71.33 1:70.11,A:1692450462;C:1348639943;G:1375433963;T:1674532019;N:29419,71,70,,,1692450462,1348639943,1375433963,1674532019,29419,ERX2443284,ERS2295358,ERA1246315,European Nucleotide Archive,"Deep Seq department, Centre for Genetics and Genomics, The University of Nottingham, United Kingdom",2,0.92184,0.92064,0.0699,0.0704,0.74286,0.74874,0.48978,0.48997,75,73,B,B,biological fallback assumption,illumina,nextseq,full_length,poly_a,unknown,bulk,unknown,unknown,,United Kingdom,2018-03-14,Undetermined,Embryo,Blood,Hematopoietic System
8095,ERR2402429,ERX2443283,ERS2295357,ERP107516,PRJEB25583,The transcriptome of Gfi1aa and/or Gfi1b depleted primitive red blood cells in zebrafish embryos,ena-STUDY-DPSQ-14-03-2018-19:09:10:340-151,Other,The zebrafish gene trap line qmc551 carries a gene trap transposon in intron 1 of the gene gfi1aa which a encodes a transcriptional repressor. The presence of the transposon interferes with the transcription of the gfi1aa gene during haematopoiesis. Despite the lack of Gfi1aa expression primitive red blood cell development appears to be normal due to functional redundancy with a second gene called gfi1b. Loss of Gfi1aa and Gfi1b protein expression in embryos that are homozygous for qmc551 and injected with gfi1b morpholinos leads to maturation defects in primitive red blood cells. Here we performed an RNA sequencing experiment to study the early programming of Gfi1aa and/or Gfi1b depleted primitive red blood cells. For this purpose we made use of the gene trap's gfp reporter gene expression in the primitive red blood cells to isolate these cells by fluorescence activated cell sorting from either qmc551 heterozygous or homozygous 20 hpf embryos that were or were not injected with the gfi1b morpholinos at the one cell stage. Batches of 200 embryos were dissociated in a Liberase Blendzyme solution. GFP positive primitive red blood cells were isolated by fluorescence activated cell sorting. 3 samples of between 1700 and 4000 cells were collected per batch. Total RNA was isolated from the cells of each of the 4 x 3 samples Het1 3 HetMO1 3 Hom1 3 and HomMO1 3 and used to generate full length cDNA of polyadenylated transcripts. Following cDNA amplification and library preparation paired end 75 bp reads were generated on the Illumina NextSeq500 sequencing platform.,ENA FIRST PUBLIC:2018 10 12|ENA LAST UPDATE:2018 03 14,,Hom uninj rep3,Gfi1aa and/or Gfi1b depleted primitive red blood cells in zebrafish embryos,SAMEA104693974,DPSQ,ENA FIRST PUBLIC:2018 10 12T17:03:15Z|ENA LAST UPDATE:2018 03 14T19:09:14Z|External Id:SAMEA104693974|INSDC center name:DPSQ|INSDC first public:2018 10 12T17:03:15Z|INSDC last update:2018 03 14T19:09:14Z|INSDC status:public|Submitter Id:CM9|common name:zebrafish|sample name:CM9|scientific name:Danio rerio,,,,,,,,,NextSeq 500 paired end sequencing,ena EXPERIMENT DPSQ 14 03 2018 19:09:09:420 9,unspecified,1,,,RNA-Seq,TRANSCRIPTOMIC,Oligo-dT,PAIRED,ILLUMINA,NextSeq 500,,ERP107516,NextSeq 500 paired end sequencing,ENA FIRST PUBLIC:2018 10 12|ENA LAST UPDATE:2018 11 16,CM9.trimmed.read_1.fastq.gz CM9.trimmed.read_2.fastq.gz,fastq fastq,6329252570.0,45070159.0,ena RUN DPSQ 14 03 2018 19:09:09:420 9,0:70.79 1:69.64,A:1753489708;C:1407193617;G:1433449502;T:1735090181;N:29562,70,69,,,1753489708,1407193617,1433449502,1735090181,29562,ERX2443283,ERS2295357,ERA1246315,European Nucleotide Archive,"Deep Seq department, Centre for Genetics and Genomics, The University of Nottingham, United Kingdom",2,0.91683,0.91616,0.06775,0.06825,0.75158,0.75737,0.49386,0.49199,76,75,B,B,biological fallback assumption,illumina,nextseq,full_length,poly_a,unknown,bulk,unknown,unknown,,United Kingdom,2018-03-14,Undetermined,Embryo,Blood,Hematopoietic System
8096,ERR2402428,ERX2443282,ERS2295356,ERP107516,PRJEB25583,The transcriptome of Gfi1aa and/or Gfi1b depleted primitive red blood cells in zebrafish embryos,ena-STUDY-DPSQ-14-03-2018-19:09:10:340-151,Other,The zebrafish gene trap line qmc551 carries a gene trap transposon in intron 1 of the gene gfi1aa which a encodes a transcriptional repressor. The presence of the transposon interferes with the transcription of the gfi1aa gene during haematopoiesis. Despite the lack of Gfi1aa expression primitive red blood cell development appears to be normal due to functional redundancy with a second gene called gfi1b. Loss of Gfi1aa and Gfi1b protein expression in embryos that are homozygous for qmc551 and injected with gfi1b morpholinos leads to maturation defects in primitive red blood cells. Here we performed an RNA sequencing experiment to study the early programming of Gfi1aa and/or Gfi1b depleted primitive red blood cells. For this purpose we made use of the gene trap's gfp reporter gene expression in the primitive red blood cells to isolate these cells by fluorescence activated cell sorting from either qmc551 heterozygous or homozygous 20 hpf embryos that were or were not injected with the gfi1b morpholinos at the one cell stage. Batches of 200 embryos were dissociated in a Liberase Blendzyme solution. GFP positive primitive red blood cells were isolated by fluorescence activated cell sorting. 3 samples of between 1700 and 4000 cells were collected per batch. Total RNA was isolated from the cells of each of the 4 x 3 samples Het1 3 HetMO1 3 Hom1 3 and HomMO1 3 and used to generate full length cDNA of polyadenylated transcripts. Following cDNA amplification and library preparation paired end 75 bp reads were generated on the Illumina NextSeq500 sequencing platform.,ENA FIRST PUBLIC:2018 10 12|ENA LAST UPDATE:2018 03 14,,Hom uninj rep2,Gfi1aa and/or Gfi1b depleted primitive red blood cells in zebrafish embryos,SAMEA104693973,DPSQ,ENA FIRST PUBLIC:2018 10 12T17:03:15Z|ENA LAST UPDATE:2018 03 14T19:09:14Z|External Id:SAMEA104693973|INSDC center name:DPSQ|INSDC first public:2018 10 12T17:03:15Z|INSDC last update:2018 03 14T19:09:14Z|INSDC status:public|Submitter Id:CM8|common name:zebrafish|sample name:CM8|scientific name:Danio rerio,,,,,,,,,NextSeq 500 paired end sequencing,ena EXPERIMENT DPSQ 14 03 2018 19:09:09:420 8,unspecified,1,,,RNA-Seq,TRANSCRIPTOMIC,Oligo-dT,PAIRED,ILLUMINA,NextSeq 500,,ERP107516,NextSeq 500 paired end sequencing,ENA FIRST PUBLIC:2018 10 12|ENA LAST UPDATE:2018 11 16,CM8.trimmed.read_1.fastq.gz CM8.trimmed.read_2.fastq.gz,fastq fastq,5405185494.0,38637007.0,ena RUN DPSQ 14 03 2018 19:09:09:420 8,0:70.45 1:69.44,A:1491577735;C:1206599147;G:1229354248;T:1477628006;N:26358,70,69,,,1491577735,1206599147,1229354248,1477628006,26358,ERX2443282,ERS2295356,ERA1246315,European Nucleotide Archive,"Deep Seq department, Centre for Genetics and Genomics, The University of Nottingham, United Kingdom",2,0.91776,0.91567,0.07134,0.07241,0.7517,0.75716,0.47952,0.48745,73,73,B,B,biological fallback assumption,illumina,nextseq,full_length,poly_a,unknown,bulk,unknown,unknown,,United Kingdom,2018-03-14,Undetermined,Embryo,Blood,Hematopoietic System
8097,ERR2402427,ERX2443281,ERS2295355,ERP107516,PRJEB25583,The transcriptome of Gfi1aa and/or Gfi1b depleted primitive red blood cells in zebrafish embryos,ena-STUDY-DPSQ-14-03-2018-19:09:10:340-151,Other,The zebrafish gene trap line qmc551 carries a gene trap transposon in intron 1 of the gene gfi1aa which a encodes a transcriptional repressor. The presence of the transposon interferes with the transcription of the gfi1aa gene during haematopoiesis. Despite the lack of Gfi1aa expression primitive red blood cell development appears to be normal due to functional redundancy with a second gene called gfi1b. Loss of Gfi1aa and Gfi1b protein expression in embryos that are homozygous for qmc551 and injected with gfi1b morpholinos leads to maturation defects in primitive red blood cells. Here we performed an RNA sequencing experiment to study the early programming of Gfi1aa and/or Gfi1b depleted primitive red blood cells. For this purpose we made use of the gene trap's gfp reporter gene expression in the primitive red blood cells to isolate these cells by fluorescence activated cell sorting from either qmc551 heterozygous or homozygous 20 hpf embryos that were or were not injected with the gfi1b morpholinos at the one cell stage. Batches of 200 embryos were dissociated in a Liberase Blendzyme solution. GFP positive primitive red blood cells were isolated by fluorescence activated cell sorting. 3 samples of between 1700 and 4000 cells were collected per batch. Total RNA was isolated from the cells of each of the 4 x 3 samples Het1 3 HetMO1 3 Hom1 3 and HomMO1 3 and used to generate full length cDNA of polyadenylated transcripts. Following cDNA amplification and library preparation paired end 75 bp reads were generated on the Illumina NextSeq500 sequencing platform.,ENA FIRST PUBLIC:2018 10 12|ENA LAST UPDATE:2018 03 14,,Hom uninj rep1,Gfi1aa and/or Gfi1b depleted primitive red blood cells in zebrafish embryos,SAMEA104693972,DPSQ,ENA FIRST PUBLIC:2018 10 12T17:03:15Z|ENA LAST UPDATE:2018 03 14T19:09:14Z|External Id:SAMEA104693972|INSDC center name:DPSQ|INSDC first public:2018 10 12T17:03:15Z|INSDC last update:2018 03 14T19:09:14Z|INSDC status:public|Submitter Id:CM7|common name:zebrafish|sample name:CM7|scientific name:Danio rerio,,,,,,,,,NextSeq 500 paired end sequencing,ena EXPERIMENT DPSQ 14 03 2018 19:09:09:420 7,unspecified,1,,,RNA-Seq,TRANSCRIPTOMIC,Oligo-dT,PAIRED,ILLUMINA,NextSeq 500,,ERP107516,NextSeq 500 paired end sequencing,ENA FIRST PUBLIC:2018 10 12|ENA LAST UPDATE:2018 11 16,CM7.trimmed.read_1.fastq.gz CM7.trimmed.read_2.fastq.gz,fastq fastq,6262947202.0,44863127.0,ena RUN DPSQ 14 03 2018 19:09:09:420 7,0:70.28 1:69.32,A:1732018658;C:1394742098;G:1420957611;T:1715198292;N:30543,70,69,,,1732018658,1394742098,1420957611,1715198292,30543,ERX2443281,ERS2295355,ERA1246315,European Nucleotide Archive,"Deep Seq department, Centre for Genetics and Genomics, The University of Nottingham, United Kingdom",2,0.91622,0.9144,0.0754,0.07588,0.74886,0.75371,0.48672,0.48471,76,76,B,B,biological fallback assumption,illumina,nextseq,full_length,poly_a,unknown,bulk,unknown,unknown,,United Kingdom,2018-03-14,Undetermined,Embryo,Blood,Hematopoietic System
8098,ERR2402426,ERX2443280,ERS2295354,ERP107516,PRJEB25583,The transcriptome of Gfi1aa and/or Gfi1b depleted primitive red blood cells in zebrafish embryos,ena-STUDY-DPSQ-14-03-2018-19:09:10:340-151,Other,The zebrafish gene trap line qmc551 carries a gene trap transposon in intron 1 of the gene gfi1aa which a encodes a transcriptional repressor. The presence of the transposon interferes with the transcription of the gfi1aa gene during haematopoiesis. Despite the lack of Gfi1aa expression primitive red blood cell development appears to be normal due to functional redundancy with a second gene called gfi1b. Loss of Gfi1aa and Gfi1b protein expression in embryos that are homozygous for qmc551 and injected with gfi1b morpholinos leads to maturation defects in primitive red blood cells. Here we performed an RNA sequencing experiment to study the early programming of Gfi1aa and/or Gfi1b depleted primitive red blood cells. For this purpose we made use of the gene trap's gfp reporter gene expression in the primitive red blood cells to isolate these cells by fluorescence activated cell sorting from either qmc551 heterozygous or homozygous 20 hpf embryos that were or were not injected with the gfi1b morpholinos at the one cell stage. Batches of 200 embryos were dissociated in a Liberase Blendzyme solution. GFP positive primitive red blood cells were isolated by fluorescence activated cell sorting. 3 samples of between 1700 and 4000 cells were collected per batch. Total RNA was isolated from the cells of each of the 4 x 3 samples Het1 3 HetMO1 3 Hom1 3 and HomMO1 3 and used to generate full length cDNA of polyadenylated transcripts. Following cDNA amplification and library preparation paired end 75 bp reads were generated on the Illumina NextSeq500 sequencing platform.,ENA FIRST PUBLIC:2018 10 12|ENA LAST UPDATE:2018 03 14,,Het MO rep3,Gfi1aa and/or Gfi1b depleted primitive red blood cells in zebrafish embryos,SAMEA104693971,DPSQ,ENA FIRST PUBLIC:2018 10 12T17:03:15Z|ENA LAST UPDATE:2018 03 14T19:09:14Z|External Id:SAMEA104693971|INSDC center name:DPSQ|INSDC first public:2018 10 12T17:03:15Z|INSDC last update:2018 03 14T19:09:14Z|INSDC status:public|Submitter Id:CM6|common name:zebrafish|sample name:CM6|scientific name:Danio rerio,,,,,,,,,NextSeq 500 paired end sequencing,ena EXPERIMENT DPSQ 14 03 2018 19:09:09:420 6,unspecified,1,,,RNA-Seq,TRANSCRIPTOMIC,Oligo-dT,PAIRED,ILLUMINA,NextSeq 500,,ERP107516,NextSeq 500 paired end sequencing,ENA FIRST PUBLIC:2018 10 12|ENA LAST UPDATE:2018 11 16,CM6.trimmed.read_1.fastq.gz CM6.trimmed.read_2.fastq.gz,fastq fastq,5819615834.0,41591499.0,ena RUN DPSQ 14 03 2018 19:09:09:420 6,0:70.47 1:69.45,A:1594833553;C:1309877713;G:1335153588;T:1579722744;N:28236,70,69,,,1594833553,1309877713,1335153588,1579722744,28236,ERX2443280,ERS2295354,ERA1246315,European Nucleotide Archive,"Deep Seq department, Centre for Genetics and Genomics, The University of Nottingham, United Kingdom",2,0.92,0.9183,0.0573,0.05793,0.77362,0.778,0.47792,0.46987,76,75,B,B,biological fallback assumption,illumina,nextseq,full_length,poly_a,unknown,bulk,unknown,unknown,,United Kingdom,2018-03-14,Undetermined,Embryo,Blood,Hematopoietic System
8099,ERR2402425,ERX2443279,ERS2295353,ERP107516,PRJEB25583,The transcriptome of Gfi1aa and/or Gfi1b depleted primitive red blood cells in zebrafish embryos,ena-STUDY-DPSQ-14-03-2018-19:09:10:340-151,Other,The zebrafish gene trap line qmc551 carries a gene trap transposon in intron 1 of the gene gfi1aa which a encodes a transcriptional repressor. The presence of the transposon interferes with the transcription of the gfi1aa gene during haematopoiesis. Despite the lack of Gfi1aa expression primitive red blood cell development appears to be normal due to functional redundancy with a second gene called gfi1b. Loss of Gfi1aa and Gfi1b protein expression in embryos that are homozygous for qmc551 and injected with gfi1b morpholinos leads to maturation defects in primitive red blood cells. Here we performed an RNA sequencing experiment to study the early programming of Gfi1aa and/or Gfi1b depleted primitive red blood cells. For this purpose we made use of the gene trap's gfp reporter gene expression in the primitive red blood cells to isolate these cells by fluorescence activated cell sorting from either qmc551 heterozygous or homozygous 20 hpf embryos that were or were not injected with the gfi1b morpholinos at the one cell stage. Batches of 200 embryos were dissociated in a Liberase Blendzyme solution. GFP positive primitive red blood cells were isolated by fluorescence activated cell sorting. 3 samples of between 1700 and 4000 cells were collected per batch. Total RNA was isolated from the cells of each of the 4 x 3 samples Het1 3 HetMO1 3 Hom1 3 and HomMO1 3 and used to generate full length cDNA of polyadenylated transcripts. Following cDNA amplification and library preparation paired end 75 bp reads were generated on the Illumina NextSeq500 sequencing platform.,ENA FIRST PUBLIC:2018 10 12|ENA LAST UPDATE:2018 03 14,,Het MO rep2,Gfi1aa and/or Gfi1b depleted primitive red blood cells in zebrafish embryos,SAMEA104693970,DPSQ,ENA FIRST PUBLIC:2018 10 12T17:03:15Z|ENA LAST UPDATE:2018 03 14T19:09:14Z|External Id:SAMEA104693970|INSDC center name:DPSQ|INSDC first public:2018 10 12T17:03:15Z|INSDC last update:2018 03 14T19:09:14Z|INSDC status:public|Submitter Id:CM5|common name:zebrafish|sample name:CM5|scientific name:Danio rerio,,,,,,,,,NextSeq 500 paired end sequencing,ena EXPERIMENT DPSQ 14 03 2018 19:09:09:420 5,unspecified,1,,,RNA-Seq,TRANSCRIPTOMIC,Oligo-dT,PAIRED,ILLUMINA,NextSeq 500,,ERP107516,NextSeq 500 paired end sequencing,ENA FIRST PUBLIC:2018 10 12|ENA LAST UPDATE:2018 11 16,CM5.trimmed.read_1.fastq.gz CM5.trimmed.read_2.fastq.gz,fastq fastq,5573895202.0,39518227.0,ena RUN DPSQ 14 03 2018 19:09:09:420 5,0:71.02 1:70.03,A:1530297250;C:1251775796;G:1276506882;T:1515288256;N:27018,71,70,,,1530297250,1251775796,1276506882,1515288256,27018,ERX2443279,ERS2295353,ERA1246315,European Nucleotide Archive,"Deep Seq department, Centre for Genetics and Genomics, The University of Nottingham, United Kingdom",2,0.92217,0.92081,0.06807,0.06843,0.76926,0.77441,0.45543,0.48098,76,75,B,B,biological fallback assumption,illumina,nextseq,full_length,poly_a,unknown,bulk,unknown,unknown,,United Kingdom,2018-03-14,Undetermined,Embryo,Blood,Hematopoietic System
8100,ERR2402424,ERX2443278,ERS2295352,ERP107516,PRJEB25583,The transcriptome of Gfi1aa and/or Gfi1b depleted primitive red blood cells in zebrafish embryos,ena-STUDY-DPSQ-14-03-2018-19:09:10:340-151,Other,The zebrafish gene trap line qmc551 carries a gene trap transposon in intron 1 of the gene gfi1aa which a encodes a transcriptional repressor. The presence of the transposon interferes with the transcription of the gfi1aa gene during haematopoiesis. Despite the lack of Gfi1aa expression primitive red blood cell development appears to be normal due to functional redundancy with a second gene called gfi1b. Loss of Gfi1aa and Gfi1b protein expression in embryos that are homozygous for qmc551 and injected with gfi1b morpholinos leads to maturation defects in primitive red blood cells. Here we performed an RNA sequencing experiment to study the early programming of Gfi1aa and/or Gfi1b depleted primitive red blood cells. For this purpose we made use of the gene trap's gfp reporter gene expression in the primitive red blood cells to isolate these cells by fluorescence activated cell sorting from either qmc551 heterozygous or homozygous 20 hpf embryos that were or were not injected with the gfi1b morpholinos at the one cell stage. Batches of 200 embryos were dissociated in a Liberase Blendzyme solution. GFP positive primitive red blood cells were isolated by fluorescence activated cell sorting. 3 samples of between 1700 and 4000 cells were collected per batch. Total RNA was isolated from the cells of each of the 4 x 3 samples Het1 3 HetMO1 3 Hom1 3 and HomMO1 3 and used to generate full length cDNA of polyadenylated transcripts. Following cDNA amplification and library preparation paired end 75 bp reads were generated on the Illumina NextSeq500 sequencing platform.,ENA FIRST PUBLIC:2018 10 12|ENA LAST UPDATE:2018 03 14,,Het MO rep1,Gfi1aa and/or Gfi1b depleted primitive red blood cells in zebrafish embryos,SAMEA104693969,DPSQ,ENA FIRST PUBLIC:2018 10 12T17:03:15Z|ENA LAST UPDATE:2018 03 14T19:09:14Z|External Id:SAMEA104693969|INSDC center name:DPSQ|INSDC first public:2018 10 12T17:03:15Z|INSDC last update:2018 03 14T19:09:14Z|INSDC status:public|Submitter Id:CM4|common name:zebrafish|sample name:CM4|scientific name:Danio rerio,,,,,,,,,NextSeq 500 paired end sequencing,ena EXPERIMENT DPSQ 14 03 2018 19:09:09:420 4,unspecified,1,,,RNA-Seq,TRANSCRIPTOMIC,Oligo-dT,PAIRED,ILLUMINA,NextSeq 500,,ERP107516,NextSeq 500 paired end sequencing,ENA FIRST PUBLIC:2018 10 12|ENA LAST UPDATE:2018 11 16,CM4.trimmed.read_1.fastq.gz CM4.trimmed.read_2.fastq.gz,fastq fastq,5803404091.0,41335851.0,ena RUN DPSQ 14 03 2018 19:09:09:420 4,0:70.72 1:69.67,A:1590577583;C:1305683925;G:1331895549;T:1575219146;N:27888,70,69,,,1590577583,1305683925,1331895549,1575219146,27888,ERX2443278,ERS2295352,ERA1246315,European Nucleotide Archive,"Deep Seq department, Centre for Genetics and Genomics, The University of Nottingham, United Kingdom",2,0.9216,0.91971,0.05719,0.05738,0.77333,0.77761,0.47789,0.47244,76,74,B,B,biological fallback assumption,illumina,nextseq,full_length,poly_a,unknown,bulk,unknown,unknown,,United Kingdom,2018-03-14,Undetermined,Embryo,Blood,Hematopoietic System
8101,ERR2402423,ERX2443277,ERS2295351,ERP107516,PRJEB25583,The transcriptome of Gfi1aa and/or Gfi1b depleted primitive red blood cells in zebrafish embryos,ena-STUDY-DPSQ-14-03-2018-19:09:10:340-151,Other,The zebrafish gene trap line qmc551 carries a gene trap transposon in intron 1 of the gene gfi1aa which a encodes a transcriptional repressor. The presence of the transposon interferes with the transcription of the gfi1aa gene during haematopoiesis. Despite the lack of Gfi1aa expression primitive red blood cell development appears to be normal due to functional redundancy with a second gene called gfi1b. Loss of Gfi1aa and Gfi1b protein expression in embryos that are homozygous for qmc551 and injected with gfi1b morpholinos leads to maturation defects in primitive red blood cells. Here we performed an RNA sequencing experiment to study the early programming of Gfi1aa and/or Gfi1b depleted primitive red blood cells. For this purpose we made use of the gene trap's gfp reporter gene expression in the primitive red blood cells to isolate these cells by fluorescence activated cell sorting from either qmc551 heterozygous or homozygous 20 hpf embryos that were or were not injected with the gfi1b morpholinos at the one cell stage. Batches of 200 embryos were dissociated in a Liberase Blendzyme solution. GFP positive primitive red blood cells were isolated by fluorescence activated cell sorting. 3 samples of between 1700 and 4000 cells were collected per batch. Total RNA was isolated from the cells of each of the 4 x 3 samples Het1 3 HetMO1 3 Hom1 3 and HomMO1 3 and used to generate full length cDNA of polyadenylated transcripts. Following cDNA amplification and library preparation paired end 75 bp reads were generated on the Illumina NextSeq500 sequencing platform.,ENA FIRST PUBLIC:2018 10 12|ENA LAST UPDATE:2018 03 14,,Het uninj rep3,Gfi1aa and/or Gfi1b depleted primitive red blood cells in zebrafish embryos,SAMEA104693968,DPSQ,ENA FIRST PUBLIC:2018 10 12T17:03:15Z|ENA LAST UPDATE:2018 03 14T19:09:14Z|External Id:SAMEA104693968|INSDC center name:DPSQ|INSDC first public:2018 10 12T17:03:15Z|INSDC last update:2018 03 14T19:09:14Z|INSDC status:public|Submitter Id:CM3|common name:zebrafish|sample name:CM3|scientific name:Danio rerio,,,,,,,,,NextSeq 500 paired end sequencing,ena EXPERIMENT DPSQ 14 03 2018 19:09:09:420 3,unspecified,1,,,RNA-Seq,TRANSCRIPTOMIC,Oligo-dT,PAIRED,ILLUMINA,NextSeq 500,,ERP107516,NextSeq 500 paired end sequencing,ENA FIRST PUBLIC:2018 10 12|ENA LAST UPDATE:2018 11 16,CM3.trimmed.read_1.fastq.gz CM3.trimmed.read_2.fastq.gz,fastq fastq,5992797058.0,42390223.0,ena RUN DPSQ 14 03 2018 19:09:09:420 3,0:71.26 1:70.11,A:1639390320;C:1352082344;G:1378624207;T:1622672043;N:28144,71,70,,,1639390320,1352082344,1378624207,1622672043,28144,ERX2443277,ERS2295351,ERA1246315,European Nucleotide Archive,"Deep Seq department, Centre for Genetics and Genomics, The University of Nottingham, United Kingdom",2,0.92104,0.92006,0.07044,0.07056,0.77506,0.78137,0.48154,0.46497,75,75,B,B,biological fallback assumption,illumina,nextseq,full_length,poly_a,unknown,bulk,unknown,unknown,,United Kingdom,2018-03-14,Undetermined,Embryo,Blood,Hematopoietic System
8102,ERR2402422,ERX2443276,ERS2295350,ERP107516,PRJEB25583,The transcriptome of Gfi1aa and/or Gfi1b depleted primitive red blood cells in zebrafish embryos,ena-STUDY-DPSQ-14-03-2018-19:09:10:340-151,Other,The zebrafish gene trap line qmc551 carries a gene trap transposon in intron 1 of the gene gfi1aa which a encodes a transcriptional repressor. The presence of the transposon interferes with the transcription of the gfi1aa gene during haematopoiesis. Despite the lack of Gfi1aa expression primitive red blood cell development appears to be normal due to functional redundancy with a second gene called gfi1b. Loss of Gfi1aa and Gfi1b protein expression in embryos that are homozygous for qmc551 and injected with gfi1b morpholinos leads to maturation defects in primitive red blood cells. Here we performed an RNA sequencing experiment to study the early programming of Gfi1aa and/or Gfi1b depleted primitive red blood cells. For this purpose we made use of the gene trap's gfp reporter gene expression in the primitive red blood cells to isolate these cells by fluorescence activated cell sorting from either qmc551 heterozygous or homozygous 20 hpf embryos that were or were not injected with the gfi1b morpholinos at the one cell stage. Batches of 200 embryos were dissociated in a Liberase Blendzyme solution. GFP positive primitive red blood cells were isolated by fluorescence activated cell sorting. 3 samples of between 1700 and 4000 cells were collected per batch. Total RNA was isolated from the cells of each of the 4 x 3 samples Het1 3 HetMO1 3 Hom1 3 and HomMO1 3 and used to generate full length cDNA of polyadenylated transcripts. Following cDNA amplification and library preparation paired end 75 bp reads were generated on the Illumina NextSeq500 sequencing platform.,ENA FIRST PUBLIC:2018 10 12|ENA LAST UPDATE:2018 03 14,,Het uninj rep2,Gfi1aa and/or Gfi1b depleted primitive red blood cells in zebrafish embryos,SAMEA104693967,DPSQ,ENA FIRST PUBLIC:2018 10 12T17:03:15Z|ENA LAST UPDATE:2018 03 14T19:09:14Z|External Id:SAMEA104693967|INSDC center name:DPSQ|INSDC first public:2018 10 12T17:03:15Z|INSDC last update:2018 03 14T19:09:14Z|INSDC status:public|Submitter Id:CM2|common name:zebrafish|sample name:CM2|scientific name:Danio rerio,,,,,,,,,NextSeq 500 paired end sequencing,ena EXPERIMENT DPSQ 14 03 2018 19:09:09:420 2,unspecified,1,,,RNA-Seq,TRANSCRIPTOMIC,Oligo-dT,PAIRED,ILLUMINA,NextSeq 500,,ERP107516,NextSeq 500 paired end sequencing,ENA FIRST PUBLIC:2018 10 12|ENA LAST UPDATE:2018 11 16,CM2.trimmed.read_2.fastq.gz CM2.trimmed.read_1.fastq.gz,fastq fastq,5611396868.0,39759688.0,ena RUN DPSQ 14 03 2018 19:09:09:420 2,0:71.11 1:70.02,A:1537234166;C:1262883447;G:1288444384;T:1522807333;N:27538,71,70,,,1537234166,1262883447,1288444384,1522807333,27538,ERX2443276,ERS2295350,ERA1246315,European Nucleotide Archive,"Deep Seq department, Centre for Genetics and Genomics, The University of Nottingham, United Kingdom",2,0.91881,0.91733,0.06861,0.06958,0.77238,0.77883,0.48415,0.47367,76,73,B,B,biological fallback assumption,illumina,nextseq,full_length,poly_a,unknown,bulk,unknown,unknown,,United Kingdom,2018-03-14,Undetermined,Embryo,Blood,Hematopoietic System
8103,ERR2402421,ERX2443275,ERS2295349,ERP107516,PRJEB25583,The transcriptome of Gfi1aa and/or Gfi1b depleted primitive red blood cells in zebrafish embryos,ena-STUDY-DPSQ-14-03-2018-19:09:10:340-151,Other,The zebrafish gene trap line qmc551 carries a gene trap transposon in intron 1 of the gene gfi1aa which a encodes a transcriptional repressor. The presence of the transposon interferes with the transcription of the gfi1aa gene during haematopoiesis. Despite the lack of Gfi1aa expression primitive red blood cell development appears to be normal due to functional redundancy with a second gene called gfi1b. Loss of Gfi1aa and Gfi1b protein expression in embryos that are homozygous for qmc551 and injected with gfi1b morpholinos leads to maturation defects in primitive red blood cells. Here we performed an RNA sequencing experiment to study the early programming of Gfi1aa and/or Gfi1b depleted primitive red blood cells. For this purpose we made use of the gene trap's gfp reporter gene expression in the primitive red blood cells to isolate these cells by fluorescence activated cell sorting from either qmc551 heterozygous or homozygous 20 hpf embryos that were or were not injected with the gfi1b morpholinos at the one cell stage. Batches of 200 embryos were dissociated in a Liberase Blendzyme solution. GFP positive primitive red blood cells were isolated by fluorescence activated cell sorting. 3 samples of between 1700 and 4000 cells were collected per batch. Total RNA was isolated from the cells of each of the 4 x 3 samples Het1 3 HetMO1 3 Hom1 3 and HomMO1 3 and used to generate full length cDNA of polyadenylated transcripts. Following cDNA amplification and library preparation paired end 75 bp reads were generated on the Illumina NextSeq500 sequencing platform.,ENA FIRST PUBLIC:2018 10 12|ENA LAST UPDATE:2018 03 14,,Het uninj rep1,Gfi1aa and/or Gfi1b depleted primitive red blood cells in zebrafish embryos,SAMEA104693966,DPSQ,ENA FIRST PUBLIC:2018 10 12T17:03:15Z|ENA LAST UPDATE:2018 03 14T19:09:14Z|External Id:SAMEA104693966|INSDC center name:DPSQ|INSDC first public:2018 10 12T17:03:15Z|INSDC last update:2018 03 14T19:09:14Z|INSDC status:public|Submitter Id:CM1|common name:zebrafish|sample name:CM1|scientific name:Danio rerio,,,,,,,,,NextSeq 500 paired end sequencing,ena EXPERIMENT DPSQ 14 03 2018 19:09:09:420 1,unspecified,1,,,RNA-Seq,TRANSCRIPTOMIC,Oligo-dT,PAIRED,ILLUMINA,NextSeq 500,,ERP107516,NextSeq 500 paired end sequencing,ENA FIRST PUBLIC:2018 10 12|ENA LAST UPDATE:2018 11 16,CM1.trimmed.read_1.fastq.gz CM1.trimmed.read_2.fastq.gz,fastq fastq,6229432533.0,44233290.0,ena RUN DPSQ 14 03 2018 19:09:09:420 1,0:70.98 1:69.85,A:1712806281;C:1395764700;G:1423415860;T:1697416127;N:29565,70,69,,,1712806281,1395764700,1423415860,1697416127,29565,ERX2443275,ERS2295349,ERA1246315,European Nucleotide Archive,"Deep Seq department, Centre for Genetics and Genomics, The University of Nottingham, United Kingdom",2,0.91818,0.9169,0.07104,0.07095,0.77585,0.78066,0.47896,0.46653,56,56,B,B,biological fallback assumption,illumina,nextseq,full_length,poly_a,unknown,bulk,unknown,unknown,,United Kingdom,2018-03-14,Undetermined,Embryo,Blood,Hematopoietic System
24784,SRR25502048,SRX21232930,SRS18488024,SRP453114,PRJNA1001808,The Pu.1 target gene Zbtb11 regulates neutrophil development through its integrase like HHCC zinc finger,GSE239949,Transcriptome Analysis,From a forward genetic screen in zebrafish we identified the transcription factor ZBTB11 as critical for basal and emergency granulopoiesis and showed that ZBTB11 sits in a pathway directly downstream of master myeloid regulators including PU.1 GFI1 and CEBPa. To better understand target genes regulated by Zbtb11 RNAseq profiling was performed in neutrophils from WT and Zbtb11 mutant zebrafish. Overall design: At 48 hpf single cell suspensions were prepared from either pooled WT embryos or from pooled phenotype sorted zbtb11 mutant embryos. Neutrophils were FACS sorted on the basis of bright fluorescence for the transgenic neutrophil markers mpx:EGFP or lyz:dsRed into RNALater. N=3 biologically independent pools of neutrophils were obtained from WT and from zbtb11 mutant embryos and used for preparation of RNA and sequencing libraries.,,pubmed:28382966,,Sample 15 05316 MCK mut3,GSM7678168,,tissue:lyz+ mpx+ granulocytes|cell type:lyz+ mpx+ granulocytes|genotype:zbtb11 mutant mne|age:48 hpf|geo loc name:missing|collection date:missing,Sample 15 05316 MCK mut3,Data were QC’d using FastQC ends trimmed using Trimgalore and trimmed sequence aligned to the zebrafish genome GRCz10 using STAR. Counts were derived using HTseq count and differentially expressed genes determined using limma + voom using Degust v0.21 David R. Powell Victorian Bioinformatics Consortium Australia. Assembly: genome GRCz10 Supplementary files format and content: Excel spreadsheet includes HT Seq counts for each sample,lyz+ mpx+ granulocytes,,RNA was extracted from sorted cells using RNeasy Micro Qiagen. Unstranded barcoded libraries were prepared using total RNA and Nugen Ovation RNA Seq system V2 for amplification and cDNA generation followed by Ovation Ultralow System V2 for library preparation.,,cell type:lyz+ mpx+ granulocytes|genotype:zbtb11 mutant mne|age:48 hpf,GSM7678168,GSM7678168: Sample 15 05316 MCK mut3; Danio rerio; RNA Seq,GSM7678168 r1,GSM7678168,1,RNA was extracted from sorted cells using RNeasy Micro Qiagen. Unstranded barcoded libraries were prepared using total RNA and Nugen Ovation RNA Seq system V2 for amplification and cDNA generation followed by Ovation Ultralow System V2 for library preparation.,,RNA-Seq,TRANSCRIPTOMIC,cDNA,PAIRED,ILLUMINA,Illumina HiSeq 1500,,SRP453114,,,15-05316_MCK_mut3_GTGCTT_L002_R1_001.fastq.gz 15-05316_MCK_mut3_GTGCTT_L002_R2_001.fastq.gz,fastq fastq,4329868620.0,20618422.0,GSM7678168 r1,0:105 1:105,A:1075032412;C:1077085067;G:1119735718;T:1057797736;N:217687,105,105,,,1075032412,1077085067,1119735718,1057797736,217687,SRX21232930,SRS18488024,SRA1685493,"Rural Clinical Sciences, La Trobe University","Rural Clinical Sciences, La Trobe University",2,0.78961,0.91048,0.20166,0.23232,0.81556,0.81115,0.59478,0.59379,105,105,B,B,biological fallback assumption,illumina,hiseq_era,unknown,cdna_unspecified,unknown,bulk,unknown,unknown,,Australia,2023-08-03,Hatching,Embryo,Blood,Hematopoietic System
24785,SRR25502049,SRX21232929,SRS18488023,SRP453114,PRJNA1001808,The Pu.1 target gene Zbtb11 regulates neutrophil development through its integrase like HHCC zinc finger,GSE239949,Transcriptome Analysis,From a forward genetic screen in zebrafish we identified the transcription factor ZBTB11 as critical for basal and emergency granulopoiesis and showed that ZBTB11 sits in a pathway directly downstream of master myeloid regulators including PU.1 GFI1 and CEBPa. To better understand target genes regulated by Zbtb11 RNAseq profiling was performed in neutrophils from WT and Zbtb11 mutant zebrafish. Overall design: At 48 hpf single cell suspensions were prepared from either pooled WT embryos or from pooled phenotype sorted zbtb11 mutant embryos. Neutrophils were FACS sorted on the basis of bright fluorescence for the transgenic neutrophil markers mpx:EGFP or lyz:dsRed into RNALater. N=3 biologically independent pools of neutrophils were obtained from WT and from zbtb11 mutant embryos and used for preparation of RNA and sequencing libraries.,,pubmed:28382966,,Sample 15 05316 MCK mut2,GSM7678167,,tissue:lyz+ mpx+ granulocytes|cell type:lyz+ mpx+ granulocytes|genotype:zbtb11 mutant mne|age:48 hpf|geo loc name:missing|collection date:missing,Sample 15 05316 MCK mut2,Data were QC’d using FastQC ends trimmed using Trimgalore and trimmed sequence aligned to the zebrafish genome GRCz10 using STAR. Counts were derived using HTseq count and differentially expressed genes determined using limma + voom using Degust v0.21 David R. Powell Victorian Bioinformatics Consortium Australia. Assembly: genome GRCz10 Supplementary files format and content: Excel spreadsheet includes HT Seq counts for each sample,lyz+ mpx+ granulocytes,,RNA was extracted from sorted cells using RNeasy Micro Qiagen. Unstranded barcoded libraries were prepared using total RNA and Nugen Ovation RNA Seq system V2 for amplification and cDNA generation followed by Ovation Ultralow System V2 for library preparation.,,cell type:lyz+ mpx+ granulocytes|genotype:zbtb11 mutant mne|age:48 hpf,GSM7678167,GSM7678167: Sample 15 05316 MCK mut2; Danio rerio; RNA Seq,GSM7678167 r1,GSM7678167,1,RNA was extracted from sorted cells using RNeasy Micro Qiagen. Unstranded barcoded libraries were prepared using total RNA and Nugen Ovation RNA Seq system V2 for amplification and cDNA generation followed by Ovation Ultralow System V2 for library preparation.,,RNA-Seq,TRANSCRIPTOMIC,cDNA,PAIRED,ILLUMINA,Illumina HiSeq 1500,,SRP453114,,,15-05316_MCK_mut2_ACCTCA_L002_R1_001.fastq.gz 15-05316_MCK_mut2_ACCTCA_L002_R2_001.fastq.gz,fastq fastq,4444374270.0,21163687.0,GSM7678167 r1,0:105 1:105,A:1114919906;C:1098541058;G:1145427151;T:1085262902;N:223253,105,105,,,1114919906,1098541058,1145427151,1085262902,223253,SRX21232929,SRS18488023,SRA1685493,"Rural Clinical Sciences, La Trobe University","Rural Clinical Sciences, La Trobe University",2,0.74961,0.90068,0.18596,0.22057,0.81115,0.80754,0.5829,0.58615,105,105,B,B,biological fallback assumption,illumina,hiseq_era,unknown,cdna_unspecified,unknown,bulk,unknown,unknown,,Australia,2023-08-03,Hatching,Embryo,Blood,Hematopoietic System
24786,SRR25502050,SRX21232928,SRS18488022,SRP453114,PRJNA1001808,The Pu.1 target gene Zbtb11 regulates neutrophil development through its integrase like HHCC zinc finger,GSE239949,Transcriptome Analysis,From a forward genetic screen in zebrafish we identified the transcription factor ZBTB11 as critical for basal and emergency granulopoiesis and showed that ZBTB11 sits in a pathway directly downstream of master myeloid regulators including PU.1 GFI1 and CEBPa. To better understand target genes regulated by Zbtb11 RNAseq profiling was performed in neutrophils from WT and Zbtb11 mutant zebrafish. Overall design: At 48 hpf single cell suspensions were prepared from either pooled WT embryos or from pooled phenotype sorted zbtb11 mutant embryos. Neutrophils were FACS sorted on the basis of bright fluorescence for the transgenic neutrophil markers mpx:EGFP or lyz:dsRed into RNALater. N=3 biologically independent pools of neutrophils were obtained from WT and from zbtb11 mutant embryos and used for preparation of RNA and sequencing libraries.,,pubmed:28382966,,Sample 15 05316 MCK mut1,GSM7678166,,tissue:lyz+ mpx+ granulocytes|cell type:lyz+ mpx+ granulocytes|genotype:zbtb11 mutant mne|age:48 hpf|geo loc name:missing|collection date:missing,Sample 15 05316 MCK mut1,Data were QC’d using FastQC ends trimmed using Trimgalore and trimmed sequence aligned to the zebrafish genome GRCz10 using STAR. Counts were derived using HTseq count and differentially expressed genes determined using limma + voom using Degust v0.21 David R. Powell Victorian Bioinformatics Consortium Australia. Assembly: genome GRCz10 Supplementary files format and content: Excel spreadsheet includes HT Seq counts for each sample,lyz+ mpx+ granulocytes,,RNA was extracted from sorted cells using RNeasy Micro Qiagen. Unstranded barcoded libraries were prepared using total RNA and Nugen Ovation RNA Seq system V2 for amplification and cDNA generation followed by Ovation Ultralow System V2 for library preparation.,,cell type:lyz+ mpx+ granulocytes|genotype:zbtb11 mutant mne|age:48 hpf,GSM7678166,GSM7678166: Sample 15 05316 MCK mut1; Danio rerio; RNA Seq,GSM7678166 r1,GSM7678166,1,RNA was extracted from sorted cells using RNeasy Micro Qiagen. Unstranded barcoded libraries were prepared using total RNA and Nugen Ovation RNA Seq system V2 for amplification and cDNA generation followed by Ovation Ultralow System V2 for library preparation.,,RNA-Seq,TRANSCRIPTOMIC,cDNA,PAIRED,ILLUMINA,Illumina HiSeq 1500,,SRP453114,,,15-05316_MCK_mut1_GCACTA_L002_R1_001.fastq.gz 15-05316_MCK_mut1_GCACTA_L002_R2_001.fastq.gz,fastq fastq,4459467180.0,21235558.0,GSM7678166 r1,0:105 1:105,A:1206908747;C:1012207561;G:1060393698;T:1179731376;N:225798,105,105,,,1206908747,1012207561,1060393698,1179731376,225798,SRX21232928,SRS18488022,SRA1685493,"Rural Clinical Sciences, La Trobe University","Rural Clinical Sciences, La Trobe University",2,0.75719,0.88462,0.20719,0.24095,0.78559,0.77914,0.50538,0.55691,105,105,B,B,biological fallback assumption,illumina,hiseq_era,unknown,cdna_unspecified,unknown,bulk,unknown,unknown,,Australia,2023-08-03,Hatching,Embryo,Blood,Hematopoietic System
24787,SRR25502051,SRX21232927,SRS18488021,SRP453114,PRJNA1001808,The Pu.1 target gene Zbtb11 regulates neutrophil development through its integrase like HHCC zinc finger,GSE239949,Transcriptome Analysis,From a forward genetic screen in zebrafish we identified the transcription factor ZBTB11 as critical for basal and emergency granulopoiesis and showed that ZBTB11 sits in a pathway directly downstream of master myeloid regulators including PU.1 GFI1 and CEBPa. To better understand target genes regulated by Zbtb11 RNAseq profiling was performed in neutrophils from WT and Zbtb11 mutant zebrafish. Overall design: At 48 hpf single cell suspensions were prepared from either pooled WT embryos or from pooled phenotype sorted zbtb11 mutant embryos. Neutrophils were FACS sorted on the basis of bright fluorescence for the transgenic neutrophil markers mpx:EGFP or lyz:dsRed into RNALater. N=3 biologically independent pools of neutrophils were obtained from WT and from zbtb11 mutant embryos and used for preparation of RNA and sequencing libraries.,,pubmed:28382966,,Sample 15 05315 MCK WT3,GSM7678165,,tissue:lyz+ mpx+ granulocytes|cell type:lyz+ mpx+ granulocytes|genotype:wild type|age:48 hpf|geo loc name:missing|collection date:missing,Sample 15 05315 MCK WT3,Data were QC’d using FastQC ends trimmed using Trimgalore and trimmed sequence aligned to the zebrafish genome GRCz10 using STAR. Counts were derived using HTseq count and differentially expressed genes determined using limma + voom using Degust v0.21 David R. Powell Victorian Bioinformatics Consortium Australia. Assembly: genome GRCz10 Supplementary files format and content: Excel spreadsheet includes HT Seq counts for each sample,lyz+ mpx+ granulocytes,,RNA was extracted from sorted cells using RNeasy Micro Qiagen. Unstranded barcoded libraries were prepared using total RNA and Nugen Ovation RNA Seq system V2 for amplification and cDNA generation followed by Ovation Ultralow System V2 for library preparation.,,cell type:lyz+ mpx+ granulocytes|genotype:wild type|age:48 hpf,GSM7678165,GSM7678165: Sample 15 05315 MCK WT3; Danio rerio; RNA Seq,GSM7678165 r1,GSM7678165,1,RNA was extracted from sorted cells using RNeasy Micro Qiagen. Unstranded barcoded libraries were prepared using total RNA and Nugen Ovation RNA Seq system V2 for amplification and cDNA generation followed by Ovation Ultralow System V2 for library preparation.,,RNA-Seq,TRANSCRIPTOMIC,cDNA,PAIRED,ILLUMINA,Illumina HiSeq 1500,,SRP453114,,,15-05315_MCK_WT3_AGTGAG_L002_R1_001.fastq.gz 15-05315_MCK_WT3_AGTGAG_L002_R2_001.fastq.gz,fastq fastq,3925329240.0,18692044.0,GSM7678165 r1,0:105 1:105,A:1022654212;C:930239389;G:973328942;T:998905803;N:200894,105,105,,,1022654212,930239389,973328942,998905803,200894,SRX21232927,SRS18488021,SRA1685493,"Rural Clinical Sciences, La Trobe University","Rural Clinical Sciences, La Trobe University",2,0.75647,0.89377,0.19165,0.22718,0.81057,0.80501,0.51173,0.54819,105,105,B,B,biological fallback assumption,illumina,hiseq_era,unknown,cdna_unspecified,unknown,bulk,unknown,unknown,,Australia,2023-08-03,Hatching,Embryo,Blood,Hematopoietic System
24788,SRR25502052,SRX21232926,SRS18488020,SRP453114,PRJNA1001808,The Pu.1 target gene Zbtb11 regulates neutrophil development through its integrase like HHCC zinc finger,GSE239949,Transcriptome Analysis,From a forward genetic screen in zebrafish we identified the transcription factor ZBTB11 as critical for basal and emergency granulopoiesis and showed that ZBTB11 sits in a pathway directly downstream of master myeloid regulators including PU.1 GFI1 and CEBPa. To better understand target genes regulated by Zbtb11 RNAseq profiling was performed in neutrophils from WT and Zbtb11 mutant zebrafish. Overall design: At 48 hpf single cell suspensions were prepared from either pooled WT embryos or from pooled phenotype sorted zbtb11 mutant embryos. Neutrophils were FACS sorted on the basis of bright fluorescence for the transgenic neutrophil markers mpx:EGFP or lyz:dsRed into RNALater. N=3 biologically independent pools of neutrophils were obtained from WT and from zbtb11 mutant embryos and used for preparation of RNA and sequencing libraries.,,pubmed:28382966,,Sample 15 05314 MCK WT2,GSM7678164,,tissue:lyz+ mpx+ granulocytes|cell type:lyz+ mpx+ granulocytes|genotype:wild type|age:48 hpf|geo loc name:missing|collection date:missing,Sample 15 05314 MCK WT2,Data were QC’d using FastQC ends trimmed using Trimgalore and trimmed sequence aligned to the zebrafish genome GRCz10 using STAR. Counts were derived using HTseq count and differentially expressed genes determined using limma + voom using Degust v0.21 David R. Powell Victorian Bioinformatics Consortium Australia. Assembly: genome GRCz10 Supplementary files format and content: Excel spreadsheet includes HT Seq counts for each sample,lyz+ mpx+ granulocytes,,RNA was extracted from sorted cells using RNeasy Micro Qiagen. Unstranded barcoded libraries were prepared using total RNA and Nugen Ovation RNA Seq system V2 for amplification and cDNA generation followed by Ovation Ultralow System V2 for library preparation.,,cell type:lyz+ mpx+ granulocytes|genotype:wild type|age:48 hpf,GSM7678164,GSM7678164: Sample 15 05314 MCK WT2; Danio rerio; RNA Seq,GSM7678164 r1,GSM7678164,1,RNA was extracted from sorted cells using RNeasy Micro Qiagen. Unstranded barcoded libraries were prepared using total RNA and Nugen Ovation RNA Seq system V2 for amplification and cDNA generation followed by Ovation Ultralow System V2 for library preparation.,,RNA-Seq,TRANSCRIPTOMIC,cDNA,PAIRED,ILLUMINA,Illumina HiSeq 1500,,SRP453114,,,15-05314_MCK_WT2_TGGTGA_L002_R2_001.fastq.gz 15-05314_MCK_WT2_TGGTGA_L002_R1_001.fastq.gz,fastq fastq,4100489820.0,19526142.0,GSM7678164 r1,0:105 1:105,A:1022482319;C:1016090490;G:1063619365;T:998086417;N:211229,105,105,,,1022482319,1016090490,1063619365,998086417,211229,SRX21232926,SRS18488020,SRA1685493,"Rural Clinical Sciences, La Trobe University","Rural Clinical Sciences, La Trobe University",2,0.76378,0.90522,0.20093,0.23619,0.82467,0.82049,0.57261,0.562,105,105,B,B,biological fallback assumption,illumina,hiseq_era,unknown,cdna_unspecified,unknown,bulk,unknown,unknown,,Australia,2023-08-03,Hatching,Embryo,Blood,Hematopoietic System
24789,SRR25502053,SRX21232925,SRS18488019,SRP453114,PRJNA1001808,The Pu.1 target gene Zbtb11 regulates neutrophil development through its integrase like HHCC zinc finger,GSE239949,Transcriptome Analysis,From a forward genetic screen in zebrafish we identified the transcription factor ZBTB11 as critical for basal and emergency granulopoiesis and showed that ZBTB11 sits in a pathway directly downstream of master myeloid regulators including PU.1 GFI1 and CEBPa. To better understand target genes regulated by Zbtb11 RNAseq profiling was performed in neutrophils from WT and Zbtb11 mutant zebrafish. Overall design: At 48 hpf single cell suspensions were prepared from either pooled WT embryos or from pooled phenotype sorted zbtb11 mutant embryos. Neutrophils were FACS sorted on the basis of bright fluorescence for the transgenic neutrophil markers mpx:EGFP or lyz:dsRed into RNALater. N=3 biologically independent pools of neutrophils were obtained from WT and from zbtb11 mutant embryos and used for preparation of RNA and sequencing libraries.,,pubmed:28382966,,Sample 15 05313 MCK WT1,GSM7678163,,tissue:lyz+ mpx+ granulocytes|cell type:lyz+ mpx+ granulocytes|genotype:wild type|age:48 hpf|geo loc name:missing|collection date:missing,Sample 15 05313 MCK WT1,Data were QC’d using FastQC ends trimmed using Trimgalore and trimmed sequence aligned to the zebrafish genome GRCz10 using STAR. Counts were derived using HTseq count and differentially expressed genes determined using limma + voom using Degust v0.21 David R. Powell Victorian Bioinformatics Consortium Australia. Assembly: genome GRCz10 Supplementary files format and content: Excel spreadsheet includes HT Seq counts for each sample,lyz+ mpx+ granulocytes,,RNA was extracted from sorted cells using RNeasy Micro Qiagen. Unstranded barcoded libraries were prepared using total RNA and Nugen Ovation RNA Seq system V2 for amplification and cDNA generation followed by Ovation Ultralow System V2 for library preparation.,,cell type:lyz+ mpx+ granulocytes|genotype:wild type|age:48 hpf,GSM7678163,GSM7678163: Sample 15 05313 MCK WT1; Danio rerio; RNA Seq,GSM7678163 r1,GSM7678163,1,RNA was extracted from sorted cells using RNeasy Micro Qiagen. Unstranded barcoded libraries were prepared using total RNA and Nugen Ovation RNA Seq system V2 for amplification and cDNA generation followed by Ovation Ultralow System V2 for library preparation.,,RNA-Seq,TRANSCRIPTOMIC,cDNA,PAIRED,ILLUMINA,Illumina HiSeq 1500,,SRP453114,,,15-05313_MCK_WT1_AACCAG_L002_R1_001.fastq.gz 15-05313_MCK_WT1_AACCAG_L002_R2_001.fastq.gz,fastq fastq,4135721100.0,19693910.0,GSM7678163 r1,0:105 1:105,A:1048700719;C:1014162128;G:1070155053;T:1002495763;N:207437,105,105,,,1048700719,1014162128,1070155053,1002495763,207437,SRX21232925,SRS18488019,SRA1685493,"Rural Clinical Sciences, La Trobe University","Rural Clinical Sciences, La Trobe University",2,0.70974,0.9073,0.1771,0.22534,0.82483,0.81625,0.56311,0.55183,105,105,B,B,biological fallback assumption,illumina,hiseq_era,unknown,cdna_unspecified,unknown,bulk,unknown,unknown,,Australia,2023-08-03,Hatching,Embryo,Blood,Hematopoietic System
25304,SRR25793376,SRX21515638,SRS18742880,SRP457465,PRJNA1010662,The miR 144/Hmgn2 regulatory axis orchestrates chromatin organization during erythropoiesis.,PRJNA1010662,Other,Differentiation of stem and progenitor cells is a highly regulated process that involves the coordinated action of multiple layers of regulation. Here we show how the post transcriptional regulatory layer instructs the chromatin regulation level via miR 144 and its targets to orchestrate chromatin condensation during erythropoiesis. The loss of miR 144 leads to impaired chromatin condensation during erythrocyte maturation.,,,,RNA seq Erythrocytes miR 144 adult,miR 144 adult,,isolate:miR 144 mutant|age:Adult|collection date:N/A|geo loc name:N/A|sex:mixed|tissue:Blood|BioSampleModel:Model organism or animal,,,,,,,,,Quant seq Erythrocytes miR 144 mutant Danio rerio ADULT replicate 1,144 1 adult blood,144 1 adult blood,Libraries were made using QuantSeq three prime mRNA Seq Library Prep Kit for IlluminaLexogen,,,RNA-Seq,TRANSCRIPTOMIC,Oligo-dT,SINGLE,ILLUMINA,Illumina NovaSeq 6000,,SRP457465,,,DC-144AL1_S10.fastq,fastq,781435052.0,17368946.0,DC 144AL1 S10.fastq,0:44.99,A:207445570;C:148430622;G:177122903;T:245179579;N:3256378,44,,,,207445570,148430622,177122903,245179579,3256378,SRX21515638,SRS18742880,SRA1701831,University of East Anglia|Biological Sciences,University of East Anglia,1,0.8759,,0.28126,,0.95051,,0.47905,,22,,B,,usable mapping rate,illumina,novaseq_era,3prime,poly_a,lexogen,bulk,unknown,unknown,,United Kingdom,2023-08-30,Adult,Adult,Blood,Hematopoietic System
25305,SRR25793377,SRX21515637,SRS18742882,SRP457465,PRJNA1010662,The miR 144/Hmgn2 regulatory axis orchestrates chromatin organization during erythropoiesis.,PRJNA1010662,Other,Differentiation of stem and progenitor cells is a highly regulated process that involves the coordinated action of multiple layers of regulation. Here we show how the post transcriptional regulatory layer instructs the chromatin regulation level via miR 144 and its targets to orchestrate chromatin condensation during erythropoiesis. The loss of miR 144 leads to impaired chromatin condensation during erythrocyte maturation.,,,,RNA seq Erythrocytes Wild type adult,WT adult,,isolate:Wildtype|age:Adult|collection date:N/A|geo loc name:N/A|sex:mixed|tissue:Blood|BioSampleModel:Model organism or animal,,,,,,,,,Quant seq Erythrocytes Wild type Danio rerio ADULT replicate 3,WT3 adult blood,WT3 adult blood,Libraries were made using QuantSeq three prime mRNA Seq Library Prep Kit for IlluminaLexogen,,,RNA-Seq,TRANSCRIPTOMIC,Oligo-dT,SINGLE,ILLUMINA,Illumina NovaSeq 6000,,SRP457465,,,DC-WTA3_S6.fastq,fastq,601997398.0,17290043.0,DC WTA3 S6.fastq,0:34.82,A:136034449;C:142779447;G:177204517;T:134955264;N:11023721,34,,,,136034449,142779447,177204517,134955264,11023721,SRX21515637,SRS18742882,SRA1701831,University of East Anglia|Biological Sciences,University of East Anglia,1,0.32909,,0.08525,,0.95288,,0.60214,,22,,B,,usable mapping rate,illumina,novaseq_era,3prime,poly_a,lexogen,bulk,unknown,unknown,,United Kingdom,2023-08-30,Adult,Adult,Blood,Hematopoietic System
25306,SRR25793378,SRX21515636,SRS18742882,SRP457465,PRJNA1010662,The miR 144/Hmgn2 regulatory axis orchestrates chromatin organization during erythropoiesis.,PRJNA1010662,Other,Differentiation of stem and progenitor cells is a highly regulated process that involves the coordinated action of multiple layers of regulation. Here we show how the post transcriptional regulatory layer instructs the chromatin regulation level via miR 144 and its targets to orchestrate chromatin condensation during erythropoiesis. The loss of miR 144 leads to impaired chromatin condensation during erythrocyte maturation.,,,,RNA seq Erythrocytes Wild type adult,WT adult,,isolate:Wildtype|age:Adult|collection date:N/A|geo loc name:N/A|sex:mixed|tissue:Blood|BioSampleModel:Model organism or animal,,,,,,,,,Quant seq Erythrocytes Wild type Danio rerio ADULT replicate 2,WT2 adult blood,WT2 adult blood,Libraries were made using QuantSeq three prime mRNA Seq Library Prep Kit for IlluminaLexogen,,,RNA-Seq,TRANSCRIPTOMIC,Oligo-dT,SINGLE,ILLUMINA,Illumina NovaSeq 6000,,SRP457465,,,DC-WTA2_S5.fastq,fastq,669871903.0,17381581.0,DC WTA2 S5.fastq,0:38.54,A:169704437;C:140964096;G:160484620;T:189596855;N:9121895,38,,,,169704437,140964096,160484620,189596855,9121895,SRX21515636,SRS18742882,SRA1701831,University of East Anglia|Biological Sciences,University of East Anglia,1,0.69865,,0.19099,,0.93432,,0.47502,,68,,B,,usable mapping rate,illumina,novaseq_era,3prime,poly_a,lexogen,bulk,unknown,unknown,,United Kingdom,2023-08-30,Adult,Adult,Blood,Hematopoietic System
25307,SRR25793379,SRX21515635,SRS18742882,SRP457465,PRJNA1010662,The miR 144/Hmgn2 regulatory axis orchestrates chromatin organization during erythropoiesis.,PRJNA1010662,Other,Differentiation of stem and progenitor cells is a highly regulated process that involves the coordinated action of multiple layers of regulation. Here we show how the post transcriptional regulatory layer instructs the chromatin regulation level via miR 144 and its targets to orchestrate chromatin condensation during erythropoiesis. The loss of miR 144 leads to impaired chromatin condensation during erythrocyte maturation.,,,,RNA seq Erythrocytes Wild type adult,WT adult,,isolate:Wildtype|age:Adult|collection date:N/A|geo loc name:N/A|sex:mixed|tissue:Blood|BioSampleModel:Model organism or animal,,,,,,,,,Quant seq Erythrocytes Wild type Danio rerio ADULT replicate 1,WT1 adult blood,WT1 adult blood,Libraries were made using QuantSeq three prime mRNA Seq Library Prep Kit for IlluminaLexogen,,,RNA-Seq,TRANSCRIPTOMIC,Oligo-dT,SINGLE,ILLUMINA,Illumina NovaSeq 6000,,SRP457465,,,DC-WTA1_S4.fastq,fastq,824193699.0,17465379.0,DC WTA1 S4.fastq,0:47.19,A:209553199;C:169966117;G:194322860;T:244145525;N:6205998,47,,,,209553199,169966117,194322860,244145525,6205998,SRX21515635,SRS18742882,SRA1701831,University of East Anglia|Biological Sciences,University of East Anglia,1,0.76241,,0.25975,,0.94619,,0.50211,,66,,B,,usable mapping rate,illumina,novaseq_era,3prime,poly_a,lexogen,bulk,unknown,unknown,,United Kingdom,2023-08-30,Adult,Adult,Blood,Hematopoietic System
25308,SRR25793380,SRX21515634,SRS18742881,SRP457465,PRJNA1010662,The miR 144/Hmgn2 regulatory axis orchestrates chromatin organization during erythropoiesis.,PRJNA1010662,Other,Differentiation of stem and progenitor cells is a highly regulated process that involves the coordinated action of multiple layers of regulation. Here we show how the post transcriptional regulatory layer instructs the chromatin regulation level via miR 144 and its targets to orchestrate chromatin condensation during erythropoiesis. The loss of miR 144 leads to impaired chromatin condensation during erythrocyte maturation.,,,,RNA seq Erythrocytes miR 144 embryo,miR 144 embryo,,isolate:miR 144 mutant|age:Embryo|collection date:N/A|geo loc name:N/A|sex:mixed|tissue:Blood|BioSampleModel:Model organism or animal,,,,,,,,,Quant seq Erythrocytes miR 144 mutant Danio rerio 2 dpf replicate 3,144 3 embryo blood,144 3 embryo blood,Libraries were made using QuantSeq three prime mRNA Seq Library Prep Kit for IlluminaLexogen,,,RNA-Seq,TRANSCRIPTOMIC,Oligo-dT,SINGLE,ILLUMINA,Illumina NovaSeq 6000,,SRP457465,,,DC-144EL3_S18.fastq,fastq,687309797.0,17039739.0,DC 144EL3 S18.fastq,0:40.34,A:159186558;C:130452893;G:155820002;T:181676510;N:60173834,40,,,,159186558,130452893,155820002,181676510,60173834,SRX21515634,SRS18742881,SRA1701831,University of East Anglia|Biological Sciences,University of East Anglia,1,0.52966,,0.16941,,0.97615,,0.58418,,61,,B,,usable mapping rate,illumina,novaseq_era,3prime,poly_a,lexogen,bulk,unknown,unknown,,United Kingdom,2023-08-30,Hatching,Embryo,Blood,Hematopoietic System
25309,SRR25793381,SRX21515633,SRS18742881,SRP457465,PRJNA1010662,The miR 144/Hmgn2 regulatory axis orchestrates chromatin organization during erythropoiesis.,PRJNA1010662,Other,Differentiation of stem and progenitor cells is a highly regulated process that involves the coordinated action of multiple layers of regulation. Here we show how the post transcriptional regulatory layer instructs the chromatin regulation level via miR 144 and its targets to orchestrate chromatin condensation during erythropoiesis. The loss of miR 144 leads to impaired chromatin condensation during erythrocyte maturation.,,,,RNA seq Erythrocytes miR 144 embryo,miR 144 embryo,,isolate:miR 144 mutant|age:Embryo|collection date:N/A|geo loc name:N/A|sex:mixed|tissue:Blood|BioSampleModel:Model organism or animal,,,,,,,,,Quant seq Erythrocytes miR 144 mutant Danio rerio 2 dpf replicate 2,144 2 embryo blood,144 2 embryo blood,Libraries were made using QuantSeq three prime mRNA Seq Library Prep Kit for IlluminaLexogen,,,RNA-Seq,TRANSCRIPTOMIC,Oligo-dT,SINGLE,ILLUMINA,Illumina NovaSeq 6000,,SRP457465,,,DC-144EL2_S17.fastq,fastq,495318731.0,14459195.0,DC 144EL2 S17.fastq,0:34.26,A:110392869;C:106378418;G:128881687;T:107956679;N:41709078,34,,,,110392869,106378418,128881687,107956679,41709078,SRX21515633,SRS18742881,SRA1701831,University of East Anglia|Biological Sciences,University of East Anglia,1,0.32147,,0.04496,,0.97569,,0.58512,,31,,B,,usable mapping rate,illumina,novaseq_era,3prime,poly_a,lexogen,bulk,unknown,unknown,,United Kingdom,2023-08-30,Hatching,Embryo,Blood,Hematopoietic System
25310,SRR25793382,SRX21515632,SRS18742881,SRP457465,PRJNA1010662,The miR 144/Hmgn2 regulatory axis orchestrates chromatin organization during erythropoiesis.,PRJNA1010662,Other,Differentiation of stem and progenitor cells is a highly regulated process that involves the coordinated action of multiple layers of regulation. Here we show how the post transcriptional regulatory layer instructs the chromatin regulation level via miR 144 and its targets to orchestrate chromatin condensation during erythropoiesis. The loss of miR 144 leads to impaired chromatin condensation during erythrocyte maturation.,,,,RNA seq Erythrocytes miR 144 embryo,miR 144 embryo,,isolate:miR 144 mutant|age:Embryo|collection date:N/A|geo loc name:N/A|sex:mixed|tissue:Blood|BioSampleModel:Model organism or animal,,,,,,,,,Quant seq Erythrocytes miR 144 mutant Danio rerio 2 dpf replicate 1,144 1 embryo blood,144 1 embryo blood,Libraries were made using QuantSeq three prime mRNA Seq Library Prep Kit for IlluminaLexogen,,,RNA-Seq,TRANSCRIPTOMIC,Oligo-dT,SINGLE,ILLUMINA,Illumina NovaSeq 6000,,SRP457465,,,DC-144EL1_S16.fastq,fastq,974854100.0,20079553.0,DC 144EL1 S16.fastq,0:48.55,A:233861010;C:192987350;G:215192262;T:269960344;N:62853134,48,,,,233861010,192987350,215192262,269960344,62853134,SRX21515632,SRS18742881,SRA1701831,University of East Anglia|Biological Sciences,University of East Anglia,1,0.77953,,0.18084,,0.90905,,0.74157,,75,,B,,usable mapping rate,illumina,novaseq_era,3prime,poly_a,lexogen,bulk,unknown,unknown,,United Kingdom,2023-08-30,Hatching,Embryo,Blood,Hematopoietic System
25311,SRR25793383,SRX21515631,SRS18742879,SRP457465,PRJNA1010662,The miR 144/Hmgn2 regulatory axis orchestrates chromatin organization during erythropoiesis.,PRJNA1010662,Other,Differentiation of stem and progenitor cells is a highly regulated process that involves the coordinated action of multiple layers of regulation. Here we show how the post transcriptional regulatory layer instructs the chromatin regulation level via miR 144 and its targets to orchestrate chromatin condensation during erythropoiesis. The loss of miR 144 leads to impaired chromatin condensation during erythrocyte maturation.,,,,RNA seq Erythrocytes Wild type embryo,WT embryo,,isolate:Wildtype|age:Embryo|collection date:N/A|geo loc name:N/A|sex:mixed|tissue:Blood|BioSampleModel:Model organism or animal,,,,,,,,,Quant seq Erythrocytes Wild type Danio rerio 2 dpf replicate 3,WT3 embryo blood,WT3 embryo blood,Libraries were made using QuantSeq three prime mRNA Seq Library Prep Kit for IlluminaLexogen,,,RNA-Seq,TRANSCRIPTOMIC,Oligo-dT,SINGLE,ILLUMINA,Illumina NovaSeq 6000,,SRP457465,,,DC-WTE3_S15.fastq,fastq,657139116.0,15618072.0,DC WTE3 S15.fastq,0:42.08,A:154495614;C:122942896;G:147719345;T:179403193;N:52578068,42,,,,154495614,122942896,147719345,179403193,52578068,SRX21515631,SRS18742879,SRA1701831,University of East Anglia|Biological Sciences,University of East Anglia,1,0.56358,,0.19381,,0.96757,,0.6115,,76,,B,,usable mapping rate,illumina,novaseq_era,3prime,poly_a,lexogen,bulk,unknown,unknown,,United Kingdom,2023-08-30,Hatching,Embryo,Blood,Hematopoietic System
25312,SRR25793384,SRX21515630,SRS18742880,SRP457465,PRJNA1010662,The miR 144/Hmgn2 regulatory axis orchestrates chromatin organization during erythropoiesis.,PRJNA1010662,Other,Differentiation of stem and progenitor cells is a highly regulated process that involves the coordinated action of multiple layers of regulation. Here we show how the post transcriptional regulatory layer instructs the chromatin regulation level via miR 144 and its targets to orchestrate chromatin condensation during erythropoiesis. The loss of miR 144 leads to impaired chromatin condensation during erythrocyte maturation.,,,,RNA seq Erythrocytes miR 144 adult,miR 144 adult,,isolate:miR 144 mutant|age:Adult|collection date:N/A|geo loc name:N/A|sex:mixed|tissue:Blood|BioSampleModel:Model organism or animal,,,,,,,,,Quant seq Erythrocytes miR 144 mutant Danio rerio ADULT replicate 3,144 3 adult blood,144 3 adult blood,Libraries were made using QuantSeq three prime mRNA Seq Library Prep Kit for IlluminaLexogen,,,RNA-Seq,TRANSCRIPTOMIC,Oligo-dT,SINGLE,ILLUMINA,Illumina NovaSeq 6000,,SRP457465,,,DC-144AL3_S12.fastq,fastq,498938612.0,14861511.0,DC 144AL3 S12.fastq,0:33.57,A:137243823;C:96735877;G:109220779;T:152042235;N:3695898,33,,,,137243823,96735877,109220779,152042235,3695898,SRX21515630,SRS18742880,SRA1701831,University of East Anglia|Biological Sciences,University of East Anglia,1,0.82213,,0.16617,,0.95053,,0.46386,,22,,B,,usable mapping rate,illumina,novaseq_era,3prime,poly_a,lexogen,bulk,unknown,unknown,,United Kingdom,2023-08-30,Adult,Adult,Blood,Hematopoietic System
25313,SRR25793385,SRX21515629,SRS18742880,SRP457465,PRJNA1010662,The miR 144/Hmgn2 regulatory axis orchestrates chromatin organization during erythropoiesis.,PRJNA1010662,Other,Differentiation of stem and progenitor cells is a highly regulated process that involves the coordinated action of multiple layers of regulation. Here we show how the post transcriptional regulatory layer instructs the chromatin regulation level via miR 144 and its targets to orchestrate chromatin condensation during erythropoiesis. The loss of miR 144 leads to impaired chromatin condensation during erythrocyte maturation.,,,,RNA seq Erythrocytes miR 144 adult,miR 144 adult,,isolate:miR 144 mutant|age:Adult|collection date:N/A|geo loc name:N/A|sex:mixed|tissue:Blood|BioSampleModel:Model organism or animal,,,,,,,,,Quant seq Erythrocytes miR 144 mutant Danio rerio ADULT replicate 2,144 2 adult blood,144 2 adult blood,Libraries were made using QuantSeq three prime mRNA Seq Library Prep Kit for IlluminaLexogen,,,RNA-Seq,TRANSCRIPTOMIC,Oligo-dT,SINGLE,ILLUMINA,Illumina NovaSeq 6000,,SRP457465,,,DC-144AL2_S11.fastq,fastq,497890134.0,10636306.0,DC 144AL2 S11.fastq,0:46.81,A:134598214;C:94036725;G:109501897;T:158719603;N:1033695,46,,,,134598214,94036725,109501897,158719603,1033695,SRX21515629,SRS18742880,SRA1701831,University of East Anglia|Biological Sciences,University of East Anglia,1,0.88496,,0.29132,,0.96002,,0.53343,,22,,B,,usable mapping rate,illumina,novaseq_era,3prime,poly_a,lexogen,bulk,unknown,unknown,,United Kingdom,2023-08-30,Adult,Adult,Blood,Hematopoietic System
25314,SRR25793386,SRX21515628,SRS18742879,SRP457465,PRJNA1010662,The miR 144/Hmgn2 regulatory axis orchestrates chromatin organization during erythropoiesis.,PRJNA1010662,Other,Differentiation of stem and progenitor cells is a highly regulated process that involves the coordinated action of multiple layers of regulation. Here we show how the post transcriptional regulatory layer instructs the chromatin regulation level via miR 144 and its targets to orchestrate chromatin condensation during erythropoiesis. The loss of miR 144 leads to impaired chromatin condensation during erythrocyte maturation.,,,,RNA seq Erythrocytes Wild type embryo,WT embryo,,isolate:Wildtype|age:Embryo|collection date:N/A|geo loc name:N/A|sex:mixed|tissue:Blood|BioSampleModel:Model organism or animal,,,,,,,,,Quant seq Erythrocytes Wild type Danio rerio 2 dpf replicate 2,WT2 embryo blood,WT2 embryo blood,Libraries were made using QuantSeq three prime mRNA Seq Library Prep Kit for IlluminaLexogen,,,RNA-Seq,TRANSCRIPTOMIC,Oligo-dT,SINGLE,ILLUMINA,Illumina NovaSeq 6000,,SRP457465,,,DC-WTE2_S14.fastq,fastq,250958009.0,9755304.0,DC WTE2 S14.fastq,0:25.73,A:43225839;C:41823862;G:54150092;T:43159724;N:68598492,25,,,,43225839,41823862,54150092,43159724,68598492,SRX21515628,SRS18742879,SRA1701831,University of East Anglia|Biological Sciences,University of East Anglia,1,0.34114,,0.05466,,0.96664,,0.54625,,47,,B,,usable mapping rate,illumina,novaseq_era,3prime,poly_a,lexogen,bulk,unknown,unknown,,United Kingdom,2023-08-30,Hatching,Embryo,Blood,Hematopoietic System
25315,SRR25793387,SRX21515627,SRS18742879,SRP457465,PRJNA1010662,The miR 144/Hmgn2 regulatory axis orchestrates chromatin organization during erythropoiesis.,PRJNA1010662,Other,Differentiation of stem and progenitor cells is a highly regulated process that involves the coordinated action of multiple layers of regulation. Here we show how the post transcriptional regulatory layer instructs the chromatin regulation level via miR 144 and its targets to orchestrate chromatin condensation during erythropoiesis. The loss of miR 144 leads to impaired chromatin condensation during erythrocyte maturation.,,,,RNA seq Erythrocytes Wild type embryo,WT embryo,,isolate:Wildtype|age:Embryo|collection date:N/A|geo loc name:N/A|sex:mixed|tissue:Blood|BioSampleModel:Model organism or animal,,,,,,,,,Quant seq Erythrocytes Wild type Danio rerio 2 dpf replicate 1,WT1 embryo blood,WT1 embryo blood,Libraries were made using QuantSeq three prime mRNA Seq Library Prep Kit for IlluminaLexogen,,,RNA-Seq,TRANSCRIPTOMIC,Oligo-dT,SINGLE,ILLUMINA,Illumina NovaSeq 6000,,SRP457465,,,DC-WTE1_S13.fastq,fastq,816518564.0,19556325.0,DC WTE1 S13.fastq,0:41.75,A:187091550;C:151287428;G:179967901;T:221475884;N:76695801,41,,,,187091550,151287428,179967901,221475884,76695801,SRX21515627,SRS18742879,SRA1701831,University of East Anglia|Biological Sciences,University of East Anglia,1,0.61681,,0.1874,,0.95101,,0.56879,,29,,B,,usable mapping rate,illumina,novaseq_era,3prime,poly_a,lexogen,bulk,unknown,unknown,,United Kingdom,2023-08-30,Hatching,Embryo,Blood,Hematopoietic System
30066,SRR27676305,SRX23343658,SRS20205511,SRP485121,PRJNA1067443,RNA seq&smart seq&CUT TAG,PRJNA1067443,Other,RNA seq&smart seq&CUT TAG,,,,,smart seq of setdb1b mt 2,,strain:missing|isolate:missing|breed:missing|cultivar:missing|ecotype:missing|age:missing|dev stage:96hpf|collection date:missing|geo loc name:missing|sex:pooled male and female|tissue:hematopoietic stem and progenitor cell|replicate:replicate = biological replicate 2|id:9|BioSampleModel:Model organism or animal,,,,,,,,,smart seq of setdb1b mt 2,smart seq of setdb1b mt 2,smart seq of setdb1b mt 2,smart seq of setdb1b mt of replicate 2,,,RNA-Seq,TRANSCRIPTOMIC,PCR,PAIRED,ILLUMINA,Illumina NovaSeq 6000,,SRP485121,,,smart-seq of setdb1b mt_2_R2.fastq.gz.gz smart-seq of setdb1b mt_2_R1.fastq.gz.gz,fastq fastq,11957458200.0,39858194.0,smart seq of setdb1b mt 2 R1.fastq.gz.gz,0:150 1:150,A:3692371435;C:1893324720;G:2810967928;T:3560751613;N:42504,150,150,,,3692371435,1893324720,2810967928,3560751613,42504,SRX23343658,SRS20205511,SRA1789215,East China Normal University|Institute of Biomedical Sciences,East China Normal University,2,0.76332,0.82639,0.22191,0.23939,0.87093,0.87117,0.59757,0.60008,150,150,B,B,biological fallback assumption,illumina,novaseq_era,unknown,random_priming,unknown,bulk,unknown,unknown,,China,2024-01-22,Larval,Larval,Blood,Hematopoietic System
30067,SRR27676306,SRX23343657,SRS20205510,SRP485121,PRJNA1067443,RNA seq&smart seq&CUT TAG,PRJNA1067443,Other,RNA seq&smart seq&CUT TAG,,,,,smart seq of setdb1b mt 1,,strain:missing|isolate:missing|breed:missing|cultivar:missing|ecotype:missing|age:missing|dev stage:96hpf|collection date:missing|geo loc name:missing|sex:pooled male and female|tissue:hematopoietic stem and progenitor cell|replicate:replicate = biological replicate 1|id:8|BioSampleModel:Model organism or animal,,,,,,,,,smart seq of setdb1b mt 1,smart seq of setdb1b mt 1,smart seq of setdb1b mt 1,smart seq of setdb1b mt of replicate 1,,,RNA-Seq,TRANSCRIPTOMIC,PCR,PAIRED,ILLUMINA,Illumina NovaSeq 6000,,SRP485121,,,smart-seq of setdb1b mt_1_R1.fastq.gz.gz smart-seq of setdb1b mt_1_R2.fastq.gz.gz,fastq fastq,9537788700.0,31792629.0,smart seq of setdb1b mt 1 R1.fastq.gz.gz,0:150 1:150,A:3044433376;C:1450924984;G:2142347814;T:2900047705;N:34821,150,150,,,3044433376,1450924984,2142347814,2900047705,34821,SRX23343657,SRS20205510,SRA1789215,East China Normal University|Institute of Biomedical Sciences,East China Normal University,2,0.74808,0.79354,0.21148,0.22263,0.87405,0.87545,0.58431,0.58836,150,150,B,B,biological fallback assumption,illumina,novaseq_era,unknown,random_priming,unknown,bulk,unknown,unknown,,China,2024-01-22,Larval,Larval,Blood,Hematopoietic System
30068,SRR27676307,SRX23343656,SRS20205509,SRP485121,PRJNA1067443,RNA seq&smart seq&CUT TAG,PRJNA1067443,Other,RNA seq&smart seq&CUT TAG,,,,,smart seq of setdb1b control 2,,strain:missing|isolate:missing|breed:missing|cultivar:missing|ecotype:missing|age:missing|dev stage:96hpf|collection date:missing|geo loc name:missing|sex:pooled male and female|tissue:hematopoietic stem and progenitor cell|replicate:replicate = biological replicate 2|id:7|BioSampleModel:Model organism or animal,,,,,,,,,smart seq of setdb1b control 2,smart seq of setdb1b control 2,smart seq of setdb1b control 2,smart seq of setdb1b control of replicate 2,,,RNA-Seq,TRANSCRIPTOMIC,PCR,PAIRED,ILLUMINA,Illumina NovaSeq 6000,,SRP485121,,,smart-seq of setdb1b control_2_R1.fastq.gz.gz smart-seq of setdb1b control_2_R2.fastq.gz.gz,fastq fastq,7963596600.0,26545322.0,smart seq of setdb1b control 2 R1.fastq.gz.gz,0:150 1:150,A:2522387513;C:1217203824;G:1776725064;T:2447251088;N:29111,150,150,,,2522387513,1217203824,1776725064,2447251088,29111,SRX23343656,SRS20205509,SRA1789215,East China Normal University|Institute of Biomedical Sciences,East China Normal University,2,0.77121,0.80578,0.22631,0.23757,0.85953,0.86298,0.58219,0.58387,150,150,B,B,biological fallback assumption,illumina,novaseq_era,unknown,random_priming,unknown,bulk,unknown,unknown,,China,2024-01-22,Larval,Larval,Blood,Hematopoietic System
30069,SRR27676308,SRX23343655,SRS20205508,SRP485121,PRJNA1067443,RNA seq&smart seq&CUT TAG,PRJNA1067443,Other,RNA seq&smart seq&CUT TAG,,,,,smart seq of setdb1b control 1,,strain:missing|isolate:missing|breed:missing|cultivar:missing|ecotype:missing|age:missing|dev stage:96hpf|collection date:missing|geo loc name:missing|sex:pooled male and female|tissue:hematopoietic stem and progenitor cell|replicate:replicate = biological replicate 1|id:6|BioSampleModel:Model organism or animal,,,,,,,,,smart seq of setdb1b control 1,smart seq of setdb1b control 1,smart seq of setdb1b control 1,smart seq of setdb1b control of replicate 1,,,RNA-Seq,TRANSCRIPTOMIC,PCR,PAIRED,ILLUMINA,Illumina NovaSeq 6000,,SRP485121,,,smart-seq of setdb1b control_1_R2.fastq.gz.gz smart-seq of setdb1b control_1_R1.fastq.gz.gz,fastq fastq,11867370900.0,39557903.0,smart seq of setdb1b control 1 R1.fastq.gz.gz,0:150 1:150,A:3969636478;C:1678555005;G:2520767064;T:3698368678;N:43675,150,150,,,3969636478,1678555005,2520767064,3698368678,43675,SRX23343655,SRS20205508,SRA1789215,East China Normal University|Institute of Biomedical Sciences,East China Normal University,2,0.73517,0.73836,0.23036,0.23129,0.86407,0.86675,0.59652,0.59533,150,150,B,B,biological fallback assumption,illumina,novaseq_era,unknown,random_priming,unknown,bulk,unknown,unknown,,China,2024-01-22,Larval,Larval,Blood,Hematopoietic System
30070,SRR27676309,SRX23343654,SRS20205505,SRP485121,PRJNA1067443,RNA seq&smart seq&CUT TAG,PRJNA1067443,Other,RNA seq&smart seq&CUT TAG,,,,,RNA seq of atf7ip mt 2,,strain:missing|isolate:missing|breed:missing|cultivar:missing|ecotype:missing|age:missing|dev stage:72hpf|collection date:missing|geo loc name:missing|sex:pooled male and female|tissue:hematopoietic stem and progenitor cell|replicate:replicate = biological replicate 2|id:5|BioSampleModel:Model organism or animal,,,,,,,,,mRNAseq of atf7ip mt,RNA seq of atf7ip mt 2,RNA seq of atf7ip mt 2,mRNAseq of atf7ip mt of replicate 2,,,RNA-Seq,TRANSCRIPTOMIC,PCR,PAIRED,ILLUMINA,Illumina NovaSeq 6000,,SRP485121,,,RNA-seq of atf7ip mt_2_R2.fastq.gz.gz RNA-seq of atf7ip mt_2_R1.fastq.gz.gz,fastq fastq,2881485000.0,9604950.0,RNA seq of atf7ip mt 2 R1.fastq.gz.gz,0:150 1:150,A:714870764;C:672086586;G:819085358;T:675370688;N:71604,150,150,,,714870764,672086586,819085358,675370688,71604,SRX23343654,SRS20205505,SRA1789215,East China Normal University|Institute of Biomedical Sciences,East China Normal University,2,0.95105,0.94782,0.0877,0.08683,0.67838,0.68085,0.4943,0.49308,150,150,B,B,biological fallback assumption,illumina,novaseq_era,unknown,random_priming,unknown,bulk,unknown,unknown,,China,2024-01-22,Larval,Larval,Blood,Hematopoietic System
30071,SRR27676310,SRX23343653,SRS20205506,SRP485121,PRJNA1067443,RNA seq&smart seq&CUT TAG,PRJNA1067443,Other,RNA seq&smart seq&CUT TAG,,,,,RNA seq of atf7ip mt 1,,strain:missing|isolate:missing|breed:missing|cultivar:missing|ecotype:missing|age:missing|dev stage:72hpf|collection date:missing|geo loc name:missing|sex:pooled male and female|tissue:hematopoietic stem and progenitor cell|replicate:replicate = biological replicate 1|id:4|BioSampleModel:Model organism or animal,,,,,,,,,mRNAseq of atf7ip mt,RNA seq of atf7ip mt 1,RNA seq of atf7ip mt 1,mRNAseq of atf7ip mt of replicate 1,,,RNA-Seq,TRANSCRIPTOMIC,PCR,PAIRED,ILLUMINA,Illumina NovaSeq 6000,,SRP485121,,,RNA-seq of atf7ip mt_1_R2.fastq.gz.gz RNA-seq of atf7ip mt_1_R1.fastq.gz.gz,fastq fastq,5215476900.0,17384923.0,RNA seq of atf7ip mt 1 R1.fastq.gz.gz,0:150 1:150,A:1305694077;C:1250588317;G:1437727006;T:1221425310;N:42190,150,150,,,1305694077,1250588317,1437727006,1221425310,42190,SRX23343653,SRS20205506,SRA1789215,East China Normal University|Institute of Biomedical Sciences,East China Normal University,2,0.95459,0.9546,0.09418,0.0933,0.67353,0.67643,0.49356,0.49989,150,150,B,B,biological fallback assumption,illumina,novaseq_era,unknown,random_priming,unknown,bulk,unknown,unknown,,China,2024-01-22,Larval,Larval,Blood,Hematopoietic System
30072,SRR27676311,SRX23343652,SRS20205507,SRP485121,PRJNA1067443,RNA seq&smart seq&CUT TAG,PRJNA1067443,Other,RNA seq&smart seq&CUT TAG,,,,,RNA seq of atf7ip control 3,,strain:missing|isolate:missing|breed:missing|cultivar:missing|ecotype:missing|age:missing|dev stage:72hpf|collection date:missing|geo loc name:missing|sex:pooled male and female|tissue:hematopoietic stem and progenitor cell|replicate:replicate = biological replicate 3|id:3|BioSampleModel:Model organism or animal,,,,,,,,,mRNAseq of atf7ip control,RNA seq of atf7ip control 3,RNA seq of atf7ip control 3,mRNAseq of atf7ip control of replicate 3,,,RNA-Seq,TRANSCRIPTOMIC,PCR,PAIRED,ILLUMINA,Illumina NovaSeq 6000,,SRP485121,,,RNA-seq of atf7ip control_3_R2.fastq.gz.gz RNA-seq of atf7ip control_3_R1.fastq.gz.gz,fastq fastq,6742549200.0,22475164.0,RNA seq of atf7ip control 3 R1.fastq.gz.gz,0:150 1:150,A:1698977237;C:1657996046;G:1800441072;T:1584967439;N:167406,150,150,,,1698977237,1657996046,1800441072,1584967439,167406,SRX23343652,SRS20205507,SRA1789215,East China Normal University|Institute of Biomedical Sciences,East China Normal University,2,0.96114,0.9601,0.05191,0.05152,0.69219,0.69398,0.48597,0.48633,150,150,B,B,biological fallback assumption,illumina,novaseq_era,unknown,random_priming,unknown,bulk,unknown,unknown,,China,2024-01-22,Larval,Larval,Blood,Hematopoietic System
30073,SRR27676312,SRX23343651,SRS20205504,SRP485121,PRJNA1067443,RNA seq&smart seq&CUT TAG,PRJNA1067443,Other,RNA seq&smart seq&CUT TAG,,,,,RNA seq of atf7ip control 2,,strain:missing|isolate:missing|breed:missing|cultivar:missing|ecotype:missing|age:missing|dev stage:72hpf|collection date:missing|geo loc name:missing|sex:pooled male and female|tissue:hematopoietic stem and progenitor cell|replicate:replicate = biological replicate 2|id:2|BioSampleModel:Model organism or animal,,,,,,,,,mRNAseq of atf7ip control,RNA seq of atf7ip control 2,RNA seq of atf7ip control 2,mRNAseq of atf7ip control of replicate 2,,,RNA-Seq,TRANSCRIPTOMIC,PCR,PAIRED,ILLUMINA,Illumina NovaSeq 6000,,SRP485121,,,RNA-seq of atf7ip control_2_R2.fastq.gz.gz RNA-seq of atf7ip control_2_R1.fastq.gz.gz,fastq fastq,6962540400.0,23208468.0,RNA seq of atf7ip control 2 R1.fastq.gz.gz,0:150 1:150,A:1794934846;C:1640272261;G:1855642638;T:1671491013;N:199642,150,150,,,1794934846,1640272261,1855642638,1671491013,199642,SRX23343651,SRS20205504,SRA1789215,East China Normal University|Institute of Biomedical Sciences,East China Normal University,2,0.95531,0.95468,0.05949,0.05926,0.71019,0.71129,0.50401,0.50622,150,150,B,B,biological fallback assumption,illumina,novaseq_era,unknown,random_priming,unknown,bulk,unknown,unknown,,China,2024-01-22,Larval,Larval,Blood,Hematopoietic System
30074,SRR27676313,SRX23343650,SRS20205503,SRP485121,PRJNA1067443,RNA seq&smart seq&CUT TAG,PRJNA1067443,Other,RNA seq&smart seq&CUT TAG,,,,,RNA seq of atf7ip control 1,,strain:missing|isolate:missing|breed:missing|cultivar:missing|ecotype:missing|age:missing|dev stage:72hpf|collection date:missing|geo loc name:missing|sex:pooled male and female|tissue:hematopoietic stem and progenitor cell|replicate:replicate = biological replicate 1|id:1|BioSampleModel:Model organism or animal,,,,,,,,,mRNAseq of atf7ip control,RNA seq of atf7ip control 1,RNA seq of atf7ip control 1,mRNAseq of atf7ip control of replicate 1,,,RNA-Seq,TRANSCRIPTOMIC,PCR,PAIRED,ILLUMINA,Illumina NovaSeq 6000,,SRP485121,,,RNA-seq of atf7ip control_1_R1.fastq.gz.gz RNA-seq of atf7ip control_1_R2.fastq.gz.gz,fastq fastq,8543359800.0,28477866.0,RNA seq of atf7ip control 1 R1.fastq.gz.gz,0:150 1:150,A:2200058170;C:2049588985;G:2219737118;T:2073765388;N:210139,150,150,,,2200058170,2049588985,2219737118,2073765388,210139,SRX23343650,SRS20205503,SRA1789215,East China Normal University|Institute of Biomedical Sciences,East China Normal University,2,0.96026,0.95618,0.05646,0.05613,0.68424,0.6856,0.48963,0.49334,150,150,B,B,biological fallback assumption,illumina,novaseq_era,unknown,random_priming,unknown,bulk,unknown,unknown,,China,2024-01-22,Larval,Larval,Blood,Hematopoietic System
31522,SRR28418937,SRX24023264,SRS20817617,SRP497230,PRJNA1090848,Reprogramming of 3D genome structure underlying HSPC development in zebrafish [RNA seq],GSE262188,Transcriptome Analysis,Development of hematopoietic stem and progenitor cells HSPC is a multi staged complex process that conserved between zebrafish and mammals; however the mechanism underlying HSPC development is not fully understood. Chromatin conformation plays important roles in transcriptional regulation and cell fate decision its dynamic and role in HSPC development is poorly investigated. Here we performed chromatin structure and multi omics dissection across different stages of HSPC developmental trajectory in zebrafish. Chromatin organization of zebrafish HSPC resemble mammalian cells with similar hierarchical structure and characteristics. We revealed the multi scale reorganization of 3D genome and its influence on transcriptional regulation and transition of cell function during HSPC development. Nascent HSPC is featured by loose conformation with obscure structure at all layers. Notably PU.1 was identified as a potential factor mediating formation of promoter involved loops and regulating gene expression as well as HSPC function. Our results provided a global view of chromatin structure dynamics associated with development of zebrafish HSPC and discovered key transcription factor involved in HSPC chromatin interactions which will provide new insights into the epigenetic regulatory mechanisms underlying vertebrate HSPC fate decision. Overall design: To comprehensively dissect 3D genome rearrangement and its relation to transcriptional changes of zebrafish HSPC we get RNA seq results from adult sample. Then conjoint analysis of RNA seq with other datas can reveal the function of transcriptional factors such as PU.1 .,,pubmed:38886858,,HPSC rep3 RNA seq 3month,GSM8159257,,source name:hematopoietic stem cell|tissue:hematopoietic stem cell|cell line:TgCD41:GFP gata1:dsRed|cell type:hematopoietic stem cell|genotype:CD41+gata1 |time:3month|treatment:flow cytometry|geo loc name:missing|collection date:missing,HPSC rep3 RNA seq 3month,The library is evaluated by FastQC. Readswith mean quality score less than orequal to 30 are removed. Raw reads were trimmed and removed for adapter sequences by fatspv.0.23.2 withpaired end default parameters. Extremely short fragment with length less than or equal to 30bp were also removed. post filtering high quality reads were aligned to GRCz10 zebrafish genome using HISAT2 with default parameters. FeatureCounts wasused to quantify gene expression and obtain reads count. Fold changes in gene transcription levels were estimated using DESeq2.Enrichment analysis of gene function was performed in the Metascape platform. Assembly: GRCz10 Supplementary files format and content: tab delimited text file includes raw counts for each Sample,hematopoietic stem cell,,Briefly ∼10 ng of total RNA for each sample was utilized for first strand cDNA reverse transcription in a 30 μl RT buffer containing SuperScript II RTase 100 U RNase inhibitor 10 U dNTP mix 10 mM each SS III first strand buffer 1× DTT 5 mM betaine 1 M MgCl2 6 mM and TSO 1 μM. The RNA library was prepared using TruePrep DNA Library Prep Kit V2 for Illumina,,tissue:hematopoietic stem cell|cell line:TgCD41:GFP gata1:dsRed|cell type:hematopoietic stem cell|genotype:CD41+gata1 |time:3month|treatment:flow cytometry,GSM8159257,GSM8159257: HPSC rep3 RNA seq 3month; Danio rerio; RNA Seq,GSM8159257 r1,GSM8159257,1,Briefly ∼10 ng of total RNA for each sample was utilized for first strand cDNA reverse transcription in a 30 μl RT buffer containing SuperScript II RTase 100 U RNase inhibitor 10 U dNTP mix 10 mM each SS III first strand buffer 1× DTT 5 mM betaine 1 M MgCl2 6 mM and TSO 1 μM. The RNA library was prepared using TruePrep DNA Library Prep Kit V2 for Illumina,,RNA-Seq,TRANSCRIPTOMIC,cDNA,PAIRED,ILLUMINA,Illumina NovaSeq 6000,,SRP497230,,loader:fastq load.py,RNA-seq_Adult_HPSC_rep3_R1.fq.gz RNA-seq_Adult_HPSC_rep3_R2.fq.gz,fastq fastq,11621758500.0,38739195.0,GSM8159257 r1,0:150 1:150,A:3144084931;C:2632272493;G:2693165513;T:3151802925;N:432638,150,150,,,3144084931,2632272493,2693165513,3151802925,432638,SRX24023264,SRS20817617,SRA1831889,South China University of Technology,South China University of Technology,,,,,,,,,,,,B,B,biological fallback assumption,illumina,novaseq_era,unknown,cdna_unspecified,unknown,bulk,unknown,unknown,,China,2024-03-21,Adult,Adult,Blood,Hematopoietic System
31523,SRR28418938,SRX24023263,SRS20817616,SRP497230,PRJNA1090848,Reprogramming of 3D genome structure underlying HSPC development in zebrafish [RNA seq],GSE262188,Transcriptome Analysis,Development of hematopoietic stem and progenitor cells HSPC is a multi staged complex process that conserved between zebrafish and mammals; however the mechanism underlying HSPC development is not fully understood. Chromatin conformation plays important roles in transcriptional regulation and cell fate decision its dynamic and role in HSPC development is poorly investigated. Here we performed chromatin structure and multi omics dissection across different stages of HSPC developmental trajectory in zebrafish. Chromatin organization of zebrafish HSPC resemble mammalian cells with similar hierarchical structure and characteristics. We revealed the multi scale reorganization of 3D genome and its influence on transcriptional regulation and transition of cell function during HSPC development. Nascent HSPC is featured by loose conformation with obscure structure at all layers. Notably PU.1 was identified as a potential factor mediating formation of promoter involved loops and regulating gene expression as well as HSPC function. Our results provided a global view of chromatin structure dynamics associated with development of zebrafish HSPC and discovered key transcription factor involved in HSPC chromatin interactions which will provide new insights into the epigenetic regulatory mechanisms underlying vertebrate HSPC fate decision. Overall design: To comprehensively dissect 3D genome rearrangement and its relation to transcriptional changes of zebrafish HSPC we get RNA seq results from adult sample. Then conjoint analysis of RNA seq with other datas can reveal the function of transcriptional factors such as PU.1 .,,pubmed:38886858,,HPSC rep2 RNA seq 3month,GSM8159256,,source name:hematopoietic stem cell|tissue:hematopoietic stem cell|cell line:TgCD41:GFP gata1:dsRed|cell type:hematopoietic stem cell|genotype:CD41+gata1 |time:3month|treatment:flow cytometry|geo loc name:missing|collection date:missing,HPSC rep2 RNA seq 3month,The library is evaluated by FastQC. Readswith mean quality score less than orequal to 30 are removed. Raw reads were trimmed and removed for adapter sequences by fatspv.0.23.2 withpaired end default parameters. Extremely short fragment with length less than or equal to 30bp were also removed. post filtering high quality reads were aligned to GRCz10 zebrafish genome using HISAT2 with default parameters. FeatureCounts wasused to quantify gene expression and obtain reads count. Fold changes in gene transcription levels were estimated using DESeq2.Enrichment analysis of gene function was performed in the Metascape platform. Assembly: GRCz10 Supplementary files format and content: tab delimited text file includes raw counts for each Sample,hematopoietic stem cell,,Briefly ∼10 ng of total RNA for each sample was utilized for first strand cDNA reverse transcription in a 30 μl RT buffer containing SuperScript II RTase 100 U RNase inhibitor 10 U dNTP mix 10 mM each SS III first strand buffer 1× DTT 5 mM betaine 1 M MgCl2 6 mM and TSO 1 μM. The RNA library was prepared using TruePrep DNA Library Prep Kit V2 for Illumina,,tissue:hematopoietic stem cell|cell line:TgCD41:GFP gata1:dsRed|cell type:hematopoietic stem cell|genotype:CD41+gata1 |time:3month|treatment:flow cytometry,GSM8159256,GSM8159256: HPSC rep2 RNA seq 3month; Danio rerio; RNA Seq,GSM8159256 r1,GSM8159256,1,Briefly ∼10 ng of total RNA for each sample was utilized for first strand cDNA reverse transcription in a 30 μl RT buffer containing SuperScript II RTase 100 U RNase inhibitor 10 U dNTP mix 10 mM each SS III first strand buffer 1× DTT 5 mM betaine 1 M MgCl2 6 mM and TSO 1 μM. The RNA library was prepared using TruePrep DNA Library Prep Kit V2 for Illumina,,RNA-Seq,TRANSCRIPTOMIC,cDNA,PAIRED,ILLUMINA,Illumina NovaSeq 6000,,SRP497230,,loader:fastq load.py,RNA-seq_Adult_HPSC_rep2_R1.fq.gz RNA-seq_Adult_HPSC_rep2_R2.fq.gz,fastq fastq,9951217200.0,33170724.0,GSM8159256 r1,0:150 1:150,A:2755384814;C:2209586340;G:2237522365;T:2748523249;N:200432,150,150,,,2755384814,2209586340,2237522365,2748523249,200432,SRX24023263,SRS20817616,SRA1831889,South China University of Technology,South China University of Technology,,,,,,,,,,,,B,B,biological fallback assumption,illumina,novaseq_era,unknown,cdna_unspecified,unknown,bulk,unknown,unknown,,China,2024-03-21,Adult,Adult,Blood,Hematopoietic System
31524,SRR28418939,SRX24023262,SRS20817615,SRP497230,PRJNA1090848,Reprogramming of 3D genome structure underlying HSPC development in zebrafish [RNA seq],GSE262188,Transcriptome Analysis,Development of hematopoietic stem and progenitor cells HSPC is a multi staged complex process that conserved between zebrafish and mammals; however the mechanism underlying HSPC development is not fully understood. Chromatin conformation plays important roles in transcriptional regulation and cell fate decision its dynamic and role in HSPC development is poorly investigated. Here we performed chromatin structure and multi omics dissection across different stages of HSPC developmental trajectory in zebrafish. Chromatin organization of zebrafish HSPC resemble mammalian cells with similar hierarchical structure and characteristics. We revealed the multi scale reorganization of 3D genome and its influence on transcriptional regulation and transition of cell function during HSPC development. Nascent HSPC is featured by loose conformation with obscure structure at all layers. Notably PU.1 was identified as a potential factor mediating formation of promoter involved loops and regulating gene expression as well as HSPC function. Our results provided a global view of chromatin structure dynamics associated with development of zebrafish HSPC and discovered key transcription factor involved in HSPC chromatin interactions which will provide new insights into the epigenetic regulatory mechanisms underlying vertebrate HSPC fate decision. Overall design: To comprehensively dissect 3D genome rearrangement and its relation to transcriptional changes of zebrafish HSPC we get RNA seq results from adult sample. Then conjoint analysis of RNA seq with other datas can reveal the function of transcriptional factors such as PU.1 .,,pubmed:38886858,,HPSC rep1 RNA seq 3month,GSM8159255,,source name:hematopoietic stem cell|tissue:hematopoietic stem cell|cell line:TgCD41:GFP gata1:dsRed|cell type:hematopoietic stem cell|genotype:CD41+gata1 |time:3month|treatment:flow cytometry|geo loc name:missing|collection date:missing,HPSC rep1 RNA seq 3month,The library is evaluated by FastQC. Readswith mean quality score less than orequal to 30 are removed. Raw reads were trimmed and removed for adapter sequences by fatspv.0.23.2 withpaired end default parameters. Extremely short fragment with length less than or equal to 30bp were also removed. post filtering high quality reads were aligned to GRCz10 zebrafish genome using HISAT2 with default parameters. FeatureCounts wasused to quantify gene expression and obtain reads count. Fold changes in gene transcription levels were estimated using DESeq2.Enrichment analysis of gene function was performed in the Metascape platform. Assembly: GRCz10 Supplementary files format and content: tab delimited text file includes raw counts for each Sample,hematopoietic stem cell,,Briefly ∼10 ng of total RNA for each sample was utilized for first strand cDNA reverse transcription in a 30 μl RT buffer containing SuperScript II RTase 100 U RNase inhibitor 10 U dNTP mix 10 mM each SS III first strand buffer 1× DTT 5 mM betaine 1 M MgCl2 6 mM and TSO 1 μM. The RNA library was prepared using TruePrep DNA Library Prep Kit V2 for Illumina,,tissue:hematopoietic stem cell|cell line:TgCD41:GFP gata1:dsRed|cell type:hematopoietic stem cell|genotype:CD41+gata1 |time:3month|treatment:flow cytometry,GSM8159255,GSM8159255: HPSC rep1 RNA seq 3month; Danio rerio; RNA Seq,GSM8159255 r1,GSM8159255,1,Briefly ∼10 ng of total RNA for each sample was utilized for first strand cDNA reverse transcription in a 30 μl RT buffer containing SuperScript II RTase 100 U RNase inhibitor 10 U dNTP mix 10 mM each SS III first strand buffer 1× DTT 5 mM betaine 1 M MgCl2 6 mM and TSO 1 μM. The RNA library was prepared using TruePrep DNA Library Prep Kit V2 for Illumina,,RNA-Seq,TRANSCRIPTOMIC,cDNA,PAIRED,ILLUMINA,Illumina NovaSeq 6000,,SRP497230,,loader:fastq load.py,RNA-seq_Adult_HPSC_rep1_R1.fq.gz RNA-seq_Adult_HPSC_rep1_R2.fq.gz,fastq fastq,11096617200.0,36988724.0,GSM8159255 r1,0:150 1:150,A:3071303610;C:2460399138;G:2510824334;T:3053621175;N:468943,150,150,,,3071303610,2460399138,2510824334,3053621175,468943,SRX24023262,SRS20817615,SRA1831889,South China University of Technology,South China University of Technology,,,,,,,,,,,,B,B,biological fallback assumption,illumina,novaseq_era,unknown,cdna_unspecified,unknown,bulk,unknown,unknown,,China,2024-03-21,Adult,Adult,Blood,Hematopoietic System
37103,SRR891512,SRX298192,SRS673882,SRP024369,PRJNA207719,Tissue specific transcriptome profiling of zebrafish,PRJNA207719,Other,Tissue specific transcriptome profiling of zebrafish.,,,,,Danio rerio blood,,sex:missing|strain:wild type|tissue:blood|health state:normal|collection date:2013|geo loc name:India|biomaterial provider:CSIR Institute of Genomics and Integrative Biology|age:adult|BioSampleModel:Model organism or animal,,,,,,,,,Tissue specific transcriptome of zebrafish,Transcriptome of zebrafish Danio rerio blood,zebrafish blood,1,,,RNA-Seq,TRANSCRIPTOMIC,RANDOM,PAIRED,ILLUMINA,Illumina Genome Analyzer IIx,1020Application ReadForward11Application ReadReverse52,SRP024369,,,lane6_NoIndex_L006_R2_cat.fastq lane6_NoIndex_L006_R1_cat.fastq,fastq fastq,2122070832.0,20804616.0,Transcriptome of zebrafish Danio rerio blood,0:51 1:51,A:508869849;C:550502747;G:580539251;T:481927903;N:231082,51,51,,,508869849,550502747,580539251,481927903,231082,SRX298192,SRS673882,SRA089174,CSIR-IGIB,CSIR-Institute of Genomics and Integrative Biology CSIR-Institute of Genomics and Integrative Biology,2,0.78255,0.77496,0.03257,0.03239,0.75672,0.75542,0.44135,0.44382,51,51,B,B,biological fallback assumption,illumina,early_illumina,unknown,random_priming,unknown,bulk,unknown,unknown,,India,2013-06-10,Adult,Adult,Blood,Hematopoietic System
39665,SRR2027911,SRX1029315,SRS937775,SRP058376,PRJNA284108,RNAseq profiling of zebrafish larval macrophages reveals similarities with human M1 and M2 transcriptome signatures,GSE68920,Transcriptome Analysis,We used different zebrafish transgenic lines to sort macrophages neutrophils and immature lymphoid cells from 5 dpf 6 dpf zebrafish larvae and analyzed their transcriptomes. Comparison between the different transcriptomes and gene ontology analysis revealed specificities for each cell population. Comparison with previously published data showed that zebrafish larval macrophages expressed several known human M1 and M2 macrophages. Transcriptome analysis of uninfected and infected macrophages from embryos infected by of Mycobacterium marinum revealed infection induced transcriptional changes and a shift towards M1 transcriptomic signature. Overall design: For infection experiments zebrafish embryos were manually dechorionated at 24 hpf and were infected by injection in the caudal vein of 125 colony forming unit of Mycobacterium marinum M strain expressing GFP. Embryos were grown into egg water refresh every day and incubated for 5 days at 28°C. 0.003% 1 phenyl 2 thiourea Sigma Aldrich was added post 1 day to prevent melanisation. post the incubation period embryos were dissociated into single cell suspension by Trypsin treatment and 20 fluorescent cells per condition were sorted by FACS directly into cDNA synthesis buffer. cDNA synthesis amplification and library preparation were performed as previously described. Rougeot et al. 2014 Methods Mol Biol 1197:41 66.,,pubmed:31832066,,6dpf mpeg1:mCherryPosMmarinumGFPPos rep3,GSM1686459,,source name:zebra fish larvae|tissue:20 mpeg1 positive macrophages|cell population:GFP positive|developmental stage:6dpf|caudal vain infection:M marinum M strain 125cfu,6dpf mpeg1:mCherryPosMmarinumGFPPos rep3,Image analysis and base calling was done by the Illumina HCS version 1.15.1 Quality trimmed reads were aligned to the Ensembl zebrafish genome Zv9 using Bowtie and reads were mapped to zebrafish transcripts using TopHat and a modified version of the Ensembl Zv9 79 annotation containing few additional genes. Genome build: Zv9 Supplementary files format and content: tab separated value files include gene counts for each sample,zebra fish larvae,Zebrafish embryos were manually dechorionated at 24 hpf and at 28 hpf they were micro injected into the caudal vein with 125 CFU of M. marinum M strain bacteria suspended in PBS/2%PVP.,Between 200 and 300 larvae per condition were collected at 6 dpf. Larvae were dissociated into single cell suspension by Trypsin treatment and fluorescent and 20 fluorescent cells per condition were sorted by FACS directly into cDNA synthesis buffer without xxx extraction. cDNA were synthetized and amplified with the SMARTer cDNA synthesis kit for Illumina Sequencing Clonetech according to the manufacturer’s instructions. The integrity of the cDNA was confirmed by Lab on chip analysis using the 2100 Bioanalyzer Agilent Technologies. The sheared amplified cDNA were used to make RNAseq libraries using the Illumina TruSeq RNA Sample Preparation Kit v2 Illumina Inc. San Diego USA. In the manufacturer’s instructions two modifications were made. In the adapter ligation step 1 µl instead of 2.5 µl adapter was used. In the library size selection step the library fragments were isolated with a double Ampure XP purification with a 0.7x beads to library ratio. The resulting mRNA Seq library was sequenced using an Illumina HiSeq2000 instrument according to the manufacturer’s description with a read length of 1 x 50 nucleotides.,Zebrafish were handled in compliance with the local animal welfare regulations and maintained according to standard protocols http://ZFIN.org. Embryos were grown at 28 5°C in egg water 60µg/ml Instant Ocean sea salts containing 0.003% 1 phenyl 2 thiourea SigmaFor infected samples. Zebrafish embryos were manually dechorionated at 24 hpf and at 28 hpf they were micro injected into the caudal vein with 125 CFU of M. marinum M strain bacteria suspended in PBS/2%PVP. Aldrich,tissue:20 mpeg1 positive macrophages|cell population:GFP positive|developmental stage:6dpf|caudal vain infection:M marinum M strain 125cfu,GSM1686459,GSM1686459: 6dpf mpeg1:mCherryPosMmarinumGFPPos rep3; Danio rerio; RNA Seq,GSM1686459,,1,Between 200 and 300 larvae per condition were collected at 6 dpf. Larvae were dissociated into single cell suspension by Trypsin treatment and fluorescent and 20 fluorescent cells per condition were sorted by FACS directly into cDNA synthesis buffer without xxx extraction. cDNA were synthetized and amplified with the SMARTer cDNA synthesis kit for Illumina Sequencing Clonetech according to the manufacturer’s instructions. The integrity of the cDNA was confirmed by Lab on chip analysis using the 2100 Bioanalyzer Agilent Technologies. The sheared amplified cDNA were used to make RNAseq libraries using the Illumina TruSeq RNA Sample Preparation Kit v2 Illumina Inc. San Diego USA. In the manufacturer’s instructions two modifications were made. In the adapter ligation step 1 µl instead of 2.5 µl adapter was used. In the library size selection step the library fragments were isolated with a double Ampure XP purification with a 0.7x beads to library ratio. The resulting mRNA Seq library was sequenced using an Illumina HiSeq2000 instrument according to the manufacturer’s description with a read length of 1 x 50 nucleotides.,GEO Accession:GSM1686459,RNA-Seq,TRANSCRIPTOMIC,cDNA,SINGLE,ILLUMINA,Illumina HiSeq 2000,,SRP058376,,,ZFG-14-09_06_ATTCCT_L003_R1_001.fastq.gz,fastq,988427889.0,19380939.0,GSM1686459 r1,0:51,A:322268594;C:166925867;G:171531103;T:327506982;N:195343,51,,,,322268594,166925867,171531103,327506982,195343,SRX1029315,SRS937775,SRA268539,GEO,"Institute of Biology, Leiden University",1,0.6999,,0.24019,,0.85358,,0.56832,,51,,B,,usable mapping rate,illumina,hiseq_era,full_length,poly_a,smarter,bulk,unknown,unknown,,Netherlands,2015-05-15,Larval,Larval,Blood,Hematopoietic System
39666,SRR2027910,SRX1029314,SRS937773,SRP058376,PRJNA284108,RNAseq profiling of zebrafish larval macrophages reveals similarities with human M1 and M2 transcriptome signatures,GSE68920,Transcriptome Analysis,We used different zebrafish transgenic lines to sort macrophages neutrophils and immature lymphoid cells from 5 dpf 6 dpf zebrafish larvae and analyzed their transcriptomes. Comparison between the different transcriptomes and gene ontology analysis revealed specificities for each cell population. Comparison with previously published data showed that zebrafish larval macrophages expressed several known human M1 and M2 macrophages. Transcriptome analysis of uninfected and infected macrophages from embryos infected by of Mycobacterium marinum revealed infection induced transcriptional changes and a shift towards M1 transcriptomic signature. Overall design: For infection experiments zebrafish embryos were manually dechorionated at 24 hpf and were infected by injection in the caudal vein of 125 colony forming unit of Mycobacterium marinum M strain expressing GFP. Embryos were grown into egg water refresh every day and incubated for 5 days at 28°C. 0.003% 1 phenyl 2 thiourea Sigma Aldrich was added post 1 day to prevent melanisation. post the incubation period embryos were dissociated into single cell suspension by Trypsin treatment and 20 fluorescent cells per condition were sorted by FACS directly into cDNA synthesis buffer. cDNA synthesis amplification and library preparation were performed as previously described. Rougeot et al. 2014 Methods Mol Biol 1197:41 66.,,pubmed:31832066,,6dpf mpeg1:mCherryPosMmarinumGFPPos rep2,GSM1686458,,source name:zebra fish larvae|tissue:20 mpeg1 positive macrophages|cell population:GFP positive|developmental stage:6dpf|caudal vain infection:M marinum M strain 125cfu,6dpf mpeg1:mCherryPosMmarinumGFPPos rep2,Image analysis and base calling was done by the Illumina HCS version 1.15.1 Quality trimmed reads were aligned to the Ensembl zebrafish genome Zv9 using Bowtie and reads were mapped to zebrafish transcripts using TopHat and a modified version of the Ensembl Zv9 79 annotation containing few additional genes. Genome build: Zv9 Supplementary files format and content: tab separated value files include gene counts for each sample,zebra fish larvae,Zebrafish embryos were manually dechorionated at 24 hpf and at 28 hpf they were micro injected into the caudal vein with 125 CFU of M. marinum M strain bacteria suspended in PBS/2%PVP.,Between 200 and 300 larvae per condition were collected at 6 dpf. Larvae were dissociated into single cell suspension by Trypsin treatment and fluorescent and 20 fluorescent cells per condition were sorted by FACS directly into cDNA synthesis buffer without xxx extraction. cDNA were synthetized and amplified with the SMARTer cDNA synthesis kit for Illumina Sequencing Clonetech according to the manufacturer’s instructions. The integrity of the cDNA was confirmed by Lab on chip analysis using the 2100 Bioanalyzer Agilent Technologies. The sheared amplified cDNA were used to make RNAseq libraries using the Illumina TruSeq RNA Sample Preparation Kit v2 Illumina Inc. San Diego USA. In the manufacturer’s instructions two modifications were made. In the adapter ligation step 1 µl instead of 2.5 µl adapter was used. In the library size selection step the library fragments were isolated with a double Ampure XP purification with a 0.7x beads to library ratio. The resulting mRNA Seq library was sequenced using an Illumina HiSeq2000 instrument according to the manufacturer’s description with a read length of 1 x 50 nucleotides.,Zebrafish were handled in compliance with the local animal welfare regulations and maintained according to standard protocols http://ZFIN.org. Embryos were grown at 28 5°C in egg water 60µg/ml Instant Ocean sea salts containing 0.003% 1 phenyl 2 thiourea SigmaFor infected samples. Zebrafish embryos were manually dechorionated at 24 hpf and at 28 hpf they were micro injected into the caudal vein with 125 CFU of M. marinum M strain bacteria suspended in PBS/2%PVP. Aldrich,tissue:20 mpeg1 positive macrophages|cell population:GFP positive|developmental stage:6dpf|caudal vain infection:M marinum M strain 125cfu,GSM1686458,GSM1686458: 6dpf mpeg1:mCherryPosMmarinumGFPPos rep2; Danio rerio; RNA Seq,GSM1686458,,1,Between 200 and 300 larvae per condition were collected at 6 dpf. Larvae were dissociated into single cell suspension by Trypsin treatment and fluorescent and 20 fluorescent cells per condition were sorted by FACS directly into cDNA synthesis buffer without xxx extraction. cDNA were synthetized and amplified with the SMARTer cDNA synthesis kit for Illumina Sequencing Clonetech according to the manufacturer’s instructions. The integrity of the cDNA was confirmed by Lab on chip analysis using the 2100 Bioanalyzer Agilent Technologies. The sheared amplified cDNA were used to make RNAseq libraries using the Illumina TruSeq RNA Sample Preparation Kit v2 Illumina Inc. San Diego USA. In the manufacturer’s instructions two modifications were made. In the adapter ligation step 1 µl instead of 2.5 µl adapter was used. In the library size selection step the library fragments were isolated with a double Ampure XP purification with a 0.7x beads to library ratio. The resulting mRNA Seq library was sequenced using an Illumina HiSeq2000 instrument according to the manufacturer’s description with a read length of 1 x 50 nucleotides.,GEO Accession:GSM1686458,RNA-Seq,TRANSCRIPTOMIC,cDNA,SINGLE,ILLUMINA,Illumina HiSeq 2000,,SRP058376,,,ZFG-14-09_05_ACTGAT_L003_R1_001.fastq.gz,fastq,846771207.0,16603357.0,GSM1686458 r1,0:51,A:268435928;C:150903620;G:153931870;T:273331733;N:168056,51,,,,268435928,150903620,153931870,273331733,168056,SRX1029314,SRS937773,SRA268539,GEO,"Institute of Biology, Leiden University",1,0.72025,,0.17943,,0.87937,,0.5683,,51,,B,,usable mapping rate,illumina,hiseq_era,full_length,poly_a,smarter,bulk,unknown,unknown,,Netherlands,2015-05-15,Larval,Larval,Blood,Hematopoietic System
39667,SRR2027909,SRX1029313,SRS937774,SRP058376,PRJNA284108,RNAseq profiling of zebrafish larval macrophages reveals similarities with human M1 and M2 transcriptome signatures,GSE68920,Transcriptome Analysis,We used different zebrafish transgenic lines to sort macrophages neutrophils and immature lymphoid cells from 5 dpf 6 dpf zebrafish larvae and analyzed their transcriptomes. Comparison between the different transcriptomes and gene ontology analysis revealed specificities for each cell population. Comparison with previously published data showed that zebrafish larval macrophages expressed several known human M1 and M2 macrophages. Transcriptome analysis of uninfected and infected macrophages from embryos infected by of Mycobacterium marinum revealed infection induced transcriptional changes and a shift towards M1 transcriptomic signature. Overall design: For infection experiments zebrafish embryos were manually dechorionated at 24 hpf and were infected by injection in the caudal vein of 125 colony forming unit of Mycobacterium marinum M strain expressing GFP. Embryos were grown into egg water refresh every day and incubated for 5 days at 28°C. 0.003% 1 phenyl 2 thiourea Sigma Aldrich was added post 1 day to prevent melanisation. post the incubation period embryos were dissociated into single cell suspension by Trypsin treatment and 20 fluorescent cells per condition were sorted by FACS directly into cDNA synthesis buffer. cDNA synthesis amplification and library preparation were performed as previously described. Rougeot et al. 2014 Methods Mol Biol 1197:41 66.,,pubmed:31832066,,6dpf mpeg1:mCherryPosMmarinumGFPPos rep1,GSM1686457,,source name:zebra fish larvae|tissue:20 mpeg1 positive macrophages|cell population:GFP positive|developmental stage:6dpf|caudal vain infection:M marinum M strain 125cfu,6dpf mpeg1:mCherryPosMmarinumGFPPos rep1,Image analysis and base calling was done by the Illumina HCS version 1.15.1 Quality trimmed reads were aligned to the Ensembl zebrafish genome Zv9 using Bowtie and reads were mapped to zebrafish transcripts using TopHat and a modified version of the Ensembl Zv9 79 annotation containing few additional genes. Genome build: Zv9 Supplementary files format and content: tab separated value files include gene counts for each sample,zebra fish larvae,Zebrafish embryos were manually dechorionated at 24 hpf and at 28 hpf they were micro injected into the caudal vein with 125 CFU of M. marinum M strain bacteria suspended in PBS/2%PVP.,Between 200 and 300 larvae per condition were collected at 6 dpf. Larvae were dissociated into single cell suspension by Trypsin treatment and fluorescent and 20 fluorescent cells per condition were sorted by FACS directly into cDNA synthesis buffer without xxx extraction. cDNA were synthetized and amplified with the SMARTer cDNA synthesis kit for Illumina Sequencing Clonetech according to the manufacturer’s instructions. The integrity of the cDNA was confirmed by Lab on chip analysis using the 2100 Bioanalyzer Agilent Technologies. The sheared amplified cDNA were used to make RNAseq libraries using the Illumina TruSeq RNA Sample Preparation Kit v2 Illumina Inc. San Diego USA. In the manufacturer’s instructions two modifications were made. In the adapter ligation step 1 µl instead of 2.5 µl adapter was used. In the library size selection step the library fragments were isolated with a double Ampure XP purification with a 0.7x beads to library ratio. The resulting mRNA Seq library was sequenced using an Illumina HiSeq2000 instrument according to the manufacturer’s description with a read length of 1 x 50 nucleotides.,Zebrafish were handled in compliance with the local animal welfare regulations and maintained according to standard protocols http://ZFIN.org. Embryos were grown at 28 5°C in egg water 60µg/ml Instant Ocean sea salts containing 0.003% 1 phenyl 2 thiourea SigmaFor infected samples. Zebrafish embryos were manually dechorionated at 24 hpf and at 28 hpf they were micro injected into the caudal vein with 125 CFU of M. marinum M strain bacteria suspended in PBS/2%PVP. Aldrich,tissue:20 mpeg1 positive macrophages|cell population:GFP positive|developmental stage:6dpf|caudal vain infection:M marinum M strain 125cfu,GSM1686457,GSM1686457: 6dpf mpeg1:mCherryPosMmarinumGFPPos rep1; Danio rerio; RNA Seq,GSM1686457,,1,Between 200 and 300 larvae per condition were collected at 6 dpf. Larvae were dissociated into single cell suspension by Trypsin treatment and fluorescent and 20 fluorescent cells per condition were sorted by FACS directly into cDNA synthesis buffer without xxx extraction. cDNA were synthetized and amplified with the SMARTer cDNA synthesis kit for Illumina Sequencing Clonetech according to the manufacturer’s instructions. The integrity of the cDNA was confirmed by Lab on chip analysis using the 2100 Bioanalyzer Agilent Technologies. The sheared amplified cDNA were used to make RNAseq libraries using the Illumina TruSeq RNA Sample Preparation Kit v2 Illumina Inc. San Diego USA. In the manufacturer’s instructions two modifications were made. In the adapter ligation step 1 µl instead of 2.5 µl adapter was used. In the library size selection step the library fragments were isolated with a double Ampure XP purification with a 0.7x beads to library ratio. The resulting mRNA Seq library was sequenced using an Illumina HiSeq2000 instrument according to the manufacturer’s description with a read length of 1 x 50 nucleotides.,GEO Accession:GSM1686457,RNA-Seq,TRANSCRIPTOMIC,cDNA,SINGLE,ILLUMINA,Illumina HiSeq 2000,,SRP058376,,,ZFG-14-09_04_GAGTGG_L003_R1_001.fastq.gz,fastq,807459642.0,15832542.0,GSM1686457 r1,0:51,A:260516660;C:140425216;G:145411663;T:260942267;N:163836,51,,,,260516660,140425216,145411663,260942267,163836,SRX1029313,SRS937774,SRA268539,GEO,"Institute of Biology, Leiden University",1,0.7097,,0.17187,,0.93304,,0.64092,,51,,B,,usable mapping rate,illumina,hiseq_era,full_length,poly_a,smarter,bulk,unknown,unknown,,Netherlands,2015-05-15,Larval,Larval,Blood,Hematopoietic System
39668,SRR2027908,SRX1029312,SRS937776,SRP058376,PRJNA284108,RNAseq profiling of zebrafish larval macrophages reveals similarities with human M1 and M2 transcriptome signatures,GSE68920,Transcriptome Analysis,We used different zebrafish transgenic lines to sort macrophages neutrophils and immature lymphoid cells from 5 dpf 6 dpf zebrafish larvae and analyzed their transcriptomes. Comparison between the different transcriptomes and gene ontology analysis revealed specificities for each cell population. Comparison with previously published data showed that zebrafish larval macrophages expressed several known human M1 and M2 macrophages. Transcriptome analysis of uninfected and infected macrophages from embryos infected by of Mycobacterium marinum revealed infection induced transcriptional changes and a shift towards M1 transcriptomic signature. Overall design: For infection experiments zebrafish embryos were manually dechorionated at 24 hpf and were infected by injection in the caudal vein of 125 colony forming unit of Mycobacterium marinum M strain expressing GFP. Embryos were grown into egg water refresh every day and incubated for 5 days at 28°C. 0.003% 1 phenyl 2 thiourea Sigma Aldrich was added post 1 day to prevent melanisation. post the incubation period embryos were dissociated into single cell suspension by Trypsin treatment and 20 fluorescent cells per condition were sorted by FACS directly into cDNA synthesis buffer. cDNA synthesis amplification and library preparation were performed as previously described. Rougeot et al. 2014 Methods Mol Biol 1197:41 66.,,pubmed:31832066,,6dpf mpeg1:mCherryPos MmarinumGFPNeg rep3,GSM1686456,,source name:zebra fish larvae|tissue:20 mpeg1 positive macrophages|cell population:GFP negative|developmental stage:6dpf|caudal vain infection:M marinum M strain 125cfu,6dpf mpeg1:mCherryPos MmarinumGFPNeg rep3,Image analysis and base calling was done by the Illumina HCS version 1.15.1 Quality trimmed reads were aligned to the Ensembl zebrafish genome Zv9 using Bowtie and reads were mapped to zebrafish transcripts using TopHat and a modified version of the Ensembl Zv9 79 annotation containing few additional genes. Genome build: Zv9 Supplementary files format and content: tab separated value files include gene counts for each sample,zebra fish larvae,Zebrafish embryos were manually dechorionated at 24 hpf and at 28 hpf they were micro injected into the caudal vein with 125 CFU of M. marinum M strain bacteria suspended in PBS/2%PVP.,Between 200 and 300 larvae per condition were collected at 6 dpf. Larvae were dissociated into single cell suspension by Trypsin treatment and fluorescent and 20 fluorescent cells per condition were sorted by FACS directly into cDNA synthesis buffer without xxx extraction. cDNA were synthetized and amplified with the SMARTer cDNA synthesis kit for Illumina Sequencing Clonetech according to the manufacturer’s instructions. The integrity of the cDNA was confirmed by Lab on chip analysis using the 2100 Bioanalyzer Agilent Technologies. The sheared amplified cDNA were used to make RNAseq libraries using the Illumina TruSeq RNA Sample Preparation Kit v2 Illumina Inc. San Diego USA. In the manufacturer’s instructions two modifications were made. In the adapter ligation step 1 µl instead of 2.5 µl adapter was used. In the library size selection step the library fragments were isolated with a double Ampure XP purification with a 0.7x beads to library ratio. The resulting mRNA Seq library was sequenced using an Illumina HiSeq2000 instrument according to the manufacturer’s description with a read length of 1 x 50 nucleotides.,Zebrafish were handled in compliance with the local animal welfare regulations and maintained according to standard protocols http://ZFIN.org. Embryos were grown at 28 5°C in egg water 60µg/ml Instant Ocean sea salts containing 0.003% 1 phenyl 2 thiourea SigmaFor infected samples. Zebrafish embryos were manually dechorionated at 24 hpf and at 28 hpf they were micro injected into the caudal vein with 125 CFU of M. marinum M strain bacteria suspended in PBS/2%PVP. Aldrich,tissue:20 mpeg1 positive macrophages|cell population:GFP negative|developmental stage:6dpf|caudal vain infection:M marinum M strain 125cfu,GSM1686456,GSM1686456: 6dpf mpeg1:mCherryPos MmarinumGFPNeg rep3; Danio rerio; RNA Seq,GSM1686456,,1,Between 200 and 300 larvae per condition were collected at 6 dpf. Larvae were dissociated into single cell suspension by Trypsin treatment and fluorescent and 20 fluorescent cells per condition were sorted by FACS directly into cDNA synthesis buffer without xxx extraction. cDNA were synthetized and amplified with the SMARTer cDNA synthesis kit for Illumina Sequencing Clonetech according to the manufacturer’s instructions. The integrity of the cDNA was confirmed by Lab on chip analysis using the 2100 Bioanalyzer Agilent Technologies. The sheared amplified cDNA were used to make RNAseq libraries using the Illumina TruSeq RNA Sample Preparation Kit v2 Illumina Inc. San Diego USA. In the manufacturer’s instructions two modifications were made. In the adapter ligation step 1 µl instead of 2.5 µl adapter was used. In the library size selection step the library fragments were isolated with a double Ampure XP purification with a 0.7x beads to library ratio. The resulting mRNA Seq library was sequenced using an Illumina HiSeq2000 instrument according to the manufacturer’s description with a read length of 1 x 50 nucleotides.,GEO Accession:GSM1686456,RNA-Seq,TRANSCRIPTOMIC,cDNA,SINGLE,ILLUMINA,Illumina HiSeq 2000,,SRP058376,,,ZFG-14-09_03_CGTACG_L003_R1_001.fastq.gz,fastq,1523483526.0,29872226.0,GSM1686456 r1,0:51,A:499019794;C:267493952;G:277264815;T:479405699;N:299266,51,,,,499019794,267493952,277264815,479405699,299266,SRX1029312,SRS937776,SRA268539,GEO,"Institute of Biology, Leiden University",1,0.67328,,0.15117,,0.91179,,0.54858,,51,,B,,usable mapping rate,illumina,hiseq_era,full_length,poly_a,smarter,bulk,unknown,unknown,,Netherlands,2015-05-15,Larval,Larval,Blood,Hematopoietic System
39669,SRR2027907,SRX1029311,SRS937777,SRP058376,PRJNA284108,RNAseq profiling of zebrafish larval macrophages reveals similarities with human M1 and M2 transcriptome signatures,GSE68920,Transcriptome Analysis,We used different zebrafish transgenic lines to sort macrophages neutrophils and immature lymphoid cells from 5 dpf 6 dpf zebrafish larvae and analyzed their transcriptomes. Comparison between the different transcriptomes and gene ontology analysis revealed specificities for each cell population. Comparison with previously published data showed that zebrafish larval macrophages expressed several known human M1 and M2 macrophages. Transcriptome analysis of uninfected and infected macrophages from embryos infected by of Mycobacterium marinum revealed infection induced transcriptional changes and a shift towards M1 transcriptomic signature. Overall design: For infection experiments zebrafish embryos were manually dechorionated at 24 hpf and were infected by injection in the caudal vein of 125 colony forming unit of Mycobacterium marinum M strain expressing GFP. Embryos were grown into egg water refresh every day and incubated for 5 days at 28°C. 0.003% 1 phenyl 2 thiourea Sigma Aldrich was added post 1 day to prevent melanisation. post the incubation period embryos were dissociated into single cell suspension by Trypsin treatment and 20 fluorescent cells per condition were sorted by FACS directly into cDNA synthesis buffer. cDNA synthesis amplification and library preparation were performed as previously described. Rougeot et al. 2014 Methods Mol Biol 1197:41 66.,,pubmed:31832066,,6dpf mpeg1:mCherryPos MmarinumGFPNeg rep2,GSM1686455,,source name:zebra fish larvae|tissue:20 mpeg1 positive macrophages|cell population:GFP negative|developmental stage:6dpf|caudal vain infection:M marinum M strain 125cfu,6dpf mpeg1:mCherryPos MmarinumGFPNeg rep2,Image analysis and base calling was done by the Illumina HCS version 1.15.1 Quality trimmed reads were aligned to the Ensembl zebrafish genome Zv9 using Bowtie and reads were mapped to zebrafish transcripts using TopHat and a modified version of the Ensembl Zv9 79 annotation containing few additional genes. Genome build: Zv9 Supplementary files format and content: tab separated value files include gene counts for each sample,zebra fish larvae,Zebrafish embryos were manually dechorionated at 24 hpf and at 28 hpf they were micro injected into the caudal vein with 125 CFU of M. marinum M strain bacteria suspended in PBS/2%PVP.,Between 200 and 300 larvae per condition were collected at 6 dpf. Larvae were dissociated into single cell suspension by Trypsin treatment and fluorescent and 20 fluorescent cells per condition were sorted by FACS directly into cDNA synthesis buffer without xxx extraction. cDNA were synthetized and amplified with the SMARTer cDNA synthesis kit for Illumina Sequencing Clonetech according to the manufacturer’s instructions. The integrity of the cDNA was confirmed by Lab on chip analysis using the 2100 Bioanalyzer Agilent Technologies. The sheared amplified cDNA were used to make RNAseq libraries using the Illumina TruSeq RNA Sample Preparation Kit v2 Illumina Inc. San Diego USA. In the manufacturer’s instructions two modifications were made. In the adapter ligation step 1 µl instead of 2.5 µl adapter was used. In the library size selection step the library fragments were isolated with a double Ampure XP purification with a 0.7x beads to library ratio. The resulting mRNA Seq library was sequenced using an Illumina HiSeq2000 instrument according to the manufacturer’s description with a read length of 1 x 50 nucleotides.,Zebrafish were handled in compliance with the local animal welfare regulations and maintained according to standard protocols http://ZFIN.org. Embryos were grown at 28 5°C in egg water 60µg/ml Instant Ocean sea salts containing 0.003% 1 phenyl 2 thiourea SigmaFor infected samples. Zebrafish embryos were manually dechorionated at 24 hpf and at 28 hpf they were micro injected into the caudal vein with 125 CFU of M. marinum M strain bacteria suspended in PBS/2%PVP. Aldrich,tissue:20 mpeg1 positive macrophages|cell population:GFP negative|developmental stage:6dpf|caudal vain infection:M marinum M strain 125cfu,GSM1686455,GSM1686455: 6dpf mpeg1:mCherryPos MmarinumGFPNeg rep2; Danio rerio; RNA Seq,GSM1686455,,1,Between 200 and 300 larvae per condition were collected at 6 dpf. Larvae were dissociated into single cell suspension by Trypsin treatment and fluorescent and 20 fluorescent cells per condition were sorted by FACS directly into cDNA synthesis buffer without xxx extraction. cDNA were synthetized and amplified with the SMARTer cDNA synthesis kit for Illumina Sequencing Clonetech according to the manufacturer’s instructions. The integrity of the cDNA was confirmed by Lab on chip analysis using the 2100 Bioanalyzer Agilent Technologies. The sheared amplified cDNA were used to make RNAseq libraries using the Illumina TruSeq RNA Sample Preparation Kit v2 Illumina Inc. San Diego USA. In the manufacturer’s instructions two modifications were made. In the adapter ligation step 1 µl instead of 2.5 µl adapter was used. In the library size selection step the library fragments were isolated with a double Ampure XP purification with a 0.7x beads to library ratio. The resulting mRNA Seq library was sequenced using an Illumina HiSeq2000 instrument according to the manufacturer’s description with a read length of 1 x 50 nucleotides.,GEO Accession:GSM1686455,RNA-Seq,TRANSCRIPTOMIC,cDNA,SINGLE,ILLUMINA,Illumina HiSeq 2000,,SRP058376,,,ZFG-14-09_02_GTTTCG_L003_R1_001.fastq.gz,fastq,938675094.0,18405394.0,GSM1686455 r1,0:51,A:284384359;C:173449465;G:178039777;T:302612825;N:188668,51,,,,284384359,173449465,178039777,302612825,188668,SRX1029311,SRS937777,SRA268539,GEO,"Institute of Biology, Leiden University",1,0.72884,,0.14723,,0.90767,,0.57414,,51,,B,,usable mapping rate,illumina,hiseq_era,full_length,poly_a,smarter,bulk,unknown,unknown,,Netherlands,2015-05-15,Larval,Larval,Blood,Hematopoietic System
39670,SRR2027906,SRX1029310,SRS937778,SRP058376,PRJNA284108,RNAseq profiling of zebrafish larval macrophages reveals similarities with human M1 and M2 transcriptome signatures,GSE68920,Transcriptome Analysis,We used different zebrafish transgenic lines to sort macrophages neutrophils and immature lymphoid cells from 5 dpf 6 dpf zebrafish larvae and analyzed their transcriptomes. Comparison between the different transcriptomes and gene ontology analysis revealed specificities for each cell population. Comparison with previously published data showed that zebrafish larval macrophages expressed several known human M1 and M2 macrophages. Transcriptome analysis of uninfected and infected macrophages from embryos infected by of Mycobacterium marinum revealed infection induced transcriptional changes and a shift towards M1 transcriptomic signature. Overall design: For infection experiments zebrafish embryos were manually dechorionated at 24 hpf and were infected by injection in the caudal vein of 125 colony forming unit of Mycobacterium marinum M strain expressing GFP. Embryos were grown into egg water refresh every day and incubated for 5 days at 28°C. 0.003% 1 phenyl 2 thiourea Sigma Aldrich was added post 1 day to prevent melanisation. post the incubation period embryos were dissociated into single cell suspension by Trypsin treatment and 20 fluorescent cells per condition were sorted by FACS directly into cDNA synthesis buffer. cDNA synthesis amplification and library preparation were performed as previously described. Rougeot et al. 2014 Methods Mol Biol 1197:41 66.,,pubmed:31832066,,6dpf mpeg1:mCherryPos MmarinumGFPNeg rep1,GSM1686454,,source name:zebra fish larvae|tissue:20 mpeg1 positive macrophages|cell population:GFP negative|developmental stage:6dpf|caudal vain infection:M marinum M strain 125cfu,6dpf mpeg1:mCherryPos MmarinumGFPNeg rep1,Image analysis and base calling was done by the Illumina HCS version 1.15.1 Quality trimmed reads were aligned to the Ensembl zebrafish genome Zv9 using Bowtie and reads were mapped to zebrafish transcripts using TopHat and a modified version of the Ensembl Zv9 79 annotation containing few additional genes. Genome build: Zv9 Supplementary files format and content: tab separated value files include gene counts for each sample,zebra fish larvae,Zebrafish embryos were manually dechorionated at 24 hpf and at 28 hpf they were micro injected into the caudal vein with 125 CFU of M. marinum M strain bacteria suspended in PBS/2%PVP.,Between 200 and 300 larvae per condition were collected at 6 dpf. Larvae were dissociated into single cell suspension by Trypsin treatment and fluorescent and 20 fluorescent cells per condition were sorted by FACS directly into cDNA synthesis buffer without xxx extraction. cDNA were synthetized and amplified with the SMARTer cDNA synthesis kit for Illumina Sequencing Clonetech according to the manufacturer’s instructions. The integrity of the cDNA was confirmed by Lab on chip analysis using the 2100 Bioanalyzer Agilent Technologies. The sheared amplified cDNA were used to make RNAseq libraries using the Illumina TruSeq RNA Sample Preparation Kit v2 Illumina Inc. San Diego USA. In the manufacturer’s instructions two modifications were made. In the adapter ligation step 1 µl instead of 2.5 µl adapter was used. In the library size selection step the library fragments were isolated with a double Ampure XP purification with a 0.7x beads to library ratio. The resulting mRNA Seq library was sequenced using an Illumina HiSeq2000 instrument according to the manufacturer’s description with a read length of 1 x 50 nucleotides.,Zebrafish were handled in compliance with the local animal welfare regulations and maintained according to standard protocols http://ZFIN.org. Embryos were grown at 28 5°C in egg water 60µg/ml Instant Ocean sea salts containing 0.003% 1 phenyl 2 thiourea SigmaFor infected samples. Zebrafish embryos were manually dechorionated at 24 hpf and at 28 hpf they were micro injected into the caudal vein with 125 CFU of M. marinum M strain bacteria suspended in PBS/2%PVP. Aldrich,tissue:20 mpeg1 positive macrophages|cell population:GFP negative|developmental stage:6dpf|caudal vain infection:M marinum M strain 125cfu,GSM1686454,GSM1686454: 6dpf mpeg1:mCherryPos MmarinumGFPNeg rep1; Danio rerio; RNA Seq,GSM1686454,,1,Between 200 and 300 larvae per condition were collected at 6 dpf. Larvae were dissociated into single cell suspension by Trypsin treatment and fluorescent and 20 fluorescent cells per condition were sorted by FACS directly into cDNA synthesis buffer without xxx extraction. cDNA were synthetized and amplified with the SMARTer cDNA synthesis kit for Illumina Sequencing Clonetech according to the manufacturer’s instructions. The integrity of the cDNA was confirmed by Lab on chip analysis using the 2100 Bioanalyzer Agilent Technologies. The sheared amplified cDNA were used to make RNAseq libraries using the Illumina TruSeq RNA Sample Preparation Kit v2 Illumina Inc. San Diego USA. In the manufacturer’s instructions two modifications were made. In the adapter ligation step 1 µl instead of 2.5 µl adapter was used. In the library size selection step the library fragments were isolated with a double Ampure XP purification with a 0.7x beads to library ratio. The resulting mRNA Seq library was sequenced using an Illumina HiSeq2000 instrument according to the manufacturer’s description with a read length of 1 x 50 nucleotides.,GEO Accession:GSM1686454,RNA-Seq,TRANSCRIPTOMIC,cDNA,SINGLE,ILLUMINA,Illumina HiSeq 2000,,SRP058376,,,ZFG-14-09_01_GTGGCC_L003_R1_001.fastq.gz,fastq,1248324348.0,24476948.0,GSM1686454 r1,0:51,A:391067882;C:223380294;G:229132022;T:404526410;N:217740,51,,,,391067882,223380294,229132022,404526410,217740,SRX1029310,SRS937778,SRA268539,GEO,"Institute of Biology, Leiden University",1,0.70232,,0.14257,,0.92894,,0.59305,,51,,B,,usable mapping rate,illumina,hiseq_era,full_length,poly_a,smarter,bulk,unknown,unknown,,Netherlands,2015-05-15,Larval,Larval,Blood,Hematopoietic System
40807,SRR3381847,SRX1704280,SRS1396343,SRP073272,PRJNA318414,Cortisol treated zebrafish embryos develop into pro inflammatory adults with aberrant immune gene regulation [adults],GSE80260,Transcriptome Analysis,Chronic early life stress increases adult susceptibility to numerous health problems linked to chronic inflammation. One way that this may occur is via glucocorticoid induced developmental programming. To gain insight into such programming we treated zebrafish embryos with cortisol and examined the effects on adults. In maturity the treated fish maintained elevated basal cortisol levels in the absence of exogenous cortisol and constitutively mis expressed genes involved in defense response and its regulation. Adults derived from cortisol treated embryos displayed defective tailfin regeneration heightened basal expression of pro inflammatory genes and failure to appropriately regulate those genes following injury or immunological challenge. These results support the hypothesis that chronically elevated glucocorticoid signaling early in life directs development of a pro inflammatory adult phenotype at the expense of immunoregulation and somatic regenerative capacity. Overall design: 30 samples total were analyzed. 9 caudal fins samples 0 2 and 4dpa 3 blood samples and 3 muscle samples from adults exposed to DMSO control as embryos. 9 caudal fins samples 0 2 and 4dpa 3 blood samples and 3 muscle samples from adults exposed to cortisol 1 micromolar as embryos.,parent bioproject:PRJNA318502,pubmed:27444789,,Treated 3 blood,GSM2122871,,source name:whole blood cortisol|strain/background:AB|tissue:whole blood|age:adult|embryonic treatment:cortisol,Treated 3 blood,Sequence quality was assessed using Fastqc QC v0.11.2; http://www.bioinformatics.babraham.ac.uk/projects/fastqc. Reads were trimmed using Trimmomatic v 0.3; Bolger et al. 2014. Trimmed reads were aligned to the zebrafish Danio rerio transcriptome annotated by Ensembl version 83 of the GRCz10 genome assembly using RSEM version 1.2.25 Li and Dewey 2011 and Bowtie 1.1.2 Langmead et al. 2009. Differentially expressed transcripts were determined using R/edgeR version 3.10.2 Robinson et al. 2010. Genome build: Danio rerio GRCz10 Supplementary files format and content: Tab delimited text files with read counts counts per million per sample.,whole blood cortisol,DMSO or 1 micromolar cortisol was added to larval medium for first 5 days of development and then maintained to 4.5 month under normal conditions.,RNA EZplus kit from Qiagen. Illumina TruSeq PolyA+ mRNA libraries.,AB zebrafish were maintained at 28 degrees Celsius at the MDI Biological Laboratory Animal Core.,strain/background:AB|tissue:whole blood|age:adult|embryonic treatment:cortisol,GSM2122871,GSM2122871: Treated 3 blood; Danio rerio; RNA Seq,GSM2122871,,1,RNA EZplus kit from Qiagen. Illumina TruSeq PolyA+ mRNA libraries.,GEO Accession:GSM2122871,RNA-Seq,TRANSCRIPTOMIC,cDNA,PAIRED,ILLUMINA,Illumina HiSeq 2500,,SRP073272,,,C8DY1ANXX_s6_1_GSLv3-7_38_SL139795.fastq.gz C8DY1ANXX_s6_2_GSLv3-7_38_SL139795.fastq.gz,fastq fastq,1349428600.0,13494286.0,GSM2122871 r1,0:50 1:50,A:391483366;C:283353944;G:288253777;T:386190051;N:147462,50,50,,,391483366,283353944,288253777,386190051,147462,SRX1704280,SRS1396343,SRA411416,GEO,"Molecular and Biomedical Sciences, University of Maine",2,0.88853,0.89204,0.22815,0.23941,0.73917,0.73979,0.53637,0.53893,50,50,B,B,biological fallback assumption,illumina,hiseq_era,unknown,poly_a,trueseq,bulk,unknown,unknown,,United States,2016-04-13,Adult,Adult,Blood,Hematopoietic System
40808,SRR3381848,SRX1704280,SRS1396343,SRP073272,PRJNA318414,Cortisol treated zebrafish embryos develop into pro inflammatory adults with aberrant immune gene regulation [adults],GSE80260,Transcriptome Analysis,Chronic early life stress increases adult susceptibility to numerous health problems linked to chronic inflammation. One way that this may occur is via glucocorticoid induced developmental programming. To gain insight into such programming we treated zebrafish embryos with cortisol and examined the effects on adults. In maturity the treated fish maintained elevated basal cortisol levels in the absence of exogenous cortisol and constitutively mis expressed genes involved in defense response and its regulation. Adults derived from cortisol treated embryos displayed defective tailfin regeneration heightened basal expression of pro inflammatory genes and failure to appropriately regulate those genes following injury or immunological challenge. These results support the hypothesis that chronically elevated glucocorticoid signaling early in life directs development of a pro inflammatory adult phenotype at the expense of immunoregulation and somatic regenerative capacity. Overall design: 30 samples total were analyzed. 9 caudal fins samples 0 2 and 4dpa 3 blood samples and 3 muscle samples from adults exposed to DMSO control as embryos. 9 caudal fins samples 0 2 and 4dpa 3 blood samples and 3 muscle samples from adults exposed to cortisol 1 micromolar as embryos.,parent bioproject:PRJNA318502,pubmed:27444789,,Treated 3 blood,GSM2122871,,source name:whole blood cortisol|strain/background:AB|tissue:whole blood|age:adult|embryonic treatment:cortisol,Treated 3 blood,Sequence quality was assessed using Fastqc QC v0.11.2; http://www.bioinformatics.babraham.ac.uk/projects/fastqc. Reads were trimmed using Trimmomatic v 0.3; Bolger et al. 2014. Trimmed reads were aligned to the zebrafish Danio rerio transcriptome annotated by Ensembl version 83 of the GRCz10 genome assembly using RSEM version 1.2.25 Li and Dewey 2011 and Bowtie 1.1.2 Langmead et al. 2009. Differentially expressed transcripts were determined using R/edgeR version 3.10.2 Robinson et al. 2010. Genome build: Danio rerio GRCz10 Supplementary files format and content: Tab delimited text files with read counts counts per million per sample.,whole blood cortisol,DMSO or 1 micromolar cortisol was added to larval medium for first 5 days of development and then maintained to 4.5 month under normal conditions.,RNA EZplus kit from Qiagen. Illumina TruSeq PolyA+ mRNA libraries.,AB zebrafish were maintained at 28 degrees Celsius at the MDI Biological Laboratory Animal Core.,strain/background:AB|tissue:whole blood|age:adult|embryonic treatment:cortisol,GSM2122871,GSM2122871: Treated 3 blood; Danio rerio; RNA Seq,GSM2122871,,1,RNA EZplus kit from Qiagen. Illumina TruSeq PolyA+ mRNA libraries.,GEO Accession:GSM2122871,RNA-Seq,TRANSCRIPTOMIC,cDNA,PAIRED,ILLUMINA,Illumina HiSeq 2500,,SRP073272,,,C8BH2ANXX_s5_1_GSLv3-7_38_SL139795.fastq.gz C8BH2ANXX_s5_2_GSLv3-7_38_SL139795.fastq.gz,fastq fastq,1020366100.0,10203661.0,GSM2122871 r2,0:50 1:50,A:296023946;C:213173706;G:215342808;T:295806226;N:19414,50,50,,,296023946,213173706,215342808,295806226,19414,SRX1704280,SRS1396343,SRA411416,GEO,"Molecular and Biomedical Sciences, University of Maine",2,0.88792,0.89203,0.21382,0.24279,0.7652,0.7444,0.53618,0.54254,50,50,B,B,biological fallback assumption,illumina,hiseq_era,unknown,poly_a,trueseq,bulk,unknown,unknown,,United States,2016-04-13,Adult,Adult,Blood,Hematopoietic System
40809,SRR3381849,SRX1704280,SRS1396343,SRP073272,PRJNA318414,Cortisol treated zebrafish embryos develop into pro inflammatory adults with aberrant immune gene regulation [adults],GSE80260,Transcriptome Analysis,Chronic early life stress increases adult susceptibility to numerous health problems linked to chronic inflammation. One way that this may occur is via glucocorticoid induced developmental programming. To gain insight into such programming we treated zebrafish embryos with cortisol and examined the effects on adults. In maturity the treated fish maintained elevated basal cortisol levels in the absence of exogenous cortisol and constitutively mis expressed genes involved in defense response and its regulation. Adults derived from cortisol treated embryos displayed defective tailfin regeneration heightened basal expression of pro inflammatory genes and failure to appropriately regulate those genes following injury or immunological challenge. These results support the hypothesis that chronically elevated glucocorticoid signaling early in life directs development of a pro inflammatory adult phenotype at the expense of immunoregulation and somatic regenerative capacity. Overall design: 30 samples total were analyzed. 9 caudal fins samples 0 2 and 4dpa 3 blood samples and 3 muscle samples from adults exposed to DMSO control as embryos. 9 caudal fins samples 0 2 and 4dpa 3 blood samples and 3 muscle samples from adults exposed to cortisol 1 micromolar as embryos.,parent bioproject:PRJNA318502,pubmed:27444789,,Treated 3 blood,GSM2122871,,source name:whole blood cortisol|strain/background:AB|tissue:whole blood|age:adult|embryonic treatment:cortisol,Treated 3 blood,Sequence quality was assessed using Fastqc QC v0.11.2; http://www.bioinformatics.babraham.ac.uk/projects/fastqc. Reads were trimmed using Trimmomatic v 0.3; Bolger et al. 2014. Trimmed reads were aligned to the zebrafish Danio rerio transcriptome annotated by Ensembl version 83 of the GRCz10 genome assembly using RSEM version 1.2.25 Li and Dewey 2011 and Bowtie 1.1.2 Langmead et al. 2009. Differentially expressed transcripts were determined using R/edgeR version 3.10.2 Robinson et al. 2010. Genome build: Danio rerio GRCz10 Supplementary files format and content: Tab delimited text files with read counts counts per million per sample.,whole blood cortisol,DMSO or 1 micromolar cortisol was added to larval medium for first 5 days of development and then maintained to 4.5 month under normal conditions.,RNA EZplus kit from Qiagen. Illumina TruSeq PolyA+ mRNA libraries.,AB zebrafish were maintained at 28 degrees Celsius at the MDI Biological Laboratory Animal Core.,strain/background:AB|tissue:whole blood|age:adult|embryonic treatment:cortisol,GSM2122871,GSM2122871: Treated 3 blood; Danio rerio; RNA Seq,GSM2122871,,1,RNA EZplus kit from Qiagen. Illumina TruSeq PolyA+ mRNA libraries.,GEO Accession:GSM2122871,RNA-Seq,TRANSCRIPTOMIC,cDNA,PAIRED,ILLUMINA,Illumina HiSeq 2500,,SRP073272,,,C8BH2ANXX_s6_1_GSLv3-7_38_SL139795.fastq.gz C8BH2ANXX_s6_2_GSLv3-7_38_SL139795.fastq.gz,fastq fastq,1008129000.0,10081290.0,GSM2122871 r3,0:50 1:50,A:292536545;C:210308039;G:212529262;T:292736486;N:18668,50,50,,,292536545,210308039,212529262,292736486,18668,SRX1704280,SRS1396343,SRA411416,GEO,"Molecular and Biomedical Sciences, University of Maine",2,0.88682,0.89249,0.21573,0.24321,0.7657,0.74456,0.53948,0.54456,50,50,B,B,biological fallback assumption,illumina,hiseq_era,unknown,poly_a,trueseq,bulk,unknown,unknown,,United States,2016-04-13,Adult,Adult,Blood,Hematopoietic System
40810,SRR3381850,SRX1704280,SRS1396343,SRP073272,PRJNA318414,Cortisol treated zebrafish embryos develop into pro inflammatory adults with aberrant immune gene regulation [adults],GSE80260,Transcriptome Analysis,Chronic early life stress increases adult susceptibility to numerous health problems linked to chronic inflammation. One way that this may occur is via glucocorticoid induced developmental programming. To gain insight into such programming we treated zebrafish embryos with cortisol and examined the effects on adults. In maturity the treated fish maintained elevated basal cortisol levels in the absence of exogenous cortisol and constitutively mis expressed genes involved in defense response and its regulation. Adults derived from cortisol treated embryos displayed defective tailfin regeneration heightened basal expression of pro inflammatory genes and failure to appropriately regulate those genes following injury or immunological challenge. These results support the hypothesis that chronically elevated glucocorticoid signaling early in life directs development of a pro inflammatory adult phenotype at the expense of immunoregulation and somatic regenerative capacity. Overall design: 30 samples total were analyzed. 9 caudal fins samples 0 2 and 4dpa 3 blood samples and 3 muscle samples from adults exposed to DMSO control as embryos. 9 caudal fins samples 0 2 and 4dpa 3 blood samples and 3 muscle samples from adults exposed to cortisol 1 micromolar as embryos.,parent bioproject:PRJNA318502,pubmed:27444789,,Treated 3 blood,GSM2122871,,source name:whole blood cortisol|strain/background:AB|tissue:whole blood|age:adult|embryonic treatment:cortisol,Treated 3 blood,Sequence quality was assessed using Fastqc QC v0.11.2; http://www.bioinformatics.babraham.ac.uk/projects/fastqc. Reads were trimmed using Trimmomatic v 0.3; Bolger et al. 2014. Trimmed reads were aligned to the zebrafish Danio rerio transcriptome annotated by Ensembl version 83 of the GRCz10 genome assembly using RSEM version 1.2.25 Li and Dewey 2011 and Bowtie 1.1.2 Langmead et al. 2009. Differentially expressed transcripts were determined using R/edgeR version 3.10.2 Robinson et al. 2010. Genome build: Danio rerio GRCz10 Supplementary files format and content: Tab delimited text files with read counts counts per million per sample.,whole blood cortisol,DMSO or 1 micromolar cortisol was added to larval medium for first 5 days of development and then maintained to 4.5 month under normal conditions.,RNA EZplus kit from Qiagen. Illumina TruSeq PolyA+ mRNA libraries.,AB zebrafish were maintained at 28 degrees Celsius at the MDI Biological Laboratory Animal Core.,strain/background:AB|tissue:whole blood|age:adult|embryonic treatment:cortisol,GSM2122871,GSM2122871: Treated 3 blood; Danio rerio; RNA Seq,GSM2122871,,1,RNA EZplus kit from Qiagen. Illumina TruSeq PolyA+ mRNA libraries.,GEO Accession:GSM2122871,RNA-Seq,TRANSCRIPTOMIC,cDNA,PAIRED,ILLUMINA,Illumina HiSeq 2500,,SRP073272,,,C8DY1ANXX_s5_1_GSLv3-7_38_SL139795.fastq.gz C8DY1ANXX_s5_2_GSLv3-7_38_SL139795.fastq.gz,fastq fastq,1348814000.0,13488140.0,GSM2122871 r4,0:50 1:50,A:391186639;C:283404571;G:288274584;T:385756613;N:191593,50,50,,,391186639,283404571,288274584,385756613,191593,SRX1704280,SRS1396343,SRA411416,GEO,"Molecular and Biomedical Sciences, University of Maine",2,0.88673,0.89303,0.22875,0.24107,0.74276,0.74134,0.53585,0.54514,50,50,B,B,biological fallback assumption,illumina,hiseq_era,unknown,poly_a,trueseq,bulk,unknown,unknown,,United States,2016-04-13,Adult,Adult,Blood,Hematopoietic System
40811,SRR3381843,SRX1704279,SRS1396344,SRP073272,PRJNA318414,Cortisol treated zebrafish embryos develop into pro inflammatory adults with aberrant immune gene regulation [adults],GSE80260,Transcriptome Analysis,Chronic early life stress increases adult susceptibility to numerous health problems linked to chronic inflammation. One way that this may occur is via glucocorticoid induced developmental programming. To gain insight into such programming we treated zebrafish embryos with cortisol and examined the effects on adults. In maturity the treated fish maintained elevated basal cortisol levels in the absence of exogenous cortisol and constitutively mis expressed genes involved in defense response and its regulation. Adults derived from cortisol treated embryos displayed defective tailfin regeneration heightened basal expression of pro inflammatory genes and failure to appropriately regulate those genes following injury or immunological challenge. These results support the hypothesis that chronically elevated glucocorticoid signaling early in life directs development of a pro inflammatory adult phenotype at the expense of immunoregulation and somatic regenerative capacity. Overall design: 30 samples total were analyzed. 9 caudal fins samples 0 2 and 4dpa 3 blood samples and 3 muscle samples from adults exposed to DMSO control as embryos. 9 caudal fins samples 0 2 and 4dpa 3 blood samples and 3 muscle samples from adults exposed to cortisol 1 micromolar as embryos.,parent bioproject:PRJNA318502,pubmed:27444789,,Treated 2 blood,GSM2122870,,source name:whole blood cortisol|strain/background:AB|tissue:whole blood|age:adult|embryonic treatment:cortisol,Treated 2 blood,Sequence quality was assessed using Fastqc QC v0.11.2; http://www.bioinformatics.babraham.ac.uk/projects/fastqc. Reads were trimmed using Trimmomatic v 0.3; Bolger et al. 2014. Trimmed reads were aligned to the zebrafish Danio rerio transcriptome annotated by Ensembl version 83 of the GRCz10 genome assembly using RSEM version 1.2.25 Li and Dewey 2011 and Bowtie 1.1.2 Langmead et al. 2009. Differentially expressed transcripts were determined using R/edgeR version 3.10.2 Robinson et al. 2010. Genome build: Danio rerio GRCz10 Supplementary files format and content: Tab delimited text files with read counts counts per million per sample.,whole blood cortisol,DMSO or 1 micromolar cortisol was added to larval medium for first 5 days of development and then maintained to 4.5 month under normal conditions.,RNA EZplus kit from Qiagen. Illumina TruSeq PolyA+ mRNA libraries.,AB zebrafish were maintained at 28 degrees Celsius at the MDI Biological Laboratory Animal Core.,strain/background:AB|tissue:whole blood|age:adult|embryonic treatment:cortisol,GSM2122870,GSM2122870: Treated 2 blood; Danio rerio; RNA Seq,GSM2122870,,1,RNA EZplus kit from Qiagen. Illumina TruSeq PolyA+ mRNA libraries.,GEO Accession:GSM2122870,RNA-Seq,TRANSCRIPTOMIC,cDNA,PAIRED,ILLUMINA,Illumina HiSeq 2500,,SRP073272,,,C8DY1ANXX_s6_1_GSLv3-7_37_SL139794.fastq.gz C8DY1ANXX_s6_2_GSLv3-7_37_SL139794.fastq.gz,fastq fastq,1251398700.0,12513987.0,GSM2122870 r1,0:50 1:50,A:383059535;C:243111832;G:248681985;T:376401618;N:143730,50,50,,,383059535,243111832,248681985,376401618,143730,SRX1704279,SRS1396344,SRA411416,GEO,"Molecular and Biomedical Sciences, University of Maine",2,0.86725,0.86597,0.35725,0.37228,0.74312,0.73961,0.53136,0.53663,50,50,B,B,biological fallback assumption,illumina,hiseq_era,unknown,poly_a,trueseq,bulk,unknown,unknown,,United States,2016-04-13,Adult,Adult,Blood,Hematopoietic System
40812,SRR3381844,SRX1704279,SRS1396344,SRP073272,PRJNA318414,Cortisol treated zebrafish embryos develop into pro inflammatory adults with aberrant immune gene regulation [adults],GSE80260,Transcriptome Analysis,Chronic early life stress increases adult susceptibility to numerous health problems linked to chronic inflammation. One way that this may occur is via glucocorticoid induced developmental programming. To gain insight into such programming we treated zebrafish embryos with cortisol and examined the effects on adults. In maturity the treated fish maintained elevated basal cortisol levels in the absence of exogenous cortisol and constitutively mis expressed genes involved in defense response and its regulation. Adults derived from cortisol treated embryos displayed defective tailfin regeneration heightened basal expression of pro inflammatory genes and failure to appropriately regulate those genes following injury or immunological challenge. These results support the hypothesis that chronically elevated glucocorticoid signaling early in life directs development of a pro inflammatory adult phenotype at the expense of immunoregulation and somatic regenerative capacity. Overall design: 30 samples total were analyzed. 9 caudal fins samples 0 2 and 4dpa 3 blood samples and 3 muscle samples from adults exposed to DMSO control as embryos. 9 caudal fins samples 0 2 and 4dpa 3 blood samples and 3 muscle samples from adults exposed to cortisol 1 micromolar as embryos.,parent bioproject:PRJNA318502,pubmed:27444789,,Treated 2 blood,GSM2122870,,source name:whole blood cortisol|strain/background:AB|tissue:whole blood|age:adult|embryonic treatment:cortisol,Treated 2 blood,Sequence quality was assessed using Fastqc QC v0.11.2; http://www.bioinformatics.babraham.ac.uk/projects/fastqc. Reads were trimmed using Trimmomatic v 0.3; Bolger et al. 2014. Trimmed reads were aligned to the zebrafish Danio rerio transcriptome annotated by Ensembl version 83 of the GRCz10 genome assembly using RSEM version 1.2.25 Li and Dewey 2011 and Bowtie 1.1.2 Langmead et al. 2009. Differentially expressed transcripts were determined using R/edgeR version 3.10.2 Robinson et al. 2010. Genome build: Danio rerio GRCz10 Supplementary files format and content: Tab delimited text files with read counts counts per million per sample.,whole blood cortisol,DMSO or 1 micromolar cortisol was added to larval medium for first 5 days of development and then maintained to 4.5 month under normal conditions.,RNA EZplus kit from Qiagen. Illumina TruSeq PolyA+ mRNA libraries.,AB zebrafish were maintained at 28 degrees Celsius at the MDI Biological Laboratory Animal Core.,strain/background:AB|tissue:whole blood|age:adult|embryonic treatment:cortisol,GSM2122870,GSM2122870: Treated 2 blood; Danio rerio; RNA Seq,GSM2122870,,1,RNA EZplus kit from Qiagen. Illumina TruSeq PolyA+ mRNA libraries.,GEO Accession:GSM2122870,RNA-Seq,TRANSCRIPTOMIC,cDNA,PAIRED,ILLUMINA,Illumina HiSeq 2500,,SRP073272,,,C8BH2ANXX_s5_1_GSLv3-7_37_SL139794.fastq.gz C8BH2ANXX_s5_2_GSLv3-7_37_SL139794.fastq.gz,fastq fastq,959597100.0,9595971.0,GSM2122870 r2,0:50 1:50,A:294644349;C:184893976;G:188222172;T:291818696;N:17907,50,50,,,294644349,184893976,188222172,291818696,17907,SRX1704279,SRS1396344,SRA411416,GEO,"Molecular and Biomedical Sciences, University of Maine",2,0.86953,0.86626,0.33903,0.3765,0.77264,0.74432,0.53426,0.53782,50,50,B,B,biological fallback assumption,illumina,hiseq_era,unknown,poly_a,trueseq,bulk,unknown,unknown,,United States,2016-04-13,Adult,Adult,Blood,Hematopoietic System
40813,SRR3381845,SRX1704279,SRS1396344,SRP073272,PRJNA318414,Cortisol treated zebrafish embryos develop into pro inflammatory adults with aberrant immune gene regulation [adults],GSE80260,Transcriptome Analysis,Chronic early life stress increases adult susceptibility to numerous health problems linked to chronic inflammation. One way that this may occur is via glucocorticoid induced developmental programming. To gain insight into such programming we treated zebrafish embryos with cortisol and examined the effects on adults. In maturity the treated fish maintained elevated basal cortisol levels in the absence of exogenous cortisol and constitutively mis expressed genes involved in defense response and its regulation. Adults derived from cortisol treated embryos displayed defective tailfin regeneration heightened basal expression of pro inflammatory genes and failure to appropriately regulate those genes following injury or immunological challenge. These results support the hypothesis that chronically elevated glucocorticoid signaling early in life directs development of a pro inflammatory adult phenotype at the expense of immunoregulation and somatic regenerative capacity. Overall design: 30 samples total were analyzed. 9 caudal fins samples 0 2 and 4dpa 3 blood samples and 3 muscle samples from adults exposed to DMSO control as embryos. 9 caudal fins samples 0 2 and 4dpa 3 blood samples and 3 muscle samples from adults exposed to cortisol 1 micromolar as embryos.,parent bioproject:PRJNA318502,pubmed:27444789,,Treated 2 blood,GSM2122870,,source name:whole blood cortisol|strain/background:AB|tissue:whole blood|age:adult|embryonic treatment:cortisol,Treated 2 blood,Sequence quality was assessed using Fastqc QC v0.11.2; http://www.bioinformatics.babraham.ac.uk/projects/fastqc. Reads were trimmed using Trimmomatic v 0.3; Bolger et al. 2014. Trimmed reads were aligned to the zebrafish Danio rerio transcriptome annotated by Ensembl version 83 of the GRCz10 genome assembly using RSEM version 1.2.25 Li and Dewey 2011 and Bowtie 1.1.2 Langmead et al. 2009. Differentially expressed transcripts were determined using R/edgeR version 3.10.2 Robinson et al. 2010. Genome build: Danio rerio GRCz10 Supplementary files format and content: Tab delimited text files with read counts counts per million per sample.,whole blood cortisol,DMSO or 1 micromolar cortisol was added to larval medium for first 5 days of development and then maintained to 4.5 month under normal conditions.,RNA EZplus kit from Qiagen. Illumina TruSeq PolyA+ mRNA libraries.,AB zebrafish were maintained at 28 degrees Celsius at the MDI Biological Laboratory Animal Core.,strain/background:AB|tissue:whole blood|age:adult|embryonic treatment:cortisol,GSM2122870,GSM2122870: Treated 2 blood; Danio rerio; RNA Seq,GSM2122870,,1,RNA EZplus kit from Qiagen. Illumina TruSeq PolyA+ mRNA libraries.,GEO Accession:GSM2122870,RNA-Seq,TRANSCRIPTOMIC,cDNA,PAIRED,ILLUMINA,Illumina HiSeq 2500,,SRP073272,,,C8DY1ANXX_s5_1_GSLv3-7_37_SL139794.fastq.gz C8DY1ANXX_s5_2_GSLv3-7_37_SL139794.fastq.gz,fastq fastq,1245250000.0,12452500.0,GSM2122870 r3,0:50 1:50,A:381219052;C:241987476;G:247543915;T:374295403;N:204154,50,50,,,381219052,241987476,247543915,374295403,204154,SRX1704279,SRS1396344,SRA411416,GEO,"Molecular and Biomedical Sciences, University of Maine",2,0.86789,0.86686,0.35484,0.37206,0.74119,0.73679,0.50299,0.53759,50,50,B,B,biological fallback assumption,illumina,hiseq_era,unknown,poly_a,trueseq,bulk,unknown,unknown,,United States,2016-04-13,Adult,Adult,Blood,Hematopoietic System
40814,SRR3381846,SRX1704279,SRS1396344,SRP073272,PRJNA318414,Cortisol treated zebrafish embryos develop into pro inflammatory adults with aberrant immune gene regulation [adults],GSE80260,Transcriptome Analysis,Chronic early life stress increases adult susceptibility to numerous health problems linked to chronic inflammation. One way that this may occur is via glucocorticoid induced developmental programming. To gain insight into such programming we treated zebrafish embryos with cortisol and examined the effects on adults. In maturity the treated fish maintained elevated basal cortisol levels in the absence of exogenous cortisol and constitutively mis expressed genes involved in defense response and its regulation. Adults derived from cortisol treated embryos displayed defective tailfin regeneration heightened basal expression of pro inflammatory genes and failure to appropriately regulate those genes following injury or immunological challenge. These results support the hypothesis that chronically elevated glucocorticoid signaling early in life directs development of a pro inflammatory adult phenotype at the expense of immunoregulation and somatic regenerative capacity. Overall design: 30 samples total were analyzed. 9 caudal fins samples 0 2 and 4dpa 3 blood samples and 3 muscle samples from adults exposed to DMSO control as embryos. 9 caudal fins samples 0 2 and 4dpa 3 blood samples and 3 muscle samples from adults exposed to cortisol 1 micromolar as embryos.,parent bioproject:PRJNA318502,pubmed:27444789,,Treated 2 blood,GSM2122870,,source name:whole blood cortisol|strain/background:AB|tissue:whole blood|age:adult|embryonic treatment:cortisol,Treated 2 blood,Sequence quality was assessed using Fastqc QC v0.11.2; http://www.bioinformatics.babraham.ac.uk/projects/fastqc. Reads were trimmed using Trimmomatic v 0.3; Bolger et al. 2014. Trimmed reads were aligned to the zebrafish Danio rerio transcriptome annotated by Ensembl version 83 of the GRCz10 genome assembly using RSEM version 1.2.25 Li and Dewey 2011 and Bowtie 1.1.2 Langmead et al. 2009. Differentially expressed transcripts were determined using R/edgeR version 3.10.2 Robinson et al. 2010. Genome build: Danio rerio GRCz10 Supplementary files format and content: Tab delimited text files with read counts counts per million per sample.,whole blood cortisol,DMSO or 1 micromolar cortisol was added to larval medium for first 5 days of development and then maintained to 4.5 month under normal conditions.,RNA EZplus kit from Qiagen. Illumina TruSeq PolyA+ mRNA libraries.,AB zebrafish were maintained at 28 degrees Celsius at the MDI Biological Laboratory Animal Core.,strain/background:AB|tissue:whole blood|age:adult|embryonic treatment:cortisol,GSM2122870,GSM2122870: Treated 2 blood; Danio rerio; RNA Seq,GSM2122870,,1,RNA EZplus kit from Qiagen. Illumina TruSeq PolyA+ mRNA libraries.,GEO Accession:GSM2122870,RNA-Seq,TRANSCRIPTOMIC,cDNA,PAIRED,ILLUMINA,Illumina HiSeq 2500,,SRP073272,,,C8BH2ANXX_s6_1_GSLv3-7_37_SL139794.fastq.gz C8BH2ANXX_s6_2_GSLv3-7_37_SL139794.fastq.gz,fastq fastq,950337100.0,9503371.0,GSM2122870 r4,0:50 1:50,A:291821125;C:182753545;G:186179426;T:289565320;N:17684,50,50,,,291821125,182753545,186179426,289565320,17684,SRX1704279,SRS1396344,SRA411416,GEO,"Molecular and Biomedical Sciences, University of Maine",2,0.86635,0.86476,0.34245,0.3786,0.77309,0.74474,0.50694,0.53099,50,50,B,B,biological fallback assumption,illumina,hiseq_era,unknown,poly_a,trueseq,bulk,unknown,unknown,,United States,2016-04-13,Adult,Adult,Blood,Hematopoietic System
40815,SRR3381839,SRX1704278,SRS1396345,SRP073272,PRJNA318414,Cortisol treated zebrafish embryos develop into pro inflammatory adults with aberrant immune gene regulation [adults],GSE80260,Transcriptome Analysis,Chronic early life stress increases adult susceptibility to numerous health problems linked to chronic inflammation. One way that this may occur is via glucocorticoid induced developmental programming. To gain insight into such programming we treated zebrafish embryos with cortisol and examined the effects on adults. In maturity the treated fish maintained elevated basal cortisol levels in the absence of exogenous cortisol and constitutively mis expressed genes involved in defense response and its regulation. Adults derived from cortisol treated embryos displayed defective tailfin regeneration heightened basal expression of pro inflammatory genes and failure to appropriately regulate those genes following injury or immunological challenge. These results support the hypothesis that chronically elevated glucocorticoid signaling early in life directs development of a pro inflammatory adult phenotype at the expense of immunoregulation and somatic regenerative capacity. Overall design: 30 samples total were analyzed. 9 caudal fins samples 0 2 and 4dpa 3 blood samples and 3 muscle samples from adults exposed to DMSO control as embryos. 9 caudal fins samples 0 2 and 4dpa 3 blood samples and 3 muscle samples from adults exposed to cortisol 1 micromolar as embryos.,parent bioproject:PRJNA318502,pubmed:27444789,,Treated 1 blood,GSM2122869,,source name:whole blood cortisol|strain/background:AB|tissue:whole blood|age:adult|embryonic treatment:cortisol,Treated 1 blood,Sequence quality was assessed using Fastqc QC v0.11.2; http://www.bioinformatics.babraham.ac.uk/projects/fastqc. Reads were trimmed using Trimmomatic v 0.3; Bolger et al. 2014. Trimmed reads were aligned to the zebrafish Danio rerio transcriptome annotated by Ensembl version 83 of the GRCz10 genome assembly using RSEM version 1.2.25 Li and Dewey 2011 and Bowtie 1.1.2 Langmead et al. 2009. Differentially expressed transcripts were determined using R/edgeR version 3.10.2 Robinson et al. 2010. Genome build: Danio rerio GRCz10 Supplementary files format and content: Tab delimited text files with read counts counts per million per sample.,whole blood cortisol,DMSO or 1 micromolar cortisol was added to larval medium for first 5 days of development and then maintained to 4.5 month under normal conditions.,RNA EZplus kit from Qiagen. Illumina TruSeq PolyA+ mRNA libraries.,AB zebrafish were maintained at 28 degrees Celsius at the MDI Biological Laboratory Animal Core.,strain/background:AB|tissue:whole blood|age:adult|embryonic treatment:cortisol,GSM2122869,GSM2122869: Treated 1 blood; Danio rerio; RNA Seq,GSM2122869,,1,RNA EZplus kit from Qiagen. Illumina TruSeq PolyA+ mRNA libraries.,GEO Accession:GSM2122869,RNA-Seq,TRANSCRIPTOMIC,cDNA,PAIRED,ILLUMINA,Illumina HiSeq 2500,,SRP073272,,,C8DY1ANXX_s5_1_GSLv3-7_36_SL139793.fastq.gz C8DY1ANXX_s5_2_GSLv3-7_36_SL139793.fastq.gz,fastq fastq,1067516000.0,10675160.0,GSM2122869 r1,0:50 1:50,A:289362409;C:244764167;G:247658920;T:285596522;N:133982,50,50,,,289362409,244764167,247658920,285596522,133982,SRX1704278,SRS1396345,SRA411416,GEO,"Molecular and Biomedical Sciences, University of Maine",2,0.90704,0.92219,0.1113,0.11316,0.73645,0.73746,0.52358,0.53128,50,50,B,B,biological fallback assumption,illumina,hiseq_era,unknown,poly_a,trueseq,bulk,unknown,unknown,,United States,2016-04-13,Adult,Adult,Blood,Hematopoietic System
40816,SRR3381840,SRX1704278,SRS1396345,SRP073272,PRJNA318414,Cortisol treated zebrafish embryos develop into pro inflammatory adults with aberrant immune gene regulation [adults],GSE80260,Transcriptome Analysis,Chronic early life stress increases adult susceptibility to numerous health problems linked to chronic inflammation. One way that this may occur is via glucocorticoid induced developmental programming. To gain insight into such programming we treated zebrafish embryos with cortisol and examined the effects on adults. In maturity the treated fish maintained elevated basal cortisol levels in the absence of exogenous cortisol and constitutively mis expressed genes involved in defense response and its regulation. Adults derived from cortisol treated embryos displayed defective tailfin regeneration heightened basal expression of pro inflammatory genes and failure to appropriately regulate those genes following injury or immunological challenge. These results support the hypothesis that chronically elevated glucocorticoid signaling early in life directs development of a pro inflammatory adult phenotype at the expense of immunoregulation and somatic regenerative capacity. Overall design: 30 samples total were analyzed. 9 caudal fins samples 0 2 and 4dpa 3 blood samples and 3 muscle samples from adults exposed to DMSO control as embryos. 9 caudal fins samples 0 2 and 4dpa 3 blood samples and 3 muscle samples from adults exposed to cortisol 1 micromolar as embryos.,parent bioproject:PRJNA318502,pubmed:27444789,,Treated 1 blood,GSM2122869,,source name:whole blood cortisol|strain/background:AB|tissue:whole blood|age:adult|embryonic treatment:cortisol,Treated 1 blood,Sequence quality was assessed using Fastqc QC v0.11.2; http://www.bioinformatics.babraham.ac.uk/projects/fastqc. Reads were trimmed using Trimmomatic v 0.3; Bolger et al. 2014. Trimmed reads were aligned to the zebrafish Danio rerio transcriptome annotated by Ensembl version 83 of the GRCz10 genome assembly using RSEM version 1.2.25 Li and Dewey 2011 and Bowtie 1.1.2 Langmead et al. 2009. Differentially expressed transcripts were determined using R/edgeR version 3.10.2 Robinson et al. 2010. Genome build: Danio rerio GRCz10 Supplementary files format and content: Tab delimited text files with read counts counts per million per sample.,whole blood cortisol,DMSO or 1 micromolar cortisol was added to larval medium for first 5 days of development and then maintained to 4.5 month under normal conditions.,RNA EZplus kit from Qiagen. Illumina TruSeq PolyA+ mRNA libraries.,AB zebrafish were maintained at 28 degrees Celsius at the MDI Biological Laboratory Animal Core.,strain/background:AB|tissue:whole blood|age:adult|embryonic treatment:cortisol,GSM2122869,GSM2122869: Treated 1 blood; Danio rerio; RNA Seq,GSM2122869,,1,RNA EZplus kit from Qiagen. Illumina TruSeq PolyA+ mRNA libraries.,GEO Accession:GSM2122869,RNA-Seq,TRANSCRIPTOMIC,cDNA,PAIRED,ILLUMINA,Illumina HiSeq 2500,,SRP073272,,,C8BH2ANXX_s5_1_GSLv3-7_36_SL139793.fastq.gz C8BH2ANXX_s5_2_GSLv3-7_36_SL139793.fastq.gz,fastq fastq,802301400.0,8023014.0,GSM2122869 r2,0:50 1:50,A:216222361;C:183743858;G:183958773;T:218361744;N:14664,50,50,,,216222361,183743858,183958773,218361744,14664,SRX1704278,SRS1396345,SRA411416,GEO,"Molecular and Biomedical Sciences, University of Maine",2,0.90734,0.92073,0.10828,0.11414,0.75816,0.74156,0.52518,0.53162,50,50,B,B,biological fallback assumption,illumina,hiseq_era,unknown,poly_a,trueseq,bulk,unknown,unknown,,United States,2016-04-13,Adult,Adult,Blood,Hematopoietic System
40817,SRR3381841,SRX1704278,SRS1396345,SRP073272,PRJNA318414,Cortisol treated zebrafish embryos develop into pro inflammatory adults with aberrant immune gene regulation [adults],GSE80260,Transcriptome Analysis,Chronic early life stress increases adult susceptibility to numerous health problems linked to chronic inflammation. One way that this may occur is via glucocorticoid induced developmental programming. To gain insight into such programming we treated zebrafish embryos with cortisol and examined the effects on adults. In maturity the treated fish maintained elevated basal cortisol levels in the absence of exogenous cortisol and constitutively mis expressed genes involved in defense response and its regulation. Adults derived from cortisol treated embryos displayed defective tailfin regeneration heightened basal expression of pro inflammatory genes and failure to appropriately regulate those genes following injury or immunological challenge. These results support the hypothesis that chronically elevated glucocorticoid signaling early in life directs development of a pro inflammatory adult phenotype at the expense of immunoregulation and somatic regenerative capacity. Overall design: 30 samples total were analyzed. 9 caudal fins samples 0 2 and 4dpa 3 blood samples and 3 muscle samples from adults exposed to DMSO control as embryos. 9 caudal fins samples 0 2 and 4dpa 3 blood samples and 3 muscle samples from adults exposed to cortisol 1 micromolar as embryos.,parent bioproject:PRJNA318502,pubmed:27444789,,Treated 1 blood,GSM2122869,,source name:whole blood cortisol|strain/background:AB|tissue:whole blood|age:adult|embryonic treatment:cortisol,Treated 1 blood,Sequence quality was assessed using Fastqc QC v0.11.2; http://www.bioinformatics.babraham.ac.uk/projects/fastqc. Reads were trimmed using Trimmomatic v 0.3; Bolger et al. 2014. Trimmed reads were aligned to the zebrafish Danio rerio transcriptome annotated by Ensembl version 83 of the GRCz10 genome assembly using RSEM version 1.2.25 Li and Dewey 2011 and Bowtie 1.1.2 Langmead et al. 2009. Differentially expressed transcripts were determined using R/edgeR version 3.10.2 Robinson et al. 2010. Genome build: Danio rerio GRCz10 Supplementary files format and content: Tab delimited text files with read counts counts per million per sample.,whole blood cortisol,DMSO or 1 micromolar cortisol was added to larval medium for first 5 days of development and then maintained to 4.5 month under normal conditions.,RNA EZplus kit from Qiagen. Illumina TruSeq PolyA+ mRNA libraries.,AB zebrafish were maintained at 28 degrees Celsius at the MDI Biological Laboratory Animal Core.,strain/background:AB|tissue:whole blood|age:adult|embryonic treatment:cortisol,GSM2122869,GSM2122869: Treated 1 blood; Danio rerio; RNA Seq,GSM2122869,,1,RNA EZplus kit from Qiagen. Illumina TruSeq PolyA+ mRNA libraries.,GEO Accession:GSM2122869,RNA-Seq,TRANSCRIPTOMIC,cDNA,PAIRED,ILLUMINA,Illumina HiSeq 2500,,SRP073272,,,C8DY1ANXX_s6_1_GSLv3-7_36_SL139793.fastq.gz C8DY1ANXX_s6_2_GSLv3-7_36_SL139793.fastq.gz,fastq fastq,1068410400.0,10684104.0,GSM2122869 r3,0:50 1:50,A:289709397;C:244889156;G:247758297;T:285941886;N:111664,50,50,,,289709397,244889156,247758297,285941886,111664,SRX1704278,SRS1396345,SRA411416,GEO,"Molecular and Biomedical Sciences, University of Maine",2,0.90673,0.9217,0.11124,0.11262,0.73779,0.73819,0.52628,0.53419,50,50,B,B,biological fallback assumption,illumina,hiseq_era,unknown,poly_a,trueseq,bulk,unknown,unknown,,United States,2016-04-13,Adult,Adult,Blood,Hematopoietic System
40818,SRR3381842,SRX1704278,SRS1396345,SRP073272,PRJNA318414,Cortisol treated zebrafish embryos develop into pro inflammatory adults with aberrant immune gene regulation [adults],GSE80260,Transcriptome Analysis,Chronic early life stress increases adult susceptibility to numerous health problems linked to chronic inflammation. One way that this may occur is via glucocorticoid induced developmental programming. To gain insight into such programming we treated zebrafish embryos with cortisol and examined the effects on adults. In maturity the treated fish maintained elevated basal cortisol levels in the absence of exogenous cortisol and constitutively mis expressed genes involved in defense response and its regulation. Adults derived from cortisol treated embryos displayed defective tailfin regeneration heightened basal expression of pro inflammatory genes and failure to appropriately regulate those genes following injury or immunological challenge. These results support the hypothesis that chronically elevated glucocorticoid signaling early in life directs development of a pro inflammatory adult phenotype at the expense of immunoregulation and somatic regenerative capacity. Overall design: 30 samples total were analyzed. 9 caudal fins samples 0 2 and 4dpa 3 blood samples and 3 muscle samples from adults exposed to DMSO control as embryos. 9 caudal fins samples 0 2 and 4dpa 3 blood samples and 3 muscle samples from adults exposed to cortisol 1 micromolar as embryos.,parent bioproject:PRJNA318502,pubmed:27444789,,Treated 1 blood,GSM2122869,,source name:whole blood cortisol|strain/background:AB|tissue:whole blood|age:adult|embryonic treatment:cortisol,Treated 1 blood,Sequence quality was assessed using Fastqc QC v0.11.2; http://www.bioinformatics.babraham.ac.uk/projects/fastqc. Reads were trimmed using Trimmomatic v 0.3; Bolger et al. 2014. Trimmed reads were aligned to the zebrafish Danio rerio transcriptome annotated by Ensembl version 83 of the GRCz10 genome assembly using RSEM version 1.2.25 Li and Dewey 2011 and Bowtie 1.1.2 Langmead et al. 2009. Differentially expressed transcripts were determined using R/edgeR version 3.10.2 Robinson et al. 2010. Genome build: Danio rerio GRCz10 Supplementary files format and content: Tab delimited text files with read counts counts per million per sample.,whole blood cortisol,DMSO or 1 micromolar cortisol was added to larval medium for first 5 days of development and then maintained to 4.5 month under normal conditions.,RNA EZplus kit from Qiagen. Illumina TruSeq PolyA+ mRNA libraries.,AB zebrafish were maintained at 28 degrees Celsius at the MDI Biological Laboratory Animal Core.,strain/background:AB|tissue:whole blood|age:adult|embryonic treatment:cortisol,GSM2122869,GSM2122869: Treated 1 blood; Danio rerio; RNA Seq,GSM2122869,,1,RNA EZplus kit from Qiagen. Illumina TruSeq PolyA+ mRNA libraries.,GEO Accession:GSM2122869,RNA-Seq,TRANSCRIPTOMIC,cDNA,PAIRED,ILLUMINA,Illumina HiSeq 2500,,SRP073272,,,C8BH2ANXX_s6_1_GSLv3-7_36_SL139793.fastq.gz C8BH2ANXX_s6_2_GSLv3-7_36_SL139793.fastq.gz,fastq fastq,792180400.0,7921804.0,GSM2122869 r4,0:50 1:50,A:213515752;C:181199374;G:181507201;T:215943851;N:14222,50,50,,,213515752,181199374,181507201,215943851,14222,SRX1704278,SRS1396345,SRA411416,GEO,"Molecular and Biomedical Sciences, University of Maine",2,0.90574,0.92099,0.11022,0.11558,0.75773,0.74158,0.52565,0.52697,50,50,B,B,biological fallback assumption,illumina,hiseq_era,unknown,poly_a,trueseq,bulk,unknown,unknown,,United States,2016-04-13,Adult,Adult,Blood,Hematopoietic System
40819,SRR3381835,SRX1704277,SRS1396346,SRP073272,PRJNA318414,Cortisol treated zebrafish embryos develop into pro inflammatory adults with aberrant immune gene regulation [adults],GSE80260,Transcriptome Analysis,Chronic early life stress increases adult susceptibility to numerous health problems linked to chronic inflammation. One way that this may occur is via glucocorticoid induced developmental programming. To gain insight into such programming we treated zebrafish embryos with cortisol and examined the effects on adults. In maturity the treated fish maintained elevated basal cortisol levels in the absence of exogenous cortisol and constitutively mis expressed genes involved in defense response and its regulation. Adults derived from cortisol treated embryos displayed defective tailfin regeneration heightened basal expression of pro inflammatory genes and failure to appropriately regulate those genes following injury or immunological challenge. These results support the hypothesis that chronically elevated glucocorticoid signaling early in life directs development of a pro inflammatory adult phenotype at the expense of immunoregulation and somatic regenerative capacity. Overall design: 30 samples total were analyzed. 9 caudal fins samples 0 2 and 4dpa 3 blood samples and 3 muscle samples from adults exposed to DMSO control as embryos. 9 caudal fins samples 0 2 and 4dpa 3 blood samples and 3 muscle samples from adults exposed to cortisol 1 micromolar as embryos.,parent bioproject:PRJNA318502,pubmed:27444789,,Control 3 blood,GSM2122868,,source name:whole blood DMSO control|strain/background:AB|tissue:whole blood|age:adult|embryonic treatment:DMSO,Control 3 blood,Sequence quality was assessed using Fastqc QC v0.11.2; http://www.bioinformatics.babraham.ac.uk/projects/fastqc. Reads were trimmed using Trimmomatic v 0.3; Bolger et al. 2014. Trimmed reads were aligned to the zebrafish Danio rerio transcriptome annotated by Ensembl version 83 of the GRCz10 genome assembly using RSEM version 1.2.25 Li and Dewey 2011 and Bowtie 1.1.2 Langmead et al. 2009. Differentially expressed transcripts were determined using R/edgeR version 3.10.2 Robinson et al. 2010. Genome build: Danio rerio GRCz10 Supplementary files format and content: Tab delimited text files with read counts counts per million per sample.,whole blood DMSO control,DMSO or 1 micromolar cortisol was added to larval medium for first 5 days of development and then maintained to 4.5 month under normal conditions.,RNA EZplus kit from Qiagen. Illumina TruSeq PolyA+ mRNA libraries.,AB zebrafish were maintained at 28 degrees Celsius at the MDI Biological Laboratory Animal Core.,strain/background:AB|tissue:whole blood|age:adult|embryonic treatment:DMSO,GSM2122868,GSM2122868: Control 3 blood; Danio rerio; RNA Seq,GSM2122868,,1,RNA EZplus kit from Qiagen. Illumina TruSeq PolyA+ mRNA libraries.,GEO Accession:GSM2122868,RNA-Seq,TRANSCRIPTOMIC,cDNA,PAIRED,ILLUMINA,Illumina HiSeq 2500,,SRP073272,,,C8BH2ANXX_s6_1_GSLv3-7_35_SL139792.fastq.gz C8BH2ANXX_s6_2_GSLv3-7_35_SL139792.fastq.gz,fastq fastq,1006437300.0,10064373.0,GSM2122868 r1,0:50 1:50,A:270736589;C:231073543;G:230348781;T:274259695;N:18692,50,50,,,270736589,231073543,230348781,274259695,18692,SRX1704277,SRS1396346,SRA411416,GEO,"Molecular and Biomedical Sciences, University of Maine",2,0.89576,0.91552,0.11015,0.11108,0.77108,0.75708,0.52238,0.55295,50,50,B,B,biological fallback assumption,illumina,hiseq_era,unknown,poly_a,trueseq,bulk,unknown,unknown,,United States,2016-04-13,Adult,Adult,Blood,Hematopoietic System
40820,SRR3381836,SRX1704277,SRS1396346,SRP073272,PRJNA318414,Cortisol treated zebrafish embryos develop into pro inflammatory adults with aberrant immune gene regulation [adults],GSE80260,Transcriptome Analysis,Chronic early life stress increases adult susceptibility to numerous health problems linked to chronic inflammation. One way that this may occur is via glucocorticoid induced developmental programming. To gain insight into such programming we treated zebrafish embryos with cortisol and examined the effects on adults. In maturity the treated fish maintained elevated basal cortisol levels in the absence of exogenous cortisol and constitutively mis expressed genes involved in defense response and its regulation. Adults derived from cortisol treated embryos displayed defective tailfin regeneration heightened basal expression of pro inflammatory genes and failure to appropriately regulate those genes following injury or immunological challenge. These results support the hypothesis that chronically elevated glucocorticoid signaling early in life directs development of a pro inflammatory adult phenotype at the expense of immunoregulation and somatic regenerative capacity. Overall design: 30 samples total were analyzed. 9 caudal fins samples 0 2 and 4dpa 3 blood samples and 3 muscle samples from adults exposed to DMSO control as embryos. 9 caudal fins samples 0 2 and 4dpa 3 blood samples and 3 muscle samples from adults exposed to cortisol 1 micromolar as embryos.,parent bioproject:PRJNA318502,pubmed:27444789,,Control 3 blood,GSM2122868,,source name:whole blood DMSO control|strain/background:AB|tissue:whole blood|age:adult|embryonic treatment:DMSO,Control 3 blood,Sequence quality was assessed using Fastqc QC v0.11.2; http://www.bioinformatics.babraham.ac.uk/projects/fastqc. Reads were trimmed using Trimmomatic v 0.3; Bolger et al. 2014. Trimmed reads were aligned to the zebrafish Danio rerio transcriptome annotated by Ensembl version 83 of the GRCz10 genome assembly using RSEM version 1.2.25 Li and Dewey 2011 and Bowtie 1.1.2 Langmead et al. 2009. Differentially expressed transcripts were determined using R/edgeR version 3.10.2 Robinson et al. 2010. Genome build: Danio rerio GRCz10 Supplementary files format and content: Tab delimited text files with read counts counts per million per sample.,whole blood DMSO control,DMSO or 1 micromolar cortisol was added to larval medium for first 5 days of development and then maintained to 4.5 month under normal conditions.,RNA EZplus kit from Qiagen. Illumina TruSeq PolyA+ mRNA libraries.,AB zebrafish were maintained at 28 degrees Celsius at the MDI Biological Laboratory Animal Core.,strain/background:AB|tissue:whole blood|age:adult|embryonic treatment:DMSO,GSM2122868,GSM2122868: Control 3 blood; Danio rerio; RNA Seq,GSM2122868,,1,RNA EZplus kit from Qiagen. Illumina TruSeq PolyA+ mRNA libraries.,GEO Accession:GSM2122868,RNA-Seq,TRANSCRIPTOMIC,cDNA,PAIRED,ILLUMINA,Illumina HiSeq 2500,,SRP073272,,,C8BH2ANXX_s5_1_GSLv3-7_35_SL139792.fastq.gz C8BH2ANXX_s5_2_GSLv3-7_35_SL139792.fastq.gz,fastq fastq,1019872300.0,10198723.0,GSM2122868 r2,0:50 1:50,A:274310405;C:234397316;G:233653220;T:277492635;N:18724,50,50,,,274310405,234397316,233653220,277492635,18724,SRX1704277,SRS1396346,SRA411416,GEO,"Molecular and Biomedical Sciences, University of Maine",2,0.89872,0.91671,0.10908,0.10998,0.76848,0.7559,0.55678,0.52913,50,50,B,B,biological fallback assumption,illumina,hiseq_era,unknown,poly_a,trueseq,bulk,unknown,unknown,,United States,2016-04-13,Adult,Adult,Blood,Hematopoietic System
40821,SRR3381837,SRX1704277,SRS1396346,SRP073272,PRJNA318414,Cortisol treated zebrafish embryos develop into pro inflammatory adults with aberrant immune gene regulation [adults],GSE80260,Transcriptome Analysis,Chronic early life stress increases adult susceptibility to numerous health problems linked to chronic inflammation. One way that this may occur is via glucocorticoid induced developmental programming. To gain insight into such programming we treated zebrafish embryos with cortisol and examined the effects on adults. In maturity the treated fish maintained elevated basal cortisol levels in the absence of exogenous cortisol and constitutively mis expressed genes involved in defense response and its regulation. Adults derived from cortisol treated embryos displayed defective tailfin regeneration heightened basal expression of pro inflammatory genes and failure to appropriately regulate those genes following injury or immunological challenge. These results support the hypothesis that chronically elevated glucocorticoid signaling early in life directs development of a pro inflammatory adult phenotype at the expense of immunoregulation and somatic regenerative capacity. Overall design: 30 samples total were analyzed. 9 caudal fins samples 0 2 and 4dpa 3 blood samples and 3 muscle samples from adults exposed to DMSO control as embryos. 9 caudal fins samples 0 2 and 4dpa 3 blood samples and 3 muscle samples from adults exposed to cortisol 1 micromolar as embryos.,parent bioproject:PRJNA318502,pubmed:27444789,,Control 3 blood,GSM2122868,,source name:whole blood DMSO control|strain/background:AB|tissue:whole blood|age:adult|embryonic treatment:DMSO,Control 3 blood,Sequence quality was assessed using Fastqc QC v0.11.2; http://www.bioinformatics.babraham.ac.uk/projects/fastqc. Reads were trimmed using Trimmomatic v 0.3; Bolger et al. 2014. Trimmed reads were aligned to the zebrafish Danio rerio transcriptome annotated by Ensembl version 83 of the GRCz10 genome assembly using RSEM version 1.2.25 Li and Dewey 2011 and Bowtie 1.1.2 Langmead et al. 2009. Differentially expressed transcripts were determined using R/edgeR version 3.10.2 Robinson et al. 2010. Genome build: Danio rerio GRCz10 Supplementary files format and content: Tab delimited text files with read counts counts per million per sample.,whole blood DMSO control,DMSO or 1 micromolar cortisol was added to larval medium for first 5 days of development and then maintained to 4.5 month under normal conditions.,RNA EZplus kit from Qiagen. Illumina TruSeq PolyA+ mRNA libraries.,AB zebrafish were maintained at 28 degrees Celsius at the MDI Biological Laboratory Animal Core.,strain/background:AB|tissue:whole blood|age:adult|embryonic treatment:DMSO,GSM2122868,GSM2122868: Control 3 blood; Danio rerio; RNA Seq,GSM2122868,,1,RNA EZplus kit from Qiagen. Illumina TruSeq PolyA+ mRNA libraries.,GEO Accession:GSM2122868,RNA-Seq,TRANSCRIPTOMIC,cDNA,PAIRED,ILLUMINA,Illumina HiSeq 2500,,SRP073272,,,C8DY1ANXX_s6_1_GSLv3-7_35_SL139792.fastq.gz C8DY1ANXX_s6_2_GSLv3-7_35_SL139792.fastq.gz,fastq fastq,1350419100.0,13504191.0,GSM2122868 r3,0:50 1:50,A:365416324;C:310498635;G:312632921;T:361739733;N:131487,50,50,,,365416324,310498635,312632921,361739733,131487,SRX1704277,SRS1396346,SRA411416,GEO,"Molecular and Biomedical Sciences, University of Maine",2,0.89828,0.91602,0.11147,0.11073,0.74941,0.75053,0.54012,0.53979,50,50,B,B,biological fallback assumption,illumina,hiseq_era,unknown,poly_a,trueseq,bulk,unknown,unknown,,United States,2016-04-13,Adult,Adult,Blood,Hematopoietic System
40822,SRR3381838,SRX1704277,SRS1396346,SRP073272,PRJNA318414,Cortisol treated zebrafish embryos develop into pro inflammatory adults with aberrant immune gene regulation [adults],GSE80260,Transcriptome Analysis,Chronic early life stress increases adult susceptibility to numerous health problems linked to chronic inflammation. One way that this may occur is via glucocorticoid induced developmental programming. To gain insight into such programming we treated zebrafish embryos with cortisol and examined the effects on adults. In maturity the treated fish maintained elevated basal cortisol levels in the absence of exogenous cortisol and constitutively mis expressed genes involved in defense response and its regulation. Adults derived from cortisol treated embryos displayed defective tailfin regeneration heightened basal expression of pro inflammatory genes and failure to appropriately regulate those genes following injury or immunological challenge. These results support the hypothesis that chronically elevated glucocorticoid signaling early in life directs development of a pro inflammatory adult phenotype at the expense of immunoregulation and somatic regenerative capacity. Overall design: 30 samples total were analyzed. 9 caudal fins samples 0 2 and 4dpa 3 blood samples and 3 muscle samples from adults exposed to DMSO control as embryos. 9 caudal fins samples 0 2 and 4dpa 3 blood samples and 3 muscle samples from adults exposed to cortisol 1 micromolar as embryos.,parent bioproject:PRJNA318502,pubmed:27444789,,Control 3 blood,GSM2122868,,source name:whole blood DMSO control|strain/background:AB|tissue:whole blood|age:adult|embryonic treatment:DMSO,Control 3 blood,Sequence quality was assessed using Fastqc QC v0.11.2; http://www.bioinformatics.babraham.ac.uk/projects/fastqc. Reads were trimmed using Trimmomatic v 0.3; Bolger et al. 2014. Trimmed reads were aligned to the zebrafish Danio rerio transcriptome annotated by Ensembl version 83 of the GRCz10 genome assembly using RSEM version 1.2.25 Li and Dewey 2011 and Bowtie 1.1.2 Langmead et al. 2009. Differentially expressed transcripts were determined using R/edgeR version 3.10.2 Robinson et al. 2010. Genome build: Danio rerio GRCz10 Supplementary files format and content: Tab delimited text files with read counts counts per million per sample.,whole blood DMSO control,DMSO or 1 micromolar cortisol was added to larval medium for first 5 days of development and then maintained to 4.5 month under normal conditions.,RNA EZplus kit from Qiagen. Illumina TruSeq PolyA+ mRNA libraries.,AB zebrafish were maintained at 28 degrees Celsius at the MDI Biological Laboratory Animal Core.,strain/background:AB|tissue:whole blood|age:adult|embryonic treatment:DMSO,GSM2122868,GSM2122868: Control 3 blood; Danio rerio; RNA Seq,GSM2122868,,1,RNA EZplus kit from Qiagen. Illumina TruSeq PolyA+ mRNA libraries.,GEO Accession:GSM2122868,RNA-Seq,TRANSCRIPTOMIC,cDNA,PAIRED,ILLUMINA,Illumina HiSeq 2500,,SRP073272,,,C8DY1ANXX_s5_1_GSLv3-7_35_SL139792.fastq.gz C8DY1ANXX_s5_2_GSLv3-7_35_SL139792.fastq.gz,fastq fastq,1352817900.0,13528179.0,GSM2122868 r4,0:50 1:50,A:366001448;C:311109301;G:313269573;T:362247619;N:189959,50,50,,,366001448,311109301,313269573,362247619,189959,SRX1704277,SRS1396346,SRA411416,GEO,"Molecular and Biomedical Sciences, University of Maine",2,0.89762,0.91702,0.11094,0.1109,0.74864,0.7498,0.53153,0.55731,50,50,B,B,biological fallback assumption,illumina,hiseq_era,unknown,poly_a,trueseq,bulk,unknown,unknown,,United States,2016-04-13,Adult,Adult,Blood,Hematopoietic System
40823,SRR3381831,SRX1704276,SRS1396347,SRP073272,PRJNA318414,Cortisol treated zebrafish embryos develop into pro inflammatory adults with aberrant immune gene regulation [adults],GSE80260,Transcriptome Analysis,Chronic early life stress increases adult susceptibility to numerous health problems linked to chronic inflammation. One way that this may occur is via glucocorticoid induced developmental programming. To gain insight into such programming we treated zebrafish embryos with cortisol and examined the effects on adults. In maturity the treated fish maintained elevated basal cortisol levels in the absence of exogenous cortisol and constitutively mis expressed genes involved in defense response and its regulation. Adults derived from cortisol treated embryos displayed defective tailfin regeneration heightened basal expression of pro inflammatory genes and failure to appropriately regulate those genes following injury or immunological challenge. These results support the hypothesis that chronically elevated glucocorticoid signaling early in life directs development of a pro inflammatory adult phenotype at the expense of immunoregulation and somatic regenerative capacity. Overall design: 30 samples total were analyzed. 9 caudal fins samples 0 2 and 4dpa 3 blood samples and 3 muscle samples from adults exposed to DMSO control as embryos. 9 caudal fins samples 0 2 and 4dpa 3 blood samples and 3 muscle samples from adults exposed to cortisol 1 micromolar as embryos.,parent bioproject:PRJNA318502,pubmed:27444789,,Control 2 blood,GSM2122867,,source name:whole blood DMSO control|strain/background:AB|tissue:whole blood|age:adult|embryonic treatment:DMSO,Control 2 blood,Sequence quality was assessed using Fastqc QC v0.11.2; http://www.bioinformatics.babraham.ac.uk/projects/fastqc. Reads were trimmed using Trimmomatic v 0.3; Bolger et al. 2014. Trimmed reads were aligned to the zebrafish Danio rerio transcriptome annotated by Ensembl version 83 of the GRCz10 genome assembly using RSEM version 1.2.25 Li and Dewey 2011 and Bowtie 1.1.2 Langmead et al. 2009. Differentially expressed transcripts were determined using R/edgeR version 3.10.2 Robinson et al. 2010. Genome build: Danio rerio GRCz10 Supplementary files format and content: Tab delimited text files with read counts counts per million per sample.,whole blood DMSO control,DMSO or 1 micromolar cortisol was added to larval medium for first 5 days of development and then maintained to 4.5 month under normal conditions.,RNA EZplus kit from Qiagen. Illumina TruSeq PolyA+ mRNA libraries.,AB zebrafish were maintained at 28 degrees Celsius at the MDI Biological Laboratory Animal Core.,strain/background:AB|tissue:whole blood|age:adult|embryonic treatment:DMSO,GSM2122867,GSM2122867: Control 2 blood; Danio rerio; RNA Seq,GSM2122867,,1,RNA EZplus kit from Qiagen. Illumina TruSeq PolyA+ mRNA libraries.,GEO Accession:GSM2122867,RNA-Seq,TRANSCRIPTOMIC,cDNA,PAIRED,ILLUMINA,Illumina HiSeq 2500,,SRP073272,,,C8DY1ANXX_s5_1_GSLv3-7_34_SL139791.fastq.gz C8DY1ANXX_s5_2_GSLv3-7_34_SL139791.fastq.gz,fastq fastq,1320276500.0,13202765.0,GSM2122867 r1,0:50 1:50,A:347340148;C:314346533;G:315984111;T:342435896;N:169812,50,50,,,347340148,314346533,315984111,342435896,169812,SRX1704276,SRS1396347,SRA411416,GEO,"Molecular and Biomedical Sciences, University of Maine",2,0.92673,0.93522,0.1474,0.1486,0.77695,0.77822,0.5491,0.55404,50,50,B,B,biological fallback assumption,illumina,hiseq_era,unknown,poly_a,trueseq,bulk,unknown,unknown,,United States,2016-04-13,Adult,Adult,Blood,Hematopoietic System
40824,SRR3381832,SRX1704276,SRS1396347,SRP073272,PRJNA318414,Cortisol treated zebrafish embryos develop into pro inflammatory adults with aberrant immune gene regulation [adults],GSE80260,Transcriptome Analysis,Chronic early life stress increases adult susceptibility to numerous health problems linked to chronic inflammation. One way that this may occur is via glucocorticoid induced developmental programming. To gain insight into such programming we treated zebrafish embryos with cortisol and examined the effects on adults. In maturity the treated fish maintained elevated basal cortisol levels in the absence of exogenous cortisol and constitutively mis expressed genes involved in defense response and its regulation. Adults derived from cortisol treated embryos displayed defective tailfin regeneration heightened basal expression of pro inflammatory genes and failure to appropriately regulate those genes following injury or immunological challenge. These results support the hypothesis that chronically elevated glucocorticoid signaling early in life directs development of a pro inflammatory adult phenotype at the expense of immunoregulation and somatic regenerative capacity. Overall design: 30 samples total were analyzed. 9 caudal fins samples 0 2 and 4dpa 3 blood samples and 3 muscle samples from adults exposed to DMSO control as embryos. 9 caudal fins samples 0 2 and 4dpa 3 blood samples and 3 muscle samples from adults exposed to cortisol 1 micromolar as embryos.,parent bioproject:PRJNA318502,pubmed:27444789,,Control 2 blood,GSM2122867,,source name:whole blood DMSO control|strain/background:AB|tissue:whole blood|age:adult|embryonic treatment:DMSO,Control 2 blood,Sequence quality was assessed using Fastqc QC v0.11.2; http://www.bioinformatics.babraham.ac.uk/projects/fastqc. Reads were trimmed using Trimmomatic v 0.3; Bolger et al. 2014. Trimmed reads were aligned to the zebrafish Danio rerio transcriptome annotated by Ensembl version 83 of the GRCz10 genome assembly using RSEM version 1.2.25 Li and Dewey 2011 and Bowtie 1.1.2 Langmead et al. 2009. Differentially expressed transcripts were determined using R/edgeR version 3.10.2 Robinson et al. 2010. Genome build: Danio rerio GRCz10 Supplementary files format and content: Tab delimited text files with read counts counts per million per sample.,whole blood DMSO control,DMSO or 1 micromolar cortisol was added to larval medium for first 5 days of development and then maintained to 4.5 month under normal conditions.,RNA EZplus kit from Qiagen. Illumina TruSeq PolyA+ mRNA libraries.,AB zebrafish were maintained at 28 degrees Celsius at the MDI Biological Laboratory Animal Core.,strain/background:AB|tissue:whole blood|age:adult|embryonic treatment:DMSO,GSM2122867,GSM2122867: Control 2 blood; Danio rerio; RNA Seq,GSM2122867,,1,RNA EZplus kit from Qiagen. Illumina TruSeq PolyA+ mRNA libraries.,GEO Accession:GSM2122867,RNA-Seq,TRANSCRIPTOMIC,cDNA,PAIRED,ILLUMINA,Illumina HiSeq 2500,,SRP073272,,,C8BH2ANXX_s6_1_GSLv3-7_34_SL139791.fastq.gz C8BH2ANXX_s6_2_GSLv3-7_34_SL139791.fastq.gz,fastq fastq,980312400.0,9803124.0,GSM2122867 r2,0:50 1:50,A:256051139;C:233456025;G:232307447;T:258480444;N:17345,50,50,,,256051139,233456025,232307447,258480444,17345,SRX1704276,SRS1396347,SRA411416,GEO,"Molecular and Biomedical Sciences, University of Maine",2,0.92686,0.9359,0.1445,0.14733,0.79537,0.78244,0.55823,0.5607,50,50,B,B,biological fallback assumption,illumina,hiseq_era,unknown,poly_a,trueseq,bulk,unknown,unknown,,United States,2016-04-13,Adult,Adult,Blood,Hematopoietic System
40825,SRR3381833,SRX1704276,SRS1396347,SRP073272,PRJNA318414,Cortisol treated zebrafish embryos develop into pro inflammatory adults with aberrant immune gene regulation [adults],GSE80260,Transcriptome Analysis,Chronic early life stress increases adult susceptibility to numerous health problems linked to chronic inflammation. One way that this may occur is via glucocorticoid induced developmental programming. To gain insight into such programming we treated zebrafish embryos with cortisol and examined the effects on adults. In maturity the treated fish maintained elevated basal cortisol levels in the absence of exogenous cortisol and constitutively mis expressed genes involved in defense response and its regulation. Adults derived from cortisol treated embryos displayed defective tailfin regeneration heightened basal expression of pro inflammatory genes and failure to appropriately regulate those genes following injury or immunological challenge. These results support the hypothesis that chronically elevated glucocorticoid signaling early in life directs development of a pro inflammatory adult phenotype at the expense of immunoregulation and somatic regenerative capacity. Overall design: 30 samples total were analyzed. 9 caudal fins samples 0 2 and 4dpa 3 blood samples and 3 muscle samples from adults exposed to DMSO control as embryos. 9 caudal fins samples 0 2 and 4dpa 3 blood samples and 3 muscle samples from adults exposed to cortisol 1 micromolar as embryos.,parent bioproject:PRJNA318502,pubmed:27444789,,Control 2 blood,GSM2122867,,source name:whole blood DMSO control|strain/background:AB|tissue:whole blood|age:adult|embryonic treatment:DMSO,Control 2 blood,Sequence quality was assessed using Fastqc QC v0.11.2; http://www.bioinformatics.babraham.ac.uk/projects/fastqc. Reads were trimmed using Trimmomatic v 0.3; Bolger et al. 2014. Trimmed reads were aligned to the zebrafish Danio rerio transcriptome annotated by Ensembl version 83 of the GRCz10 genome assembly using RSEM version 1.2.25 Li and Dewey 2011 and Bowtie 1.1.2 Langmead et al. 2009. Differentially expressed transcripts were determined using R/edgeR version 3.10.2 Robinson et al. 2010. Genome build: Danio rerio GRCz10 Supplementary files format and content: Tab delimited text files with read counts counts per million per sample.,whole blood DMSO control,DMSO or 1 micromolar cortisol was added to larval medium for first 5 days of development and then maintained to 4.5 month under normal conditions.,RNA EZplus kit from Qiagen. Illumina TruSeq PolyA+ mRNA libraries.,AB zebrafish were maintained at 28 degrees Celsius at the MDI Biological Laboratory Animal Core.,strain/background:AB|tissue:whole blood|age:adult|embryonic treatment:DMSO,GSM2122867,GSM2122867: Control 2 blood; Danio rerio; RNA Seq,GSM2122867,,1,RNA EZplus kit from Qiagen. Illumina TruSeq PolyA+ mRNA libraries.,GEO Accession:GSM2122867,RNA-Seq,TRANSCRIPTOMIC,cDNA,PAIRED,ILLUMINA,Illumina HiSeq 2500,,SRP073272,,,C8BH2ANXX_s5_1_GSLv3-7_34_SL139791.fastq.gz C8BH2ANXX_s5_2_GSLv3-7_34_SL139791.fastq.gz,fastq fastq,996477700.0,9964777.0,GSM2122867 r3,0:50 1:50,A:260257795;C:237526121;G:236299803;T:262375630;N:18351,50,50,,,260257795,237526121,236299803,262375630,18351,SRX1704276,SRS1396347,SRA411416,GEO,"Molecular and Biomedical Sciences, University of Maine",2,0.9292,0.93713,0.143,0.14889,0.79531,0.7834,0.55615,0.55279,50,50,B,B,biological fallback assumption,illumina,hiseq_era,unknown,poly_a,trueseq,bulk,unknown,unknown,,United States,2016-04-13,Adult,Adult,Blood,Hematopoietic System
40826,SRR3381834,SRX1704276,SRS1396347,SRP073272,PRJNA318414,Cortisol treated zebrafish embryos develop into pro inflammatory adults with aberrant immune gene regulation [adults],GSE80260,Transcriptome Analysis,Chronic early life stress increases adult susceptibility to numerous health problems linked to chronic inflammation. One way that this may occur is via glucocorticoid induced developmental programming. To gain insight into such programming we treated zebrafish embryos with cortisol and examined the effects on adults. In maturity the treated fish maintained elevated basal cortisol levels in the absence of exogenous cortisol and constitutively mis expressed genes involved in defense response and its regulation. Adults derived from cortisol treated embryos displayed defective tailfin regeneration heightened basal expression of pro inflammatory genes and failure to appropriately regulate those genes following injury or immunological challenge. These results support the hypothesis that chronically elevated glucocorticoid signaling early in life directs development of a pro inflammatory adult phenotype at the expense of immunoregulation and somatic regenerative capacity. Overall design: 30 samples total were analyzed. 9 caudal fins samples 0 2 and 4dpa 3 blood samples and 3 muscle samples from adults exposed to DMSO control as embryos. 9 caudal fins samples 0 2 and 4dpa 3 blood samples and 3 muscle samples from adults exposed to cortisol 1 micromolar as embryos.,parent bioproject:PRJNA318502,pubmed:27444789,,Control 2 blood,GSM2122867,,source name:whole blood DMSO control|strain/background:AB|tissue:whole blood|age:adult|embryonic treatment:DMSO,Control 2 blood,Sequence quality was assessed using Fastqc QC v0.11.2; http://www.bioinformatics.babraham.ac.uk/projects/fastqc. Reads were trimmed using Trimmomatic v 0.3; Bolger et al. 2014. Trimmed reads were aligned to the zebrafish Danio rerio transcriptome annotated by Ensembl version 83 of the GRCz10 genome assembly using RSEM version 1.2.25 Li and Dewey 2011 and Bowtie 1.1.2 Langmead et al. 2009. Differentially expressed transcripts were determined using R/edgeR version 3.10.2 Robinson et al. 2010. Genome build: Danio rerio GRCz10 Supplementary files format and content: Tab delimited text files with read counts counts per million per sample.,whole blood DMSO control,DMSO or 1 micromolar cortisol was added to larval medium for first 5 days of development and then maintained to 4.5 month under normal conditions.,RNA EZplus kit from Qiagen. Illumina TruSeq PolyA+ mRNA libraries.,AB zebrafish were maintained at 28 degrees Celsius at the MDI Biological Laboratory Animal Core.,strain/background:AB|tissue:whole blood|age:adult|embryonic treatment:DMSO,GSM2122867,GSM2122867: Control 2 blood; Danio rerio; RNA Seq,GSM2122867,,1,RNA EZplus kit from Qiagen. Illumina TruSeq PolyA+ mRNA libraries.,GEO Accession:GSM2122867,RNA-Seq,TRANSCRIPTOMIC,cDNA,PAIRED,ILLUMINA,Illumina HiSeq 2500,,SRP073272,,,C8DY1ANXX_s6_1_GSLv3-7_34_SL139791.fastq.gz C8DY1ANXX_s6_2_GSLv3-7_34_SL139791.fastq.gz,fastq fastq,1319184300.0,13191843.0,GSM2122867 r4,0:50 1:50,A:347098468;C:314043165;G:315610117;T:342302442;N:130108,50,50,,,347098468,314043165,315610117,342302442,130108,SRX1704276,SRS1396347,SRA411416,GEO,"Molecular and Biomedical Sciences, University of Maine",2,0.92671,0.93595,0.14826,0.14877,0.77792,0.77873,0.55524,0.5557,50,50,B,B,biological fallback assumption,illumina,hiseq_era,unknown,poly_a,trueseq,bulk,unknown,unknown,,United States,2016-04-13,Adult,Adult,Blood,Hematopoietic System
40827,SRR3381825,SRX1704275,SRS1396348,SRP073272,PRJNA318414,Cortisol treated zebrafish embryos develop into pro inflammatory adults with aberrant immune gene regulation [adults],GSE80260,Transcriptome Analysis,Chronic early life stress increases adult susceptibility to numerous health problems linked to chronic inflammation. One way that this may occur is via glucocorticoid induced developmental programming. To gain insight into such programming we treated zebrafish embryos with cortisol and examined the effects on adults. In maturity the treated fish maintained elevated basal cortisol levels in the absence of exogenous cortisol and constitutively mis expressed genes involved in defense response and its regulation. Adults derived from cortisol treated embryos displayed defective tailfin regeneration heightened basal expression of pro inflammatory genes and failure to appropriately regulate those genes following injury or immunological challenge. These results support the hypothesis that chronically elevated glucocorticoid signaling early in life directs development of a pro inflammatory adult phenotype at the expense of immunoregulation and somatic regenerative capacity. Overall design: 30 samples total were analyzed. 9 caudal fins samples 0 2 and 4dpa 3 blood samples and 3 muscle samples from adults exposed to DMSO control as embryos. 9 caudal fins samples 0 2 and 4dpa 3 blood samples and 3 muscle samples from adults exposed to cortisol 1 micromolar as embryos.,parent bioproject:PRJNA318502,pubmed:27444789,,Control 1 blood,GSM2122866,,source name:whole blood DMSO control|strain/background:AB|tissue:whole blood|age:adult|embryonic treatment:DMSO,Control 1 blood,Sequence quality was assessed using Fastqc QC v0.11.2; http://www.bioinformatics.babraham.ac.uk/projects/fastqc. Reads were trimmed using Trimmomatic v 0.3; Bolger et al. 2014. Trimmed reads were aligned to the zebrafish Danio rerio transcriptome annotated by Ensembl version 83 of the GRCz10 genome assembly using RSEM version 1.2.25 Li and Dewey 2011 and Bowtie 1.1.2 Langmead et al. 2009. Differentially expressed transcripts were determined using R/edgeR version 3.10.2 Robinson et al. 2010. Genome build: Danio rerio GRCz10 Supplementary files format and content: Tab delimited text files with read counts counts per million per sample.,whole blood DMSO control,DMSO or 1 micromolar cortisol was added to larval medium for first 5 days of development and then maintained to 4.5 month under normal conditions.,RNA EZplus kit from Qiagen. Illumina TruSeq PolyA+ mRNA libraries.,AB zebrafish were maintained at 28 degrees Celsius at the MDI Biological Laboratory Animal Core.,strain/background:AB|tissue:whole blood|age:adult|embryonic treatment:DMSO,GSM2122866,GSM2122866: Control 1 blood; Danio rerio; RNA Seq,GSM2122866,,1,RNA EZplus kit from Qiagen. Illumina TruSeq PolyA+ mRNA libraries.,GEO Accession:GSM2122866,RNA-Seq,TRANSCRIPTOMIC,cDNA,PAIRED,ILLUMINA,Illumina HiSeq 2500,,SRP073272,,,C8BH2ANXX_s6_1_GSLv3-7_33_SL139790.fastq.gz C8BH2ANXX_s6_2_GSLv3-7_33_SL139790.fastq.gz,fastq fastq,692276000.0,6922760.0,GSM2122866 r1,0:50 1:50,A:191405813;C:153586292;G:152965257;T:194306049;N:12589,50,50,,,191405813,153586292,152965257,194306049,12589,SRX1704275,SRS1396348,SRA411416,GEO,"Molecular and Biomedical Sciences, University of Maine",2,0.9083,0.91142,0.16578,0.17743,0.75789,0.74221,0.55181,0.54476,50,50,B,B,biological fallback assumption,illumina,hiseq_era,unknown,poly_a,trueseq,bulk,unknown,unknown,,United States,2016-04-13,Adult,Adult,Blood,Hematopoietic System
40828,SRR3381826,SRX1704275,SRS1396348,SRP073272,PRJNA318414,Cortisol treated zebrafish embryos develop into pro inflammatory adults with aberrant immune gene regulation [adults],GSE80260,Transcriptome Analysis,Chronic early life stress increases adult susceptibility to numerous health problems linked to chronic inflammation. One way that this may occur is via glucocorticoid induced developmental programming. To gain insight into such programming we treated zebrafish embryos with cortisol and examined the effects on adults. In maturity the treated fish maintained elevated basal cortisol levels in the absence of exogenous cortisol and constitutively mis expressed genes involved in defense response and its regulation. Adults derived from cortisol treated embryos displayed defective tailfin regeneration heightened basal expression of pro inflammatory genes and failure to appropriately regulate those genes following injury or immunological challenge. These results support the hypothesis that chronically elevated glucocorticoid signaling early in life directs development of a pro inflammatory adult phenotype at the expense of immunoregulation and somatic regenerative capacity. Overall design: 30 samples total were analyzed. 9 caudal fins samples 0 2 and 4dpa 3 blood samples and 3 muscle samples from adults exposed to DMSO control as embryos. 9 caudal fins samples 0 2 and 4dpa 3 blood samples and 3 muscle samples from adults exposed to cortisol 1 micromolar as embryos.,parent bioproject:PRJNA318502,pubmed:27444789,,Control 1 blood,GSM2122866,,source name:whole blood DMSO control|strain/background:AB|tissue:whole blood|age:adult|embryonic treatment:DMSO,Control 1 blood,Sequence quality was assessed using Fastqc QC v0.11.2; http://www.bioinformatics.babraham.ac.uk/projects/fastqc. Reads were trimmed using Trimmomatic v 0.3; Bolger et al. 2014. Trimmed reads were aligned to the zebrafish Danio rerio transcriptome annotated by Ensembl version 83 of the GRCz10 genome assembly using RSEM version 1.2.25 Li and Dewey 2011 and Bowtie 1.1.2 Langmead et al. 2009. Differentially expressed transcripts were determined using R/edgeR version 3.10.2 Robinson et al. 2010. Genome build: Danio rerio GRCz10 Supplementary files format and content: Tab delimited text files with read counts counts per million per sample.,whole blood DMSO control,DMSO or 1 micromolar cortisol was added to larval medium for first 5 days of development and then maintained to 4.5 month under normal conditions.,RNA EZplus kit from Qiagen. Illumina TruSeq PolyA+ mRNA libraries.,AB zebrafish were maintained at 28 degrees Celsius at the MDI Biological Laboratory Animal Core.,strain/background:AB|tissue:whole blood|age:adult|embryonic treatment:DMSO,GSM2122866,GSM2122866: Control 1 blood; Danio rerio; RNA Seq,GSM2122866,,1,RNA EZplus kit from Qiagen. Illumina TruSeq PolyA+ mRNA libraries.,GEO Accession:GSM2122866,RNA-Seq,TRANSCRIPTOMIC,cDNA,PAIRED,ILLUMINA,Illumina HiSeq 2500,,SRP073272,,,C8DY1ANXX_s5_1_GSLv3-7_33_SL139790.fastq.gz C8DY1ANXX_s5_2_GSLv3-7_33_SL139790.fastq.gz,fastq fastq,911479300.0,9114793.0,GSM2122866 r2,0:50 1:50,A:253240601;C:202627238;G:203390297;T:252105631;N:115533,50,50,,,253240601,202627238,203390297,252105631,115533,SRX1704275,SRS1396348,SRA411416,GEO,"Molecular and Biomedical Sciences, University of Maine",2,0.90729,0.91334,0.17307,0.1777,0.73316,0.73419,0.55981,0.56826,50,50,B,B,biological fallback assumption,illumina,hiseq_era,unknown,poly_a,trueseq,bulk,unknown,unknown,,United States,2016-04-13,Adult,Adult,Blood,Hematopoietic System
40829,SRR3381827,SRX1704275,SRS1396348,SRP073272,PRJNA318414,Cortisol treated zebrafish embryos develop into pro inflammatory adults with aberrant immune gene regulation [adults],GSE80260,Transcriptome Analysis,Chronic early life stress increases adult susceptibility to numerous health problems linked to chronic inflammation. One way that this may occur is via glucocorticoid induced developmental programming. To gain insight into such programming we treated zebrafish embryos with cortisol and examined the effects on adults. In maturity the treated fish maintained elevated basal cortisol levels in the absence of exogenous cortisol and constitutively mis expressed genes involved in defense response and its regulation. Adults derived from cortisol treated embryos displayed defective tailfin regeneration heightened basal expression of pro inflammatory genes and failure to appropriately regulate those genes following injury or immunological challenge. These results support the hypothesis that chronically elevated glucocorticoid signaling early in life directs development of a pro inflammatory adult phenotype at the expense of immunoregulation and somatic regenerative capacity. Overall design: 30 samples total were analyzed. 9 caudal fins samples 0 2 and 4dpa 3 blood samples and 3 muscle samples from adults exposed to DMSO control as embryos. 9 caudal fins samples 0 2 and 4dpa 3 blood samples and 3 muscle samples from adults exposed to cortisol 1 micromolar as embryos.,parent bioproject:PRJNA318502,pubmed:27444789,,Control 1 blood,GSM2122866,,source name:whole blood DMSO control|strain/background:AB|tissue:whole blood|age:adult|embryonic treatment:DMSO,Control 1 blood,Sequence quality was assessed using Fastqc QC v0.11.2; http://www.bioinformatics.babraham.ac.uk/projects/fastqc. Reads were trimmed using Trimmomatic v 0.3; Bolger et al. 2014. Trimmed reads were aligned to the zebrafish Danio rerio transcriptome annotated by Ensembl version 83 of the GRCz10 genome assembly using RSEM version 1.2.25 Li and Dewey 2011 and Bowtie 1.1.2 Langmead et al. 2009. Differentially expressed transcripts were determined using R/edgeR version 3.10.2 Robinson et al. 2010. Genome build: Danio rerio GRCz10 Supplementary files format and content: Tab delimited text files with read counts counts per million per sample.,whole blood DMSO control,DMSO or 1 micromolar cortisol was added to larval medium for first 5 days of development and then maintained to 4.5 month under normal conditions.,RNA EZplus kit from Qiagen. Illumina TruSeq PolyA+ mRNA libraries.,AB zebrafish were maintained at 28 degrees Celsius at the MDI Biological Laboratory Animal Core.,strain/background:AB|tissue:whole blood|age:adult|embryonic treatment:DMSO,GSM2122866,GSM2122866: Control 1 blood; Danio rerio; RNA Seq,GSM2122866,,1,RNA EZplus kit from Qiagen. Illumina TruSeq PolyA+ mRNA libraries.,GEO Accession:GSM2122866,RNA-Seq,TRANSCRIPTOMIC,cDNA,PAIRED,ILLUMINA,Illumina HiSeq 2500,,SRP073272,,,C8DY1ANXX_s6_1_GSLv3-7_33_SL139790.fastq.gz C8DY1ANXX_s6_2_GSLv3-7_33_SL139790.fastq.gz,fastq fastq,910041600.0,9100416.0,GSM2122866 r3,0:50 1:50,A:252924440;C:202200821;G:202972517;T:251856107;N:87715,50,50,,,252924440,202200821,202972517,251856107,87715,SRX1704275,SRS1396348,SRA411416,GEO,"Molecular and Biomedical Sciences, University of Maine",2,0.90819,0.91345,0.17288,0.17678,0.73582,0.73448,0.55482,0.56579,50,50,B,B,biological fallback assumption,illumina,hiseq_era,unknown,poly_a,trueseq,bulk,unknown,unknown,,United States,2016-04-13,Adult,Adult,Blood,Hematopoietic System
40830,SRR3381828,SRX1704275,SRS1396348,SRP073272,PRJNA318414,Cortisol treated zebrafish embryos develop into pro inflammatory adults with aberrant immune gene regulation [adults],GSE80260,Transcriptome Analysis,Chronic early life stress increases adult susceptibility to numerous health problems linked to chronic inflammation. One way that this may occur is via glucocorticoid induced developmental programming. To gain insight into such programming we treated zebrafish embryos with cortisol and examined the effects on adults. In maturity the treated fish maintained elevated basal cortisol levels in the absence of exogenous cortisol and constitutively mis expressed genes involved in defense response and its regulation. Adults derived from cortisol treated embryos displayed defective tailfin regeneration heightened basal expression of pro inflammatory genes and failure to appropriately regulate those genes following injury or immunological challenge. These results support the hypothesis that chronically elevated glucocorticoid signaling early in life directs development of a pro inflammatory adult phenotype at the expense of immunoregulation and somatic regenerative capacity. Overall design: 30 samples total were analyzed. 9 caudal fins samples 0 2 and 4dpa 3 blood samples and 3 muscle samples from adults exposed to DMSO control as embryos. 9 caudal fins samples 0 2 and 4dpa 3 blood samples and 3 muscle samples from adults exposed to cortisol 1 micromolar as embryos.,parent bioproject:PRJNA318502,pubmed:27444789,,Control 1 blood,GSM2122866,,source name:whole blood DMSO control|strain/background:AB|tissue:whole blood|age:adult|embryonic treatment:DMSO,Control 1 blood,Sequence quality was assessed using Fastqc QC v0.11.2; http://www.bioinformatics.babraham.ac.uk/projects/fastqc. Reads were trimmed using Trimmomatic v 0.3; Bolger et al. 2014. Trimmed reads were aligned to the zebrafish Danio rerio transcriptome annotated by Ensembl version 83 of the GRCz10 genome assembly using RSEM version 1.2.25 Li and Dewey 2011 and Bowtie 1.1.2 Langmead et al. 2009. Differentially expressed transcripts were determined using R/edgeR version 3.10.2 Robinson et al. 2010. Genome build: Danio rerio GRCz10 Supplementary files format and content: Tab delimited text files with read counts counts per million per sample.,whole blood DMSO control,DMSO or 1 micromolar cortisol was added to larval medium for first 5 days of development and then maintained to 4.5 month under normal conditions.,RNA EZplus kit from Qiagen. Illumina TruSeq PolyA+ mRNA libraries.,AB zebrafish were maintained at 28 degrees Celsius at the MDI Biological Laboratory Animal Core.,strain/background:AB|tissue:whole blood|age:adult|embryonic treatment:DMSO,GSM2122866,GSM2122866: Control 1 blood; Danio rerio; RNA Seq,GSM2122866,,1,RNA EZplus kit from Qiagen. Illumina TruSeq PolyA+ mRNA libraries.,GEO Accession:GSM2122866,RNA-Seq,TRANSCRIPTOMIC,cDNA,PAIRED,ILLUMINA,Illumina HiSeq 2500,,SRP073272,,,C8BH2ANXX_s5_1_GSLv3-7_33_SL139790.fastq.gz C8BH2ANXX_s5_2_GSLv3-7_33_SL139790.fastq.gz,fastq fastq,701940200.0,7019402.0,GSM2122866 r4,0:50 1:50,A:194036996;C:155992188;G:155284640;T:196613376;N:13000,50,50,,,194036996,155992188,155284640,196613376,13000,SRX1704275,SRS1396348,SRA411416,GEO,"Molecular and Biomedical Sciences, University of Maine",2,0.90959,0.91386,0.16429,0.17705,0.75544,0.7391,0.548,0.57224,50,50,B,B,biological fallback assumption,illumina,hiseq_era,unknown,poly_a,trueseq,bulk,unknown,unknown,,United States,2016-04-13,Adult,Adult,Blood,Hematopoietic System
40831,SRR3381829,SRX1704275,SRS1396348,SRP073272,PRJNA318414,Cortisol treated zebrafish embryos develop into pro inflammatory adults with aberrant immune gene regulation [adults],GSE80260,Transcriptome Analysis,Chronic early life stress increases adult susceptibility to numerous health problems linked to chronic inflammation. One way that this may occur is via glucocorticoid induced developmental programming. To gain insight into such programming we treated zebrafish embryos with cortisol and examined the effects on adults. In maturity the treated fish maintained elevated basal cortisol levels in the absence of exogenous cortisol and constitutively mis expressed genes involved in defense response and its regulation. Adults derived from cortisol treated embryos displayed defective tailfin regeneration heightened basal expression of pro inflammatory genes and failure to appropriately regulate those genes following injury or immunological challenge. These results support the hypothesis that chronically elevated glucocorticoid signaling early in life directs development of a pro inflammatory adult phenotype at the expense of immunoregulation and somatic regenerative capacity. Overall design: 30 samples total were analyzed. 9 caudal fins samples 0 2 and 4dpa 3 blood samples and 3 muscle samples from adults exposed to DMSO control as embryos. 9 caudal fins samples 0 2 and 4dpa 3 blood samples and 3 muscle samples from adults exposed to cortisol 1 micromolar as embryos.,parent bioproject:PRJNA318502,pubmed:27444789,,Control 1 blood,GSM2122866,,source name:whole blood DMSO control|strain/background:AB|tissue:whole blood|age:adult|embryonic treatment:DMSO,Control 1 blood,Sequence quality was assessed using Fastqc QC v0.11.2; http://www.bioinformatics.babraham.ac.uk/projects/fastqc. Reads were trimmed using Trimmomatic v 0.3; Bolger et al. 2014. Trimmed reads were aligned to the zebrafish Danio rerio transcriptome annotated by Ensembl version 83 of the GRCz10 genome assembly using RSEM version 1.2.25 Li and Dewey 2011 and Bowtie 1.1.2 Langmead et al. 2009. Differentially expressed transcripts were determined using R/edgeR version 3.10.2 Robinson et al. 2010. Genome build: Danio rerio GRCz10 Supplementary files format and content: Tab delimited text files with read counts counts per million per sample.,whole blood DMSO control,DMSO or 1 micromolar cortisol was added to larval medium for first 5 days of development and then maintained to 4.5 month under normal conditions.,RNA EZplus kit from Qiagen. Illumina TruSeq PolyA+ mRNA libraries.,AB zebrafish were maintained at 28 degrees Celsius at the MDI Biological Laboratory Animal Core.,strain/background:AB|tissue:whole blood|age:adult|embryonic treatment:DMSO,GSM2122866,GSM2122866: Control 1 blood; Danio rerio; RNA Seq,GSM2122866,,1,RNA EZplus kit from Qiagen. Illumina TruSeq PolyA+ mRNA libraries.,GEO Accession:GSM2122866,RNA-Seq,TRANSCRIPTOMIC,cDNA,PAIRED,ILLUMINA,Illumina HiSeq 2500,,SRP073272,,,C8DKGANXX_s8_1_GSLv3-7_33_SL139790.fastq.gz C8DKGANXX_s8_2_GSLv3-7_33_SL139790.fastq.gz,fastq fastq,1596331500.0,15963315.0,GSM2122866 r5,0:50 1:50,A:444854958;C:353331559;G:354367449;T:442888766;N:888768,50,50,,,444854958,353331559,354367449,442888766,888768,SRX1704275,SRS1396348,SRA411416,GEO,"Molecular and Biomedical Sciences, University of Maine",2,0.90554,0.91175,0.17327,0.17968,0.73669,0.73728,0.55044,0.5651,50,50,B,B,biological fallback assumption,illumina,hiseq_era,unknown,poly_a,trueseq,bulk,unknown,unknown,,United States,2016-04-13,Adult,Adult,Blood,Hematopoietic System
40832,SRR3381830,SRX1704275,SRS1396348,SRP073272,PRJNA318414,Cortisol treated zebrafish embryos develop into pro inflammatory adults with aberrant immune gene regulation [adults],GSE80260,Transcriptome Analysis,Chronic early life stress increases adult susceptibility to numerous health problems linked to chronic inflammation. One way that this may occur is via glucocorticoid induced developmental programming. To gain insight into such programming we treated zebrafish embryos with cortisol and examined the effects on adults. In maturity the treated fish maintained elevated basal cortisol levels in the absence of exogenous cortisol and constitutively mis expressed genes involved in defense response and its regulation. Adults derived from cortisol treated embryos displayed defective tailfin regeneration heightened basal expression of pro inflammatory genes and failure to appropriately regulate those genes following injury or immunological challenge. These results support the hypothesis that chronically elevated glucocorticoid signaling early in life directs development of a pro inflammatory adult phenotype at the expense of immunoregulation and somatic regenerative capacity. Overall design: 30 samples total were analyzed. 9 caudal fins samples 0 2 and 4dpa 3 blood samples and 3 muscle samples from adults exposed to DMSO control as embryos. 9 caudal fins samples 0 2 and 4dpa 3 blood samples and 3 muscle samples from adults exposed to cortisol 1 micromolar as embryos.,parent bioproject:PRJNA318502,pubmed:27444789,,Control 1 blood,GSM2122866,,source name:whole blood DMSO control|strain/background:AB|tissue:whole blood|age:adult|embryonic treatment:DMSO,Control 1 blood,Sequence quality was assessed using Fastqc QC v0.11.2; http://www.bioinformatics.babraham.ac.uk/projects/fastqc. Reads were trimmed using Trimmomatic v 0.3; Bolger et al. 2014. Trimmed reads were aligned to the zebrafish Danio rerio transcriptome annotated by Ensembl version 83 of the GRCz10 genome assembly using RSEM version 1.2.25 Li and Dewey 2011 and Bowtie 1.1.2 Langmead et al. 2009. Differentially expressed transcripts were determined using R/edgeR version 3.10.2 Robinson et al. 2010. Genome build: Danio rerio GRCz10 Supplementary files format and content: Tab delimited text files with read counts counts per million per sample.,whole blood DMSO control,DMSO or 1 micromolar cortisol was added to larval medium for first 5 days of development and then maintained to 4.5 month under normal conditions.,RNA EZplus kit from Qiagen. Illumina TruSeq PolyA+ mRNA libraries.,AB zebrafish were maintained at 28 degrees Celsius at the MDI Biological Laboratory Animal Core.,strain/background:AB|tissue:whole blood|age:adult|embryonic treatment:DMSO,GSM2122866,GSM2122866: Control 1 blood; Danio rerio; RNA Seq,GSM2122866,,1,RNA EZplus kit from Qiagen. Illumina TruSeq PolyA+ mRNA libraries.,GEO Accession:GSM2122866,RNA-Seq,TRANSCRIPTOMIC,cDNA,PAIRED,ILLUMINA,Illumina HiSeq 2500,,SRP073272,,,C8DKGANXX_s7_1_GSLv3-7_33_SL139790.fastq.gz C8DKGANXX_s7_2_GSLv3-7_33_SL139790.fastq.gz,fastq fastq,1600754600.0,16007546.0,GSM2122866 r6,0:50 1:50,A:446178544;C:354456079;G:355435947;T:443937350;N:746680,50,50,,,446178544,354456079,355435947,443937350,746680,SRX1704275,SRS1396348,SRA411416,GEO,"Molecular and Biomedical Sciences, University of Maine",2,0.90709,0.91238,0.17011,0.17723,0.74054,0.73994,0.55938,0.55607,50,50,B,B,biological fallback assumption,illumina,hiseq_era,unknown,poly_a,trueseq,bulk,unknown,unknown,,United States,2016-04-13,Adult,Adult,Blood,Hematopoietic System
41032,SRR3581739,SRX1797279,SRS1465200,SRP075626,PRJNA322629,Mycobacterial infection of adult zebrafish,PRJNA322629,Other,RNA seq based profiling of Mycobacterium marinum granulomas from adult zebrafish and matched macrophage samples.,,,,Larval non fluorescent cells post macrophage sorting3,C NF3,,breed:*AB|age:4dpf|dev stage:Larval|sex:not determined|tissue:Whole animal following macrophage depletion via FACS|BioSampleModel:Model organism or animal,,,,,,,,,C NF3,C NF3,C NF3,1,,,RNA-Seq,TRANSCRIPTOMIC,RANDOM,SINGLE,ILLUMINA,Illumina HiSeq 2500,,SRP075626,,,C_NF3.fastq.gz,fastq,1745512893.0,34225743.0,C NF3.fastq.gz,0:51,A:470456301;C:396221813;G:401458508;T:477287506;N:88765,51,,,,470456301,396221813,401458508,477287506,88765,SRX1797279,SRS1465200,SRA429046,Duke University|Molecular Genetics & Microbiology,Duke University,1,0.92839,,0.06821,,0.73099,,0.44395,,51,,B,,usable mapping rate,illumina,hiseq_era,unknown,random_priming,unknown,bulk,unknown,unknown,,United States,2016-05-25,Larval,Larval,Blood,Hematopoietic System
41033,SRR3581729,SRX1797278,SRS1465199,SRP075626,PRJNA322629,Mycobacterial infection of adult zebrafish,PRJNA322629,Other,RNA seq based profiling of Mycobacterium marinum granulomas from adult zebrafish and matched macrophage samples.,,,,Larval non fluorescent cells post macrophage sorting2,C NF2,,breed:*AB|age:4dpf|dev stage:Larval|sex:not determined|tissue:Whole animal following macrophage depletion via FACS|BioSampleModel:Model organism or animal,,,,,,,,,C NF2,C NF2,C NF2,1,,,RNA-Seq,TRANSCRIPTOMIC,RANDOM,SINGLE,ILLUMINA,Illumina HiSeq 2500,,SRP075626,,,C_NF2.fastq.gz,fastq,2116510506.0,41500206.0,C NF2.fastq.gz,0:51,A:580244434;C:475940957;G:474848964;T:585459729;N:16422,51,,,,580244434,475940957,474848964,585459729,16422,SRX1797278,SRS1465199,SRA429045,Duke University|Molecular Genetics & Microbiology,Duke University,1,0.90388,,0.06926,,0.78963,,0.49501,,51,,B,,usable mapping rate,illumina,hiseq_era,unknown,random_priming,unknown,bulk,unknown,unknown,,United States,2017-06-24,Larval,Larval,Blood,Hematopoietic System
41034,SRR3581718,SRX1797274,SRS1465196,SRP075626,PRJNA322629,Mycobacterial infection of adult zebrafish,PRJNA322629,Other,RNA seq based profiling of Mycobacterium marinum granulomas from adult zebrafish and matched macrophage samples.,,,,Larval non fluorescent cells post macrophage sorting1,C NF1,,breed:*AB|age:4dpf|dev stage:Larval|sex:not determined|tissue:Whole animal following macrophage depletion via FACS|BioSampleModel:Model organism or animal,,,,,,,,,C NF1,C NF1,C NF1,1,,,RNA-Seq,TRANSCRIPTOMIC,RANDOM,SINGLE,ILLUMINA,Illumina HiSeq 2500,,SRP075626,,,C_NF1.fastq.gz,fastq,1492422690.0,29263190.0,C NF1.fastq.gz,0:51,A:421145406;C:327412398;G:328273236;T:415327504;N:264146,51,,,,421145406,327412398,328273236,415327504,264146,SRX1797274,SRS1465196,SRA429041,Duke University|Molecular Genetics & Microbiology,Duke University,1,0.82347,,0.08561,,0.75207,,0.45637,,51,,B,,usable mapping rate,illumina,hiseq_era,unknown,random_priming,unknown,bulk,unknown,unknown,,United States,2017-06-24,Larval,Larval,Blood,Hematopoietic System
41038,SRR3581671,SRX1797269,SRS1465191,SRP075626,PRJNA322629,Mycobacterial infection of adult zebrafish,PRJNA322629,Other,RNA seq based profiling of Mycobacterium marinum granulomas from adult zebrafish and matched macrophage samples.,,,,Fluorescence activated cell sorted macrophages1,iRed1,,breed:*AB|dev stage:Adult|sex:pooled male and female|tissue:Fluorescence activated cell sorted macrophages|BioSampleModel:Model organism or animal,,,,,,,,,iRed1,iRed1,iRed1,1,,,RNA-Seq,TRANSCRIPTOMIC,RANDOM,SINGLE,ILLUMINA,Illumina HiSeq 2500,,SRP075626,,,iRed1.fastq.gz,fastq,2227229772.0,43671172.0,iRed1.fastq.gz,0:51,A:643185725;C:477251583;G:480258902;T:626515881;N:17681,51,,,,643185725,477251583,480258902,626515881,17681,SRX1797269,SRS1465191,SRA429036,Duke University|Molecular Genetics & Microbiology,Duke University,1,0.88005,,0.11318,,0.76197,,0.49474,,51,,B,,usable mapping rate,illumina,hiseq_era,unknown,random_priming,unknown,bulk,unknown,unknown,,United States,2017-06-24,Adult,Adult,Blood,Hematopoietic System
41039,SRR3581670,SRX1797268,SRS1465190,SRP075626,PRJNA322629,Mycobacterial infection of adult zebrafish,PRJNA322629,Other,RNA seq based profiling of Mycobacterium marinum granulomas from adult zebrafish and matched macrophage samples.,,,,D rerio dissected M marinum granuloma5,disGran5,,breed:*AB|dev stage:Adult|sex:pooled male and female|tissue:Dissected granuloma|BioSampleModel:Model organism or animal,,,,,,,,,disGran5,disGran5,disGran5,1,,,RNA-Seq,TRANSCRIPTOMIC,RANDOM,SINGLE,ILLUMINA,Illumina HiSeq 2500,,SRP075626,,,disGran5.fastq.gz,fastq,2097698850.0,41131350.0,disGran5.fastq.gz,0:51,A:606466942;C:449212134;G:448063993;T:593938942;N:16839,51,,,,606466942,449212134,448063993,593938942,16839,SRX1797268,SRS1465190,SRA429035,Duke University|Molecular Genetics & Microbiology,Duke University,1,0.89212,,0.09154,,0.76788,,0.51096,,51,,B,,usable mapping rate,illumina,hiseq_era,unknown,random_priming,unknown,bulk,unknown,unknown,,United States,2017-06-24,Adult,Adult,Blood,Hematopoietic System
41040,SRR3581669,SRX1797267,SRS1465187,SRP075626,PRJNA322629,Mycobacterial infection of adult zebrafish,PRJNA322629,Other,RNA seq based profiling of Mycobacterium marinum granulomas from adult zebrafish and matched macrophage samples.,,,,D rerio dissected M marinum granuloma4,disGran4,,breed:*AB|dev stage:Adult|sex:pooled male and female|tissue:Dissected granuloma|BioSampleModel:Model organism or animal,,,,,,,,,disGran4,disGran4,disGran4,1,,,RNA-Seq,TRANSCRIPTOMIC,RANDOM,SINGLE,ILLUMINA,Illumina HiSeq 2500,,SRP075626,,,disGran4.fastq.gz,fastq,2969920485.0,58233735.0,disGran4.fastq.gz,0:51,A:861895830;C:635643178;G:635675729;T:836681349;N:24399,51,,,,861895830,635643178,635675729,836681349,24399,SRX1797267,SRS1465187,SRA429034,Duke University|Molecular Genetics & Microbiology,Duke University,1,0.87215,,0.09876,,0.7498,,0.55116,,51,,B,,usable mapping rate,illumina,hiseq_era,unknown,random_priming,unknown,bulk,unknown,unknown,,United States,2017-06-24,Adult,Adult,Blood,Hematopoietic System
41041,SRR3581668,SRX1797266,SRS1465186,SRP075626,PRJNA322629,Mycobacterial infection of adult zebrafish,PRJNA322629,Other,RNA seq based profiling of Mycobacterium marinum granulomas from adult zebrafish and matched macrophage samples.,,,,D rerio dissected M marinum granuloma3,disGran3,,breed:*AB|dev stage:Adult|sex:pooled male and female|tissue:Dissected granuloma|BioSampleModel:Model organism or animal,,,,,,,,,disGran3,disGran3,disGran3,1,,,RNA-Seq,TRANSCRIPTOMIC,RANDOM,SINGLE,ILLUMINA,Illumina HiSeq 2500,,SRP075626,,,disGran3.fastq.gz,fastq,2398905207.0,47037357.0,disGran3.fastq.gz,0:51,A:693817641;C:513302774;G:516121702;T:675643798;N:19292,51,,,,693817641,513302774,516121702,675643798,19292,SRX1797266,SRS1465186,SRA429033,Duke University|Molecular Genetics & Microbiology,Duke University,1,0.88631,,0.10719,,0.75465,,0.51255,,51,,B,,usable mapping rate,illumina,hiseq_era,unknown,random_priming,unknown,bulk,unknown,unknown,,United States,2017-06-24,Adult,Adult,Blood,Hematopoietic System
41042,SRR3581667,SRX1797265,SRS1465185,SRP075626,PRJNA322629,Mycobacterial infection of adult zebrafish,PRJNA322629,Other,RNA seq based profiling of Mycobacterium marinum granulomas from adult zebrafish and matched macrophage samples.,,,,D rerio dissected M marinum granuloma2,disGran2,,breed:*AB|dev stage:Adult|sex:pooled male and female|tissue:Dissected granuloma|BioSampleModel:Model organism or animal,,,,,,,,,disGran2,disGran2,disGran2,1,,,RNA-Seq,TRANSCRIPTOMIC,RANDOM,SINGLE,ILLUMINA,Illumina HiSeq 2500,,SRP075626,,,disGran2.fastq.gz,fastq,2108649213.0,41346063.0,disGran2.fastq.gz,0:51,A:606624392;C:457029369;G:459017347;T:585961261;N:16844,51,,,,606624392,457029369,459017347,585961261,16844,SRX1797265,SRS1465185,SRA429032,Duke University|Molecular Genetics & Microbiology,Duke University,1,0.88259,,0.10405,,0.74282,,0.536,,51,,B,,usable mapping rate,illumina,hiseq_era,unknown,random_priming,unknown,bulk,unknown,unknown,,United States,2017-06-24,Adult,Adult,Blood,Hematopoietic System
41043,SRR3581315,SRX1797076,SRS1465045,SRP075626,PRJNA322629,Mycobacterial infection of adult zebrafish,PRJNA322629,Other,RNA seq based profiling of Mycobacterium marinum granulomas from adult zebrafish and matched macrophage samples.,,,,D rerio dissected M marinum granuloma1,disGran1,,breed:*AB|dev stage:Adult|sex:pooled male and female|tissue:Dissected granuloma|BioSampleModel:Model organism or animal,,,,,,,,,disGran1,disGran1,disGran1,1,,,RNA-Seq,TRANSCRIPTOMIC,RANDOM,SINGLE,ILLUMINA,Illumina HiSeq 2500,,SRP075626,,,disGran1.fastq.gz,fastq,2529627234.0,49600534.0,disGran1.fastq.gz,0:51,A:738849065;C:530442613;G:521673896;T:738641232;N:20428,51,,,,738849065,530442613,521673896,738641232,20428,SRX1797076,SRS1465045,SRA428910,Duke University|Molecular Genetics & Microbiology,Duke University,1,0.81713,,0.09754,,0.75213,,0.51283,,51,,B,,usable mapping rate,illumina,hiseq_era,unknown,random_priming,unknown,bulk,unknown,unknown,,United States,2017-07-24,Adult,Adult,Blood,Hematopoietic System
44935,SRR6308293,SRX3408679,SRS2701475,SRP125291,PRJNA419036,Danio rerio strain:ASWT Transcriptome or Gene expression,PRJNA419036,Other,A genome wide map of circular RNA in adult zebrafish.,,,,Zf blood,Zf blood,,strain:ASWT|age:1year|sex:male|tissue:Blood|BioSampleModel:Model organism or animal,,,,,,,,,A genome wide map of circular RNA in adult zebrafish,Zf blood,Zf blood,Tissue were isolated from adult zebrafish anaesthetized using 0.004% Tricaine Sigma USA. Extreme care was taken to avoid contamination to obtain pure homogenous tissue samples. The tissues were repeatedly washed in PBS to remove contaminating debris. The tissue samples were homogenized in Trizol for cell lysis Invitrogen USA. RNA was isolated from the homogenized tissue samples using RNeasy kit Qiagen USA. Sample preparation for sequencing was carried out using Truseq stranded RNA sample preparation kit Illumina USA as per supplier's instructions. In order to remove the ribosomal RNA rRNA one microgram of total RNA was hybridised with Ribo zero gold rRNA removal probe. Upon removing rRNA the samples were processed for fragmentation in the presence of ionic cations at 37 degree Celcius. First stranded complementary DNA cDNA was prepared by random hexamers and superscript II reverse transcriptase Invitrogen USA in presence of Actinomycin D to facilitate RNA dependent synthesis for improving strand specificity. The second strand was synthesised with second strand cDNA mix containing dUTP instead of dTTP and subjected to A base addition followed by adapter ligation. Final libraries were prepared by amplifying adapter ligated double strand cDNA. Clusters were generated on Hiseq flow cell v3 Illumina in cBot according to standard protocol Illumina USA.,,,RNA-Seq,TRANSCRIPTOMIC,RANDOM PCR,PAIRED,ILLUMINA,Illumina HiSeq 2500,,SRP125291,,,Zf_blood_R1.fastq Zf_blood_R2.fastq,fastq fastq,3815054252.0,20461146.0,Zf blood R1.fastq,0:97.58 1:88.87,A:1003195592;C:903122443;G:887002461;T:1021496839;N:236917,97,88,,,1003195592,903122443,887002461,1021496839,236917,SRX3408679,SRS2701475,SRA631861,CSIR-Institute of Genomics and Integrative Biology|Genomic Medicine,CSIR-Institute of Genomics and Integrative Biology,2,0.88344,0.89187,0.31874,0.32265,0.75398,0.75706,0.6181,0.61725,100,54,B,B,biological fallback assumption,illumina,hiseq_era,unknown,random_priming,ribozero,bulk,unknown,unknown,,India,2017-11-20,Adult,Adult,Blood,Hematopoietic System
49188,SRR7785379,SRX4640375,SRS3738589,SRP159583,PRJNA489308,Over expression of EVI 1 oncogene regulate multi pathway to affect zebrafish embryogenesis and hemopoiesis,PRJNA489308,Other,Our group established Tg Tol GFP EVI 1 zebrafish line and detected survival rate and developmental abnormality in injected embryos. And we found Tg Tol GFP EVI 1 zebrafish embryos underwent abnormal hematopoiesis and aberrant expression of human EVI 1 perturbs hematopoiesis to promote myeloid myeloid and suppress erythroid lineage fates. Moreover overexpression of human EVI 1 induced immature hematopoietic cells emerged in blood circulation. We used whole genome transcriptome analysis RNA Seq to determine differential gene expression in peripheral blood between wildtype larvae and EVI 1 transgenic zebrafish larvae.,,,,,H67,,breed:AB strain|age:3 month|sex:male|tissue:Peripheral blood|genotype:wild type|replicate:replicate2|BioSampleModel:Model organism or animal,,,,,,,,,H67,H67,H67,Wild type zebrafish control 2,,,RNA-Seq,TRANSCRIPTOMIC,cDNA,PAIRED,ILLUMINA,Illumina HiSeq 2500,,SRP159583,,,H67_S2_L001_R2_001.fastq.gz H67_S2_L001_R1_001.fastq.gz,fastq fastq,18477819300.0,61592731.0,H67 S2 L001 R2 001.fastq.gz,0:150 1:150,A:4887782016;C:4375793599;G:4438933003;T:4775205744;N:104938,150,150,,,4887782016,4375793599,4438933003,4775205744,104938,SRX4640375,SRS3738589,SRA766519,"Department of Haematology, Ren Ji Hospital, School of Medicine, Shanghai Jiao Tong University|Department: Department of Haematology","Department of Haematology, Ren Ji Hospital, School of Medicine, Shanghai Jiao Tong University",2,0.93322,0.93319,0.06946,0.06963,0.6747,0.68083,0.47183,0.47148,150,150,B,B,biological fallback assumption,illumina,hiseq_era,full_length,random_priming,unknown,bulk,unknown,unknown,,China,2019-09-20,Adult,Adult,Blood,Hematopoietic System
49189,SRR7785380,SRX4640374,SRS3738594,SRP159583,PRJNA489308,Over expression of EVI 1 oncogene regulate multi pathway to affect zebrafish embryogenesis and hemopoiesis,PRJNA489308,Other,Our group established Tg Tol GFP EVI 1 zebrafish line and detected survival rate and developmental abnormality in injected embryos. And we found Tg Tol GFP EVI 1 zebrafish embryos underwent abnormal hematopoiesis and aberrant expression of human EVI 1 perturbs hematopoiesis to promote myeloid myeloid and suppress erythroid lineage fates. Moreover overexpression of human EVI 1 induced immature hematopoietic cells emerged in blood circulation. We used whole genome transcriptome analysis RNA Seq to determine differential gene expression in peripheral blood between wildtype larvae and EVI 1 transgenic zebrafish larvae.,,,,,H66,,breed:AB strain|age:3 month|sex:male|tissue:Peripheral blood|genotype:wild type|replicate:replicate1|BioSampleModel:Model organism or animal,,,,,,,,,H66,H66,H66,Wild type zebrafish control 1,,,RNA-Seq,TRANSCRIPTOMIC,cDNA,PAIRED,ILLUMINA,Illumina HiSeq 2500,,SRP159583,,,H66_S1_L001_R2_001.fastq.gz H66_S1_L001_R1_001.fastq.gz,fastq fastq,20487126300.0,68290421.0,H66 S1 L001 R2 001.fastq.gz,0:150 1:150,A:5445452582;C:4824876569;G:4904146081;T:5312533433;N:117635,150,150,,,5445452582,4824876569,4904146081,5312533433,117635,SRX4640374,SRS3738594,SRA766519,"Department of Haematology, Ren Ji Hospital, School of Medicine, Shanghai Jiao Tong University|Department: Department of Haematology","Department of Haematology, Ren Ji Hospital, School of Medicine, Shanghai Jiao Tong University",2,0.93306,0.9336,0.08694,0.08764,0.66687,0.6734,0.46489,0.47008,150,150,B,B,biological fallback assumption,illumina,hiseq_era,full_length,random_priming,unknown,bulk,unknown,unknown,,China,2019-09-20,Adult,Adult,Blood,Hematopoietic System
49190,SRR7785381,SRX4640373,SRS3738593,SRP159583,PRJNA489308,Over expression of EVI 1 oncogene regulate multi pathway to affect zebrafish embryogenesis and hemopoiesis,PRJNA489308,Other,Our group established Tg Tol GFP EVI 1 zebrafish line and detected survival rate and developmental abnormality in injected embryos. And we found Tg Tol GFP EVI 1 zebrafish embryos underwent abnormal hematopoiesis and aberrant expression of human EVI 1 perturbs hematopoiesis to promote myeloid myeloid and suppress erythroid lineage fates. Moreover overexpression of human EVI 1 induced immature hematopoietic cells emerged in blood circulation. We used whole genome transcriptome analysis RNA Seq to determine differential gene expression in peripheral blood between wildtype larvae and EVI 1 transgenic zebrafish larvae.,,,,,H124,,breed:AB strain|age:3 month|sex:male|tissue:Peripheral blood|genotype:Tol2 EVI 1 EGFP transgenic|replicate:replicate1|BioSampleModel:Model organism or animal,,,,,,,,,H124,H124,H124,Tol2 EVI 1 EGFP transgenic zebrafish sample 1,,,RNA-Seq,TRANSCRIPTOMIC,cDNA,PAIRED,ILLUMINA,Illumina HiSeq 2500,,SRP159583,,,H124_S1_L001_R1_001.fastq.gz H124_S1_L001_R2_001.fastq.gz,fastq fastq,13178593800.0,43928646.0,H124 S1 L001 R1 001.fastq.gz,0:150 1:150,A:3507220604;C:3103991247;G:3164157369;T:3403051995;N:172585,150,150,,,3507220604,3103991247,3164157369,3403051995,172585,SRX4640373,SRS3738593,SRA766519,"Department of Haematology, Ren Ji Hospital, School of Medicine, Shanghai Jiao Tong University|Department: Department of Haematology","Department of Haematology, Ren Ji Hospital, School of Medicine, Shanghai Jiao Tong University",2,0.94147,0.94277,0.08109,0.08136,0.69483,0.70011,0.47542,0.47593,150,150,B,B,biological fallback assumption,illumina,hiseq_era,full_length,random_priming,unknown,bulk,unknown,unknown,,China,2019-09-20,Adult,Adult,Blood,Hematopoietic System
49191,SRR7785382,SRX4640372,SRS3738592,SRP159583,PRJNA489308,Over expression of EVI 1 oncogene regulate multi pathway to affect zebrafish embryogenesis and hemopoiesis,PRJNA489308,Other,Our group established Tg Tol GFP EVI 1 zebrafish line and detected survival rate and developmental abnormality in injected embryos. And we found Tg Tol GFP EVI 1 zebrafish embryos underwent abnormal hematopoiesis and aberrant expression of human EVI 1 perturbs hematopoiesis to promote myeloid myeloid and suppress erythroid lineage fates. Moreover overexpression of human EVI 1 induced immature hematopoietic cells emerged in blood circulation. We used whole genome transcriptome analysis RNA Seq to determine differential gene expression in peripheral blood between wildtype larvae and EVI 1 transgenic zebrafish larvae.,,,,,H93,,breed:AB strain|age:3 month|sex:male|tissue:Peripheral blood|genotype:wild type|replicate:replicate3|BioSampleModel:Model organism or animal,,,,,,,,,H93,H93,H93,Wild type zebrafish control 3,,,RNA-Seq,TRANSCRIPTOMIC,cDNA,PAIRED,ILLUMINA,Illumina HiSeq 2500,,SRP159583,,,H93_S3_L001_R1_001.fastq.gz H93_S3_L001_R2_001.fastq.gz,fastq fastq,18197379600.0,60657932.0,H93 S3 L001 R1 001.fastq.gz,0:150 1:150,A:4814246240;C:4308418881;G:4375398316;T:4699211054;N:105109,150,150,,,4814246240,4308418881,4375398316,4699211054,105109,SRX4640372,SRS3738592,SRA766519,"Department of Haematology, Ren Ji Hospital, School of Medicine, Shanghai Jiao Tong University|Department: Department of Haematology","Department of Haematology, Ren Ji Hospital, School of Medicine, Shanghai Jiao Tong University",2,0.9312,0.93173,0.07454,0.07498,0.67065,0.6773,0.46807,0.47334,150,150,B,B,biological fallback assumption,illumina,hiseq_era,full_length,random_priming,unknown,bulk,unknown,unknown,,China,2019-09-20,Adult,Adult,Blood,Hematopoietic System
49192,SRR7785383,SRX4640371,SRS3738590,SRP159583,PRJNA489308,Over expression of EVI 1 oncogene regulate multi pathway to affect zebrafish embryogenesis and hemopoiesis,PRJNA489308,Other,Our group established Tg Tol GFP EVI 1 zebrafish line and detected survival rate and developmental abnormality in injected embryos. And we found Tg Tol GFP EVI 1 zebrafish embryos underwent abnormal hematopoiesis and aberrant expression of human EVI 1 perturbs hematopoiesis to promote myeloid myeloid and suppress erythroid lineage fates. Moreover overexpression of human EVI 1 induced immature hematopoietic cells emerged in blood circulation. We used whole genome transcriptome analysis RNA Seq to determine differential gene expression in peripheral blood between wildtype larvae and EVI 1 transgenic zebrafish larvae.,,,,,H126,,breed:AB strain|age:3 month|sex:male|tissue:Peripheral blood|genotype:Tol2 EVI 1 EGFP transgenic|replicate:replicate3|BioSampleModel:Model organism or animal,,,,,,,,,H126,H126,H126,Tol2 EVI 1 EGFP transgenic zebrafish sample 3,,,RNA-Seq,TRANSCRIPTOMIC,cDNA,PAIRED,ILLUMINA,Illumina HiSeq 2500,,SRP159583,,,H126_S3_L001_R1_001.fastq.gz H126_S3_L001_R2_001.fastq.gz,fastq fastq,14979601800.0,49932006.0,H126 S3 L001 R2 001.fastq.gz,0:150 1:150,A:3961375940;C:3551410264;G:3640700651;T:3825918931;N:196014,150,150,,,3961375940,3551410264,3640700651,3825918931,196014,SRX4640371,SRS3738590,SRA766519,"Department of Haematology, Ren Ji Hospital, School of Medicine, Shanghai Jiao Tong University|Department: Department of Haematology","Department of Haematology, Ren Ji Hospital, School of Medicine, Shanghai Jiao Tong University",2,0.93717,0.93908,0.05823,0.05891,0.70552,0.71256,0.46146,0.45779,150,150,B,B,biological fallback assumption,illumina,hiseq_era,full_length,random_priming,unknown,bulk,unknown,unknown,,China,2019-09-20,Adult,Adult,Blood,Hematopoietic System
49193,SRR7785384,SRX4640370,SRS3738588,SRP159583,PRJNA489308,Over expression of EVI 1 oncogene regulate multi pathway to affect zebrafish embryogenesis and hemopoiesis,PRJNA489308,Other,Our group established Tg Tol GFP EVI 1 zebrafish line and detected survival rate and developmental abnormality in injected embryos. And we found Tg Tol GFP EVI 1 zebrafish embryos underwent abnormal hematopoiesis and aberrant expression of human EVI 1 perturbs hematopoiesis to promote myeloid myeloid and suppress erythroid lineage fates. Moreover overexpression of human EVI 1 induced immature hematopoietic cells emerged in blood circulation. We used whole genome transcriptome analysis RNA Seq to determine differential gene expression in peripheral blood between wildtype larvae and EVI 1 transgenic zebrafish larvae.,,,,,H125,,breed:AB strain|age:3 month|sex:male|tissue:Peripheral blood|genotype:Tol2 EVI 1 EGFP transgenic|replicate:replicate2|BioSampleModel:Model organism or animal,,,,,,,,,H125,H125,H125,Tol2 EVI 1 EGFP transgenic zebrafish sample 2,,,RNA-Seq,TRANSCRIPTOMIC,cDNA,PAIRED,ILLUMINA,Illumina HiSeq 2500,,SRP159583,,,H125_S2_L001_R1_001.fastq.gz H125_S2_L001_R2_001.fastq.gz,fastq fastq,16012998000.0,53376660.0,H125 S2 L001 R1 001.fastq.gz,0:150 1:150,A:4365269809;C:3662731840;G:3768367416;T:4216409682;N:219253,150,150,,,4365269809,3662731840,3768367416,4216409682,219253,SRX4640370,SRS3738588,SRA766519,"Department of Haematology, Ren Ji Hospital, School of Medicine, Shanghai Jiao Tong University|Department: Department of Haematology","Department of Haematology, Ren Ji Hospital, School of Medicine, Shanghai Jiao Tong University",2,0.9402,0.94198,0.09449,0.09528,0.71999,0.72512,0.46106,0.47624,150,150,B,B,biological fallback assumption,illumina,hiseq_era,full_length,random_priming,unknown,bulk,unknown,unknown,,China,2018-09-04,Adult,Adult,Blood,Hematopoietic System
51876,SRR8922974,SRX5704273,SRS4643334,SRP192854,PRJNA533283,RNA seq of erythroid cells from 24 hpf sf3b1 mutant and sibling zebrafish,GSE129952,Transcriptome Analysis,The purpose of the experiment was to define the gene expression and splicing alterations occurring when the levels of the splicing factor Sf3b1 are lowered in embryonic zebrafish. Results provide insight the role of Sf3b1 in erythropoietic development. Overall design: mRNA profiling of gata1 positive erythroid cells isolated from 24 hpf sf3b1 mutant and sibling zebrafish using Illumina NextSeq500. Five samples were sequenced for each.,,,,erythroid cells: WT6,GSM3728533,,tissue:erythroid cells|age:24 hpf type:gata1 positive erythroid cells|genotype/variation:wild type,erythroid cells: WT6,basecalling was done with the Picard module IlluminaBasecallsToFastq Reads were trimmed using TRIM GALORE software to check for quality of 150bp reads. These paired end reads were mapped using STAR aligner version 2.4.2a to the reference genome. Differential expression analysis was done using DESeq220 and EdgeR21 Bioconductor packages. To calculate FPKM Cufflinks version 2.2.1 was used. Genome build: GRcz10 Supplementary files format and content: tab delimited text file includeS FPKM values for each Sample,erythroid cells,,Gata1 positive cells were isolated from zebrafish embryos. RNA was extracted with the quick RNA microprep Zymo. Ribosomal RNA was depleted with Ribogone Clontech. Libraries were made following the protocol and using the reagents from the SMARTer Stranded RNA Seq Kit Clontech.,,age:24 hpf type:gata1 positive erythroid cells|genotype/variation:wild type,GSM3728533,GSM3728533: erythroid cells: WT6; Danio rerio; RNA Seq,GSM3728533,,1,Gata1 positive cells were isolated from zebrafish embryos. RNA was extracted with the quick RNA microprep Zymo. Ribosomal RNA was depleted with Ribogone Clontech. Libraries were made following the protocol and using the reagents from the SMARTer Stranded RNA Seq Kit Clontech.,GEO Accession:GSM3728533,RNA-Seq,TRANSCRIPTOMIC,cDNA,PAIRED,ILLUMINA,NextSeq 500,,SRP192854,,,J633_AHFHNLBGX2_TAGCTT_LWT6.1_val_1.fq.gz J633_AHFHNLBGX2_TAGCTT_LWT6.2_val_2.fq.gz,fastq fastq,8611605345.0,32335443.0,GSM3728533 r1,0:133.59 1:132.74,A:1724489451;C:2542199793;G:2626828499;T:1716562999;N:1524603,133,132,,,1724489451,2542199793,2626828499,1716562999,1524603,SRX5704273,SRS4643334,SRA875634,GEO,Albert Einstein College of Medicine,2,0.91241,0.96131,0.10384,0.10826,0.77761,0.7767,0.69985,0.69519,128,128,B,B,biological fallback assumption,illumina,nextseq,full_length,rrna_depletion,smarter,bulk,unknown,unknown,,United States,2019-04-17,Pharyngula,Embryo,Blood,Hematopoietic System
51877,SRR8922973,SRX5704272,SRS4643333,SRP192854,PRJNA533283,RNA seq of erythroid cells from 24 hpf sf3b1 mutant and sibling zebrafish,GSE129952,Transcriptome Analysis,The purpose of the experiment was to define the gene expression and splicing alterations occurring when the levels of the splicing factor Sf3b1 are lowered in embryonic zebrafish. Results provide insight the role of Sf3b1 in erythropoietic development. Overall design: mRNA profiling of gata1 positive erythroid cells isolated from 24 hpf sf3b1 mutant and sibling zebrafish using Illumina NextSeq500. Five samples were sequenced for each.,,,,erythroid cells: WT5,GSM3728532,,tissue:erythroid cells|age:24 hpf type:gata1 positive erythroid cells|genotype/variation:wild type,erythroid cells: WT5,basecalling was done with the Picard module IlluminaBasecallsToFastq Reads were trimmed using TRIM GALORE software to check for quality of 150bp reads. These paired end reads were mapped using STAR aligner version 2.4.2a to the reference genome. Differential expression analysis was done using DESeq220 and EdgeR21 Bioconductor packages. To calculate FPKM Cufflinks version 2.2.1 was used. Genome build: GRcz10 Supplementary files format and content: tab delimited text file includeS FPKM values for each Sample,erythroid cells,,Gata1 positive cells were isolated from zebrafish embryos. RNA was extracted with the quick RNA microprep Zymo. Ribosomal RNA was depleted with Ribogone Clontech. Libraries were made following the protocol and using the reagents from the SMARTer Stranded RNA Seq Kit Clontech.,,age:24 hpf type:gata1 positive erythroid cells|genotype/variation:wild type,GSM3728532,GSM3728532: erythroid cells: WT5; Danio rerio; RNA Seq,GSM3728532,,1,Gata1 positive cells were isolated from zebrafish embryos. RNA was extracted with the quick RNA microprep Zymo. Ribosomal RNA was depleted with Ribogone Clontech. Libraries were made following the protocol and using the reagents from the SMARTer Stranded RNA Seq Kit Clontech.,GEO Accession:GSM3728532,RNA-Seq,TRANSCRIPTOMIC,cDNA,PAIRED,ILLUMINA,NextSeq 500,,SRP192854,,,J633_AHFHNLBGX2_TGACCA_LWT5.1_val_1.fq.gz J633_AHFHNLBGX2_TGACCA_LWT5.2_val_2.fq.gz,fastq fastq,8110446942.0,28906836.0,GSM3728532 r1,0:140.70 1:139.87,A:1479901358;C:2533764326;G:2613647627;T:1481710129;N:1423502,140,139,,,1479901358,2533764326,2613647627,1481710129,1423502,SRX5704272,SRS4643333,SRA875634,GEO,Albert Einstein College of Medicine,2,0.92578,0.97511,0.09182,0.09201,0.80503,0.80324,0.76985,0.7675,150,150,B,B,biological fallback assumption,illumina,nextseq,full_length,rrna_depletion,smarter,bulk,unknown,unknown,,United States,2019-04-17,Pharyngula,Embryo,Blood,Hematopoietic System
51878,SRR8922972,SRX5704271,SRS4643332,SRP192854,PRJNA533283,RNA seq of erythroid cells from 24 hpf sf3b1 mutant and sibling zebrafish,GSE129952,Transcriptome Analysis,The purpose of the experiment was to define the gene expression and splicing alterations occurring when the levels of the splicing factor Sf3b1 are lowered in embryonic zebrafish. Results provide insight the role of Sf3b1 in erythropoietic development. Overall design: mRNA profiling of gata1 positive erythroid cells isolated from 24 hpf sf3b1 mutant and sibling zebrafish using Illumina NextSeq500. Five samples were sequenced for each.,,,,erythroid cells: WT4,GSM3728531,,tissue:erythroid cells|age:24 hpf type:gata1 positive erythroid cells|genotype/variation:wild type,erythroid cells: WT4,basecalling was done with the Picard module IlluminaBasecallsToFastq Reads were trimmed using TRIM GALORE software to check for quality of 150bp reads. These paired end reads were mapped using STAR aligner version 2.4.2a to the reference genome. Differential expression analysis was done using DESeq220 and EdgeR21 Bioconductor packages. To calculate FPKM Cufflinks version 2.2.1 was used. Genome build: GRcz10 Supplementary files format and content: tab delimited text file includeS FPKM values for each Sample,erythroid cells,,Gata1 positive cells were isolated from zebrafish embryos. RNA was extracted with the quick RNA microprep Zymo. Ribosomal RNA was depleted with Ribogone Clontech. Libraries were made following the protocol and using the reagents from the SMARTer Stranded RNA Seq Kit Clontech.,,age:24 hpf type:gata1 positive erythroid cells|genotype/variation:wild type,GSM3728531,GSM3728531: erythroid cells: WT4; Danio rerio; RNA Seq,GSM3728531,,1,Gata1 positive cells were isolated from zebrafish embryos. RNA was extracted with the quick RNA microprep Zymo. Ribosomal RNA was depleted with Ribogone Clontech. Libraries were made following the protocol and using the reagents from the SMARTer Stranded RNA Seq Kit Clontech.,GEO Accession:GSM3728531,RNA-Seq,TRANSCRIPTOMIC,cDNA,PAIRED,ILLUMINA,NextSeq 500,,SRP192854,,,J633_AHFHNLBGX2_TTAGGC_LWT4.2_val_2.fq.gz J633_AHFHNLBGX2_TTAGGC_LWT4.1_val_1.fq.gz,fastq fastq,8627466135.0,32957109.0,GSM3728531 r1,0:131.12 1:130.66,A:1686521982;C:2592728511;G:2670950174;T:1675745501;N:1519967,131,130,,,1686521982,2592728511,2670950174,1675745501,1519967,SRX5704271,SRS4643332,SRA875634,GEO,Albert Einstein College of Medicine,2,0.91773,0.96731,0.11151,0.1134,0.78792,0.78597,0.73657,0.73692,104,104,B,B,biological fallback assumption,illumina,nextseq,full_length,rrna_depletion,smarter,bulk,unknown,unknown,,United States,2019-04-17,Pharyngula,Embryo,Blood,Hematopoietic System
51879,SRR8922971,SRX5704270,SRS4643331,SRP192854,PRJNA533283,RNA seq of erythroid cells from 24 hpf sf3b1 mutant and sibling zebrafish,GSE129952,Transcriptome Analysis,The purpose of the experiment was to define the gene expression and splicing alterations occurring when the levels of the splicing factor Sf3b1 are lowered in embryonic zebrafish. Results provide insight the role of Sf3b1 in erythropoietic development. Overall design: mRNA profiling of gata1 positive erythroid cells isolated from 24 hpf sf3b1 mutant and sibling zebrafish using Illumina NextSeq500. Five samples were sequenced for each.,,,,erythroid cells: WT3,GSM3728530,,tissue:erythroid cells|age:24 hpf type:gata1 positive erythroid cells|genotype/variation:wild type,erythroid cells: WT3,basecalling was done with the Picard module IlluminaBasecallsToFastq Reads were trimmed using TRIM GALORE software to check for quality of 150bp reads. These paired end reads were mapped using STAR aligner version 2.4.2a to the reference genome. Differential expression analysis was done using DESeq220 and EdgeR21 Bioconductor packages. To calculate FPKM Cufflinks version 2.2.1 was used. Genome build: GRcz10 Supplementary files format and content: tab delimited text file includeS FPKM values for each Sample,erythroid cells,,Gata1 positive cells were isolated from zebrafish embryos. RNA was extracted with the quick RNA microprep Zymo. Ribosomal RNA was depleted with Ribogone Clontech. Libraries were made following the protocol and using the reagents from the SMARTer Stranded RNA Seq Kit Clontech.,,age:24 hpf type:gata1 positive erythroid cells|genotype/variation:wild type,GSM3728530,GSM3728530: erythroid cells: WT3; Danio rerio; RNA Seq,GSM3728530,,1,Gata1 positive cells were isolated from zebrafish embryos. RNA was extracted with the quick RNA microprep Zymo. Ribosomal RNA was depleted with Ribogone Clontech. Libraries were made following the protocol and using the reagents from the SMARTer Stranded RNA Seq Kit Clontech.,GEO Accession:GSM3728530,RNA-Seq,TRANSCRIPTOMIC,cDNA,PAIRED,ILLUMINA,NextSeq 500,,SRP192854,,,J633_AHFHNLBGX2_CGATGT_LWT3.2_val_2.fq.gz J633_AHFHNLBGX2_CGATGT_LWT3.1_val_1.fq.gz,fastq fastq,7675701402.0,28099783.0,GSM3728530 r1,0:136.90 1:136.26,A:1496106079;C:2307580110;G:2386093773;T:1484556287;N:1365153,136,136,,,1496106079,2307580110,2386093773,1484556287,1365153,SRX5704270,SRS4643331,SRA875634,GEO,Albert Einstein College of Medicine,2,0.91833,0.96754,0.10771,0.10822,0.80135,0.80158,0.76757,0.7524,150,150,B,B,biological fallback assumption,illumina,nextseq,full_length,rrna_depletion,smarter,bulk,unknown,unknown,,United States,2019-04-17,Pharyngula,Embryo,Blood,Hematopoietic System
51880,SRR8922970,SRX5704269,SRS4643330,SRP192854,PRJNA533283,RNA seq of erythroid cells from 24 hpf sf3b1 mutant and sibling zebrafish,GSE129952,Transcriptome Analysis,The purpose of the experiment was to define the gene expression and splicing alterations occurring when the levels of the splicing factor Sf3b1 are lowered in embryonic zebrafish. Results provide insight the role of Sf3b1 in erythropoietic development. Overall design: mRNA profiling of gata1 positive erythroid cells isolated from 24 hpf sf3b1 mutant and sibling zebrafish using Illumina NextSeq500. Five samples were sequenced for each.,,,,erythroid cells: WT2,GSM3728529,,tissue:erythroid cells|age:24 hpf type:gata1 positive erythroid cells|genotype/variation:sf3b1 mutant,erythroid cells: WT2,basecalling was done with the Picard module IlluminaBasecallsToFastq Reads were trimmed using TRIM GALORE software to check for quality of 150bp reads. These paired end reads were mapped using STAR aligner version 2.4.2a to the reference genome. Differential expression analysis was done using DESeq220 and EdgeR21 Bioconductor packages. To calculate FPKM Cufflinks version 2.2.1 was used. Genome build: GRcz10 Supplementary files format and content: tab delimited text file includeS FPKM values for each Sample,erythroid cells,,Gata1 positive cells were isolated from zebrafish embryos. RNA was extracted with the quick RNA microprep Zymo. Ribosomal RNA was depleted with Ribogone Clontech. Libraries were made following the protocol and using the reagents from the SMARTer Stranded RNA Seq Kit Clontech.,,age:24 hpf type:gata1 positive erythroid cells|genotype/variation:sf3b1 mutant,GSM3728529,GSM3728529: erythroid cells: WT2; Danio rerio; RNA Seq,GSM3728529,,1,Gata1 positive cells were isolated from zebrafish embryos. RNA was extracted with the quick RNA microprep Zymo. Ribosomal RNA was depleted with Ribogone Clontech. Libraries were made following the protocol and using the reagents from the SMARTer Stranded RNA Seq Kit Clontech.,GEO Accession:GSM3728529,RNA-Seq,TRANSCRIPTOMIC,cDNA,PAIRED,ILLUMINA,NextSeq 500,,SRP192854,,,J633_AHFHNLBGX2_ATCACG_LWT2.2_val_2.fq.gz J633_AHFHNLBGX2_ATCACG_LWT2.1_val_1.fq.gz,fastq fastq,8749226933.0,32236600.0,GSM3728529 r1,0:135.97 1:135.43,A:1818348438;C:2523018672;G:2595068272;T:1811215171;N:1576380,135,135,,,1818348438,2523018672,2595068272,1811215171,1576380,SRX5704269,SRS4643330,SRA875634,GEO,Albert Einstein College of Medicine,2,0.91533,0.96543,0.12825,0.13005,0.77394,0.77344,0.70772,0.67993,143,143,B,B,biological fallback assumption,illumina,nextseq,full_length,rrna_depletion,smarter,bulk,unknown,unknown,,United States,2019-04-17,Pharyngula,Embryo,Blood,Hematopoietic System
51881,SRR8922969,SRX5704268,SRS4643329,SRP192854,PRJNA533283,RNA seq of erythroid cells from 24 hpf sf3b1 mutant and sibling zebrafish,GSE129952,Transcriptome Analysis,The purpose of the experiment was to define the gene expression and splicing alterations occurring when the levels of the splicing factor Sf3b1 are lowered in embryonic zebrafish. Results provide insight the role of Sf3b1 in erythropoietic development. Overall design: mRNA profiling of gata1 positive erythroid cells isolated from 24 hpf sf3b1 mutant and sibling zebrafish using Illumina NextSeq500. Five samples were sequenced for each.,,,,erythroid cells: Mut6,GSM3728528,,tissue:erythroid cells|age:24 hpf type:gata1 positive erythroid cells|genotype/variation:sf3b1 mutant,erythroid cells: Mut6,basecalling was done with the Picard module IlluminaBasecallsToFastq Reads were trimmed using TRIM GALORE software to check for quality of 150bp reads. These paired end reads were mapped using STAR aligner version 2.4.2a to the reference genome. Differential expression analysis was done using DESeq220 and EdgeR21 Bioconductor packages. To calculate FPKM Cufflinks version 2.2.1 was used. Genome build: GRcz10 Supplementary files format and content: tab delimited text file includeS FPKM values for each Sample,erythroid cells,,Gata1 positive cells were isolated from zebrafish embryos. RNA was extracted with the quick RNA microprep Zymo. Ribosomal RNA was depleted with Ribogone Clontech. Libraries were made following the protocol and using the reagents from the SMARTer Stranded RNA Seq Kit Clontech.,,age:24 hpf type:gata1 positive erythroid cells|genotype/variation:sf3b1 mutant,GSM3728528,GSM3728528: erythroid cells: Mut6; Danio rerio; RNA Seq,GSM3728528,,1,Gata1 positive cells were isolated from zebrafish embryos. RNA was extracted with the quick RNA microprep Zymo. Ribosomal RNA was depleted with Ribogone Clontech. Libraries were made following the protocol and using the reagents from the SMARTer Stranded RNA Seq Kit Clontech.,GEO Accession:GSM3728528,RNA-Seq,TRANSCRIPTOMIC,cDNA,PAIRED,ILLUMINA,NextSeq 500,,SRP192854,,,J633_AHFHNLBGX2_GGCTAC_LMut6.2_val_2.fq.gz J633_AHFHNLBGX2_GGCTAC_LMut6.1_val_1.fq.gz,fastq fastq,7989745578.0,29813232.0,GSM3728528 r1,0:134.59 1:133.41,A:1487912329;C:2465671654;G:2552013900;T:1482837472;N:1310223,134,133,,,1487912329,2465671654,2552013900,1482837472,1310223,SRX5704268,SRS4643329,SRA875634,GEO,Albert Einstein College of Medicine,2,0.91636,0.96506,0.12513,0.13214,0.80255,0.80277,0.77309,0.77779,106,106,B,B,biological fallback assumption,illumina,nextseq,full_length,rrna_depletion,smarter,bulk,unknown,unknown,,United States,2019-04-17,Pharyngula,Embryo,Blood,Hematopoietic System
51882,SRR8922968,SRX5704267,SRS4643327,SRP192854,PRJNA533283,RNA seq of erythroid cells from 24 hpf sf3b1 mutant and sibling zebrafish,GSE129952,Transcriptome Analysis,The purpose of the experiment was to define the gene expression and splicing alterations occurring when the levels of the splicing factor Sf3b1 are lowered in embryonic zebrafish. Results provide insight the role of Sf3b1 in erythropoietic development. Overall design: mRNA profiling of gata1 positive erythroid cells isolated from 24 hpf sf3b1 mutant and sibling zebrafish using Illumina NextSeq500. Five samples were sequenced for each.,,,,erythroid cells: Mut5,GSM3728527,,tissue:erythroid cells|age:24 hpf type:gata1 positive erythroid cells|genotype/variation:sf3b1 mutant,erythroid cells: Mut5,basecalling was done with the Picard module IlluminaBasecallsToFastq Reads were trimmed using TRIM GALORE software to check for quality of 150bp reads. These paired end reads were mapped using STAR aligner version 2.4.2a to the reference genome. Differential expression analysis was done using DESeq220 and EdgeR21 Bioconductor packages. To calculate FPKM Cufflinks version 2.2.1 was used. Genome build: GRcz10 Supplementary files format and content: tab delimited text file includeS FPKM values for each Sample,erythroid cells,,Gata1 positive cells were isolated from zebrafish embryos. RNA was extracted with the quick RNA microprep Zymo. Ribosomal RNA was depleted with Ribogone Clontech. Libraries were made following the protocol and using the reagents from the SMARTer Stranded RNA Seq Kit Clontech.,,age:24 hpf type:gata1 positive erythroid cells|genotype/variation:sf3b1 mutant,GSM3728527,GSM3728527: erythroid cells: Mut5; Danio rerio; RNA Seq,GSM3728527,,1,Gata1 positive cells were isolated from zebrafish embryos. RNA was extracted with the quick RNA microprep Zymo. Ribosomal RNA was depleted with Ribogone Clontech. Libraries were made following the protocol and using the reagents from the SMARTer Stranded RNA Seq Kit Clontech.,GEO Accession:GSM3728527,RNA-Seq,TRANSCRIPTOMIC,cDNA,PAIRED,ILLUMINA,NextSeq 500,,SRP192854,,,J633_AHFHNLBGX2_GATCAG_LMut5.2_val_2.fq.gz J633_AHFHNLBGX2_GATCAG_LMut5.1_val_1.fq.gz,fastq fastq,8500296799.0,30812271.0,GSM3728527 r1,0:138.28 1:137.59,A:1566669253;C:2640866820;G:2726747970;T:1564531299;N:1481457,138,137,,,1566669253,2640866820,2726747970,1564531299,1481457,SRX5704267,SRS4643327,SRA875634,GEO,Albert Einstein College of Medicine,2,0.91987,0.9688,0.10388,0.10646,0.80338,0.80176,0.75914,0.71799,52,52,B,B,biological fallback assumption,illumina,nextseq,full_length,rrna_depletion,smarter,bulk,unknown,unknown,,United States,2019-04-17,Pharyngula,Embryo,Blood,Hematopoietic System
51883,SRR8922967,SRX5704266,SRS4643328,SRP192854,PRJNA533283,RNA seq of erythroid cells from 24 hpf sf3b1 mutant and sibling zebrafish,GSE129952,Transcriptome Analysis,The purpose of the experiment was to define the gene expression and splicing alterations occurring when the levels of the splicing factor Sf3b1 are lowered in embryonic zebrafish. Results provide insight the role of Sf3b1 in erythropoietic development. Overall design: mRNA profiling of gata1 positive erythroid cells isolated from 24 hpf sf3b1 mutant and sibling zebrafish using Illumina NextSeq500. Five samples were sequenced for each.,,,,erythroid cells: Mut4,GSM3728526,,tissue:erythroid cells|age:24 hpf type:gata1 positive erythroid cells|genotype/variation:sf3b1 mutant,erythroid cells: Mut4,basecalling was done with the Picard module IlluminaBasecallsToFastq Reads were trimmed using TRIM GALORE software to check for quality of 150bp reads. These paired end reads were mapped using STAR aligner version 2.4.2a to the reference genome. Differential expression analysis was done using DESeq220 and EdgeR21 Bioconductor packages. To calculate FPKM Cufflinks version 2.2.1 was used. Genome build: GRcz10 Supplementary files format and content: tab delimited text file includeS FPKM values for each Sample,erythroid cells,,Gata1 positive cells were isolated from zebrafish embryos. RNA was extracted with the quick RNA microprep Zymo. Ribosomal RNA was depleted with Ribogone Clontech. Libraries were made following the protocol and using the reagents from the SMARTer Stranded RNA Seq Kit Clontech.,,age:24 hpf type:gata1 positive erythroid cells|genotype/variation:sf3b1 mutant,GSM3728526,GSM3728526: erythroid cells: Mut4; Danio rerio; RNA Seq,GSM3728526,,1,Gata1 positive cells were isolated from zebrafish embryos. RNA was extracted with the quick RNA microprep Zymo. Ribosomal RNA was depleted with Ribogone Clontech. Libraries were made following the protocol and using the reagents from the SMARTer Stranded RNA Seq Kit Clontech.,GEO Accession:GSM3728526,RNA-Seq,TRANSCRIPTOMIC,cDNA,PAIRED,ILLUMINA,NextSeq 500,,SRP192854,,,J633_AHFHNLBGX2_ACTTGA_LMut4.2_val_2.fq.gz J633_AHFHNLBGX2_ACTTGA_LMut4.1_val_1.fq.gz,fastq fastq,8415322795.0,32199684.0,GSM3728526 r1,0:130.80 1:130.55,A:1593557159;C:2583771193;G:2657553064;T:1578891748;N:1549631,130,130,,,1593557159,2583771193,2657553064,1578891748,1549631,SRX5704266,SRS4643328,SRA875634,GEO,Albert Einstein College of Medicine,2,0.92078,0.97122,0.12063,0.12061,0.81994,0.81822,0.76635,0.7826,149,148,B,B,biological fallback assumption,illumina,nextseq,full_length,rrna_depletion,smarter,bulk,unknown,unknown,,United States,2019-04-17,Pharyngula,Embryo,Blood,Hematopoietic System
51884,SRR8922966,SRX5704265,SRS4643326,SRP192854,PRJNA533283,RNA seq of erythroid cells from 24 hpf sf3b1 mutant and sibling zebrafish,GSE129952,Transcriptome Analysis,The purpose of the experiment was to define the gene expression and splicing alterations occurring when the levels of the splicing factor Sf3b1 are lowered in embryonic zebrafish. Results provide insight the role of Sf3b1 in erythropoietic development. Overall design: mRNA profiling of gata1 positive erythroid cells isolated from 24 hpf sf3b1 mutant and sibling zebrafish using Illumina NextSeq500. Five samples were sequenced for each.,,,,erythroid cells: Mut3,GSM3728525,,tissue:erythroid cells|age:24 hpf type:gata1 positive erythroid cells|genotype/variation:sf3b1 mutant,erythroid cells: Mut3,basecalling was done with the Picard module IlluminaBasecallsToFastq Reads were trimmed using TRIM GALORE software to check for quality of 150bp reads. These paired end reads were mapped using STAR aligner version 2.4.2a to the reference genome. Differential expression analysis was done using DESeq220 and EdgeR21 Bioconductor packages. To calculate FPKM Cufflinks version 2.2.1 was used. Genome build: GRcz10 Supplementary files format and content: tab delimited text file includeS FPKM values for each Sample,erythroid cells,,Gata1 positive cells were isolated from zebrafish embryos. RNA was extracted with the quick RNA microprep Zymo. Ribosomal RNA was depleted with Ribogone Clontech. Libraries were made following the protocol and using the reagents from the SMARTer Stranded RNA Seq Kit Clontech.,,age:24 hpf type:gata1 positive erythroid cells|genotype/variation:sf3b1 mutant,GSM3728525,GSM3728525: erythroid cells: Mut3; Danio rerio; RNA Seq,GSM3728525,,1,Gata1 positive cells were isolated from zebrafish embryos. RNA was extracted with the quick RNA microprep Zymo. Ribosomal RNA was depleted with Ribogone Clontech. Libraries were made following the protocol and using the reagents from the SMARTer Stranded RNA Seq Kit Clontech.,GEO Accession:GSM3728525,RNA-Seq,TRANSCRIPTOMIC,cDNA,PAIRED,ILLUMINA,NextSeq 500,,SRP192854,,,J633_AHFHNLBGX2_CAGATC_LMut3.2_val_2.fq.gz J633_AHFHNLBGX2_CAGATC_LMut3.1_val_1.fq.gz,fastq fastq,5373096143.0,19350806.0,GSM3728525 r1,0:139.04 1:138.63,A:990313321;C:1667762750;G:1723819167;T:990236765;N:964140,139,138,,,990313321,1667762750,1723819167,990236765,964140,SRX5704265,SRS4643326,SRA875634,GEO,Albert Einstein College of Medicine,2,0.92305,0.97223,0.10386,0.10158,0.8062,0.80415,0.79641,0.78792,150,149,B,B,biological fallback assumption,illumina,nextseq,full_length,rrna_depletion,smarter,bulk,unknown,unknown,,United States,2019-04-17,Pharyngula,Embryo,Blood,Hematopoietic System