run_metadata
437 rows where experiment.library_selection = "unspecified", experiment.library_source = "TRANSCRIPTOMIC" and experiment.library_strategy = "RNA-Seq"
This data as json, CSV (advanced)
| Link | 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 |
|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|
| 9982 | 9982 | ERR4568390 | ERX4504063 | ERS5050806 | ERP123840 | PRJEB40227 | RNA seq of proximal middle and distal caudal fin tissue of thyroid ablated zebrafish hypothyroid HypoTH and wild type zebrafish euthyroid EuTH | E-MTAB-9528 | Other | The goal of this experiment is to test the hypothesis that hypothyroid zebrafish caudal fin possess proximalized gene expression profile. Transcriptome data was generated for proximal middle and distal adult fin tissue of hypothyroid zebrafish with euthyroid sibling fish as control. | ENA FIRST PUBLIC:2022 04 12|ENA LAST UPDATE:2022 04 12 | Protocols: Intact caudal fin tissue was sampled from sibling adults >18 SL reared under euthyroid or hypothyroid conditions. Each fish was first anesthetized with tricaine MS 222 0.02% w/v in system water and the entire caudal fin was amputated using a razor blade. Proximal middle and distal regions of the fin were sampled immediately post and flash frozen in a dry ice ethanol bath. Three biological replicates each containing five fin regions were collected for both TH backgrounds. RNA was extracted the same day with Zymo Quick RNA Microprep kit R1050 Zymo Research Irvine CA USA. Sample libraries were made with NEBNext Ultra II RNA Library Prep kit | HypoTH Proximal Rep3 | SAMEA7292236 | BOSTON COLLEGE | ENA FIRST PUBLIC:2021 04 11T00:31:24Z|ENA LAST UPDATE:2020 09 04T16:33:06Z|External Id:SAMEA7292236|INSDC center name:BOSTON COLLEGE|INSDC first public:2021 04 11T00:31:24Z|INSDC last update:2020 09 04T16:33:06Z|INSDC status:public|Submitter Id:E MTAB 9528:HypoTH Proximal Rep3|broker name:ArrayExpress|common name:zebrafish|developmental stage:adult|organism part:caudal fin|phenotype:hypothyroid fish|sample name:E MTAB 9528:HypoTH Proximal Rep3|sampling site:proximal portion|scientific name:Danio rerio|strain:Tgtg:nVenus 2a nfnB | Illumina NovaSeq 6000 paired end sequencing; RNA seq of proximal middle and distal caudal fin tissue of thyroid ablated zebrafish hypothyroid HypoTH and wild type zebrafish euthyroid EuTH | E MTAB 9528:HypoTH Proximal Rep3 p | HypoTH Proximal Rep3 p | RNA seq of proximal middle and distal caudal fin tissue of thyroid ablated zebrafish hypothyroid HypoTH and wild type zebrafish euthyroid EuTH | Intact caudal fin tissue was sampled from sibling adults >18 SL reared under euthyroid or hypothyroid conditions. Each fish was first anesthetized with tricaine MS 222 0.02% w/v in system water and the entire caudal fin was amputated using a razor blade. Proximal middle and distal regions of the fin were sampled immediately post and flash frozen in a dry ice ethanol bath. Three biological replicates each containing five fin regions were collected for both TH backgrounds. RNA was extracted the same day with Zymo Quick RNA Microprep kit R1050 Zymo Research Irvine CA USA. Sample libraries were made with NEBNext Ultra II RNA Library Prep kit | Experimental Factor: phenotype:hypothyroid fish|Experimental Factor: sampling site:proximal portion | RNA-Seq | TRANSCRIPTOMIC | unspecified | PAIRED | ILLUMINA | Illumina NovaSeq 6000 | ERP123840 | Illumina NovaSeq 6000 paired end sequencing; RNA seq of proximal middle and distal caudal fin tissue of thyroid ablated zebrafish hypothyroid HypoTH and wild type zebrafish euthyroid EuTH | ENA FIRST PUBLIC:2022 04 12|ENA LAST UPDATE:2022 04 12 | HP3_CRRA200004859-1a_HV532DSXX_L4_1.fq.gz HP3_CRRA200004859-1a_HV532DSXX_L4_2.fq.gz | fastq fastq | 7117020000.0 | 23723400.0 | E MTAB 9528:HP3 CRRA200004859 1a HV532DSXX L4 | 0:150 1:150 | A:1864896771;C:1704008842;G:1704487221;T:1843451594;N:175572 | 150 | 150 | 1864896771 | 1704008842 | 1704487221 | 1843451594 | 175572 | ERX4504063 | ERS5050806 | ERA2831606 | Boston College|European Nucleotide Archive | Boston College|European Nucleotide Archive | 2 | 0.94335 | 0.9433 | 0.08657 | 0.08625 | 0.72498 | 0.72636 | 0.48274 | 0.4859 | 150 | 150 | B | B | biological fallback assumption | illumina | novaseq_era | unknown | unknown | nebnext | bulk | unknown | unknown | United States | 2020-09-04 | Adult | Adult | Multi-tissue | Multi-system | |||||||||||||
| 9983 | 9983 | ERR4568389 | ERX4504062 | ERS5050805 | ERP123840 | PRJEB40227 | RNA seq of proximal middle and distal caudal fin tissue of thyroid ablated zebrafish hypothyroid HypoTH and wild type zebrafish euthyroid EuTH | E-MTAB-9528 | Other | The goal of this experiment is to test the hypothesis that hypothyroid zebrafish caudal fin possess proximalized gene expression profile. Transcriptome data was generated for proximal middle and distal adult fin tissue of hypothyroid zebrafish with euthyroid sibling fish as control. | ENA FIRST PUBLIC:2022 04 12|ENA LAST UPDATE:2022 04 12 | Protocols: Intact caudal fin tissue was sampled from sibling adults >18 SL reared under euthyroid or hypothyroid conditions. Each fish was first anesthetized with tricaine MS 222 0.02% w/v in system water and the entire caudal fin was amputated using a razor blade. Proximal middle and distal regions of the fin were sampled immediately post and flash frozen in a dry ice ethanol bath. Three biological replicates each containing five fin regions were collected for both TH backgrounds. RNA was extracted the same day with Zymo Quick RNA Microprep kit R1050 Zymo Research Irvine CA USA. Sample libraries were made with NEBNext Ultra II RNA Library Prep kit | HypoTH Proximal Rep2 | SAMEA7292235 | BOSTON COLLEGE | ENA FIRST PUBLIC:2021 04 11T00:31:24Z|ENA LAST UPDATE:2020 09 04T16:33:06Z|External Id:SAMEA7292235|INSDC center name:BOSTON COLLEGE|INSDC first public:2021 04 11T00:31:24Z|INSDC last update:2020 09 04T16:33:06Z|INSDC status:public|Submitter Id:E MTAB 9528:HypoTH Proximal Rep2|broker name:ArrayExpress|common name:zebrafish|developmental stage:adult|organism part:caudal fin|phenotype:hypothyroid fish|sample name:E MTAB 9528:HypoTH Proximal Rep2|sampling site:proximal portion|scientific name:Danio rerio|strain:Tgtg:nVenus 2a nfnB | Illumina NovaSeq 6000 paired end sequencing; RNA seq of proximal middle and distal caudal fin tissue of thyroid ablated zebrafish hypothyroid HypoTH and wild type zebrafish euthyroid EuTH | E MTAB 9528:HypoTH Proximal Rep2 p | HypoTH Proximal Rep2 p | RNA seq of proximal middle and distal caudal fin tissue of thyroid ablated zebrafish hypothyroid HypoTH and wild type zebrafish euthyroid EuTH | Intact caudal fin tissue was sampled from sibling adults >18 SL reared under euthyroid or hypothyroid conditions. Each fish was first anesthetized with tricaine MS 222 0.02% w/v in system water and the entire caudal fin was amputated using a razor blade. Proximal middle and distal regions of the fin were sampled immediately post and flash frozen in a dry ice ethanol bath. Three biological replicates each containing five fin regions were collected for both TH backgrounds. RNA was extracted the same day with Zymo Quick RNA Microprep kit R1050 Zymo Research Irvine CA USA. Sample libraries were made with NEBNext Ultra II RNA Library Prep kit | Experimental Factor: phenotype:hypothyroid fish|Experimental Factor: sampling site:proximal portion | RNA-Seq | TRANSCRIPTOMIC | unspecified | PAIRED | ILLUMINA | Illumina NovaSeq 6000 | ERP123840 | Illumina NovaSeq 6000 paired end sequencing; RNA seq of proximal middle and distal caudal fin tissue of thyroid ablated zebrafish hypothyroid HypoTH and wild type zebrafish euthyroid EuTH | ENA FIRST PUBLIC:2022 04 12|ENA LAST UPDATE:2022 04 12 | HP2_CRRA200004858-1a_HV532DSXX_L4_1.fq.gz HP2_CRRA200004858-1a_HV532DSXX_L4_2.fq.gz | fastq fastq | 7810736700.0 | 26035789.0 | E MTAB 9528:HP2 CRRA200004858 1a HV532DSXX L4 | 0:150 1:150 | A:2064202307;C:1840783570;G:1863746983;T:2041812726;N:191114 | 150 | 150 | 2064202307 | 1840783570 | 1863746983 | 2041812726 | 191114 | ERX4504062 | ERS5050805 | ERA2831606 | Boston College|European Nucleotide Archive | Boston College|European Nucleotide Archive | 2 | 0.93642 | 0.93627 | 0.08781 | 0.08757 | 0.72841 | 0.72872 | 0.48431 | 0.48311 | 150 | 150 | B | B | biological fallback assumption | illumina | novaseq_era | unknown | unknown | nebnext | bulk | unknown | unknown | United States | 2020-09-04 | Adult | Adult | Multi-tissue | Multi-system | |||||||||||||
| 9984 | 9984 | ERR4568388 | ERX4504061 | ERS5050804 | ERP123840 | PRJEB40227 | RNA seq of proximal middle and distal caudal fin tissue of thyroid ablated zebrafish hypothyroid HypoTH and wild type zebrafish euthyroid EuTH | E-MTAB-9528 | Other | The goal of this experiment is to test the hypothesis that hypothyroid zebrafish caudal fin possess proximalized gene expression profile. Transcriptome data was generated for proximal middle and distal adult fin tissue of hypothyroid zebrafish with euthyroid sibling fish as control. | ENA FIRST PUBLIC:2022 04 12|ENA LAST UPDATE:2022 04 12 | Protocols: Intact caudal fin tissue was sampled from sibling adults >18 SL reared under euthyroid or hypothyroid conditions. Each fish was first anesthetized with tricaine MS 222 0.02% w/v in system water and the entire caudal fin was amputated using a razor blade. Proximal middle and distal regions of the fin were sampled immediately post and flash frozen in a dry ice ethanol bath. Three biological replicates each containing five fin regions were collected for both TH backgrounds. RNA was extracted the same day with Zymo Quick RNA Microprep kit R1050 Zymo Research Irvine CA USA. Sample libraries were made with NEBNext Ultra II RNA Library Prep kit | HypoTH Proximal Rep1 | SAMEA7292234 | BOSTON COLLEGE | ENA FIRST PUBLIC:2021 04 11T00:31:24Z|ENA LAST UPDATE:2020 09 04T16:33:06Z|External Id:SAMEA7292234|INSDC center name:BOSTON COLLEGE|INSDC first public:2021 04 11T00:31:24Z|INSDC last update:2020 09 04T16:33:06Z|INSDC status:public|Submitter Id:E MTAB 9528:HypoTH Proximal Rep1|broker name:ArrayExpress|common name:zebrafish|developmental stage:adult|organism part:caudal fin|phenotype:hypothyroid fish|sample name:E MTAB 9528:HypoTH Proximal Rep1|sampling site:proximal portion|scientific name:Danio rerio|strain:Tgtg:nVenus 2a nfnB | Illumina NovaSeq 6000 paired end sequencing; RNA seq of proximal middle and distal caudal fin tissue of thyroid ablated zebrafish hypothyroid HypoTH and wild type zebrafish euthyroid EuTH | E MTAB 9528:HypoTH Proximal Rep1 p | HypoTH Proximal Rep1 p | RNA seq of proximal middle and distal caudal fin tissue of thyroid ablated zebrafish hypothyroid HypoTH and wild type zebrafish euthyroid EuTH | Intact caudal fin tissue was sampled from sibling adults >18 SL reared under euthyroid or hypothyroid conditions. Each fish was first anesthetized with tricaine MS 222 0.02% w/v in system water and the entire caudal fin was amputated using a razor blade. Proximal middle and distal regions of the fin were sampled immediately post and flash frozen in a dry ice ethanol bath. Three biological replicates each containing five fin regions were collected for both TH backgrounds. RNA was extracted the same day with Zymo Quick RNA Microprep kit R1050 Zymo Research Irvine CA USA. Sample libraries were made with NEBNext Ultra II RNA Library Prep kit | Experimental Factor: phenotype:hypothyroid fish|Experimental Factor: sampling site:proximal portion | RNA-Seq | TRANSCRIPTOMIC | unspecified | PAIRED | ILLUMINA | Illumina NovaSeq 6000 | ERP123840 | Illumina NovaSeq 6000 paired end sequencing; RNA seq of proximal middle and distal caudal fin tissue of thyroid ablated zebrafish hypothyroid HypoTH and wild type zebrafish euthyroid EuTH | ENA FIRST PUBLIC:2022 04 12|ENA LAST UPDATE:2022 04 12 | HP1_CRRA200004857-1a_HV532DSXX_L4_1.fq.gz HP1_CRRA200004857-1a_HV532DSXX_L4_2.fq.gz | fastq fastq | 7143318600.0 | 23811062.0 | E MTAB 9528:HP1 CRRA200004857 1a HV532DSXX L4 | 0:150 1:150 | A:1883244963;C:1695388732;G:1697412462;T:1867096015;N:176428 | 150 | 150 | 1883244963 | 1695388732 | 1697412462 | 1867096015 | 176428 | ERX4504061 | ERS5050804 | ERA2831606 | Boston College|European Nucleotide Archive | Boston College|European Nucleotide Archive | 2 | 0.9408 | 0.94186 | 0.08491 | 0.08465 | 0.73129 | 0.73099 | 0.47185 | 0.47442 | 150 | 150 | B | B | biological fallback assumption | illumina | novaseq_era | unknown | unknown | nebnext | bulk | unknown | unknown | United States | 2020-09-04 | Adult | Adult | Multi-tissue | Multi-system | |||||||||||||
| 9985 | 9985 | ERR4568387 | ERX4504060 | ERS5050803 | ERP123840 | PRJEB40227 | RNA seq of proximal middle and distal caudal fin tissue of thyroid ablated zebrafish hypothyroid HypoTH and wild type zebrafish euthyroid EuTH | E-MTAB-9528 | Other | The goal of this experiment is to test the hypothesis that hypothyroid zebrafish caudal fin possess proximalized gene expression profile. Transcriptome data was generated for proximal middle and distal adult fin tissue of hypothyroid zebrafish with euthyroid sibling fish as control. | ENA FIRST PUBLIC:2022 04 12|ENA LAST UPDATE:2022 04 12 | Protocols: Intact caudal fin tissue was sampled from sibling adults >18 SL reared under euthyroid or hypothyroid conditions. Each fish was first anesthetized with tricaine MS 222 0.02% w/v in system water and the entire caudal fin was amputated using a razor blade. Proximal middle and distal regions of the fin were sampled immediately post and flash frozen in a dry ice ethanol bath. Three biological replicates each containing five fin regions were collected for both TH backgrounds. RNA was extracted the same day with Zymo Quick RNA Microprep kit R1050 Zymo Research Irvine CA USA. Sample libraries were made with NEBNext Ultra II RNA Library Prep kit | EuTH Proximal Rep3 | SAMEA7292233 | BOSTON COLLEGE | ENA FIRST PUBLIC:2021 04 11T00:31:24Z|ENA LAST UPDATE:2020 09 04T16:33:06Z|External Id:SAMEA7292233|INSDC center name:BOSTON COLLEGE|INSDC first public:2021 04 11T00:31:24Z|INSDC last update:2020 09 04T16:33:06Z|INSDC status:public|Submitter Id:E MTAB 9528:EuTH Proximal Rep3|broker name:ArrayExpress|common name:zebrafish|developmental stage:adult|organism part:caudal fin|phenotype:euthyroid fish|sample name:E MTAB 9528:EuTH Proximal Rep3|sampling site:proximal portion|scientific name:Danio rerio|strain:Tgtg:nVenus 2a nfnB | Illumina NovaSeq 6000 paired end sequencing; RNA seq of proximal middle and distal caudal fin tissue of thyroid ablated zebrafish hypothyroid HypoTH and wild type zebrafish euthyroid EuTH | E MTAB 9528:EuTH Proximal Rep3 p | EuTH Proximal Rep3 p | RNA seq of proximal middle and distal caudal fin tissue of thyroid ablated zebrafish hypothyroid HypoTH and wild type zebrafish euthyroid EuTH | Intact caudal fin tissue was sampled from sibling adults >18 SL reared under euthyroid or hypothyroid conditions. Each fish was first anesthetized with tricaine MS 222 0.02% w/v in system water and the entire caudal fin was amputated using a razor blade. Proximal middle and distal regions of the fin were sampled immediately post and flash frozen in a dry ice ethanol bath. Three biological replicates each containing five fin regions were collected for both TH backgrounds. RNA was extracted the same day with Zymo Quick RNA Microprep kit R1050 Zymo Research Irvine CA USA. Sample libraries were made with NEBNext Ultra II RNA Library Prep kit | Experimental Factor: phenotype:euthyroid fish|Experimental Factor: sampling site:proximal portion | RNA-Seq | TRANSCRIPTOMIC | unspecified | PAIRED | ILLUMINA | Illumina NovaSeq 6000 | ERP123840 | Illumina NovaSeq 6000 paired end sequencing; RNA seq of proximal middle and distal caudal fin tissue of thyroid ablated zebrafish hypothyroid HypoTH and wild type zebrafish euthyroid EuTH | ENA FIRST PUBLIC:2022 04 12|ENA LAST UPDATE:2022 04 12 | EP3_CRRA200004850-1a_HV532DSXX_L4_1.fq.gz EP3_CRRA200004850-1a_HV532DSXX_L4_2.fq.gz | fastq fastq | 7860809700.0 | 26202699.0 | E MTAB 9528:EP3 CRRA200004850 1a HV532DSXX L4 | 0:150 1:150 | A:2068735854;C:1871645002;G:1876330645;T:2043901317;N:196882 | 150 | 150 | 2068735854 | 1871645002 | 1876330645 | 2043901317 | 196882 | ERX4504060 | ERS5050803 | ERA2831606 | Boston College|European Nucleotide Archive | Boston College|European Nucleotide Archive | 2 | 0.93854 | 0.93903 | 0.09256 | 0.09314 | 0.74014 | 0.74059 | 0.47935 | 0.47779 | 150 | 150 | B | B | biological fallback assumption | illumina | novaseq_era | unknown | unknown | nebnext | bulk | unknown | unknown | United States | 2020-09-04 | Adult | Adult | Multi-tissue | Multi-system | |||||||||||||
| 9986 | 9986 | ERR4568386 | ERX4504059 | ERS5050802 | ERP123840 | PRJEB40227 | RNA seq of proximal middle and distal caudal fin tissue of thyroid ablated zebrafish hypothyroid HypoTH and wild type zebrafish euthyroid EuTH | E-MTAB-9528 | Other | The goal of this experiment is to test the hypothesis that hypothyroid zebrafish caudal fin possess proximalized gene expression profile. Transcriptome data was generated for proximal middle and distal adult fin tissue of hypothyroid zebrafish with euthyroid sibling fish as control. | ENA FIRST PUBLIC:2022 04 12|ENA LAST UPDATE:2022 04 12 | Protocols: Intact caudal fin tissue was sampled from sibling adults >18 SL reared under euthyroid or hypothyroid conditions. Each fish was first anesthetized with tricaine MS 222 0.02% w/v in system water and the entire caudal fin was amputated using a razor blade. Proximal middle and distal regions of the fin were sampled immediately post and flash frozen in a dry ice ethanol bath. Three biological replicates each containing five fin regions were collected for both TH backgrounds. RNA was extracted the same day with Zymo Quick RNA Microprep kit R1050 Zymo Research Irvine CA USA. Sample libraries were made with NEBNext Ultra II RNA Library Prep kit | EuTH Proximal Rep2 | SAMEA7292232 | BOSTON COLLEGE | ENA FIRST PUBLIC:2021 04 11T00:31:24Z|ENA LAST UPDATE:2020 09 04T16:33:06Z|External Id:SAMEA7292232|INSDC center name:BOSTON COLLEGE|INSDC first public:2021 04 11T00:31:24Z|INSDC last update:2020 09 04T16:33:06Z|INSDC status:public|Submitter Id:E MTAB 9528:EuTH Proximal Rep2|broker name:ArrayExpress|common name:zebrafish|developmental stage:adult|organism part:caudal fin|phenotype:euthyroid fish|sample name:E MTAB 9528:EuTH Proximal Rep2|sampling site:proximal portion|scientific name:Danio rerio|strain:Tgtg:nVenus 2a nfnB | Illumina NovaSeq 6000 paired end sequencing; RNA seq of proximal middle and distal caudal fin tissue of thyroid ablated zebrafish hypothyroid HypoTH and wild type zebrafish euthyroid EuTH | E MTAB 9528:EuTH Proximal Rep2 p | EuTH Proximal Rep2 p | RNA seq of proximal middle and distal caudal fin tissue of thyroid ablated zebrafish hypothyroid HypoTH and wild type zebrafish euthyroid EuTH | Intact caudal fin tissue was sampled from sibling adults >18 SL reared under euthyroid or hypothyroid conditions. Each fish was first anesthetized with tricaine MS 222 0.02% w/v in system water and the entire caudal fin was amputated using a razor blade. Proximal middle and distal regions of the fin were sampled immediately post and flash frozen in a dry ice ethanol bath. Three biological replicates each containing five fin regions were collected for both TH backgrounds. RNA was extracted the same day with Zymo Quick RNA Microprep kit R1050 Zymo Research Irvine CA USA. Sample libraries were made with NEBNext Ultra II RNA Library Prep kit | Experimental Factor: phenotype:euthyroid fish|Experimental Factor: sampling site:proximal portion | RNA-Seq | TRANSCRIPTOMIC | unspecified | PAIRED | ILLUMINA | Illumina NovaSeq 6000 | ERP123840 | Illumina NovaSeq 6000 paired end sequencing; RNA seq of proximal middle and distal caudal fin tissue of thyroid ablated zebrafish hypothyroid HypoTH and wild type zebrafish euthyroid EuTH | ENA FIRST PUBLIC:2022 04 12|ENA LAST UPDATE:2022 04 12 | EP2_CRRA200004849-1a_HV532DSXX_L4_1.fq.gz EP2_CRRA200004849-1a_HV532DSXX_L4_2.fq.gz | fastq fastq | 7168033200.0 | 23893444.0 | E MTAB 9528:EP2 CRRA200004849 1a HV532DSXX L4 | 0:150 1:150 | A:1903193161;C:1689671926;G:1689805787;T:1885183061;N:179265 | 150 | 150 | 1903193161 | 1689671926 | 1689805787 | 1885183061 | 179265 | ERX4504059 | ERS5050802 | ERA2831606 | Boston College|European Nucleotide Archive | Boston College|European Nucleotide Archive | 2 | 0.93988 | 0.93957 | 0.08429 | 0.08448 | 0.74399 | 0.74375 | 0.4672 | 0.47077 | 150 | 150 | B | B | biological fallback assumption | illumina | novaseq_era | unknown | unknown | nebnext | bulk | unknown | unknown | United States | 2020-09-04 | Adult | Adult | Multi-tissue | Multi-system | |||||||||||||
| 9987 | 9987 | ERR4568385 | ERX4504058 | ERS5050801 | ERP123840 | PRJEB40227 | RNA seq of proximal middle and distal caudal fin tissue of thyroid ablated zebrafish hypothyroid HypoTH and wild type zebrafish euthyroid EuTH | E-MTAB-9528 | Other | The goal of this experiment is to test the hypothesis that hypothyroid zebrafish caudal fin possess proximalized gene expression profile. Transcriptome data was generated for proximal middle and distal adult fin tissue of hypothyroid zebrafish with euthyroid sibling fish as control. | ENA FIRST PUBLIC:2022 04 12|ENA LAST UPDATE:2022 04 12 | Protocols: Intact caudal fin tissue was sampled from sibling adults >18 SL reared under euthyroid or hypothyroid conditions. Each fish was first anesthetized with tricaine MS 222 0.02% w/v in system water and the entire caudal fin was amputated using a razor blade. Proximal middle and distal regions of the fin were sampled immediately post and flash frozen in a dry ice ethanol bath. Three biological replicates each containing five fin regions were collected for both TH backgrounds. RNA was extracted the same day with Zymo Quick RNA Microprep kit R1050 Zymo Research Irvine CA USA. Sample libraries were made with NEBNext Ultra II RNA Library Prep kit | EuTH Proximal Rep1 | SAMEA7292231 | BOSTON COLLEGE | ENA FIRST PUBLIC:2021 04 11T00:31:24Z|ENA LAST UPDATE:2020 09 04T16:33:06Z|External Id:SAMEA7292231|INSDC center name:BOSTON COLLEGE|INSDC first public:2021 04 11T00:31:24Z|INSDC last update:2020 09 04T16:33:06Z|INSDC status:public|Submitter Id:E MTAB 9528:EuTH Proximal Rep1|broker name:ArrayExpress|common name:zebrafish|developmental stage:adult|organism part:caudal fin|phenotype:euthyroid fish|sample name:E MTAB 9528:EuTH Proximal Rep1|sampling site:proximal portion|scientific name:Danio rerio|strain:Tgtg:nVenus 2a nfnB | Illumina NovaSeq 6000 paired end sequencing; RNA seq of proximal middle and distal caudal fin tissue of thyroid ablated zebrafish hypothyroid HypoTH and wild type zebrafish euthyroid EuTH | E MTAB 9528:EuTH Proximal Rep1 p | EuTH Proximal Rep1 p | RNA seq of proximal middle and distal caudal fin tissue of thyroid ablated zebrafish hypothyroid HypoTH and wild type zebrafish euthyroid EuTH | Intact caudal fin tissue was sampled from sibling adults >18 SL reared under euthyroid or hypothyroid conditions. Each fish was first anesthetized with tricaine MS 222 0.02% w/v in system water and the entire caudal fin was amputated using a razor blade. Proximal middle and distal regions of the fin were sampled immediately post and flash frozen in a dry ice ethanol bath. Three biological replicates each containing five fin regions were collected for both TH backgrounds. RNA was extracted the same day with Zymo Quick RNA Microprep kit R1050 Zymo Research Irvine CA USA. Sample libraries were made with NEBNext Ultra II RNA Library Prep kit | Experimental Factor: phenotype:euthyroid fish|Experimental Factor: sampling site:proximal portion | RNA-Seq | TRANSCRIPTOMIC | unspecified | PAIRED | ILLUMINA | Illumina NovaSeq 6000 | ERP123840 | Illumina NovaSeq 6000 paired end sequencing; RNA seq of proximal middle and distal caudal fin tissue of thyroid ablated zebrafish hypothyroid HypoTH and wild type zebrafish euthyroid EuTH | ENA FIRST PUBLIC:2022 04 12|ENA LAST UPDATE:2022 04 12 | EP1_CRRA200004848-1a_HV532DSXX_L4_1.fq.gz EP1_CRRA200004848-1a_HV532DSXX_L4_2.fq.gz | fastq fastq | 7993254600.0 | 26644182.0 | E MTAB 9528:EP1 CRRA200004848 1a HV532DSXX L4 | 0:150 1:150 | A:2055964917;C:1952736981;G:1951688671;T:2032664860;N:199171 | 150 | 150 | 2055964917 | 1952736981 | 1951688671 | 2032664860 | 199171 | ERX4504058 | ERS5050801 | ERA2831606 | Boston College|European Nucleotide Archive | Boston College|European Nucleotide Archive | 2 | 0.94523 | 0.94513 | 0.09369 | 0.09348 | 0.74511 | 0.74525 | 0.48633 | 0.48842 | 150 | 150 | B | B | biological fallback assumption | illumina | novaseq_era | unknown | unknown | nebnext | bulk | unknown | unknown | United States | 2020-09-04 | Adult | Adult | Multi-tissue | Multi-system | |||||||||||||
| 9988 | 9988 | ERR4568384 | ERX4504057 | ERS5050800 | ERP123840 | PRJEB40227 | RNA seq of proximal middle and distal caudal fin tissue of thyroid ablated zebrafish hypothyroid HypoTH and wild type zebrafish euthyroid EuTH | E-MTAB-9528 | Other | The goal of this experiment is to test the hypothesis that hypothyroid zebrafish caudal fin possess proximalized gene expression profile. Transcriptome data was generated for proximal middle and distal adult fin tissue of hypothyroid zebrafish with euthyroid sibling fish as control. | ENA FIRST PUBLIC:2022 04 12|ENA LAST UPDATE:2022 04 12 | Protocols: Intact caudal fin tissue was sampled from sibling adults >18 SL reared under euthyroid or hypothyroid conditions. Each fish was first anesthetized with tricaine MS 222 0.02% w/v in system water and the entire caudal fin was amputated using a razor blade. Proximal middle and distal regions of the fin were sampled immediately post and flash frozen in a dry ice ethanol bath. Three biological replicates each containing five fin regions were collected for both TH backgrounds. RNA was extracted the same day with Zymo Quick RNA Microprep kit R1050 Zymo Research Irvine CA USA. Sample libraries were made with NEBNext Ultra II RNA Library Prep kit | HypoTH Middle Rep3 | SAMEA7292230 | BOSTON COLLEGE | ENA FIRST PUBLIC:2021 04 11T00:31:24Z|ENA LAST UPDATE:2020 09 04T16:33:06Z|External Id:SAMEA7292230|INSDC center name:BOSTON COLLEGE|INSDC first public:2021 04 11T00:31:24Z|INSDC last update:2020 09 04T16:33:06Z|INSDC status:public|Submitter Id:E MTAB 9528:HypoTH Middle Rep3|broker name:ArrayExpress|common name:zebrafish|developmental stage:adult|organism part:caudal fin|phenotype:hypothyroid fish|sample name:E MTAB 9528:HypoTH Middle Rep3|sampling site:middle portion|scientific name:Danio rerio|strain:Tgtg:nVenus 2a nfnB | Illumina NovaSeq 6000 paired end sequencing; RNA seq of proximal middle and distal caudal fin tissue of thyroid ablated zebrafish hypothyroid HypoTH and wild type zebrafish euthyroid EuTH | E MTAB 9528:HypoTH Middle Rep3 p | HypoTH Middle Rep3 p | RNA seq of proximal middle and distal caudal fin tissue of thyroid ablated zebrafish hypothyroid HypoTH and wild type zebrafish euthyroid EuTH | Intact caudal fin tissue was sampled from sibling adults >18 SL reared under euthyroid or hypothyroid conditions. Each fish was first anesthetized with tricaine MS 222 0.02% w/v in system water and the entire caudal fin was amputated using a razor blade. Proximal middle and distal regions of the fin were sampled immediately post and flash frozen in a dry ice ethanol bath. Three biological replicates each containing five fin regions were collected for both TH backgrounds. RNA was extracted the same day with Zymo Quick RNA Microprep kit R1050 Zymo Research Irvine CA USA. Sample libraries were made with NEBNext Ultra II RNA Library Prep kit | Experimental Factor: phenotype:hypothyroid fish|Experimental Factor: sampling site:middle portion | RNA-Seq | TRANSCRIPTOMIC | unspecified | PAIRED | ILLUMINA | Illumina NovaSeq 6000 | ERP123840 | Illumina NovaSeq 6000 paired end sequencing; RNA seq of proximal middle and distal caudal fin tissue of thyroid ablated zebrafish hypothyroid HypoTH and wild type zebrafish euthyroid EuTH | ENA FIRST PUBLIC:2022 04 12|ENA LAST UPDATE:2022 04 12 | HM3_CRRA200004862-1a_HV532DSXX_L4_1.fq.gz HM3_CRRA200004862-1a_HV532DSXX_L4_2.fq.gz | fastq fastq | 7418093400.0 | 24726978.0 | E MTAB 9528:HM3 CRRA200004862 1a HV532DSXX L4 | 0:150 1:150 | A:1979368375;C:1736175227;G:1747418895;T:1954949103;N:181800 | 150 | 150 | 1979368375 | 1736175227 | 1747418895 | 1954949103 | 181800 | ERX4504057 | ERS5050800 | ERA2831606 | Boston College|European Nucleotide Archive | Boston College|European Nucleotide Archive | 2 | 0.93389 | 0.93398 | 0.0839 | 0.08406 | 0.72147 | 0.72115 | 0.47407 | 0.47898 | 150 | 150 | B | B | biological fallback assumption | illumina | novaseq_era | unknown | unknown | nebnext | bulk | unknown | unknown | United States | 2020-09-04 | Adult | Adult | Multi-tissue | Multi-system | |||||||||||||
| 9989 | 9989 | ERR4568383 | ERX4504056 | ERS5050799 | ERP123840 | PRJEB40227 | RNA seq of proximal middle and distal caudal fin tissue of thyroid ablated zebrafish hypothyroid HypoTH and wild type zebrafish euthyroid EuTH | E-MTAB-9528 | Other | The goal of this experiment is to test the hypothesis that hypothyroid zebrafish caudal fin possess proximalized gene expression profile. Transcriptome data was generated for proximal middle and distal adult fin tissue of hypothyroid zebrafish with euthyroid sibling fish as control. | ENA FIRST PUBLIC:2022 04 12|ENA LAST UPDATE:2022 04 12 | Protocols: Intact caudal fin tissue was sampled from sibling adults >18 SL reared under euthyroid or hypothyroid conditions. Each fish was first anesthetized with tricaine MS 222 0.02% w/v in system water and the entire caudal fin was amputated using a razor blade. Proximal middle and distal regions of the fin were sampled immediately post and flash frozen in a dry ice ethanol bath. Three biological replicates each containing five fin regions were collected for both TH backgrounds. RNA was extracted the same day with Zymo Quick RNA Microprep kit R1050 Zymo Research Irvine CA USA. Sample libraries were made with NEBNext Ultra II RNA Library Prep kit | HypoTH Middle Rep2 | SAMEA7292229 | BOSTON COLLEGE | ENA FIRST PUBLIC:2021 04 11T00:31:24Z|ENA LAST UPDATE:2020 09 04T16:33:06Z|External Id:SAMEA7292229|INSDC center name:BOSTON COLLEGE|INSDC first public:2021 04 11T00:31:24Z|INSDC last update:2020 09 04T16:33:06Z|INSDC status:public|Submitter Id:E MTAB 9528:HypoTH Middle Rep2|broker name:ArrayExpress|common name:zebrafish|developmental stage:adult|organism part:caudal fin|phenotype:hypothyroid fish|sample name:E MTAB 9528:HypoTH Middle Rep2|sampling site:middle portion|scientific name:Danio rerio|strain:Tgtg:nVenus 2a nfnB | Illumina NovaSeq 6000 paired end sequencing; RNA seq of proximal middle and distal caudal fin tissue of thyroid ablated zebrafish hypothyroid HypoTH and wild type zebrafish euthyroid EuTH | E MTAB 9528:HypoTH Middle Rep2 p | HypoTH Middle Rep2 p | RNA seq of proximal middle and distal caudal fin tissue of thyroid ablated zebrafish hypothyroid HypoTH and wild type zebrafish euthyroid EuTH | Intact caudal fin tissue was sampled from sibling adults >18 SL reared under euthyroid or hypothyroid conditions. Each fish was first anesthetized with tricaine MS 222 0.02% w/v in system water and the entire caudal fin was amputated using a razor blade. Proximal middle and distal regions of the fin were sampled immediately post and flash frozen in a dry ice ethanol bath. Three biological replicates each containing five fin regions were collected for both TH backgrounds. RNA was extracted the same day with Zymo Quick RNA Microprep kit R1050 Zymo Research Irvine CA USA. Sample libraries were made with NEBNext Ultra II RNA Library Prep kit | Experimental Factor: phenotype:hypothyroid fish|Experimental Factor: sampling site:middle portion | RNA-Seq | TRANSCRIPTOMIC | unspecified | PAIRED | ILLUMINA | Illumina NovaSeq 6000 | ERP123840 | Illumina NovaSeq 6000 paired end sequencing; RNA seq of proximal middle and distal caudal fin tissue of thyroid ablated zebrafish hypothyroid HypoTH and wild type zebrafish euthyroid EuTH | ENA FIRST PUBLIC:2022 04 12|ENA LAST UPDATE:2022 04 12 | HM2_CRRA200004861-1a_HV532DSXX_L4_1.fq.gz HM2_CRRA200004861-1a_HV532DSXX_L4_2.fq.gz | fastq fastq | 7047855300.0 | 23492851.0 | E MTAB 9528:HM2 CRRA200004861 1a HV532DSXX L4 | 0:150 1:150 | A:1909885369;C:1626900113;G:1623501695;T:1887391464;N:176659 | 150 | 150 | 1909885369 | 1626900113 | 1623501695 | 1887391464 | 176659 | ERX4504056 | ERS5050799 | ERA2831606 | Boston College|European Nucleotide Archive | Boston College|European Nucleotide Archive | 2 | 0.93212 | 0.93173 | 0.08713 | 0.08625 | 0.7136 | 0.71411 | 0.47182 | 0.46635 | 150 | 150 | B | B | biological fallback assumption | illumina | novaseq_era | unknown | unknown | nebnext | bulk | unknown | unknown | United States | 2020-09-04 | Adult | Adult | Multi-tissue | Multi-system | |||||||||||||
| 9990 | 9990 | ERR4568382 | ERX4504055 | ERS5050798 | ERP123840 | PRJEB40227 | RNA seq of proximal middle and distal caudal fin tissue of thyroid ablated zebrafish hypothyroid HypoTH and wild type zebrafish euthyroid EuTH | E-MTAB-9528 | Other | The goal of this experiment is to test the hypothesis that hypothyroid zebrafish caudal fin possess proximalized gene expression profile. Transcriptome data was generated for proximal middle and distal adult fin tissue of hypothyroid zebrafish with euthyroid sibling fish as control. | ENA FIRST PUBLIC:2022 04 12|ENA LAST UPDATE:2022 04 12 | Protocols: Intact caudal fin tissue was sampled from sibling adults >18 SL reared under euthyroid or hypothyroid conditions. Each fish was first anesthetized with tricaine MS 222 0.02% w/v in system water and the entire caudal fin was amputated using a razor blade. Proximal middle and distal regions of the fin were sampled immediately post and flash frozen in a dry ice ethanol bath. Three biological replicates each containing five fin regions were collected for both TH backgrounds. RNA was extracted the same day with Zymo Quick RNA Microprep kit R1050 Zymo Research Irvine CA USA. Sample libraries were made with NEBNext Ultra II RNA Library Prep kit | HypoTH Middle Rep1 | SAMEA7292228 | BOSTON COLLEGE | ENA FIRST PUBLIC:2021 04 11T00:31:24Z|ENA LAST UPDATE:2020 09 04T16:33:06Z|External Id:SAMEA7292228|INSDC center name:BOSTON COLLEGE|INSDC first public:2021 04 11T00:31:24Z|INSDC last update:2020 09 04T16:33:06Z|INSDC status:public|Submitter Id:E MTAB 9528:HypoTH Middle Rep1|broker name:ArrayExpress|common name:zebrafish|developmental stage:adult|organism part:caudal fin|phenotype:hypothyroid fish|sample name:E MTAB 9528:HypoTH Middle Rep1|sampling site:middle portion|scientific name:Danio rerio|strain:Tgtg:nVenus 2a nfnB | Illumina NovaSeq 6000 paired end sequencing; RNA seq of proximal middle and distal caudal fin tissue of thyroid ablated zebrafish hypothyroid HypoTH and wild type zebrafish euthyroid EuTH | E MTAB 9528:HypoTH Middle Rep1 p | HypoTH Middle Rep1 p | RNA seq of proximal middle and distal caudal fin tissue of thyroid ablated zebrafish hypothyroid HypoTH and wild type zebrafish euthyroid EuTH | Intact caudal fin tissue was sampled from sibling adults >18 SL reared under euthyroid or hypothyroid conditions. Each fish was first anesthetized with tricaine MS 222 0.02% w/v in system water and the entire caudal fin was amputated using a razor blade. Proximal middle and distal regions of the fin were sampled immediately post and flash frozen in a dry ice ethanol bath. Three biological replicates each containing five fin regions were collected for both TH backgrounds. RNA was extracted the same day with Zymo Quick RNA Microprep kit R1050 Zymo Research Irvine CA USA. Sample libraries were made with NEBNext Ultra II RNA Library Prep kit | Experimental Factor: phenotype:hypothyroid fish|Experimental Factor: sampling site:middle portion | RNA-Seq | TRANSCRIPTOMIC | unspecified | PAIRED | ILLUMINA | Illumina NovaSeq 6000 | ERP123840 | Illumina NovaSeq 6000 paired end sequencing; RNA seq of proximal middle and distal caudal fin tissue of thyroid ablated zebrafish hypothyroid HypoTH and wild type zebrafish euthyroid EuTH | ENA FIRST PUBLIC:2022 04 12|ENA LAST UPDATE:2022 04 12 | HM1_CRRA200004860-1a_HV532DSXX_L4_1.fq.gz HM1_CRRA200004860-1a_HV532DSXX_L4_2.fq.gz | fastq fastq | 7368139500.0 | 24560465.0 | E MTAB 9528:HM1 CRRA200004860 1a HV532DSXX L4 | 0:150 1:150 | A:1979116696;C:1681144383;G:1748755925;T:1958940264;N:182232 | 150 | 150 | 1979116696 | 1681144383 | 1748755925 | 1958940264 | 182232 | ERX4504055 | ERS5050798 | ERA2831606 | Boston College|European Nucleotide Archive | Boston College|European Nucleotide Archive | 2 | 0.90037 | 0.90035 | 0.07933 | 0.07951 | 0.72547 | 0.72512 | 0.46313 | 0.45076 | 150 | 150 | B | B | biological fallback assumption | illumina | novaseq_era | unknown | unknown | nebnext | bulk | unknown | unknown | United States | 2020-09-04 | Adult | Adult | Multi-tissue | Multi-system | |||||||||||||
| 9991 | 9991 | ERR4568381 | ERX4504054 | ERS5050797 | ERP123840 | PRJEB40227 | RNA seq of proximal middle and distal caudal fin tissue of thyroid ablated zebrafish hypothyroid HypoTH and wild type zebrafish euthyroid EuTH | E-MTAB-9528 | Other | The goal of this experiment is to test the hypothesis that hypothyroid zebrafish caudal fin possess proximalized gene expression profile. Transcriptome data was generated for proximal middle and distal adult fin tissue of hypothyroid zebrafish with euthyroid sibling fish as control. | ENA FIRST PUBLIC:2022 04 12|ENA LAST UPDATE:2022 04 12 | Protocols: Intact caudal fin tissue was sampled from sibling adults >18 SL reared under euthyroid or hypothyroid conditions. Each fish was first anesthetized with tricaine MS 222 0.02% w/v in system water and the entire caudal fin was amputated using a razor blade. Proximal middle and distal regions of the fin were sampled immediately post and flash frozen in a dry ice ethanol bath. Three biological replicates each containing five fin regions were collected for both TH backgrounds. RNA was extracted the same day with Zymo Quick RNA Microprep kit R1050 Zymo Research Irvine CA USA. Sample libraries were made with NEBNext Ultra II RNA Library Prep kit | EuTH Middle Rep3 | SAMEA7292227 | BOSTON COLLEGE | ENA FIRST PUBLIC:2021 04 11T00:31:24Z|ENA LAST UPDATE:2020 09 04T16:33:06Z|External Id:SAMEA7292227|INSDC center name:BOSTON COLLEGE|INSDC first public:2021 04 11T00:31:24Z|INSDC last update:2020 09 04T16:33:06Z|INSDC status:public|Submitter Id:E MTAB 9528:EuTH Middle Rep3|broker name:ArrayExpress|common name:zebrafish|developmental stage:adult|organism part:caudal fin|phenotype:euthyroid fish|sample name:E MTAB 9528:EuTH Middle Rep3|sampling site:middle portion|scientific name:Danio rerio|strain:Tgtg:nVenus 2a nfnB | Illumina NovaSeq 6000 paired end sequencing; RNA seq of proximal middle and distal caudal fin tissue of thyroid ablated zebrafish hypothyroid HypoTH and wild type zebrafish euthyroid EuTH | E MTAB 9528:EuTH Middle Rep3 p | EuTH Middle Rep3 p | RNA seq of proximal middle and distal caudal fin tissue of thyroid ablated zebrafish hypothyroid HypoTH and wild type zebrafish euthyroid EuTH | Intact caudal fin tissue was sampled from sibling adults >18 SL reared under euthyroid or hypothyroid conditions. Each fish was first anesthetized with tricaine MS 222 0.02% w/v in system water and the entire caudal fin was amputated using a razor blade. Proximal middle and distal regions of the fin were sampled immediately post and flash frozen in a dry ice ethanol bath. Three biological replicates each containing five fin regions were collected for both TH backgrounds. RNA was extracted the same day with Zymo Quick RNA Microprep kit R1050 Zymo Research Irvine CA USA. Sample libraries were made with NEBNext Ultra II RNA Library Prep kit | Experimental Factor: phenotype:euthyroid fish|Experimental Factor: sampling site:middle portion | RNA-Seq | TRANSCRIPTOMIC | unspecified | PAIRED | ILLUMINA | Illumina NovaSeq 6000 | ERP123840 | Illumina NovaSeq 6000 paired end sequencing; RNA seq of proximal middle and distal caudal fin tissue of thyroid ablated zebrafish hypothyroid HypoTH and wild type zebrafish euthyroid EuTH | ENA FIRST PUBLIC:2022 04 12|ENA LAST UPDATE:2022 04 12 | EM3_CRRA200004853-1a_HV532DSXX_L4_1.fq.gz EM3_CRRA200004853-1a_HV532DSXX_L4_2.fq.gz | fastq fastq | 8203926600.0 | 27346422.0 | E MTAB 9528:EM3 CRRA200004853 1a HV532DSXX L4 | 0:150 1:150 | A:2145970242;C:1969430575;G:1966154582;T:2122170071;N:201130 | 150 | 150 | 2145970242 | 1969430575 | 1966154582 | 2122170071 | 201130 | ERX4504054 | ERS5050797 | ERA2831606 | Boston College|European Nucleotide Archive | Boston College|European Nucleotide Archive | 2 | 0.9358 | 0.93551 | 0.11154 | 0.11215 | 0.73908 | 0.73813 | 0.50711 | 0.50991 | 150 | 150 | B | B | biological fallback assumption | illumina | novaseq_era | unknown | unknown | nebnext | bulk | unknown | unknown | United States | 2020-09-04 | Adult | Adult | Multi-tissue | Multi-system | |||||||||||||
| 9992 | 9992 | ERR4568380 | ERX4504053 | ERS5050796 | ERP123840 | PRJEB40227 | RNA seq of proximal middle and distal caudal fin tissue of thyroid ablated zebrafish hypothyroid HypoTH and wild type zebrafish euthyroid EuTH | E-MTAB-9528 | Other | The goal of this experiment is to test the hypothesis that hypothyroid zebrafish caudal fin possess proximalized gene expression profile. Transcriptome data was generated for proximal middle and distal adult fin tissue of hypothyroid zebrafish with euthyroid sibling fish as control. | ENA FIRST PUBLIC:2022 04 12|ENA LAST UPDATE:2022 04 12 | Protocols: Intact caudal fin tissue was sampled from sibling adults >18 SL reared under euthyroid or hypothyroid conditions. Each fish was first anesthetized with tricaine MS 222 0.02% w/v in system water and the entire caudal fin was amputated using a razor blade. Proximal middle and distal regions of the fin were sampled immediately post and flash frozen in a dry ice ethanol bath. Three biological replicates each containing five fin regions were collected for both TH backgrounds. RNA was extracted the same day with Zymo Quick RNA Microprep kit R1050 Zymo Research Irvine CA USA. Sample libraries were made with NEBNext Ultra II RNA Library Prep kit | EuTH Middle Rep2 | SAMEA7292226 | BOSTON COLLEGE | ENA FIRST PUBLIC:2021 04 11T00:31:24Z|ENA LAST UPDATE:2020 09 04T16:33:06Z|External Id:SAMEA7292226|INSDC center name:BOSTON COLLEGE|INSDC first public:2021 04 11T00:31:24Z|INSDC last update:2020 09 04T16:33:06Z|INSDC status:public|Submitter Id:E MTAB 9528:EuTH Middle Rep2|broker name:ArrayExpress|common name:zebrafish|developmental stage:adult|organism part:caudal fin|phenotype:euthyroid fish|sample name:E MTAB 9528:EuTH Middle Rep2|sampling site:middle portion|scientific name:Danio rerio|strain:Tgtg:nVenus 2a nfnB | Illumina NovaSeq 6000 paired end sequencing; RNA seq of proximal middle and distal caudal fin tissue of thyroid ablated zebrafish hypothyroid HypoTH and wild type zebrafish euthyroid EuTH | E MTAB 9528:EuTH Middle Rep2 p | EuTH Middle Rep2 p | RNA seq of proximal middle and distal caudal fin tissue of thyroid ablated zebrafish hypothyroid HypoTH and wild type zebrafish euthyroid EuTH | Intact caudal fin tissue was sampled from sibling adults >18 SL reared under euthyroid or hypothyroid conditions. Each fish was first anesthetized with tricaine MS 222 0.02% w/v in system water and the entire caudal fin was amputated using a razor blade. Proximal middle and distal regions of the fin were sampled immediately post and flash frozen in a dry ice ethanol bath. Three biological replicates each containing five fin regions were collected for both TH backgrounds. RNA was extracted the same day with Zymo Quick RNA Microprep kit R1050 Zymo Research Irvine CA USA. Sample libraries were made with NEBNext Ultra II RNA Library Prep kit | Experimental Factor: phenotype:euthyroid fish|Experimental Factor: sampling site:middle portion | RNA-Seq | TRANSCRIPTOMIC | unspecified | PAIRED | ILLUMINA | Illumina NovaSeq 6000 | ERP123840 | Illumina NovaSeq 6000 paired end sequencing; RNA seq of proximal middle and distal caudal fin tissue of thyroid ablated zebrafish hypothyroid HypoTH and wild type zebrafish euthyroid EuTH | ENA FIRST PUBLIC:2022 04 12|ENA LAST UPDATE:2022 04 12 | EM2_CRRA200004852-1a_HV532DSXX_L4_1.fq.gz EM2_CRRA200004852-1a_HV532DSXX_L4_2.fq.gz | fastq fastq | 8189085300.0 | 27296951.0 | E MTAB 9528:EM2 CRRA200004852 1a HV532DSXX L4 | 0:150 1:150 | A:2190135788;C:1917852780;G:1910200259;T:2170694756;N:201717 | 150 | 150 | 2190135788 | 1917852780 | 1910200259 | 2170694756 | 201717 | ERX4504053 | ERS5050796 | ERA2831606 | Boston College|European Nucleotide Archive | Boston College|European Nucleotide Archive | 2 | 0.93471 | 0.93387 | 0.0982 | 0.0981 | 0.73357 | 0.73401 | 0.47523 | 0.47764 | 150 | 150 | B | B | biological fallback assumption | illumina | novaseq_era | unknown | unknown | nebnext | bulk | unknown | unknown | United States | 2020-09-04 | Adult | Adult | Multi-tissue | Multi-system | |||||||||||||
| 9993 | 9993 | ERR4568379 | ERX4504052 | ERS5050795 | ERP123840 | PRJEB40227 | RNA seq of proximal middle and distal caudal fin tissue of thyroid ablated zebrafish hypothyroid HypoTH and wild type zebrafish euthyroid EuTH | E-MTAB-9528 | Other | The goal of this experiment is to test the hypothesis that hypothyroid zebrafish caudal fin possess proximalized gene expression profile. Transcriptome data was generated for proximal middle and distal adult fin tissue of hypothyroid zebrafish with euthyroid sibling fish as control. | ENA FIRST PUBLIC:2022 04 12|ENA LAST UPDATE:2022 04 12 | Protocols: Intact caudal fin tissue was sampled from sibling adults >18 SL reared under euthyroid or hypothyroid conditions. Each fish was first anesthetized with tricaine MS 222 0.02% w/v in system water and the entire caudal fin was amputated using a razor blade. Proximal middle and distal regions of the fin were sampled immediately post and flash frozen in a dry ice ethanol bath. Three biological replicates each containing five fin regions were collected for both TH backgrounds. RNA was extracted the same day with Zymo Quick RNA Microprep kit R1050 Zymo Research Irvine CA USA. Sample libraries were made with NEBNext Ultra II RNA Library Prep kit | EuTH Middle Rep1 | SAMEA7292225 | BOSTON COLLEGE | ENA FIRST PUBLIC:2021 04 11T00:31:24Z|ENA LAST UPDATE:2020 09 04T16:33:06Z|External Id:SAMEA7292225|INSDC center name:BOSTON COLLEGE|INSDC first public:2021 04 11T00:31:24Z|INSDC last update:2020 09 04T16:33:06Z|INSDC status:public|Submitter Id:E MTAB 9528:EuTH Middle Rep1|broker name:ArrayExpress|common name:zebrafish|developmental stage:adult|organism part:caudal fin|phenotype:euthyroid fish|sample name:E MTAB 9528:EuTH Middle Rep1|sampling site:middle portion|scientific name:Danio rerio|strain:Tgtg:nVenus 2a nfnB | Illumina NovaSeq 6000 paired end sequencing; RNA seq of proximal middle and distal caudal fin tissue of thyroid ablated zebrafish hypothyroid HypoTH and wild type zebrafish euthyroid EuTH | E MTAB 9528:EuTH Middle Rep1 p | EuTH Middle Rep1 p | RNA seq of proximal middle and distal caudal fin tissue of thyroid ablated zebrafish hypothyroid HypoTH and wild type zebrafish euthyroid EuTH | Intact caudal fin tissue was sampled from sibling adults >18 SL reared under euthyroid or hypothyroid conditions. Each fish was first anesthetized with tricaine MS 222 0.02% w/v in system water and the entire caudal fin was amputated using a razor blade. Proximal middle and distal regions of the fin were sampled immediately post and flash frozen in a dry ice ethanol bath. Three biological replicates each containing five fin regions were collected for both TH backgrounds. RNA was extracted the same day with Zymo Quick RNA Microprep kit R1050 Zymo Research Irvine CA USA. Sample libraries were made with NEBNext Ultra II RNA Library Prep kit | Experimental Factor: phenotype:euthyroid fish|Experimental Factor: sampling site:middle portion | RNA-Seq | TRANSCRIPTOMIC | unspecified | PAIRED | ILLUMINA | Illumina NovaSeq 6000 | ERP123840 | Illumina NovaSeq 6000 paired end sequencing; RNA seq of proximal middle and distal caudal fin tissue of thyroid ablated zebrafish hypothyroid HypoTH and wild type zebrafish euthyroid EuTH | ENA FIRST PUBLIC:2022 04 12|ENA LAST UPDATE:2022 04 12 | EM1_CRRA200004851-1a_HV532DSXX_L4_1.fq.gz EM1_CRRA200004851-1a_HV532DSXX_L4_2.fq.gz | fastq fastq | 7099416900.0 | 23664723.0 | E MTAB 9528:EM1 CRRA200004851 1a HV532DSXX L4 | 0:150 1:150 | A:1906046714;C:1656677333;G:1651795527;T:1884722014;N:175312 | 150 | 150 | 1906046714 | 1656677333 | 1651795527 | 1884722014 | 175312 | ERX4504052 | ERS5050795 | ERA2831606 | Boston College|European Nucleotide Archive | Boston College|European Nucleotide Archive | 2 | 0.93383 | 0.93423 | 0.08879 | 0.08881 | 0.73699 | 0.73669 | 0.47814 | 0.47895 | 150 | 150 | B | B | biological fallback assumption | illumina | novaseq_era | unknown | unknown | nebnext | bulk | unknown | unknown | United States | 2020-09-04 | Adult | Adult | Multi-tissue | Multi-system | |||||||||||||
| 9994 | 9994 | ERR4568378 | ERX4504051 | ERS5050794 | ERP123840 | PRJEB40227 | RNA seq of proximal middle and distal caudal fin tissue of thyroid ablated zebrafish hypothyroid HypoTH and wild type zebrafish euthyroid EuTH | E-MTAB-9528 | Other | The goal of this experiment is to test the hypothesis that hypothyroid zebrafish caudal fin possess proximalized gene expression profile. Transcriptome data was generated for proximal middle and distal adult fin tissue of hypothyroid zebrafish with euthyroid sibling fish as control. | ENA FIRST PUBLIC:2022 04 12|ENA LAST UPDATE:2022 04 12 | Protocols: Intact caudal fin tissue was sampled from sibling adults >18 SL reared under euthyroid or hypothyroid conditions. Each fish was first anesthetized with tricaine MS 222 0.02% w/v in system water and the entire caudal fin was amputated using a razor blade. Proximal middle and distal regions of the fin were sampled immediately post and flash frozen in a dry ice ethanol bath. Three biological replicates each containing five fin regions were collected for both TH backgrounds. RNA was extracted the same day with Zymo Quick RNA Microprep kit R1050 Zymo Research Irvine CA USA. Sample libraries were made with NEBNext Ultra II RNA Library Prep kit | HypoTH Distal Rep3 | SAMEA7292224 | BOSTON COLLEGE | ENA FIRST PUBLIC:2021 04 11T00:31:24Z|ENA LAST UPDATE:2020 09 04T16:33:06Z|External Id:SAMEA7292224|INSDC center name:BOSTON COLLEGE|INSDC first public:2021 04 11T00:31:24Z|INSDC last update:2020 09 04T16:33:06Z|INSDC status:public|Submitter Id:E MTAB 9528:HypoTH Distal Rep3|broker name:ArrayExpress|common name:zebrafish|developmental stage:adult|organism part:caudal fin|phenotype:hypothyroid fish|sample name:E MTAB 9528:HypoTH Distal Rep3|sampling site:distal portion|scientific name:Danio rerio|strain:Tgtg:nVenus 2a nfnB | Illumina NovaSeq 6000 paired end sequencing; RNA seq of proximal middle and distal caudal fin tissue of thyroid ablated zebrafish hypothyroid HypoTH and wild type zebrafish euthyroid EuTH | E MTAB 9528:HypoTH Distal Rep3 p | HypoTH Distal Rep3 p | RNA seq of proximal middle and distal caudal fin tissue of thyroid ablated zebrafish hypothyroid HypoTH and wild type zebrafish euthyroid EuTH | Intact caudal fin tissue was sampled from sibling adults >18 SL reared under euthyroid or hypothyroid conditions. Each fish was first anesthetized with tricaine MS 222 0.02% w/v in system water and the entire caudal fin was amputated using a razor blade. Proximal middle and distal regions of the fin were sampled immediately post and flash frozen in a dry ice ethanol bath. Three biological replicates each containing five fin regions were collected for both TH backgrounds. RNA was extracted the same day with Zymo Quick RNA Microprep kit R1050 Zymo Research Irvine CA USA. Sample libraries were made with NEBNext Ultra II RNA Library Prep kit | Experimental Factor: phenotype:hypothyroid fish|Experimental Factor: sampling site:distal portion | RNA-Seq | TRANSCRIPTOMIC | unspecified | PAIRED | ILLUMINA | Illumina NovaSeq 6000 | ERP123840 | Illumina NovaSeq 6000 paired end sequencing; RNA seq of proximal middle and distal caudal fin tissue of thyroid ablated zebrafish hypothyroid HypoTH and wild type zebrafish euthyroid EuTH | ENA FIRST PUBLIC:2022 04 12|ENA LAST UPDATE:2022 04 12 | HD3_CRRA200004865-1a_HV532DSXX_L4_1.fq.gz HD3_CRRA200004865-1a_HV532DSXX_L4_2.fq.gz | fastq fastq | 8040672900.0 | 26802243.0 | E MTAB 9528:HD3 CRRA200004865 1a HV532DSXX L4 | 0:150 1:150 | A:2167099154;C:1865357004;G:1864002622;T:2144021108;N:193012 | 150 | 150 | 2167099154 | 1865357004 | 1864002622 | 2144021108 | 193012 | ERX4504051 | ERS5050794 | ERA2831606 | Boston College|European Nucleotide Archive | Boston College|European Nucleotide Archive | 2 | 0.92854 | 0.92899 | 0.09996 | 0.09934 | 0.71902 | 0.71881 | 0.4815 | 0.47867 | 150 | 150 | B | B | biological fallback assumption | illumina | novaseq_era | unknown | unknown | nebnext | bulk | unknown | unknown | United States | 2020-09-04 | Adult | Adult | Multi-tissue | Multi-system | |||||||||||||
| 9995 | 9995 | ERR4568377 | ERX4504050 | ERS5050793 | ERP123840 | PRJEB40227 | RNA seq of proximal middle and distal caudal fin tissue of thyroid ablated zebrafish hypothyroid HypoTH and wild type zebrafish euthyroid EuTH | E-MTAB-9528 | Other | The goal of this experiment is to test the hypothesis that hypothyroid zebrafish caudal fin possess proximalized gene expression profile. Transcriptome data was generated for proximal middle and distal adult fin tissue of hypothyroid zebrafish with euthyroid sibling fish as control. | ENA FIRST PUBLIC:2022 04 12|ENA LAST UPDATE:2022 04 12 | Protocols: Intact caudal fin tissue was sampled from sibling adults >18 SL reared under euthyroid or hypothyroid conditions. Each fish was first anesthetized with tricaine MS 222 0.02% w/v in system water and the entire caudal fin was amputated using a razor blade. Proximal middle and distal regions of the fin were sampled immediately post and flash frozen in a dry ice ethanol bath. Three biological replicates each containing five fin regions were collected for both TH backgrounds. RNA was extracted the same day with Zymo Quick RNA Microprep kit R1050 Zymo Research Irvine CA USA. Sample libraries were made with NEBNext Ultra II RNA Library Prep kit | HypoTH Distal Rep2 | SAMEA7292223 | BOSTON COLLEGE | ENA FIRST PUBLIC:2021 04 11T00:31:24Z|ENA LAST UPDATE:2020 09 04T16:33:06Z|External Id:SAMEA7292223|INSDC center name:BOSTON COLLEGE|INSDC first public:2021 04 11T00:31:24Z|INSDC last update:2020 09 04T16:33:06Z|INSDC status:public|Submitter Id:E MTAB 9528:HypoTH Distal Rep2|broker name:ArrayExpress|common name:zebrafish|developmental stage:adult|organism part:caudal fin|phenotype:hypothyroid fish|sample name:E MTAB 9528:HypoTH Distal Rep2|sampling site:distal portion|scientific name:Danio rerio|strain:Tgtg:nVenus 2a nfnB | Illumina NovaSeq 6000 paired end sequencing; RNA seq of proximal middle and distal caudal fin tissue of thyroid ablated zebrafish hypothyroid HypoTH and wild type zebrafish euthyroid EuTH | E MTAB 9528:HypoTH Distal Rep2 p | HypoTH Distal Rep2 p | RNA seq of proximal middle and distal caudal fin tissue of thyroid ablated zebrafish hypothyroid HypoTH and wild type zebrafish euthyroid EuTH | Intact caudal fin tissue was sampled from sibling adults >18 SL reared under euthyroid or hypothyroid conditions. Each fish was first anesthetized with tricaine MS 222 0.02% w/v in system water and the entire caudal fin was amputated using a razor blade. Proximal middle and distal regions of the fin were sampled immediately post and flash frozen in a dry ice ethanol bath. Three biological replicates each containing five fin regions were collected for both TH backgrounds. RNA was extracted the same day with Zymo Quick RNA Microprep kit R1050 Zymo Research Irvine CA USA. Sample libraries were made with NEBNext Ultra II RNA Library Prep kit | Experimental Factor: phenotype:hypothyroid fish|Experimental Factor: sampling site:distal portion | RNA-Seq | TRANSCRIPTOMIC | unspecified | PAIRED | ILLUMINA | Illumina NovaSeq 6000 | ERP123840 | Illumina NovaSeq 6000 paired end sequencing; RNA seq of proximal middle and distal caudal fin tissue of thyroid ablated zebrafish hypothyroid HypoTH and wild type zebrafish euthyroid EuTH | ENA FIRST PUBLIC:2022 04 12|ENA LAST UPDATE:2022 04 12 | HD2_CRRA200004864-1a_HV532DSXX_L4_1.fq.gz HD2_CRRA200004864-1a_HV532DSXX_L4_2.fq.gz | fastq fastq | 8313797700.0 | 27712659.0 | E MTAB 9528:HD2 CRRA200004864 1a HV532DSXX L4 | 0:150 1:150 | A:2273004120;C:1900982980;G:1898877384;T:2240725057;N:208159 | 150 | 150 | 2273004120 | 1900982980 | 1898877384 | 2240725057 | 208159 | ERX4504050 | ERS5050793 | ERA2831606 | Boston College|European Nucleotide Archive | Boston College|European Nucleotide Archive | 2 | 0.92628 | 0.92613 | 0.09471 | 0.09395 | 0.72003 | 0.72054 | 0.47995 | 0.47659 | 150 | 150 | B | B | biological fallback assumption | illumina | novaseq_era | unknown | unknown | nebnext | bulk | unknown | unknown | United States | 2020-09-04 | Adult | Adult | Multi-tissue | Multi-system | |||||||||||||
| 9996 | 9996 | ERR4568376 | ERX4504049 | ERS5050792 | ERP123840 | PRJEB40227 | RNA seq of proximal middle and distal caudal fin tissue of thyroid ablated zebrafish hypothyroid HypoTH and wild type zebrafish euthyroid EuTH | E-MTAB-9528 | Other | The goal of this experiment is to test the hypothesis that hypothyroid zebrafish caudal fin possess proximalized gene expression profile. Transcriptome data was generated for proximal middle and distal adult fin tissue of hypothyroid zebrafish with euthyroid sibling fish as control. | ENA FIRST PUBLIC:2022 04 12|ENA LAST UPDATE:2022 04 12 | Protocols: Intact caudal fin tissue was sampled from sibling adults >18 SL reared under euthyroid or hypothyroid conditions. Each fish was first anesthetized with tricaine MS 222 0.02% w/v in system water and the entire caudal fin was amputated using a razor blade. Proximal middle and distal regions of the fin were sampled immediately post and flash frozen in a dry ice ethanol bath. Three biological replicates each containing five fin regions were collected for both TH backgrounds. RNA was extracted the same day with Zymo Quick RNA Microprep kit R1050 Zymo Research Irvine CA USA. Sample libraries were made with NEBNext Ultra II RNA Library Prep kit | HypoTH Distal Rep1 | SAMEA7292222 | BOSTON COLLEGE | ENA FIRST PUBLIC:2021 04 11T00:31:24Z|ENA LAST UPDATE:2020 09 04T16:33:06Z|External Id:SAMEA7292222|INSDC center name:BOSTON COLLEGE|INSDC first public:2021 04 11T00:31:24Z|INSDC last update:2020 09 04T16:33:06Z|INSDC status:public|Submitter Id:E MTAB 9528:HypoTH Distal Rep1|broker name:ArrayExpress|common name:zebrafish|developmental stage:adult|organism part:caudal fin|phenotype:hypothyroid fish|sample name:E MTAB 9528:HypoTH Distal Rep1|sampling site:distal portion|scientific name:Danio rerio|strain:Tgtg:nVenus 2a nfnB | Illumina NovaSeq 6000 paired end sequencing; RNA seq of proximal middle and distal caudal fin tissue of thyroid ablated zebrafish hypothyroid HypoTH and wild type zebrafish euthyroid EuTH | E MTAB 9528:HypoTH Distal Rep1 p | HypoTH Distal Rep1 p | RNA seq of proximal middle and distal caudal fin tissue of thyroid ablated zebrafish hypothyroid HypoTH and wild type zebrafish euthyroid EuTH | Intact caudal fin tissue was sampled from sibling adults >18 SL reared under euthyroid or hypothyroid conditions. Each fish was first anesthetized with tricaine MS 222 0.02% w/v in system water and the entire caudal fin was amputated using a razor blade. Proximal middle and distal regions of the fin were sampled immediately post and flash frozen in a dry ice ethanol bath. Three biological replicates each containing five fin regions were collected for both TH backgrounds. RNA was extracted the same day with Zymo Quick RNA Microprep kit R1050 Zymo Research Irvine CA USA. Sample libraries were made with NEBNext Ultra II RNA Library Prep kit | Experimental Factor: phenotype:hypothyroid fish|Experimental Factor: sampling site:distal portion | RNA-Seq | TRANSCRIPTOMIC | unspecified | PAIRED | ILLUMINA | Illumina NovaSeq 6000 | ERP123840 | Illumina NovaSeq 6000 paired end sequencing; RNA seq of proximal middle and distal caudal fin tissue of thyroid ablated zebrafish hypothyroid HypoTH and wild type zebrafish euthyroid EuTH | ENA FIRST PUBLIC:2022 04 12|ENA LAST UPDATE:2022 04 12 | HD1_CRRA200004863-1a_HV532DSXX_L4_1.fq.gz HD1_CRRA200004863-1a_HV532DSXX_L4_2.fq.gz | fastq fastq | 7169598300.0 | 23898661.0 | E MTAB 9528:HD1 CRRA200004863 1a HV532DSXX L4 | 0:150 1:150 | A:1941925699;C:1655391745;G:1656382398;T:1915720427;N:178031 | 150 | 150 | 1941925699 | 1655391745 | 1656382398 | 1915720427 | 178031 | ERX4504049 | ERS5050792 | ERA2831606 | Boston College|European Nucleotide Archive | Boston College|European Nucleotide Archive | 2 | 0.92656 | 0.92587 | 0.09244 | 0.09155 | 0.72537 | 0.72577 | 0.483 | 0.48459 | 150 | 150 | B | B | biological fallback assumption | illumina | novaseq_era | unknown | unknown | nebnext | bulk | unknown | unknown | United States | 2020-09-04 | Adult | Adult | Multi-tissue | Multi-system | |||||||||||||
| 9997 | 9997 | ERR4568375 | ERX4504048 | ERS5050791 | ERP123840 | PRJEB40227 | RNA seq of proximal middle and distal caudal fin tissue of thyroid ablated zebrafish hypothyroid HypoTH and wild type zebrafish euthyroid EuTH | E-MTAB-9528 | Other | The goal of this experiment is to test the hypothesis that hypothyroid zebrafish caudal fin possess proximalized gene expression profile. Transcriptome data was generated for proximal middle and distal adult fin tissue of hypothyroid zebrafish with euthyroid sibling fish as control. | ENA FIRST PUBLIC:2022 04 12|ENA LAST UPDATE:2022 04 12 | Protocols: Intact caudal fin tissue was sampled from sibling adults >18 SL reared under euthyroid or hypothyroid conditions. Each fish was first anesthetized with tricaine MS 222 0.02% w/v in system water and the entire caudal fin was amputated using a razor blade. Proximal middle and distal regions of the fin were sampled immediately post and flash frozen in a dry ice ethanol bath. Three biological replicates each containing five fin regions were collected for both TH backgrounds. RNA was extracted the same day with Zymo Quick RNA Microprep kit R1050 Zymo Research Irvine CA USA. Sample libraries were made with NEBNext Ultra II RNA Library Prep kit | EuTH Distal Rep3 | SAMEA7292221 | BOSTON COLLEGE | ENA FIRST PUBLIC:2021 04 11T00:31:24Z|ENA LAST UPDATE:2020 09 04T16:33:06Z|External Id:SAMEA7292221|INSDC center name:BOSTON COLLEGE|INSDC first public:2021 04 11T00:31:24Z|INSDC last update:2020 09 04T16:33:06Z|INSDC status:public|Submitter Id:E MTAB 9528:EuTH Distal Rep3|broker name:ArrayExpress|common name:zebrafish|developmental stage:adult|organism part:caudal fin|phenotype:euthyroid fish|sample name:E MTAB 9528:EuTH Distal Rep3|sampling site:distal portion|scientific name:Danio rerio|strain:Tgtg:nVenus 2a nfnB | Illumina NovaSeq 6000 paired end sequencing; RNA seq of proximal middle and distal caudal fin tissue of thyroid ablated zebrafish hypothyroid HypoTH and wild type zebrafish euthyroid EuTH | E MTAB 9528:EuTH Distal Rep3 p | EuTH Distal Rep3 p | RNA seq of proximal middle and distal caudal fin tissue of thyroid ablated zebrafish hypothyroid HypoTH and wild type zebrafish euthyroid EuTH | Intact caudal fin tissue was sampled from sibling adults >18 SL reared under euthyroid or hypothyroid conditions. Each fish was first anesthetized with tricaine MS 222 0.02% w/v in system water and the entire caudal fin was amputated using a razor blade. Proximal middle and distal regions of the fin were sampled immediately post and flash frozen in a dry ice ethanol bath. Three biological replicates each containing five fin regions were collected for both TH backgrounds. RNA was extracted the same day with Zymo Quick RNA Microprep kit R1050 Zymo Research Irvine CA USA. Sample libraries were made with NEBNext Ultra II RNA Library Prep kit | Experimental Factor: phenotype:euthyroid fish|Experimental Factor: sampling site:distal portion | RNA-Seq | TRANSCRIPTOMIC | unspecified | PAIRED | ILLUMINA | Illumina NovaSeq 6000 | ERP123840 | Illumina NovaSeq 6000 paired end sequencing; RNA seq of proximal middle and distal caudal fin tissue of thyroid ablated zebrafish hypothyroid HypoTH and wild type zebrafish euthyroid EuTH | ENA FIRST PUBLIC:2022 04 12|ENA LAST UPDATE:2022 04 12 | ED3_CRRA200004856-1a_HV532DSXX_L4_1.fq.gz ED3_CRRA200004856-1a_HV532DSXX_L4_2.fq.gz | fastq fastq | 8216298900.0 | 27387663.0 | E MTAB 9528:ED3 CRRA200004856 1a HV532DSXX L4 | 0:150 1:150 | A:2202070307;C:1915188230;G:1918164478;T:2180672072;N:203813 | 150 | 150 | 2202070307 | 1915188230 | 1918164478 | 2180672072 | 203813 | ERX4504048 | ERS5050791 | ERA2831606 | Boston College|European Nucleotide Archive | Boston College|European Nucleotide Archive | 2 | 0.93043 | 0.92995 | 0.07828 | 0.07796 | 0.73799 | 0.73912 | 0.46784 | 0.47067 | 150 | 150 | B | B | biological fallback assumption | illumina | novaseq_era | unknown | unknown | nebnext | bulk | unknown | unknown | United States | 2020-09-04 | Adult | Adult | Multi-tissue | Multi-system | |||||||||||||
| 9998 | 9998 | ERR4568374 | ERX4504047 | ERS5050790 | ERP123840 | PRJEB40227 | RNA seq of proximal middle and distal caudal fin tissue of thyroid ablated zebrafish hypothyroid HypoTH and wild type zebrafish euthyroid EuTH | E-MTAB-9528 | Other | The goal of this experiment is to test the hypothesis that hypothyroid zebrafish caudal fin possess proximalized gene expression profile. Transcriptome data was generated for proximal middle and distal adult fin tissue of hypothyroid zebrafish with euthyroid sibling fish as control. | ENA FIRST PUBLIC:2022 04 12|ENA LAST UPDATE:2022 04 12 | Protocols: Intact caudal fin tissue was sampled from sibling adults >18 SL reared under euthyroid or hypothyroid conditions. Each fish was first anesthetized with tricaine MS 222 0.02% w/v in system water and the entire caudal fin was amputated using a razor blade. Proximal middle and distal regions of the fin were sampled immediately post and flash frozen in a dry ice ethanol bath. Three biological replicates each containing five fin regions were collected for both TH backgrounds. RNA was extracted the same day with Zymo Quick RNA Microprep kit R1050 Zymo Research Irvine CA USA. Sample libraries were made with NEBNext Ultra II RNA Library Prep kit | EuTH Distal Rep2 | SAMEA7292220 | BOSTON COLLEGE | ENA FIRST PUBLIC:2021 04 11T00:31:24Z|ENA LAST UPDATE:2020 09 04T16:33:06Z|External Id:SAMEA7292220|INSDC center name:BOSTON COLLEGE|INSDC first public:2021 04 11T00:31:24Z|INSDC last update:2020 09 04T16:33:06Z|INSDC status:public|Submitter Id:E MTAB 9528:EuTH Distal Rep2|broker name:ArrayExpress|common name:zebrafish|developmental stage:adult|organism part:caudal fin|phenotype:euthyroid fish|sample name:E MTAB 9528:EuTH Distal Rep2|sampling site:distal portion|scientific name:Danio rerio|strain:Tgtg:nVenus 2a nfnB | Illumina NovaSeq 6000 paired end sequencing; RNA seq of proximal middle and distal caudal fin tissue of thyroid ablated zebrafish hypothyroid HypoTH and wild type zebrafish euthyroid EuTH | E MTAB 9528:EuTH Distal Rep2 p | EuTH Distal Rep2 p | RNA seq of proximal middle and distal caudal fin tissue of thyroid ablated zebrafish hypothyroid HypoTH and wild type zebrafish euthyroid EuTH | Intact caudal fin tissue was sampled from sibling adults >18 SL reared under euthyroid or hypothyroid conditions. Each fish was first anesthetized with tricaine MS 222 0.02% w/v in system water and the entire caudal fin was amputated using a razor blade. Proximal middle and distal regions of the fin were sampled immediately post and flash frozen in a dry ice ethanol bath. Three biological replicates each containing five fin regions were collected for both TH backgrounds. RNA was extracted the same day with Zymo Quick RNA Microprep kit R1050 Zymo Research Irvine CA USA. Sample libraries were made with NEBNext Ultra II RNA Library Prep kit | Experimental Factor: phenotype:euthyroid fish|Experimental Factor: sampling site:distal portion | RNA-Seq | TRANSCRIPTOMIC | unspecified | PAIRED | ILLUMINA | Illumina NovaSeq 6000 | ERP123840 | Illumina NovaSeq 6000 paired end sequencing; RNA seq of proximal middle and distal caudal fin tissue of thyroid ablated zebrafish hypothyroid HypoTH and wild type zebrafish euthyroid EuTH | ENA FIRST PUBLIC:2022 04 12|ENA LAST UPDATE:2022 04 12 | ED2_CRRA200004855-1a_HV532DSXX_L4_1.fq.gz ED2_CRRA200004855-1a_HV532DSXX_L4_2.fq.gz | fastq fastq | 6629601000.0 | 22098670.0 | E MTAB 9528:ED2 CRRA200004855 1a HV532DSXX L4 | 0:150 1:150 | A:1741036830;C:1583210201;G:1581636803;T:1723551874;N:165292 | 150 | 150 | 1741036830 | 1583210201 | 1581636803 | 1723551874 | 165292 | ERX4504047 | ERS5050790 | ERA2831606 | Boston College|European Nucleotide Archive | Boston College|European Nucleotide Archive | 2 | 0.93472 | 0.93506 | 0.0948 | 0.09463 | 0.75235 | 0.75235 | 0.49522 | 0.49267 | 150 | 150 | B | B | biological fallback assumption | illumina | novaseq_era | unknown | unknown | nebnext | bulk | unknown | unknown | United States | 2020-09-04 | Adult | Adult | Multi-tissue | Multi-system | |||||||||||||
| 9999 | 9999 | ERR4568373 | ERX4504046 | ERS5050789 | ERP123840 | PRJEB40227 | RNA seq of proximal middle and distal caudal fin tissue of thyroid ablated zebrafish hypothyroid HypoTH and wild type zebrafish euthyroid EuTH | E-MTAB-9528 | Other | The goal of this experiment is to test the hypothesis that hypothyroid zebrafish caudal fin possess proximalized gene expression profile. Transcriptome data was generated for proximal middle and distal adult fin tissue of hypothyroid zebrafish with euthyroid sibling fish as control. | ENA FIRST PUBLIC:2022 04 12|ENA LAST UPDATE:2022 04 12 | Protocols: Intact caudal fin tissue was sampled from sibling adults >18 SL reared under euthyroid or hypothyroid conditions. Each fish was first anesthetized with tricaine MS 222 0.02% w/v in system water and the entire caudal fin was amputated using a razor blade. Proximal middle and distal regions of the fin were sampled immediately post and flash frozen in a dry ice ethanol bath. Three biological replicates each containing five fin regions were collected for both TH backgrounds. RNA was extracted the same day with Zymo Quick RNA Microprep kit R1050 Zymo Research Irvine CA USA. Sample libraries were made with NEBNext Ultra II RNA Library Prep kit | EuTH Distal Rep1 | SAMEA7292219 | BOSTON COLLEGE | ENA FIRST PUBLIC:2021 04 11T00:31:24Z|ENA LAST UPDATE:2020 09 04T16:33:06Z|External Id:SAMEA7292219|INSDC center name:BOSTON COLLEGE|INSDC first public:2021 04 11T00:31:24Z|INSDC last update:2020 09 04T16:33:06Z|INSDC status:public|Submitter Id:E MTAB 9528:EuTH Distal Rep1|broker name:ArrayExpress|common name:zebrafish|developmental stage:adult|organism part:caudal fin|phenotype:euthyroid fish|sample name:E MTAB 9528:EuTH Distal Rep1|sampling site:distal portion|scientific name:Danio rerio|strain:Tgtg:nVenus 2a nfnB | Illumina NovaSeq 6000 paired end sequencing; RNA seq of proximal middle and distal caudal fin tissue of thyroid ablated zebrafish hypothyroid HypoTH and wild type zebrafish euthyroid EuTH | E MTAB 9528:EuTH Distal Rep1 p | EuTH Distal Rep1 p | RNA seq of proximal middle and distal caudal fin tissue of thyroid ablated zebrafish hypothyroid HypoTH and wild type zebrafish euthyroid EuTH | Intact caudal fin tissue was sampled from sibling adults >18 SL reared under euthyroid or hypothyroid conditions. Each fish was first anesthetized with tricaine MS 222 0.02% w/v in system water and the entire caudal fin was amputated using a razor blade. Proximal middle and distal regions of the fin were sampled immediately post and flash frozen in a dry ice ethanol bath. Three biological replicates each containing five fin regions were collected for both TH backgrounds. RNA was extracted the same day with Zymo Quick RNA Microprep kit R1050 Zymo Research Irvine CA USA. Sample libraries were made with NEBNext Ultra II RNA Library Prep kit | Experimental Factor: phenotype:euthyroid fish|Experimental Factor: sampling site:distal portion | RNA-Seq | TRANSCRIPTOMIC | unspecified | PAIRED | ILLUMINA | Illumina NovaSeq 6000 | ERP123840 | Illumina NovaSeq 6000 paired end sequencing; RNA seq of proximal middle and distal caudal fin tissue of thyroid ablated zebrafish hypothyroid HypoTH and wild type zebrafish euthyroid EuTH | ENA FIRST PUBLIC:2022 04 12|ENA LAST UPDATE:2022 04 12 | ED1_CRRA200004854-1a_HV532DSXX_L4_1.fq.gz ED1_CRRA200004854-1a_HV532DSXX_L4_2.fq.gz | fastq fastq | 7261648200.0 | 24205494.0 | E MTAB 9528:ED1 CRRA200004854 1a HV532DSXX L4 | 0:150 1:150 | A:1943655774;C:1694798398;G:1699834504;T:1923179081;N:180443 | 150 | 150 | 1943655774 | 1694798398 | 1699834504 | 1923179081 | 180443 | ERX4504046 | ERS5050789 | ERA2831606 | Boston College|European Nucleotide Archive | Boston College|European Nucleotide Archive | 2 | 0.92967 | 0.92953 | 0.08728 | 0.08781 | 0.73819 | 0.73797 | 0.49368 | 0.49233 | 150 | 150 | B | B | biological fallback assumption | illumina | novaseq_era | unknown | unknown | nebnext | bulk | unknown | unknown | United States | 2020-09-04 | Adult | Adult | Multi-tissue | Multi-system | |||||||||||||
| 10056 | 10056 | ERR4691987 | ERX4613068 | ERS5216074 | ERP124560 | PRJEB40865 | RNA seq of zebrafish adult MCU mutant hearts | ena-STUDY-UCLA-16-10-2020-22:30:44:295-390 | Other | We generated a zebrafish mitochondrial calcium uniporter MCU mutant that is able to survive to maturity but exhibits cardiac function and structure defects. We used RNA seq to help understand the gene expression changes that occur in the adult MCU heart. | ENA FIRST PUBLIC:2020 12 10|ENA LAST UPDATE:2020 10 16 | zebrafish adult heart RNA | SAMEA7457891 | UCLA | ENA FIRST PUBLIC:2020 12 10T17:06:02Z|ENA LAST UPDATE:2020 10 16T22:30:48Z|External Id:SAMEA7457891|INSDC center name:UCLA|INSDC first public:2020 12 10T17:06:02Z|INSDC last update:2020 10 16T22:30:48Z|INSDC status:public|Submitter Id:mcu mutant 2|common name:zebrafish|dev stage:adult|sample name:mcu mutant 2|scientific name:Danio rerio|tissue type:heart | Illumina HiSeq 3000 sequencing | ena EXPERIMENT UCLA 16 10 2020 22:30:43:819 4 | unspecified | 1 | RNA-Seq | TRANSCRIPTOMIC | unspecified | SINGLE | ILLUMINA | Illumina HiSeq 3000 | ERP124560 | Illumina HiSeq 3000 sequencing | ENA FIRST PUBLIC:2020 12 10|ENA LAST UPDATE:2020 10 21 | MCU_2.fastq.gz | fastq | 1291626898.0 | 35072619.0 | ena RUN UCLA 16 10 2020 22:30:43:819 4 | 0:36.83 1:0 | A:364596432;C:305716590;G:295397140;T:324498501;N:1418235 | 36 | 0 | 364596432 | 305716590 | 295397140 | 324498501 | 1418235 | ERX4613068 | ERS5216074 | ERA2987364 | European Nucleotide Archive | University of California, Los Angeles, USA | 1 | 0.93311 | 0.08182 | 0.75852 | 0.54813 | 37 | B | usable mapping rate | illumina | hiseq_era | unknown | unknown | unknown | bulk | unknown | unknown | United States | 2020-10-16 | Adult | Adult | Heart | Cardiovascular System | ||||||||||||||||||||||
| 10057 | 10057 | ERR4691986 | ERX4613067 | ERS5216073 | ERP124560 | PRJEB40865 | RNA seq of zebrafish adult MCU mutant hearts | ena-STUDY-UCLA-16-10-2020-22:30:44:295-390 | Other | We generated a zebrafish mitochondrial calcium uniporter MCU mutant that is able to survive to maturity but exhibits cardiac function and structure defects. We used RNA seq to help understand the gene expression changes that occur in the adult MCU heart. | ENA FIRST PUBLIC:2020 12 10|ENA LAST UPDATE:2020 10 16 | zebrafish adult heart RNA | SAMEA7457890 | UCLA | ENA FIRST PUBLIC:2020 12 10T17:06:02Z|ENA LAST UPDATE:2020 10 16T22:30:48Z|External Id:SAMEA7457890|INSDC center name:UCLA|INSDC first public:2020 12 10T17:06:02Z|INSDC last update:2020 10 16T22:30:48Z|INSDC status:public|Submitter Id:mcu mutant 1|common name:zebrafish|dev stage:adult|sample name:mcu mutant 1|scientific name:Danio rerio|tissue type:heart | Illumina HiSeq 3000 sequencing | ena EXPERIMENT UCLA 16 10 2020 22:30:43:819 3 | unspecified | 1 | RNA-Seq | TRANSCRIPTOMIC | unspecified | SINGLE | ILLUMINA | Illumina HiSeq 3000 | ERP124560 | Illumina HiSeq 3000 sequencing | ENA FIRST PUBLIC:2020 12 10|ENA LAST UPDATE:2020 10 21 | MCU_1.fastq.gz | fastq | 1236033124.0 | 33559740.0 | ena RUN UCLA 16 10 2020 22:30:43:819 3 | 0:36.83 1:0 | A:348518065;C:293502111;G:279181983;T:313506799;N:1324166 | 36 | 0 | 348518065 | 293502111 | 279181983 | 313506799 | 1324166 | ERX4613067 | ERS5216073 | ERA2987364 | European Nucleotide Archive | University of California, Los Angeles, USA | 1 | 0.92798 | 0.07907 | 0.7697 | 0.5488 | 37 | B | usable mapping rate | illumina | hiseq_era | unknown | unknown | unknown | bulk | unknown | unknown | United States | 2020-10-16 | Adult | Adult | Heart | Cardiovascular System | ||||||||||||||||||||||
| 10058 | 10058 | ERR4691985 | ERX4613066 | ERS5216072 | ERP124560 | PRJEB40865 | RNA seq of zebrafish adult MCU mutant hearts | ena-STUDY-UCLA-16-10-2020-22:30:44:295-390 | Other | We generated a zebrafish mitochondrial calcium uniporter MCU mutant that is able to survive to maturity but exhibits cardiac function and structure defects. We used RNA seq to help understand the gene expression changes that occur in the adult MCU heart. | ENA FIRST PUBLIC:2020 12 10|ENA LAST UPDATE:2020 10 16 | zebrafish adult heart RNA | SAMEA7457889 | UCLA | ENA FIRST PUBLIC:2020 12 10T17:06:02Z|ENA LAST UPDATE:2020 10 16T22:30:48Z|External Id:SAMEA7457889|INSDC center name:UCLA|INSDC first public:2020 12 10T17:06:02Z|INSDC last update:2020 10 16T22:30:48Z|INSDC status:public|Submitter Id:wildtype 2|common name:zebrafish|dev stage:adult|sample name:wildtype 2|scientific name:Danio rerio|tissue type:heart | Illumina HiSeq 3000 sequencing | ena EXPERIMENT UCLA 16 10 2020 22:30:43:819 2 | unspecified | 1 | RNA-Seq | TRANSCRIPTOMIC | unspecified | SINGLE | ILLUMINA | Illumina HiSeq 3000 | ERP124560 | Illumina HiSeq 3000 sequencing | ENA FIRST PUBLIC:2020 12 10|ENA LAST UPDATE:2020 10 21 | WT_2.fastq.gz | fastq | 1180831209.0 | 32069533.0 | ena RUN UCLA 16 10 2020 22:30:43:819 2 | 0:36.82 1:0 | A:328604642;C:281065336;G:278743466;T:291039015;N:1378750 | 36 | 0 | 328604642 | 281065336 | 278743466 | 291039015 | 1378750 | ERX4613066 | ERS5216072 | ERA2987364 | European Nucleotide Archive | University of California, Los Angeles, USA | 1 | 0.92319 | 0.08946 | 0.75706 | 0.49996 | 37 | B | usable mapping rate | illumina | hiseq_era | unknown | unknown | unknown | bulk | unknown | unknown | United States | 2020-10-16 | Adult | Adult | Heart | Cardiovascular System | ||||||||||||||||||||||
| 10059 | 10059 | ERR4691984 | ERX4613065 | ERS5216071 | ERP124560 | PRJEB40865 | RNA seq of zebrafish adult MCU mutant hearts | ena-STUDY-UCLA-16-10-2020-22:30:44:295-390 | Other | We generated a zebrafish mitochondrial calcium uniporter MCU mutant that is able to survive to maturity but exhibits cardiac function and structure defects. We used RNA seq to help understand the gene expression changes that occur in the adult MCU heart. | ENA FIRST PUBLIC:2020 12 10|ENA LAST UPDATE:2020 10 16 | zebrafish adult heart RNA | SAMEA7457888 | UCLA | ENA FIRST PUBLIC:2020 12 10T17:06:02Z|ENA LAST UPDATE:2020 10 16T22:30:48Z|External Id:SAMEA7457888|INSDC center name:UCLA|INSDC first public:2020 12 10T17:06:02Z|INSDC last update:2020 10 16T22:30:48Z|INSDC status:public|Submitter Id:wildtype 1|common name:zebrafish|dev stage:adult|sample name:wildtype 1|scientific name:Danio rerio|tissue type:heart | Illumina HiSeq 3000 sequencing | ena EXPERIMENT UCLA 16 10 2020 22:30:43:819 1 | unspecified | 1 | RNA-Seq | TRANSCRIPTOMIC | unspecified | SINGLE | ILLUMINA | Illumina HiSeq 3000 | ERP124560 | Illumina HiSeq 3000 sequencing | ENA FIRST PUBLIC:2020 12 10|ENA LAST UPDATE:2020 10 21 | WT_1.fastq.gz | fastq | 1428414407.0 | 38793098.0 | ena RUN UCLA 16 10 2020 22:30:43:819 1 | 0:36.82 1:0 | A:398925739;C:338731211;G:333527196;T:355553981;N:1676280 | 36 | 0 | 398925739 | 338731211 | 333527196 | 355553981 | 1676280 | ERX4613065 | ERS5216071 | ERA2987364 | European Nucleotide Archive | University of California, Los Angeles, USA | 1 | 0.92407 | 0.08758 | 0.75726 | 0.4969 | 37 | B | usable mapping rate | illumina | hiseq_era | unknown | unknown | unknown | bulk | unknown | unknown | United States | 2020-10-16 | Adult | Adult | Heart | Cardiovascular System | ||||||||||||||||||||||
| 32162 | 32162 | SRR29095835 | SRX24619914 | SRS21357066 | SRP508906 | PRJNA1113956 | A zebrafish model of diabetic nephropathy | PRJNA1113956 | Other | We created a diabetic nephropathy DN model in zebrafish by crossing diabetic Tgacta1:dnIGF1R EGFP and proteinuria tracing Tgl fabp::VDBP GFPlines named zMIR/VDBP. Overfed adult zMIR/VDBP fish developed severe hyperglycemia and proteinuria which were not observed in wild type zebrafish. Renal histopathology revealed human DN like characteristics such as glomerular basement membrane thickening foot process effacement and glomerular sclerosis. RNA sequencing analysis demonstrated that DN zebrafish kidneys exhibited transcriptional patterns similar to those seen in human DN pathogenesis. Notably the phosphatidylinositol 3 kinase PI3K/protein kinase B Akt signaling pathway was activated a phenomenon observed in the early phase of human DN. | 6 month zebrafish kidney 1 | DN zebrafish | strain:zMIR/VDBP|age:6 mpf|dev stage:Adult|collection date:2023 03 30|geo loc name:Japan|sex:not determined|tissue:kidney|BioSampleModel:Model organism or animal | 6 month zebrafish with proteinuria kidney 4 | OF 4 | OF 4 | 6 month zebrafish with proteinuria kidney 4 | RNA-Seq | TRANSCRIPTOMIC | unspecified | PAIRED | ILLUMINA | Illumina NovaSeq 6000 | SRP508906 | OF_4_1.fq OF_4_2.fq | fastq fastq | 4377669000.0 | 14592230.0 | OF 4 1.fq | 0:150 1:150 | A:1194166573;C:999239529;G:1001594280;T:1182651631;N:16987 | 150 | 150 | 1194166573 | 999239529 | 1001594280 | 1182651631 | 16987 | SRX24619914 | SRS21357066 | SRA1872692 | Mie Univeristy|School of Medicine | Mie Univeristy | B | B | biological fallback assumption | illumina | novaseq_era | unknown | unknown | unknown | bulk | unknown | unknown | Japan | 2024-05-21 | Adult | Adult | Kidney | Renal System | |||||||||||||||||||||||||||||||
| 32163 | 32163 | SRR29095836 | SRX24619913 | SRS21357066 | SRP508906 | PRJNA1113956 | A zebrafish model of diabetic nephropathy | PRJNA1113956 | Other | We created a diabetic nephropathy DN model in zebrafish by crossing diabetic Tgacta1:dnIGF1R EGFP and proteinuria tracing Tgl fabp::VDBP GFPlines named zMIR/VDBP. Overfed adult zMIR/VDBP fish developed severe hyperglycemia and proteinuria which were not observed in wild type zebrafish. Renal histopathology revealed human DN like characteristics such as glomerular basement membrane thickening foot process effacement and glomerular sclerosis. RNA sequencing analysis demonstrated that DN zebrafish kidneys exhibited transcriptional patterns similar to those seen in human DN pathogenesis. Notably the phosphatidylinositol 3 kinase PI3K/protein kinase B Akt signaling pathway was activated a phenomenon observed in the early phase of human DN. | 6 month zebrafish kidney 1 | DN zebrafish | strain:zMIR/VDBP|age:6 mpf|dev stage:Adult|collection date:2023 03 30|geo loc name:Japan|sex:not determined|tissue:kidney|BioSampleModel:Model organism or animal | 6 month zebrafish with proteinuria kidney 3 | OF 3 | OF 3 | 6 month zebrafish with proteinuria kidney 3 | RNA-Seq | TRANSCRIPTOMIC | unspecified | PAIRED | ILLUMINA | Illumina NovaSeq 6000 | SRP508906 | OF_3_1.fq OF_3_2.fq | fastq fastq | 4798165200.0 | 15993884.0 | OF 3 1.fq | 0:150 1:150 | A:1290466714;C:1114007506;G:1115137813;T:1278535708;N:17459 | 150 | 150 | 1290466714 | 1114007506 | 1115137813 | 1278535708 | 17459 | SRX24619913 | SRS21357066 | SRA1872692 | Mie Univeristy|School of Medicine | Mie Univeristy | B | B | biological fallback assumption | illumina | novaseq_era | unknown | unknown | unknown | bulk | unknown | unknown | Japan | 2024-05-21 | Adult | Adult | Kidney | Renal System | |||||||||||||||||||||||||||||||
| 32164 | 32164 | SRR29095837 | SRX24619912 | SRS21357066 | SRP508906 | PRJNA1113956 | A zebrafish model of diabetic nephropathy | PRJNA1113956 | Other | We created a diabetic nephropathy DN model in zebrafish by crossing diabetic Tgacta1:dnIGF1R EGFP and proteinuria tracing Tgl fabp::VDBP GFPlines named zMIR/VDBP. Overfed adult zMIR/VDBP fish developed severe hyperglycemia and proteinuria which were not observed in wild type zebrafish. Renal histopathology revealed human DN like characteristics such as glomerular basement membrane thickening foot process effacement and glomerular sclerosis. RNA sequencing analysis demonstrated that DN zebrafish kidneys exhibited transcriptional patterns similar to those seen in human DN pathogenesis. Notably the phosphatidylinositol 3 kinase PI3K/protein kinase B Akt signaling pathway was activated a phenomenon observed in the early phase of human DN. | 6 month zebrafish kidney 1 | DN zebrafish | strain:zMIR/VDBP|age:6 mpf|dev stage:Adult|collection date:2023 03 30|geo loc name:Japan|sex:not determined|tissue:kidney|BioSampleModel:Model organism or animal | 6 month zebrafish with proteinuria kidney 2 | OF 2 | OF 2 | 6 month zebrafish with proteinuria kidney 2 | RNA-Seq | TRANSCRIPTOMIC | unspecified | PAIRED | ILLUMINA | Illumina NovaSeq 6000 | SRP508906 | OF_2_1.fq OF_2_2.fq | fastq fastq | 5661202800.0 | 18870676.0 | OF 2 1.fq | 0:150 1:150 | A:1549085619;C:1287400217;G:1288853902;T:1535841249;N:21813 | 150 | 150 | 1549085619 | 1287400217 | 1288853902 | 1535841249 | 21813 | SRX24619912 | SRS21357066 | SRA1872692 | Mie Univeristy|School of Medicine | Mie Univeristy | B | B | biological fallback assumption | illumina | novaseq_era | unknown | unknown | unknown | bulk | unknown | unknown | Japan | 2024-05-21 | Adult | Adult | Kidney | Renal System | |||||||||||||||||||||||||||||||
| 32165 | 32165 | SRR29095838 | SRX24619911 | SRS21357066 | SRP508906 | PRJNA1113956 | A zebrafish model of diabetic nephropathy | PRJNA1113956 | Other | We created a diabetic nephropathy DN model in zebrafish by crossing diabetic Tgacta1:dnIGF1R EGFP and proteinuria tracing Tgl fabp::VDBP GFPlines named zMIR/VDBP. Overfed adult zMIR/VDBP fish developed severe hyperglycemia and proteinuria which were not observed in wild type zebrafish. Renal histopathology revealed human DN like characteristics such as glomerular basement membrane thickening foot process effacement and glomerular sclerosis. RNA sequencing analysis demonstrated that DN zebrafish kidneys exhibited transcriptional patterns similar to those seen in human DN pathogenesis. Notably the phosphatidylinositol 3 kinase PI3K/protein kinase B Akt signaling pathway was activated a phenomenon observed in the early phase of human DN. | 6 month zebrafish kidney 1 | DN zebrafish | strain:zMIR/VDBP|age:6 mpf|dev stage:Adult|collection date:2023 03 30|geo loc name:Japan|sex:not determined|tissue:kidney|BioSampleModel:Model organism or animal | 6 month zebrafish with proteinuria kidney 1 | OF 1 | OF 1 | 6 month zebrafish with proteinuria kidney 1 | RNA-Seq | TRANSCRIPTOMIC | unspecified | PAIRED | ILLUMINA | Illumina NovaSeq 6000 | SRP508906 | OF_1_1.fq OF_1_2.fq | fastq fastq | 5957895600.0 | 19859652.0 | OF 1 1.fq | 0:150 1:150 | A:1627320757;C:1359602784;G:1360982917;T:1609967331;N:21811 | 150 | 150 | 1627320757 | 1359602784 | 1360982917 | 1609967331 | 21811 | SRX24619911 | SRS21357066 | SRA1872692 | Mie Univeristy|School of Medicine | Mie Univeristy | B | B | biological fallback assumption | illumina | novaseq_era | unknown | unknown | unknown | bulk | unknown | unknown | Japan | 2024-05-21 | Adult | Adult | Kidney | Renal System | |||||||||||||||||||||||||||||||
| 32166 | 32166 | SRR29095839 | SRX24619910 | SRS21357066 | SRP508906 | PRJNA1113956 | A zebrafish model of diabetic nephropathy | PRJNA1113956 | Other | We created a diabetic nephropathy DN model in zebrafish by crossing diabetic Tgacta1:dnIGF1R EGFP and proteinuria tracing Tgl fabp::VDBP GFPlines named zMIR/VDBP. Overfed adult zMIR/VDBP fish developed severe hyperglycemia and proteinuria which were not observed in wild type zebrafish. Renal histopathology revealed human DN like characteristics such as glomerular basement membrane thickening foot process effacement and glomerular sclerosis. RNA sequencing analysis demonstrated that DN zebrafish kidneys exhibited transcriptional patterns similar to those seen in human DN pathogenesis. Notably the phosphatidylinositol 3 kinase PI3K/protein kinase B Akt signaling pathway was activated a phenomenon observed in the early phase of human DN. | 6 month zebrafish kidney 1 | DN zebrafish | strain:zMIR/VDBP|age:6 mpf|dev stage:Adult|collection date:2023 03 30|geo loc name:Japan|sex:not determined|tissue:kidney|BioSampleModel:Model organism or animal | 6 month zebrafish kidney 4 | NF 6 | NF 6 | 6 month zebrafish kidney 4 | RNA-Seq | TRANSCRIPTOMIC | unspecified | PAIRED | ILLUMINA | Illumina NovaSeq 6000 | SRP508906 | NF_6_1.fq NF_6_2.fq | fastq fastq | 5469504900.0 | 18231683.0 | NF 6 1.fq | 0:150 1:150 | A:1480833386;C:1260945093;G:1261275041;T:1466430429;N:20951 | 150 | 150 | 1480833386 | 1260945093 | 1261275041 | 1466430429 | 20951 | SRX24619910 | SRS21357066 | SRA1872692 | Mie Univeristy|School of Medicine | Mie Univeristy | B | B | biological fallback assumption | illumina | novaseq_era | unknown | unknown | unknown | bulk | unknown | unknown | Japan | 2024-05-21 | Adult | Adult | Kidney | Renal System | |||||||||||||||||||||||||||||||
| 32167 | 32167 | SRR29095840 | SRX24619909 | SRS21357066 | SRP508906 | PRJNA1113956 | A zebrafish model of diabetic nephropathy | PRJNA1113956 | Other | We created a diabetic nephropathy DN model in zebrafish by crossing diabetic Tgacta1:dnIGF1R EGFP and proteinuria tracing Tgl fabp::VDBP GFPlines named zMIR/VDBP. Overfed adult zMIR/VDBP fish developed severe hyperglycemia and proteinuria which were not observed in wild type zebrafish. Renal histopathology revealed human DN like characteristics such as glomerular basement membrane thickening foot process effacement and glomerular sclerosis. RNA sequencing analysis demonstrated that DN zebrafish kidneys exhibited transcriptional patterns similar to those seen in human DN pathogenesis. Notably the phosphatidylinositol 3 kinase PI3K/protein kinase B Akt signaling pathway was activated a phenomenon observed in the early phase of human DN. | 6 month zebrafish kidney 1 | DN zebrafish | strain:zMIR/VDBP|age:6 mpf|dev stage:Adult|collection date:2023 03 30|geo loc name:Japan|sex:not determined|tissue:kidney|BioSampleModel:Model organism or animal | 6 month zebrafish kidney 3 | NF 5 | NF 5 | 6 month zebrafish kidney 3 | RNA-Seq | TRANSCRIPTOMIC | unspecified | PAIRED | ILLUMINA | Illumina NovaSeq 6000 | SRP508906 | NF_5_1.fq NF_5_2.fq | fastq fastq | 6386781900.0 | 21289273.0 | NF 5 1.fq | 0:150 1:150 | A:1743273279;C:1458330156;G:1460747658;T:1724406616;N:24191 | 150 | 150 | 1743273279 | 1458330156 | 1460747658 | 1724406616 | 24191 | SRX24619909 | SRS21357066 | SRA1872692 | Mie Univeristy|School of Medicine | Mie Univeristy | B | B | biological fallback assumption | illumina | novaseq_era | unknown | unknown | unknown | bulk | unknown | unknown | Japan | 2024-05-21 | Adult | Adult | Kidney | Renal System | |||||||||||||||||||||||||||||||
| 32168 | 32168 | SRR29095841 | SRX24619908 | SRS21357066 | SRP508906 | PRJNA1113956 | A zebrafish model of diabetic nephropathy | PRJNA1113956 | Other | We created a diabetic nephropathy DN model in zebrafish by crossing diabetic Tgacta1:dnIGF1R EGFP and proteinuria tracing Tgl fabp::VDBP GFPlines named zMIR/VDBP. Overfed adult zMIR/VDBP fish developed severe hyperglycemia and proteinuria which were not observed in wild type zebrafish. Renal histopathology revealed human DN like characteristics such as glomerular basement membrane thickening foot process effacement and glomerular sclerosis. RNA sequencing analysis demonstrated that DN zebrafish kidneys exhibited transcriptional patterns similar to those seen in human DN pathogenesis. Notably the phosphatidylinositol 3 kinase PI3K/protein kinase B Akt signaling pathway was activated a phenomenon observed in the early phase of human DN. | 6 month zebrafish kidney 1 | DN zebrafish | strain:zMIR/VDBP|age:6 mpf|dev stage:Adult|collection date:2023 03 30|geo loc name:Japan|sex:not determined|tissue:kidney|BioSampleModel:Model organism or animal | 6 month zebrafish kidney 2 | NF 2 | NF 2 | 6 month zebrafish kidney 2 | RNA-Seq | TRANSCRIPTOMIC | unspecified | PAIRED | ILLUMINA | Illumina NovaSeq 6000 | SRP508906 | NF_2_1.fq NF_2_2.fq | fastq fastq | 5747851800.0 | 19159506.0 | NF 2 1.fq | 0:150 1:150 | A:1564796254;C:1316015979;G:1317516650;T:1549501774;N:21143 | 150 | 150 | 1564796254 | 1316015979 | 1317516650 | 1549501774 | 21143 | SRX24619908 | SRS21357066 | SRA1872692 | Mie Univeristy|School of Medicine | Mie Univeristy | B | B | biological fallback assumption | illumina | novaseq_era | unknown | unknown | unknown | bulk | unknown | unknown | Japan | 2024-05-21 | Adult | Adult | Kidney | Renal System | |||||||||||||||||||||||||||||||
| 32169 | 32169 | SRR29095842 | SRX24619907 | SRS21357066 | SRP508906 | PRJNA1113956 | A zebrafish model of diabetic nephropathy | PRJNA1113956 | Other | We created a diabetic nephropathy DN model in zebrafish by crossing diabetic Tgacta1:dnIGF1R EGFP and proteinuria tracing Tgl fabp::VDBP GFPlines named zMIR/VDBP. Overfed adult zMIR/VDBP fish developed severe hyperglycemia and proteinuria which were not observed in wild type zebrafish. Renal histopathology revealed human DN like characteristics such as glomerular basement membrane thickening foot process effacement and glomerular sclerosis. RNA sequencing analysis demonstrated that DN zebrafish kidneys exhibited transcriptional patterns similar to those seen in human DN pathogenesis. Notably the phosphatidylinositol 3 kinase PI3K/protein kinase B Akt signaling pathway was activated a phenomenon observed in the early phase of human DN. | 6 month zebrafish kidney 1 | DN zebrafish | strain:zMIR/VDBP|age:6 mpf|dev stage:Adult|collection date:2023 03 30|geo loc name:Japan|sex:not determined|tissue:kidney|BioSampleModel:Model organism or animal | 6 month zebrafish kidney 1 | NF 1 | NF 1 | 6 month zebrafish kidney 1 | RNA-Seq | TRANSCRIPTOMIC | unspecified | PAIRED | ILLUMINA | Illumina NovaSeq 6000 | SRP508906 | NF_1_1.fq NF_1_2.fq | fastq fastq | 5369089800.0 | 17896966.0 | NF 1 1.fq | 0:150 1:150 | A:1413369042;C:1273865602;G:1277141372;T:1404694133;N:19651 | 150 | 150 | 1413369042 | 1273865602 | 1277141372 | 1404694133 | 19651 | SRX24619907 | SRS21357066 | SRA1872692 | Mie Univeristy|School of Medicine | Mie Univeristy | B | B | biological fallback assumption | illumina | novaseq_era | unknown | unknown | unknown | bulk | unknown | unknown | Japan | 2024-05-21 | Adult | Adult | Kidney | Renal System | |||||||||||||||||||||||||||||||
| 36405 | 36405 | SRR546820 | SRX180750 | SRS347212 | SRP013950 | PRJNA169500 | Danio rerio embryonic promoterome | PRJNA169500 | Transcriptome Analysis | Goal of this study is to generate genome wide maps of transcription initiation throughout early embryonic development of zebrafish Danio rerio. Cap analysis of gene expression CAGE is used to detect transcription start sites at 1bp resolution. CAGE data is complemented by ChIPseq datasets for promoter associated histone modifications to study dynamic changes of promoter usage and chromatin configuration throughout early embryonic development. | pubmed:24531765 | Zebrafish wild type AB strain embryo prim6 stage | D. rerio prim6 embryo | D. rerio prim6 embryo | RNAseq D. rerio prim6 embryo | RNAseq D. rerio prim6 embryo | 1 | 1 | RNA-Seq | TRANSCRIPTOMIC | unspecified | PAIRED | ILLUMINA | Illumina Genome Analyzer IIx | <SPOT_DESCRIPTOR><SPOT_DECODE_SPEC><SPOT_LENGTH>152</SPOT_LENGTH><READ_SPEC><READ_INDEX>0</READ_INDEX><READ_CLASS>Application Read</READ_CLASS><READ_TYPE>Forward</READ_TYPE><BASE_COORD>1</BASE_COORD></READ_SPEC><READ_SPEC><READ_INDEX>1</READ_INDEX><READ_CLASS>Application Read</READ_CLASS><READ_TYPE>Reverse</READ_TYPE><BASE_COORD>77</BASE_COORD></READ_SPEC></SPOT_DECODE_SPEC></SPOT_DESCRIPTOR> | SRP013950 | RNAseq_prim6_2_fix.fastq | fastq | 3011340704.0 | 19811452.0 | RNAseq D. rerio prim6 embryo | 0:76 1:76 | A:727345664;C:767747833;G:787766862;T:725606403;N:2873942 | 76 | 76 | 727345664 | 767747833 | 787766862 | 725606403 | 2873942 | SRX180750 | SRS347212 | SRA055273 | University of Bergen | ZEPROME consortium | 2 | 0.94491 | 0.94492 | 0.04196 | 0.04323 | 0.76641 | 0.76928 | 0.48087 | 0.48787 | 76 | 76 | B | B | biological fallback assumption | illumina | early_illumina | unknown | unknown | unknown | bulk | unknown | unknown | Unknown | 2015-07-22 | Undetermined | Embryo | Embryo Imprecise | All anatomical structures | ||||||||||||||||||
| 36406 | 36406 | SRR546819 | SRX180749 | SRS347211 | SRP013950 | PRJNA169500 | Danio rerio embryonic promoterome | PRJNA169500 | Transcriptome Analysis | Goal of this study is to generate genome wide maps of transcription initiation throughout early embryonic development of zebrafish Danio rerio. Cap analysis of gene expression CAGE is used to detect transcription start sites at 1bp resolution. CAGE data is complemented by ChIPseq datasets for promoter associated histone modifications to study dynamic changes of promoter usage and chromatin configuration throughout early embryonic development. | pubmed:24531765 | Zebrafish wild type AB strain embryo 14 somites stage | D. rerio 14 somites embryo | D. rerio 14 somites embryo | RNAseq D. rerio 14 somites embryo | RNAseq D. rerio 14 somites embryo | 1 | 1 | RNA-Seq | TRANSCRIPTOMIC | unspecified | PAIRED | ILLUMINA | Illumina Genome Analyzer IIx | <SPOT_DESCRIPTOR><SPOT_DECODE_SPEC><SPOT_LENGTH>152</SPOT_LENGTH><READ_SPEC><READ_INDEX>0</READ_INDEX><READ_CLASS>Application Read</READ_CLASS><READ_TYPE>Forward</READ_TYPE><BASE_COORD>1</BASE_COORD></READ_SPEC><READ_SPEC><READ_INDEX>1</READ_INDEX><READ_CLASS>Application Read</READ_CLASS><READ_TYPE>Reverse</READ_TYPE><BASE_COORD>77</BASE_COORD></READ_SPEC></SPOT_DECODE_SPEC></SPOT_DESCRIPTOR> | SRP013950 | RNAseq_14somites_2.fastq | fastq | 2976465520.0 | 19582010.0 | RNAseq D. rerio 14 somites embryo | 0:76 1:76 | A:747831748;C:733533938;G:754151936;T:738091995;N:2855903 | 76 | 76 | 747831748 | 733533938 | 754151936 | 738091995 | 2855903 | SRX180749 | SRS347211 | SRA055273 | University of Bergen | ZEPROME consortium | 2 | 0.9236 | 0.91427 | 0.0861 | 0.08534 | 0.7559 | 0.75528 | 0.48428 | 0.47549 | 76 | 76 | B | B | biological fallback assumption | illumina | early_illumina | unknown | unknown | unknown | bulk | unknown | unknown | Unknown | 2015-07-22 | Segmentation | Embryo | Embryo Imprecise | All anatomical structures | ||||||||||||||||||
| 36407 | 36407 | SRR546818 | SRX180748 | SRS347209 | SRP013950 | PRJNA169500 | Danio rerio embryonic promoterome | PRJNA169500 | Transcriptome Analysis | Goal of this study is to generate genome wide maps of transcription initiation throughout early embryonic development of zebrafish Danio rerio. Cap analysis of gene expression CAGE is used to detect transcription start sites at 1bp resolution. CAGE data is complemented by ChIPseq datasets for promoter associated histone modifications to study dynamic changes of promoter usage and chromatin configuration throughout early embryonic development. | pubmed:24531765 | Zebrafish wild type AB strain embryo dome/zfs:0000015 stage | D. rerio dome/zfs:0000015 embryo | D. rerio dome/zfs:0000015 embryo | RNAseq D. rerio dome/zfs:0000015 embryo | RNAseq D. rerio dome/zfs:0000015 embryo | 1 | 1 | RNA-Seq | TRANSCRIPTOMIC | unspecified | PAIRED | ILLUMINA | Illumina Genome Analyzer IIx | <SPOT_DESCRIPTOR><SPOT_DECODE_SPEC><SPOT_LENGTH>152</SPOT_LENGTH><READ_SPEC><READ_INDEX>0</READ_INDEX><READ_CLASS>Application Read</READ_CLASS><READ_TYPE>Forward</READ_TYPE><BASE_COORD>1</BASE_COORD></READ_SPEC><READ_SPEC><READ_INDEX>1</READ_INDEX><READ_CLASS>Application Read</READ_CLASS><READ_TYPE>Reverse</READ_TYPE><BASE_COORD>77</BASE_COORD></READ_SPEC></SPOT_DECODE_SPEC></SPOT_DESCRIPTOR> | SRP013950 | RNAseq_30p_dome_1.fastq | fastq | 2359648608.0 | 15524004.0 | RNAseq D. rerio dome/zfs:0000015 embryo | 0:76 1:76 | A:588562906;C:575605218;G:603310130;T:589755481;N:2414873 | 76 | 76 | 588562906 | 575605218 | 603310130 | 589755481 | 2414873 | SRX180748 | SRS347209 | SRA055273 | University of Bergen | ZEPROME consortium | 2 | 0.89779 | 0.9222 | 0.04122 | 0.0431 | 0.76609 | 0.77112 | 0.49779 | 0.49305 | 76 | 76 | B | B | biological fallback assumption | illumina | early_illumina | unknown | unknown | unknown | bulk | unknown | unknown | Unknown | 2015-07-22 | Blastula | Embryo | Embryo Imprecise | All anatomical structures | ||||||||||||||||||
| 36408 | 36408 | SRR546817 | SRX180747 | SRS358988 | SRP013950 | PRJNA169500 | Danio rerio embryonic promoterome | PRJNA169500 | Transcriptome Analysis | Goal of this study is to generate genome wide maps of transcription initiation throughout early embryonic development of zebrafish Danio rerio. Cap analysis of gene expression CAGE is used to detect transcription start sites at 1bp resolution. CAGE data is complemented by ChIPseq datasets for promoter associated histone modifications to study dynamic changes of promoter usage and chromatin configuration throughout early embryonic development. | pubmed:24531765 | Zebrafish wild type AB strain embryo 2 cells stage | D. rerio 2 cells embryo | D. rerio 2 cells embryo | RNAseq D. rerio 2 cells embryo | RNAseq D. rerio 2 cells embryo | 1 | 1 | RNA-Seq | TRANSCRIPTOMIC | unspecified | PAIRED | ILLUMINA | Illumina Genome Analyzer IIx | <SPOT_DESCRIPTOR><SPOT_DECODE_SPEC><SPOT_LENGTH>152</SPOT_LENGTH><READ_SPEC><READ_INDEX>0</READ_INDEX><READ_CLASS>Application Read</READ_CLASS><READ_TYPE>Forward</READ_TYPE><BASE_COORD>1</BASE_COORD></READ_SPEC><READ_SPEC><READ_INDEX>1</READ_INDEX><READ_CLASS>Application Read</READ_CLASS><READ_TYPE>Reverse</READ_TYPE><BASE_COORD>77</BASE_COORD></READ_SPEC></SPOT_DECODE_SPEC></SPOT_DESCRIPTOR> | SRP013950 | 2799828144.0 | 18419922.0 | RNAseq D. rerio 2 cells embryo | 0:76 1:76 | A:678251421;C:711410510;G:729905459;T:677312772;N:2947982 | 76 | 76 | 678251421 | 711410510 | 729905459 | 677312772 | 2947982 | SRX180747 | SRS358988 | SRA055273 | University of Bergen | ZEPROME consortium | 2 | 0.9498 | 0.94704 | 0.02363 | 0.02442 | 0.7988 | 0.80221 | 0.48657 | 0.49361 | 76 | 76 | B | B | biological fallback assumption | illumina | early_illumina | unknown | unknown | unknown | bulk | unknown | unknown | Unknown | 2015-07-22 | Cleavage | Embryo | Embryo Imprecise | All anatomical structures | ||||||||||||||||||||
| 36581 | 36581 | SRR594769 | SRX195432 | SRS369361 | SRP016134 | PRJNA177654 | Danio rerio Transcriptome or Gene expression | PRJNA177654 | Other | We use zebrafish embryos to characterise the transcriptome of the developing blood and endothelium. | 1 | Test | GFP Negative 1 | Global analysis of the haematopoietic and endothelial transcriptome during zebrafish development | Embryos | 1 | 1 | RNA-Seq | TRANSCRIPTOMIC | unspecified | SINGLE | ILLUMINA | Illumina Genome Analyzer IIx | <SPOT_DESCRIPTOR><SPOT_DECODE_SPEC><SPOT_LENGTH>40</SPOT_LENGTH><READ_SPEC><READ_INDEX>0</READ_INDEX><READ_CLASS>Application Read</READ_CLASS><READ_TYPE>Forward</READ_TYPE><BASE_COORD>1</BASE_COORD></READ_SPEC></SPOT_DECODE_SPEC></SPOT_DESCRIPTOR> | SRP016134 | 2525199228.0 | 65962848.0 | GFP Positive | 0:38.28 | A:665802914;C:594493287;G:612298433;T:652078696;N:525898 | 38 | 665802914 | 594493287 | 612298433 | 652078696 | 525898 | SRX195432 | SRS369361 | University of Cambridge | 1 | 0.89062 | 0.09595 | 0.74059 | 0.47506 | 36 | B | usable mapping rate | illumina | early_illumina | unknown | unknown | unknown | bulk | unknown | unknown | United Kingdom | 2015-07-22 | Undetermined | Embryo | Embryo Imprecise | All anatomical structures | ||||||||||||||||||||||||||||||
| 36582 | 36582 | SRR594771 | SRX195432 | SRS369361 | SRP016134 | PRJNA177654 | Danio rerio Transcriptome or Gene expression | PRJNA177654 | Other | We use zebrafish embryos to characterise the transcriptome of the developing blood and endothelium. | 1 | Test | GFP Negative 1 | Global analysis of the haematopoietic and endothelial transcriptome during zebrafish development | Embryos | 1 | 1 | RNA-Seq | TRANSCRIPTOMIC | unspecified | SINGLE | ILLUMINA | Illumina Genome Analyzer IIx | <SPOT_DESCRIPTOR><SPOT_DECODE_SPEC><SPOT_LENGTH>40</SPOT_LENGTH><READ_SPEC><READ_INDEX>0</READ_INDEX><READ_CLASS>Application Read</READ_CLASS><READ_TYPE>Forward</READ_TYPE><BASE_COORD>1</BASE_COORD></READ_SPEC></SPOT_DECODE_SPEC></SPOT_DESCRIPTOR> | SRP016134 | gfp_negative_replicate_1_sequence.txt.gz | fastq | 2549682148.0 | 66546682.0 | GFP Negative | 0:38.31 | A:686329592;C:587342682;G:601330559;T:674194074;N:485241 | 38 | 686329592 | 587342682 | 601330559 | 674194074 | 485241 | SRX195432 | SRS369361 | University of Cambridge | 1 | 0.90413 | 0.13272 | 0.71342 | 0.48186 | 36 | B | usable mapping rate | illumina | early_illumina | unknown | unknown | unknown | bulk | unknown | unknown | United Kingdom | 2015-07-22 | Undetermined | Embryo | Embryo Imprecise | All anatomical structures | ||||||||||||||||||||||||||||
| 36586 | 36586 | SRR1562528 | SRX204106 | SRS373224 | SRP017135 | PRJNA179237 | Danio rerio strain:SAT Transcriptome or Gene expression | PRJNA179237 | Other | Transcriptomic analysis of zebrafish was carried out with the aim of refining genome annotation using proteogenomic strategy. RNA seq analysis of six tissues liver muscle eye brain intestine pancreas and testes was carried out along with proteomic analysis of 10 organs. | Zebrafish transcriptomic profile for Liver spleen Testes Eye Muscle Intestine Pancreas | Zebrafish trancriptome for protegenomic analysis | zebrafish IOB JHU transcriptome | Zebrafish transcriptome profiling for proteogenomic analysis | JHU IOB zebrafish RNA Seq | 1 | SRR1562528 belongs to the eye tissue SRR1562529 belongs to the intestine and pancreas tissue SRR1562530 to the liver tissue SRR1562531 belongs to the muscle tissue SRR1562532 belongs to the spleen tissue SRR1562533 belongs to the testis issue. | RNA-Seq | TRANSCRIPTOMIC | unspecified | PAIRED | ILLUMINA | Illumina HiScanSQ | <SPOT_DESCRIPTOR><SPOT_DECODE_SPEC><SPOT_LENGTH>100</SPOT_LENGTH><READ_SPEC><READ_INDEX>0</READ_INDEX><READ_CLASS>Application Read</READ_CLASS><READ_TYPE>Forward</READ_TYPE><BASE_COORD>1</BASE_COORD></READ_SPEC><READ_SPEC><READ_INDEX>1</READ_INDEX><READ_CLASS>Application Read</READ_CLASS><READ_TYPE>Reverse</READ_TYPE><BASE_COORD>51</BASE_COORD></READ_SPEC></SPOT_DECODE_SPEC></SPOT_DESCRIPTOR> | SRP017135 | 3901027000.0 | 41246200.0 | zebrafish data1 | 0:50 1:50 | A:1065764997;C:896043530;G:867105444;T:1071973870;N:139159 | 50 | 50 | 1065764997 | 896043530 | 867105444 | 1071973870 | 139159 | SRX204106 | SRS373224 | SRA060234 | Johns Hopkins University|Pandey Lab | Johns Hopkins University | 2 | 0.95204 | 0.94561 | 0.11416 | 0.11357 | 0.68235 | 0.68387 | 0.47537 | 0.47688 | 50 | 50 | B | B | biological fallback assumption | illumina | early_illumina | unknown | unknown | unknown | bulk | unknown | unknown | United States | 2015-07-22 | Undetermined | Undetermined | Multi-tissue | Multi-system | |||||||||||||||||||||
| 36587 | 36587 | SRR1562529 | SRX204106 | SRS373224 | SRP017135 | PRJNA179237 | Danio rerio strain:SAT Transcriptome or Gene expression | PRJNA179237 | Other | Transcriptomic analysis of zebrafish was carried out with the aim of refining genome annotation using proteogenomic strategy. RNA seq analysis of six tissues liver muscle eye brain intestine pancreas and testes was carried out along with proteomic analysis of 10 organs. | Zebrafish transcriptomic profile for Liver spleen Testes Eye Muscle Intestine Pancreas | Zebrafish trancriptome for protegenomic analysis | zebrafish IOB JHU transcriptome | Zebrafish transcriptome profiling for proteogenomic analysis | JHU IOB zebrafish RNA Seq | 1 | SRR1562528 belongs to the eye tissue SRR1562529 belongs to the intestine and pancreas tissue SRR1562530 to the liver tissue SRR1562531 belongs to the muscle tissue SRR1562532 belongs to the spleen tissue SRR1562533 belongs to the testis issue. | RNA-Seq | TRANSCRIPTOMIC | unspecified | PAIRED | ILLUMINA | Illumina HiScanSQ | <SPOT_DESCRIPTOR><SPOT_DECODE_SPEC><SPOT_LENGTH>100</SPOT_LENGTH><READ_SPEC><READ_INDEX>0</READ_INDEX><READ_CLASS>Application Read</READ_CLASS><READ_TYPE>Forward</READ_TYPE><BASE_COORD>1</BASE_COORD></READ_SPEC><READ_SPEC><READ_INDEX>1</READ_INDEX><READ_CLASS>Application Read</READ_CLASS><READ_TYPE>Reverse</READ_TYPE><BASE_COORD>51</BASE_COORD></READ_SPEC></SPOT_DECODE_SPEC></SPOT_DESCRIPTOR> | SRP017135 | 3298508150.0 | 34528793.0 | zebrafish data2 | 0:50 1:50 | A:870578872;C:780299206;G:764413584;T:883098619;N:117869 | 50 | 50 | 870578872 | 780299206 | 764413584 | 883098619 | 117869 | SRX204106 | SRS373224 | SRA060234 | Johns Hopkins University|Pandey Lab | Johns Hopkins University | 2 | 0.96195 | 0.9525 | 0.05344 | 0.0528 | 0.77285 | 0.7737 | 0.44453 | 0.43789 | 50 | 50 | B | B | biological fallback assumption | illumina | early_illumina | unknown | unknown | unknown | bulk | unknown | unknown | United States | 2015-07-22 | Undetermined | Undetermined | Multi-tissue | Multi-system | |||||||||||||||||||||
| 36588 | 36588 | SRR1562530 | SRX204106 | SRS373224 | SRP017135 | PRJNA179237 | Danio rerio strain:SAT Transcriptome or Gene expression | PRJNA179237 | Other | Transcriptomic analysis of zebrafish was carried out with the aim of refining genome annotation using proteogenomic strategy. RNA seq analysis of six tissues liver muscle eye brain intestine pancreas and testes was carried out along with proteomic analysis of 10 organs. | Zebrafish transcriptomic profile for Liver spleen Testes Eye Muscle Intestine Pancreas | Zebrafish trancriptome for protegenomic analysis | zebrafish IOB JHU transcriptome | Zebrafish transcriptome profiling for proteogenomic analysis | JHU IOB zebrafish RNA Seq | 1 | SRR1562528 belongs to the eye tissue SRR1562529 belongs to the intestine and pancreas tissue SRR1562530 to the liver tissue SRR1562531 belongs to the muscle tissue SRR1562532 belongs to the spleen tissue SRR1562533 belongs to the testis issue. | RNA-Seq | TRANSCRIPTOMIC | unspecified | PAIRED | ILLUMINA | Illumina HiScanSQ | <SPOT_DESCRIPTOR><SPOT_DECODE_SPEC><SPOT_LENGTH>100</SPOT_LENGTH><READ_SPEC><READ_INDEX>0</READ_INDEX><READ_CLASS>Application Read</READ_CLASS><READ_TYPE>Forward</READ_TYPE><BASE_COORD>1</BASE_COORD></READ_SPEC><READ_SPEC><READ_INDEX>1</READ_INDEX><READ_CLASS>Application Read</READ_CLASS><READ_TYPE>Reverse</READ_TYPE><BASE_COORD>51</BASE_COORD></READ_SPEC></SPOT_DECODE_SPEC></SPOT_DESCRIPTOR> | SRP017135 | 5033866800.0 | 52047991.0 | zebrafish data6 | 0:50 1:50 | A:1318991279;C:1193979085;G:1179037925;T:1341674073;N:184438 | 50 | 50 | 1318991279 | 1193979085 | 1179037925 | 1341674073 | 184438 | SRX204106 | SRS373224 | SRA060234 | Johns Hopkins University|Pandey Lab | Johns Hopkins University | 2 | 0.97568 | 0.97028 | 0.03448 | 0.03488 | 0.88767 | 0.88785 | 0.17745 | 0.18337 | 50 | 50 | B | B | biological fallback assumption | illumina | early_illumina | unknown | unknown | unknown | bulk | unknown | unknown | United States | 2015-07-22 | Undetermined | Undetermined | Multi-tissue | Multi-system | |||||||||||||||||||||
| 36589 | 36589 | SRR1562531 | SRX204106 | SRS373224 | SRP017135 | PRJNA179237 | Danio rerio strain:SAT Transcriptome or Gene expression | PRJNA179237 | Other | Transcriptomic analysis of zebrafish was carried out with the aim of refining genome annotation using proteogenomic strategy. RNA seq analysis of six tissues liver muscle eye brain intestine pancreas and testes was carried out along with proteomic analysis of 10 organs. | Zebrafish transcriptomic profile for Liver spleen Testes Eye Muscle Intestine Pancreas | Zebrafish trancriptome for protegenomic analysis | zebrafish IOB JHU transcriptome | Zebrafish transcriptome profiling for proteogenomic analysis | JHU IOB zebrafish RNA Seq | 1 | SRR1562528 belongs to the eye tissue SRR1562529 belongs to the intestine and pancreas tissue SRR1562530 to the liver tissue SRR1562531 belongs to the muscle tissue SRR1562532 belongs to the spleen tissue SRR1562533 belongs to the testis issue. | RNA-Seq | TRANSCRIPTOMIC | unspecified | PAIRED | ILLUMINA | Illumina HiScanSQ | <SPOT_DESCRIPTOR><SPOT_DECODE_SPEC><SPOT_LENGTH>100</SPOT_LENGTH><READ_SPEC><READ_INDEX>0</READ_INDEX><READ_CLASS>Application Read</READ_CLASS><READ_TYPE>Forward</READ_TYPE><BASE_COORD>1</BASE_COORD></READ_SPEC><READ_SPEC><READ_INDEX>1</READ_INDEX><READ_CLASS>Application Read</READ_CLASS><READ_TYPE>Reverse</READ_TYPE><BASE_COORD>51</BASE_COORD></READ_SPEC></SPOT_DECODE_SPEC></SPOT_DESCRIPTOR> | SRP017135 | 4394828000.0 | 45714707.0 | zebrafish data3 | 0:50 1:50 | A:1146792341;C:1067826128;G:1033443384;T:1146608253;N:157894 | 50 | 50 | 1146792341 | 1067826128 | 1033443384 | 1146608253 | 157894 | SRX204106 | SRS373224 | SRA060234 | Johns Hopkins University|Pandey Lab | Johns Hopkins University | 2 | 0.96496 | 0.95999 | 0.03952 | 0.03946 | 0.78571 | 0.78518 | 0.51359 | 0.49202 | 50 | 50 | B | B | biological fallback assumption | illumina | early_illumina | unknown | unknown | unknown | bulk | unknown | unknown | United States | 2015-07-22 | Undetermined | Undetermined | Multi-tissue | Multi-system | |||||||||||||||||||||
| 36590 | 36590 | SRR1562532 | SRX204106 | SRS373224 | SRP017135 | PRJNA179237 | Danio rerio strain:SAT Transcriptome or Gene expression | PRJNA179237 | Other | Transcriptomic analysis of zebrafish was carried out with the aim of refining genome annotation using proteogenomic strategy. RNA seq analysis of six tissues liver muscle eye brain intestine pancreas and testes was carried out along with proteomic analysis of 10 organs. | Zebrafish transcriptomic profile for Liver spleen Testes Eye Muscle Intestine Pancreas | Zebrafish trancriptome for protegenomic analysis | zebrafish IOB JHU transcriptome | Zebrafish transcriptome profiling for proteogenomic analysis | JHU IOB zebrafish RNA Seq | 1 | SRR1562528 belongs to the eye tissue SRR1562529 belongs to the intestine and pancreas tissue SRR1562530 to the liver tissue SRR1562531 belongs to the muscle tissue SRR1562532 belongs to the spleen tissue SRR1562533 belongs to the testis issue. | RNA-Seq | TRANSCRIPTOMIC | unspecified | PAIRED | ILLUMINA | Illumina HiScanSQ | <SPOT_DESCRIPTOR><SPOT_DECODE_SPEC><SPOT_LENGTH>100</SPOT_LENGTH><READ_SPEC><READ_INDEX>0</READ_INDEX><READ_CLASS>Application Read</READ_CLASS><READ_TYPE>Forward</READ_TYPE><BASE_COORD>1</BASE_COORD></READ_SPEC><READ_SPEC><READ_INDEX>1</READ_INDEX><READ_CLASS>Application Read</READ_CLASS><READ_TYPE>Reverse</READ_TYPE><BASE_COORD>51</BASE_COORD></READ_SPEC></SPOT_DECODE_SPEC></SPOT_DESCRIPTOR> | SRP017135 | 3637203400.0 | 38182310.0 | zebrafish data4 | 0:50 1:50 | A:956604323;C:863740756;G:843429871;T:973297634;N:130816 | 50 | 50 | 956604323 | 863740756 | 843429871 | 973297634 | 130816 | SRX204106 | SRS373224 | SRA060234 | Johns Hopkins University|Pandey Lab | Johns Hopkins University | 2 | 0.95377 | 0.94653 | 0.0656 | 0.06507 | 0.72448 | 0.72541 | 0.4157 | 0.41707 | 50 | 50 | B | B | biological fallback assumption | illumina | early_illumina | unknown | unknown | unknown | bulk | unknown | unknown | United States | 2015-07-22 | Undetermined | Undetermined | Multi-tissue | Multi-system | |||||||||||||||||||||
| 36591 | 36591 | SRR1562533 | SRX204106 | SRS373224 | SRP017135 | PRJNA179237 | Danio rerio strain:SAT Transcriptome or Gene expression | PRJNA179237 | Other | Transcriptomic analysis of zebrafish was carried out with the aim of refining genome annotation using proteogenomic strategy. RNA seq analysis of six tissues liver muscle eye brain intestine pancreas and testes was carried out along with proteomic analysis of 10 organs. | Zebrafish transcriptomic profile for Liver spleen Testes Eye Muscle Intestine Pancreas | Zebrafish trancriptome for protegenomic analysis | zebrafish IOB JHU transcriptome | Zebrafish transcriptome profiling for proteogenomic analysis | JHU IOB zebrafish RNA Seq | 1 | SRR1562528 belongs to the eye tissue SRR1562529 belongs to the intestine and pancreas tissue SRR1562530 to the liver tissue SRR1562531 belongs to the muscle tissue SRR1562532 belongs to the spleen tissue SRR1562533 belongs to the testis issue. | RNA-Seq | TRANSCRIPTOMIC | unspecified | PAIRED | ILLUMINA | Illumina HiScanSQ | <SPOT_DESCRIPTOR><SPOT_DECODE_SPEC><SPOT_LENGTH>100</SPOT_LENGTH><READ_SPEC><READ_INDEX>0</READ_INDEX><READ_CLASS>Application Read</READ_CLASS><READ_TYPE>Forward</READ_TYPE><BASE_COORD>1</BASE_COORD></READ_SPEC><READ_SPEC><READ_INDEX>1</READ_INDEX><READ_CLASS>Application Read</READ_CLASS><READ_TYPE>Reverse</READ_TYPE><BASE_COORD>51</BASE_COORD></READ_SPEC></SPOT_DECODE_SPEC></SPOT_DESCRIPTOR> | SRP017135 | 4185424200.0 | 44832788.0 | zebrafish data5 | 0:50 1:50 | A:1143949920;C:959926497;G:921201865;T:1160194111;N:151807 | 50 | 50 | 1143949920 | 959926497 | 921201865 | 1160194111 | 151807 | SRX204106 | SRS373224 | SRA060234 | Johns Hopkins University|Pandey Lab | Johns Hopkins University | 2 | 0.95163 | 0.94301 | 0.12015 | 0.11974 | 0.64396 | 0.64514 | 0.49698 | 0.49883 | 50 | 50 | B | B | biological fallback assumption | illumina | early_illumina | unknown | unknown | unknown | bulk | unknown | unknown | United States | 2015-07-22 | Undetermined | Undetermined | Multi-tissue | Multi-system | |||||||||||||||||||||
| 36739 | 36739 | SRR867022 | SRX286270 | SRS420566 | SRP022549 | PRJNA202401 | Danio rerio Transcriptome or Gene expression | PRJNA202401 | Other | Full transcriptome analysis of early dorsoventral DV patterning in zebrafish. | Full transcriptome analysis of early dorsoventral DV patterning in zebrafish | General Sample for Danio rerio | ICH | strain:wild type | Full transcriptome analysis of early dorsoventral DV patterning in zebrafish Bcat | Danio rerio boot | 1 | RNA quality and quantity measurements were performed on Bioanalyzer Agilent Technologies and Qubit Life Technologies. High quality RIN >8.5 total RNA samples from three biological replicates were pooled and processed using the SOLiD total RNA Seq Kit Life Technologies according to the manufacturers suggestions. Briefly 5mg of pooled RNA was DNaseI treated and the ribosomal RNA depleted using Eucaryote RiboMinues rRNA Removal Kit Life Technologies. The leftover was fragmented using RNaseIII the 50 200nt fraction size selected sequencing adaptors ligated and the templates reverse transcribed using ArrayScript RT. The cDNA library was purified with Qiagen MinElute PCR Purification Kit Qiagen and size selected on a 6% TBE Urea denaturing polyacrylamide gel. The 150 250nt cDNA fraction was amplified using AmpliTaq polymerase and purified by AmPureXP Beads Agencourt. Concentration of each library was determined using the SOLiD Library TaqMan Quantitation Kit Life Technologies. Each library was clonally amplified on SOLiD P1 DNA Beads by emulsion PCR ePCR. Emulsions were broken with butanol and ePCR beads enriched for template positive beads by hybridization with magnetic enrichment beads. Template enriched beads were extended at the three prime end in the presence of terminal transferase and three prime bead linker. Beads with the clonally amplified DNA were deposited onto sequencing slide and sequenced on SOLiD V4 Instrument using the 50 base sequencing chemistry. | RNA-Seq | TRANSCRIPTOMIC | unspecified | SINGLE | ABI_SOLID | AB SOLiD 3 Plus System | <SPOT_DESCRIPTOR><SPOT_DECODE_SPEC><SPOT_LENGTH>50</SPOT_LENGTH><READ_SPEC><READ_INDEX>0</READ_INDEX><READ_CLASS>Application Read</READ_CLASS><READ_TYPE>Forward</READ_TYPE><BASE_COORD>1</BASE_COORD></READ_SPEC></SPOT_DECODE_SPEC></SPOT_DESCRIPTOR> | SRP022549 | s0205_20091123_4_Boot2_F3_QV.qual s0205_20091123_4_Boot2_F3.csfasta | SOLiD_native SOLiD_native | 9801985250.0 | 196039705.0 | Zebrafish DV patterning Boot | 0:50 | 0:2587797600;1:2275478534;2:2625317272;3:2293877905;.:19513939 | 50 | SRX286270 | SRS420566 | SRA075737 | BAYGEN|NGSP | BAYGEN | 1 | 0.59289 | 0.09435 | 0.92669 | 0.7658 | 50 | B | usable mapping rate | legacy | early | 3prime | rrna_depletion | unknown | bulk | unknown | unknown | Hungary | 2013-05-23 | Undetermined | Undetermined | Undetermined | Undetermined | ||||||||||||||||||||||||||||||
| 36740 | 36740 | SRR867023 | SRX286271 | SRS420566 | SRP022549 | PRJNA202401 | Danio rerio Transcriptome or Gene expression | PRJNA202401 | Other | Full transcriptome analysis of early dorsoventral DV patterning in zebrafish. | Full transcriptome analysis of early dorsoventral DV patterning in zebrafish | General Sample for Danio rerio | ICH | strain:wild type | Full transcriptome analysis of early dorsoventral DV patterning in zebrafish ICH | Danio rerio ICH | 1 | RNA quality and quantity measurements were performed on Bioanalyzer Agilent Technologies and Qubit Life Technologies. High quality RIN >8.5 total RNA samples from three biological replicates were pooled and processed using the SOLiD total RNA Seq Kit Life Technologies according to the manufacturers suggestions. Briefly 5mg of pooled RNA was DNaseI treated and the ribosomal RNA depleted using Eucaryote RiboMinues rRNA Removal Kit Life Technologies. The leftover was fragmented using RNaseIII the 50 200nt fraction size selected sequencing adaptors ligated and the templates reverse transcribed using ArrayScript RT. The cDNA library was purified with Qiagen MinElute PCR Purification Kit Qiagen and size selected on a 6% TBE Urea denaturing polyacrylamide gel. The 150 250nt cDNA fraction was amplified using AmpliTaq polymerase and purified by AmPureXP Beads Agencourt. Concentration of each library was determined using the SOLiD Library TaqMan Quantitation Kit Life Technologies. Each library was clonally amplified on SOLiD P1 DNA Beads by emulsion PCR ePCR. Emulsions were broken with butanol and ePCR beads enriched for template positive beads by hybridization with magnetic enrichment beads. Template enriched beads were extended at the three prime end in the presence of terminal transferase and three prime bead linker. Beads with the clonally amplified DNA were deposited onto sequencing slide and sequenced on SOLiD V4 Instrument using the 50 base sequencing chemistry. | RNA-Seq | TRANSCRIPTOMIC | unspecified | SINGLE | ABI_SOLID | AB SOLiD 3 Plus System | <SPOT_DESCRIPTOR><SPOT_DECODE_SPEC><SPOT_LENGTH>50</SPOT_LENGTH><READ_SPEC><READ_INDEX>0</READ_INDEX><READ_CLASS>Application Read</READ_CLASS><READ_TYPE>Forward</READ_TYPE><BASE_COORD>1</BASE_COORD></READ_SPEC></SPOT_DECODE_SPEC></SPOT_DESCRIPTOR> | SRP022549 | s0205_20091123_4_ICH_F3.csfasta s0205_20091123_4_ICH_F3_QV.qual | SOLiD_native SOLiD_native | 10810535400.0 | 216210708.0 | Zebrafish DV patterning ICH | 0:50 | 0:2903579857;1:2528898611;2:2759865128;3:2553918387;.:64273417 | 50 | SRX286271 | SRS420566 | SRA075737 | BAYGEN|NGSP | BAYGEN | 1 | 0.42474 | 0.06136 | 0.93434 | 0.75757 | 50 | B | usable mapping rate | legacy | early | 3prime | rrna_depletion | unknown | bulk | unknown | unknown | Hungary | 2013-05-23 | Undetermined | Undetermined | Undetermined | Undetermined | ||||||||||||||||||||||||||||||
| 36761 | 36761 | SRR10295266 | SRX7008094 | SRS431105 | SRP023492 | PRJNA206070 | Nanog SoxB1 and Pou5f1/Oct4 regulate widespread zygotic gene activation during the maternal to zygotic transition | GSE47558 | Other | Upon fertilization maternal factors direct development in a transcriptionally silent embryo. At the maternal to zygotic transition MZT a universal step in animal development unknown maternal factors trigger zygotic genome activation ZGA. In zebrafish ZGA is required for gastrulation and clearance of maternal mRNAs which is achieved in part by the conserved microRNA miR 430. However the precise factors that activate the zygotic program remain largely unknown. Here we show that Nanog Pou5f1 and SoxB1 are required for genome activation in zebrafish. We identified several hundred genes directly activated by maternal factors thus constituting the first wave of zygotic transcription in zebrafish. Ribosome profiling in the pre MZT embryo revealed that nanog sox19b and pou5f1 are the most highly translated transcription factor mRNAs. Combined loss of function for Nanog SoxB1 and Pou5f1 resulted in developmental arrest prior to gastrulation and a failure to activate >75% of zygotic genes. Furthermore we found that Nanog binds the miR 430 locus and together with Pou5f1 and SoxB1 initiate miR 430 expression and activity. Our results demonstrate that maternal Nanog Pou5f1 and SoxB1 are required to initiate the zygotic developmental program and in turn trigger the clearance of the maternal program by activating miR 430 expression. Overall design: Wild type and loss of function total mRNA sequencing of embryonic transcriptomes pre and post MZT; ribosome profiling pre MZT | pubmed:24056933 | WT 2hpf Total mRNA | GSM1152440 | source name:WT 2hpf Total mRNA|tissue:Whole embryos|strain:TUAB|Stage:2hpf|treatment:n1|rna subtype:total RNA | WT 64c R0 | AGR000324 | AGR000324 | RNA | RNA-Seq | TRANSCRIPTOMIC | unspecified | SINGLE | ILLUMINA | Illumina HiSeq 2000 | SRP023492 | AGR000324_R1.fastq.gz | fastq | 781504124.0 | 10282949.0 | AGR000324 R1.fastq.gz | 0:76 | A:151879560;C:240178928;G:220957551;T:168456166;N:31919 | 76 | 151879560 | 240178928 | 220957551 | 168456166 | 31919 | SRX7008094 | SRS431105 | SRA980383 | Yale_Giraldez|Genetics | Giraldez Lab, Genetics, Yale University | 1 | 0.88875 | 0.14141 | 0.796 | 0.72154 | 76 | B | usable mapping rate | illumina | hiseq_era | unknown | small_rna | unknown | bulk | unknown | unknown | United States | 2019-10-16 | Cleavage | Embryo | Whole Organism | All anatomical structures | ||||||||||||||||||||||||||
| 39636 | 39636 | SRR1972985 | SRX993117 | SRS907736 | SRP057116 | PRJNA280983 | Danio rerio strain:CG2 Transcriptome or Gene expression | PRJNA280983 | Other | CG2 homozygous diploid zebrafish line. | Model organism or animal sample from Danio rerio CG2 | CG2 immune related tissues | strain:CG2|dev stage:adult|sex:not determined|tissue:kidney intestine gills and spleen|BioSampleModel:Model organism or animal | CG2 RNA seq pooled kidney intestine gills and spleen | CG2 not normalized | 1 | A single adult CG2 zebrafish was euthanized and the kidney intestine gills and spleen were dissected and combined for RNA extraction Trizol Life Technologies. RNA was prepared for sequencing with the TruSeq RNA kit Illumina and sequenced 2 x 100 bp paired end reads on a single lane of a HiSeq2000 Illumina. Average insert size of 280 bps. | RNA-Seq | TRANSCRIPTOMIC | unspecified | PAIRED | ILLUMINA | Illumina HiSeq 2000 | <SPOT_DESCRIPTOR><SPOT_DECODE_SPEC><SPOT_LENGTH>200</SPOT_LENGTH><READ_SPEC><READ_INDEX>0</READ_INDEX><READ_CLASS>Application Read</READ_CLASS><READ_TYPE>Forward</READ_TYPE><BASE_COORD>1</BASE_COORD></READ_SPEC><READ_SPEC><READ_INDEX>1</READ_INDEX><READ_CLASS>Application Read</READ_CLASS><READ_TYPE>Reverse</READ_TYPE><BASE_COORD>101</BASE_COORD></READ_SPEC></SPOT_DECODE_SPEC></SPOT_DESCRIPTOR> | SRP057116 | 130508_I1089_FCC1VKUACXX_L2_NCSU-GSL-0100_2.fq.gz 130508_I1089_FCC1VKUACXX_L2_NCSU-GSL-0100_1.fq.gz | fastq fastq | 43788950600.0 | 218944753.0 | CG2 non normalized | 0:100 1:100 | A:11515770713;C:10371712470;G:10317757450;T:11519383282;N:64326685 | 100 | 100 | 11515770713 | 10371712470 | 10317757450 | 11519383282 | 64326685 | SRX993117 | SRS907736 | SRA258497 | North Carolina State University | North Carolina State University | 2 | 0.94368 | 0.94427 | 0.05435 | 0.05507 | 0.73612 | 0.7376 | 0.53132 | 0.53023 | 100 | 100 | B | B | biological fallback assumption | illumina | hiseq_era | unknown | unknown | trueseq | bulk | unknown | unknown | United States | 2015-08-05 | Adult | Adult | Multi-tissue | Multi-system | |||||||||||||||||||
| 39687 | 39687 | SRR2051113 | SRX1048368 | SRS952733 | SRP059060 | PRJNA285816 | Danio rerio Raw sequence reads | PRJNA285816 | Whole Genome Sequencing | Here we have generated and validated zebrafish models for mild moderate and severe acute organophosphorus poisoning by exposing zebrafish larvae to different concentrations of the prototypic OP compound chlorpyrifos oxon. Our results show that zebrafish models mimic most of the aspects of this toxidrome in humans including acetylcholinesterase inhibition NMDA receptor activation calcium dysregulation and inflammatory and immune response. | P39 | breed:Wild type|dev stage:larvae|sex:not applicable|tissue:whole organism|treatment:Severe phenotype|BioSampleModel:Model organism or animal | D. rerio OP 3.0 uM CPO Rep 4 | P39 | 1 | 1 | RNA-Seq | TRANSCRIPTOMIC | unspecified | SINGLE | ILLUMINA | Illumina HiSeq 2500 | <SPOT_DESCRIPTOR><SPOT_DECODE_SPEC><SPOT_LENGTH>101</SPOT_LENGTH><READ_SPEC><READ_INDEX>0</READ_INDEX><READ_CLASS>Application Read</READ_CLASS><READ_TYPE>Forward</READ_TYPE><BASE_COORD>1</BASE_COORD></READ_SPEC></SPOT_DECODE_SPEC></SPOT_DESCRIPTOR> | SRP059060 | P39_EL4517_GATCAG_L001_R1_001.fastq.gz P39_EL4517_GATCAG_L002_R1_001.fastq.gz P39_EL4517_GATCAG_L007_R1_001.fastq.gz P39_EL4517_GATCAG_L008_R1_001.fastq.gz | fastq fastq fastq fastq | 4090297192.0 | 40497992.0 | P39 | 0:101 | A:1016157993;C:993771683;G:965986507;T:1113686588;N:694421 | 101 | 1016157993 | 993771683 | 965986507 | 1113686588 | 694421 | SRX1048368 | SRS952733 | SRA271167 | Mississippi State University|IGBB | US Army ERDC | 1 | 0.9417 | 0.14428 | 0.68937 | 0.5438 | 101 | B | usable mapping rate | illumina | hiseq_era | unknown | unknown | unknown | bulk | unknown | unknown | United States | 2016-03-17 | Larval | Larval | Whole Organism | All anatomical structures | |||||||||||||||||||||||||||
| 39688 | 39688 | SRR2051110 | SRX1048367 | SRS952731 | SRP059060 | PRJNA285816 | Danio rerio Raw sequence reads | PRJNA285816 | Whole Genome Sequencing | Here we have generated and validated zebrafish models for mild moderate and severe acute organophosphorus poisoning by exposing zebrafish larvae to different concentrations of the prototypic OP compound chlorpyrifos oxon. Our results show that zebrafish models mimic most of the aspects of this toxidrome in humans including acetylcholinesterase inhibition NMDA receptor activation calcium dysregulation and inflammatory and immune response. | P37 | breed:Wild type|dev stage:larvae|sex:not applicable|tissue:whole organism|treatment:Severe phenotype|BioSampleModel:Model organism or animal | D. rerio OP 3.0 uM CPO Rep 3 | P37 | 1 | 1 | RNA-Seq | TRANSCRIPTOMIC | unspecified | SINGLE | ILLUMINA | Illumina HiSeq 2500 | <SPOT_DESCRIPTOR><SPOT_DECODE_SPEC><SPOT_LENGTH>101</SPOT_LENGTH><READ_SPEC><READ_INDEX>0</READ_INDEX><READ_CLASS>Application Read</READ_CLASS><READ_TYPE>Forward</READ_TYPE><BASE_COORD>1</BASE_COORD></READ_SPEC></SPOT_DECODE_SPEC></SPOT_DESCRIPTOR> | SRP059060 | P37_EL4516_ACTTGA_L008_R1_001.fastq.gz P37_EL4516_ACTTGA_L007_R1_001.fastq.gz P37_EL4516_ACTTGA_L002_R1_001.fastq.gz P37_EL4516_ACTTGA_L001_R1_001.fastq.gz | fastq fastq fastq fastq | 4647442886.0 | 46014286.0 | P37 | 0:101 | A:1149955739;C:1129088798;G:1093234722;T:1274375148;N:788479 | 101 | 1149955739 | 1129088798 | 1093234722 | 1274375148 | 788479 | SRX1048367 | SRS952731 | SRA271167 | Mississippi State University|IGBB | US Army ERDC | 1 | 0.94585 | 0.12571 | 0.68633 | 0.52597 | 101 | B | usable mapping rate | illumina | hiseq_era | unknown | unknown | unknown | bulk | unknown | unknown | United States | 2015-06-04 | Larval | Larval | Whole Organism | All anatomical structures | |||||||||||||||||||||||||||
| 39689 | 39689 | SRR2051112 | SRX1048366 | SRS952732 | SRP059060 | PRJNA285816 | Danio rerio Raw sequence reads | PRJNA285816 | Whole Genome Sequencing | Here we have generated and validated zebrafish models for mild moderate and severe acute organophosphorus poisoning by exposing zebrafish larvae to different concentrations of the prototypic OP compound chlorpyrifos oxon. Our results show that zebrafish models mimic most of the aspects of this toxidrome in humans including acetylcholinesterase inhibition NMDA receptor activation calcium dysregulation and inflammatory and immune response. | P36 | breed:Wild type|dev stage:larvae|sex:not applicable|tissue:whole organism|treatment:Severe phenotype|BioSampleModel:Model organism or animal | D. rerio OP 3.0 uM CPO Rep 2 | P36 | 1 | 1 | RNA-Seq | TRANSCRIPTOMIC | unspecified | SINGLE | ILLUMINA | Illumina HiSeq 2500 | <SPOT_DESCRIPTOR><SPOT_DECODE_SPEC><SPOT_LENGTH>101</SPOT_LENGTH><READ_SPEC><READ_INDEX>0</READ_INDEX><READ_CLASS>Application Read</READ_CLASS><READ_TYPE>Forward</READ_TYPE><BASE_COORD>1</BASE_COORD></READ_SPEC></SPOT_DECODE_SPEC></SPOT_DESCRIPTOR> | SRP059060 | P36_EL4527_CCGTCC_L008_R1_001.fastq.gz P36_EL4527_CCGTCC_L007_R1_001.fastq.gz P36_EL4527_CCGTCC_L002_R1_001.fastq.gz P36_EL4527_CCGTCC_L001_R1_001.fastq.gz | fastq fastq fastq fastq | 4296894611.0 | 42543511.0 | P36 | 0:101 | A:1050039699;C:1061123166;G:1022913715;T:1162094624;N:723407 | 101 | 1050039699 | 1061123166 | 1022913715 | 1162094624 | 723407 | SRX1048366 | SRS952732 | SRA271167 | Mississippi State University|IGBB | US Army ERDC | 1 | 0.94977 | 0.13188 | 0.70976 | 0.52728 | 101 | B | usable mapping rate | illumina | hiseq_era | unknown | unknown | unknown | bulk | unknown | unknown | United States | 2015-06-04 | Larval | Larval | Whole Organism | All anatomical structures | |||||||||||||||||||||||||||
| 39690 | 39690 | SRR2051109 | SRX1048365 | SRS952730 | SRP059060 | PRJNA285816 | Danio rerio Raw sequence reads | PRJNA285816 | Whole Genome Sequencing | Here we have generated and validated zebrafish models for mild moderate and severe acute organophosphorus poisoning by exposing zebrafish larvae to different concentrations of the prototypic OP compound chlorpyrifos oxon. Our results show that zebrafish models mimic most of the aspects of this toxidrome in humans including acetylcholinesterase inhibition NMDA receptor activation calcium dysregulation and inflammatory and immune response. | P35 | breed:Wild type|dev stage:larvae|sex:not applicable|tissue:whole organism|treatment:Severe phenotype|BioSampleModel:Model organism or animal | D. rerio OP 3.0 uM CPO Rep 1 | P35 | 1 | 1 | RNA-Seq | TRANSCRIPTOMIC | unspecified | SINGLE | ILLUMINA | Illumina HiSeq 2500 | <SPOT_DESCRIPTOR><SPOT_DECODE_SPEC><SPOT_LENGTH>101</SPOT_LENGTH><READ_SPEC><READ_INDEX>0</READ_INDEX><READ_CLASS>Application Read</READ_CLASS><READ_TYPE>Forward</READ_TYPE><BASE_COORD>1</BASE_COORD></READ_SPEC></SPOT_DECODE_SPEC></SPOT_DESCRIPTOR> | SRP059060 | P35_EL4526_ATGTCA_L008_R1_001.fastq.gz P35_EL4526_ATGTCA_L007_R1_001.fastq.gz P35_EL4526_ATGTCA_L002_R1_001.fastq.gz P35_EL4526_ATGTCA_L001_R1_001.fastq.gz | fastq fastq fastq fastq | 4094752706.0 | 40542106.0 | P35 | 0:101 | A:1009779802;C:1004374749;G:969241794;T:1110655194;N:701167 | 101 | 1009779802 | 1004374749 | 969241794 | 1110655194 | 701167 | SRX1048365 | SRS952730 | SRA271167 | Mississippi State University|IGBB | US Army ERDC | 1 | 0.94442 | 0.13203 | 0.70023 | 0.53953 | 101 | B | usable mapping rate | illumina | hiseq_era | unknown | unknown | unknown | bulk | unknown | unknown | United States | 2015-06-04 | Larval | Larval | Whole Organism | All anatomical structures | |||||||||||||||||||||||||||
| 39691 | 39691 | SRR2051102 | SRX1048364 | SRS952729 | SRP059060 | PRJNA285816 | Danio rerio Raw sequence reads | PRJNA285816 | Whole Genome Sequencing | Here we have generated and validated zebrafish models for mild moderate and severe acute organophosphorus poisoning by exposing zebrafish larvae to different concentrations of the prototypic OP compound chlorpyrifos oxon. Our results show that zebrafish models mimic most of the aspects of this toxidrome in humans including acetylcholinesterase inhibition NMDA receptor activation calcium dysregulation and inflammatory and immune response. | P29 | breed:Wild type|dev stage:larvae|sex:not applicable|tissue:whole organism|treatment:Moderate phenotype|BioSampleModel:Model organism or animal | D. rerio OP 1.0 uM CPO Rep 4 | P29 | 1 | 1 | RNA-Seq | TRANSCRIPTOMIC | unspecified | SINGLE | ILLUMINA | Illumina HiSeq 2500 | <SPOT_DESCRIPTOR><SPOT_DECODE_SPEC><SPOT_LENGTH>101</SPOT_LENGTH><READ_SPEC><READ_INDEX>0</READ_INDEX><READ_CLASS>Application Read</READ_CLASS><READ_TYPE>Forward</READ_TYPE><BASE_COORD>1</BASE_COORD></READ_SPEC></SPOT_DECODE_SPEC></SPOT_DESCRIPTOR> | SRP059060 | P29_EL4510_CTTGTA_L008_R1_001.fastq.gz P29_EL4510_CTTGTA_L007_R1_001.fastq.gz P29_EL4510_CTTGTA_L002_R1_001.fastq.gz P29_EL4510_CTTGTA_L001_R1_001.fastq.gz | fastq fastq fastq fastq | 4983571896.0 | 49342296.0 | P29 | 0:101 | A:1247122516;C:1202173111;G:1173654831;T:1359775597;N:845841 | 101 | 1247122516 | 1202173111 | 1173654831 | 1359775597 | 845841 | SRX1048364 | SRS952729 | SRA271167 | Mississippi State University|IGBB | US Army ERDC | 1 | 0.94329 | 0.13234 | 0.68286 | 0.51586 | 101 | B | usable mapping rate | illumina | hiseq_era | unknown | unknown | unknown | bulk | unknown | unknown | United States | 2015-06-04 | Larval | Larval | Whole Organism | All anatomical structures | |||||||||||||||||||||||||||
| 39692 | 39692 | SRR2051100 | SRX1048363 | SRS952727 | SRP059060 | PRJNA285816 | Danio rerio Raw sequence reads | PRJNA285816 | Whole Genome Sequencing | Here we have generated and validated zebrafish models for mild moderate and severe acute organophosphorus poisoning by exposing zebrafish larvae to different concentrations of the prototypic OP compound chlorpyrifos oxon. Our results show that zebrafish models mimic most of the aspects of this toxidrome in humans including acetylcholinesterase inhibition NMDA receptor activation calcium dysregulation and inflammatory and immune response. | P28 | breed:Wild type|dev stage:larvae|sex:not applicable|tissue:whole organism|treatment:Moderate phenotype|BioSampleModel:Model organism or animal | D. rerio OP 1.0 uM CPO Rep 3 | P28 | 1 | 1 | RNA-Seq | TRANSCRIPTOMIC | unspecified | SINGLE | ILLUMINA | Illumina HiSeq 2500 | <SPOT_DESCRIPTOR><SPOT_DECODE_SPEC><SPOT_LENGTH>101</SPOT_LENGTH><READ_SPEC><READ_INDEX>0</READ_INDEX><READ_CLASS>Application Read</READ_CLASS><READ_TYPE>Forward</READ_TYPE><BASE_COORD>1</BASE_COORD></READ_SPEC></SPOT_DECODE_SPEC></SPOT_DESCRIPTOR> | SRP059060 | P28_EL4509_CAGATC_L008_R1_001.fastq.gz P28_EL4509_CAGATC_L007_R1_001.fastq.gz P28_EL4509_CAGATC_L002_R1_001.fastq.gz P28_EL4509_CAGATC_L001_R1_001.fastq.gz | fastq fastq fastq fastq | 4032678914.0 | 39927514.0 | P28 | 0:101 | A:1015356577;C:970369004;G:937306142;T:1108957703;N:689488 | 101 | 1015356577 | 970369004 | 937306142 | 1108957703 | 689488 | SRX1048363 | SRS952727 | SRA271167 | Mississippi State University|IGBB | US Army ERDC | 1 | 0.93887 | 0.13869 | 0.69079 | 0.52237 | 101 | B | usable mapping rate | illumina | hiseq_era | unknown | unknown | unknown | bulk | unknown | unknown | United States | 2015-06-04 | Larval | Larval | Whole Organism | All anatomical structures | |||||||||||||||||||||||||||
| 39693 | 39693 | SRR2051101 | SRX1048362 | SRS952728 | SRP059060 | PRJNA285816 | Danio rerio Raw sequence reads | PRJNA285816 | Whole Genome Sequencing | Here we have generated and validated zebrafish models for mild moderate and severe acute organophosphorus poisoning by exposing zebrafish larvae to different concentrations of the prototypic OP compound chlorpyrifos oxon. Our results show that zebrafish models mimic most of the aspects of this toxidrome in humans including acetylcholinesterase inhibition NMDA receptor activation calcium dysregulation and inflammatory and immune response. | P26 | breed:Wild type|dev stage:larvae|sex:not applicable|tissue:whole organism|treatment:Moderate phenotype|BioSampleModel:Model organism or animal | D. rerio OP 1.0 uM CPO Rep 2 | P26 | 1 | 1 | RNA-Seq | TRANSCRIPTOMIC | unspecified | SINGLE | ILLUMINA | Illumina HiSeq 2500 | <SPOT_DESCRIPTOR><SPOT_DECODE_SPEC><SPOT_LENGTH>101</SPOT_LENGTH><READ_SPEC><READ_INDEX>0</READ_INDEX><READ_CLASS>Application Read</READ_CLASS><READ_TYPE>Forward</READ_TYPE><BASE_COORD>1</BASE_COORD></READ_SPEC></SPOT_DECODE_SPEC></SPOT_DESCRIPTOR> | SRP059060 | P26_EL4508_GCCAAT_L001_R1_001.fastq.gz P26_EL4508_GCCAAT_L007_R1_001.fastq.gz P26_EL4508_GCCAAT_L008_R1_001.fastq.gz P26_EL4508_GCCAAT_L002_R1_001.fastq.gz | fastq fastq fastq fastq | 6526758875.0 | 64621375.0 | P26 | 0:101 | A:1635664768;C:1568967965;G:1518148006;T:1802863908;N:1114228 | 101 | 1635664768 | 1568967965 | 1518148006 | 1802863908 | 1114228 | SRX1048362 | SRS952728 | SRA271167 | Mississippi State University|IGBB | US Army ERDC | 1 | 0.93822 | 0.15203 | 0.68609 | 0.53171 | 101 | B | usable mapping rate | illumina | hiseq_era | unknown | unknown | unknown | bulk | unknown | unknown | United States | 2016-03-17 | Larval | Larval | Whole Organism | All anatomical structures | |||||||||||||||||||||||||||
| 39694 | 39694 | SRR2051096 | SRX1048361 | SRS952726 | SRP059060 | PRJNA285816 | Danio rerio Raw sequence reads | PRJNA285816 | Whole Genome Sequencing | Here we have generated and validated zebrafish models for mild moderate and severe acute organophosphorus poisoning by exposing zebrafish larvae to different concentrations of the prototypic OP compound chlorpyrifos oxon. Our results show that zebrafish models mimic most of the aspects of this toxidrome in humans including acetylcholinesterase inhibition NMDA receptor activation calcium dysregulation and inflammatory and immune response. | P25 | breed:Wild type|dev stage:larvae|sex:not applicable|tissue:whole organism|treatment:Moderate phenotype|BioSampleModel:Model organism or animal | D. rerio OP 1.0 uM CPO Rep 1 | P25 | 1 | 1 | RNA-Seq | TRANSCRIPTOMIC | unspecified | SINGLE | ILLUMINA | Illumina HiSeq 2500 | <SPOT_DESCRIPTOR><SPOT_DECODE_SPEC><SPOT_LENGTH>101</SPOT_LENGTH><READ_SPEC><READ_INDEX>0</READ_INDEX><READ_CLASS>Application Read</READ_CLASS><READ_TYPE>Forward</READ_TYPE><BASE_COORD>1</BASE_COORD></READ_SPEC></SPOT_DECODE_SPEC></SPOT_DESCRIPTOR> | SRP059060 | P25_EL4511_ATCACG_L001_R1_001.fastq.gz P25_EL4511_ATCACG_L002_R1_001.fastq.gz P25_EL4511_ATCACG_L007_R1_001.fastq.gz P25_EL4511_ATCACG_L008_R1_001.fastq.gz | fastq fastq fastq fastq | 4185957322.0 | 41445122.0 | P25 | 0:101 | A:1081936223;C:978799105;G:956795307;T:1167714259;N:712428 | 101 | 1081936223 | 978799105 | 956795307 | 1167714259 | 712428 | SRX1048361 | SRS952726 | SRA271167 | Mississippi State University|IGBB | US Army ERDC | 1 | 0.9288 | 0.17032 | 0.6801 | 0.51298 | 101 | B | usable mapping rate | illumina | hiseq_era | unknown | unknown | unknown | bulk | unknown | unknown | United States | 2016-03-17 | Larval | Larval | Whole Organism | All anatomical structures | |||||||||||||||||||||||||||
| 39695 | 39695 | SRR2051095 | SRX1048360 | SRS952725 | SRP059060 | PRJNA285816 | Danio rerio Raw sequence reads | PRJNA285816 | Whole Genome Sequencing | Here we have generated and validated zebrafish models for mild moderate and severe acute organophosphorus poisoning by exposing zebrafish larvae to different concentrations of the prototypic OP compound chlorpyrifos oxon. Our results show that zebrafish models mimic most of the aspects of this toxidrome in humans including acetylcholinesterase inhibition NMDA receptor activation calcium dysregulation and inflammatory and immune response. | P19 | breed:Wild type|dev stage:larvae|sex:not applicable|tissue:whole organism|treatment:Mild phenotype|BioSampleModel:Model organism or animal | D. rerio OP 0.1 uM CPO Rep 4 | P19 | 1 | 1 | RNA-Seq | TRANSCRIPTOMIC | unspecified | SINGLE | ILLUMINA | Illumina HiSeq 2500 | <SPOT_DESCRIPTOR><SPOT_DECODE_SPEC><SPOT_LENGTH>101</SPOT_LENGTH><READ_SPEC><READ_INDEX>0</READ_INDEX><READ_CLASS>Application Read</READ_CLASS><READ_TYPE>Forward</READ_TYPE><BASE_COORD>1</BASE_COORD></READ_SPEC></SPOT_DECODE_SPEC></SPOT_DESCRIPTOR> | SRP059060 | P19_EL4521_GGCTAC_L008_R1_001.fastq.gz P19_EL4521_GGCTAC_L007_R1_001.fastq.gz P19_EL4521_GGCTAC_L002_R1_001.fastq.gz P19_EL4521_GGCTAC_L001_R1_001.fastq.gz | fastq fastq fastq fastq | 4293546461.0 | 42510361.0 | P19 | 0:101 | A:1062707728;C:1045602693;G:1011860446;T:1172670772;N:704822 | 101 | 1062707728 | 1045602693 | 1011860446 | 1172670772 | 704822 | SRX1048360 | SRS952725 | SRA271167 | Mississippi State University|IGBB | US Army ERDC | 1 | 0.94381 | 0.13697 | 0.69051 | 0.51415 | 101 | B | usable mapping rate | illumina | hiseq_era | unknown | unknown | unknown | bulk | unknown | unknown | United States | 2015-06-04 | Larval | Larval | Whole Organism | All anatomical structures | |||||||||||||||||||||||||||
| 39696 | 39696 | SRR2051094 | SRX1048359 | SRS952724 | SRP059060 | PRJNA285816 | Danio rerio Raw sequence reads | PRJNA285816 | Whole Genome Sequencing | Here we have generated and validated zebrafish models for mild moderate and severe acute organophosphorus poisoning by exposing zebrafish larvae to different concentrations of the prototypic OP compound chlorpyrifos oxon. Our results show that zebrafish models mimic most of the aspects of this toxidrome in humans including acetylcholinesterase inhibition NMDA receptor activation calcium dysregulation and inflammatory and immune response. | P18 | breed:Wild type|dev stage:larvae|sex:not applicable|tissue:whole organism|treatment:Mild phenotype|BioSampleModel:Model organism or animal | D. rerio OP 0.1 uM CPO Rep 3 | P18 | 1 | 1 | RNA-Seq | TRANSCRIPTOMIC | unspecified | SINGLE | ILLUMINA | Illumina HiSeq 2500 | <SPOT_DESCRIPTOR><SPOT_DECODE_SPEC><SPOT_LENGTH>101</SPOT_LENGTH><READ_SPEC><READ_INDEX>0</READ_INDEX><READ_CLASS>Application Read</READ_CLASS><READ_TYPE>Forward</READ_TYPE><BASE_COORD>1</BASE_COORD></READ_SPEC></SPOT_DECODE_SPEC></SPOT_DESCRIPTOR> | SRP059060 | P18_EL4520_TAGCTT_L008_R1_001.fastq.gz P18_EL4520_TAGCTT_L007_R1_001.fastq.gz P18_EL4520_TAGCTT_L002_R1_001.fastq.gz P18_EL4520_TAGCTT_L001_R1_001.fastq.gz | fastq fastq fastq fastq | 4257944163.0 | 42157863.0 | P18 | 0:101 | A:1044532409;C:1049992329;G:1010166097;T:1152524203;N:729125 | 101 | 1044532409 | 1049992329 | 1010166097 | 1152524203 | 729125 | SRX1048359 | SRS952724 | SRA271167 | Mississippi State University|IGBB | US Army ERDC | 1 | 0.94262 | 0.14592 | 0.69014 | 0.52498 | 101 | B | usable mapping rate | illumina | hiseq_era | unknown | unknown | unknown | bulk | unknown | unknown | United States | 2016-03-17 | Larval | Larval | Whole Organism | All anatomical structures | |||||||||||||||||||||||||||
| 39697 | 39697 | SRR2051093 | SRX1048358 | SRS952723 | SRP059060 | PRJNA285816 | Danio rerio Raw sequence reads | PRJNA285816 | Whole Genome Sequencing | Here we have generated and validated zebrafish models for mild moderate and severe acute organophosphorus poisoning by exposing zebrafish larvae to different concentrations of the prototypic OP compound chlorpyrifos oxon. Our results show that zebrafish models mimic most of the aspects of this toxidrome in humans including acetylcholinesterase inhibition NMDA receptor activation calcium dysregulation and inflammatory and immune response. | P17 | breed:Wild type|dev stage:larvae|sex:not applicable|tissue:whole organism|treatment:Mild phenotype|BioSampleModel:Model organism or animal | D. rerio OP 0.1 uM CPO Rep 2 | P17 | 1 | 1 | RNA-Seq | TRANSCRIPTOMIC | unspecified | SINGLE | ILLUMINA | Illumina HiSeq 2500 | <SPOT_DESCRIPTOR><SPOT_DECODE_SPEC><SPOT_LENGTH>101</SPOT_LENGTH><READ_SPEC><READ_INDEX>0</READ_INDEX><READ_CLASS>Application Read</READ_CLASS><READ_TYPE>Forward</READ_TYPE><BASE_COORD>1</BASE_COORD></READ_SPEC></SPOT_DECODE_SPEC></SPOT_DESCRIPTOR> | SRP059060 | P17_EL4522_AGTCAA_L007_R1_001.fastq.gz P17_EL4522_AGTCAA_L008_R1_001.fastq.gz P17_EL4522_AGTCAA_L002_R1_001.fastq.gz P17_EL4522_AGTCAA_L001_R1_001.fastq.gz | fastq fastq fastq fastq | 4278385553.0 | 42360253.0 | P17 | 0:101 | A:1040955882;C:1060023973;G:1019487833;T:1157186726;N:731139 | 101 | 1040955882 | 1060023973 | 1019487833 | 1157186726 | 731139 | SRX1048358 | SRS952723 | SRA271167 | Mississippi State University|IGBB | US Army ERDC | 1 | 0.94697 | 0.14458 | 0.69643 | 0.53451 | 101 | B | usable mapping rate | illumina | hiseq_era | unknown | unknown | unknown | bulk | unknown | unknown | United States | 2016-03-17 | Larval | Larval | Whole Organism | All anatomical structures | |||||||||||||||||||||||||||
| 39698 | 39698 | SRR2051092 | SRX1048357 | SRS952722 | SRP059060 | PRJNA285816 | Danio rerio Raw sequence reads | PRJNA285816 | Whole Genome Sequencing | Here we have generated and validated zebrafish models for mild moderate and severe acute organophosphorus poisoning by exposing zebrafish larvae to different concentrations of the prototypic OP compound chlorpyrifos oxon. Our results show that zebrafish models mimic most of the aspects of this toxidrome in humans including acetylcholinesterase inhibition NMDA receptor activation calcium dysregulation and inflammatory and immune response. | P15 | breed:Wild type|dev stage:larvae|sex:not applicable|tissue:whole organism|treatment:mild phenotype|BioSampleModel:Model organism or animal | D. rerio OP 0.1 uM CPO Rep 1 | P15 | 1 | 1 | RNA-Seq | TRANSCRIPTOMIC | unspecified | SINGLE | ILLUMINA | Illumina HiSeq 2500 | <SPOT_DESCRIPTOR><SPOT_DECODE_SPEC><SPOT_LENGTH>101</SPOT_LENGTH><READ_SPEC><READ_INDEX>0</READ_INDEX><READ_CLASS>Application Read</READ_CLASS><READ_TYPE>Forward</READ_TYPE><BASE_COORD>1</BASE_COORD></READ_SPEC></SPOT_DECODE_SPEC></SPOT_DESCRIPTOR> | SRP059060 | P15_EL4523_AGTTCC_L001_R1_001.fastq.gz P15_EL4523_AGTTCC_L002_R1_001.fastq.gz P15_EL4523_AGTTCC_L007_R1_001.fastq.gz P15_EL4523_AGTTCC_L008_R1_001.fastq.gz | fastq fastq fastq fastq | 4341747499.0 | 42987599.0 | P15 | 0:101 | A:1052621077;C:1088380866;G:1041958433;T:1158051746;N:735377 | 101 | 1052621077 | 1088380866 | 1041958433 | 1158051746 | 735377 | SRX1048357 | SRS952722 | SRA271167 | Mississippi State University|IGBB | US Army ERDC | 1 | 0.94563 | 0.153 | 0.69822 | 0.54133 | 101 | B | usable mapping rate | illumina | hiseq_era | unknown | unknown | unknown | bulk | unknown | unknown | United States | 2015-06-04 | Larval | Larval | Whole Organism | All anatomical structures | |||||||||||||||||||||||||||
| 39699 | 39699 | SRR2051091 | SRX1048356 | SRS952721 | SRP059060 | PRJNA285816 | Danio rerio Raw sequence reads | PRJNA285816 | Whole Genome Sequencing | Here we have generated and validated zebrafish models for mild moderate and severe acute organophosphorus poisoning by exposing zebrafish larvae to different concentrations of the prototypic OP compound chlorpyrifos oxon. Our results show that zebrafish models mimic most of the aspects of this toxidrome in humans including acetylcholinesterase inhibition NMDA receptor activation calcium dysregulation and inflammatory and immune response. | CN9 | breed:Wild type|dev stage:larvae|sex:not applicable|tissue:whole organism|treatment:Control|BioSampleModel:Model organism or animal | D. rerio OP Control Rep 4 | CN9 | 1 | 1 | RNA-Seq | TRANSCRIPTOMIC | unspecified | SINGLE | ILLUMINA | Illumina HiSeq 2500 | <SPOT_DESCRIPTOR><SPOT_DECODE_SPEC><SPOT_LENGTH>101</SPOT_LENGTH><READ_SPEC><READ_INDEX>0</READ_INDEX><READ_CLASS>Application Read</READ_CLASS><READ_TYPE>Forward</READ_TYPE><BASE_COORD>1</BASE_COORD></READ_SPEC></SPOT_DECODE_SPEC></SPOT_DESCRIPTOR> | SRP059060 | CN9_EL4515_TTAGGC_L001_R1_001.fastq.gz CN9_EL4515_TTAGGC_L002_R1_001.fastq.gz CN9_EL4515_TTAGGC_L007_R1_001.fastq.gz CN9_EL4515_TTAGGC_L008_R1_001.fastq.gz | fastq fastq fastq fastq | 4220387212.0 | 41786012.0 | CN9 | 0:101 | A:1031722430;C:1044497851;G:1005706674;T:1137783022;N:677235 | 101 | 1031722430 | 1044497851 | 1005706674 | 1137783022 | 677235 | SRX1048356 | SRS952721 | SRA271167 | Mississippi State University|IGBB | US Army ERDC | 1 | 0.95231 | 0.14084 | 0.69682 | 0.52966 | 101 | B | usable mapping rate | illumina | hiseq_era | unknown | unknown | unknown | bulk | unknown | unknown | United States | 2016-03-17 | Larval | Larval | Whole Organism | All anatomical structures | |||||||||||||||||||||||||||
| 39700 | 39700 | SRR2051090 | SRX1048354 | SRS952719 | SRP059060 | PRJNA285816 | Danio rerio Raw sequence reads | PRJNA285816 | Whole Genome Sequencing | Here we have generated and validated zebrafish models for mild moderate and severe acute organophosphorus poisoning by exposing zebrafish larvae to different concentrations of the prototypic OP compound chlorpyrifos oxon. Our results show that zebrafish models mimic most of the aspects of this toxidrome in humans including acetylcholinesterase inhibition NMDA receptor activation calcium dysregulation and inflammatory and immune response. | CN8 | breed:Wild type|dev stage:larvae|sex:not applicable|tissue:whole organism|treatment:Control|BioSampleModel:Model organism or animal | D. rerio OP Control Rep 3 | CN8 | 1 | 1 | RNA-Seq | TRANSCRIPTOMIC | unspecified | SINGLE | ILLUMINA | Illumina HiSeq 2500 | <SPOT_DESCRIPTOR><SPOT_DECODE_SPEC><SPOT_LENGTH>101</SPOT_LENGTH><READ_SPEC><READ_INDEX>0</READ_INDEX><READ_CLASS>Application Read</READ_CLASS><READ_TYPE>Forward</READ_TYPE><BASE_COORD>1</BASE_COORD></READ_SPEC></SPOT_DECODE_SPEC></SPOT_DESCRIPTOR> | SRP059060 | CN8_EL4505_CGATGT_L008_R1_001.fastq.gz CN8_EL4505_CGATGT_L007_R1_001.fastq.gz CN8_EL4505_CGATGT_L002_R1_001.fastq.gz CN8_EL4505_CGATGT_L001_R1_001.fastq.gz | fastq fastq fastq fastq | 5835502553.0 | 57777253.0 | CN8 | 0:101 | A:1424369529;C:1441755207;G:1391851806;T:1576540272;N:985739 | 101 | 1424369529 | 1441755207 | 1391851806 | 1576540272 | 985739 | SRX1048354 | SRS952719 | SRA271167 | Mississippi State University|IGBB | US Army ERDC | 1 | 0.94643 | 0.12925 | 0.70725 | 0.52949 | 101 | B | usable mapping rate | illumina | hiseq_era | unknown | unknown | unknown | bulk | unknown | unknown | United States | 2016-03-17 | Larval | Larval | Whole Organism | All anatomical structures | |||||||||||||||||||||||||||
| 39701 | 39701 | SRR2050894 | SRX1048353 | SRS952718 | SRP059060 | PRJNA285816 | Danio rerio Raw sequence reads | PRJNA285816 | Whole Genome Sequencing | Here we have generated and validated zebrafish models for mild moderate and severe acute organophosphorus poisoning by exposing zebrafish larvae to different concentrations of the prototypic OP compound chlorpyrifos oxon. Our results show that zebrafish models mimic most of the aspects of this toxidrome in humans including acetylcholinesterase inhibition NMDA receptor activation calcium dysregulation and inflammatory and immune response. | CN7 | breed:Wild type|dev stage:larvae|sex:not applicable|tissue:whole organism|treatment:Control|BioSampleModel:Model organism or animal | D. rerio OP Control Rep 2 | CN7 | 1 | 1 | RNA-Seq | TRANSCRIPTOMIC | unspecified | SINGLE | ILLUMINA | Illumina HiSeq 2500 | <SPOT_DESCRIPTOR><SPOT_DECODE_SPEC><SPOT_LENGTH>101</SPOT_LENGTH><READ_SPEC><READ_INDEX>0</READ_INDEX><READ_CLASS>Application Read</READ_CLASS><READ_TYPE>Forward</READ_TYPE><BASE_COORD>1</BASE_COORD></READ_SPEC></SPOT_DECODE_SPEC></SPOT_DESCRIPTOR> | SRP059060 | CN7_EL4507_ACAGTG_L008_R1_001.fastq.gz CN7_EL4507_ACAGTG_L007_R1_001.fastq.gz CN7_EL4507_ACAGTG_L002_R1_001.fastq.gz CN7_EL4507_ACAGTG_L001_R1_001.fastq.gz | fastq fastq fastq fastq | 4789094477.0 | 47416777.0 | CN7 | 0:101 | A:1160528098;C:1197558725;G:1155573375;T:1274638263;N:796016 | 101 | 1160528098 | 1197558725 | 1155573375 | 1274638263 | 796016 | SRX1048353 | SRS952718 | SRA271167 | Mississippi State University|IGBB | US Army ERDC | 1 | 0.9501 | 0.14828 | 0.69966 | 0.52764 | 101 | B | usable mapping rate | illumina | hiseq_era | unknown | unknown | unknown | bulk | unknown | unknown | United States | 2016-03-17 | Larval | Larval | Whole Organism | All anatomical structures | |||||||||||||||||||||||||||
| 39702 | 39702 | SRR2050892 | SRX1048352 | SRS952717 | SRP059060 | PRJNA285816 | Danio rerio Raw sequence reads | PRJNA285816 | Whole Genome Sequencing | Here we have generated and validated zebrafish models for mild moderate and severe acute organophosphorus poisoning by exposing zebrafish larvae to different concentrations of the prototypic OP compound chlorpyrifos oxon. Our results show that zebrafish models mimic most of the aspects of this toxidrome in humans including acetylcholinesterase inhibition NMDA receptor activation calcium dysregulation and inflammatory and immune response. | CN5 | breed:wild type|dev stage:larvae|sex:not applicable|tissue:whole organism|treatment:Control|BioSampleModel:Model organism or animal | D. rerio OP Control Rep 1 | CN5 | CN5 EL4506 TGACCA | 1 | RNA-Seq | TRANSCRIPTOMIC | unspecified | SINGLE | ILLUMINA | Illumina HiSeq 2500 | <SPOT_DESCRIPTOR><SPOT_DECODE_SPEC><SPOT_LENGTH>101</SPOT_LENGTH><READ_SPEC><READ_INDEX>0</READ_INDEX><READ_CLASS>Application Read</READ_CLASS><READ_TYPE>Forward</READ_TYPE><BASE_COORD>1</BASE_COORD></READ_SPEC></SPOT_DECODE_SPEC></SPOT_DESCRIPTOR> | SRP059060 | CN5_EL4506_TGACCA_L001_R1_001.fastq.gz CN5_EL4506_TGACCA_L002_R1_001.fastq.gz CN5_EL4506_TGACCA_L007_R1_001.fastq.gz CN5_EL4506_TGACCA_L008_R1_001.fastq.gz | fastq fastq fastq fastq | 4526144512.0 | 44813312.0 | CN5 | 0:101 | A:1109966549;C:1116619353;G:1075422479;T:1223366972;N:769159 | 101 | 1109966549 | 1116619353 | 1075422479 | 1223366972 | 769159 | SRX1048352 | SRS952717 | SRA271167 | Mississippi State University|IGBB | US Army ERDC | 1 | 0.94604 | 0.14084 | 0.69004 | 0.53407 | 101 | B | usable mapping rate | illumina | hiseq_era | unknown | unknown | unknown | bulk | unknown | unknown | United States | 2016-03-17 | Larval | Larval | Whole Organism | All anatomical structures | |||||||||||||||||||||||||||
| 39751 | 39751 | SRR2422954 | SRX1092140 | SRS987764 | SRP060685 | PRJNA289590 | Danio rerio Raw sequence reads | PRJNA289590 | Whole Genome Sequencing | The Goal of the study is to compare RNA expression especially splicing profiles in wildtype and U2af2 KD zebrafish | U2AFAB KD | U2AFA2B KD | U2A2FA and U2AF2B knockdown | treatment:U2AF2A B morpholino|developmental stage:embryo|age:24 hours|strain:wildtype|sex:not applicable|tissue:whole embryo|BioSampleModel:Model organism or animal | U2AF2A and U2AF2B KD | U2AFAB KD | 1 | 1 | RNA-Seq | TRANSCRIPTOMIC | unspecified | PAIRED | ILLUMINA | Illumina HiSeq 2000 | <SPOT_DESCRIPTOR><SPOT_DECODE_SPEC><SPOT_LENGTH>202</SPOT_LENGTH><READ_SPEC><READ_INDEX>0</READ_INDEX><READ_CLASS>Application Read</READ_CLASS><READ_TYPE>Forward</READ_TYPE><BASE_COORD>1</BASE_COORD></READ_SPEC><READ_SPEC><READ_INDEX>1</READ_INDEX><READ_CLASS>Application Read</READ_CLASS><READ_TYPE>Reverse</READ_TYPE><BASE_COORD>102</BASE_COORD></READ_SPEC></SPOT_DECODE_SPEC></SPOT_DESCRIPTOR> | SRP060685 | zebrafish_U2af2KD_2_2.fastq.gz zebrafish_U2af2KD_2_1.fastq.gz | fastq fastq | 4010033906.0 | 19851653.0 | u2afa u2afb kd | 0:101 1:101 | A:954988404;C:1049486839;G:1028325376;T:975960838;N:1272449 | 101 | 101 | 954988404 | 1049486839 | 1028325376 | 975960838 | 1272449 | SRX1092140 | SRS987764 | SRA276795 | Brown University|Fairbrother Lab | Brown University | 2 | 0.88891 | 0.88704 | 0.22441 | 0.2245 | 0.73781 | 0.74111 | 0.60755 | 0.61314 | 101 | 101 | B | B | biological fallback assumption | illumina | hiseq_era | unknown | unknown | unknown | bulk | unknown | unknown | United States | 2015-09-19 | Pharyngula | Embryo | Whole Organism | All anatomical structures | ||||||||||||||||||
| 39752 | 39752 | SRR2422968 | SRX1092139 | SRS987762 | SRP060685 | PRJNA289590 | Danio rerio Raw sequence reads | PRJNA289590 | Whole Genome Sequencing | The Goal of the study is to compare RNA expression especially splicing profiles in wildtype and U2af2 KD zebrafish | U2AFB KD | U2AF2B KD | U2AF2B knockdown | treatment:U2AF2B morpholino|developmental stage:embryo|age:24 hours|strain:wildtype|sex:not applicable|tissue:whole embryo|BioSampleModel:Model organism or animal | U2AF2B KD | U2AFB KD | 1 | 1 | RNA-Seq | TRANSCRIPTOMIC | unspecified | PAIRED | ILLUMINA | Illumina HiSeq 2000 | <SPOT_DESCRIPTOR><SPOT_DECODE_SPEC><SPOT_LENGTH>202</SPOT_LENGTH><READ_SPEC><READ_INDEX>0</READ_INDEX><READ_CLASS>Application Read</READ_CLASS><READ_TYPE>Forward</READ_TYPE><BASE_COORD>1</BASE_COORD></READ_SPEC><READ_SPEC><READ_INDEX>1</READ_INDEX><READ_CLASS>Application Read</READ_CLASS><READ_TYPE>Reverse</READ_TYPE><BASE_COORD>102</BASE_COORD></READ_SPEC></SPOT_DECODE_SPEC></SPOT_DESCRIPTOR> | SRP060685 | zebrafish_U2af2KD_5_1.fastq.gz zebrafish_U2af2KD_5_2.fastq.gz | fastq fastq | 3657236866.0 | 18105133.0 | u2af2b kd | 0:101 1:101 | A:859906359;C:963846892;G:950183263;T:882292781;N:1007571 | 101 | 101 | 859906359 | 963846892 | 950183263 | 882292781 | 1007571 | SRX1092139 | SRS987762 | SRA276795 | Brown University|Fairbrother Lab | Brown University | 2 | 0.87685 | 0.87325 | 0.21282 | 0.21347 | 0.74899 | 0.75166 | 0.65013 | 0.65163 | 101 | 101 | B | B | biological fallback assumption | illumina | hiseq_era | unknown | unknown | unknown | bulk | unknown | unknown | United States | 2015-09-19 | Pharyngula | Embryo | Whole Organism | All anatomical structures | ||||||||||||||||||
| 39753 | 39753 | SRR2422941 | SRX1092136 | SRS987760 | SRP060685 | PRJNA289590 | Danio rerio Raw sequence reads | PRJNA289590 | Whole Genome Sequencing | The Goal of the study is to compare RNA expression especially splicing profiles in wildtype and U2af2 KD zebrafish | Control1 | Control1 | Control1 | treatment:Control 1|developmental stage:embryo|age:24 hours|strain:wildtype|sex:not applicable|tissue:whole embryo|BioSampleModel:Model organism or animal | control 1 | Control1 | 1 | 1 | RNA-Seq | TRANSCRIPTOMIC | unspecified | PAIRED | ILLUMINA | Illumina HiSeq 2000 | <SPOT_DESCRIPTOR><SPOT_DECODE_SPEC><SPOT_LENGTH>202</SPOT_LENGTH><READ_SPEC><READ_INDEX>0</READ_INDEX><READ_CLASS>Application Read</READ_CLASS><READ_TYPE>Forward</READ_TYPE><BASE_COORD>1</BASE_COORD></READ_SPEC><READ_SPEC><READ_INDEX>1</READ_INDEX><READ_CLASS>Application Read</READ_CLASS><READ_TYPE>Reverse</READ_TYPE><BASE_COORD>102</BASE_COORD></READ_SPEC></SPOT_DECODE_SPEC></SPOT_DESCRIPTOR> | SRP060685 | zebrafish_U2af2KD_1_2.fastq.gz zebrafish_U2af2KD_1_1.fastq.gz | fastq fastq | 5446154724.0 | 26961162.0 | control1 | 0:101 1:101 | A:1236792250;C:1484635192;G:1463483173;T:1259686822;N:1557287 | 101 | 101 | 1236792250 | 1484635192 | 1463483173 | 1259686822 | 1557287 | SRX1092136 | SRS987760 | SRA276795 | Brown University|Fairbrother Lab | Brown University | 2 | 0.88645 | 0.88416 | 0.23061 | 0.23167 | 0.75872 | 0.75921 | 0.63459 | 0.63891 | 101 | 101 | B | B | biological fallback assumption | illumina | hiseq_era | unknown | unknown | unknown | bulk | unknown | unknown | United States | 2015-09-19 | Pharyngula | Embryo | Whole Organism | All anatomical structures | ||||||||||||||||||
| 39754 | 39754 | SRR2422967 | SRX1092138 | SRS987763 | SRP060685 | PRJNA289590 | Danio rerio Raw sequence reads | PRJNA289590 | Whole Genome Sequencing | The Goal of the study is to compare RNA expression especially splicing profiles in wildtype and U2af2 KD zebrafish | U2AFA KD | U2AF2A KD | U2AF2A knockdown | treatment:U2AF2A morpholino|developmental stage:embryo|age:24 hours|strain:wildtype|sex:not applicable|tissue:whole embryo|BioSampleModel:Model organism or animal | U2AF A KD | U2AFA KD | 1 | 1 | RNA-Seq | TRANSCRIPTOMIC | unspecified | PAIRED | ILLUMINA | Illumina HiSeq 2000 | <SPOT_DESCRIPTOR><SPOT_DECODE_SPEC><SPOT_LENGTH>202</SPOT_LENGTH><READ_SPEC><READ_INDEX>0</READ_INDEX><READ_CLASS>Application Read</READ_CLASS><READ_TYPE>Forward</READ_TYPE><BASE_COORD>1</BASE_COORD></READ_SPEC><READ_SPEC><READ_INDEX>1</READ_INDEX><READ_CLASS>Application Read</READ_CLASS><READ_TYPE>Reverse</READ_TYPE><BASE_COORD>102</BASE_COORD></READ_SPEC></SPOT_DECODE_SPEC></SPOT_DESCRIPTOR> | SRP060685 | zebrafish_U2af2KD_4_1.fastq.gz zebrafish_U2af2KD_4_2.fastq.gz | fastq fastq | 7385905174.0 | 36563887.0 | u2af2a kd | 0:101 1:101 | A:1742999157;C:1956220866;G:1920103000;T:1764198542;N:2383609 | 101 | 101 | 1742999157 | 1956220866 | 1920103000 | 1764198542 | 2383609 | SRX1092138 | SRS987763 | SRA276795 | Brown University|Fairbrother Lab | Brown University | 2 | 0.74404 | 0.74051 | 0.14971 | 0.14762 | 0.76641 | 0.76757 | 0.56197 | 0.56515 | 101 | 101 | B | B | biological fallback assumption | illumina | hiseq_era | unknown | unknown | unknown | bulk | unknown | unknown | United States | 2015-09-19 | Pharyngula | Embryo | Whole Organism | All anatomical structures | ||||||||||||||||||
| 39755 | 39755 | SRR2422942 | SRX1092137 | SRS987761 | SRP060685 | PRJNA289590 | Danio rerio Raw sequence reads | PRJNA289590 | Whole Genome Sequencing | The Goal of the study is to compare RNA expression especially splicing profiles in wildtype and U2af2 KD zebrafish | Control2 | Control2 | Control2 | treatment:Control 2|developmental stage:embryo|age:24 hours|strain:wildtype|sex:not applicable|tissue:whole embryo|BioSampleModel:Model organism or animal | control 2 | Control 2 | 1 | 1 | RNA-Seq | TRANSCRIPTOMIC | unspecified | PAIRED | ILLUMINA | Illumina HiSeq 2000 | <SPOT_DESCRIPTOR><SPOT_DECODE_SPEC><SPOT_LENGTH>202</SPOT_LENGTH><READ_SPEC><READ_INDEX>0</READ_INDEX><READ_CLASS>Application Read</READ_CLASS><READ_TYPE>Forward</READ_TYPE><BASE_COORD>1</BASE_COORD></READ_SPEC><READ_SPEC><READ_INDEX>1</READ_INDEX><READ_CLASS>Application Read</READ_CLASS><READ_TYPE>Reverse</READ_TYPE><BASE_COORD>102</BASE_COORD></READ_SPEC></SPOT_DECODE_SPEC></SPOT_DESCRIPTOR> | SRP060685 | zebrafish_U2af2KD_3_1.fastq.gz zebrafish_U2af2KD_3_2.fastq.gz | fastq fastq | 4226478926.0 | 20923163.0 | control2 | 0:101 1:101 | A:1005765442;C:1098720686;G:1084955814;T:1035764094;N:1272890 | 101 | 101 | 1005765442 | 1098720686 | 1084955814 | 1035764094 | 1272890 | SRX1092137 | SRS987761 | SRA276795 | Brown University|Fairbrother Lab | Brown University | 2 | 0.83225 | 0.83092 | 0.22325 | 0.22374 | 0.75396 | 0.75603 | 0.6203 | 0.61868 | 101 | 101 | B | B | biological fallback assumption | illumina | hiseq_era | unknown | unknown | unknown | bulk | unknown | unknown | United States | 2015-09-19 | Pharyngula | Embryo | Whole Organism | All anatomical structures | ||||||||||||||||||
| 39824 | 39824 | SRR2168748 | SRX1153634 | SRS1036568 | SRP062468 | PRJNA293022 | Danio rerio heart chamber specific transcriptome | PRJNA293022 | Whole Genome Sequencing | Chamber specific transcriptome of zebrafish namely atrium ventricle and bulbus arteriosus | ASWT Heart chamber transcriptome | breed:ASWT|age:2 years|dev stage:Adult|sex:not applicable|tissue:Heart Chambers|BioSampleModel:Model organism or animal | Zebrafish ASWT heart bulbus arteriosus transcriptome | Zebrafish bulbus arteriosus | Bulbus arteriosus | 1 | RNA-Seq | TRANSCRIPTOMIC | unspecified | PAIRED | ILLUMINA | Illumina HiSeq 2500 | <SPOT_DESCRIPTOR><SPOT_DECODE_SPEC><SPOT_LENGTH>202</SPOT_LENGTH><READ_SPEC><READ_INDEX>0</READ_INDEX><READ_CLASS>Application Read</READ_CLASS><READ_TYPE>Forward</READ_TYPE><BASE_COORD>1</BASE_COORD></READ_SPEC><READ_SPEC><READ_INDEX>1</READ_INDEX><READ_CLASS>Application Read</READ_CLASS><READ_TYPE>Reverse</READ_TYPE><BASE_COORD>102</BASE_COORD></READ_SPEC></SPOT_DECODE_SPEC></SPOT_DESCRIPTOR> | SRP062468 | ZFBulbouse_cat_R1.fastq.gz ZFBulbouse_cat_R2.fastq.gz | fastq fastq | 31137941450.0 | 154148225.0 | Zebrafish bulbus arteriosus | 0:101 1:101 | A:8841038901;C:6663109706;G:6831238323;T:8799856408;N:2698112 | 101 | 101 | 8841038901 | 6663109706 | 6831238323 | 8799856408 | 2698112 | SRX1153634 | SRS1036568 | SRA289351 | CSIR-IGIB | CSIR- Institute of Genomics and Integrative Biology | 2 | 0.81876 | 0.77794 | 0.54672 | 0.51003 | 0.7162 | 0.72752 | 0.54114 | 0.5421 | 101 | 101 | B | B | biological fallback assumption | illumina | hiseq_era | unknown | unknown | unknown | bulk | unknown | unknown | India | 2016-03-01 | Adult | Adult | Heart | Cardiovascular System | ||||||||||||||||||||
| 39825 | 39825 | SRR2168740 | SRX1153633 | SRS1036568 | SRP062468 | PRJNA293022 | Danio rerio heart chamber specific transcriptome | PRJNA293022 | Whole Genome Sequencing | Chamber specific transcriptome of zebrafish namely atrium ventricle and bulbus arteriosus | ASWT Heart chamber transcriptome | breed:ASWT|age:2 years|dev stage:Adult|sex:not applicable|tissue:Heart Chambers|BioSampleModel:Model organism or animal | Zebrafish ASWT atrium specific transcriptome | Zebrafish Atrium | Atrium | 1 | RNA-Seq | TRANSCRIPTOMIC | unspecified | PAIRED | ILLUMINA | Illumina HiSeq 2500 | <SPOT_DESCRIPTOR><SPOT_DECODE_SPEC><SPOT_LENGTH>202</SPOT_LENGTH><READ_SPEC><READ_INDEX>0</READ_INDEX><READ_CLASS>Application Read</READ_CLASS><READ_TYPE>Forward</READ_TYPE><BASE_COORD>1</BASE_COORD></READ_SPEC><READ_SPEC><READ_INDEX>1</READ_INDEX><READ_CLASS>Application Read</READ_CLASS><READ_TYPE>Reverse</READ_TYPE><BASE_COORD>102</BASE_COORD></READ_SPEC></SPOT_DECODE_SPEC></SPOT_DESCRIPTOR> | SRP062468 | ZFAtrium_GTGAAA_L006_cat_R2.fastq.gz ZFAtrium_GTGAAA_L006_cat_R1.fastq.gz | fastq fastq | 28208507150.0 | 139646075.0 | Zebrafish Atrium | 0:101 1:101 | A:8151737615;C:5894384726;G:6027846905;T:8129189369;N:5348535 | 101 | 101 | 8151737615 | 5894384726 | 6027846905 | 8129189369 | 5348535 | SRX1153633 | SRS1036568 | SRA289351 | CSIR-IGIB | CSIR- Institute of Genomics and Integrative Biology | 2 | 0.83701 | 0.79433 | 0.58576 | 0.54496 | 0.72486 | 0.73766 | 0.55105 | 0.54713 | 101 | 101 | B | B | biological fallback assumption | illumina | hiseq_era | unknown | unknown | unknown | bulk | unknown | unknown | India | 2015-09-08 | Adult | Adult | Heart | Cardiovascular System | ||||||||||||||||||||
| 39826 | 39826 | SRR2168750 | SRX1153632 | SRS1036568 | SRP062468 | PRJNA293022 | Danio rerio heart chamber specific transcriptome | PRJNA293022 | Whole Genome Sequencing | Chamber specific transcriptome of zebrafish namely atrium ventricle and bulbus arteriosus | ASWT Heart chamber transcriptome | breed:ASWT|age:2 years|dev stage:Adult|sex:not applicable|tissue:Heart Chambers|BioSampleModel:Model organism or animal | Zebrafish Ventricle chamber specific transcriptome | Zebrafish Ventricle chamber specific transcriptome | Ventricle | 1 | RNA-Seq | TRANSCRIPTOMIC | unspecified | PAIRED | ILLUMINA | Illumina HiSeq 2500 | <SPOT_DESCRIPTOR><SPOT_DECODE_SPEC><SPOT_LENGTH>202</SPOT_LENGTH><READ_SPEC><READ_INDEX>0</READ_INDEX><READ_CLASS>Application Read</READ_CLASS><READ_TYPE>Forward</READ_TYPE><BASE_COORD>1</BASE_COORD></READ_SPEC><READ_SPEC><READ_INDEX>1</READ_INDEX><READ_CLASS>Application Read</READ_CLASS><READ_TYPE>Reverse</READ_TYPE><BASE_COORD>102</BASE_COORD></READ_SPEC></SPOT_DECODE_SPEC></SPOT_DESCRIPTOR> | SRP062468 | ZFVentricle_cat_R2.fastq.gz ZFVentricle_cat_R1.fastq.gz | fastq fastq | 30913187362.0 | 153035581.0 | Zebrafish Ventricle chamber specific transcriptome | 0:101 1:101 | A:8230747947;C:7230918780;G:7381253230;T:8066864305;N:3403100 | 101 | 101 | 8230747947 | 7230918780 | 7381253230 | 8066864305 | 3403100 | SRX1153632 | SRS1036568 | SRA289351 | CSIR-IGIB | CSIR- Institute of Genomics and Integrative Biology | 2 | 0.92213 | 0.91404 | 0.22257 | 0.21715 | 0.76761 | 0.77193 | 0.54625 | 0.54332 | 101 | 101 | B | B | biological fallback assumption | illumina | hiseq_era | unknown | unknown | unknown | bulk | unknown | unknown | India | 2016-03-01 | Adult | Adult | Heart | Cardiovascular System | ||||||||||||||||||||
| 39934 | 39934 | SRR2473238 | SRX1270438 | SRS1078341 | SRP063952 | PRJNA296414 | SPOP mutation leads to genomic instability in prostate cancer | PRJNA296414 | Transcriptome Analysis | Examination of the effects of morpholino based SPOP knockdown or ectopic expression of prostate cancer specific SPOP mutant F133V on the transcriptome of zebrafish embryos. | Danio rerio embryos ectopically expressing human SPOPwt. | Danio rerio ectopic SPOPwt | strain:AB/T|age:24 HPF|sex:pooled male and female|tissue:whole embryo|biomaterial provider:Yariv Houvras|BioSampleModel:Model organism or animal | SPOP mutation leads to genomic instability in prostate cancer | Danio rerio ectopic SPOPwt | 1 | SPOP mutation leads to genomic instability in prostate cancer RNA seq: Danio rerio ectopic SPOPwt | RNA-Seq | TRANSCRIPTOMIC | unspecified | PAIRED | ILLUMINA | Illumina HiSeq 2500 | <SPOT_DESCRIPTOR><SPOT_DECODE_SPEC><SPOT_LENGTH>102</SPOT_LENGTH><READ_SPEC><READ_INDEX>0</READ_INDEX><READ_CLASS>Application Read</READ_CLASS><READ_TYPE>Forward</READ_TYPE><BASE_COORD>1</BASE_COORD></READ_SPEC><READ_SPEC><READ_INDEX>1</READ_INDEX><READ_CLASS>Application Read</READ_CLASS><READ_TYPE>Reverse</READ_TYPE><BASE_COORD>52</BASE_COORD></READ_SPEC></SPOT_DECODE_SPEC></SPOT_DESCRIPTOR> | SRP063952 | WT_CAGATC_L001_R1.fastq.gz WT_CAGATC_L001_R2.fastq.gz | fastq fastq | 6185345892.0 | 60640646.0 | Danio rerio ectopic SPOPwt | 0:51 1:51 | A:1647678166;C:1462773970;G:1416249443;T:1657464504;N:1179809 | 51 | 51 | 1647678166 | 1462773970 | 1416249443 | 1657464504 | 1179809 | SRX1270438 | SRS1078341 | Weill Cornell Medical College | 2 | 0.94598 | 0.94553 | 0.09216 | 0.0934 | 0.68789 | 0.69065 | 0.46814 | 0.47172 | 51 | 51 | B | B | biological fallback assumption | illumina | hiseq_era | unknown | unknown | unknown | bulk | unknown | unknown | United States | 2016-02-17 | Pharyngula | Embryo | Whole Organism | All anatomical structures | |||||||||||||||||||||
| 39935 | 39935 | SRR2473236 | SRX1270437 | SRS1078340 | SRP063952 | PRJNA296414 | SPOP mutation leads to genomic instability in prostate cancer | PRJNA296414 | Transcriptome Analysis | Examination of the effects of morpholino based SPOP knockdown or ectopic expression of prostate cancer specific SPOP mutant F133V on the transcriptome of zebrafish embryos. | Danio rerio ectopically expressing SPOP F133V | Danio rerio ectopic SPOP F133V | strain:AB/T|age:24 HPF|sex:pooled male and female|tissue:whole embryo|biomaterial provider:Yariv Houvras|BioSampleModel:Model organism or animal | SPOP mutation leads to genomic instability in prostate cancer | Danio rerio ectopic SPOP F133V | 1 | SPOP mutation leads to genomic instability in prostate cancer RNA seq: Danio rerio ectopic SPOP F133V | RNA-Seq | TRANSCRIPTOMIC | unspecified | PAIRED | ILLUMINA | Illumina HiSeq 2500 | <SPOT_DESCRIPTOR><SPOT_DECODE_SPEC><SPOT_LENGTH>102</SPOT_LENGTH><READ_SPEC><READ_INDEX>0</READ_INDEX><READ_CLASS>Application Read</READ_CLASS><READ_TYPE>Forward</READ_TYPE><BASE_COORD>1</BASE_COORD></READ_SPEC><READ_SPEC><READ_INDEX>1</READ_INDEX><READ_CLASS>Application Read</READ_CLASS><READ_TYPE>Reverse</READ_TYPE><BASE_COORD>52</BASE_COORD></READ_SPEC></SPOT_DECODE_SPEC></SPOT_DESCRIPTOR> | SRP063952 | Mut_GATCAG_L001_R2.fastq.gz Mut_GATCAG_L001_R1.fastq.gz | fastq fastq | 6130528134.0 | 60103217.0 | Danio rerio ectopic SPOP F133V | 0:51 1:51 | A:1630145057;C:1450811256;G:1409924927;T:1638457859;N:1189035 | 51 | 51 | 1630145057 | 1450811256 | 1409924927 | 1638457859 | 1189035 | SRX1270437 | SRS1078340 | Weill Cornell Medical College | 2 | 0.9444 | 0.94139 | 0.09809 | 0.0979 | 0.68487 | 0.68657 | 0.46751 | 0.47276 | 51 | 51 | B | B | biological fallback assumption | illumina | hiseq_era | unknown | unknown | unknown | bulk | unknown | unknown | United States | 2015-09-21 | Pharyngula | Embryo | Whole Organism | All anatomical structures | |||||||||||||||||||||
| 39936 | 39936 | SRR2473235 | SRX1270436 | SRS1078339 | SRP063952 | PRJNA296414 | SPOP mutation leads to genomic instability in prostate cancer | PRJNA296414 | Transcriptome Analysis | Examination of the effects of morpholino based SPOP knockdown or ectopic expression of prostate cancer specific SPOP mutant F133V on the transcriptome of zebrafish embryos. | Danio rerio SPOP morpholino | strain:AB/T|age:24 HPF|sex:pooled male and female|tissue:whole embryo|biomaterial provider:Yariv Houvras|BioSampleModel:Model organism or animal | Danio rerio SPOP morpholino | Danio rerio SPOP morpholino | 1 | SPOP mutation leads to genomic instability in prostate cancer RNA seq: Danio rerio SPOP morpholino | RNA-Seq | TRANSCRIPTOMIC | unspecified | PAIRED | ILLUMINA | Illumina HiSeq 2500 | <SPOT_DESCRIPTOR><SPOT_DECODE_SPEC><SPOT_LENGTH>102</SPOT_LENGTH><READ_SPEC><READ_INDEX>0</READ_INDEX><READ_CLASS>Application Read</READ_CLASS><READ_TYPE>Forward</READ_TYPE><BASE_COORD>1</BASE_COORD></READ_SPEC><READ_SPEC><READ_INDEX>1</READ_INDEX><READ_CLASS>Application Read</READ_CLASS><READ_TYPE>Reverse</READ_TYPE><BASE_COORD>52</BASE_COORD></READ_SPEC></SPOT_DECODE_SPEC></SPOT_DESCRIPTOR> | SRP063952 | Mock_ACTTGA_L001_R1.fastq.gz Mock_ACTTGA_L001_R2.fastq.gz | fastq fastq | 5693947938.0 | 55823019.0 | Danio rerio SPOP morpholino | 0:51 1:51 | A:1513477521;C:1350461483;G:1305374194;T:1523527099;N:1107641 | 51 | 51 | 1513477521 | 1350461483 | 1305374194 | 1523527099 | 1107641 | SRX1270436 | SRS1078339 | Weill Cornell Medical College | 2 | 0.94534 | 0.94431 | 0.09368 | 0.0945 | 0.68941 | 0.69077 | 0.46543 | 0.46749 | 51 | 51 | B | B | biological fallback assumption | illumina | hiseq_era | unknown | unknown | unknown | bulk | unknown | unknown | United States | 2016-02-17 | Pharyngula | Embryo | Whole Organism | All anatomical structures | ||||||||||||||||||||||
| 40711 | 40711 | SRR3420419 | SRX1660357 | SRS1360318 | SRP072296 | PRJNA316313 | Codon optimality and mRNA decay in zebrafish and Xenopus | PRJNA316313 | Other | Cellular transitions require dramatic changes in gene expression that are supported by regulated mRNA decay and new transcription. The maternal to zygotic transition is a conserved developmental progression during which thousands of maternal mRNAs are cleared by posttranscriptional mechanisms. Although some maternal mRNAs are targeted for degradation by microRNAs this pathway does not fully explain mRNA clearance. Because the ribosome constitutes the main ribonucleoprotein complex decoding the mRNA we investigated how codon identity and translation affect mRNA stability during development and homeostasis. Using an in vivo selection strategy we show that the codon triplet contains translation dependent regulatory information that influences transcript decay. We find that codon composition shapes maternal mRNA clearance during the maternal to zygotic transition in zebrafish Xenopus mouse and Drosophila and gene expression during homeostasis across human tissues. Codon composition affects both polyadenylation status and translation efficiency. Thus the ribosome interprets two codes within the mRNA the genetic code which specifies the amino acid sequence and a conserved “codon optimality code” that shapes mRNA stability and translation efficiency across vertebrates. | AG00719 8h 2 | strain:TUAB|age:8h|sex:pooled male and female|tissue:whole embryo|treatment:alpha amanitin|barcode:CGATGT|BioSampleModel:Model organism or animal | AG00719 8h 2 | AG00719 8h 2 | 1 | 1 | RNA-Seq | TRANSCRIPTOMIC | unspecified | PAIRED | ILLUMINA | Illumina HiSeq 2500 | <SPOT_DESCRIPTOR><SPOT_DECODE_SPEC><SPOT_LENGTH>150</SPOT_LENGTH><READ_SPEC><READ_INDEX>0</READ_INDEX><READ_CLASS>Application Read</READ_CLASS><READ_TYPE>Forward</READ_TYPE><BASE_COORD>1</BASE_COORD></READ_SPEC><READ_SPEC><READ_INDEX>1</READ_INDEX><READ_CLASS>Application Read</READ_CLASS><READ_TYPE>Reverse</READ_TYPE><BASE_COORD>76</BASE_COORD></READ_SPEC></SPOT_DECODE_SPEC></SPOT_DESCRIPTOR> | SRP072296 | AG00719_SEQ0107_R1.fastq.gz AG00719_SEQ0107_R2.fastq.gz | fastq fastq | 2419781176.0 | 15919613.0 | AG00719 run 1 | 0:76 1:76 | A:738997601;C:465047900;G:477140497;T:733241052;N:5354126 | 76 | 76 | 738997601 | 465047900 | 477140497 | 733241052 | 5354126 | SRX1660357 | SRS1360318 | SRA395141 | Yale University|Giraldez Lab | Yale University | 2 | 0.78184 | 0.71182 | 0.66469 | 0.60037 | 0.75743 | 0.77518 | 0.53432 | 0.52801 | 76 | 76 | B | B | biological fallback assumption | illumina | hiseq_era | unknown | poly_a | unknown | bulk | unknown | unknown | United States | 2016-06-17 | Gastrula | Embryo | Whole Organism | All anatomical structures | ||||||||||||||||||||
| 40712 | 40712 | SRR3420420 | SRX1660357 | SRS1360318 | SRP072296 | PRJNA316313 | Codon optimality and mRNA decay in zebrafish and Xenopus | PRJNA316313 | Other | Cellular transitions require dramatic changes in gene expression that are supported by regulated mRNA decay and new transcription. The maternal to zygotic transition is a conserved developmental progression during which thousands of maternal mRNAs are cleared by posttranscriptional mechanisms. Although some maternal mRNAs are targeted for degradation by microRNAs this pathway does not fully explain mRNA clearance. Because the ribosome constitutes the main ribonucleoprotein complex decoding the mRNA we investigated how codon identity and translation affect mRNA stability during development and homeostasis. Using an in vivo selection strategy we show that the codon triplet contains translation dependent regulatory information that influences transcript decay. We find that codon composition shapes maternal mRNA clearance during the maternal to zygotic transition in zebrafish Xenopus mouse and Drosophila and gene expression during homeostasis across human tissues. Codon composition affects both polyadenylation status and translation efficiency. Thus the ribosome interprets two codes within the mRNA the genetic code which specifies the amino acid sequence and a conserved “codon optimality code” that shapes mRNA stability and translation efficiency across vertebrates. | AG00719 8h 2 | strain:TUAB|age:8h|sex:pooled male and female|tissue:whole embryo|treatment:alpha amanitin|barcode:CGATGT|BioSampleModel:Model organism or animal | AG00719 8h 2 | AG00719 8h 2 | 1 | 1 | RNA-Seq | TRANSCRIPTOMIC | unspecified | PAIRED | ILLUMINA | Illumina HiSeq 2500 | <SPOT_DESCRIPTOR><SPOT_DECODE_SPEC><SPOT_LENGTH>150</SPOT_LENGTH><READ_SPEC><READ_INDEX>0</READ_INDEX><READ_CLASS>Application Read</READ_CLASS><READ_TYPE>Forward</READ_TYPE><BASE_COORD>1</BASE_COORD></READ_SPEC><READ_SPEC><READ_INDEX>1</READ_INDEX><READ_CLASS>Application Read</READ_CLASS><READ_TYPE>Reverse</READ_TYPE><BASE_COORD>76</BASE_COORD></READ_SPEC></SPOT_DECODE_SPEC></SPOT_DESCRIPTOR> | SRP072296 | AG00719_SEQ0181_R2.fastq.gz AG00719_SEQ0181_R1.fastq.gz | fastq fastq | 3074724552.0 | 20228451.0 | AG00719 run 2 | 0:76 1:76 | A:918671897;C:609510609;G:622542852;T:922439528;N:1559666 | 76 | 76 | 918671897 | 609510609 | 622542852 | 922439528 | 1559666 | SRX1660357 | SRS1360318 | SRA395141 | Yale University|Giraldez Lab | Yale University | 2 | 0.76444 | 0.65488 | 0.65157 | 0.55185 | 0.75741 | 0.78106 | 0.53067 | 0.52622 | 76 | 76 | B | B | biological fallback assumption | illumina | hiseq_era | unknown | poly_a | unknown | bulk | unknown | unknown | United States | 2016-06-17 | Gastrula | Embryo | Whole Organism | All anatomical structures | ||||||||||||||||||||
| 40713 | 40713 | SRR3420421 | SRX1660357 | SRS1360318 | SRP072296 | PRJNA316313 | Codon optimality and mRNA decay in zebrafish and Xenopus | PRJNA316313 | Other | Cellular transitions require dramatic changes in gene expression that are supported by regulated mRNA decay and new transcription. The maternal to zygotic transition is a conserved developmental progression during which thousands of maternal mRNAs are cleared by posttranscriptional mechanisms. Although some maternal mRNAs are targeted for degradation by microRNAs this pathway does not fully explain mRNA clearance. Because the ribosome constitutes the main ribonucleoprotein complex decoding the mRNA we investigated how codon identity and translation affect mRNA stability during development and homeostasis. Using an in vivo selection strategy we show that the codon triplet contains translation dependent regulatory information that influences transcript decay. We find that codon composition shapes maternal mRNA clearance during the maternal to zygotic transition in zebrafish Xenopus mouse and Drosophila and gene expression during homeostasis across human tissues. Codon composition affects both polyadenylation status and translation efficiency. Thus the ribosome interprets two codes within the mRNA the genetic code which specifies the amino acid sequence and a conserved “codon optimality code” that shapes mRNA stability and translation efficiency across vertebrates. | AG00719 8h 2 | strain:TUAB|age:8h|sex:pooled male and female|tissue:whole embryo|treatment:alpha amanitin|barcode:CGATGT|BioSampleModel:Model organism or animal | AG00719 8h 2 | AG00719 8h 2 | 1 | 1 | RNA-Seq | TRANSCRIPTOMIC | unspecified | PAIRED | ILLUMINA | Illumina HiSeq 2500 | <SPOT_DESCRIPTOR><SPOT_DECODE_SPEC><SPOT_LENGTH>150</SPOT_LENGTH><READ_SPEC><READ_INDEX>0</READ_INDEX><READ_CLASS>Application Read</READ_CLASS><READ_TYPE>Forward</READ_TYPE><BASE_COORD>1</BASE_COORD></READ_SPEC><READ_SPEC><READ_INDEX>1</READ_INDEX><READ_CLASS>Application Read</READ_CLASS><READ_TYPE>Reverse</READ_TYPE><BASE_COORD>76</BASE_COORD></READ_SPEC></SPOT_DECODE_SPEC></SPOT_DESCRIPTOR> | SRP072296 | AG00719_SEQ0288_R1.fastq.gz AG00719_SEQ0288_R2.fastq.gz | fastq fastq | 2666395856.0 | 17542078.0 | AG00719 run 3 | 0:76 1:76 | A:787508876;C:539791618;G:549145516;T:785088342;N:4861504 | 76 | 76 | 787508876 | 539791618 | 549145516 | 785088342 | 4861504 | SRX1660357 | SRS1360318 | SRA395141 | Yale University|Giraldez Lab | Yale University | 2 | 0.75479 | 0.69465 | 0.63843 | 0.58422 | 0.75716 | 0.78423 | 0.53952 | 0.52615 | 76 | 76 | B | B | biological fallback assumption | illumina | hiseq_era | unknown | poly_a | unknown | bulk | unknown | unknown | United States | 2016-06-17 | Gastrula | Embryo | Whole Organism | All anatomical structures | ||||||||||||||||||||
| 40714 | 40714 | SRR3420388 | SRX1660356 | SRS1360315 | SRP072296 | PRJNA316313 | Codon optimality and mRNA decay in zebrafish and Xenopus | PRJNA316313 | Other | Cellular transitions require dramatic changes in gene expression that are supported by regulated mRNA decay and new transcription. The maternal to zygotic transition is a conserved developmental progression during which thousands of maternal mRNAs are cleared by posttranscriptional mechanisms. Although some maternal mRNAs are targeted for degradation by microRNAs this pathway does not fully explain mRNA clearance. Because the ribosome constitutes the main ribonucleoprotein complex decoding the mRNA we investigated how codon identity and translation affect mRNA stability during development and homeostasis. Using an in vivo selection strategy we show that the codon triplet contains translation dependent regulatory information that influences transcript decay. We find that codon composition shapes maternal mRNA clearance during the maternal to zygotic transition in zebrafish Xenopus mouse and Drosophila and gene expression during homeostasis across human tissues. Codon composition affects both polyadenylation status and translation efficiency. Thus the ribosome interprets two codes within the mRNA the genetic code which specifies the amino acid sequence and a conserved “codon optimality code” that shapes mRNA stability and translation efficiency across vertebrates. | AG00718 8h 1 | strain:TUAB|age:8h|sex:pooled male and female|tissue:whole embryo|treatment:alpha amanitin|barcode:ATCACG|BioSampleModel:Model organism or animal | AG00718 8h 1 | AG00718 8h 1 | 1 | 1 | RNA-Seq | TRANSCRIPTOMIC | unspecified | PAIRED | ILLUMINA | Illumina HiSeq 2500 | <SPOT_DESCRIPTOR><SPOT_DECODE_SPEC><SPOT_LENGTH>150</SPOT_LENGTH><READ_SPEC><READ_INDEX>0</READ_INDEX><READ_CLASS>Application Read</READ_CLASS><READ_TYPE>Forward</READ_TYPE><BASE_COORD>1</BASE_COORD></READ_SPEC><READ_SPEC><READ_INDEX>1</READ_INDEX><READ_CLASS>Application Read</READ_CLASS><READ_TYPE>Reverse</READ_TYPE><BASE_COORD>76</BASE_COORD></READ_SPEC></SPOT_DECODE_SPEC></SPOT_DESCRIPTOR> | SRP072296 | AG00718_SEQ0107_R2.fastq.gz AG00718_SEQ0107_R1.fastq.gz | fastq fastq | 2699903800.0 | 17762525.0 | AG00718 run 1 | 0:76 1:76 | A:832300161;C:503956886;G:525141498;T:832566681;N:5938574 | 76 | 76 | 832300161 | 503956886 | 525141498 | 832566681 | 5938574 | SRX1660356 | SRS1360315 | SRA395141 | Yale University|Giraldez Lab | Yale University | 2 | 0.76651 | 0.69033 | 0.63937 | 0.56749 | 0.77145 | 0.78545 | 0.53429 | 0.53165 | 76 | 76 | B | B | biological fallback assumption | illumina | hiseq_era | unknown | poly_a | unknown | bulk | unknown | unknown | United States | 2016-06-17 | Gastrula | Embryo | Whole Organism | All anatomical structures | ||||||||||||||||||||
| 40715 | 40715 | SRR3420392 | SRX1660356 | SRS1360315 | SRP072296 | PRJNA316313 | Codon optimality and mRNA decay in zebrafish and Xenopus | PRJNA316313 | Other | Cellular transitions require dramatic changes in gene expression that are supported by regulated mRNA decay and new transcription. The maternal to zygotic transition is a conserved developmental progression during which thousands of maternal mRNAs are cleared by posttranscriptional mechanisms. Although some maternal mRNAs are targeted for degradation by microRNAs this pathway does not fully explain mRNA clearance. Because the ribosome constitutes the main ribonucleoprotein complex decoding the mRNA we investigated how codon identity and translation affect mRNA stability during development and homeostasis. Using an in vivo selection strategy we show that the codon triplet contains translation dependent regulatory information that influences transcript decay. We find that codon composition shapes maternal mRNA clearance during the maternal to zygotic transition in zebrafish Xenopus mouse and Drosophila and gene expression during homeostasis across human tissues. Codon composition affects both polyadenylation status and translation efficiency. Thus the ribosome interprets two codes within the mRNA the genetic code which specifies the amino acid sequence and a conserved “codon optimality code” that shapes mRNA stability and translation efficiency across vertebrates. | AG00718 8h 1 | strain:TUAB|age:8h|sex:pooled male and female|tissue:whole embryo|treatment:alpha amanitin|barcode:ATCACG|BioSampleModel:Model organism or animal | AG00718 8h 1 | AG00718 8h 1 | 1 | 1 | RNA-Seq | TRANSCRIPTOMIC | unspecified | PAIRED | ILLUMINA | Illumina HiSeq 2500 | <SPOT_DESCRIPTOR><SPOT_DECODE_SPEC><SPOT_LENGTH>150</SPOT_LENGTH><READ_SPEC><READ_INDEX>0</READ_INDEX><READ_CLASS>Application Read</READ_CLASS><READ_TYPE>Forward</READ_TYPE><BASE_COORD>1</BASE_COORD></READ_SPEC><READ_SPEC><READ_INDEX>1</READ_INDEX><READ_CLASS>Application Read</READ_CLASS><READ_TYPE>Reverse</READ_TYPE><BASE_COORD>76</BASE_COORD></READ_SPEC></SPOT_DECODE_SPEC></SPOT_DESCRIPTOR> | SRP072296 | AG00718_SEQ0183_R2.fastq.gz AG00718_SEQ0183_R1.fastq.gz | fastq fastq | 2798947456.0 | 18414128.0 | AG00718 run 2 | 0:76 1:76 | A:853546590;C:536347349;G:556751964;T:851863324;N:438229 | 76 | 76 | 853546590 | 536347349 | 556751964 | 851863324 | 438229 | SRX1660356 | SRS1360315 | SRA395141 | Yale University|Giraldez Lab | Yale University | 2 | 0.74665 | 0.63683 | 0.6265 | 0.5237 | 0.76134 | 0.7905 | 0.54613 | 0.53982 | 76 | 76 | B | B | biological fallback assumption | illumina | hiseq_era | unknown | poly_a | unknown | bulk | unknown | unknown | United States | 2016-04-22 | Gastrula | Embryo | Whole Organism | All anatomical structures | ||||||||||||||||||||
| 40716 | 40716 | SRR3420398 | SRX1660355 | SRS1360316 | SRP072296 | PRJNA316313 | Codon optimality and mRNA decay in zebrafish and Xenopus | PRJNA316313 | Other | Cellular transitions require dramatic changes in gene expression that are supported by regulated mRNA decay and new transcription. The maternal to zygotic transition is a conserved developmental progression during which thousands of maternal mRNAs are cleared by posttranscriptional mechanisms. Although some maternal mRNAs are targeted for degradation by microRNAs this pathway does not fully explain mRNA clearance. Because the ribosome constitutes the main ribonucleoprotein complex decoding the mRNA we investigated how codon identity and translation affect mRNA stability during development and homeostasis. Using an in vivo selection strategy we show that the codon triplet contains translation dependent regulatory information that influences transcript decay. We find that codon composition shapes maternal mRNA clearance during the maternal to zygotic transition in zebrafish Xenopus mouse and Drosophila and gene expression during homeostasis across human tissues. Codon composition affects both polyadenylation status and translation efficiency. Thus the ribosome interprets two codes within the mRNA the genetic code which specifies the amino acid sequence and a conserved “codon optimality code” that shapes mRNA stability and translation efficiency across vertebrates. | AG00717 6h 2 | strain:TUAB|age:6h|sex:pooled male and female|tissue:whole embryo|treatment:alpha amanitin|barcode:CTTGTA|BioSampleModel:Model organism or animal | AG00717 6h 2 | AG00717 6h 2 | 1 | 1 | RNA-Seq | TRANSCRIPTOMIC | unspecified | PAIRED | ILLUMINA | Illumina HiSeq 2500 | <SPOT_DESCRIPTOR><SPOT_DECODE_SPEC><SPOT_LENGTH>150</SPOT_LENGTH><READ_SPEC><READ_INDEX>0</READ_INDEX><READ_CLASS>Application Read</READ_CLASS><READ_TYPE>Forward</READ_TYPE><BASE_COORD>1</BASE_COORD></READ_SPEC><READ_SPEC><READ_INDEX>1</READ_INDEX><READ_CLASS>Application Read</READ_CLASS><READ_TYPE>Reverse</READ_TYPE><BASE_COORD>76</BASE_COORD></READ_SPEC></SPOT_DECODE_SPEC></SPOT_DESCRIPTOR> | SRP072296 | AG00717_SEQ0107_R1.fastq.gz AG00717_SEQ0107_R2.fastq.gz | fastq fastq | 1442918520.0 | 9492885.0 | AG00717 run 1 | 0:76 1:76 | A:442675510;C:273265985;G:284514997;T:439403136;N:3058892 | 76 | 76 | 442675510 | 273265985 | 284514997 | 439403136 | 3058892 | SRX1660355 | SRS1360316 | SRA395141 | Yale University|Giraldez Lab | Yale University | 2 | 0.76736 | 0.69048 | 0.60693 | 0.53532 | 0.74647 | 0.76138 | 0.51546 | 0.5135 | 76 | 76 | B | B | biological fallback assumption | illumina | hiseq_era | unknown | poly_a | unknown | bulk | unknown | unknown | United States | 2016-06-17 | Gastrula | Embryo | Whole Organism | All anatomical structures | ||||||||||||||||||||
| 40717 | 40717 | SRR3420402 | SRX1660355 | SRS1360316 | SRP072296 | PRJNA316313 | Codon optimality and mRNA decay in zebrafish and Xenopus | PRJNA316313 | Other | Cellular transitions require dramatic changes in gene expression that are supported by regulated mRNA decay and new transcription. The maternal to zygotic transition is a conserved developmental progression during which thousands of maternal mRNAs are cleared by posttranscriptional mechanisms. Although some maternal mRNAs are targeted for degradation by microRNAs this pathway does not fully explain mRNA clearance. Because the ribosome constitutes the main ribonucleoprotein complex decoding the mRNA we investigated how codon identity and translation affect mRNA stability during development and homeostasis. Using an in vivo selection strategy we show that the codon triplet contains translation dependent regulatory information that influences transcript decay. We find that codon composition shapes maternal mRNA clearance during the maternal to zygotic transition in zebrafish Xenopus mouse and Drosophila and gene expression during homeostasis across human tissues. Codon composition affects both polyadenylation status and translation efficiency. Thus the ribosome interprets two codes within the mRNA the genetic code which specifies the amino acid sequence and a conserved “codon optimality code” that shapes mRNA stability and translation efficiency across vertebrates. | AG00717 6h 2 | strain:TUAB|age:6h|sex:pooled male and female|tissue:whole embryo|treatment:alpha amanitin|barcode:CTTGTA|BioSampleModel:Model organism or animal | AG00717 6h 2 | AG00717 6h 2 | 1 | 1 | RNA-Seq | TRANSCRIPTOMIC | unspecified | PAIRED | ILLUMINA | Illumina HiSeq 2500 | <SPOT_DESCRIPTOR><SPOT_DECODE_SPEC><SPOT_LENGTH>150</SPOT_LENGTH><READ_SPEC><READ_INDEX>0</READ_INDEX><READ_CLASS>Application Read</READ_CLASS><READ_TYPE>Forward</READ_TYPE><BASE_COORD>1</BASE_COORD></READ_SPEC><READ_SPEC><READ_INDEX>1</READ_INDEX><READ_CLASS>Application Read</READ_CLASS><READ_TYPE>Reverse</READ_TYPE><BASE_COORD>76</BASE_COORD></READ_SPEC></SPOT_DECODE_SPEC></SPOT_DESCRIPTOR> | SRP072296 | AG00717_SEQ0179_R1.fastq.gz AG00717_SEQ0179_R2.fastq.gz | fastq fastq | 2524099688.0 | 16605919.0 | AG00717 run 2 | 0:76 1:76 | A:752163917;C:500880325;G:526291920;T:744462824;N:300702 | 76 | 76 | 752163917 | 500880325 | 526291920 | 744462824 | 300702 | SRX1660355 | SRS1360316 | SRA395141 | Yale University|Giraldez Lab | Yale University | 2 | 0.7274 | 0.651 | 0.57791 | 0.50498 | 0.74434 | 0.76329 | 0.51831 | 0.50479 | 76 | 76 | B | B | biological fallback assumption | illumina | hiseq_era | unknown | poly_a | unknown | bulk | unknown | unknown | United States | 2016-06-17 | Gastrula | Embryo | Whole Organism | All anatomical structures | ||||||||||||||||||||
| 40718 | 40718 | SRR3420405 | SRX1660355 | SRS1360316 | SRP072296 | PRJNA316313 | Codon optimality and mRNA decay in zebrafish and Xenopus | PRJNA316313 | Other | Cellular transitions require dramatic changes in gene expression that are supported by regulated mRNA decay and new transcription. The maternal to zygotic transition is a conserved developmental progression during which thousands of maternal mRNAs are cleared by posttranscriptional mechanisms. Although some maternal mRNAs are targeted for degradation by microRNAs this pathway does not fully explain mRNA clearance. Because the ribosome constitutes the main ribonucleoprotein complex decoding the mRNA we investigated how codon identity and translation affect mRNA stability during development and homeostasis. Using an in vivo selection strategy we show that the codon triplet contains translation dependent regulatory information that influences transcript decay. We find that codon composition shapes maternal mRNA clearance during the maternal to zygotic transition in zebrafish Xenopus mouse and Drosophila and gene expression during homeostasis across human tissues. Codon composition affects both polyadenylation status and translation efficiency. Thus the ribosome interprets two codes within the mRNA the genetic code which specifies the amino acid sequence and a conserved “codon optimality code” that shapes mRNA stability and translation efficiency across vertebrates. | AG00717 6h 2 | strain:TUAB|age:6h|sex:pooled male and female|tissue:whole embryo|treatment:alpha amanitin|barcode:CTTGTA|BioSampleModel:Model organism or animal | AG00717 6h 2 | AG00717 6h 2 | 1 | 1 | RNA-Seq | TRANSCRIPTOMIC | unspecified | PAIRED | ILLUMINA | Illumina HiSeq 2500 | <SPOT_DESCRIPTOR><SPOT_DECODE_SPEC><SPOT_LENGTH>150</SPOT_LENGTH><READ_SPEC><READ_INDEX>0</READ_INDEX><READ_CLASS>Application Read</READ_CLASS><READ_TYPE>Forward</READ_TYPE><BASE_COORD>1</BASE_COORD></READ_SPEC><READ_SPEC><READ_INDEX>1</READ_INDEX><READ_CLASS>Application Read</READ_CLASS><READ_TYPE>Reverse</READ_TYPE><BASE_COORD>76</BASE_COORD></READ_SPEC></SPOT_DECODE_SPEC></SPOT_DESCRIPTOR> | SRP072296 | AG00717_SEQ0287_R1.fastq.gz AG00717_SEQ0287_R2.fastq.gz | fastq fastq | 1320586032.0 | 8688066.0 | AG00717 run 3 | 0:76 1:76 | A:394339370;C:259687848;G:270914284;T:389960707;N:5683823 | 76 | 76 | 394339370 | 259687848 | 270914284 | 389960707 | 5683823 | SRX1660355 | SRS1360316 | SRA395141 | Yale University|Giraldez Lab | Yale University | 2 | 0.72219 | 0.6734 | 0.55665 | 0.5122 | 0.75371 | 0.76323 | 0.5098 | 0.50658 | 76 | 76 | B | B | biological fallback assumption | illumina | hiseq_era | unknown | poly_a | unknown | bulk | unknown | unknown | United States | 2016-06-17 | Gastrula | Embryo | Whole Organism | All anatomical structures | ||||||||||||||||||||
| 40719 | 40719 | SRR3420409 | SRX1660355 | SRS1360316 | SRP072296 | PRJNA316313 | Codon optimality and mRNA decay in zebrafish and Xenopus | PRJNA316313 | Other | Cellular transitions require dramatic changes in gene expression that are supported by regulated mRNA decay and new transcription. The maternal to zygotic transition is a conserved developmental progression during which thousands of maternal mRNAs are cleared by posttranscriptional mechanisms. Although some maternal mRNAs are targeted for degradation by microRNAs this pathway does not fully explain mRNA clearance. Because the ribosome constitutes the main ribonucleoprotein complex decoding the mRNA we investigated how codon identity and translation affect mRNA stability during development and homeostasis. Using an in vivo selection strategy we show that the codon triplet contains translation dependent regulatory information that influences transcript decay. We find that codon composition shapes maternal mRNA clearance during the maternal to zygotic transition in zebrafish Xenopus mouse and Drosophila and gene expression during homeostasis across human tissues. Codon composition affects both polyadenylation status and translation efficiency. Thus the ribosome interprets two codes within the mRNA the genetic code which specifies the amino acid sequence and a conserved “codon optimality code” that shapes mRNA stability and translation efficiency across vertebrates. | AG00717 6h 2 | strain:TUAB|age:6h|sex:pooled male and female|tissue:whole embryo|treatment:alpha amanitin|barcode:CTTGTA|BioSampleModel:Model organism or animal | AG00717 6h 2 | AG00717 6h 2 | 1 | 1 | RNA-Seq | TRANSCRIPTOMIC | unspecified | PAIRED | ILLUMINA | Illumina HiSeq 2500 | <SPOT_DESCRIPTOR><SPOT_DECODE_SPEC><SPOT_LENGTH>150</SPOT_LENGTH><READ_SPEC><READ_INDEX>0</READ_INDEX><READ_CLASS>Application Read</READ_CLASS><READ_TYPE>Forward</READ_TYPE><BASE_COORD>1</BASE_COORD></READ_SPEC><READ_SPEC><READ_INDEX>1</READ_INDEX><READ_CLASS>Application Read</READ_CLASS><READ_TYPE>Reverse</READ_TYPE><BASE_COORD>76</BASE_COORD></READ_SPEC></SPOT_DECODE_SPEC></SPOT_DESCRIPTOR> | SRP072296 | AG00717_SEQ0299_R1.fastq.gz AG00717_SEQ0299_R2.fastq.gz | fastq fastq | 1778143272.0 | 11698311.0 | AG00717 run 4 | 0:76 1:76 | A:531893644;C:351009327;G:366187476;T:528937189;N:115636 | 76 | 76 | 531893644 | 351009327 | 366187476 | 528937189 | 115636 | SRX1660355 | SRS1360316 | SRA395141 | Yale University|Giraldez Lab | Yale University | 2 | 0.72027 | 0.6573 | 0.57252 | 0.50814 | 0.74913 | 0.77479 | 0.51537 | 0.50066 | 76 | 76 | B | B | biological fallback assumption | illumina | hiseq_era | unknown | poly_a | unknown | bulk | unknown | unknown | United States | 2016-06-17 | Gastrula | Embryo | Whole Organism | All anatomical structures | ||||||||||||||||||||
| 40720 | 40720 | SRR3420315 | SRX1660354 | SRS1360300 | SRP072296 | PRJNA316313 | Codon optimality and mRNA decay in zebrafish and Xenopus | PRJNA316313 | Other | Cellular transitions require dramatic changes in gene expression that are supported by regulated mRNA decay and new transcription. The maternal to zygotic transition is a conserved developmental progression during which thousands of maternal mRNAs are cleared by posttranscriptional mechanisms. Although some maternal mRNAs are targeted for degradation by microRNAs this pathway does not fully explain mRNA clearance. Because the ribosome constitutes the main ribonucleoprotein complex decoding the mRNA we investigated how codon identity and translation affect mRNA stability during development and homeostasis. Using an in vivo selection strategy we show that the codon triplet contains translation dependent regulatory information that influences transcript decay. We find that codon composition shapes maternal mRNA clearance during the maternal to zygotic transition in zebrafish Xenopus mouse and Drosophila and gene expression during homeostasis across human tissues. Codon composition affects both polyadenylation status and translation efficiency. Thus the ribosome interprets two codes within the mRNA the genetic code which specifies the amino acid sequence and a conserved “codon optimality code” that shapes mRNA stability and translation efficiency across vertebrates. | AG00716 6h 1 | strain:TUAB|age:6h|sex:pooled male and female|tissue:whole embryo|treatment:alpha amanitin|barcode:GATCAG|BioSampleModel:Model organism or animal | AG00716 6h 1 | AG00716 6h 1 | 1 | 1 | RNA-Seq | TRANSCRIPTOMIC | unspecified | PAIRED | ILLUMINA | Illumina HiSeq 2500 | <SPOT_DESCRIPTOR><SPOT_DECODE_SPEC><SPOT_LENGTH>150</SPOT_LENGTH><READ_SPEC><READ_INDEX>0</READ_INDEX><READ_CLASS>Application Read</READ_CLASS><READ_TYPE>Forward</READ_TYPE><BASE_COORD>1</BASE_COORD></READ_SPEC><READ_SPEC><READ_INDEX>1</READ_INDEX><READ_CLASS>Application Read</READ_CLASS><READ_TYPE>Reverse</READ_TYPE><BASE_COORD>76</BASE_COORD></READ_SPEC></SPOT_DECODE_SPEC></SPOT_DESCRIPTOR> | SRP072296 | AG00716_SEQ0107_R2.fastq.gz AG00716_SEQ0107_R1.fastq.gz | fastq fastq | 1837024424.0 | 12085687.0 | AG00716 run 1 | 0:76 1:76 | A:571581150;C:339887376;G:357200726;T:564453542;N:3901630 | 76 | 76 | 571581150 | 339887376 | 357200726 | 564453542 | 3901630 | SRX1660354 | SRS1360300 | SRA395141 | Yale University|Giraldez Lab | Yale University | 2 | 0.77818 | 0.69777 | 0.64211 | 0.56481 | 0.75503 | 0.76926 | 0.50584 | 0.51507 | 76 | 76 | B | B | biological fallback assumption | illumina | hiseq_era | unknown | poly_a | unknown | bulk | unknown | unknown | United States | 2016-06-17 | Gastrula | Embryo | Whole Organism | All anatomical structures | ||||||||||||||||||||
| 40721 | 40721 | SRR3420319 | SRX1660354 | SRS1360300 | SRP072296 | PRJNA316313 | Codon optimality and mRNA decay in zebrafish and Xenopus | PRJNA316313 | Other | Cellular transitions require dramatic changes in gene expression that are supported by regulated mRNA decay and new transcription. The maternal to zygotic transition is a conserved developmental progression during which thousands of maternal mRNAs are cleared by posttranscriptional mechanisms. Although some maternal mRNAs are targeted for degradation by microRNAs this pathway does not fully explain mRNA clearance. Because the ribosome constitutes the main ribonucleoprotein complex decoding the mRNA we investigated how codon identity and translation affect mRNA stability during development and homeostasis. Using an in vivo selection strategy we show that the codon triplet contains translation dependent regulatory information that influences transcript decay. We find that codon composition shapes maternal mRNA clearance during the maternal to zygotic transition in zebrafish Xenopus mouse and Drosophila and gene expression during homeostasis across human tissues. Codon composition affects both polyadenylation status and translation efficiency. Thus the ribosome interprets two codes within the mRNA the genetic code which specifies the amino acid sequence and a conserved “codon optimality code” that shapes mRNA stability and translation efficiency across vertebrates. | AG00716 6h 1 | strain:TUAB|age:6h|sex:pooled male and female|tissue:whole embryo|treatment:alpha amanitin|barcode:GATCAG|BioSampleModel:Model organism or animal | AG00716 6h 1 | AG00716 6h 1 | 1 | 1 | RNA-Seq | TRANSCRIPTOMIC | unspecified | PAIRED | ILLUMINA | Illumina HiSeq 2500 | <SPOT_DESCRIPTOR><SPOT_DECODE_SPEC><SPOT_LENGTH>150</SPOT_LENGTH><READ_SPEC><READ_INDEX>0</READ_INDEX><READ_CLASS>Application Read</READ_CLASS><READ_TYPE>Forward</READ_TYPE><BASE_COORD>1</BASE_COORD></READ_SPEC><READ_SPEC><READ_INDEX>1</READ_INDEX><READ_CLASS>Application Read</READ_CLASS><READ_TYPE>Reverse</READ_TYPE><BASE_COORD>76</BASE_COORD></READ_SPEC></SPOT_DECODE_SPEC></SPOT_DESCRIPTOR> | SRP072296 | AG00716_SEQ0179_R2.fastq.gz AG00716_SEQ0179_R1.fastq.gz | fastq fastq | 2763994600.0 | 18184175.0 | AG00716 run 2 | 0:76 1:76 | A:841712204;C:530711238;G:562110067;T:828853061;N:608030 | 76 | 76 | 841712204 | 530711238 | 562110067 | 828853061 | 608030 | SRX1660354 | SRS1360300 | SRA395141 | Yale University|Giraldez Lab | Yale University | 2 | 0.74716 | 0.66787 | 0.61425 | 0.53764 | 0.7475 | 0.76518 | 0.50855 | 0.51311 | 76 | 76 | B | B | biological fallback assumption | illumina | hiseq_era | unknown | poly_a | unknown | bulk | unknown | unknown | United States | 2016-04-22 | Gastrula | Embryo | Whole Organism | All anatomical structures | ||||||||||||||||||||
| 40722 | 40722 | SRR3420323 | SRX1660354 | SRS1360300 | SRP072296 | PRJNA316313 | Codon optimality and mRNA decay in zebrafish and Xenopus | PRJNA316313 | Other | Cellular transitions require dramatic changes in gene expression that are supported by regulated mRNA decay and new transcription. The maternal to zygotic transition is a conserved developmental progression during which thousands of maternal mRNAs are cleared by posttranscriptional mechanisms. Although some maternal mRNAs are targeted for degradation by microRNAs this pathway does not fully explain mRNA clearance. Because the ribosome constitutes the main ribonucleoprotein complex decoding the mRNA we investigated how codon identity and translation affect mRNA stability during development and homeostasis. Using an in vivo selection strategy we show that the codon triplet contains translation dependent regulatory information that influences transcript decay. We find that codon composition shapes maternal mRNA clearance during the maternal to zygotic transition in zebrafish Xenopus mouse and Drosophila and gene expression during homeostasis across human tissues. Codon composition affects both polyadenylation status and translation efficiency. Thus the ribosome interprets two codes within the mRNA the genetic code which specifies the amino acid sequence and a conserved “codon optimality code” that shapes mRNA stability and translation efficiency across vertebrates. | AG00716 6h 1 | strain:TUAB|age:6h|sex:pooled male and female|tissue:whole embryo|treatment:alpha amanitin|barcode:GATCAG|BioSampleModel:Model organism or animal | AG00716 6h 1 | AG00716 6h 1 | 1 | 1 | RNA-Seq | TRANSCRIPTOMIC | unspecified | PAIRED | ILLUMINA | Illumina HiSeq 2500 | <SPOT_DESCRIPTOR><SPOT_DECODE_SPEC><SPOT_LENGTH>150</SPOT_LENGTH><READ_SPEC><READ_INDEX>0</READ_INDEX><READ_CLASS>Application Read</READ_CLASS><READ_TYPE>Forward</READ_TYPE><BASE_COORD>1</BASE_COORD></READ_SPEC><READ_SPEC><READ_INDEX>1</READ_INDEX><READ_CLASS>Application Read</READ_CLASS><READ_TYPE>Reverse</READ_TYPE><BASE_COORD>76</BASE_COORD></READ_SPEC></SPOT_DECODE_SPEC></SPOT_DESCRIPTOR> | SRP072296 | AG00716_SEQ0287_R1.fastq.gz AG00716_SEQ0287_R2.fastq.gz | fastq fastq | 1055704904.0 | 6945427.0 | AG00716 run 3 | 0:76 1:76 | A:323142351;C:199674907;G:210508599;T:317806564;N:4572483 | 76 | 76 | 323142351 | 199674907 | 210508599 | 317806564 | 4572483 | SRX1660354 | SRS1360300 | SRA395141 | Yale University|Giraldez Lab | Yale University | 2 | 0.73664 | 0.68701 | 0.59387 | 0.5447 | 0.76179 | 0.76132 | 0.51299 | 0.51552 | 76 | 76 | B | B | biological fallback assumption | illumina | hiseq_era | unknown | poly_a | unknown | bulk | unknown | unknown | United States | 2016-06-17 | Gastrula | Embryo | Whole Organism | All anatomical structures | ||||||||||||||||||||
| 40723 | 40723 | SRR3420327 | SRX1660354 | SRS1360300 | SRP072296 | PRJNA316313 | Codon optimality and mRNA decay in zebrafish and Xenopus | PRJNA316313 | Other | Cellular transitions require dramatic changes in gene expression that are supported by regulated mRNA decay and new transcription. The maternal to zygotic transition is a conserved developmental progression during which thousands of maternal mRNAs are cleared by posttranscriptional mechanisms. Although some maternal mRNAs are targeted for degradation by microRNAs this pathway does not fully explain mRNA clearance. Because the ribosome constitutes the main ribonucleoprotein complex decoding the mRNA we investigated how codon identity and translation affect mRNA stability during development and homeostasis. Using an in vivo selection strategy we show that the codon triplet contains translation dependent regulatory information that influences transcript decay. We find that codon composition shapes maternal mRNA clearance during the maternal to zygotic transition in zebrafish Xenopus mouse and Drosophila and gene expression during homeostasis across human tissues. Codon composition affects both polyadenylation status and translation efficiency. Thus the ribosome interprets two codes within the mRNA the genetic code which specifies the amino acid sequence and a conserved “codon optimality code” that shapes mRNA stability and translation efficiency across vertebrates. | AG00716 6h 1 | strain:TUAB|age:6h|sex:pooled male and female|tissue:whole embryo|treatment:alpha amanitin|barcode:GATCAG|BioSampleModel:Model organism or animal | AG00716 6h 1 | AG00716 6h 1 | 1 | 1 | RNA-Seq | TRANSCRIPTOMIC | unspecified | PAIRED | ILLUMINA | Illumina HiSeq 2500 | <SPOT_DESCRIPTOR><SPOT_DECODE_SPEC><SPOT_LENGTH>150</SPOT_LENGTH><READ_SPEC><READ_INDEX>0</READ_INDEX><READ_CLASS>Application Read</READ_CLASS><READ_TYPE>Forward</READ_TYPE><BASE_COORD>1</BASE_COORD></READ_SPEC><READ_SPEC><READ_INDEX>1</READ_INDEX><READ_CLASS>Application Read</READ_CLASS><READ_TYPE>Reverse</READ_TYPE><BASE_COORD>76</BASE_COORD></READ_SPEC></SPOT_DECODE_SPEC></SPOT_DESCRIPTOR> | SRP072296 | AG00716_SEQ0296_R2.fastq.gz AG00716_SEQ0296_R1.fastq.gz | fastq fastq | 2526928408.0 | 16624529.0 | AG00716 run 4 | 0:76 1:76 | A:771333886;C:482964782;G:508687112;T:763609426;N:333202 | 76 | 76 | 771333886 | 482964782 | 508687112 | 763609426 | 333202 | SRX1660354 | SRS1360300 | SRA395141 | Yale University|Giraldez Lab | Yale University | 2 | 0.74535 | 0.66478 | 0.61452 | 0.53584 | 0.75826 | 0.77329 | 0.51139 | 0.51539 | 76 | 76 | B | B | biological fallback assumption | illumina | hiseq_era | unknown | poly_a | unknown | bulk | unknown | unknown | United States | 2016-04-22 | Gastrula | Embryo | Whole Organism | All anatomical structures | ||||||||||||||||||||
| 40724 | 40724 | SRR3420333 | SRX1660350 | SRS1360304 | SRP072296 | PRJNA316313 | Codon optimality and mRNA decay in zebrafish and Xenopus | PRJNA316313 | Other | Cellular transitions require dramatic changes in gene expression that are supported by regulated mRNA decay and new transcription. The maternal to zygotic transition is a conserved developmental progression during which thousands of maternal mRNAs are cleared by posttranscriptional mechanisms. Although some maternal mRNAs are targeted for degradation by microRNAs this pathway does not fully explain mRNA clearance. Because the ribosome constitutes the main ribonucleoprotein complex decoding the mRNA we investigated how codon identity and translation affect mRNA stability during development and homeostasis. Using an in vivo selection strategy we show that the codon triplet contains translation dependent regulatory information that influences transcript decay. We find that codon composition shapes maternal mRNA clearance during the maternal to zygotic transition in zebrafish Xenopus mouse and Drosophila and gene expression during homeostasis across human tissues. Codon composition affects both polyadenylation status and translation efficiency. Thus the ribosome interprets two codes within the mRNA the genetic code which specifies the amino acid sequence and a conserved “codon optimality code” that shapes mRNA stability and translation efficiency across vertebrates. | AG00715 4h 2 | strain:TUAB|age:4h|sex:pooled male and female|tissue:whole embryo|treatment:alpha amanitin|barcode:CAGATC|BioSampleModel:Model organism or animal | AG00715 4h 2 | AG00715 4h 2 | 1 | 1 | RNA-Seq | TRANSCRIPTOMIC | unspecified | PAIRED | ILLUMINA | Illumina HiSeq 2500 | <SPOT_DESCRIPTOR><SPOT_DECODE_SPEC><SPOT_LENGTH>150</SPOT_LENGTH><READ_SPEC><READ_INDEX>0</READ_INDEX><READ_CLASS>Application Read</READ_CLASS><READ_TYPE>Forward</READ_TYPE><BASE_COORD>1</BASE_COORD></READ_SPEC><READ_SPEC><READ_INDEX>1</READ_INDEX><READ_CLASS>Application Read</READ_CLASS><READ_TYPE>Reverse</READ_TYPE><BASE_COORD>76</BASE_COORD></READ_SPEC></SPOT_DECODE_SPEC></SPOT_DESCRIPTOR> | SRP072296 | AG00715_SEQ0107_R1.fastq.gz AG00715_SEQ0107_R2.fastq.gz | fastq fastq | 2314408088.0 | 15226369.0 | AG00715 run 1 | 0:76 1:76 | A:652783335;C:485705748;G:507451689;T:663544778;N:4922538 | 76 | 76 | 652783335 | 485705748 | 507451689 | 663544778 | 4922538 | SRX1660350 | SRS1360304 | SRA395141 | Yale University|Giraldez Lab | Yale University | 2 | 0.59859 | 0.55293 | 0.24175 | 0.21943 | 0.78384 | 0.79174 | 0.52173 | 0.52111 | 76 | 76 | B | B | biological fallback assumption | illumina | hiseq_era | unknown | poly_a | unknown | bulk | unknown | unknown | United States | 2016-06-17 | Blastula | Embryo | Whole Organism | All anatomical structures | ||||||||||||||||||||
| 40725 | 40725 | SRR3420337 | SRX1660350 | SRS1360304 | SRP072296 | PRJNA316313 | Codon optimality and mRNA decay in zebrafish and Xenopus | PRJNA316313 | Other | Cellular transitions require dramatic changes in gene expression that are supported by regulated mRNA decay and new transcription. The maternal to zygotic transition is a conserved developmental progression during which thousands of maternal mRNAs are cleared by posttranscriptional mechanisms. Although some maternal mRNAs are targeted for degradation by microRNAs this pathway does not fully explain mRNA clearance. Because the ribosome constitutes the main ribonucleoprotein complex decoding the mRNA we investigated how codon identity and translation affect mRNA stability during development and homeostasis. Using an in vivo selection strategy we show that the codon triplet contains translation dependent regulatory information that influences transcript decay. We find that codon composition shapes maternal mRNA clearance during the maternal to zygotic transition in zebrafish Xenopus mouse and Drosophila and gene expression during homeostasis across human tissues. Codon composition affects both polyadenylation status and translation efficiency. Thus the ribosome interprets two codes within the mRNA the genetic code which specifies the amino acid sequence and a conserved “codon optimality code” that shapes mRNA stability and translation efficiency across vertebrates. | AG00715 4h 2 | strain:TUAB|age:4h|sex:pooled male and female|tissue:whole embryo|treatment:alpha amanitin|barcode:CAGATC|BioSampleModel:Model organism or animal | AG00715 4h 2 | AG00715 4h 2 | 1 | 1 | RNA-Seq | TRANSCRIPTOMIC | unspecified | PAIRED | ILLUMINA | Illumina HiSeq 2500 | <SPOT_DESCRIPTOR><SPOT_DECODE_SPEC><SPOT_LENGTH>150</SPOT_LENGTH><READ_SPEC><READ_INDEX>0</READ_INDEX><READ_CLASS>Application Read</READ_CLASS><READ_TYPE>Forward</READ_TYPE><BASE_COORD>1</BASE_COORD></READ_SPEC><READ_SPEC><READ_INDEX>1</READ_INDEX><READ_CLASS>Application Read</READ_CLASS><READ_TYPE>Reverse</READ_TYPE><BASE_COORD>76</BASE_COORD></READ_SPEC></SPOT_DECODE_SPEC></SPOT_DESCRIPTOR> | SRP072296 | AG00715_SEQ0179_R1.fastq.gz AG00715_SEQ0179_R2.fastq.gz | fastq fastq | 2461668424.0 | 16195187.0 | AG00715 run 2 | 0:76 1:76 | A:653884256;C:562168304;G:597853484;T:647470498;N:291882 | 76 | 76 | 653884256 | 562168304 | 597853484 | 647470498 | 291882 | SRX1660350 | SRS1360304 | SRA395141 | Yale University|Giraldez Lab | Yale University | 2 | 0.5374 | 0.51402 | 0.2167 | 0.19427 | 0.78575 | 0.7934 | 0.52714 | 0.53043 | 76 | 76 | B | B | biological fallback assumption | illumina | hiseq_era | unknown | poly_a | unknown | bulk | unknown | unknown | United States | 2016-06-17 | Blastula | Embryo | Whole Organism | All anatomical structures | ||||||||||||||||||||
| 40726 | 40726 | SRR3420341 | SRX1660350 | SRS1360304 | SRP072296 | PRJNA316313 | Codon optimality and mRNA decay in zebrafish and Xenopus | PRJNA316313 | Other | Cellular transitions require dramatic changes in gene expression that are supported by regulated mRNA decay and new transcription. The maternal to zygotic transition is a conserved developmental progression during which thousands of maternal mRNAs are cleared by posttranscriptional mechanisms. Although some maternal mRNAs are targeted for degradation by microRNAs this pathway does not fully explain mRNA clearance. Because the ribosome constitutes the main ribonucleoprotein complex decoding the mRNA we investigated how codon identity and translation affect mRNA stability during development and homeostasis. Using an in vivo selection strategy we show that the codon triplet contains translation dependent regulatory information that influences transcript decay. We find that codon composition shapes maternal mRNA clearance during the maternal to zygotic transition in zebrafish Xenopus mouse and Drosophila and gene expression during homeostasis across human tissues. Codon composition affects both polyadenylation status and translation efficiency. Thus the ribosome interprets two codes within the mRNA the genetic code which specifies the amino acid sequence and a conserved “codon optimality code” that shapes mRNA stability and translation efficiency across vertebrates. | AG00715 4h 2 | strain:TUAB|age:4h|sex:pooled male and female|tissue:whole embryo|treatment:alpha amanitin|barcode:CAGATC|BioSampleModel:Model organism or animal | AG00715 4h 2 | AG00715 4h 2 | 1 | 1 | RNA-Seq | TRANSCRIPTOMIC | unspecified | PAIRED | ILLUMINA | Illumina HiSeq 2500 | <SPOT_DESCRIPTOR><SPOT_DECODE_SPEC><SPOT_LENGTH>150</SPOT_LENGTH><READ_SPEC><READ_INDEX>0</READ_INDEX><READ_CLASS>Application Read</READ_CLASS><READ_TYPE>Forward</READ_TYPE><BASE_COORD>1</BASE_COORD></READ_SPEC><READ_SPEC><READ_INDEX>1</READ_INDEX><READ_CLASS>Application Read</READ_CLASS><READ_TYPE>Reverse</READ_TYPE><BASE_COORD>76</BASE_COORD></READ_SPEC></SPOT_DECODE_SPEC></SPOT_DESCRIPTOR> | SRP072296 | AG00715_SEQ0287_R1.fastq.gz AG00715_SEQ0287_R2.fastq.gz | fastq fastq | 3692351624.0 | 24291787.0 | AG00715 run 3 | 0:76 1:76 | A:984283909;C:835828915;G:881112020;T:975490829;N:15635951 | 76 | 76 | 984283909 | 835828915 | 881112020 | 975490829 | 15635951 | SRX1660350 | SRS1360304 | SRA395141 | Yale University|Giraldez Lab | Yale University | 2 | 0.54752 | 0.52404 | 0.18037 | 0.16908 | 0.79358 | 0.7961 | 0.50982 | 0.50975 | 76 | 76 | B | B | biological fallback assumption | illumina | hiseq_era | unknown | poly_a | unknown | bulk | unknown | unknown | United States | 2016-06-17 | Blastula | Embryo | Whole Organism | All anatomical structures | ||||||||||||||||||||
| 40727 | 40727 | SRR3420346 | SRX1660346 | SRS1360308 | SRP072296 | PRJNA316313 | Codon optimality and mRNA decay in zebrafish and Xenopus | PRJNA316313 | Other | Cellular transitions require dramatic changes in gene expression that are supported by regulated mRNA decay and new transcription. The maternal to zygotic transition is a conserved developmental progression during which thousands of maternal mRNAs are cleared by posttranscriptional mechanisms. Although some maternal mRNAs are targeted for degradation by microRNAs this pathway does not fully explain mRNA clearance. Because the ribosome constitutes the main ribonucleoprotein complex decoding the mRNA we investigated how codon identity and translation affect mRNA stability during development and homeostasis. Using an in vivo selection strategy we show that the codon triplet contains translation dependent regulatory information that influences transcript decay. We find that codon composition shapes maternal mRNA clearance during the maternal to zygotic transition in zebrafish Xenopus mouse and Drosophila and gene expression during homeostasis across human tissues. Codon composition affects both polyadenylation status and translation efficiency. Thus the ribosome interprets two codes within the mRNA the genetic code which specifies the amino acid sequence and a conserved “codon optimality code” that shapes mRNA stability and translation efficiency across vertebrates. | AG00714 4h 1 | strain:TUAB|age:4h|sex:pooled male and female|tissue:whole embryo|treatment:alpha amanitin|barcode:GCCAAT|BioSampleModel:Model organism or animal | AG00714 4h 1 | AG00714 4h 1 | 1 | 1 | RNA-Seq | TRANSCRIPTOMIC | unspecified | PAIRED | ILLUMINA | Illumina HiSeq 2500 | <SPOT_DESCRIPTOR><SPOT_DECODE_SPEC><SPOT_LENGTH>150</SPOT_LENGTH><READ_SPEC><READ_INDEX>0</READ_INDEX><READ_CLASS>Application Read</READ_CLASS><READ_TYPE>Forward</READ_TYPE><BASE_COORD>1</BASE_COORD></READ_SPEC><READ_SPEC><READ_INDEX>1</READ_INDEX><READ_CLASS>Application Read</READ_CLASS><READ_TYPE>Reverse</READ_TYPE><BASE_COORD>76</BASE_COORD></READ_SPEC></SPOT_DECODE_SPEC></SPOT_DESCRIPTOR> | SRP072296 | AG00714_SEQ0107_R1.fastq.gz AG00714_SEQ0107_R2.fastq.gz | fastq fastq | 2377192296.0 | 15639423.0 | AG00714 run 1 | 0:76 1:76 | A:694380135;C:473427723;G:496920379;T:707435115;N:5028944 | 76 | 76 | 694380135 | 473427723 | 496920379 | 707435115 | 5028944 | SRX1660346 | SRS1360308 | SRA395141 | Yale University|Giraldez Lab | Yale University | 2 | 0.69444 | 0.63521 | 0.40011 | 0.36148 | 0.76252 | 0.77116 | 0.50751 | 0.5108 | 76 | 76 | B | B | biological fallback assumption | illumina | hiseq_era | unknown | poly_a | unknown | bulk | unknown | unknown | United States | 2016-06-17 | Blastula | Embryo | Whole Organism | All anatomical structures | ||||||||||||||||||||
| 40728 | 40728 | SRR3420349 | SRX1660346 | SRS1360308 | SRP072296 | PRJNA316313 | Codon optimality and mRNA decay in zebrafish and Xenopus | PRJNA316313 | Other | Cellular transitions require dramatic changes in gene expression that are supported by regulated mRNA decay and new transcription. The maternal to zygotic transition is a conserved developmental progression during which thousands of maternal mRNAs are cleared by posttranscriptional mechanisms. Although some maternal mRNAs are targeted for degradation by microRNAs this pathway does not fully explain mRNA clearance. Because the ribosome constitutes the main ribonucleoprotein complex decoding the mRNA we investigated how codon identity and translation affect mRNA stability during development and homeostasis. Using an in vivo selection strategy we show that the codon triplet contains translation dependent regulatory information that influences transcript decay. We find that codon composition shapes maternal mRNA clearance during the maternal to zygotic transition in zebrafish Xenopus mouse and Drosophila and gene expression during homeostasis across human tissues. Codon composition affects both polyadenylation status and translation efficiency. Thus the ribosome interprets two codes within the mRNA the genetic code which specifies the amino acid sequence and a conserved “codon optimality code” that shapes mRNA stability and translation efficiency across vertebrates. | AG00714 4h 1 | strain:TUAB|age:4h|sex:pooled male and female|tissue:whole embryo|treatment:alpha amanitin|barcode:GCCAAT|BioSampleModel:Model organism or animal | AG00714 4h 1 | AG00714 4h 1 | 1 | 1 | RNA-Seq | TRANSCRIPTOMIC | unspecified | PAIRED | ILLUMINA | Illumina HiSeq 2500 | <SPOT_DESCRIPTOR><SPOT_DECODE_SPEC><SPOT_LENGTH>150</SPOT_LENGTH><READ_SPEC><READ_INDEX>0</READ_INDEX><READ_CLASS>Application Read</READ_CLASS><READ_TYPE>Forward</READ_TYPE><BASE_COORD>1</BASE_COORD></READ_SPEC><READ_SPEC><READ_INDEX>1</READ_INDEX><READ_CLASS>Application Read</READ_CLASS><READ_TYPE>Reverse</READ_TYPE><BASE_COORD>76</BASE_COORD></READ_SPEC></SPOT_DECODE_SPEC></SPOT_DESCRIPTOR> | SRP072296 | AG00714_SEQ0287_R1.fastq.gz AG00714_SEQ0287_R2.fastq.gz | fastq fastq | 1841902256.0 | 12117778.0 | AG00714 run 2 | 0:76 1:76 | A:517451432;C:392444197;G:415696773;T:508506741;N:7803113 | 76 | 76 | 517451432 | 392444197 | 415696773 | 508506741 | 7803113 | SRX1660346 | SRS1360308 | SRA395141 | Yale University|Giraldez Lab | Yale University | 2 | 0.63625 | 0.60304 | 0.3341 | 0.31189 | 0.77224 | 0.77703 | 0.50754 | 0.51039 | 76 | 76 | B | B | biological fallback assumption | illumina | hiseq_era | unknown | poly_a | unknown | bulk | unknown | unknown | United States | 2016-06-17 | Blastula | Embryo | Whole Organism | All anatomical structures | ||||||||||||||||||||
| 40729 | 40729 | SRR3420359 | SRX1660342 | SRS1360312 | SRP072296 | PRJNA316313 | Codon optimality and mRNA decay in zebrafish and Xenopus | PRJNA316313 | Other | Cellular transitions require dramatic changes in gene expression that are supported by regulated mRNA decay and new transcription. The maternal to zygotic transition is a conserved developmental progression during which thousands of maternal mRNAs are cleared by posttranscriptional mechanisms. Although some maternal mRNAs are targeted for degradation by microRNAs this pathway does not fully explain mRNA clearance. Because the ribosome constitutes the main ribonucleoprotein complex decoding the mRNA we investigated how codon identity and translation affect mRNA stability during development and homeostasis. Using an in vivo selection strategy we show that the codon triplet contains translation dependent regulatory information that influences transcript decay. We find that codon composition shapes maternal mRNA clearance during the maternal to zygotic transition in zebrafish Xenopus mouse and Drosophila and gene expression during homeostasis across human tissues. Codon composition affects both polyadenylation status and translation efficiency. Thus the ribosome interprets two codes within the mRNA the genetic code which specifies the amino acid sequence and a conserved “codon optimality code” that shapes mRNA stability and translation efficiency across vertebrates. | AG00713 3h 2 | strain:TUAB|age:3h|sex:pooled male and female|tissue:whole embryo|treatment:alpha amanitin|barcode:ACAGTG|BioSampleModel:Model organism or animal | AG00713 3h 2 | AG00713 3h 2 | 1 | 1 | RNA-Seq | TRANSCRIPTOMIC | unspecified | PAIRED | ILLUMINA | Illumina HiSeq 2500 | <SPOT_DESCRIPTOR><SPOT_DECODE_SPEC><SPOT_LENGTH>150</SPOT_LENGTH><READ_SPEC><READ_INDEX>0</READ_INDEX><READ_CLASS>Application Read</READ_CLASS><READ_TYPE>Forward</READ_TYPE><BASE_COORD>1</BASE_COORD></READ_SPEC><READ_SPEC><READ_INDEX>1</READ_INDEX><READ_CLASS>Application Read</READ_CLASS><READ_TYPE>Reverse</READ_TYPE><BASE_COORD>76</BASE_COORD></READ_SPEC></SPOT_DECODE_SPEC></SPOT_DESCRIPTOR> | SRP072296 | AG00713_SEQ0107_R1.fastq.gz AG00713_SEQ0107_R2.fastq.gz | fastq fastq | 2674764976.0 | 17597138.0 | AG00713 run 1 | 0:76 1:76 | A:738399424;C:560443522;G:578733188;T:791450319;N:5738523 | 76 | 76 | 738399424 | 560443522 | 578733188 | 791450319 | 5738523 | SRX1660342 | SRS1360312 | SRA395141 | Yale University|Giraldez Lab | Yale University | 2 | 0.63595 | 0.60509 | 0.17579 | 0.17695 | 0.79066 | 0.79815 | 0.49657 | 0.4916 | 76 | 76 | B | B | biological fallback assumption | illumina | hiseq_era | unknown | poly_a | unknown | bulk | unknown | unknown | United States | 2016-06-17 | Blastula | Embryo | Whole Organism | All anatomical structures | ||||||||||||||||||||
| 40730 | 40730 | SRR3420362 | SRX1660342 | SRS1360312 | SRP072296 | PRJNA316313 | Codon optimality and mRNA decay in zebrafish and Xenopus | PRJNA316313 | Other | Cellular transitions require dramatic changes in gene expression that are supported by regulated mRNA decay and new transcription. The maternal to zygotic transition is a conserved developmental progression during which thousands of maternal mRNAs are cleared by posttranscriptional mechanisms. Although some maternal mRNAs are targeted for degradation by microRNAs this pathway does not fully explain mRNA clearance. Because the ribosome constitutes the main ribonucleoprotein complex decoding the mRNA we investigated how codon identity and translation affect mRNA stability during development and homeostasis. Using an in vivo selection strategy we show that the codon triplet contains translation dependent regulatory information that influences transcript decay. We find that codon composition shapes maternal mRNA clearance during the maternal to zygotic transition in zebrafish Xenopus mouse and Drosophila and gene expression during homeostasis across human tissues. Codon composition affects both polyadenylation status and translation efficiency. Thus the ribosome interprets two codes within the mRNA the genetic code which specifies the amino acid sequence and a conserved “codon optimality code” that shapes mRNA stability and translation efficiency across vertebrates. | AG00713 3h 2 | strain:TUAB|age:3h|sex:pooled male and female|tissue:whole embryo|treatment:alpha amanitin|barcode:ACAGTG|BioSampleModel:Model organism or animal | AG00713 3h 2 | AG00713 3h 2 | 1 | 1 | RNA-Seq | TRANSCRIPTOMIC | unspecified | PAIRED | ILLUMINA | Illumina HiSeq 2500 | <SPOT_DESCRIPTOR><SPOT_DECODE_SPEC><SPOT_LENGTH>150</SPOT_LENGTH><READ_SPEC><READ_INDEX>0</READ_INDEX><READ_CLASS>Application Read</READ_CLASS><READ_TYPE>Forward</READ_TYPE><BASE_COORD>1</BASE_COORD></READ_SPEC><READ_SPEC><READ_INDEX>1</READ_INDEX><READ_CLASS>Application Read</READ_CLASS><READ_TYPE>Reverse</READ_TYPE><BASE_COORD>76</BASE_COORD></READ_SPEC></SPOT_DECODE_SPEC></SPOT_DESCRIPTOR> | SRP072296 | AG00713_SEQ0287_R1.fastq.gz AG00713_SEQ0287_R2.fastq.gz | fastq fastq | 2463895376.0 | 16209838.0 | AG00713 run 2 | 0:76 1:76 | A:661360403;C:556078326;G:581335469;T:654625128;N:10496050 | 76 | 76 | 661360403 | 556078326 | 581335469 | 654625128 | 10496050 | SRX1660342 | SRS1360312 | SRA395141 | Yale University|Giraldez Lab | Yale University | 2 | 0.58767 | 0.56878 | 0.14864 | 0.14485 | 0.79476 | 0.79898 | 0.49508 | 0.49769 | 76 | 76 | B | B | biological fallback assumption | illumina | hiseq_era | unknown | poly_a | unknown | bulk | unknown | unknown | United States | 2016-06-17 | Blastula | Embryo | Whole Organism | All anatomical structures | ||||||||||||||||||||
| 40731 | 40731 | SRR3420369 | SRX1660341 | SRS1360313 | SRP072296 | PRJNA316313 | Codon optimality and mRNA decay in zebrafish and Xenopus | PRJNA316313 | Other | Cellular transitions require dramatic changes in gene expression that are supported by regulated mRNA decay and new transcription. The maternal to zygotic transition is a conserved developmental progression during which thousands of maternal mRNAs are cleared by posttranscriptional mechanisms. Although some maternal mRNAs are targeted for degradation by microRNAs this pathway does not fully explain mRNA clearance. Because the ribosome constitutes the main ribonucleoprotein complex decoding the mRNA we investigated how codon identity and translation affect mRNA stability during development and homeostasis. Using an in vivo selection strategy we show that the codon triplet contains translation dependent regulatory information that influences transcript decay. We find that codon composition shapes maternal mRNA clearance during the maternal to zygotic transition in zebrafish Xenopus mouse and Drosophila and gene expression during homeostasis across human tissues. Codon composition affects both polyadenylation status and translation efficiency. Thus the ribosome interprets two codes within the mRNA the genetic code which specifies the amino acid sequence and a conserved “codon optimality code” that shapes mRNA stability and translation efficiency across vertebrates. | AG00712 3h 1 | strain:TUAB|age:3h|sex:pooled male and female|tissue:whole embryo|treatment:alpha amanitin|barcode:TGACCA|BioSampleModel:Model organism or animal | AG00712 3h 1 | AG00712 3h 1 | 1 | 1 | RNA-Seq | TRANSCRIPTOMIC | unspecified | PAIRED | ILLUMINA | Illumina HiSeq 2500 | <SPOT_DESCRIPTOR><SPOT_DECODE_SPEC><SPOT_LENGTH>150</SPOT_LENGTH><READ_SPEC><READ_INDEX>0</READ_INDEX><READ_CLASS>Application Read</READ_CLASS><READ_TYPE>Forward</READ_TYPE><BASE_COORD>1</BASE_COORD></READ_SPEC><READ_SPEC><READ_INDEX>1</READ_INDEX><READ_CLASS>Application Read</READ_CLASS><READ_TYPE>Reverse</READ_TYPE><BASE_COORD>76</BASE_COORD></READ_SPEC></SPOT_DECODE_SPEC></SPOT_DESCRIPTOR> | SRP072296 | AG00712_SEQ0107_R2.fastq.gz AG00712_SEQ0107_R1.fastq.gz | fastq fastq | 1354427464.0 | 8910707.0 | AG00712 run 1 | 0:76 1:76 | A:382647488;C:281900295;G:291990859;T:395032379;N:2856443 | 76 | 76 | 382647488 | 281900295 | 291990859 | 395032379 | 2856443 | SRX1660341 | SRS1360313 | SRA395141 | Yale University|Giraldez Lab | Yale University | 2 | 0.64156 | 0.60052 | 0.23835 | 0.22296 | 0.78025 | 0.78717 | 0.49813 | 0.49898 | 76 | 76 | B | B | biological fallback assumption | illumina | hiseq_era | unknown | poly_a | unknown | bulk | unknown | unknown | United States | 2016-06-17 | Blastula | Embryo | Whole Organism | All anatomical structures | ||||||||||||||||||||
| 40732 | 40732 | SRR3420375 | SRX1660341 | SRS1360313 | SRP072296 | PRJNA316313 | Codon optimality and mRNA decay in zebrafish and Xenopus | PRJNA316313 | Other | Cellular transitions require dramatic changes in gene expression that are supported by regulated mRNA decay and new transcription. The maternal to zygotic transition is a conserved developmental progression during which thousands of maternal mRNAs are cleared by posttranscriptional mechanisms. Although some maternal mRNAs are targeted for degradation by microRNAs this pathway does not fully explain mRNA clearance. Because the ribosome constitutes the main ribonucleoprotein complex decoding the mRNA we investigated how codon identity and translation affect mRNA stability during development and homeostasis. Using an in vivo selection strategy we show that the codon triplet contains translation dependent regulatory information that influences transcript decay. We find that codon composition shapes maternal mRNA clearance during the maternal to zygotic transition in zebrafish Xenopus mouse and Drosophila and gene expression during homeostasis across human tissues. Codon composition affects both polyadenylation status and translation efficiency. Thus the ribosome interprets two codes within the mRNA the genetic code which specifies the amino acid sequence and a conserved “codon optimality code” that shapes mRNA stability and translation efficiency across vertebrates. | AG00712 3h 1 | strain:TUAB|age:3h|sex:pooled male and female|tissue:whole embryo|treatment:alpha amanitin|barcode:TGACCA|BioSampleModel:Model organism or animal | AG00712 3h 1 | AG00712 3h 1 | 1 | 1 | RNA-Seq | TRANSCRIPTOMIC | unspecified | PAIRED | ILLUMINA | Illumina HiSeq 2500 | <SPOT_DESCRIPTOR><SPOT_DECODE_SPEC><SPOT_LENGTH>150</SPOT_LENGTH><READ_SPEC><READ_INDEX>0</READ_INDEX><READ_CLASS>Application Read</READ_CLASS><READ_TYPE>Forward</READ_TYPE><BASE_COORD>1</BASE_COORD></READ_SPEC><READ_SPEC><READ_INDEX>1</READ_INDEX><READ_CLASS>Application Read</READ_CLASS><READ_TYPE>Reverse</READ_TYPE><BASE_COORD>76</BASE_COORD></READ_SPEC></SPOT_DECODE_SPEC></SPOT_DESCRIPTOR> | SRP072296 | AG00712_SEQ0183_R1.fastq.gz AG00712_SEQ0183_R2.fastq.gz | fastq fastq | 2335782480.0 | 15366990.0 | AG00712 run 2 | 0:76 1:76 | A:638971995;C:517112038;G:538588809;T:640731763;N:377875 | 76 | 76 | 638971995 | 517112038 | 538588809 | 640731763 | 377875 | SRX1660341 | SRS1360313 | SRA395141 | Yale University|Giraldez Lab | Yale University | 2 | 0.60525 | 0.56571 | 0.24772 | 0.21069 | 0.77043 | 0.78543 | 0.50862 | 0.50386 | 76 | 76 | B | B | biological fallback assumption | illumina | hiseq_era | unknown | poly_a | unknown | bulk | unknown | unknown | United States | 2016-06-17 | Blastula | Embryo | Whole Organism | All anatomical structures | ||||||||||||||||||||
| 40733 | 40733 | SRR3420379 | SRX1660340 | SRS1360314 | SRP072296 | PRJNA316313 | Codon optimality and mRNA decay in zebrafish and Xenopus | PRJNA316313 | Other | Cellular transitions require dramatic changes in gene expression that are supported by regulated mRNA decay and new transcription. The maternal to zygotic transition is a conserved developmental progression during which thousands of maternal mRNAs are cleared by posttranscriptional mechanisms. Although some maternal mRNAs are targeted for degradation by microRNAs this pathway does not fully explain mRNA clearance. Because the ribosome constitutes the main ribonucleoprotein complex decoding the mRNA we investigated how codon identity and translation affect mRNA stability during development and homeostasis. Using an in vivo selection strategy we show that the codon triplet contains translation dependent regulatory information that influences transcript decay. We find that codon composition shapes maternal mRNA clearance during the maternal to zygotic transition in zebrafish Xenopus mouse and Drosophila and gene expression during homeostasis across human tissues. Codon composition affects both polyadenylation status and translation efficiency. Thus the ribosome interprets two codes within the mRNA the genetic code which specifies the amino acid sequence and a conserved “codon optimality code” that shapes mRNA stability and translation efficiency across vertebrates. | AG00711 2.5h 2 | strain:TUAB|age:2.5h|sex:pooled male and female|tissue:whole embryo|treatment:alpha amanitin|barcode:CGATGT|BioSampleModel:Model organism or animal | AG00711 2.5h 2 | AG00711 2.5h 2 | 1 | 1 | RNA-Seq | TRANSCRIPTOMIC | unspecified | PAIRED | ILLUMINA | Illumina HiSeq 2500 | <SPOT_DESCRIPTOR><SPOT_DECODE_SPEC><SPOT_LENGTH>150</SPOT_LENGTH><READ_SPEC><READ_INDEX>0</READ_INDEX><READ_CLASS>Application Read</READ_CLASS><READ_TYPE>Forward</READ_TYPE><BASE_COORD>1</BASE_COORD></READ_SPEC><READ_SPEC><READ_INDEX>1</READ_INDEX><READ_CLASS>Application Read</READ_CLASS><READ_TYPE>Reverse</READ_TYPE><BASE_COORD>76</BASE_COORD></READ_SPEC></SPOT_DECODE_SPEC></SPOT_DESCRIPTOR> | SRP072296 | AG00711_SEQ0107_R1.fastq.gz AG00711_SEQ0107_R2.fastq.gz | fastq fastq | 2343343264.0 | 15416732.0 | AG00711 run 1 | 0:76 1:76 | A:645206414;C:505367235;G:523792864;T:663977432;N:4999319 | 76 | 76 | 645206414 | 505367235 | 523792864 | 663977432 | 4999319 | SRX1660340 | SRS1360314 | SRA395141 | Yale University|Giraldez Lab | Yale University | 2 | 0.59395 | 0.56211 | 0.10259 | 0.10243 | 0.80598 | 0.80911 | 0.51352 | 0.53772 | 76 | 76 | B | B | biological fallback assumption | illumina | hiseq_era | unknown | poly_a | unknown | bulk | unknown | unknown | United States | 2016-06-17 | Blastula | Embryo | Whole Organism | All anatomical structures | ||||||||||||||||||||
| 40734 | 40734 | SRR3420383 | SRX1660340 | SRS1360314 | SRP072296 | PRJNA316313 | Codon optimality and mRNA decay in zebrafish and Xenopus | PRJNA316313 | Other | Cellular transitions require dramatic changes in gene expression that are supported by regulated mRNA decay and new transcription. The maternal to zygotic transition is a conserved developmental progression during which thousands of maternal mRNAs are cleared by posttranscriptional mechanisms. Although some maternal mRNAs are targeted for degradation by microRNAs this pathway does not fully explain mRNA clearance. Because the ribosome constitutes the main ribonucleoprotein complex decoding the mRNA we investigated how codon identity and translation affect mRNA stability during development and homeostasis. Using an in vivo selection strategy we show that the codon triplet contains translation dependent regulatory information that influences transcript decay. We find that codon composition shapes maternal mRNA clearance during the maternal to zygotic transition in zebrafish Xenopus mouse and Drosophila and gene expression during homeostasis across human tissues. Codon composition affects both polyadenylation status and translation efficiency. Thus the ribosome interprets two codes within the mRNA the genetic code which specifies the amino acid sequence and a conserved “codon optimality code” that shapes mRNA stability and translation efficiency across vertebrates. | AG00711 2.5h 2 | strain:TUAB|age:2.5h|sex:pooled male and female|tissue:whole embryo|treatment:alpha amanitin|barcode:CGATGT|BioSampleModel:Model organism or animal | AG00711 2.5h 2 | AG00711 2.5h 2 | 1 | 1 | RNA-Seq | TRANSCRIPTOMIC | unspecified | PAIRED | ILLUMINA | Illumina HiSeq 2500 | <SPOT_DESCRIPTOR><SPOT_DECODE_SPEC><SPOT_LENGTH>150</SPOT_LENGTH><READ_SPEC><READ_INDEX>0</READ_INDEX><READ_CLASS>Application Read</READ_CLASS><READ_TYPE>Forward</READ_TYPE><BASE_COORD>1</BASE_COORD></READ_SPEC><READ_SPEC><READ_INDEX>1</READ_INDEX><READ_CLASS>Application Read</READ_CLASS><READ_TYPE>Reverse</READ_TYPE><BASE_COORD>76</BASE_COORD></READ_SPEC></SPOT_DECODE_SPEC></SPOT_DESCRIPTOR> | SRP072296 | AG00711_SEQ0287_R1.fastq.gz AG00711_SEQ0287_R2.fastq.gz | fastq fastq | 2668460776.0 | 17555663.0 | AG00711 run 2 | 0:76 1:76 | A:709820753;C:602900273;G:626554840;T:717828006;N:11356904 | 76 | 76 | 709820753 | 602900273 | 626554840 | 717828006 | 11356904 | SRX1660340 | SRS1360314 | SRA395141 | Yale University|Giraldez Lab | Yale University | 2 | 0.56281 | 0.54232 | 0.09217 | 0.09047 | 0.80657 | 0.81018 | 0.50757 | 0.52507 | 76 | 76 | B | B | biological fallback assumption | illumina | hiseq_era | unknown | poly_a | unknown | bulk | unknown | unknown | United States | 2016-06-17 | Blastula | Embryo | Whole Organism | All anatomical structures | ||||||||||||||||||||
| 40735 | 40735 | SRR3420304 | SRX1660339 | SRS1360299 | SRP072296 | PRJNA316313 | Codon optimality and mRNA decay in zebrafish and Xenopus | PRJNA316313 | Other | Cellular transitions require dramatic changes in gene expression that are supported by regulated mRNA decay and new transcription. The maternal to zygotic transition is a conserved developmental progression during which thousands of maternal mRNAs are cleared by posttranscriptional mechanisms. Although some maternal mRNAs are targeted for degradation by microRNAs this pathway does not fully explain mRNA clearance. Because the ribosome constitutes the main ribonucleoprotein complex decoding the mRNA we investigated how codon identity and translation affect mRNA stability during development and homeostasis. Using an in vivo selection strategy we show that the codon triplet contains translation dependent regulatory information that influences transcript decay. We find that codon composition shapes maternal mRNA clearance during the maternal to zygotic transition in zebrafish Xenopus mouse and Drosophila and gene expression during homeostasis across human tissues. Codon composition affects both polyadenylation status and translation efficiency. Thus the ribosome interprets two codes within the mRNA the genetic code which specifies the amino acid sequence and a conserved “codon optimality code” that shapes mRNA stability and translation efficiency across vertebrates. | AG00710 2.5h 1 | strain:TUAB|age:2.5h|sex:pooled male and female|tissue:whole embryo|treatment:alpha amanitin|barcode:ATCACG|BioSampleModel:Model organism or animal | AG00710 2.5h 1 | AG00710 2.5h 1 | 1 | 1 | RNA-Seq | TRANSCRIPTOMIC | unspecified | PAIRED | ILLUMINA | Illumina HiSeq 2500 | <SPOT_DESCRIPTOR><SPOT_DECODE_SPEC><SPOT_LENGTH>150</SPOT_LENGTH><READ_SPEC><READ_INDEX>0</READ_INDEX><READ_CLASS>Application Read</READ_CLASS><READ_TYPE>Forward</READ_TYPE><BASE_COORD>1</BASE_COORD></READ_SPEC><READ_SPEC><READ_INDEX>1</READ_INDEX><READ_CLASS>Application Read</READ_CLASS><READ_TYPE>Reverse</READ_TYPE><BASE_COORD>76</BASE_COORD></READ_SPEC></SPOT_DECODE_SPEC></SPOT_DESCRIPTOR> | SRP072296 | AG00710_SEQ0107_R1.fastq.gz AG00710_SEQ0107_R2.fastq.gz | fastq fastq | 2705199784.0 | 17797367.0 | AG00710 run 1 | 0:76 1:76 | A:737065338;C:573787464;G:595216660;T:793361986;N:5768336 | 76 | 76 | 737065338 | 573787464 | 595216660 | 793361986 | 5768336 | SRX1660339 | SRS1360299 | SRA395141 | Yale University|Giraldez Lab | Yale University | 2 | 0.60426 | 0.58122 | 0.08196 | 0.09224 | 0.80578 | 0.8075 | 0.50121 | 0.50121 | 76 | 76 | B | B | biological fallback assumption | illumina | hiseq_era | unknown | poly_a | unknown | bulk | unknown | unknown | United States | 2016-06-17 | Blastula | Embryo | Whole Organism | All anatomical structures | ||||||||||||||||||||
| 40736 | 40736 | SRR3420308 | SRX1660339 | SRS1360299 | SRP072296 | PRJNA316313 | Codon optimality and mRNA decay in zebrafish and Xenopus | PRJNA316313 | Other | Cellular transitions require dramatic changes in gene expression that are supported by regulated mRNA decay and new transcription. The maternal to zygotic transition is a conserved developmental progression during which thousands of maternal mRNAs are cleared by posttranscriptional mechanisms. Although some maternal mRNAs are targeted for degradation by microRNAs this pathway does not fully explain mRNA clearance. Because the ribosome constitutes the main ribonucleoprotein complex decoding the mRNA we investigated how codon identity and translation affect mRNA stability during development and homeostasis. Using an in vivo selection strategy we show that the codon triplet contains translation dependent regulatory information that influences transcript decay. We find that codon composition shapes maternal mRNA clearance during the maternal to zygotic transition in zebrafish Xenopus mouse and Drosophila and gene expression during homeostasis across human tissues. Codon composition affects both polyadenylation status and translation efficiency. Thus the ribosome interprets two codes within the mRNA the genetic code which specifies the amino acid sequence and a conserved “codon optimality code” that shapes mRNA stability and translation efficiency across vertebrates. | AG00710 2.5h 1 | strain:TUAB|age:2.5h|sex:pooled male and female|tissue:whole embryo|treatment:alpha amanitin|barcode:ATCACG|BioSampleModel:Model organism or animal | AG00710 2.5h 1 | AG00710 2.5h 1 | 1 | 1 | RNA-Seq | TRANSCRIPTOMIC | unspecified | PAIRED | ILLUMINA | Illumina HiSeq 2500 | <SPOT_DESCRIPTOR><SPOT_DECODE_SPEC><SPOT_LENGTH>150</SPOT_LENGTH><READ_SPEC><READ_INDEX>0</READ_INDEX><READ_CLASS>Application Read</READ_CLASS><READ_TYPE>Forward</READ_TYPE><BASE_COORD>1</BASE_COORD></READ_SPEC><READ_SPEC><READ_INDEX>1</READ_INDEX><READ_CLASS>Application Read</READ_CLASS><READ_TYPE>Reverse</READ_TYPE><BASE_COORD>76</BASE_COORD></READ_SPEC></SPOT_DECODE_SPEC></SPOT_DESCRIPTOR> | SRP072296 | AG00710_SEQ0287_R1.fastq.gz AG00710_SEQ0287_R2.fastq.gz | fastq fastq | 2275540168.0 | 14970659.0 | AG00710 run 2 | 0:76 1:76 | A:614429428;C:505827101;G:528906356;T:616697803;N:9679480 | 76 | 76 | 614429428 | 505827101 | 528906356 | 616697803 | 9679480 | SRX1660339 | SRS1360299 | SRA395141 | Yale University|Giraldez Lab | Yale University | 2 | 0.57792 | 0.56382 | 0.07268 | 0.07246 | 0.80261 | 0.80612 | 0.49743 | 0.50296 | 76 | 76 | B | B | biological fallback assumption | illumina | hiseq_era | unknown | poly_a | unknown | bulk | unknown | unknown | United States | 2016-06-17 | Blastula | Embryo | Whole Organism | All anatomical structures | ||||||||||||||||||||
| 41381 | 41381 | SRR4375307 | SRX2226800 | SRS1732678 | SRP090954 | PRJNA345638 | RESA identifies mRNA regulatory sequences with high resolution | PRJNA345638 | Other | Gene expression is regulated extensively at the level of mRNA stability localization and translation. However decoding functional RNA regulatory features remains a limitation to understanding post transcriptional regulation in vivo. Here we developed RNA Element Selection Assay RESA a method that selects RNA elements based on their activity in vivo and uses high throughput sequencing to provide quantitative measurement of their regulatory function with near nucleotide resolution. We implemented RESA to identify sequence elements modulating mRNA stability during zebrafish embryogenesis. RESA provides a sensitive and quantitative measure of microRNA activity in vivo and also identifies novel regulatory sequences. To uncover specific sequence requirements within regulatory elements we developed a bisulfite mediated nucleotide conversion strategy for large scale mutational analysis RESA bisulfite. Finally we used the versatile RESA platform to map candidate protein RNA interactions in vivo RESA CLIP. The RESA platform can be broadly applicable to uncover the regulatory features shaping gene expression and cellular function. | RESA Seq Mut 64c B1 | resa AG01072 | strain:TU/AB|age:2.0|dev stage:64c|sex:pooled male and female|tissue:embryo|treatment:500utr HSO3|molecule:RNA|selection:pA|replicate:1|BioSampleModel:Model organism or animal | RESA Seq Mut 64c B1 | AG01072.1 | AG01072.1 | 1 | RNA-Seq | TRANSCRIPTOMIC | unspecified | PAIRED | ILLUMINA | Illumina HiSeq 2000 | SRP090954 | AG01072.1_R1.fastq.gz AG01072.1_R2.fastq.gz | fastq fastq | 756436968.0 | 4976559.0 | AG01072.1 R2.fastq.gz | 0:76 1:76 | A:277813562;C:101592220;G:103435859;T:273576694;N:18633 | 76 | 76 | 277813562 | 101592220 | 103435859 | 273576694 | 18633 | SRX2226800 | SRS1732678 | SRA482696 | Yale University|Genetics | Yale University | 2 | 0.00777 | 0.00795 | 0.00043 | 0.00056 | 0.99344 | 0.99389 | 0.43869 | 0.43095 | 76 | 76 | T | T | mates < 9% mapping rate | illumina | hiseq_era | unknown | poly_a | unknown | bulk | unknown | unknown | United States | 2016-10-06 | Undetermined | Embryo | Embryo Imprecise | All anatomical structures |
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CREATE TABLE run_metadata("run.accession" VARCHAR, "experiment.accession" VARCHAR, "sample.accession" VARCHAR, "study.accession" VARCHAR, bioproject VARCHAR, "study.title" VARCHAR, "study.alias" VARCHAR, "study.type" VARCHAR, "study.abstract" VARCHAR, "study.attributes" VARCHAR, "study.PMIDs" VARCHAR, "sample.description" VARCHAR, "sample.title" VARCHAR, "sample.alias" VARCHAR, "sample.centername" VARCHAR, "sample.attributes" VARCHAR, "GEOsample.title" VARCHAR, "GEOsample.dataprocessing" VARCHAR, "GEOsample.source" VARCHAR, "GEOsample.treatmentprotocol" VARCHAR, "GEOsample.extractprotocol" VARCHAR, "GEOsample.growthprotocol" VARCHAR, "GEOsample.characteristics" VARCHAR, "GEOsample.accession" VARCHAR, "experiment.title" VARCHAR, "experiment.alias" VARCHAR, "experiment.library_name" VARCHAR, "experiment.design_description" VARCHAR, "experiment.library_construction_protocol" VARCHAR, "experiment.attributes" VARCHAR, "experiment.library_strategy" VARCHAR, "experiment.library_source" VARCHAR, "experiment.library_selection" VARCHAR, "experiment.library_layout" VARCHAR, "experiment.platform" VARCHAR, "experiment.instrument_model" VARCHAR, "experiment.spot_descriptor" VARCHAR, "experiment.study_ref" VARCHAR, "run.title" VARCHAR, "run.attributes" VARCHAR, "run.filename" VARCHAR, "run.semantic_name" VARCHAR, "run.total_bases" DOUBLE, "run.total_spots" DOUBLE, "run.alias" VARCHAR, "run.read_lengths" VARCHAR, "run.base_counts" VARCHAR, "run.r1_length" BIGINT, "run.r2_length" BIGINT, "run.r3_length" BIGINT, "run.r4_length" BIGINT, "run.Acount" BIGINT, "run.Ccount" BIGINT, "run.Gcount" BIGINT, "run.Tcount" BIGINT, "run.Ncount" BIGINT, "run.experiment" VARCHAR, "run.pool_member" VARCHAR, "submission.accession" VARCHAR, "submission.srasource" VARCHAR, "submission.bioprojectsource" VARCHAR, "seqdetective.n_mates" BIGINT, "seqdetective.mapping_rate.mate1" DOUBLE, "seqdetective.mapping_rate.mate2" DOUBLE, "seqdetective.nofeature_rate.mate1" DOUBLE, "seqdetective.nofeature_rate.mate2" DOUBLE, "seqdetective.sparsity.mate1" DOUBLE, "seqdetective.sparsity.mate2" DOUBLE, "seqdetective.pos_strand_rate.mate1" DOUBLE, "seqdetective.pos_strand_rate.mate2" DOUBLE, "seqdetective.readlen.mate1" BIGINT, "seqdetective.readlen.mate2" BIGINT, "seqdetective.judgement.mate1" VARCHAR, "seqdetective.judgement.mate2" VARCHAR, "seqdetective.judgement.reason" VARCHAR, platform_family VARCHAR, instrument_generation VARCHAR, read_bias VARCHAR, selection_class VARCHAR, prep_kit VARCHAR, sc_or_bulk VARCHAR, tech_class VARCHAR, technology VARCHAR, tech_variant VARCHAR, "submission.bioprojectsource.country" VARCHAR, earliest_date DATE, devstage_curation VARCHAR, devstage_curation_coarse VARCHAR, tissue_curation VARCHAR, tissue_curation_coarse VARCHAR);;
CREATE INDEX idx_run_bioproject ON run_metadata(bioproject);;
CREATE INDEX idx_run_run_accession ON run_metadata("run.accession");;