run_metadata
1,616 rows where experiment.library_strategy = "RNA-Seq" and tissue_curation_coarse = "Undetermined"
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 |
|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|
| 14 | 14 | DRR334977 | DRX323973 | DRS217313 | DRP008001 | PRJDB12578 | Allometric scaling of RNA abundance from genes to communities | DRP008001 | Other | The metabolic theory of ecology MTE and growth rate hypothesis GRH help explain the mechanistic basis of size allometry and temperature dependence on growth rate and whole body RNA content in organisms. However testing RNA allometric scaling with next generation sequencing is yet to be done. Here we validated the assumptions of GRH and MTE on messenger RNA and ribosome abundance using mock community metatranscriptome analysis. Our findings highlight that fast growing smaller species harbor greater RNA abundance per mass of tissue compared with species having larger body sizes and slower growth rates. We found that genome size and body size impose significant constraints in interspecific RNA abundance scaling while the assumed temperature dependence appeared to be weak. Lastly allometric scaling integration in community level models may extend the use of metatranscriptomics as a reliable tool for estimating ecosystem processes. | totalRNA metatranscriptomic sequences from mock communities consist of five model species | rRNA mock community at 28 degrees rep 3 | SAMD00422597 | sample name:rRNA mock community 28 degrees rep 3|biological replicate:3|collection date:2021 01 15|dev stage:Adult|technical replicate:3|temp:28|treatment:rRNA | NextSeq 2000 sequencing of SAMD00422597 | DRX323973 | t28 3 tRNA.fastq | 1 | NEBNext Kit for Illumina | RNA-Seq | METATRANSCRIPTOMIC | cDNA | SINGLE | ILLUMINA | NextSeq 2000 | <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> | DRP008001 | NextSeq 2000 sequencing of SAMD00422597 | 3791170746.0 | 37701921.0 | DRR334977 | 0:100.56 1:0 | A:967477491;C:926887571;G:898697642;T:998107868;N:174 | 100 | 0 | 967477491 | 926887571 | 898697642 | 998107868 | 174 | DRX323973 | DRS217313 | DRA013226 | SINICA|Machida Laboratory Biodiversity Research Center, Academia Sinica | SINICA|Machida Laboratory Biodiversity Research Center, Academia Sinica | 1 | 0.31527 | 0.06446 | 0.88844 | 0.62118 | 101 | B | usable mapping rate | illumina | nextseq_v2 | unknown | random_priming | nebnext | bulk | unknown | unknown | Taiwan | 2021-12-23 | Adult | Adult | Undetermined | Undetermined | ||||||||||||||||||||||||
| 15 | 15 | DRR334976 | DRX323972 | DRS217312 | DRP008001 | PRJDB12578 | Allometric scaling of RNA abundance from genes to communities | DRP008001 | Other | The metabolic theory of ecology MTE and growth rate hypothesis GRH help explain the mechanistic basis of size allometry and temperature dependence on growth rate and whole body RNA content in organisms. However testing RNA allometric scaling with next generation sequencing is yet to be done. Here we validated the assumptions of GRH and MTE on messenger RNA and ribosome abundance using mock community metatranscriptome analysis. Our findings highlight that fast growing smaller species harbor greater RNA abundance per mass of tissue compared with species having larger body sizes and slower growth rates. We found that genome size and body size impose significant constraints in interspecific RNA abundance scaling while the assumed temperature dependence appeared to be weak. Lastly allometric scaling integration in community level models may extend the use of metatranscriptomics as a reliable tool for estimating ecosystem processes. | totalRNA metatranscriptomic sequences from mock communities consist of five model species | rRNA mock community at 28 degrees rep 2 | SAMD00422596 | sample name:rRNA mock community 28 degrees rep 2|biological replicate:3|collection date:2021 01 15|dev stage:Adult|technical replicate:2|temp:28|treatment:rRNA | NextSeq 2000 sequencing of SAMD00422596 | DRX323972 | t28 2 tRNA.fastq | 1 | NEBNext Kit for Illumina | RNA-Seq | METATRANSCRIPTOMIC | cDNA | SINGLE | ILLUMINA | NextSeq 2000 | <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> | DRP008001 | NextSeq 2000 sequencing of SAMD00422596 | 2801693695.0 | 27860658.0 | DRR334976 | 0:100.56 1:0 | A:700189496;C:702936549;G:679920984;T:718646067;N:599 | 100 | 0 | 700189496 | 702936549 | 679920984 | 718646067 | 599 | DRX323972 | DRS217312 | DRA013226 | SINICA|Machida Laboratory Biodiversity Research Center, Academia Sinica | SINICA|Machida Laboratory Biodiversity Research Center, Academia Sinica | 1 | 0.43508 | 0.08819 | 0.85859 | 0.69447 | 101 | B | usable mapping rate | illumina | nextseq_v2 | unknown | random_priming | nebnext | bulk | unknown | unknown | Taiwan | 2021-12-23 | Adult | Adult | Undetermined | Undetermined | ||||||||||||||||||||||||
| 16 | 16 | DRR334975 | DRX323971 | DRS217311 | DRP008001 | PRJDB12578 | Allometric scaling of RNA abundance from genes to communities | DRP008001 | Other | The metabolic theory of ecology MTE and growth rate hypothesis GRH help explain the mechanistic basis of size allometry and temperature dependence on growth rate and whole body RNA content in organisms. However testing RNA allometric scaling with next generation sequencing is yet to be done. Here we validated the assumptions of GRH and MTE on messenger RNA and ribosome abundance using mock community metatranscriptome analysis. Our findings highlight that fast growing smaller species harbor greater RNA abundance per mass of tissue compared with species having larger body sizes and slower growth rates. We found that genome size and body size impose significant constraints in interspecific RNA abundance scaling while the assumed temperature dependence appeared to be weak. Lastly allometric scaling integration in community level models may extend the use of metatranscriptomics as a reliable tool for estimating ecosystem processes. | totalRNA metatranscriptomic sequences from mock communities consist of five model species | rRNA mock community at 28 degrees rep 1 | SAMD00422595 | sample name:rRNA mock community 28 degrees rep 1|biological replicate:3|collection date:2021 01 15|dev stage:Adult|technical replicate:1|temp:28|treatment:rRNA | NextSeq 2000 sequencing of SAMD00422595 | DRX323971 | t28 1 tRNA.fastq | 1 | NEBNext Kit for Illumina | RNA-Seq | METATRANSCRIPTOMIC | cDNA | SINGLE | ILLUMINA | NextSeq 2000 | <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> | DRP008001 | NextSeq 2000 sequencing of SAMD00422595 | 3148691934.0 | 31307464.0 | DRR334975 | 0:100.57 1:0 | A:785000734;C:791315678;G:766594599;T:805780465;N:458 | 100 | 0 | 785000734 | 791315678 | 766594599 | 805780465 | 458 | DRX323971 | DRS217311 | DRA013226 | SINICA|Machida Laboratory Biodiversity Research Center, Academia Sinica | SINICA|Machida Laboratory Biodiversity Research Center, Academia Sinica | 1 | 0.37139 | 0.09061 | 0.94065 | 0.74047 | 101 | B | usable mapping rate | illumina | nextseq_v2 | unknown | random_priming | nebnext | bulk | unknown | unknown | Taiwan | 2021-12-23 | Adult | Adult | Undetermined | Undetermined | ||||||||||||||||||||||||
| 17 | 17 | DRR334974 | DRX323970 | DRS217310 | DRP008001 | PRJDB12578 | Allometric scaling of RNA abundance from genes to communities | DRP008001 | Other | The metabolic theory of ecology MTE and growth rate hypothesis GRH help explain the mechanistic basis of size allometry and temperature dependence on growth rate and whole body RNA content in organisms. However testing RNA allometric scaling with next generation sequencing is yet to be done. Here we validated the assumptions of GRH and MTE on messenger RNA and ribosome abundance using mock community metatranscriptome analysis. Our findings highlight that fast growing smaller species harbor greater RNA abundance per mass of tissue compared with species having larger body sizes and slower growth rates. We found that genome size and body size impose significant constraints in interspecific RNA abundance scaling while the assumed temperature dependence appeared to be weak. Lastly allometric scaling integration in community level models may extend the use of metatranscriptomics as a reliable tool for estimating ecosystem processes. | totalRNA metatranscriptomic sequences from mock communities consist of five model species | rRNA mock community at 19 degrees rep 3 | SAMD00422594 | sample name:rRNA mock community 19 degrees rep 3|biological replicate:2|collection date:2021 01 15|dev stage:Adult|technical replicate:3|temp:19|treatment:rRNA | NextSeq 2000 sequencing of SAMD00422594 | DRX323970 | t19 3 tRNA.fastq | 1 | NEBNext Kit for Illumina | RNA-Seq | METATRANSCRIPTOMIC | cDNA | SINGLE | ILLUMINA | NextSeq 2000 | <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> | DRP008001 | NextSeq 2000 sequencing of SAMD00422594 | 2856186273.0 | 28400524.0 | DRR334974 | 0:100.57 1:0 | A:695685787;C:733754277;G:715270279;T:711475544;N:386 | 100 | 0 | 695685787 | 733754277 | 715270279 | 711475544 | 386 | DRX323970 | DRS217310 | DRA013226 | SINICA|Machida Laboratory Biodiversity Research Center, Academia Sinica | SINICA|Machida Laboratory Biodiversity Research Center, Academia Sinica | 1 | 0.48152 | 0.10933 | 0.87105 | 0.7287 | 101 | B | usable mapping rate | illumina | nextseq_v2 | unknown | random_priming | nebnext | bulk | unknown | unknown | Taiwan | 2021-12-23 | Adult | Adult | Undetermined | Undetermined | ||||||||||||||||||||||||
| 18 | 18 | DRR334973 | DRX323969 | DRS217309 | DRP008001 | PRJDB12578 | Allometric scaling of RNA abundance from genes to communities | DRP008001 | Other | The metabolic theory of ecology MTE and growth rate hypothesis GRH help explain the mechanistic basis of size allometry and temperature dependence on growth rate and whole body RNA content in organisms. However testing RNA allometric scaling with next generation sequencing is yet to be done. Here we validated the assumptions of GRH and MTE on messenger RNA and ribosome abundance using mock community metatranscriptome analysis. Our findings highlight that fast growing smaller species harbor greater RNA abundance per mass of tissue compared with species having larger body sizes and slower growth rates. We found that genome size and body size impose significant constraints in interspecific RNA abundance scaling while the assumed temperature dependence appeared to be weak. Lastly allometric scaling integration in community level models may extend the use of metatranscriptomics as a reliable tool for estimating ecosystem processes. | totalRNA metatranscriptomic sequences from mock communities consist of five model species | rRNA mock community at 19 degrees rep 2 | SAMD00422593 | sample name:rRNA mock community 19 degrees rep 2|biological replicate:2|collection date:2021 01 15|dev stage:Adult|technical replicate:2|temp:19|treatment:rRNA | NextSeq 2000 sequencing of SAMD00422593 | DRX323969 | t19 2 tRNA.fastq | 1 | NEBNext Kit for Illumina | RNA-Seq | METATRANSCRIPTOMIC | cDNA | SINGLE | ILLUMINA | NextSeq 2000 | <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> | DRP008001 | NextSeq 2000 sequencing of SAMD00422593 | 3199929804.0 | 31816971.0 | DRR334973 | 0:100.57 1:0 | A:777149590;C:825478743;G:804835148;T:792466124;N:199 | 100 | 0 | 777149590 | 825478743 | 804835148 | 792466124 | 199 | DRX323969 | DRS217309 | DRA013226 | SINICA|Machida Laboratory Biodiversity Research Center, Academia Sinica | SINICA|Machida Laboratory Biodiversity Research Center, Academia Sinica | 1 | 0.4418 | 0.10282 | 0.89706 | 0.74667 | 101 | B | usable mapping rate | illumina | nextseq_v2 | unknown | random_priming | nebnext | bulk | unknown | unknown | Taiwan | 2021-12-23 | Adult | Adult | Undetermined | Undetermined | ||||||||||||||||||||||||
| 19 | 19 | DRR334972 | DRX323968 | DRS217308 | DRP008001 | PRJDB12578 | Allometric scaling of RNA abundance from genes to communities | DRP008001 | Other | The metabolic theory of ecology MTE and growth rate hypothesis GRH help explain the mechanistic basis of size allometry and temperature dependence on growth rate and whole body RNA content in organisms. However testing RNA allometric scaling with next generation sequencing is yet to be done. Here we validated the assumptions of GRH and MTE on messenger RNA and ribosome abundance using mock community metatranscriptome analysis. Our findings highlight that fast growing smaller species harbor greater RNA abundance per mass of tissue compared with species having larger body sizes and slower growth rates. We found that genome size and body size impose significant constraints in interspecific RNA abundance scaling while the assumed temperature dependence appeared to be weak. Lastly allometric scaling integration in community level models may extend the use of metatranscriptomics as a reliable tool for estimating ecosystem processes. | totalRNA metatranscriptomic sequences from mock communities consist of five model species | rRNA mock community at 19 degrees rep 1 | SAMD00422592 | sample name:rRNA mock community 19 degrees rep 1|biological replicate:2|collection date:2021 01 15|dev stage:Adult|technical replicate:1|temp:19|treatment:rRNA | NextSeq 2000 sequencing of SAMD00422592 | DRX323968 | t19 1 tRNA.fastq | 1 | NEBNext Kit for Illumina | RNA-Seq | METATRANSCRIPTOMIC | cDNA | SINGLE | ILLUMINA | NextSeq 2000 | <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> | DRP008001 | NextSeq 2000 sequencing of SAMD00422592 | 3658675391.0 | 36374718.0 | DRR334972 | 0:100.58 1:0 | A:879342063;C:954687406;G:929537615;T:895107890;N:417 | 100 | 0 | 879342063 | 954687406 | 929537615 | 895107890 | 417 | DRX323968 | DRS217308 | DRA013226 | SINICA|Machida Laboratory Biodiversity Research Center, Academia Sinica | SINICA|Machida Laboratory Biodiversity Research Center, Academia Sinica | 1 | 0.49439 | 0.11691 | 0.88239 | 0.73925 | 101 | B | usable mapping rate | illumina | nextseq_v2 | unknown | random_priming | nebnext | bulk | unknown | unknown | Taiwan | 2021-12-23 | Adult | Adult | Undetermined | Undetermined | ||||||||||||||||||||||||
| 20 | 20 | DRR334971 | DRX323967 | DRS217307 | DRP008001 | PRJDB12578 | Allometric scaling of RNA abundance from genes to communities | DRP008001 | Other | The metabolic theory of ecology MTE and growth rate hypothesis GRH help explain the mechanistic basis of size allometry and temperature dependence on growth rate and whole body RNA content in organisms. However testing RNA allometric scaling with next generation sequencing is yet to be done. Here we validated the assumptions of GRH and MTE on messenger RNA and ribosome abundance using mock community metatranscriptome analysis. Our findings highlight that fast growing smaller species harbor greater RNA abundance per mass of tissue compared with species having larger body sizes and slower growth rates. We found that genome size and body size impose significant constraints in interspecific RNA abundance scaling while the assumed temperature dependence appeared to be weak. Lastly allometric scaling integration in community level models may extend the use of metatranscriptomics as a reliable tool for estimating ecosystem processes. | totalRNA metatranscriptomic sequences from mock communities consist of five model species | rRNA mock community at 10 degrees rep 3 | SAMD00422591 | sample name:rRNA mock community 10 degrees rep 3|biological replicate:1|collection date:2021 01 15|dev stage:Adult|technical replicate:3|temp:10|treatment:rRNA | NextSeq 2000 sequencing of SAMD00422591 | DRX323967 | t10 3 tRNA.fastq | 1 | NEBNext Kit for Illumina | RNA-Seq | METATRANSCRIPTOMIC | cDNA | SINGLE | ILLUMINA | NextSeq 2000 | <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> | DRP008001 | NextSeq 2000 sequencing of SAMD00422591 | 3017524690.0 | 30006334.0 | DRR334971 | 0:100.56 1:0 | A:771967717;C:738814269;G:712866126;T:793876235;N:343 | 100 | 0 | 771967717 | 738814269 | 712866126 | 793876235 | 343 | DRX323967 | DRS217307 | DRA013226 | SINICA|Machida Laboratory Biodiversity Research Center, Academia Sinica | SINICA|Machida Laboratory Biodiversity Research Center, Academia Sinica | 1 | 0.33157 | 0.07363 | 0.9093 | 0.73422 | 100 | B | usable mapping rate | illumina | nextseq_v2 | unknown | random_priming | nebnext | bulk | unknown | unknown | Taiwan | 2021-12-23 | Adult | Adult | Undetermined | Undetermined | ||||||||||||||||||||||||
| 21 | 21 | DRR334970 | DRX323966 | DRS217306 | DRP008001 | PRJDB12578 | Allometric scaling of RNA abundance from genes to communities | DRP008001 | Other | The metabolic theory of ecology MTE and growth rate hypothesis GRH help explain the mechanistic basis of size allometry and temperature dependence on growth rate and whole body RNA content in organisms. However testing RNA allometric scaling with next generation sequencing is yet to be done. Here we validated the assumptions of GRH and MTE on messenger RNA and ribosome abundance using mock community metatranscriptome analysis. Our findings highlight that fast growing smaller species harbor greater RNA abundance per mass of tissue compared with species having larger body sizes and slower growth rates. We found that genome size and body size impose significant constraints in interspecific RNA abundance scaling while the assumed temperature dependence appeared to be weak. Lastly allometric scaling integration in community level models may extend the use of metatranscriptomics as a reliable tool for estimating ecosystem processes. | totalRNA metatranscriptomic sequences from mock communities consist of five model species | rRNA mock community at 10 degrees rep 2 | SAMD00422590 | sample name:rRNA mock community 10 degrees rep 2|biological replicate:1|collection date:2021 01 15|dev stage:Adult|technical replicate:2|temp:10|treatment:rRNA | NextSeq 2000 sequencing of SAMD00422590 | DRX323966 | t10 2 tRNA.fastq | 1 | NEBNext Kit for Illumina | RNA-Seq | METATRANSCRIPTOMIC | cDNA | SINGLE | ILLUMINA | NextSeq 2000 | <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> | DRP008001 | NextSeq 2000 sequencing of SAMD00422590 | 3115915184.0 | 30982336.0 | DRR334970 | 0:100.57 1:0 | A:765727966;C:794741415;G:771082024;T:784363609;N:170 | 100 | 0 | 765727966 | 794741415 | 771082024 | 784363609 | 170 | DRX323966 | DRS217306 | DRA013226 | SINICA|Machida Laboratory Biodiversity Research Center, Academia Sinica | SINICA|Machida Laboratory Biodiversity Research Center, Academia Sinica | 1 | 0.45458 | 0.10504 | 0.89357 | 0.749 | 100 | B | usable mapping rate | illumina | nextseq_v2 | unknown | random_priming | nebnext | bulk | unknown | unknown | Taiwan | 2021-12-23 | Adult | Adult | Undetermined | Undetermined | ||||||||||||||||||||||||
| 22 | 22 | DRR334969 | DRX323965 | DRS217305 | DRP008001 | PRJDB12578 | Allometric scaling of RNA abundance from genes to communities | DRP008001 | Other | The metabolic theory of ecology MTE and growth rate hypothesis GRH help explain the mechanistic basis of size allometry and temperature dependence on growth rate and whole body RNA content in organisms. However testing RNA allometric scaling with next generation sequencing is yet to be done. Here we validated the assumptions of GRH and MTE on messenger RNA and ribosome abundance using mock community metatranscriptome analysis. Our findings highlight that fast growing smaller species harbor greater RNA abundance per mass of tissue compared with species having larger body sizes and slower growth rates. We found that genome size and body size impose significant constraints in interspecific RNA abundance scaling while the assumed temperature dependence appeared to be weak. Lastly allometric scaling integration in community level models may extend the use of metatranscriptomics as a reliable tool for estimating ecosystem processes. | totalRNA metatranscriptomic sequences from mock communities consist of five model species | rRNA mock community at 10 degrees rep 1 | SAMD00422589 | sample name:rRNA mock community 10 degrees rep 1|biological replicate:1|collection date:2021 01 15|dev stage:Adult|technical replicate:1|temp:10|treatment:rRNA | NextSeq 2000 sequencing of SAMD00422589 | DRX323965 | t10 1 tRNA.fastq | 1 | NEBNext Kit for Illumina | RNA-Seq | METATRANSCRIPTOMIC | cDNA | SINGLE | ILLUMINA | NextSeq 2000 | <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> | DRP008001 | NextSeq 2000 sequencing of SAMD00422589 | 3206657309.0 | 31883532.0 | DRR334969 | 0:100.57 1:0 | A:792874386;C:814578518;G:787469614;T:811734581;N:210 | 100 | 0 | 792874386 | 814578518 | 787469614 | 811734581 | 210 | DRX323965 | DRS217305 | DRA013226 | SINICA|Machida Laboratory Biodiversity Research Center, Academia Sinica | SINICA|Machida Laboratory Biodiversity Research Center, Academia Sinica | 1 | 0.40156 | 0.09664 | 0.92898 | 0.74114 | 101 | B | usable mapping rate | illumina | nextseq_v2 | unknown | random_priming | nebnext | bulk | unknown | unknown | Taiwan | 2021-12-23 | Adult | Adult | Undetermined | Undetermined | ||||||||||||||||||||||||
| 23 | 23 | DRR334968 | DRX323964 | DRS217304 | DRP008001 | PRJDB12578 | Allometric scaling of RNA abundance from genes to communities | DRP008001 | Other | The metabolic theory of ecology MTE and growth rate hypothesis GRH help explain the mechanistic basis of size allometry and temperature dependence on growth rate and whole body RNA content in organisms. However testing RNA allometric scaling with next generation sequencing is yet to be done. Here we validated the assumptions of GRH and MTE on messenger RNA and ribosome abundance using mock community metatranscriptome analysis. Our findings highlight that fast growing smaller species harbor greater RNA abundance per mass of tissue compared with species having larger body sizes and slower growth rates. We found that genome size and body size impose significant constraints in interspecific RNA abundance scaling while the assumed temperature dependence appeared to be weak. Lastly allometric scaling integration in community level models may extend the use of metatranscriptomics as a reliable tool for estimating ecosystem processes. | mRNA metatranscriptomic sequences from mock communities consist of five model species | mRNA mock community at 28 degrees rep 3 | SAMD00422588 | sample name:mRNA mock community 28 degrees rep 3|biological replicate:3|collection date:2021 01 15|dev stage:Adult|technical replicate:3|temp:28|treatment:mRNA | NextSeq 2000 sequencing of SAMD00422588 | DRX323964 | m28 3 mRNA.fastq | 1 | NEBNext Kit for Illumina | RNA-Seq | METATRANSCRIPTOMIC | PolyA | SINGLE | ILLUMINA | NextSeq 2000 | <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> | DRP008001 | NextSeq 2000 sequencing of SAMD00422588 | 3157078356.0 | 31416275.0 | DRR334968 | 0:100.49 1:0 | A:816263259;C:752748024;G:759884392;T:828182261;N:420 | 100 | 0 | 816263259 | 752748024 | 759884392 | 828182261 | 420 | DRX323964 | DRS217304 | DRA013226 | SINICA|Machida Laboratory Biodiversity Research Center, Academia Sinica | SINICA|Machida Laboratory Biodiversity Research Center, Academia Sinica | 1 | 0.64888 | 0.01832 | 0.73996 | 0.46811 | 99 | B | usable mapping rate | illumina | nextseq_v2 | unknown | poly_a | nebnext | bulk | unknown | unknown | Taiwan | 2021-12-23 | Adult | Adult | Undetermined | Undetermined | ||||||||||||||||||||||||
| 24 | 24 | DRR334967 | DRX323963 | DRS217303 | DRP008001 | PRJDB12578 | Allometric scaling of RNA abundance from genes to communities | DRP008001 | Other | The metabolic theory of ecology MTE and growth rate hypothesis GRH help explain the mechanistic basis of size allometry and temperature dependence on growth rate and whole body RNA content in organisms. However testing RNA allometric scaling with next generation sequencing is yet to be done. Here we validated the assumptions of GRH and MTE on messenger RNA and ribosome abundance using mock community metatranscriptome analysis. Our findings highlight that fast growing smaller species harbor greater RNA abundance per mass of tissue compared with species having larger body sizes and slower growth rates. We found that genome size and body size impose significant constraints in interspecific RNA abundance scaling while the assumed temperature dependence appeared to be weak. Lastly allometric scaling integration in community level models may extend the use of metatranscriptomics as a reliable tool for estimating ecosystem processes. | mRNA metatranscriptomic sequences from mock communities consist of five model species | mRNA mock community at 28 degrees rep 2 | SAMD00422587 | sample name:mRNA mock community 28 degrees rep 2|biological replicate:3|collection date:2021 01 15|dev stage:Adult|technical replicate:2|temp:28|treatment:mRNA | NextSeq 2000 sequencing of SAMD00422587 | DRX323963 | m28 2 mRNA.fastq | 1 | NEBNext Kit for Illumina | RNA-Seq | METATRANSCRIPTOMIC | PolyA | SINGLE | ILLUMINA | NextSeq 2000 | <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> | DRP008001 | NextSeq 2000 sequencing of SAMD00422587 | 3155807651.0 | 31404635.0 | DRR334967 | 0:100.49 1:0 | A:819014350;C:749873295;G:756284406;T:830635394;N:206 | 100 | 0 | 819014350 | 749873295 | 756284406 | 830635394 | 206 | DRX323963 | DRS217303 | DRA013226 | SINICA|Machida Laboratory Biodiversity Research Center, Academia Sinica | SINICA|Machida Laboratory Biodiversity Research Center, Academia Sinica | 1 | 0.76742 | 0.02238 | 0.72427 | 0.47376 | 101 | B | usable mapping rate | illumina | nextseq_v2 | unknown | poly_a | nebnext | bulk | unknown | unknown | Taiwan | 2021-12-23 | Adult | Adult | Undetermined | Undetermined | ||||||||||||||||||||||||
| 25 | 25 | DRR334966 | DRX323962 | DRS217302 | DRP008001 | PRJDB12578 | Allometric scaling of RNA abundance from genes to communities | DRP008001 | Other | The metabolic theory of ecology MTE and growth rate hypothesis GRH help explain the mechanistic basis of size allometry and temperature dependence on growth rate and whole body RNA content in organisms. However testing RNA allometric scaling with next generation sequencing is yet to be done. Here we validated the assumptions of GRH and MTE on messenger RNA and ribosome abundance using mock community metatranscriptome analysis. Our findings highlight that fast growing smaller species harbor greater RNA abundance per mass of tissue compared with species having larger body sizes and slower growth rates. We found that genome size and body size impose significant constraints in interspecific RNA abundance scaling while the assumed temperature dependence appeared to be weak. Lastly allometric scaling integration in community level models may extend the use of metatranscriptomics as a reliable tool for estimating ecosystem processes. | mRNA metatranscriptomic sequences from mock communities consist of five model species | mRNA mock community at 28 degrees rep 1 | SAMD00422586 | sample name:mRNA mock community 28 degrees rep 1|biological replicate:3|collection date:2021 01 15|dev stage:Adult|technical replicate:1|temp:28|treatment:mRNA | NextSeq 2000 sequencing of SAMD00422586 | DRX323962 | m28 1 mRNA.fastq | 1 | NEBNext Kit for Illumina | RNA-Seq | METATRANSCRIPTOMIC | PolyA | SINGLE | ILLUMINA | NextSeq 2000 | <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> | DRP008001 | NextSeq 2000 sequencing of SAMD00422586 | 2589772286.0 | 25765782.0 | DRR334966 | 0:100.51 1:0 | A:679223577;C:610675892;G:617869465;T:682003195;N:157 | 100 | 0 | 679223577 | 610675892 | 617869465 | 682003195 | 157 | DRX323962 | DRS217302 | DRA013226 | SINICA|Machida Laboratory Biodiversity Research Center, Academia Sinica | SINICA|Machida Laboratory Biodiversity Research Center, Academia Sinica | 1 | 0.42984 | 0.03367 | 0.73555 | 0.49223 | 100 | B | usable mapping rate | illumina | nextseq_v2 | unknown | poly_a | nebnext | bulk | unknown | unknown | Taiwan | 2021-12-23 | Adult | Adult | Undetermined | Undetermined | ||||||||||||||||||||||||
| 26 | 26 | DRR334965 | DRX323961 | DRS217318 | DRP008001 | PRJDB12578 | Allometric scaling of RNA abundance from genes to communities | DRP008001 | Other | The metabolic theory of ecology MTE and growth rate hypothesis GRH help explain the mechanistic basis of size allometry and temperature dependence on growth rate and whole body RNA content in organisms. However testing RNA allometric scaling with next generation sequencing is yet to be done. Here we validated the assumptions of GRH and MTE on messenger RNA and ribosome abundance using mock community metatranscriptome analysis. Our findings highlight that fast growing smaller species harbor greater RNA abundance per mass of tissue compared with species having larger body sizes and slower growth rates. We found that genome size and body size impose significant constraints in interspecific RNA abundance scaling while the assumed temperature dependence appeared to be weak. Lastly allometric scaling integration in community level models may extend the use of metatranscriptomics as a reliable tool for estimating ecosystem processes. | mRNA metatranscriptomic sequences from mock communities consist of five model species | mRNA mock community at 19 degrees rep 3 | SAMD00422602 | sample name:mRNA mock community 19 degrees rep 3|biological replicate:2|collection date:2021 01 15|dev stage:Adult|technical replicate:3|temp:19|treatment:mRNA | NextSeq 2000 sequencing of SAMD00422602 | DRX323961 | m19 3 mRNA.fastq | 1 | NEBNext Kit for Illumina | RNA-Seq | METATRANSCRIPTOMIC | PolyA | SINGLE | ILLUMINA | NextSeq 2000 | <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> | DRP008001 | NextSeq 2000 sequencing of SAMD00422602 | 3124746628.0 | 31095367.0 | DRR334965 | 0:100.49 1:0 | A:821891547;C:734660854;G:739230475;T:828963220;N:532 | 100 | 0 | 821891547 | 734660854 | 739230475 | 828963220 | 532 | DRX323961 | DRS217318 | DRA013226 | SINICA|Machida Laboratory Biodiversity Research Center, Academia Sinica | SINICA|Machida Laboratory Biodiversity Research Center, Academia Sinica | 1 | 0.72881 | 0.03264 | 0.69449 | 0.47416 | 99 | B | usable mapping rate | illumina | nextseq_v2 | unknown | poly_a | nebnext | bulk | unknown | unknown | Taiwan | 2021-12-23 | Adult | Adult | Undetermined | Undetermined | ||||||||||||||||||||||||
| 27 | 27 | DRR334964 | DRX323960 | DRS217317 | DRP008001 | PRJDB12578 | Allometric scaling of RNA abundance from genes to communities | DRP008001 | Other | The metabolic theory of ecology MTE and growth rate hypothesis GRH help explain the mechanistic basis of size allometry and temperature dependence on growth rate and whole body RNA content in organisms. However testing RNA allometric scaling with next generation sequencing is yet to be done. Here we validated the assumptions of GRH and MTE on messenger RNA and ribosome abundance using mock community metatranscriptome analysis. Our findings highlight that fast growing smaller species harbor greater RNA abundance per mass of tissue compared with species having larger body sizes and slower growth rates. We found that genome size and body size impose significant constraints in interspecific RNA abundance scaling while the assumed temperature dependence appeared to be weak. Lastly allometric scaling integration in community level models may extend the use of metatranscriptomics as a reliable tool for estimating ecosystem processes. | mRNA metatranscriptomic sequences from mock communities consist of five model species | mRNA mock community at 19 degrees rep 2 | SAMD00422601 | sample name:mRNA mock community 19 degrees rep 2|biological replicate:2|collection date:2021 01 15|dev stage:Adult|technical replicate:2|temp:19|treatment:mRNA | NextSeq 2000 sequencing of SAMD00422601 | DRX323960 | m19 2 mRNA.fastq | 1 | NEBNext Kit for Illumina | RNA-Seq | METATRANSCRIPTOMIC | PolyA | SINGLE | ILLUMINA | NextSeq 2000 | <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> | DRP008001 | NextSeq 2000 sequencing of SAMD00422601 | 3171661466.0 | 31561473.0 | DRR334964 | 0:100.49 1:0 | A:836793307;C:742872021;G:750053514;T:841942389;N:235 | 100 | 0 | 836793307 | 742872021 | 750053514 | 841942389 | 235 | DRX323960 | DRS217317 | DRA013226 | SINICA|Machida Laboratory Biodiversity Research Center, Academia Sinica | SINICA|Machida Laboratory Biodiversity Research Center, Academia Sinica | 1 | 0.63153 | 0.03639 | 0.69027 | 0.48494 | 101 | B | usable mapping rate | illumina | nextseq_v2 | unknown | poly_a | nebnext | bulk | unknown | unknown | Taiwan | 2021-12-23 | Adult | Adult | Undetermined | Undetermined | ||||||||||||||||||||||||
| 28 | 28 | DRR334963 | DRX323959 | DRS217316 | DRP008001 | PRJDB12578 | Allometric scaling of RNA abundance from genes to communities | DRP008001 | Other | The metabolic theory of ecology MTE and growth rate hypothesis GRH help explain the mechanistic basis of size allometry and temperature dependence on growth rate and whole body RNA content in organisms. However testing RNA allometric scaling with next generation sequencing is yet to be done. Here we validated the assumptions of GRH and MTE on messenger RNA and ribosome abundance using mock community metatranscriptome analysis. Our findings highlight that fast growing smaller species harbor greater RNA abundance per mass of tissue compared with species having larger body sizes and slower growth rates. We found that genome size and body size impose significant constraints in interspecific RNA abundance scaling while the assumed temperature dependence appeared to be weak. Lastly allometric scaling integration in community level models may extend the use of metatranscriptomics as a reliable tool for estimating ecosystem processes. | mRNA metatranscriptomic sequences from mock communities consist of five model species | mRNA mock community at 19 degrees rep 1 | SAMD00422600 | sample name:mRNA mock community 19 degrees rep 1|biological replicate:2|collection date:2021 01 15|dev stage:Adult|technical replicate:1|temp:19|treatment:mRNA | NextSeq 2000 sequencing of SAMD00422600 | DRX323959 | m19 1 mRNA.fastq | 1 | NEBNext Kit for Illumina | RNA-Seq | METATRANSCRIPTOMIC | PolyA | SINGLE | ILLUMINA | NextSeq 2000 | <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> | DRP008001 | NextSeq 2000 sequencing of SAMD00422600 | 2916453082.0 | 29023768.0 | DRR334963 | 0:100.48 1:0 | A:761416880;C:692014182;G:696272089;T:766749729;N:202 | 100 | 0 | 761416880 | 692014182 | 696272089 | 766749729 | 202 | DRX323959 | DRS217316 | DRA013226 | SINICA|Machida Laboratory Biodiversity Research Center, Academia Sinica | SINICA|Machida Laboratory Biodiversity Research Center, Academia Sinica | 1 | 0.71651 | 0.03406 | 0.68696 | 0.47496 | 101 | B | usable mapping rate | illumina | nextseq_v2 | unknown | poly_a | nebnext | bulk | unknown | unknown | Taiwan | 2021-12-23 | Adult | Adult | Undetermined | Undetermined | ||||||||||||||||||||||||
| 29 | 29 | DRR334962 | DRX323958 | DRS217315 | DRP008001 | PRJDB12578 | Allometric scaling of RNA abundance from genes to communities | DRP008001 | Other | The metabolic theory of ecology MTE and growth rate hypothesis GRH help explain the mechanistic basis of size allometry and temperature dependence on growth rate and whole body RNA content in organisms. However testing RNA allometric scaling with next generation sequencing is yet to be done. Here we validated the assumptions of GRH and MTE on messenger RNA and ribosome abundance using mock community metatranscriptome analysis. Our findings highlight that fast growing smaller species harbor greater RNA abundance per mass of tissue compared with species having larger body sizes and slower growth rates. We found that genome size and body size impose significant constraints in interspecific RNA abundance scaling while the assumed temperature dependence appeared to be weak. Lastly allometric scaling integration in community level models may extend the use of metatranscriptomics as a reliable tool for estimating ecosystem processes. | mRNA metatranscriptomic sequences from mock communities consist of five model species | mRNA mock community at 10 degrees rep 3 | SAMD00422599 | sample name:mRNA mock community 10 degrees rep 3|biological replicate:1|collection date:2021 01 15|dev stage:Adult|technical replicate:3|temp:10|treatment:mRNA | NextSeq 2000 sequencing of SAMD00422599 | DRX323958 | m10 3 mRNA.fastq | 1 | NEBNext Kit for Illumina | RNA-Seq | METATRANSCRIPTOMIC | PolyA | SINGLE | ILLUMINA | NextSeq 2000 | <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> | DRP008001 | NextSeq 2000 sequencing of SAMD00422599 | 2600103192.0 | 25872833.0 | DRR334962 | 0:100.50 1:0 | A:668944597;C:625686885;G:631010166;T:674461210;N:334 | 100 | 0 | 668944597 | 625686885 | 631010166 | 674461210 | 334 | DRX323958 | DRS217315 | DRA013226 | SINICA|Machida Laboratory Biodiversity Research Center, Academia Sinica | SINICA|Machida Laboratory Biodiversity Research Center, Academia Sinica | 1 | 0.57077 | 0.02949 | 0.71918 | 0.47633 | 101 | B | usable mapping rate | illumina | nextseq_v2 | unknown | poly_a | nebnext | bulk | unknown | unknown | Taiwan | 2021-12-23 | Adult | Adult | Undetermined | Undetermined | ||||||||||||||||||||||||
| 30 | 30 | DRR334961 | DRX323957 | DRS217314 | DRP008001 | PRJDB12578 | Allometric scaling of RNA abundance from genes to communities | DRP008001 | Other | The metabolic theory of ecology MTE and growth rate hypothesis GRH help explain the mechanistic basis of size allometry and temperature dependence on growth rate and whole body RNA content in organisms. However testing RNA allometric scaling with next generation sequencing is yet to be done. Here we validated the assumptions of GRH and MTE on messenger RNA and ribosome abundance using mock community metatranscriptome analysis. Our findings highlight that fast growing smaller species harbor greater RNA abundance per mass of tissue compared with species having larger body sizes and slower growth rates. We found that genome size and body size impose significant constraints in interspecific RNA abundance scaling while the assumed temperature dependence appeared to be weak. Lastly allometric scaling integration in community level models may extend the use of metatranscriptomics as a reliable tool for estimating ecosystem processes. | mRNA metatranscriptomic sequences from mock communities consist of five model species | mRNA mock community at 10 degrees rep 2 | SAMD00422598 | sample name:mRNA mock community 10 degrees rep 2|biological replicate:1|collection date:2021 01 15|dev stage:Adult|technical replicate:2|temp:10|treatment:mRNA | NextSeq 2000 sequencing of SAMD00422598 | DRX323957 | m10 2 mRNA.fastq | 1 | NEBNext Kit for Illumina | RNA-Seq | METATRANSCRIPTOMIC | PolyA | SINGLE | ILLUMINA | NextSeq 2000 | <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> | DRP008001 | NextSeq 2000 sequencing of SAMD00422598 | 2608660833.0 | 25958804.0 | DRR334961 | 0:100.49 1:0 | A:683370128;C:615324906;G:621209484;T:688756167;N:148 | 100 | 0 | 683370128 | 615324906 | 621209484 | 688756167 | 148 | DRX323957 | DRS217314 | DRA013226 | SINICA|Machida Laboratory Biodiversity Research Center, Academia Sinica | SINICA|Machida Laboratory Biodiversity Research Center, Academia Sinica | 1 | 0.63764 | 0.04316 | 0.69656 | 0.48579 | 101 | B | usable mapping rate | illumina | nextseq_v2 | unknown | poly_a | nebnext | bulk | unknown | unknown | Taiwan | 2021-12-23 | Adult | Adult | Undetermined | Undetermined | ||||||||||||||||||||||||
| 31 | 31 | DRR334960 | DRX323956 | DRS217301 | DRP008001 | PRJDB12578 | Allometric scaling of RNA abundance from genes to communities | DRP008001 | Other | The metabolic theory of ecology MTE and growth rate hypothesis GRH help explain the mechanistic basis of size allometry and temperature dependence on growth rate and whole body RNA content in organisms. However testing RNA allometric scaling with next generation sequencing is yet to be done. Here we validated the assumptions of GRH and MTE on messenger RNA and ribosome abundance using mock community metatranscriptome analysis. Our findings highlight that fast growing smaller species harbor greater RNA abundance per mass of tissue compared with species having larger body sizes and slower growth rates. We found that genome size and body size impose significant constraints in interspecific RNA abundance scaling while the assumed temperature dependence appeared to be weak. Lastly allometric scaling integration in community level models may extend the use of metatranscriptomics as a reliable tool for estimating ecosystem processes. | mRNA metatranscriptomic sequences from mock communities consist of five model species | mRNA mock community at 10 degrees rep 1 | SAMD00422585 | sample name:mRNA mock community 10 degrees rep 1|biological replicate:1|collection date:2021 01 15|dev stage:Adult|technical replicate:1|temp:10|treatment:mRNA | NextSeq 2000 sequencing of SAMD00422585 | DRX323956 | m10 1 mRNA.fastq | 1 | NEBNext Kit for Illumina | RNA-Seq | METATRANSCRIPTOMIC | PolyA | SINGLE | ILLUMINA | NextSeq 2000 | <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> | DRP008001 | NextSeq 2000 sequencing of SAMD00422585 | 2879915507.0 | 28651533.0 | DRR334960 | 0:100.52 1:0 | A:761972464;C:675761096;G:678969165;T:763212637;N:145 | 100 | 0 | 761972464 | 675761096 | 678969165 | 763212637 | 145 | DRX323956 | DRS217301 | DRA013226 | SINICA|Machida Laboratory Biodiversity Research Center, Academia Sinica | SINICA|Machida Laboratory Biodiversity Research Center, Academia Sinica | 1 | 0.47851 | 0.05671 | 0.72622 | 0.49269 | 101 | B | usable mapping rate | illumina | nextseq_v2 | unknown | poly_a | nebnext | bulk | unknown | unknown | Taiwan | 2021-12-23 | Adult | Adult | Undetermined | Undetermined | ||||||||||||||||||||||||
| 41 | 41 | DRR408245 | DRX393851 | DRS407176 | DRP012042 | PRJDB14275 | Zebrafish EN/ENCDC RNA seq | DRP012042 | Transcriptome Analysis | A project to find differential expressed genes between enteric neurons ENs and enteric neural crest derived cells ENCDCs in larval zebrafish gut. We dissected guts of transgenic line TgSAGFFLF217B; uas:gfp for ENs and Tgsox10:cre; EF1alpha:loxP gfp loxP dsred for ENCDCs and isolated GFP+ ENs and dsRed+ ENCDCs. Three duplicates for each of ENs and ENCDCs are prepared. Libraries for NGS are prepared using SMART Seq V4 Ultra Low Input RNA Kit. | zebrafish 5 day GFP positive enteric neurons replicate 3 | zebrafish EN replicate 3 | SAMD00529465 | sample name:zebrafish EN replicate 3|biological replicate:eneteric neurons 3|strain:TgSAGFFLF219B; uas:gfp | NextSeq 550 paired end sequencing of SAMD00529465 | DRX393851 | 190326ENvsNC N703 5day;EntericNeuron;rep3 | 1 | 1 | RNA-Seq | TRANSCRIPTOMIC | RANDOM | PAIRED | ILLUMINA | NextSeq 550 | <SPOT_DESCRIPTOR><SPOT_DECODE_SPEC><SPOT_LENGTH>160</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>81</BASE_COORD></READ_SPEC></SPOT_DECODE_SPEC></SPOT_DESCRIPTOR> | DRP012042 | NextSeq 550 paired end sequencing of SAMD00529465 | 3729799291.0 | 23985772.0 | DRR408245 | 0:77.75 1:77.75 | A:978752781;C:879988139;G:903976580;T:962122970;N:4958821 | 77 | 77 | 978752781 | 879988139 | 903976580 | 962122970 | 4958821 | DRX393851 | DRS407176 | DRA014886 | NIBB|NIBB core research facilities, National Institute for Basic Biology | University of Hyogo | B | B | biological fallback assumption | illumina | nextseq | unknown | random_priming | unknown | bulk | unknown | unknown | Japan | 2024-09-22 | Undetermined | Larval | Undetermined | Undetermined | |||||||||||||||||||||||||||||
| 42 | 42 | DRR408244 | DRX393850 | DRS407175 | DRP012042 | PRJDB14275 | Zebrafish EN/ENCDC RNA seq | DRP012042 | Transcriptome Analysis | A project to find differential expressed genes between enteric neurons ENs and enteric neural crest derived cells ENCDCs in larval zebrafish gut. We dissected guts of transgenic line TgSAGFFLF217B; uas:gfp for ENs and Tgsox10:cre; EF1alpha:loxP gfp loxP dsred for ENCDCs and isolated GFP+ ENs and dsRed+ ENCDCs. Three duplicates for each of ENs and ENCDCs are prepared. Libraries for NGS are prepared using SMART Seq V4 Ultra Low Input RNA Kit. | zebrafish 5 day GFP positive enteric neurons replicate 2 | zebrafish EN replicate 2 | SAMD00529464 | sample name:zebrafish EN replicate 2|biological replicate:eneteric neurons 2|strain:TgSAGFFLF218B; uas:gfp | NextSeq 550 paired end sequencing of SAMD00529464 | DRX393850 | 190326ENvsNC N702 5day;EntericNeuron;rep2 | 1 | 1 | RNA-Seq | TRANSCRIPTOMIC | RANDOM | PAIRED | ILLUMINA | NextSeq 550 | <SPOT_DESCRIPTOR><SPOT_DECODE_SPEC><SPOT_LENGTH>160</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>81</BASE_COORD></READ_SPEC></SPOT_DECODE_SPEC></SPOT_DESCRIPTOR> | DRP012042 | NextSeq 550 paired end sequencing of SAMD00529464 | 3315994810.0 | 21477755.0 | DRR408244 | 0:77.19 1:77.20 | A:873970427;C:778042505;G:798459853;T:859611841;N:5910184 | 77 | 77 | 873970427 | 778042505 | 798459853 | 859611841 | 5910184 | DRX393850 | DRS407175 | DRA014886 | NIBB|NIBB core research facilities, National Institute for Basic Biology | University of Hyogo | B | B | biological fallback assumption | illumina | nextseq | unknown | random_priming | unknown | bulk | unknown | unknown | Japan | 2024-09-22 | Undetermined | Larval | Undetermined | Undetermined | |||||||||||||||||||||||||||||
| 43 | 43 | DRR408243 | DRX393849 | DRS407174 | DRP012042 | PRJDB14275 | Zebrafish EN/ENCDC RNA seq | DRP012042 | Transcriptome Analysis | A project to find differential expressed genes between enteric neurons ENs and enteric neural crest derived cells ENCDCs in larval zebrafish gut. We dissected guts of transgenic line TgSAGFFLF217B; uas:gfp for ENs and Tgsox10:cre; EF1alpha:loxP gfp loxP dsred for ENCDCs and isolated GFP+ ENs and dsRed+ ENCDCs. Three duplicates for each of ENs and ENCDCs are prepared. Libraries for NGS are prepared using SMART Seq V4 Ultra Low Input RNA Kit. | zebrafish 5 day GFP positive enteric neurons replicate 1 | zebrafish EN replicate 1 | SAMD00529463 | sample name:zebrafish EN replicate 1|biological replicate:eneteric neurons 1|strain:TgSAGFFLF217B; uas:gfp | NextSeq 550 paired end sequencing of SAMD00529463 | DRX393849 | 190326ENvsNC N701 5day;EntericNeuron;rep1 | 1 | 1 | RNA-Seq | TRANSCRIPTOMIC | RANDOM | PAIRED | ILLUMINA | NextSeq 550 | <SPOT_DESCRIPTOR><SPOT_DECODE_SPEC><SPOT_LENGTH>160</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>81</BASE_COORD></READ_SPEC></SPOT_DECODE_SPEC></SPOT_DESCRIPTOR> | DRP012042 | NextSeq 550 paired end sequencing of SAMD00529463 | 2999501518.0 | 19455440.0 | DRR408243 | 0:77.08 1:77.09 | A:788053541;C:705895776;G:724185148;T:775760738;N:5606315 | 77 | 77 | 788053541 | 705895776 | 724185148 | 775760738 | 5606315 | DRX393849 | DRS407174 | DRA014886 | NIBB|NIBB core research facilities, National Institute for Basic Biology | University of Hyogo | B | B | biological fallback assumption | illumina | nextseq | unknown | random_priming | unknown | bulk | unknown | unknown | Japan | 2024-09-22 | Undetermined | Larval | Undetermined | Undetermined | |||||||||||||||||||||||||||||
| 312 | 312 | ERR977399 | ERX1054382 | ERS805483 | ERP011343 | PRJEB10137 | RNAseq from mature ductal cells from nkx6.1:GFP zebrafish lines | ena-STUDY-GIGA-R, University of Liege-05-08-2015-09:45:38:475-48 | Other | Background: In contrast to mammals the zebrafish has the remarkable capacity to regenerate very efficiently its pancreatic beta cells. Understanding the mechanisms of regeneration in zebrafish and the differences with mammals will be fundamental to discovering molecules able to stimulate the regeneration process in mammals. To identify the pancreatic cells able to give rise to new beta cells in zebrafish we generated new transgenic lines allowing the tracing of multipotent pancreatic progenitors and endocrine precursors. Results: Using novel bacterial artificial chromosome transgenic nkx6.1 and ascl1b reporter lines we established that nkx6.1 positive cells give rise to all the pancreatic cell types and ascl1b positive cells give rise to all the endocrine cell types in the zebrafish embryo. These two genes are initially co expressed in the pancreatic primordium and their domains segregate not as a result of mutual repression but through the opposite effects of Notch signaling maintaining nkx6.1 expression while repressing ascl1b in progenitors. In adult zebrafish nkx6.1 expression persists exclusively in the ductal tree at the tip of which its expression coincides with Notch active signaling in centroacinar/terminal end duct cells. Tracing these cells reveals that they are able to differentiate into other ductal cells and into Insulin expressing cells in normal – non diabetic – animals. This capacity of ductal cells to generate endocrine cells is supported by the detection of ascl1b in the nkx6.1:GFP ductal cell transcriptome. This transcriptome also reveals besides actors of the Notch and Wnt pathways several novel markers such as id2a. Finally we show that beta cell ablation in adult zebrafish triggers proliferation of ductal cells and their differentiation into Insulin expressing cells. Conclusions: We have shown that in the zebrafish embryo nkx6.1+ cells are bona fide multipotent pancreatic progenitors while ascl1b+ cells represent committed endocrine precursors. In contrast to mouse pancreatic… | Ductal cells R3 | SAMEA3498334 | GIGA-R, University of Liege | ENA first public:2015 08 17|ENA last update:2015 08 05|External Id:SAMEA3498334|INSDC center alias:GIGA R University of Liege|INSDC center name:GIGA R University of Liege|INSDC first public:2015 08 17T17:01:08Z|INSDC last update:2015 08 05T10:19:01Z|INSDC status:public|Submitter Id:3|cell type:Pancreatic Ductal cells|collected by:Isabelle Manfroid and David Bergeman|common name:zebrafish|dev stage:Adult|isolate:Tgnkx6.1:GPF|lab host:ZDDM|sample name:3|strain:Tgnkx6.1:GPF | Illumina HiSeq 2000 paired end sequencing | ena EXPERIMENT GIGA R University of Liege 05 08 2015 10:18:44:269 3 | unspecified | 1 | nextera XT | RNA-Seq | TRANSCRIPTOMIC | Oligo-dT | PAIRED | ILLUMINA | Illumina HiSeq 2000 | ERP011343 | Illumina HiSeq 2000 paired end sequencing | ENA FIRST PUBLIC:2015 08 17|ENA LAST UPDATE:2018 11 16 | NGS14-B703_nkx2_TCCTGAGC_L003_R1_001.fastq.gz NGS14-B703_nkx2_TCCTGAGC_L003_R2_001.fastq.gz | fastq fastq | 14253683247.0 | 70913847.0 | ena RUN GIGA R University of Liege 05 08 2015 10:18:44:269 3 | 0:101 1:100 | A:3767730088;C:2759135663;G:2772107550;T:3905748607;N:1048961339 | 101 | 100 | 3767730088 | 2759135663 | 2772107550 | 3905748607 | 1048961339 | ERX1054382 | ERS805483 | ERA463457 | GIGA-R, University of Liege|European Nucleotide Archive | GIGA-R, University of Liege | 2 | 0.74612 | 0.7459 | 0.10937 | 0.11122 | 0.81704 | 0.81913 | 0.54841 | 0.53764 | 101 | 100 | B | B | biological fallback assumption | illumina | hiseq_era | unknown | poly_a | nextera | bulk | unknown | unknown | Belgium | 2015-08-05 | Adult | Adult | Undetermined | Undetermined | ||||||||||||||||
| 313 | 313 | ERR977398 | ERX1054381 | ERS805482 | ERP011343 | PRJEB10137 | RNAseq from mature ductal cells from nkx6.1:GFP zebrafish lines | ena-STUDY-GIGA-R, University of Liege-05-08-2015-09:45:38:475-48 | Other | Background: In contrast to mammals the zebrafish has the remarkable capacity to regenerate very efficiently its pancreatic beta cells. Understanding the mechanisms of regeneration in zebrafish and the differences with mammals will be fundamental to discovering molecules able to stimulate the regeneration process in mammals. To identify the pancreatic cells able to give rise to new beta cells in zebrafish we generated new transgenic lines allowing the tracing of multipotent pancreatic progenitors and endocrine precursors. Results: Using novel bacterial artificial chromosome transgenic nkx6.1 and ascl1b reporter lines we established that nkx6.1 positive cells give rise to all the pancreatic cell types and ascl1b positive cells give rise to all the endocrine cell types in the zebrafish embryo. These two genes are initially co expressed in the pancreatic primordium and their domains segregate not as a result of mutual repression but through the opposite effects of Notch signaling maintaining nkx6.1 expression while repressing ascl1b in progenitors. In adult zebrafish nkx6.1 expression persists exclusively in the ductal tree at the tip of which its expression coincides with Notch active signaling in centroacinar/terminal end duct cells. Tracing these cells reveals that they are able to differentiate into other ductal cells and into Insulin expressing cells in normal – non diabetic – animals. This capacity of ductal cells to generate endocrine cells is supported by the detection of ascl1b in the nkx6.1:GFP ductal cell transcriptome. This transcriptome also reveals besides actors of the Notch and Wnt pathways several novel markers such as id2a. Finally we show that beta cell ablation in adult zebrafish triggers proliferation of ductal cells and their differentiation into Insulin expressing cells. Conclusions: We have shown that in the zebrafish embryo nkx6.1+ cells are bona fide multipotent pancreatic progenitors while ascl1b+ cells represent committed endocrine precursors. In contrast to mouse pancreatic… | Ductal cells R2 | SAMEA3498333 | GIGA-R, University of Liege | ENA first public:2015 08 17|ENA last update:2015 08 05|External Id:SAMEA3498333|INSDC center alias:GIGA R University of Liege|INSDC center name:GIGA R University of Liege|INSDC first public:2015 08 17T17:01:08Z|INSDC last update:2015 08 05T10:19:01Z|INSDC status:public|Submitter Id:2|cell type:Pancreatic Ductal cells|collected by:Isabelle Manfroid and David Bergeman|common name:zebrafish|dev stage:Adult|isolate:Tgnkx6.1:GPF|lab host:ZDDM|sample name:2|strain:Tgnkx6.1:GPF | Illumina HiSeq 2000 paired end sequencing | ena EXPERIMENT GIGA R University of Liege 05 08 2015 10:18:44:269 2 | unspecified | 1 | Truseq nano DNAsample | RNA-Seq | TRANSCRIPTOMIC | Oligo-dT | PAIRED | ILLUMINA | Illumina HiSeq 2000 | ERP011343 | Illumina HiSeq 2000 paired end sequencing | ENA FIRST PUBLIC:2015 08 17|ENA LAST UPDATE:2018 11 16 | NGS14-B424_NKX6-1_3000C_CTTGTA_L005_R2_001.fastq.gz NGS14-B424_NKX6-1_3000C_CTTGTA_L005_R1_001.fastq.gz | fastq fastq | 17434323262.0 | 86308531.0 | ena RUN GIGA R University of Liege 05 08 2015 10:18:44:269 2 | 0:101 1:101 | A:5014046305;C:3245710338;G:3382410145;T:5701198546;N:90957928 | 101 | 101 | 5014046305 | 3245710338 | 3382410145 | 5701198546 | 90957928 | ERX1054381 | ERS805482 | ERA463457 | GIGA-R, University of Liege|European Nucleotide Archive | GIGA-R, University of Liege | 2 | 0.87938 | 0.83068 | 0.30659 | 0.31351 | 0.80162 | 0.8438 | 0.50285 | 0.47987 | 101 | 101 | B | B | biological fallback assumption | illumina | hiseq_era | unknown | poly_a | trueseq | bulk | unknown | unknown | Belgium | 2015-08-05 | Adult | Adult | Undetermined | Undetermined | ||||||||||||||||
| 314 | 314 | ERR977397 | ERX1054380 | ERS805481 | ERP011343 | PRJEB10137 | RNAseq from mature ductal cells from nkx6.1:GFP zebrafish lines | ena-STUDY-GIGA-R, University of Liege-05-08-2015-09:45:38:475-48 | Other | Background: In contrast to mammals the zebrafish has the remarkable capacity to regenerate very efficiently its pancreatic beta cells. Understanding the mechanisms of regeneration in zebrafish and the differences with mammals will be fundamental to discovering molecules able to stimulate the regeneration process in mammals. To identify the pancreatic cells able to give rise to new beta cells in zebrafish we generated new transgenic lines allowing the tracing of multipotent pancreatic progenitors and endocrine precursors. Results: Using novel bacterial artificial chromosome transgenic nkx6.1 and ascl1b reporter lines we established that nkx6.1 positive cells give rise to all the pancreatic cell types and ascl1b positive cells give rise to all the endocrine cell types in the zebrafish embryo. These two genes are initially co expressed in the pancreatic primordium and their domains segregate not as a result of mutual repression but through the opposite effects of Notch signaling maintaining nkx6.1 expression while repressing ascl1b in progenitors. In adult zebrafish nkx6.1 expression persists exclusively in the ductal tree at the tip of which its expression coincides with Notch active signaling in centroacinar/terminal end duct cells. Tracing these cells reveals that they are able to differentiate into other ductal cells and into Insulin expressing cells in normal – non diabetic – animals. This capacity of ductal cells to generate endocrine cells is supported by the detection of ascl1b in the nkx6.1:GFP ductal cell transcriptome. This transcriptome also reveals besides actors of the Notch and Wnt pathways several novel markers such as id2a. Finally we show that beta cell ablation in adult zebrafish triggers proliferation of ductal cells and their differentiation into Insulin expressing cells. Conclusions: We have shown that in the zebrafish embryo nkx6.1+ cells are bona fide multipotent pancreatic progenitors while ascl1b+ cells represent committed endocrine precursors. In contrast to mouse pancreatic… | Ductal cells R1 | SAMEA3498332 | GIGA-R, University of Liege | ENA first public:2015 08 17|ENA last update:2015 08 05|External Id:SAMEA3498332|INSDC center alias:GIGA R University of Liege|INSDC center name:GIGA R University of Liege|INSDC first public:2015 08 17T17:01:08Z|INSDC last update:2015 08 05T10:19:01Z|INSDC status:public|Submitter Id:1|cell type:Pancreatic Ductal cells|collected by:Isabelle Manfroid and David Bergeman|common name:zebrafish|dev stage:Adult|isolate:Tgnkx6.1:GPF|lab host:ZDDM|sample name:1|strain:Tgnkx6.1:GPF | Illumina HiSeq 2000 paired end sequencing | ena EXPERIMENT GIGA R University of Liege 05 08 2015 10:18:44:269 1 | unspecified | 1 | Truseq nano DNA sample | RNA-Seq | TRANSCRIPTOMIC | Oligo-dT | PAIRED | ILLUMINA | Illumina HiSeq 2000 | ERP011343 | Illumina HiSeq 2000 paired end sequencing | ENA FIRST PUBLIC:2015 08 17|ENA LAST UPDATE:2018 11 16 | NGS14-B423_NKX6-1_1000C_GCCAAT_L005_R1_001.fastq.gz NGS14-B423_NKX6-1_1000C_GCCAAT_L005_R2_001.fastq.gz | fastq fastq | 8147922500.0 | 40336250.0 | ena RUN GIGA R University of Liege 05 08 2015 10:18:44:269 1 | 0:101 1:101 | A:2422471356;C:1435392327;G:1491979725;T:2755195660;N:42883432 | 101 | 101 | 2422471356 | 1435392327 | 1491979725 | 2755195660 | 42883432 | ERX1054380 | ERS805481 | ERA463457 | GIGA-R, University of Liege|European Nucleotide Archive | GIGA-R, University of Liege | 2 | 0.85302 | 0.79849 | 0.41437 | 0.41711 | 0.83871 | 0.87012 | 0.48354 | 0.50046 | 101 | 101 | B | B | biological fallback assumption | illumina | hiseq_era | unknown | poly_a | trueseq | bulk | unknown | unknown | Belgium | 2015-08-05 | Adult | Adult | Undetermined | Undetermined | ||||||||||||||||
| 315 | 315 | ERR1675931 | ERX1745976 | ERS805781 | ERP011346 | PRJEB10140 | RNAseq from the pancreatic acinar alpha beta and delta cells from zebrafish | ena-STUDY-GIGA-R, University of Liege-05-08-2015-10:47:24:447-55 | Other | We took advantage of zebrafish transgenic tools to isolate by FACS the major pancreatic cell types and obtain pure preparations of endocrine a ß and d cells as well as exocrine acinar and ductal cells. | ENA FIRST PUBLIC:2017 01 31|ENA LAST UPDATE:2017 01 31 | Acinar cells from adults purified by FACS | Acinar cells R2 1 | SAMEA3498632 | GIGA-R, University of Liege | ENA first public:2017 01 31|ENA last update:2015 08 05|External Id:SAMEA3498632|INSDC center alias:GIGA R University of Liege|INSDC center name:GIGA R University of Liege|INSDC first public:2017 01 31T17:01:11Z|INSDC last update:2015 08 05T16:56:59Z|INSDC status:public|Submitter Id:37|cell type:Pancreatic Acinar cells|collected by:Isabelle Manfroid|common name:zebrafish|dev stage:Adult|isolate:Tgptf1a:GFP|lab host:ZDDM|sample name:37 | Illumina HiSeq 2000 paired end sequencing | ena EXPERIMENT GIGA R University of Liege 06 10 2016 15:53:35:325 1 | unspecified | 1 | RNA-Seq | TRANSCRIPTOMIC | Oligo-dT | PAIRED | ILLUMINA | Illumina HiSeq 2000 | ERP011346 | Illumina HiSeq 2000 paired end sequencing | ENA FIRST PUBLIC:2017 01 31|ENA LAST UPDATE:2018 11 16 | A028_tefa_acinar_GTCCGC_L006_R1_001.fastq.gz A028_tefa_acinar_GTCCGC_L006_R2_001.fastq.gz | fastq fastq | 10323596830.0 | 51106915.0 | ena RUN GIGA R University of Liege 06 10 2016 15:53:35:325 1 | 0:101 1:101 | A:2531431314;C:2448656972;G:2434247998;T:2833404838;N:75855708 | 101 | 101 | 2531431314 | 2448656972 | 2434247998 | 2833404838 | 75855708 | ERX1745976 | ERS805781 | ERA727496 | GIGA-R, University of Liege|European Nucleotide Archive | GIGA-R, University of Liege | 2 | 0.86878 | 0.78451 | 0.03164 | 0.02157 | 0.95077 | 0.96161 | 0.52068 | 0.26664 | 101 | 101 | B | B | biological fallback assumption | illumina | hiseq_era | unknown | poly_a | unknown | bulk | unknown | unknown | Belgium | 2015-08-05 | Adult | Adult | Undetermined | Undetermined | |||||||||||||||
| 316 | 316 | ERR977594 | ERX1054577 | ERS805784 | ERP011346 | PRJEB10140 | RNAseq from the pancreatic acinar alpha beta and delta cells from zebrafish | ena-STUDY-GIGA-R, University of Liege-05-08-2015-10:47:24:447-55 | Other | We took advantage of zebrafish transgenic tools to isolate by FACS the major pancreatic cell types and obtain pure preparations of endocrine a ß and d cells as well as exocrine acinar and ductal cells. | ENA FIRST PUBLIC:2017 01 31|ENA LAST UPDATE:2017 01 31 | Acinar cells from adults purified by FACS | Acinar cells R4 | SAMEA3498635 | GIGA-R, University of Liege | ENA first public:2017 01 31|ENA last update:2015 08 05|External Id:SAMEA3498635|INSDC center alias:GIGA R University of Liege|INSDC center name:GIGA R University of Liege|INSDC first public:2017 01 31T17:01:11Z|INSDC last update:2015 08 05T16:56:59Z|INSDC status:public|Submitter Id:40|cell type:Pancreatic Acinar cells|collected by:Isabelle Manfroid|common name:zebrafish|dev stage:Adult|isolate:Tgptf1a:GFP|lab host:ZDDM|sample name:40 | Illumina HiSeq 2000 paired end sequencing | ena EXPERIMENT GIGA R University of Liege 05 08 2015 16:56:42:490 19 | Acinar R4 | 1 | Truseq nano DNA Sample prep | RNA-Seq | TRANSCRIPTOMIC | Oligo-dT | PAIRED | ILLUMINA | Illumina HiSeq 2000 | ERP011346 | Illumina HiSeq 2000 paired end sequencing | ENA FIRST PUBLIC:2017 01 31|ENA LAST UPDATE:2018 11 16 | NGS14-B702_Acinar4_GTGAAA_L008_R1_001.fastq.gz NGS14-B702_Acinar4_GTGAAA_L008_R2_001.fastq.gz | fastq fastq | 16935208936.0 | 83837668.0 | ena RUN GIGA R University of Liege 05 08 2015 16:56:42:490 19 | 0:101 1:101 | A:4069193994;C:3974803883;G:4029409265;T:4779969672;N:81832122 | 101 | 101 | 4069193994 | 3974803883 | 4029409265 | 4779969672 | 81832122 | ERX1054577 | ERS805784 | ERA463595 | GIGA-R, University of Liege|European Nucleotide Archive | GIGA-R, University of Liege | 2 | 0.93976 | 0.89939 | 0.01468 | 0.01416 | 0.93801 | 0.94795 | 0.50718 | 0.50041 | 101 | 101 | B | B | biological fallback assumption | illumina | hiseq_era | unknown | poly_a | trueseq | bulk | unknown | unknown | Belgium | 2015-08-05 | Adult | Adult | Undetermined | Undetermined | ||||||||||||||
| 317 | 317 | ERR977593 | ERX1054576 | ERS805783 | ERP011346 | PRJEB10140 | RNAseq from the pancreatic acinar alpha beta and delta cells from zebrafish | ena-STUDY-GIGA-R, University of Liege-05-08-2015-10:47:24:447-55 | Other | We took advantage of zebrafish transgenic tools to isolate by FACS the major pancreatic cell types and obtain pure preparations of endocrine a ß and d cells as well as exocrine acinar and ductal cells. | ENA FIRST PUBLIC:2017 01 31|ENA LAST UPDATE:2017 01 31 | Acinar cells from adults purified by FACS | Acinar cells R3 | SAMEA3498634 | GIGA-R, University of Liege | ENA first public:2017 01 31|ENA last update:2015 08 05|External Id:SAMEA3498634|INSDC center alias:GIGA R University of Liege|INSDC center name:GIGA R University of Liege|INSDC first public:2017 01 31T17:01:11Z|INSDC last update:2015 08 05T16:56:59Z|INSDC status:public|Submitter Id:39|cell type:Pancreatic Acinar cells|collected by:Isabelle Manfroid|common name:zebrafish|dev stage:Adult|isolate:Tgptf1a:GFP|lab host:ZDDM|sample name:39 | Illumina HiSeq 2000 paired end sequencing | ena EXPERIMENT GIGA R University of Liege 05 08 2015 16:56:42:490 18 | Acinar R3 | 1 | Truseq nano DNA Sample prep | RNA-Seq | TRANSCRIPTOMIC | Oligo-dT | PAIRED | ILLUMINA | Illumina HiSeq 2000 | ERP011346 | Illumina HiSeq 2000 paired end sequencing | ENA FIRST PUBLIC:2017 01 31|ENA LAST UPDATE:2018 11 16 | NGS14-B701_Acinar3_ACAGTG_L008_R1_001.fastq.gz NGS14-B701_Acinar3_ACAGTG_L008_R2_001.fastq.gz | fastq fastq | 15710260534.0 | 77773567.0 | ena RUN GIGA R University of Liege 05 08 2015 16:56:42:490 18 | 0:101 1:101 | A:3788172647;C:3700546898;G:3749520213;T:4395516227;N:76504549 | 101 | 101 | 3788172647 | 3700546898 | 3749520213 | 4395516227 | 76504549 | ERX1054576 | ERS805783 | ERA463595 | GIGA-R, University of Liege|European Nucleotide Archive | GIGA-R, University of Liege | 2 | 0.95517 | 0.92587 | 0.0153 | 0.01529 | 0.91504 | 0.92553 | 0.49096 | 0.48449 | 101 | 101 | B | B | biological fallback assumption | illumina | hiseq_era | unknown | poly_a | trueseq | bulk | unknown | unknown | Belgium | 2015-08-05 | Adult | Adult | Undetermined | Undetermined | ||||||||||||||
| 318 | 318 | ERR977592 | ERX1054575 | ERS805782 | ERP011346 | PRJEB10140 | RNAseq from the pancreatic acinar alpha beta and delta cells from zebrafish | ena-STUDY-GIGA-R, University of Liege-05-08-2015-10:47:24:447-55 | Other | We took advantage of zebrafish transgenic tools to isolate by FACS the major pancreatic cell types and obtain pure preparations of endocrine a ß and d cells as well as exocrine acinar and ductal cells. | ENA FIRST PUBLIC:2017 01 31|ENA LAST UPDATE:2017 01 31 | Acinar cells from adults purified by FACS | Acinar cells R2 2 | SAMEA3498633 | GIGA-R, University of Liege | ENA first public:2017 01 31|ENA last update:2015 08 05|External Id:SAMEA3498633|INSDC center alias:GIGA R University of Liege|INSDC center name:GIGA R University of Liege|INSDC first public:2017 01 31T17:01:11Z|INSDC last update:2015 08 05T16:56:59Z|INSDC status:public|Submitter Id:38|cell type:Pancreatic Acinar cells|collected by:Isabelle Manfroid|common name:zebrafish|dev stage:Adult|isolate:Tgptf1a:GFP|lab host:ZDDM|sample name:38 | Illumina HiSeq 2000 paired end sequencing | ena EXPERIMENT GIGA R University of Liege 05 08 2015 16:56:42:490 17 | Acinar R2 2 | 1 | Truseq DNA Sample prep | RNA-Seq | TRANSCRIPTOMIC | Oligo-dT | PAIRED | ILLUMINA | Illumina HiSeq 2000 | ERP011346 | Illumina HiSeq 2000 paired end sequencing | ENA FIRST PUBLIC:2017 01 31|ENA LAST UPDATE:2018 11 16 | Acinar_A028_GTCCGC_L003_R1_001.fastq.gz Acinar_A028_GTCCGC_L003_R2_001.fastq.gz | fastq fastq | 3461595220.0 | 17136610.0 | ena RUN GIGA R University of Liege 05 08 2015 16:56:42:490 17 | 0:101 1:101 | A:847745846;C:824702298;G:830498571;T:958264119;N:384386 | 101 | 101 | 847745846 | 824702298 | 830498571 | 958264119 | 384386 | ERX1054575 | ERS805782 | ERA463595 | GIGA-R, University of Liege|European Nucleotide Archive | GIGA-R, University of Liege | 2 | 0.86246 | 0.7781 | 0.03038 | 0.02178 | 0.95357 | 0.96327 | 0.56719 | 0.35588 | 101 | 101 | B | B | biological fallback assumption | illumina | hiseq_era | unknown | poly_a | trueseq | bulk | unknown | unknown | Belgium | 2015-08-05 | Adult | Adult | Undetermined | Undetermined | ||||||||||||||
| 319 | 319 | ERR977591 | ERX1054574 | ERS805780 | ERP011346 | PRJEB10140 | RNAseq from the pancreatic acinar alpha beta and delta cells from zebrafish | ena-STUDY-GIGA-R, University of Liege-05-08-2015-10:47:24:447-55 | Other | We took advantage of zebrafish transgenic tools to isolate by FACS the major pancreatic cell types and obtain pure preparations of endocrine a ß and d cells as well as exocrine acinar and ductal cells. | ENA FIRST PUBLIC:2017 01 31|ENA LAST UPDATE:2017 01 31 | Acinar cells from adults purified by FACS | Acinar cells R1 2 | SAMEA3498631 | GIGA-R, University of Liege | ENA first public:2017 01 31|ENA last update:2015 08 05|External Id:SAMEA3498631|INSDC center alias:GIGA R University of Liege|INSDC center name:GIGA R University of Liege|INSDC first public:2017 01 31T17:01:11Z|INSDC last update:2015 08 05T16:56:59Z|INSDC status:public|Submitter Id:36|cell type:Pancreatic Acinar cells|collected by:Isabelle Manfroid|common name:zebrafish|dev stage:Adult|isolate:Tgptf1a:GFP|lab host:ZDDM|sample name:36 | Illumina HiSeq 2000 paired end sequencing | ena EXPERIMENT GIGA R University of Liege 05 08 2015 16:56:42:490 16 | Acinar R1 2 | 1 | Truseq DNA Sample prep | RNA-Seq | TRANSCRIPTOMIC | Oligo-dT | PAIRED | ILLUMINA | Illumina HiSeq 2000 | ERP011346 | Illumina HiSeq 2000 paired end sequencing | ENA FIRST PUBLIC:2017 01 31|ENA LAST UPDATE:2018 11 16 | Exocrine_GTGAAA_L005_R1_001.fastq.gz Exocrine_GTGAAA_L005_R2_001.fastq.gz | fastq fastq | 9528535334.0 | 47170967.0 | ena RUN GIGA R University of Liege 05 08 2015 16:56:42:490 16 | 0:101 1:101 | A:2522050794;C:2076658898;G:2097686086;T:2672752253;N:159387303 | 101 | 101 | 2522050794 | 2076658898 | 2097686086 | 2672752253 | 159387303 | ERX1054574 | ERS805780 | ERA463595 | GIGA-R, University of Liege|European Nucleotide Archive | GIGA-R, University of Liege | 2 | 0.48352 | 0.37495 | 0.01258 | 0.01002 | 0.94194 | 0.95345 | 0.51746 | 0.51938 | 101 | 101 | B | B | biological fallback assumption | illumina | hiseq_era | unknown | poly_a | trueseq | bulk | unknown | unknown | Belgium | 2015-08-05 | Adult | Adult | Undetermined | Undetermined | ||||||||||||||
| 320 | 320 | ERR977590 | ERX1054573 | ERS805779 | ERP011346 | PRJEB10140 | RNAseq from the pancreatic acinar alpha beta and delta cells from zebrafish | ena-STUDY-GIGA-R, University of Liege-05-08-2015-10:47:24:447-55 | Other | We took advantage of zebrafish transgenic tools to isolate by FACS the major pancreatic cell types and obtain pure preparations of endocrine a ß and d cells as well as exocrine acinar and ductal cells. | ENA FIRST PUBLIC:2017 01 31|ENA LAST UPDATE:2017 01 31 | Acinar cells from adults purified by FACS | Acinar cells R1 1 | SAMEA3498630 | GIGA-R, University of Liege | ENA first public:2017 01 31|ENA last update:2015 08 05|External Id:SAMEA3498630|INSDC center alias:GIGA R University of Liege|INSDC center name:GIGA R University of Liege|INSDC first public:2017 01 31T17:01:11Z|INSDC last update:2015 08 05T16:56:59Z|INSDC status:public|Submitter Id:35|cell type:Pancreatic Acinar cells|collected by:Isabelle Manfroid|common name:zebrafish|dev stage:Adult|isolate:Tgptf1a:GFP|lab host:ZDDM|sample name:35 | Illumina HiSeq 2000 paired end sequencing | ena EXPERIMENT GIGA R University of Liege 05 08 2015 16:56:42:489 15 | Acinar R1 1 | 1 | Truseq DNA Sample prep | RNA-Seq | TRANSCRIPTOMIC | Oligo-dT | PAIRED | ILLUMINA | Illumina HiSeq 2000 | ERP011346 | Illumina HiSeq 2000 paired end sequencing | ENA FIRST PUBLIC:2017 01 31|ENA LAST UPDATE:2018 11 16 | Exocrine_30000_GTGAAA_L008_R1_001.fastq.gz Exocrine_30000_GTGAAA_L008_R2_001.fastq.gz | fastq fastq | 2352127188.0 | 11644194.0 | ena RUN GIGA R University of Liege 05 08 2015 16:56:42:489 15 | 0:101 1:101 | A:575791638;C:562486325;G:570096367;T:643677230;N:75628 | 101 | 101 | 575791638 | 562486325 | 570096367 | 643677230 | 75628 | ERX1054573 | ERS805779 | ERA463595 | GIGA-R, University of Liege|European Nucleotide Archive | GIGA-R, University of Liege | 2 | 0.96358 | 0.92791 | 0.02614 | 0.02577 | 0.91534 | 0.92786 | 0.51791 | 0.51855 | 101 | 101 | B | B | biological fallback assumption | illumina | hiseq_era | unknown | poly_a | trueseq | bulk | unknown | unknown | Belgium | 2015-08-05 | Adult | Adult | Undetermined | Undetermined | ||||||||||||||
| 322 | 322 | ERR977588 | ERX1054571 | ERS805777 | ERP011346 | PRJEB10140 | RNAseq from the pancreatic acinar alpha beta and delta cells from zebrafish | ena-STUDY-GIGA-R, University of Liege-05-08-2015-10:47:24:447-55 | Other | We took advantage of zebrafish transgenic tools to isolate by FACS the major pancreatic cell types and obtain pure preparations of endocrine a ß and d cells as well as exocrine acinar and ductal cells. | ENA FIRST PUBLIC:2017 01 31|ENA LAST UPDATE:2017 01 31 | Delta cells from adults purified by FACS | Delta cells R2 | SAMEA3498628 | GIGA-R, University of Liege | ENA first public:2017 01 31|ENA last update:2015 08 05|External Id:SAMEA3498628|INSDC center alias:GIGA R University of Liege|INSDC center name:GIGA R University of Liege|INSDC first public:2017 01 31T17:01:11Z|INSDC last update:2015 08 05T16:56:59Z|INSDC status:public|Submitter Id:33|cell type:Pancreatic Delta cells|collected by:Estefania Tarifeño Saldivia|common name:zebrafish|dev stage:Adult|isolate:Tgsst2:GFP|lab host:ZDDM|sample name:33 | Illumina HiSeq 2000 paired end sequencing | ena EXPERIMENT GIGA R University of Liege 05 08 2015 16:56:42:489 13 | Delta R2 | 1 | Truseq DNA Sample prep | RNA-Seq | TRANSCRIPTOMIC | Oligo-dT | PAIRED | ILLUMINA | Illumina HiSeq 2000 | ERP011346 | Illumina HiSeq 2000 paired end sequencing | ENA FIRST PUBLIC:2017 01 31|ENA LAST UPDATE:2018 11 16 | STS2_cDNA_A085_CAGATC_L003_R1_001.fastq.gz STS2_cDNA_A085_CAGATC_L003_R2_001.fastq.gz | fastq fastq | 9070241774.0 | 44902187.0 | ena RUN GIGA R University of Liege 05 08 2015 16:56:42:489 13 | 0:101 1:101 | A:2535637917;C:1854694115;G:1908489704;T:2770396981;N:1023057 | 101 | 101 | 2535637917 | 1854694115 | 1908489704 | 2770396981 | 1023057 | ERX1054571 | ERS805777 | ERA463595 | GIGA-R, University of Liege|European Nucleotide Archive | GIGA-R, University of Liege | 2 | 0.94245 | 0.86716 | 0.11229 | 0.13234 | 0.76114 | 0.78171 | 0.38511 | 0.43811 | 101 | 101 | B | B | biological fallback assumption | illumina | hiseq_era | unknown | poly_a | trueseq | bulk | unknown | unknown | Belgium | 2015-08-05 | Adult | Adult | Undetermined | Undetermined | ||||||||||||||
| 323 | 323 | ERR977587 | ERX1054570 | ERS805776 | ERP011346 | PRJEB10140 | RNAseq from the pancreatic acinar alpha beta and delta cells from zebrafish | ena-STUDY-GIGA-R, University of Liege-05-08-2015-10:47:24:447-55 | Other | We took advantage of zebrafish transgenic tools to isolate by FACS the major pancreatic cell types and obtain pure preparations of endocrine a ß and d cells as well as exocrine acinar and ductal cells. | ENA FIRST PUBLIC:2017 01 31|ENA LAST UPDATE:2017 01 31 | Delta cells from adults purified by FACS | Delta cells R1 2 | SAMEA3498627 | GIGA-R, University of Liege | ENA first public:2017 01 31|ENA last update:2015 08 05|External Id:SAMEA3498627|INSDC center alias:GIGA R University of Liege|INSDC center name:GIGA R University of Liege|INSDC first public:2017 01 31T17:01:11Z|INSDC last update:2015 08 05T16:56:59Z|INSDC status:public|Submitter Id:32|cell type:Pancreatic Delta cells|collected by:Estefania Tarifeño Saldivia|common name:zebrafish|dev stage:Adult|isolate:Tgsst2:GFP|lab host:ZDDM|sample name:32 | Illumina HiSeq 2000 paired end sequencing | ena EXPERIMENT GIGA R University of Liege 05 08 2015 16:56:42:489 12 | Delta R1 2 | 1 | Truseq DNA Sample prep | RNA-Seq | TRANSCRIPTOMIC | Oligo-dT | PAIRED | ILLUMINA | Illumina HiSeq 2000 | ERP011346 | Illumina HiSeq 2000 paired end sequencing | ENA FIRST PUBLIC:2017 01 31|ENA LAST UPDATE:2018 11 16 | SST1_A027_CCGTCC_L004_R1_001.fastq.gz SST1_A027_CCGTCC_L004_R2_001.fastq.gz | fastq fastq | 7937290636.0 | 39293518.0 | ena RUN GIGA R University of Liege 05 08 2015 16:56:42:489 12 | 0:101 1:101 | A:2179525147;C:1634082904;G:1676353742;T:2446333583;N:995260 | 101 | 101 | 2179525147 | 1634082904 | 1676353742 | 2446333583 | 995260 | ERX1054570 | ERS805776 | ERA463595 | GIGA-R, University of Liege|European Nucleotide Archive | GIGA-R, University of Liege | 2 | 0.81928 | 0.64028 | 0.09426 | 0.0961 | 0.80626 | 0.83763 | 0.33992 | 0.39097 | 101 | 101 | B | B | biological fallback assumption | illumina | hiseq_era | unknown | poly_a | trueseq | bulk | unknown | unknown | Belgium | 2015-08-05 | Adult | Adult | Undetermined | Undetermined | ||||||||||||||
| 324 | 324 | ERR977586 | ERX1054569 | ERS805775 | ERP011346 | PRJEB10140 | RNAseq from the pancreatic acinar alpha beta and delta cells from zebrafish | ena-STUDY-GIGA-R, University of Liege-05-08-2015-10:47:24:447-55 | Other | We took advantage of zebrafish transgenic tools to isolate by FACS the major pancreatic cell types and obtain pure preparations of endocrine a ß and d cells as well as exocrine acinar and ductal cells. | ENA FIRST PUBLIC:2017 01 31|ENA LAST UPDATE:2017 01 31 | Delta cells from adults purified by FACS | Delta cells R1 1 | SAMEA3498626 | GIGA-R, University of Liege | ENA first public:2017 01 31|ENA last update:2015 08 05|External Id:SAMEA3498626|INSDC center alias:GIGA R University of Liege|INSDC center name:GIGA R University of Liege|INSDC first public:2017 01 31T17:01:11Z|INSDC last update:2015 08 05T16:56:59Z|INSDC status:public|Submitter Id:31|cell type:Pancreatic Delta cells|collected by:Estefania Tarifeño Saldivia|common name:zebrafish|dev stage:Adult|isolate:Tgsst2:GFP|lab host:ZDDM|sample name:31 | Illumina HiSeq 2000 paired end sequencing | ena EXPERIMENT GIGA R University of Liege 05 08 2015 16:56:42:488 11 | Delta R1 1 | 1 | Truseq DNA Sample prep | RNA-Seq | TRANSCRIPTOMIC | Oligo-dT | PAIRED | ILLUMINA | Illumina HiSeq 2000 | ERP011346 | Illumina HiSeq 2000 paired end sequencing | ENA FIRST PUBLIC:2017 01 31|ENA LAST UPDATE:2018 11 16 | SST_CCGTCC_L005_R1_001.fastq.gz SST_CCGTCC_L005_R2_001.fastq.gz | fastq fastq | 2808424382.0 | 13903091.0 | ena RUN GIGA R University of Liege 05 08 2015 16:56:42:489 11 | 0:101 1:101 | A:745970072;C:575317830;G:590596279;T:849527061;N:47013140 | 101 | 101 | 745970072 | 575317830 | 590596279 | 849527061 | 47013140 | ERX1054569 | ERS805775 | ERA463595 | GIGA-R, University of Liege|European Nucleotide Archive | GIGA-R, University of Liege | 2 | 0.80308 | 0.60403 | 0.09111 | 0.08841 | 0.80582 | 0.84035 | 0.34177 | 0.38788 | 101 | 101 | B | B | biological fallback assumption | illumina | hiseq_era | unknown | poly_a | trueseq | bulk | unknown | unknown | Belgium | 2015-08-05 | Adult | Adult | Undetermined | Undetermined | ||||||||||||||
| 325 | 325 | ERR977585 | ERX1054568 | ERS805774 | ERP011346 | PRJEB10140 | RNAseq from the pancreatic acinar alpha beta and delta cells from zebrafish | ena-STUDY-GIGA-R, University of Liege-05-08-2015-10:47:24:447-55 | Other | We took advantage of zebrafish transgenic tools to isolate by FACS the major pancreatic cell types and obtain pure preparations of endocrine a ß and d cells as well as exocrine acinar and ductal cells. | ENA FIRST PUBLIC:2017 01 31|ENA LAST UPDATE:2017 01 31 | Alpha cells from adults purified by FACS | Alpha cells R3 | SAMEA3498625 | GIGA-R, University of Liege | ENA first public:2017 01 31|ENA last update:2015 08 05|External Id:SAMEA3498625|INSDC center alias:GIGA R University of Liege|INSDC center name:GIGA R University of Liege|INSDC first public:2017 01 31T17:01:11Z|INSDC last update:2015 08 05T16:56:59Z|INSDC status:public|Submitter Id:30|cell type:Pancreatic Alpha cells|collected by:Estefania Tarifeño Saldivia|common name:zebrafish|dev stage:Adult|isolate:Tggcga:GFP;Tgins:NTR mCherry|lab host:ZDDM|sample name:30 | Illumina HiSeq 2000 paired end sequencing | ena EXPERIMENT GIGA R University of Liege 05 08 2015 16:56:42:488 10 | Alpha R3 | 1 | Truseq DNA Sample prep | RNA-Seq | TRANSCRIPTOMIC | Oligo-dT | PAIRED | ILLUMINA | Illumina HiSeq 2000 | ERP011346 | Illumina HiSeq 2000 paired end sequencing | ENA FIRST PUBLIC:2017 01 31|ENA LAST UPDATE:2018 11 16 | NGS14-B175_AlphaCells-12122013_CTTGTA_L002_R1_001.fastq.gz NGS14-B175_AlphaCells-12122013_CTTGTA_L002_R2_001.fastq.gz | fastq fastq | 18205394430.0 | 90125715.0 | ena RUN GIGA R University of Liege 05 08 2015 16:56:42:488 10 | 0:101 1:101 | A:5028541426;C:3813667922;G:3871329588;T:5386457109;N:105398385 | 101 | 101 | 5028541426 | 3813667922 | 3871329588 | 5386457109 | 105398385 | ERX1054568 | ERS805774 | ERA463595 | GIGA-R, University of Liege|European Nucleotide Archive | GIGA-R, University of Liege | 2 | 0.84473 | 0.83714 | 0.12924 | 0.13497 | 0.76581 | 0.77928 | 0.43397 | 0.42534 | 101 | 101 | B | B | biological fallback assumption | illumina | hiseq_era | unknown | poly_a | trueseq | bulk | unknown | unknown | Belgium | 2015-08-05 | Adult | Adult | Undetermined | Undetermined | ||||||||||||||
| 326 | 326 | ERR977584 | ERX1054567 | ERS805773 | ERP011346 | PRJEB10140 | RNAseq from the pancreatic acinar alpha beta and delta cells from zebrafish | ena-STUDY-GIGA-R, University of Liege-05-08-2015-10:47:24:447-55 | Other | We took advantage of zebrafish transgenic tools to isolate by FACS the major pancreatic cell types and obtain pure preparations of endocrine a ß and d cells as well as exocrine acinar and ductal cells. | ENA FIRST PUBLIC:2017 01 31|ENA LAST UPDATE:2017 01 31 | Alpha cells from adults purified by FACS | Alpha cells R2 2 | SAMEA3498624 | GIGA-R, University of Liege | ENA first public:2017 01 31|ENA last update:2015 08 05|External Id:SAMEA3498624|INSDC center alias:GIGA R University of Liege|INSDC center name:GIGA R University of Liege|INSDC first public:2017 01 31T17:01:11Z|INSDC last update:2015 08 05T16:56:59Z|INSDC status:public|Submitter Id:29|cell type:Pancreatic Alpha cells|collected by:Estefania Tarifeño Saldivia|common name:zebrafish|dev stage:Adult|isolate:Tggcga:GFP;Tgins:NTR mCherry|lab host:ZDDM|sample name:29 | Illumina HiSeq 2000 paired end sequencing | ena EXPERIMENT GIGA R University of Liege 05 08 2015 16:56:42:488 9 | Alpha R2 2 | 1 | Truseq DNA Sample prep | RNA-Seq | TRANSCRIPTOMIC | Oligo-dT | PAIRED | ILLUMINA | Illumina HiSeq 2000 | ERP011346 | Illumina HiSeq 2000 paired end sequencing | ENA FIRST PUBLIC:2017 01 31|ENA LAST UPDATE:2018 11 16 | A084_Alpha2cDNA_GCCAAT_L006_R1_001.fastq.gz A084_Alpha2cDNA_GCCAAT_L006_R2_001.fastq.gz | fastq fastq | 8621351314.0 | 42679957.0 | ena RUN GIGA R University of Liege 05 08 2015 16:56:42:488 9 | 0:101 1:101 | A:2420008540;C:1748459249;G:1778002039;T:2610255006;N:64626480 | 101 | 101 | 2420008540 | 1748459249 | 1778002039 | 2610255006 | 64626480 | ERX1054567 | ERS805773 | ERA463595 | GIGA-R, University of Liege|European Nucleotide Archive | GIGA-R, University of Liege | 2 | 0.8123 | 0.7894 | 0.13948 | 0.14682 | 0.76609 | 0.78624 | 0.43594 | 0.4281 | 101 | 101 | B | B | biological fallback assumption | illumina | hiseq_era | unknown | poly_a | trueseq | bulk | unknown | unknown | Belgium | 2015-08-05 | Adult | Adult | Undetermined | Undetermined | ||||||||||||||
| 327 | 327 | ERR977583 | ERX1054566 | ERS805772 | ERP011346 | PRJEB10140 | RNAseq from the pancreatic acinar alpha beta and delta cells from zebrafish | ena-STUDY-GIGA-R, University of Liege-05-08-2015-10:47:24:447-55 | Other | We took advantage of zebrafish transgenic tools to isolate by FACS the major pancreatic cell types and obtain pure preparations of endocrine a ß and d cells as well as exocrine acinar and ductal cells. | ENA FIRST PUBLIC:2017 01 31|ENA LAST UPDATE:2017 01 31 | Alpha cells from adults purified by FACS | Alpha cells R2 1 | SAMEA3498623 | GIGA-R, University of Liege | ENA first public:2017 01 31|ENA last update:2015 08 05|External Id:SAMEA3498623|INSDC center alias:GIGA R University of Liege|INSDC center name:GIGA R University of Liege|INSDC first public:2017 01 31T17:01:11Z|INSDC last update:2015 08 05T16:56:59Z|INSDC status:public|Submitter Id:28|cell type:Pancreatic Alpha cells|collected by:Estefania Tarifeño Saldivia|common name:zebrafish|dev stage:Adult|isolate:Tggcga:GFP;Tgins:NTR mCherry|lab host:ZDDM|sample name:28 | Illumina HiSeq 2000 paired end sequencing | ena EXPERIMENT GIGA R University of Liege 05 08 2015 16:56:42:488 8 | Alpha R2 1 | 1 | Truseq DNA Sample prep | RNA-Seq | TRANSCRIPTOMIC | Oligo-dT | PAIRED | ILLUMINA | Illumina HiSeq 2000 | ERP011346 | Illumina HiSeq 2000 paired end sequencing | ENA FIRST PUBLIC:2017 01 31|ENA LAST UPDATE:2018 11 16 | Alpha_2_cDNA_A084_GCCAAT_L003_R1_001.fastq.gz Alpha_2_cDNA_A084_GCCAAT_L003_R2_001.fastq.gz | fastq fastq | 7447261462.0 | 36867631.0 | ena RUN GIGA R University of Liege 05 08 2015 16:56:42:488 8 | 0:101 1:101 | A:2085646680;C:1521470549;G:1568678066;T:2270630726;N:835441 | 101 | 101 | 2085646680 | 1521470549 | 1568678066 | 2270630726 | 835441 | ERX1054566 | ERS805772 | ERA463595 | GIGA-R, University of Liege|European Nucleotide Archive | GIGA-R, University of Liege | 2 | 0.81689 | 0.79405 | 0.13796 | 0.14503 | 0.76583 | 0.78535 | 0.40729 | 0.42815 | 101 | 101 | B | B | biological fallback assumption | illumina | hiseq_era | unknown | poly_a | trueseq | bulk | unknown | unknown | Belgium | 2015-08-05 | Adult | Adult | Undetermined | Undetermined | ||||||||||||||
| 328 | 328 | ERR977582 | ERX1054565 | ERS805771 | ERP011346 | PRJEB10140 | RNAseq from the pancreatic acinar alpha beta and delta cells from zebrafish | ena-STUDY-GIGA-R, University of Liege-05-08-2015-10:47:24:447-55 | Other | We took advantage of zebrafish transgenic tools to isolate by FACS the major pancreatic cell types and obtain pure preparations of endocrine a ß and d cells as well as exocrine acinar and ductal cells. | ENA FIRST PUBLIC:2017 01 31|ENA LAST UPDATE:2017 01 31 | Alpha cells from adults purified by FACS | Alpha cells R1 2 | SAMEA3498622 | GIGA-R, University of Liege | ENA first public:2017 01 31|ENA last update:2015 08 05|External Id:SAMEA3498622|INSDC center alias:GIGA R University of Liege|INSDC center name:GIGA R University of Liege|INSDC first public:2017 01 31T17:01:11Z|INSDC last update:2015 08 05T16:56:59Z|INSDC status:public|Submitter Id:27|cell type:Pancreatic Alpha cells|collected by:Estefania Tarifeño Saldivia|common name:zebrafish|dev stage:Adult|isolate:Tggcga:GFP;Tgins:NTR mCherry|lab host:ZDDM|sample name:27 | Illumina HiSeq 2000 paired end sequencing | ena EXPERIMENT GIGA R University of Liege 05 08 2015 16:56:42:488 7 | Alpha R1 2 | 1 | Truseq DNA Sample prep | RNA-Seq | TRANSCRIPTOMIC | Oligo-dT | PAIRED | ILLUMINA | Illumina HiSeq 2000 | ERP011346 | Illumina HiSeq 2000 paired end sequencing | ENA FIRST PUBLIC:2017 01 31|ENA LAST UPDATE:2018 11 16 | A083_Alpha1cDNA_ACAGTG_L006_R1_001.fastq.gz A083_Alpha1cDNA_ACAGTG_L006_R2_001.fastq.gz | fastq fastq | 8598483904.0 | 42566752.0 | ena RUN GIGA R University of Liege 05 08 2015 16:56:42:488 7 | 0:101 1:101 | A:2424152802;C:1756999772;G:1780718036;T:2571949581;N:64663713 | 101 | 101 | 2424152802 | 1756999772 | 1780718036 | 2571949581 | 64663713 | ERX1054565 | ERS805771 | ERA463595 | GIGA-R, University of Liege|European Nucleotide Archive | GIGA-R, University of Liege | 2 | 0.80654 | 0.78693 | 0.13676 | 0.14263 | 0.76475 | 0.78173 | 0.4476 | 0.44884 | 101 | 101 | B | B | biological fallback assumption | illumina | hiseq_era | unknown | poly_a | trueseq | bulk | unknown | unknown | Belgium | 2015-08-05 | Adult | Adult | Undetermined | Undetermined | ||||||||||||||
| 329 | 329 | ERR977581 | ERX1054564 | ERS805770 | ERP011346 | PRJEB10140 | RNAseq from the pancreatic acinar alpha beta and delta cells from zebrafish | ena-STUDY-GIGA-R, University of Liege-05-08-2015-10:47:24:447-55 | Other | We took advantage of zebrafish transgenic tools to isolate by FACS the major pancreatic cell types and obtain pure preparations of endocrine a ß and d cells as well as exocrine acinar and ductal cells. | ENA FIRST PUBLIC:2017 01 31|ENA LAST UPDATE:2017 01 31 | Alpha cells from adults purified by FACS | Alpha cells R1 1 | SAMEA3498621 | GIGA-R, University of Liege | ENA first public:2017 01 31|ENA last update:2015 08 05|External Id:SAMEA3498621|INSDC center alias:GIGA R University of Liege|INSDC center name:GIGA R University of Liege|INSDC first public:2017 01 31T17:01:11Z|INSDC last update:2015 08 05T16:56:59Z|INSDC status:public|Submitter Id:26|cell type:Pancreatic Alpha cells|collected by:Estefania Tarifeño Saldivia|common name:zebrafish|dev stage:Adult|isolate:Tggcga:GFP;Tgins:NTR mCherry|lab host:ZDDM|sample name:26|strain:Tggcga:GFP; Tgins:NTR mCherry | Illumina HiSeq 2000 paired end sequencing | ena EXPERIMENT GIGA R University of Liege 05 08 2015 16:56:42:487 6 | Alpha R1 1 | 1 | Truseq DNA Sample prep | RNA-Seq | TRANSCRIPTOMIC | Oligo-dT | PAIRED | ILLUMINA | Illumina HiSeq 2000 | ERP011346 | Illumina HiSeq 2000 paired end sequencing | ENA FIRST PUBLIC:2017 01 31|ENA LAST UPDATE:2018 11 16 | Alpha1_cDNA_A083_ACAGTG_L003_R2_001.fastq.gz Alpha1_cDNA_A083_ACAGTG_L003_R1_001.fastq.gz | fastq fastq | 7584054852.0 | 37544826.0 | ena RUN GIGA R University of Liege 05 08 2015 16:56:42:487 6 | 0:101 1:101 | A:2134120600;C:1561394450;G:1604139016;T:2283553056;N:847730 | 101 | 101 | 2134120600 | 1561394450 | 1604139016 | 2283553056 | 847730 | ERX1054564 | ERS805770 | ERA463595 | GIGA-R, University of Liege|European Nucleotide Archive | GIGA-R, University of Liege | 2 | 0.8102 | 0.79183 | 0.13509 | 0.1414 | 0.76459 | 0.77958 | 0.44897 | 0.42232 | 101 | 101 | B | B | biological fallback assumption | illumina | hiseq_era | unknown | poly_a | trueseq | bulk | unknown | unknown | Belgium | 2015-08-05 | Adult | Adult | Undetermined | Undetermined | ||||||||||||||
| 9918 | 9918 | ERR5059480 | ERX4865549 | ERS5523939 | ERP122761 | PRJEB39265 | RNA dynamics during zebrafish development | ena-STUDY-CENTER FOR GENOMIC REGULATION (CRG)-06-07-2020-15:41:43:771-1183 | Other | RNA dynamics during early zebrafish development | ENA FIRST PUBLIC:2022 07 05|ENA LAST UPDATE:2022 07 05 | aAM 6h rep1 | JD AD30 PRPN1970901 | ENA FIRST PUBLIC:2022 07 05T12:06:33Z|organism:Danio rerio|ENA LAST UPDATE:2022 07 05T12:06:33Z|scientific name:Danio rerio|common name:zebrafish|ENA FIRST PUBLIC:2022 07 05|ENA LAST UPDATE:2022 07 05 | PromethION sequencing | ena EXPERIMENT CENTER FOR GENOMIC REGULATION CRG 09 01 2021 19:50:56:183 1 | unspecified | 1 | RNA-Seq | TRANSCRIPTOMIC | Oligo-dT | SINGLE | OXFORD_NANOPORE | PromethION | ERP122761 | PromethION sequencing | ENA FIRST PUBLIC:2022 07 05|ENA LAST UPDATE:2022 07 05 | JD-AD30_PRPN197090.tar.gz | nanopore | 3739882337.0 | 3148027.0 | ena RUN CENTER FOR GENOMIC REGULATION CRG 09 01 2021 19:50:56:183 1 | 0:1188.01 | A:1054501690;C:834193435;G:847423060;T:1003764152;N:0 | 1188 | 1054501690 | 834193435 | 847423060 | 1003764152 | 0 | ERX4865549 | ERS5523939 | ERA3206712 | CENTER FOR GENOMIC REGULATION (CRG)|European Nucleotide Archive | CENTER FOR GENOMIC REGULATION (CRG) | B | usable mapping rate | ont | ont | unknown | poly_a | unknown | bulk | unknown | unknown | Spain | 2022-07-05 | Undetermined | Undetermined | Undetermined | Undetermined | ||||||||||||||||||||||||||||||
| 9920 | 9920 | ERR4330695 | ERX4277529 | ERS4811113 | ERP122761 | PRJEB39265 | RNA dynamics during zebrafish development | ena-STUDY-CENTER FOR GENOMIC REGULATION (CRG)-06-07-2020-15:41:43:771-1183 | Other | RNA dynamics during early zebrafish development | ENA FIRST PUBLIC:2022 07 05|ENA LAST UPDATE:2022 07 05 | WT 2h rep1 | WT 2h rep1 | SAMEA7050483 | CENTER FOR GENOMIC REGULATION (CRG) | ENA FIRST PUBLIC:2022 07 05|ENA LAST UPDATE:2022 07 05|External Id:SAMEA7050483|INSDC center alias:CENTER FOR GENOMIC REGULATION CRG|INSDC center name:CENTER FOR GENOMIC REGULATION CRG|INSDC first public:2022 07 05T12:06:22Z|INSDC last update:2022 07 05T12:06:22Z|INSDC status:public|Submitter Id:JD B2 PDBN005727|common name:zebrafish|sample name:JD B2 PDBN005727 | PromethION sequencing | ena EXPERIMENT CENTER FOR GENOMIC REGULATION CRG 09 07 2020 13:48:01:100 1 | unspecified | 1 | RNA-Seq | TRANSCRIPTOMIC | Oligo-dT | SINGLE | OXFORD_NANOPORE | PromethION | ERP122761 | PromethION sequencing | ENA FIRST PUBLIC:2022 07 05|ENA LAST UPDATE:2022 07 05 | JD-B2_PDBN005727.tar.gz | fastq | ena RUN CENTER FOR GENOMIC REGULATION CRG 09 07 2020 13:48:01:100 1 | ERX4277529 | ERA2767154 | CENTER FOR GENOMIC REGULATION (CRG)|European Nucleotide Archive | CENTER FOR GENOMIC REGULATION (CRG) | ont | ont | unknown | poly_a | unknown | bulk | unknown | unknown | Spain | 2022-07-05 | Undetermined | Undetermined | Undetermined | Undetermined | |||||||||||||||||||||||||||||||||||||||||
| 9921 | 9921 | ERR4327134 | ERX4273968 | ERS4808634 | ERP122761 | PRJEB39265 | RNA dynamics during zebrafish development | ena-STUDY-CENTER FOR GENOMIC REGULATION (CRG)-06-07-2020-15:41:43:771-1183 | Other | RNA dynamics during early zebrafish development | ENA FIRST PUBLIC:2022 07 05|ENA LAST UPDATE:2022 07 05 | WT 4h rep2 | WT 4h rep2 | SAMEA7048000 | CENTER FOR GENOMIC REGULATION (CRG) | ENA FIRST PUBLIC:2022 07 05|ENA LAST UPDATE:2022 07 05|External Id:SAMEA7048000|INSDC center alias:CENTER FOR GENOMIC REGULATION CRG|INSDC center name:CENTER FOR GENOMIC REGULATION CRG|INSDC first public:2022 07 05T12:06:22Z|INSDC last update:2022 07 05T12:06:22Z|INSDC status:public|Submitter Id:JD AM39 PDBN042841|common name:zebrafish|sample name:JD AM39 PDBN042841 | PromethION sequencing | ena EXPERIMENT CENTER FOR GENOMIC REGULATION CRG 07 07 2020 16:36:02:084 1 | unspecified | 1 | RNA-Seq | TRANSCRIPTOMIC | Oligo-dT | SINGLE | OXFORD_NANOPORE | PromethION | ERP122761 | PromethION sequencing | ENA FIRST PUBLIC:2022 07 05|ENA LAST UPDATE:2022 07 05 | JD-AM39_PDBN042841.tar.gz | nanopore | 719646261.0 | 897768.0 | ena RUN CENTER FOR GENOMIC REGULATION CRG 07 07 2020 16:36:02:084 1 | 0:801.59 | A:210217908;C:152963718;G:157393834;T:199070801;N:0 | 801 | 210217908 | 152963718 | 157393834 | 199070801 | 0 | ERX4273968 | ERS4808634 | ERA2764800 | CENTER FOR GENOMIC REGULATION (CRG)|European Nucleotide Archive | CENTER FOR GENOMIC REGULATION (CRG) | T | under 1.2% mapping rate | ont | ont | unknown | poly_a | unknown | bulk | unknown | unknown | Spain | 2022-07-05 | Undetermined | Undetermined | Undetermined | Undetermined | ||||||||||||||||||||||||||||
| 9922 | 9922 | ERR4330696 | ERX4277530 | ERS4811114 | ERP122761 | PRJEB39265 | RNA dynamics during zebrafish development | ena-STUDY-CENTER FOR GENOMIC REGULATION (CRG)-06-07-2020-15:41:43:771-1183 | Other | RNA dynamics during early zebrafish development | ENA FIRST PUBLIC:2022 07 05|ENA LAST UPDATE:2022 07 05 | WT 4h rep1 | WT 4h rep1 | JD C3 PDBN006177 | ENA FIRST PUBLIC:2022 07 05T12:06:22Z|organism:Danio rerio|ENA LAST UPDATE:2022 07 05T12:06:22Z|scientific name:Danio rerio|common name:zebrafish|ENA FIRST PUBLIC:2022 07 05|ENA LAST UPDATE:2022 07 05 | PromethION sequencing | ena EXPERIMENT CENTER FOR GENOMIC REGULATION CRG 09 07 2020 13:48:01:100 2 | unspecified | 1 | RNA-Seq | TRANSCRIPTOMIC | Oligo-dT | SINGLE | OXFORD_NANOPORE | PromethION | ERP122761 | PromethION sequencing | ENA FIRST PUBLIC:2022 07 05|ENA LAST UPDATE:2022 07 05 | JD-C3_PDBN006177.tar.gz | nanopore | 4240799932.0 | 4331689.0 | ena RUN CENTER FOR GENOMIC REGULATION CRG 09 07 2020 13:48:01:100 2 | 0:979.02 | A:1229803846;C:914476674;G:943703560;T:1152815852;N:0 | 979 | 1229803846 | 914476674 | 943703560 | 1152815852 | 0 | ERX4277530 | ERS4811114 | ERA2767154 | CENTER FOR GENOMIC REGULATION (CRG)|European Nucleotide Archive | CENTER FOR GENOMIC REGULATION (CRG) | B | usable mapping rate | ont | ont | unknown | poly_a | unknown | bulk | unknown | unknown | Spain | 2022-07-05 | Undetermined | Undetermined | Undetermined | Undetermined | |||||||||||||||||||||||||||||
| 9923 | 9923 | ERR4327135 | ERX4273969 | ERS4808635 | ERP122761 | PRJEB39265 | RNA dynamics during zebrafish development | ena-STUDY-CENTER FOR GENOMIC REGULATION (CRG)-06-07-2020-15:41:43:771-1183 | Other | RNA dynamics during early zebrafish development | ENA FIRST PUBLIC:2022 07 05|ENA LAST UPDATE:2022 07 05 | WT 6h rep1 | WT 6h rep1 | JD AC29 PDBN024889 | ENA FIRST PUBLIC:2022 07 05T12:06:22Z|organism:Danio rerio|ENA LAST UPDATE:2022 07 05T12:06:22Z|scientific name:Danio rerio|common name:zebrafish|ENA FIRST PUBLIC:2022 07 05|ENA LAST UPDATE:2022 07 05 | PromethION sequencing | ena EXPERIMENT CENTER FOR GENOMIC REGULATION CRG 07 07 2020 16:36:02:084 2 | unspecified | 1 | RNA-Seq | TRANSCRIPTOMIC | Oligo-dT | SINGLE | OXFORD_NANOPORE | PromethION | ERP122761 | PromethION sequencing | ENA FIRST PUBLIC:2022 07 05|ENA LAST UPDATE:2022 07 05 | JD-AC29_PDBN024889.tar.gz | nanopore | 1900324756.0 | 2013035.0 | ena RUN CENTER FOR GENOMIC REGULATION CRG 07 07 2020 16:36:02:084 2 | 0:944.01 | A:549431032;C:411510218;G:422103800;T:517279706;N:0 | 944 | 549431032 | 411510218 | 422103800 | 517279706 | 0 | ERX4273969 | ERS4808635 | ERA2764800 | CENTER FOR GENOMIC REGULATION (CRG)|European Nucleotide Archive | CENTER FOR GENOMIC REGULATION (CRG) | T | long read | ont | ont | unknown | poly_a | unknown | bulk | unknown | unknown | Spain | 2022-07-05 | Undetermined | Undetermined | Undetermined | Undetermined | |||||||||||||||||||||||||||||
| 9924 | 9924 | ERR4326350 | ERX4273208 | ERS4808398 | ERP122761 | PRJEB39265 | RNA dynamics during zebrafish development | ena-STUDY-CENTER FOR GENOMIC REGULATION (CRG)-06-07-2020-15:41:43:771-1183 | Other | RNA dynamics during early zebrafish development | ENA FIRST PUBLIC:2022 07 05|ENA LAST UPDATE:2022 07 05 | 430 LNA 6h rep1 | 430 LNA 6h rep1 | SAMEA7047764 | CENTER FOR GENOMIC REGULATION (CRG) | ENA FIRST PUBLIC:2022 07 05|ENA LAST UPDATE:2022 07 05|External Id:SAMEA7047764|INSDC center alias:CENTER FOR GENOMIC REGULATION CRG|INSDC center name:CENTER FOR GENOMIC REGULATION CRG|INSDC first public:2022 07 05T12:06:22Z|INSDC last update:2022 07 05T12:06:22Z|INSDC status:public|Submitter Id:JD H8 PDBN059569|common name:zebrafish|sample name:JD H8 PDBN059569 | PromethION sequencing | ena EXPERIMENT CENTER FOR GENOMIC REGULATION CRG 07 07 2020 10:25:22:388 1 | unspecified | 1 | RNA-Seq | TRANSCRIPTOMIC | Oligo-dT | SINGLE | OXFORD_NANOPORE | PromethION | ERP122761 | PromethION sequencing | ENA FIRST PUBLIC:2022 07 05|ENA LAST UPDATE:2022 07 05 | JD-H8_PDBN059569.tar.gz | nanopore | 722817654.0 | 657296.0 | ena RUN CENTER FOR GENOMIC REGULATION CRG 07 07 2020 10:25:22:388 1 | 0:1099.68 | A:206996491;C:157022109;G:155085437;T:203713617;N:0 | 1099 | 206996491 | 157022109 | 155085437 | 203713617 | 0 | ERX4273208 | ERS4808398 | ERA2764399 | CENTER FOR GENOMIC REGULATION (CRG)|European Nucleotide Archive | CENTER FOR GENOMIC REGULATION (CRG) | T | under 1.2% mapping rate | ont | ont | unknown | poly_a | unknown | bulk | unknown | unknown | Spain | 2022-07-05 | Undetermined | Undetermined | Undetermined | Undetermined | ||||||||||||||||||||||||||||
| 9925 | 9925 | ERR4335436 | ERX4282181 | ERS4818366 | ERP122761 | PRJEB39265 | RNA dynamics during zebrafish development | ena-STUDY-CENTER FOR GENOMIC REGULATION (CRG)-06-07-2020-15:41:43:771-1183 | Other | RNA dynamics during early zebrafish development | ENA FIRST PUBLIC:2022 07 05|ENA LAST UPDATE:2022 07 05 | WT 6h rep2 | WT 6h rep2 | JD W23 PRPN039928 | ENA FIRST PUBLIC:2022 07 05T12:06:24Z|organism:Danio rerio|ENA LAST UPDATE:2022 07 05T12:06:24Z|scientific name:Danio rerio|common name:zebrafish|ENA FIRST PUBLIC:2022 07 05|ENA LAST UPDATE:2022 07 05 | PromethION sequencing | ena EXPERIMENT CENTER FOR GENOMIC REGULATION CRG 13 07 2020 18:19:23:456 1 | unspecified | 1 | RNA-Seq | TRANSCRIPTOMIC | Oligo-dT | SINGLE | OXFORD_NANOPORE | PromethION | ERP122761 | PromethION sequencing | ENA FIRST PUBLIC:2022 07 05|ENA LAST UPDATE:2022 07 05 | JD-W23_PRPN039928.tar.gz | nanopore | 1268761319.0 | 1385621.0 | ena RUN CENTER FOR GENOMIC REGULATION CRG 13 07 2020 18:19:23:457 1 | 0:915.66 | A:366823862;C:275507684;G:284634548;T:341795225;N:0 | 915 | 366823862 | 275507684 | 284634548 | 341795225 | 0 | ERX4282181 | ERS4818366 | ERA2769006 | CENTER FOR GENOMIC REGULATION (CRG)|European Nucleotide Archive | CENTER FOR GENOMIC REGULATION (CRG) | T | under 1.2% mapping rate | ont | ont | unknown | poly_a | unknown | bulk | unknown | unknown | Spain | 2022-07-05 | Undetermined | Undetermined | Undetermined | Undetermined | |||||||||||||||||||||||||||||
| 9926 | 9926 | ERR4321680 | ERX4268538 | ERS4808125 | ERP122761 | PRJEB39265 | RNA dynamics during zebrafish development | ena-STUDY-CENTER FOR GENOMIC REGULATION (CRG)-06-07-2020-15:41:43:771-1183 | Other | RNA dynamics during early zebrafish development | ENA FIRST PUBLIC:2022 07 05|ENA LAST UPDATE:2022 07 05 | WT 0h rep1 | WT 0h rep1 | JD A1 GDDN003032 | ENA FIRST PUBLIC:2022 07 05T12:06:22Z|organism:Danio rerio|ENA LAST UPDATE:2022 07 05T12:06:22Z|scientific name:Danio rerio|common name:zebrafish|ENA FIRST PUBLIC:2022 07 05|ENA LAST UPDATE:2022 07 05 | GridION sequencing | ena EXPERIMENT CENTER FOR GENOMIC REGULATION CRG 06 07 2020 17:45:26:236 1 | unspecified | 1 | RNA-Seq | TRANSCRIPTOMIC | Oligo-dT | SINGLE | OXFORD_NANOPORE | GridION | ERP122761 | GridION sequencing | ENA FIRST PUBLIC:2022 07 05|ENA LAST UPDATE:2022 07 05 | JD-A1_GDDN003032.tar.gz | nanopore | 753417826.0 | 698774.0 | ena RUN CENTER FOR GENOMIC REGULATION CRG 06 07 2020 17:45:26:236 1 | 0:1078.20 | A:214525685;C:165042952;G:171160615;T:202688574;N:0 | 1078 | 214525685 | 165042952 | 171160615 | 202688574 | 0 | ERX4268538 | ERS4808125 | ERA2763718 | CENTER FOR GENOMIC REGULATION (CRG)|European Nucleotide Archive | CENTER FOR GENOMIC REGULATION (CRG) | T | long read | ont | ont | unknown | poly_a | unknown | bulk | unknown | unknown | Spain | 2022-07-05 | Undetermined | Undetermined | Undetermined | Undetermined | |||||||||||||||||||||||||||||
| 9951 | 9951 | ERR5961093 | ERX5601614 | ERS6490233 | ERP123184 | PRJEB39643 | CRISPR tools for zebrafish | ena-STUDY-UNIVERSITY OF CALIFORNIA - DAVIS-29-07-2020-18:23:16:380-2095 | Other | Zebrafish have practical features that make them a useful model for higher throughput tests of gene function using CRISPR/Cas9 editing to create 'knockout' models. A large number of computational and empirical tools exist to design CRISPR assays but often produce varied predictions across methods. To systematically assess accuracy of tool predictions of on and off target gene editing we subjected zebrafish embryos to CRISPR/Cas9 with 50 different guide RNAs gRNAs targeting 14 genes. We compared our experimental in vivo editing efficiencies in mosaic G0 embryos with those predicted by seven commonly used gRNA design tools and found large discrepancies between methods. Assessing off target mutations predicted in silico and in vitro found that the majority of tested loci had low in vivo frequencies <1%. To characterize if commonly used 'mock' CRISPR controls larvae injected with Cas9 enzyme or mRNA with no gRNA exhibited spurious molecular features that might exacerbate studies of G0 mosaic CRISPR knockout fish we generated an RNA seq dataset of various control larvae at 5 dpf From this while we found no evidence of spontaneous somatic mutations of injected larvae we did identify several hundreds of differentially expressed genes with high variability between injection types. Network analyses of shared differentially expressed genes in the 'mock' injected larvae implicated a number of key regulators of common metabolic pathways and gene ontology analysis revealed connections with response to wounding and cytoskeleton organization highlighting a potential lasting effect from the microinjection process that requires further investigation. Overall our results provide a valuable resource for the zebrafish community for the design and execution of CRISPR/Cas9 experiments. | ENA FIRST PUBLIC:2020 10 31|ENA LAST UPDATE:2021 05 25 | RNA seq data of 5dpf larvae uninjected controls from the same batch. | Uninjected2 | Uninjected2 | ENA FIRST PUBLIC:2021 12 14|ENA LAST UPDATE:2021 12 14 | Illumina HiSeq 4000 paired end sequencing | ena EXPERIMENT UNIVERSITY OF CALIFORNIA DAVIS 25 05 2021 08:56:51:032 8 | unspecified | 1 | RNA-Seq | TRANSCRIPTOMIC | Oligo-dT | PAIRED | ILLUMINA | Illumina HiSeq 4000 | ERP123184 | Illumina HiSeq 4000 paired end sequencing | ENA FIRST PUBLIC:2021 12 14|ENA LAST UPDATE:2021 12 14 | ena RUN UNIVERSITY OF CALIFORNIA DAVIS 25 05 2021 08:56:51:032 8 | ERX5601614 | ERA4417635 | UNIVERSITY OF CALIFORNIA - DAVIS|European Nucleotide Archive | UNIVERSITY OF CALIFORNIA - DAVIS | illumina | hiseq_era | unknown | poly_a | unknown | bulk | unknown | unknown | United States | 2020-10-31 | Larval | Larval | Undetermined | Undetermined | ||||||||||||||||||||||||||||||||||||||||||||
| 9952 | 9952 | ERR5961092 | ERX5601613 | ERS6490232 | ERP123184 | PRJEB39643 | CRISPR tools for zebrafish | ena-STUDY-UNIVERSITY OF CALIFORNIA - DAVIS-29-07-2020-18:23:16:380-2095 | Other | Zebrafish have practical features that make them a useful model for higher throughput tests of gene function using CRISPR/Cas9 editing to create 'knockout' models. A large number of computational and empirical tools exist to design CRISPR assays but often produce varied predictions across methods. To systematically assess accuracy of tool predictions of on and off target gene editing we subjected zebrafish embryos to CRISPR/Cas9 with 50 different guide RNAs gRNAs targeting 14 genes. We compared our experimental in vivo editing efficiencies in mosaic G0 embryos with those predicted by seven commonly used gRNA design tools and found large discrepancies between methods. Assessing off target mutations predicted in silico and in vitro found that the majority of tested loci had low in vivo frequencies <1%. To characterize if commonly used 'mock' CRISPR controls larvae injected with Cas9 enzyme or mRNA with no gRNA exhibited spurious molecular features that might exacerbate studies of G0 mosaic CRISPR knockout fish we generated an RNA seq dataset of various control larvae at 5 dpf From this while we found no evidence of spontaneous somatic mutations of injected larvae we did identify several hundreds of differentially expressed genes with high variability between injection types. Network analyses of shared differentially expressed genes in the 'mock' injected larvae implicated a number of key regulators of common metabolic pathways and gene ontology analysis revealed connections with response to wounding and cytoskeleton organization highlighting a potential lasting effect from the microinjection process that requires further investigation. Overall our results provide a valuable resource for the zebrafish community for the design and execution of CRISPR/Cas9 experiments. | ENA FIRST PUBLIC:2020 10 31|ENA LAST UPDATE:2021 05 25 | RNA seq data of 5dpf larvae uninjected controls from the same batch. | Uninjected1 | SAMEA8805898 | UNIVERSITY OF CALIFORNIA - DAVIS | ENA first public:2021 06 23|ENA last update:2021 06 23|External Id:SAMEA8805898|INSDC center alias:UNIVERSITY OF CALIFORNIA DAVIS|INSDC center name:UNIVERSITY OF CALIFORNIA DAVIS|INSDC first public:2021 06 23T08:18:31Z|INSDC last update:2021 06 23T08:18:31Z|INSDC status:public|Submitter Id:Uninjected1|common name:zebrafish|sample name:Uninjected1 | Illumina HiSeq 4000 paired end sequencing | ena EXPERIMENT UNIVERSITY OF CALIFORNIA DAVIS 25 05 2021 08:56:51:032 7 | unspecified | 1 | RNA-Seq | TRANSCRIPTOMIC | Oligo-dT | PAIRED | ILLUMINA | Illumina HiSeq 4000 | ERP123184 | Illumina HiSeq 4000 paired end sequencing | ENA FIRST PUBLIC:2021 06 23|ENA LAST UPDATE:2021 06 23 | WT1_R1_001.fastq WT1_R2_001.fastq | fastq fastq | 5664550800.0 | 18881836.0 | ena RUN UNIVERSITY OF CALIFORNIA DAVIS 25 05 2021 08:56:51:032 7 | 0:150 1:150 | A:1493322675;C:1337347146;G:1388414458;T:1444981758;N:484763 | 150 | 150 | 1493322675 | 1337347146 | 1388414458 | 1444981758 | 484763 | ERX5601613 | ERS6490232 | ERA4417635 | UNIVERSITY OF CALIFORNIA - DAVIS|European Nucleotide Archive | UNIVERSITY OF CALIFORNIA - DAVIS | 2 | 0.95769 | 0.95822 | 0.04407 | 0.04391 | 0.69934 | 0.69958 | 0.4411 | 0.45319 | 150 | 150 | B | B | biological fallback assumption | illumina | hiseq_era | unknown | poly_a | unknown | bulk | unknown | unknown | United States | 2020-10-31 | Larval | Larval | Undetermined | Undetermined | |||||||||||||||
| 9953 | 9953 | ERR5961096 | ERX5601617 | ERS6490236 | ERP123184 | PRJEB39643 | CRISPR tools for zebrafish | ena-STUDY-UNIVERSITY OF CALIFORNIA - DAVIS-29-07-2020-18:23:16:380-2095 | Other | Zebrafish have practical features that make them a useful model for higher throughput tests of gene function using CRISPR/Cas9 editing to create 'knockout' models. A large number of computational and empirical tools exist to design CRISPR assays but often produce varied predictions across methods. To systematically assess accuracy of tool predictions of on and off target gene editing we subjected zebrafish embryos to CRISPR/Cas9 with 50 different guide RNAs gRNAs targeting 14 genes. We compared our experimental in vivo editing efficiencies in mosaic G0 embryos with those predicted by seven commonly used gRNA design tools and found large discrepancies between methods. Assessing off target mutations predicted in silico and in vitro found that the majority of tested loci had low in vivo frequencies <1%. To characterize if commonly used 'mock' CRISPR controls larvae injected with Cas9 enzyme or mRNA with no gRNA exhibited spurious molecular features that might exacerbate studies of G0 mosaic CRISPR knockout fish we generated an RNA seq dataset of various control larvae at 5 dpf From this while we found no evidence of spontaneous somatic mutations of injected larvae we did identify several hundreds of differentially expressed genes with high variability between injection types. Network analyses of shared differentially expressed genes in the 'mock' injected larvae implicated a number of key regulators of common metabolic pathways and gene ontology analysis revealed connections with response to wounding and cytoskeleton organization highlighting a potential lasting effect from the microinjection process that requires further investigation. Overall our results provide a valuable resource for the zebrafish community for the design and execution of CRISPR/Cas9 experiments. | ENA FIRST PUBLIC:2020 10 31|ENA LAST UPDATE:2021 05 25 | RNA seq data of 5dpf larvae uninjected controls from the an additional batch. | Uninjected5 | SAMEA8805902 | UNIVERSITY OF CALIFORNIA - DAVIS | ENA first public:2021 05 26|ENA last update:2021 05 26|External Id:SAMEA8805902|INSDC center alias:UNIVERSITY OF CALIFORNIA DAVIS|INSDC center name:UNIVERSITY OF CALIFORNIA DAVIS|INSDC first public:2021 05 26T09:21:17Z|INSDC last update:2021 05 26T09:21:17Z|INSDC status:public|Submitter Id:Uninjected5|common name:zebrafish|sample name:Uninjected5 | Illumina HiSeq 4000 paired end sequencing | ena EXPERIMENT UNIVERSITY OF CALIFORNIA DAVIS 25 05 2021 08:56:51:032 11 | unspecified | 1 | RNA-Seq | TRANSCRIPTOMIC | Oligo-dT | PAIRED | ILLUMINA | Illumina HiSeq 4000 | ERP123184 | Illumina HiSeq 4000 paired end sequencing | ENA FIRST PUBLIC:2021 05 26|ENA LAST UPDATE:2021 05 26 | WT5_R1_001.fastq.gz WT5_R2_001.fastq.gz | fastq fastq | 9088444200.0 | 30294814.0 | ena RUN UNIVERSITY OF CALIFORNIA DAVIS 25 05 2021 08:56:51:032 11 | 0:150 1:150 | A:2404715160;C:2098546919;G:2330441921;T:2254532578;N:207622 | 150 | 150 | 2404715160 | 2098546919 | 2330441921 | 2254532578 | 207622 | ERX5601617 | ERS6490236 | ERA4417635 | UNIVERSITY OF CALIFORNIA - DAVIS|European Nucleotide Archive | UNIVERSITY OF CALIFORNIA - DAVIS | 2 | 0.95076 | 0.93857 | 0.06296 | 0.06222 | 0.68485 | 0.70047 | 0.47429 | 0.48524 | 150 | 150 | B | B | biological fallback assumption | illumina | hiseq_era | unknown | poly_a | unknown | bulk | unknown | unknown | United States | 2020-10-31 | Larval | Larval | Undetermined | Undetermined | |||||||||||||||
| 9954 | 9954 | ERR5961095 | ERX5601616 | ERS6490235 | ERP123184 | PRJEB39643 | CRISPR tools for zebrafish | ena-STUDY-UNIVERSITY OF CALIFORNIA - DAVIS-29-07-2020-18:23:16:380-2095 | Other | Zebrafish have practical features that make them a useful model for higher throughput tests of gene function using CRISPR/Cas9 editing to create 'knockout' models. A large number of computational and empirical tools exist to design CRISPR assays but often produce varied predictions across methods. To systematically assess accuracy of tool predictions of on and off target gene editing we subjected zebrafish embryos to CRISPR/Cas9 with 50 different guide RNAs gRNAs targeting 14 genes. We compared our experimental in vivo editing efficiencies in mosaic G0 embryos with those predicted by seven commonly used gRNA design tools and found large discrepancies between methods. Assessing off target mutations predicted in silico and in vitro found that the majority of tested loci had low in vivo frequencies <1%. To characterize if commonly used 'mock' CRISPR controls larvae injected with Cas9 enzyme or mRNA with no gRNA exhibited spurious molecular features that might exacerbate studies of G0 mosaic CRISPR knockout fish we generated an RNA seq dataset of various control larvae at 5 dpf From this while we found no evidence of spontaneous somatic mutations of injected larvae we did identify several hundreds of differentially expressed genes with high variability between injection types. Network analyses of shared differentially expressed genes in the 'mock' injected larvae implicated a number of key regulators of common metabolic pathways and gene ontology analysis revealed connections with response to wounding and cytoskeleton organization highlighting a potential lasting effect from the microinjection process that requires further investigation. Overall our results provide a valuable resource for the zebrafish community for the design and execution of CRISPR/Cas9 experiments. | ENA FIRST PUBLIC:2020 10 31|ENA LAST UPDATE:2021 05 25 | RNA seq data of 5dpf larvae uninjected controls from the an additional batch. | Uninjected4 | SAMEA8805901 | UNIVERSITY OF CALIFORNIA - DAVIS | ENA first public:2021 05 26|ENA last update:2021 05 26|External Id:SAMEA8805901|INSDC center alias:UNIVERSITY OF CALIFORNIA DAVIS|INSDC center name:UNIVERSITY OF CALIFORNIA DAVIS|INSDC first public:2021 05 26T09:21:17Z|INSDC last update:2021 05 26T09:21:17Z|INSDC status:public|Submitter Id:Uninjected4|common name:zebrafish|sample name:Uninjected4 | Illumina HiSeq 4000 paired end sequencing | ena EXPERIMENT UNIVERSITY OF CALIFORNIA DAVIS 25 05 2021 08:56:51:032 10 | unspecified | 1 | RNA-Seq | TRANSCRIPTOMIC | Oligo-dT | PAIRED | ILLUMINA | Illumina HiSeq 4000 | ERP123184 | Illumina HiSeq 4000 paired end sequencing | ENA FIRST PUBLIC:2021 05 26|ENA LAST UPDATE:2021 05 26 | WT4_R1_001.fastq.gz WT4_R2_001.fastq.gz | fastq fastq | 9222083700.0 | 30740279.0 | ena RUN UNIVERSITY OF CALIFORNIA DAVIS 25 05 2021 08:56:51:032 10 | 0:150 1:150 | A:2328864269;C:2117919914;G:2560286870;T:2214801519;N:211128 | 150 | 150 | 2328864269 | 2117919914 | 2560286870 | 2214801519 | 211128 | ERX5601616 | ERS6490235 | ERA4417635 | UNIVERSITY OF CALIFORNIA - DAVIS|European Nucleotide Archive | UNIVERSITY OF CALIFORNIA - DAVIS | 2 | 0.95124 | 0.92695 | 0.05122 | 0.05036 | 0.69118 | 0.70634 | 0.47769 | 0.47806 | 150 | 150 | B | B | biological fallback assumption | illumina | hiseq_era | unknown | poly_a | unknown | bulk | unknown | unknown | United States | 2020-10-31 | Larval | Larval | Undetermined | Undetermined | |||||||||||||||
| 9955 | 9955 | ERR5961094 | ERX5601615 | ERS6490234 | ERP123184 | PRJEB39643 | CRISPR tools for zebrafish | ena-STUDY-UNIVERSITY OF CALIFORNIA - DAVIS-29-07-2020-18:23:16:380-2095 | Other | Zebrafish have practical features that make them a useful model for higher throughput tests of gene function using CRISPR/Cas9 editing to create 'knockout' models. A large number of computational and empirical tools exist to design CRISPR assays but often produce varied predictions across methods. To systematically assess accuracy of tool predictions of on and off target gene editing we subjected zebrafish embryos to CRISPR/Cas9 with 50 different guide RNAs gRNAs targeting 14 genes. We compared our experimental in vivo editing efficiencies in mosaic G0 embryos with those predicted by seven commonly used gRNA design tools and found large discrepancies between methods. Assessing off target mutations predicted in silico and in vitro found that the majority of tested loci had low in vivo frequencies <1%. To characterize if commonly used 'mock' CRISPR controls larvae injected with Cas9 enzyme or mRNA with no gRNA exhibited spurious molecular features that might exacerbate studies of G0 mosaic CRISPR knockout fish we generated an RNA seq dataset of various control larvae at 5 dpf From this while we found no evidence of spontaneous somatic mutations of injected larvae we did identify several hundreds of differentially expressed genes with high variability between injection types. Network analyses of shared differentially expressed genes in the 'mock' injected larvae implicated a number of key regulators of common metabolic pathways and gene ontology analysis revealed connections with response to wounding and cytoskeleton organization highlighting a potential lasting effect from the microinjection process that requires further investigation. Overall our results provide a valuable resource for the zebrafish community for the design and execution of CRISPR/Cas9 experiments. | ENA FIRST PUBLIC:2020 10 31|ENA LAST UPDATE:2021 05 25 | RNA seq data of 5dpf larvae uninjected controls from the an additional batch. | Uninjected3 | SAMEA8805900 | UNIVERSITY OF CALIFORNIA - DAVIS | ENA first public:2021 05 26|ENA last update:2021 05 26|External Id:SAMEA8805900|INSDC center alias:UNIVERSITY OF CALIFORNIA DAVIS|INSDC center name:UNIVERSITY OF CALIFORNIA DAVIS|INSDC first public:2021 05 26T09:21:17Z|INSDC last update:2021 05 26T09:21:17Z|INSDC status:public|Submitter Id:Uninjected3|common name:zebrafish|sample name:Uninjected3 | Illumina HiSeq 4000 paired end sequencing | ena EXPERIMENT UNIVERSITY OF CALIFORNIA DAVIS 25 05 2021 08:56:51:032 9 | unspecified | 1 | RNA-Seq | TRANSCRIPTOMIC | Oligo-dT | PAIRED | ILLUMINA | Illumina HiSeq 4000 | ERP123184 | Illumina HiSeq 4000 paired end sequencing | ENA FIRST PUBLIC:2021 05 26|ENA LAST UPDATE:2021 05 26 | WT3_R1_001.fastq.gz WT3_R2_001.fastq.gz | fastq fastq | 9088444200.0 | 30294814.0 | ena RUN UNIVERSITY OF CALIFORNIA DAVIS 25 05 2021 08:56:51:032 9 | 0:150 1:150 | A:2404715160;C:2098546919;G:2330441921;T:2254532578;N:207622 | 150 | 150 | 2404715160 | 2098546919 | 2330441921 | 2254532578 | 207622 | ERX5601615 | ERS6490234 | ERA4417635 | UNIVERSITY OF CALIFORNIA - DAVIS|European Nucleotide Archive | UNIVERSITY OF CALIFORNIA - DAVIS | 2 | 0.95071 | 0.93855 | 0.06295 | 0.06183 | 0.68511 | 0.70065 | 0.47621 | 0.48573 | 150 | 150 | B | B | biological fallback assumption | illumina | hiseq_era | unknown | poly_a | unknown | bulk | unknown | unknown | United States | 2020-10-31 | Larval | Larval | Undetermined | Undetermined | |||||||||||||||
| 9956 | 9956 | ERR5961091 | ERX5601612 | ERS6490231 | ERP123184 | PRJEB39643 | CRISPR tools for zebrafish | ena-STUDY-UNIVERSITY OF CALIFORNIA - DAVIS-29-07-2020-18:23:16:380-2095 | Other | Zebrafish have practical features that make them a useful model for higher throughput tests of gene function using CRISPR/Cas9 editing to create 'knockout' models. A large number of computational and empirical tools exist to design CRISPR assays but often produce varied predictions across methods. To systematically assess accuracy of tool predictions of on and off target gene editing we subjected zebrafish embryos to CRISPR/Cas9 with 50 different guide RNAs gRNAs targeting 14 genes. We compared our experimental in vivo editing efficiencies in mosaic G0 embryos with those predicted by seven commonly used gRNA design tools and found large discrepancies between methods. Assessing off target mutations predicted in silico and in vitro found that the majority of tested loci had low in vivo frequencies <1%. To characterize if commonly used 'mock' CRISPR controls larvae injected with Cas9 enzyme or mRNA with no gRNA exhibited spurious molecular features that might exacerbate studies of G0 mosaic CRISPR knockout fish we generated an RNA seq dataset of various control larvae at 5 dpf From this while we found no evidence of spontaneous somatic mutations of injected larvae we did identify several hundreds of differentially expressed genes with high variability between injection types. Network analyses of shared differentially expressed genes in the 'mock' injected larvae implicated a number of key regulators of common metabolic pathways and gene ontology analysis revealed connections with response to wounding and cytoskeleton organization highlighting a potential lasting effect from the microinjection process that requires further investigation. Overall our results provide a valuable resource for the zebrafish community for the design and execution of CRISPR/Cas9 experiments. | ENA FIRST PUBLIC:2020 10 31|ENA LAST UPDATE:2021 05 25 | RNA seq data of 5dpf larvae injected with Cas9 enzyme at the one cell stage. | Cas9enzyme3 | SAMEA8805897 | UNIVERSITY OF CALIFORNIA - DAVIS | ENA first public:2021 05 26|ENA last update:2021 05 26|External Id:SAMEA8805897|INSDC center alias:UNIVERSITY OF CALIFORNIA DAVIS|INSDC center name:UNIVERSITY OF CALIFORNIA DAVIS|INSDC first public:2021 05 26T09:21:17Z|INSDC last update:2021 05 26T09:21:17Z|INSDC status:public|Submitter Id:Cas9enzyme3|common name:zebrafish|sample name:Cas9enzyme3 | Illumina HiSeq 4000 paired end sequencing | ena EXPERIMENT UNIVERSITY OF CALIFORNIA DAVIS 25 05 2021 08:56:51:031 6 | unspecified | 1 | RNA-Seq | TRANSCRIPTOMIC | Oligo-dT | PAIRED | ILLUMINA | Illumina HiSeq 4000 | ERP123184 | Illumina HiSeq 4000 paired end sequencing | ENA FIRST PUBLIC:2021 05 26|ENA LAST UPDATE:2021 05 26 | RNA3_R1_001.fastq RNA3_R2_001.fastq | fastq fastq | 5814764400.0 | 19382548.0 | ena RUN UNIVERSITY OF CALIFORNIA DAVIS 25 05 2021 08:56:51:031 6 | 0:150 1:150 | A:1550014255;C:1359566801;G:1419514658;T:1485169819;N:498867 | 150 | 150 | 1550014255 | 1359566801 | 1419514658 | 1485169819 | 498867 | ERX5601612 | ERS6490231 | ERA4417635 | UNIVERSITY OF CALIFORNIA - DAVIS|European Nucleotide Archive | UNIVERSITY OF CALIFORNIA - DAVIS | 2 | 0.96166 | 0.96182 | 0.04962 | 0.04954 | 0.68172 | 0.68144 | 0.45683 | 0.46611 | 150 | 150 | B | B | biological fallback assumption | illumina | hiseq_era | unknown | poly_a | unknown | bulk | unknown | unknown | United States | 2020-10-31 | Larval | Larval | Undetermined | Undetermined | |||||||||||||||
| 9957 | 9957 | ERR5961090 | ERX5601611 | ERS6490230 | ERP123184 | PRJEB39643 | CRISPR tools for zebrafish | ena-STUDY-UNIVERSITY OF CALIFORNIA - DAVIS-29-07-2020-18:23:16:380-2095 | Other | Zebrafish have practical features that make them a useful model for higher throughput tests of gene function using CRISPR/Cas9 editing to create 'knockout' models. A large number of computational and empirical tools exist to design CRISPR assays but often produce varied predictions across methods. To systematically assess accuracy of tool predictions of on and off target gene editing we subjected zebrafish embryos to CRISPR/Cas9 with 50 different guide RNAs gRNAs targeting 14 genes. We compared our experimental in vivo editing efficiencies in mosaic G0 embryos with those predicted by seven commonly used gRNA design tools and found large discrepancies between methods. Assessing off target mutations predicted in silico and in vitro found that the majority of tested loci had low in vivo frequencies <1%. To characterize if commonly used 'mock' CRISPR controls larvae injected with Cas9 enzyme or mRNA with no gRNA exhibited spurious molecular features that might exacerbate studies of G0 mosaic CRISPR knockout fish we generated an RNA seq dataset of various control larvae at 5 dpf From this while we found no evidence of spontaneous somatic mutations of injected larvae we did identify several hundreds of differentially expressed genes with high variability between injection types. Network analyses of shared differentially expressed genes in the 'mock' injected larvae implicated a number of key regulators of common metabolic pathways and gene ontology analysis revealed connections with response to wounding and cytoskeleton organization highlighting a potential lasting effect from the microinjection process that requires further investigation. Overall our results provide a valuable resource for the zebrafish community for the design and execution of CRISPR/Cas9 experiments. | ENA FIRST PUBLIC:2020 10 31|ENA LAST UPDATE:2021 05 25 | RNA seq data of 5dpf larvae injected with Cas9 enzyme at the one cell stage. | Cas9enzyme2 | SAMEA8805896 | UNIVERSITY OF CALIFORNIA - DAVIS | ENA first public:2021 05 26|ENA last update:2021 05 26|External Id:SAMEA8805896|INSDC center alias:UNIVERSITY OF CALIFORNIA DAVIS|INSDC center name:UNIVERSITY OF CALIFORNIA DAVIS|INSDC first public:2021 05 26T09:21:17Z|INSDC last update:2021 05 26T09:21:17Z|INSDC status:public|Submitter Id:Cas9enzyme2|common name:zebrafish|sample name:Cas9enzyme2 | Illumina HiSeq 4000 paired end sequencing | ena EXPERIMENT UNIVERSITY OF CALIFORNIA DAVIS 25 05 2021 08:56:51:031 5 | unspecified | 1 | RNA-Seq | TRANSCRIPTOMIC | Oligo-dT | PAIRED | ILLUMINA | Illumina HiSeq 4000 | ERP123184 | Illumina HiSeq 4000 paired end sequencing | ENA FIRST PUBLIC:2021 05 26|ENA LAST UPDATE:2021 05 26 | RNA2_R1_001.fastq RNA2_R2_001.fastq | fastq fastq | 5927606100.0 | 19758687.0 | ena RUN UNIVERSITY OF CALIFORNIA DAVIS 25 05 2021 08:56:51:031 5 | 0:150 1:150 | A:1579767222;C:1387675810;G:1439122138;T:1520529396;N:511534 | 150 | 150 | 1579767222 | 1387675810 | 1439122138 | 1520529396 | 511534 | ERX5601611 | ERS6490230 | ERA4417635 | UNIVERSITY OF CALIFORNIA - DAVIS|European Nucleotide Archive | UNIVERSITY OF CALIFORNIA - DAVIS | 2 | 0.96217 | 0.96214 | 0.05174 | 0.05176 | 0.67083 | 0.6716 | 0.46772 | 0.47128 | 150 | 150 | B | B | biological fallback assumption | illumina | hiseq_era | unknown | poly_a | unknown | bulk | unknown | unknown | United States | 2020-10-31 | Larval | Larval | Undetermined | Undetermined | |||||||||||||||
| 9958 | 9958 | ERR5961089 | ERX5601610 | ERS6490229 | ERP123184 | PRJEB39643 | CRISPR tools for zebrafish | ena-STUDY-UNIVERSITY OF CALIFORNIA - DAVIS-29-07-2020-18:23:16:380-2095 | Other | Zebrafish have practical features that make them a useful model for higher throughput tests of gene function using CRISPR/Cas9 editing to create 'knockout' models. A large number of computational and empirical tools exist to design CRISPR assays but often produce varied predictions across methods. To systematically assess accuracy of tool predictions of on and off target gene editing we subjected zebrafish embryos to CRISPR/Cas9 with 50 different guide RNAs gRNAs targeting 14 genes. We compared our experimental in vivo editing efficiencies in mosaic G0 embryos with those predicted by seven commonly used gRNA design tools and found large discrepancies between methods. Assessing off target mutations predicted in silico and in vitro found that the majority of tested loci had low in vivo frequencies <1%. To characterize if commonly used 'mock' CRISPR controls larvae injected with Cas9 enzyme or mRNA with no gRNA exhibited spurious molecular features that might exacerbate studies of G0 mosaic CRISPR knockout fish we generated an RNA seq dataset of various control larvae at 5 dpf From this while we found no evidence of spontaneous somatic mutations of injected larvae we did identify several hundreds of differentially expressed genes with high variability between injection types. Network analyses of shared differentially expressed genes in the 'mock' injected larvae implicated a number of key regulators of common metabolic pathways and gene ontology analysis revealed connections with response to wounding and cytoskeleton organization highlighting a potential lasting effect from the microinjection process that requires further investigation. Overall our results provide a valuable resource for the zebrafish community for the design and execution of CRISPR/Cas9 experiments. | ENA FIRST PUBLIC:2020 10 31|ENA LAST UPDATE:2021 05 25 | RNA seq data of 5dpf larvae injected with Cas9 enzyme at the one cell stage. | Cas9enzyme1 | SAMEA8805895 | UNIVERSITY OF CALIFORNIA - DAVIS | ENA first public:2021 05 26|ENA last update:2021 05 26|External Id:SAMEA8805895|INSDC center alias:UNIVERSITY OF CALIFORNIA DAVIS|INSDC center name:UNIVERSITY OF CALIFORNIA DAVIS|INSDC first public:2021 05 26T09:21:17Z|INSDC last update:2021 05 26T09:21:17Z|INSDC status:public|Submitter Id:Cas9enzyme1|common name:zebrafish|sample name:Cas9enzyme1 | Illumina HiSeq 4000 paired end sequencing | ena EXPERIMENT UNIVERSITY OF CALIFORNIA DAVIS 25 05 2021 08:56:51:031 4 | unspecified | 1 | RNA-Seq | TRANSCRIPTOMIC | Oligo-dT | PAIRED | ILLUMINA | Illumina HiSeq 4000 | ERP123184 | Illumina HiSeq 4000 paired end sequencing | ENA FIRST PUBLIC:2021 05 26|ENA LAST UPDATE:2021 05 26 | RNA1_R1_001.fastq RNA1_R2_001.fastq | fastq fastq | 5738133000.0 | 19127110.0 | ena RUN UNIVERSITY OF CALIFORNIA DAVIS 25 05 2021 08:56:51:031 4 | 0:150 1:150 | A:1530616107;C:1342298453;G:1401357126;T:1463360623;N:500691 | 150 | 150 | 1530616107 | 1342298453 | 1401357126 | 1463360623 | 500691 | ERX5601610 | ERS6490229 | ERA4417635 | UNIVERSITY OF CALIFORNIA - DAVIS|European Nucleotide Archive | UNIVERSITY OF CALIFORNIA - DAVIS | 2 | 0.95709 | 0.9569 | 0.05132 | 0.05149 | 0.68771 | 0.68846 | 0.45988 | 0.47329 | 150 | 150 | B | B | biological fallback assumption | illumina | hiseq_era | unknown | poly_a | unknown | bulk | unknown | unknown | United States | 2020-10-31 | Larval | Larval | Undetermined | Undetermined | |||||||||||||||
| 9959 | 9959 | ERR5961088 | ERX5601609 | ERS6490228 | ERP123184 | PRJEB39643 | CRISPR tools for zebrafish | ena-STUDY-UNIVERSITY OF CALIFORNIA - DAVIS-29-07-2020-18:23:16:380-2095 | Other | Zebrafish have practical features that make them a useful model for higher throughput tests of gene function using CRISPR/Cas9 editing to create 'knockout' models. A large number of computational and empirical tools exist to design CRISPR assays but often produce varied predictions across methods. To systematically assess accuracy of tool predictions of on and off target gene editing we subjected zebrafish embryos to CRISPR/Cas9 with 50 different guide RNAs gRNAs targeting 14 genes. We compared our experimental in vivo editing efficiencies in mosaic G0 embryos with those predicted by seven commonly used gRNA design tools and found large discrepancies between methods. Assessing off target mutations predicted in silico and in vitro found that the majority of tested loci had low in vivo frequencies <1%. To characterize if commonly used 'mock' CRISPR controls larvae injected with Cas9 enzyme or mRNA with no gRNA exhibited spurious molecular features that might exacerbate studies of G0 mosaic CRISPR knockout fish we generated an RNA seq dataset of various control larvae at 5 dpf From this while we found no evidence of spontaneous somatic mutations of injected larvae we did identify several hundreds of differentially expressed genes with high variability between injection types. Network analyses of shared differentially expressed genes in the 'mock' injected larvae implicated a number of key regulators of common metabolic pathways and gene ontology analysis revealed connections with response to wounding and cytoskeleton organization highlighting a potential lasting effect from the microinjection process that requires further investigation. Overall our results provide a valuable resource for the zebrafish community for the design and execution of CRISPR/Cas9 experiments. | ENA FIRST PUBLIC:2020 10 31|ENA LAST UPDATE:2021 05 25 | RNA seq data of 5dpf larvae injected with Cas9mRNA at the one cell stage. | Cas9mRNA3 | SAMEA8805894 | UNIVERSITY OF CALIFORNIA - DAVIS | ENA first public:2021 05 26|ENA last update:2021 05 26|External Id:SAMEA8805894|INSDC center alias:UNIVERSITY OF CALIFORNIA DAVIS|INSDC center name:UNIVERSITY OF CALIFORNIA DAVIS|INSDC first public:2021 05 26T09:21:17Z|INSDC last update:2021 05 26T09:21:17Z|INSDC status:public|Submitter Id:Cas9mRNA3|common name:zebrafish|sample name:Cas9mRNA3 | Illumina HiSeq 4000 paired end sequencing | ena EXPERIMENT UNIVERSITY OF CALIFORNIA DAVIS 25 05 2021 08:56:51:031 3 | unspecified | 1 | RNA-Seq | TRANSCRIPTOMIC | Oligo-dT | PAIRED | ILLUMINA | Illumina HiSeq 4000 | ERP123184 | Illumina HiSeq 4000 paired end sequencing | ENA FIRST PUBLIC:2021 05 26|ENA LAST UPDATE:2021 05 26 | PRO3_R1_001.fastq PRO3_R2_001.fastq | fastq fastq | 9635841900.0 | 32119473.0 | ena RUN UNIVERSITY OF CALIFORNIA DAVIS 25 05 2021 08:56:51:031 3 | 0:150 1:150 | A:2562857735;C:2253487693;G:2325345541;T:2493627020;N:523911 | 150 | 150 | 2562857735 | 2253487693 | 2325345541 | 2493627020 | 523911 | ERX5601609 | ERS6490228 | ERA4417635 | UNIVERSITY OF CALIFORNIA - DAVIS|European Nucleotide Archive | UNIVERSITY OF CALIFORNIA - DAVIS | 2 | 0.95769 | 0.95696 | 0.05441 | 0.05397 | 0.67424 | 0.67407 | 0.46338 | 0.46444 | 150 | 150 | B | B | biological fallback assumption | illumina | hiseq_era | unknown | poly_a | unknown | bulk | unknown | unknown | United States | 2020-10-31 | Larval | Larval | Undetermined | Undetermined | |||||||||||||||
| 9960 | 9960 | ERR5961087 | ERX5601608 | ERS6490227 | ERP123184 | PRJEB39643 | CRISPR tools for zebrafish | ena-STUDY-UNIVERSITY OF CALIFORNIA - DAVIS-29-07-2020-18:23:16:380-2095 | Other | Zebrafish have practical features that make them a useful model for higher throughput tests of gene function using CRISPR/Cas9 editing to create 'knockout' models. A large number of computational and empirical tools exist to design CRISPR assays but often produce varied predictions across methods. To systematically assess accuracy of tool predictions of on and off target gene editing we subjected zebrafish embryos to CRISPR/Cas9 with 50 different guide RNAs gRNAs targeting 14 genes. We compared our experimental in vivo editing efficiencies in mosaic G0 embryos with those predicted by seven commonly used gRNA design tools and found large discrepancies between methods. Assessing off target mutations predicted in silico and in vitro found that the majority of tested loci had low in vivo frequencies <1%. To characterize if commonly used 'mock' CRISPR controls larvae injected with Cas9 enzyme or mRNA with no gRNA exhibited spurious molecular features that might exacerbate studies of G0 mosaic CRISPR knockout fish we generated an RNA seq dataset of various control larvae at 5 dpf From this while we found no evidence of spontaneous somatic mutations of injected larvae we did identify several hundreds of differentially expressed genes with high variability between injection types. Network analyses of shared differentially expressed genes in the 'mock' injected larvae implicated a number of key regulators of common metabolic pathways and gene ontology analysis revealed connections with response to wounding and cytoskeleton organization highlighting a potential lasting effect from the microinjection process that requires further investigation. Overall our results provide a valuable resource for the zebrafish community for the design and execution of CRISPR/Cas9 experiments. | ENA FIRST PUBLIC:2020 10 31|ENA LAST UPDATE:2021 05 25 | RNA seq data of 5dpf larvae injected with Cas9mRNA at the one cell stage. | Cas9mRNA2 | SAMEA8805893 | UNIVERSITY OF CALIFORNIA - DAVIS | ENA first public:2021 05 26|ENA last update:2021 05 26|External Id:SAMEA8805893|INSDC center alias:UNIVERSITY OF CALIFORNIA DAVIS|INSDC center name:UNIVERSITY OF CALIFORNIA DAVIS|INSDC first public:2021 05 26T09:21:17Z|INSDC last update:2021 05 26T09:21:17Z|INSDC status:public|Submitter Id:Cas9mRNA2|common name:zebrafish|sample name:Cas9mRNA2 | Illumina HiSeq 4000 paired end sequencing | ena EXPERIMENT UNIVERSITY OF CALIFORNIA DAVIS 25 05 2021 08:56:51:031 2 | unspecified | 1 | RNA-Seq | TRANSCRIPTOMIC | Oligo-dT | PAIRED | ILLUMINA | Illumina HiSeq 4000 | ERP123184 | Illumina HiSeq 4000 paired end sequencing | ENA FIRST PUBLIC:2021 05 26|ENA LAST UPDATE:2021 10 21 | PRO2_R1_001.fastq PRO2_R2_001.fastq | fastq fastq | 8990649900.0 | 29968833.0 | ena RUN UNIVERSITY OF CALIFORNIA DAVIS 25 05 2021 08:56:51:031 2 | 0:150 1:150 | A:2370044440;C:2140400380;G:2185347925;T:2294361536;N:495619 | 150 | 150 | 2370044440 | 2140400380 | 2185347925 | 2294361536 | 495619 | ERX5601608 | ERS6490227 | ERA4417635 | UNIVERSITY OF CALIFORNIA - DAVIS|European Nucleotide Archive | UNIVERSITY OF CALIFORNIA - DAVIS | 2 | 0.95444 | 0.95397 | 0.05839 | 0.05842 | 0.67377 | 0.67207 | 0.48505 | 0.48043 | 150 | 150 | B | B | biological fallback assumption | illumina | hiseq_era | unknown | poly_a | unknown | bulk | unknown | unknown | United States | 2020-10-31 | Larval | Larval | Undetermined | Undetermined | |||||||||||||||
| 9961 | 9961 | ERR5961086 | ERX5601607 | ERS6490226 | ERP123184 | PRJEB39643 | CRISPR tools for zebrafish | ena-STUDY-UNIVERSITY OF CALIFORNIA - DAVIS-29-07-2020-18:23:16:380-2095 | Other | Zebrafish have practical features that make them a useful model for higher throughput tests of gene function using CRISPR/Cas9 editing to create 'knockout' models. A large number of computational and empirical tools exist to design CRISPR assays but often produce varied predictions across methods. To systematically assess accuracy of tool predictions of on and off target gene editing we subjected zebrafish embryos to CRISPR/Cas9 with 50 different guide RNAs gRNAs targeting 14 genes. We compared our experimental in vivo editing efficiencies in mosaic G0 embryos with those predicted by seven commonly used gRNA design tools and found large discrepancies between methods. Assessing off target mutations predicted in silico and in vitro found that the majority of tested loci had low in vivo frequencies <1%. To characterize if commonly used 'mock' CRISPR controls larvae injected with Cas9 enzyme or mRNA with no gRNA exhibited spurious molecular features that might exacerbate studies of G0 mosaic CRISPR knockout fish we generated an RNA seq dataset of various control larvae at 5 dpf From this while we found no evidence of spontaneous somatic mutations of injected larvae we did identify several hundreds of differentially expressed genes with high variability between injection types. Network analyses of shared differentially expressed genes in the 'mock' injected larvae implicated a number of key regulators of common metabolic pathways and gene ontology analysis revealed connections with response to wounding and cytoskeleton organization highlighting a potential lasting effect from the microinjection process that requires further investigation. Overall our results provide a valuable resource for the zebrafish community for the design and execution of CRISPR/Cas9 experiments. | ENA FIRST PUBLIC:2020 10 31|ENA LAST UPDATE:2021 05 25 | RNA seq data of 5dpf larvae injected with Cas9mRNA at the one cell stage. | Cas9mRNA1 | SAMEA8805892 | UNIVERSITY OF CALIFORNIA - DAVIS | ENA first public:2021 05 26|ENA last update:2021 05 26|External Id:SAMEA8805892|INSDC center alias:UNIVERSITY OF CALIFORNIA DAVIS|INSDC center name:UNIVERSITY OF CALIFORNIA DAVIS|INSDC first public:2021 05 26T09:21:17Z|INSDC last update:2021 05 26T09:21:17Z|INSDC status:public|Submitter Id:Cas9mRNA1|common name:zebrafish|sample name:Cas9mRNA1 | Illumina HiSeq 4000 paired end sequencing | ena EXPERIMENT UNIVERSITY OF CALIFORNIA DAVIS 25 05 2021 08:56:51:031 1 | unspecified | 1 | RNA-Seq | TRANSCRIPTOMIC | Oligo-dT | PAIRED | ILLUMINA | Illumina HiSeq 4000 | ERP123184 | Illumina HiSeq 4000 paired end sequencing | ENA FIRST PUBLIC:2021 05 26|ENA LAST UPDATE:2021 05 26 | PRO1_R1_001.fastq PRO1_R2_001.fastq | fastq fastq | 8803789500.0 | 29345965.0 | ena RUN UNIVERSITY OF CALIFORNIA DAVIS 25 05 2021 08:56:51:031 1 | 0:150 1:150 | A:2318913314;C:2090675347;G:2149054140;T:2244296747;N:849952 | 150 | 150 | 2318913314 | 2090675347 | 2149054140 | 2244296747 | 849952 | ERX5601607 | ERS6490226 | ERA4417635 | UNIVERSITY OF CALIFORNIA - DAVIS|European Nucleotide Archive | UNIVERSITY OF CALIFORNIA - DAVIS | 2 | 0.954 | 0.9549 | 0.04652 | 0.04639 | 0.70806 | 0.71386 | 0.45393 | 0.44921 | 150 | 150 | B | B | biological fallback assumption | illumina | hiseq_era | unknown | poly_a | unknown | bulk | unknown | unknown | United States | 2020-10-31 | Larval | Larval | Undetermined | Undetermined | |||||||||||||||
| 9962 | 9962 | ERR4902960 | ERX4769932 | ERS5427208 | ERP123184 | PRJEB39643 | CRISPR tools for zebrafish | ena-STUDY-UNIVERSITY OF CALIFORNIA - DAVIS-29-07-2020-18:23:16:380-2095 | Other | Zebrafish have practical features that make them a useful model for higher throughput tests of gene function using CRISPR/Cas9 editing to create 'knockout' models. A large number of computational and empirical tools exist to design CRISPR assays but often produce varied predictions across methods. To systematically assess accuracy of tool predictions of on and off target gene editing we subjected zebrafish embryos to CRISPR/Cas9 with 50 different guide RNAs gRNAs targeting 14 genes. We compared our experimental in vivo editing efficiencies in mosaic G0 embryos with those predicted by seven commonly used gRNA design tools and found large discrepancies between methods. Assessing off target mutations predicted in silico and in vitro found that the majority of tested loci had low in vivo frequencies <1%. To characterize if commonly used 'mock' CRISPR controls larvae injected with Cas9 enzyme or mRNA with no gRNA exhibited spurious molecular features that might exacerbate studies of G0 mosaic CRISPR knockout fish we generated an RNA seq dataset of various control larvae at 5 dpf From this while we found no evidence of spontaneous somatic mutations of injected larvae we did identify several hundreds of differentially expressed genes with high variability between injection types. Network analyses of shared differentially expressed genes in the 'mock' injected larvae implicated a number of key regulators of common metabolic pathways and gene ontology analysis revealed connections with response to wounding and cytoskeleton organization highlighting a potential lasting effect from the microinjection process that requires further investigation. Overall our results provide a valuable resource for the zebrafish community for the design and execution of CRISPR/Cas9 experiments. | ENA FIRST PUBLIC:2020 10 31|ENA LAST UPDATE:2021 05 25 | RNAseq data from 5dpf NHGRI 1 zebrafish larvae uninjected. | CRISPR RNAseq | SAMEA7670216 | UNIVERSITY OF CALIFORNIA - DAVIS | ENA first public:2020 12 02|ENA last update:2020 12 02|External Id:SAMEA7670216|INSDC center alias:UNIVERSITY OF CALIFORNIA DAVIS|INSDC center name:UNIVERSITY OF CALIFORNIA DAVIS|INSDC first public:2020 12 02T08:08:09Z|INSDC last update:2020 12 02T07:46:12Z|INSDC status:public|Submitter Id:CRISPR RNAseq8|common name:zebrafish|sample name:CRISPR RNAseq8 | Illumina MiSeq paired end sequencing | ena EXPERIMENT UNIVERSITY OF CALIFORNIA DAVIS 02 12 2020 07:26:18:139 8 | unspecified | 1 | RNA-Seq | TRANSCRIPTOMIC | Oligo-dT | PAIRED | ILLUMINA | Illumina MiSeq | ERP123184 | Illumina MiSeq paired end sequencing | ENA FIRST PUBLIC:2020 12 02|ENA LAST UPDATE:2020 12 09 | WT2_R1_001.fastq.gz WT2_R2_001.fastq.gz | fastq fastq | 7020700500.0 | 23402335.0 | ena RUN UNIVERSITY OF CALIFORNIA DAVIS 02 12 2020 07:26:18:139 8 | 0:150 1:150 | A:1879937256;C:1626166066;G:1693802223;T:1820178560;N:616395 | 150 | 150 | 1879937256 | 1626166066 | 1693802223 | 1820178560 | 616395 | ERX4769932 | ERS5427208 | ERA3183786 | UNIVERSITY OF CALIFORNIA - DAVIS|European Nucleotide Archive | UNIVERSITY OF CALIFORNIA - DAVIS | 2 | 0.92352 | 0.92388 | 0.04778 | 0.04768 | 0.6924 | 0.69205 | 0.45557 | 0.45865 | 150 | 150 | B | B | biological fallback assumption | illumina | miseq | unknown | poly_a | unknown | bulk | unknown | unknown | United States | 2020-10-31 | Larval | Larval | Undetermined | Undetermined | |||||||||||||||
| 9963 | 9963 | ERR4902959 | ERX4769931 | ERS5427206 | ERP123184 | PRJEB39643 | CRISPR tools for zebrafish | ena-STUDY-UNIVERSITY OF CALIFORNIA - DAVIS-29-07-2020-18:23:16:380-2095 | Other | Zebrafish have practical features that make them a useful model for higher throughput tests of gene function using CRISPR/Cas9 editing to create 'knockout' models. A large number of computational and empirical tools exist to design CRISPR assays but often produce varied predictions across methods. To systematically assess accuracy of tool predictions of on and off target gene editing we subjected zebrafish embryos to CRISPR/Cas9 with 50 different guide RNAs gRNAs targeting 14 genes. We compared our experimental in vivo editing efficiencies in mosaic G0 embryos with those predicted by seven commonly used gRNA design tools and found large discrepancies between methods. Assessing off target mutations predicted in silico and in vitro found that the majority of tested loci had low in vivo frequencies <1%. To characterize if commonly used 'mock' CRISPR controls larvae injected with Cas9 enzyme or mRNA with no gRNA exhibited spurious molecular features that might exacerbate studies of G0 mosaic CRISPR knockout fish we generated an RNA seq dataset of various control larvae at 5 dpf From this while we found no evidence of spontaneous somatic mutations of injected larvae we did identify several hundreds of differentially expressed genes with high variability between injection types. Network analyses of shared differentially expressed genes in the 'mock' injected larvae implicated a number of key regulators of common metabolic pathways and gene ontology analysis revealed connections with response to wounding and cytoskeleton organization highlighting a potential lasting effect from the microinjection process that requires further investigation. Overall our results provide a valuable resource for the zebrafish community for the design and execution of CRISPR/Cas9 experiments. | ENA FIRST PUBLIC:2020 10 31|ENA LAST UPDATE:2021 05 25 | RNAseq data from 5dpf NHGRI 1 zebrafish larvae uninjected. | CRISPR RNAseq | SAMEA7670214 | UNIVERSITY OF CALIFORNIA - DAVIS | ENA first public:2020 12 02|ENA last update:2020 12 02|External Id:SAMEA7670214|INSDC center alias:UNIVERSITY OF CALIFORNIA DAVIS|INSDC center name:UNIVERSITY OF CALIFORNIA DAVIS|INSDC first public:2020 12 02T08:08:09Z|INSDC last update:2020 12 02T07:46:11Z|INSDC status:public|Submitter Id:CRISPR RNAseq7|common name:zebrafish|sample name:CRISPR RNAseq7 | Illumina MiSeq paired end sequencing | ena EXPERIMENT UNIVERSITY OF CALIFORNIA DAVIS 02 12 2020 07:26:18:139 7 | unspecified | 1 | RNA-Seq | TRANSCRIPTOMIC | Oligo-dT | PAIRED | ILLUMINA | Illumina MiSeq | ERP123184 | Illumina MiSeq paired end sequencing | ENA FIRST PUBLIC:2020 12 02|ENA LAST UPDATE:2020 12 09 | WT1_R1_001.fastq.gz WT1_R2_001.fastq.gz | fastq fastq | 5664550800.0 | 18881836.0 | ena RUN UNIVERSITY OF CALIFORNIA DAVIS 02 12 2020 07:26:18:139 7 | 0:150 1:150 | A:1493322675;C:1337347146;G:1388414458;T:1444981758;N:484763 | 150 | 150 | 1493322675 | 1337347146 | 1388414458 | 1444981758 | 484763 | ERX4769931 | ERS5427206 | ERA3183786 | UNIVERSITY OF CALIFORNIA - DAVIS|European Nucleotide Archive | UNIVERSITY OF CALIFORNIA - DAVIS | 2 | 0.95767 | 0.95821 | 0.04411 | 0.04384 | 0.69944 | 0.69944 | 0.44168 | 0.45263 | 150 | 150 | B | B | biological fallback assumption | illumina | miseq | unknown | poly_a | unknown | bulk | unknown | unknown | United States | 2020-10-31 | Larval | Larval | Undetermined | Undetermined | |||||||||||||||
| 9964 | 9964 | ERR4902958 | ERX4769930 | ERS5427204 | ERP123184 | PRJEB39643 | CRISPR tools for zebrafish | ena-STUDY-UNIVERSITY OF CALIFORNIA - DAVIS-29-07-2020-18:23:16:380-2095 | Other | Zebrafish have practical features that make them a useful model for higher throughput tests of gene function using CRISPR/Cas9 editing to create 'knockout' models. A large number of computational and empirical tools exist to design CRISPR assays but often produce varied predictions across methods. To systematically assess accuracy of tool predictions of on and off target gene editing we subjected zebrafish embryos to CRISPR/Cas9 with 50 different guide RNAs gRNAs targeting 14 genes. We compared our experimental in vivo editing efficiencies in mosaic G0 embryos with those predicted by seven commonly used gRNA design tools and found large discrepancies between methods. Assessing off target mutations predicted in silico and in vitro found that the majority of tested loci had low in vivo frequencies <1%. To characterize if commonly used 'mock' CRISPR controls larvae injected with Cas9 enzyme or mRNA with no gRNA exhibited spurious molecular features that might exacerbate studies of G0 mosaic CRISPR knockout fish we generated an RNA seq dataset of various control larvae at 5 dpf From this while we found no evidence of spontaneous somatic mutations of injected larvae we did identify several hundreds of differentially expressed genes with high variability between injection types. Network analyses of shared differentially expressed genes in the 'mock' injected larvae implicated a number of key regulators of common metabolic pathways and gene ontology analysis revealed connections with response to wounding and cytoskeleton organization highlighting a potential lasting effect from the microinjection process that requires further investigation. Overall our results provide a valuable resource for the zebrafish community for the design and execution of CRISPR/Cas9 experiments. | ENA FIRST PUBLIC:2020 10 31|ENA LAST UPDATE:2021 05 25 | RNAseq data from 5dpf NHGRI 1 zebrafish larvae injected with Cas9 mRNA. | CRISPR RNAseq | SAMEA7670212 | UNIVERSITY OF CALIFORNIA - DAVIS | ENA first public:2020 12 02|ENA last update:2020 12 02|External Id:SAMEA7670212|INSDC center alias:UNIVERSITY OF CALIFORNIA DAVIS|INSDC center name:UNIVERSITY OF CALIFORNIA DAVIS|INSDC first public:2020 12 02T08:08:09Z|INSDC last update:2020 12 02T07:46:11Z|INSDC status:public|Submitter Id:CRISPR RNAseq6|common name:zebrafish|sample name:CRISPR RNAseq6 | Illumina MiSeq paired end sequencing | ena EXPERIMENT UNIVERSITY OF CALIFORNIA DAVIS 02 12 2020 07:26:18:139 6 | unspecified | 1 | RNA-Seq | TRANSCRIPTOMIC | Oligo-dT | PAIRED | ILLUMINA | Illumina MiSeq | ERP123184 | Illumina MiSeq paired end sequencing | ENA FIRST PUBLIC:2020 12 02|ENA LAST UPDATE:2020 12 09 | RNA3_R1_001.fastq.gz RNA3_R2_001.fastq.gz | fastq fastq | 5814764400.0 | 19382548.0 | ena RUN UNIVERSITY OF CALIFORNIA DAVIS 02 12 2020 07:26:18:139 6 | 0:150 1:150 | A:1550014255;C:1359566801;G:1419514658;T:1485169819;N:498867 | 150 | 150 | 1550014255 | 1359566801 | 1419514658 | 1485169819 | 498867 | ERX4769930 | ERS5427204 | ERA3183786 | UNIVERSITY OF CALIFORNIA - DAVIS|European Nucleotide Archive | UNIVERSITY OF CALIFORNIA - DAVIS | 2 | 0.96165 | 0.96177 | 0.04961 | 0.04952 | 0.68183 | 0.68142 | 0.45636 | 0.46565 | 150 | 150 | B | B | biological fallback assumption | illumina | miseq | unknown | poly_a | unknown | bulk | unknown | unknown | United States | 2020-10-31 | Larval | Larval | Undetermined | Undetermined | |||||||||||||||
| 9965 | 9965 | ERR4902957 | ERX4769929 | ERS5427203 | ERP123184 | PRJEB39643 | CRISPR tools for zebrafish | ena-STUDY-UNIVERSITY OF CALIFORNIA - DAVIS-29-07-2020-18:23:16:380-2095 | Other | Zebrafish have practical features that make them a useful model for higher throughput tests of gene function using CRISPR/Cas9 editing to create 'knockout' models. A large number of computational and empirical tools exist to design CRISPR assays but often produce varied predictions across methods. To systematically assess accuracy of tool predictions of on and off target gene editing we subjected zebrafish embryos to CRISPR/Cas9 with 50 different guide RNAs gRNAs targeting 14 genes. We compared our experimental in vivo editing efficiencies in mosaic G0 embryos with those predicted by seven commonly used gRNA design tools and found large discrepancies between methods. Assessing off target mutations predicted in silico and in vitro found that the majority of tested loci had low in vivo frequencies <1%. To characterize if commonly used 'mock' CRISPR controls larvae injected with Cas9 enzyme or mRNA with no gRNA exhibited spurious molecular features that might exacerbate studies of G0 mosaic CRISPR knockout fish we generated an RNA seq dataset of various control larvae at 5 dpf From this while we found no evidence of spontaneous somatic mutations of injected larvae we did identify several hundreds of differentially expressed genes with high variability between injection types. Network analyses of shared differentially expressed genes in the 'mock' injected larvae implicated a number of key regulators of common metabolic pathways and gene ontology analysis revealed connections with response to wounding and cytoskeleton organization highlighting a potential lasting effect from the microinjection process that requires further investigation. Overall our results provide a valuable resource for the zebrafish community for the design and execution of CRISPR/Cas9 experiments. | ENA FIRST PUBLIC:2020 10 31|ENA LAST UPDATE:2021 05 25 | RNAseq data from 5dpf NHGRI 1 zebrafish larvae injected with Cas9 mRNA. | CRISPR RNAseq | SAMEA7670211 | UNIVERSITY OF CALIFORNIA - DAVIS | ENA first public:2020 12 02|ENA last update:2020 12 02|External Id:SAMEA7670211|INSDC center alias:UNIVERSITY OF CALIFORNIA DAVIS|INSDC center name:UNIVERSITY OF CALIFORNIA DAVIS|INSDC first public:2020 12 02T08:08:09Z|INSDC last update:2020 12 02T07:46:11Z|INSDC status:public|Submitter Id:CRISPR RNAseq5|common name:zebrafish|sample name:CRISPR RNAseq5 | Illumina MiSeq paired end sequencing | ena EXPERIMENT UNIVERSITY OF CALIFORNIA DAVIS 02 12 2020 07:26:18:139 5 | unspecified | 1 | RNA-Seq | TRANSCRIPTOMIC | Oligo-dT | PAIRED | ILLUMINA | Illumina MiSeq | ERP123184 | Illumina MiSeq paired end sequencing | ENA FIRST PUBLIC:2020 12 02|ENA LAST UPDATE:2020 12 09 | RNA2_R1_001.fastq.gz RNA2_R2_001.fastq.gz | fastq fastq | 5927606100.0 | 19758687.0 | ena RUN UNIVERSITY OF CALIFORNIA DAVIS 02 12 2020 07:26:18:139 5 | 0:150 1:150 | A:1579767222;C:1387675810;G:1439122138;T:1520529396;N:511534 | 150 | 150 | 1579767222 | 1387675810 | 1439122138 | 1520529396 | 511534 | ERX4769929 | ERS5427203 | ERA3183786 | UNIVERSITY OF CALIFORNIA - DAVIS|European Nucleotide Archive | UNIVERSITY OF CALIFORNIA - DAVIS | 2 | 0.96212 | 0.96213 | 0.0519 | 0.05167 | 0.67099 | 0.6715 | 0.46875 | 0.47089 | 150 | 150 | B | B | biological fallback assumption | illumina | miseq | unknown | poly_a | unknown | bulk | unknown | unknown | United States | 2020-10-31 | Larval | Larval | Undetermined | Undetermined | |||||||||||||||
| 9966 | 9966 | ERR4902956 | ERX4769928 | ERS5427201 | ERP123184 | PRJEB39643 | CRISPR tools for zebrafish | ena-STUDY-UNIVERSITY OF CALIFORNIA - DAVIS-29-07-2020-18:23:16:380-2095 | Other | Zebrafish have practical features that make them a useful model for higher throughput tests of gene function using CRISPR/Cas9 editing to create 'knockout' models. A large number of computational and empirical tools exist to design CRISPR assays but often produce varied predictions across methods. To systematically assess accuracy of tool predictions of on and off target gene editing we subjected zebrafish embryos to CRISPR/Cas9 with 50 different guide RNAs gRNAs targeting 14 genes. We compared our experimental in vivo editing efficiencies in mosaic G0 embryos with those predicted by seven commonly used gRNA design tools and found large discrepancies between methods. Assessing off target mutations predicted in silico and in vitro found that the majority of tested loci had low in vivo frequencies <1%. To characterize if commonly used 'mock' CRISPR controls larvae injected with Cas9 enzyme or mRNA with no gRNA exhibited spurious molecular features that might exacerbate studies of G0 mosaic CRISPR knockout fish we generated an RNA seq dataset of various control larvae at 5 dpf From this while we found no evidence of spontaneous somatic mutations of injected larvae we did identify several hundreds of differentially expressed genes with high variability between injection types. Network analyses of shared differentially expressed genes in the 'mock' injected larvae implicated a number of key regulators of common metabolic pathways and gene ontology analysis revealed connections with response to wounding and cytoskeleton organization highlighting a potential lasting effect from the microinjection process that requires further investigation. Overall our results provide a valuable resource for the zebrafish community for the design and execution of CRISPR/Cas9 experiments. | ENA FIRST PUBLIC:2020 10 31|ENA LAST UPDATE:2021 05 25 | RNAseq data from 5dpf NHGRI 1 zebrafish larvae injected with Cas9 mRNA. | CRISPR RNAseq | SAMEA7670209 | UNIVERSITY OF CALIFORNIA - DAVIS | ENA first public:2020 12 02|ENA last update:2020 12 02|External Id:SAMEA7670209|INSDC center alias:UNIVERSITY OF CALIFORNIA DAVIS|INSDC center name:UNIVERSITY OF CALIFORNIA DAVIS|INSDC first public:2020 12 02T08:08:09Z|INSDC last update:2020 12 02T07:46:11Z|INSDC status:public|Submitter Id:CRISPR RNAseq4|common name:zebrafish|sample name:CRISPR RNAseq4 | Illumina MiSeq paired end sequencing | ena EXPERIMENT UNIVERSITY OF CALIFORNIA DAVIS 02 12 2020 07:26:18:139 4 | unspecified | 1 | RNA-Seq | TRANSCRIPTOMIC | Oligo-dT | PAIRED | ILLUMINA | Illumina MiSeq | ERP123184 | Illumina MiSeq paired end sequencing | ENA FIRST PUBLIC:2020 12 02|ENA LAST UPDATE:2020 12 09 | RNA1_R1_001.fastq.gz RNA1_R2_001.fastq.gz | fastq fastq | 5738133000.0 | 19127110.0 | ena RUN UNIVERSITY OF CALIFORNIA DAVIS 02 12 2020 07:26:18:139 4 | 0:150 1:150 | A:1530616107;C:1342298453;G:1401357126;T:1463360623;N:500691 | 150 | 150 | 1530616107 | 1342298453 | 1401357126 | 1463360623 | 500691 | ERX4769928 | ERS5427201 | ERA3183786 | UNIVERSITY OF CALIFORNIA - DAVIS|European Nucleotide Archive | UNIVERSITY OF CALIFORNIA - DAVIS | 2 | 0.95706 | 0.9569 | 0.05122 | 0.05151 | 0.68757 | 0.68822 | 0.46039 | 0.4732 | 150 | 150 | B | B | biological fallback assumption | illumina | miseq | unknown | poly_a | unknown | bulk | unknown | unknown | United States | 2020-10-31 | Larval | Larval | Undetermined | Undetermined | |||||||||||||||
| 9967 | 9967 | ERR4902955 | ERX4769927 | ERS5427199 | ERP123184 | PRJEB39643 | CRISPR tools for zebrafish | ena-STUDY-UNIVERSITY OF CALIFORNIA - DAVIS-29-07-2020-18:23:16:380-2095 | Other | Zebrafish have practical features that make them a useful model for higher throughput tests of gene function using CRISPR/Cas9 editing to create 'knockout' models. A large number of computational and empirical tools exist to design CRISPR assays but often produce varied predictions across methods. To systematically assess accuracy of tool predictions of on and off target gene editing we subjected zebrafish embryos to CRISPR/Cas9 with 50 different guide RNAs gRNAs targeting 14 genes. We compared our experimental in vivo editing efficiencies in mosaic G0 embryos with those predicted by seven commonly used gRNA design tools and found large discrepancies between methods. Assessing off target mutations predicted in silico and in vitro found that the majority of tested loci had low in vivo frequencies <1%. To characterize if commonly used 'mock' CRISPR controls larvae injected with Cas9 enzyme or mRNA with no gRNA exhibited spurious molecular features that might exacerbate studies of G0 mosaic CRISPR knockout fish we generated an RNA seq dataset of various control larvae at 5 dpf From this while we found no evidence of spontaneous somatic mutations of injected larvae we did identify several hundreds of differentially expressed genes with high variability between injection types. Network analyses of shared differentially expressed genes in the 'mock' injected larvae implicated a number of key regulators of common metabolic pathways and gene ontology analysis revealed connections with response to wounding and cytoskeleton organization highlighting a potential lasting effect from the microinjection process that requires further investigation. Overall our results provide a valuable resource for the zebrafish community for the design and execution of CRISPR/Cas9 experiments. | ENA FIRST PUBLIC:2020 10 31|ENA LAST UPDATE:2021 05 25 | RNAseq data from 5dpf NHGRI 1 zebrafish larvae injected with Cas9 enzyme. | CRISPR RNAseq | SAMEA7670207 | UNIVERSITY OF CALIFORNIA - DAVIS | ENA first public:2020 12 02|ENA last update:2020 12 02|External Id:SAMEA7670207|INSDC center alias:UNIVERSITY OF CALIFORNIA DAVIS|INSDC center name:UNIVERSITY OF CALIFORNIA DAVIS|INSDC first public:2020 12 02T08:08:09Z|INSDC last update:2020 12 02T07:46:11Z|INSDC status:public|Submitter Id:CRISPR RNAseq3|common name:zebrafish|sample name:CRISPR RNAseq3 | Illumina MiSeq paired end sequencing | ena EXPERIMENT UNIVERSITY OF CALIFORNIA DAVIS 02 12 2020 07:26:18:139 3 | unspecified | 1 | RNA-Seq | TRANSCRIPTOMIC | Oligo-dT | PAIRED | ILLUMINA | Illumina MiSeq | ERP123184 | Illumina MiSeq paired end sequencing | ENA FIRST PUBLIC:2020 12 02|ENA LAST UPDATE:2020 12 09 | PRO3_R1_001.fastq.gz PRO3_R2_001.fastq.gz | fastq fastq | 9635841900.0 | 32119473.0 | ena RUN UNIVERSITY OF CALIFORNIA DAVIS 02 12 2020 07:26:18:139 3 | 0:150 1:150 | A:2562857735;C:2253487693;G:2325345541;T:2493627020;N:523911 | 150 | 150 | 2562857735 | 2253487693 | 2325345541 | 2493627020 | 523911 | ERX4769927 | ERS5427199 | ERA3183786 | UNIVERSITY OF CALIFORNIA - DAVIS|European Nucleotide Archive | UNIVERSITY OF CALIFORNIA - DAVIS | 2 | 0.95766 | 0.95695 | 0.05445 | 0.05404 | 0.67432 | 0.67403 | 0.46385 | 0.46442 | 150 | 150 | B | B | biological fallback assumption | illumina | miseq | unknown | poly_a | unknown | bulk | unknown | unknown | United States | 2020-10-31 | Larval | Larval | Undetermined | Undetermined | |||||||||||||||
| 9968 | 9968 | ERR4902954 | ERX4769926 | ERS5427197 | ERP123184 | PRJEB39643 | CRISPR tools for zebrafish | ena-STUDY-UNIVERSITY OF CALIFORNIA - DAVIS-29-07-2020-18:23:16:380-2095 | Other | Zebrafish have practical features that make them a useful model for higher throughput tests of gene function using CRISPR/Cas9 editing to create 'knockout' models. A large number of computational and empirical tools exist to design CRISPR assays but often produce varied predictions across methods. To systematically assess accuracy of tool predictions of on and off target gene editing we subjected zebrafish embryos to CRISPR/Cas9 with 50 different guide RNAs gRNAs targeting 14 genes. We compared our experimental in vivo editing efficiencies in mosaic G0 embryos with those predicted by seven commonly used gRNA design tools and found large discrepancies between methods. Assessing off target mutations predicted in silico and in vitro found that the majority of tested loci had low in vivo frequencies <1%. To characterize if commonly used 'mock' CRISPR controls larvae injected with Cas9 enzyme or mRNA with no gRNA exhibited spurious molecular features that might exacerbate studies of G0 mosaic CRISPR knockout fish we generated an RNA seq dataset of various control larvae at 5 dpf From this while we found no evidence of spontaneous somatic mutations of injected larvae we did identify several hundreds of differentially expressed genes with high variability between injection types. Network analyses of shared differentially expressed genes in the 'mock' injected larvae implicated a number of key regulators of common metabolic pathways and gene ontology analysis revealed connections with response to wounding and cytoskeleton organization highlighting a potential lasting effect from the microinjection process that requires further investigation. Overall our results provide a valuable resource for the zebrafish community for the design and execution of CRISPR/Cas9 experiments. | ENA FIRST PUBLIC:2020 10 31|ENA LAST UPDATE:2021 05 25 | RNAseq data from 5dpf NHGRI 1 zebrafish larvae injected with Cas9 enzyme. | CRISPR RNAseq | SAMEA7670205 | UNIVERSITY OF CALIFORNIA - DAVIS | ENA first public:2020 12 02|ENA last update:2020 12 02|External Id:SAMEA7670205|INSDC center alias:UNIVERSITY OF CALIFORNIA DAVIS|INSDC center name:UNIVERSITY OF CALIFORNIA DAVIS|INSDC first public:2020 12 02T08:08:09Z|INSDC last update:2020 12 02T07:46:11Z|INSDC status:public|Submitter Id:CRISPR RNAseq2|common name:zebrafish|sample name:CRISPR RNAseq2 | Illumina MiSeq paired end sequencing | ena EXPERIMENT UNIVERSITY OF CALIFORNIA DAVIS 02 12 2020 07:26:18:138 2 | unspecified | 1 | RNA-Seq | TRANSCRIPTOMIC | Oligo-dT | PAIRED | ILLUMINA | Illumina MiSeq | ERP123184 | Illumina MiSeq paired end sequencing | ENA FIRST PUBLIC:2020 12 02|ENA LAST UPDATE:2020 12 09 | PRO2_R1_001.fastq.gz PRO2_R2_001.fastq.gz | fastq fastq | 8990649900.0 | 29968833.0 | ena RUN UNIVERSITY OF CALIFORNIA DAVIS 02 12 2020 07:26:18:138 2 | 0:150 1:150 | A:2370044440;C:2140400380;G:2185347925;T:2294361536;N:495619 | 150 | 150 | 2370044440 | 2140400380 | 2185347925 | 2294361536 | 495619 | ERX4769926 | ERS5427197 | ERA3183786 | UNIVERSITY OF CALIFORNIA - DAVIS|European Nucleotide Archive | UNIVERSITY OF CALIFORNIA - DAVIS | 2 | 0.95444 | 0.95393 | 0.05848 | 0.05894 | 0.67438 | 0.67255 | 0.4825 | 0.48028 | 150 | 150 | B | B | biological fallback assumption | illumina | miseq | unknown | poly_a | unknown | bulk | unknown | unknown | United States | 2020-10-31 | Larval | Larval | Undetermined | Undetermined | |||||||||||||||
| 9969 | 9969 | ERR4902953 | ERX4769925 | ERS5427195 | ERP123184 | PRJEB39643 | CRISPR tools for zebrafish | ena-STUDY-UNIVERSITY OF CALIFORNIA - DAVIS-29-07-2020-18:23:16:380-2095 | Other | Zebrafish have practical features that make them a useful model for higher throughput tests of gene function using CRISPR/Cas9 editing to create 'knockout' models. A large number of computational and empirical tools exist to design CRISPR assays but often produce varied predictions across methods. To systematically assess accuracy of tool predictions of on and off target gene editing we subjected zebrafish embryos to CRISPR/Cas9 with 50 different guide RNAs gRNAs targeting 14 genes. We compared our experimental in vivo editing efficiencies in mosaic G0 embryos with those predicted by seven commonly used gRNA design tools and found large discrepancies between methods. Assessing off target mutations predicted in silico and in vitro found that the majority of tested loci had low in vivo frequencies <1%. To characterize if commonly used 'mock' CRISPR controls larvae injected with Cas9 enzyme or mRNA with no gRNA exhibited spurious molecular features that might exacerbate studies of G0 mosaic CRISPR knockout fish we generated an RNA seq dataset of various control larvae at 5 dpf From this while we found no evidence of spontaneous somatic mutations of injected larvae we did identify several hundreds of differentially expressed genes with high variability between injection types. Network analyses of shared differentially expressed genes in the 'mock' injected larvae implicated a number of key regulators of common metabolic pathways and gene ontology analysis revealed connections with response to wounding and cytoskeleton organization highlighting a potential lasting effect from the microinjection process that requires further investigation. Overall our results provide a valuable resource for the zebrafish community for the design and execution of CRISPR/Cas9 experiments. | ENA FIRST PUBLIC:2020 10 31|ENA LAST UPDATE:2021 05 25 | RNAseq data from 5dpf NHGRI 1 zebrafish larvae injected with Cas9 enzyme. | CRISPR RNAseq | SAMEA7670203 | UNIVERSITY OF CALIFORNIA - DAVIS | ENA first public:2020 12 02|ENA last update:2020 12 02|External Id:SAMEA7670203|INSDC center alias:UNIVERSITY OF CALIFORNIA DAVIS|INSDC center name:UNIVERSITY OF CALIFORNIA DAVIS|INSDC first public:2020 12 02T08:08:09Z|INSDC last update:2020 12 02T07:46:11Z|INSDC status:public|Submitter Id:CRISPR RNAseq1|common name:zebrafish|sample name:CRISPR RNAseq1 | Illumina MiSeq paired end sequencing | ena EXPERIMENT UNIVERSITY OF CALIFORNIA DAVIS 02 12 2020 07:26:18:138 1 | unspecified | 1 | RNA-Seq | TRANSCRIPTOMIC | Oligo-dT | PAIRED | ILLUMINA | Illumina MiSeq | ERP123184 | Illumina MiSeq paired end sequencing | ENA FIRST PUBLIC:2020 12 02|ENA LAST UPDATE:2020 12 09 | PRO1_R1_001.fastq.gz PRO1_R2_001.fastq.gz | fastq fastq | 8803789500.0 | 29345965.0 | ena RUN UNIVERSITY OF CALIFORNIA DAVIS 02 12 2020 07:26:18:138 1 | 0:150 1:150 | A:2318913314;C:2090675347;G:2149054140;T:2244296747;N:849952 | 150 | 150 | 2318913314 | 2090675347 | 2149054140 | 2244296747 | 849952 | ERX4769925 | ERS5427195 | ERA3183786 | UNIVERSITY OF CALIFORNIA - DAVIS|European Nucleotide Archive | UNIVERSITY OF CALIFORNIA - DAVIS | 2 | 0.95403 | 0.95489 | 0.04655 | 0.0464 | 0.70816 | 0.71403 | 0.45357 | 0.44874 | 150 | 150 | B | B | biological fallback assumption | illumina | miseq | unknown | poly_a | unknown | bulk | unknown | unknown | United States | 2020-10-31 | Larval | Larval | Undetermined | Undetermined | |||||||||||||||
| 10383 | 10383 | ERR8517249 | ERX8083723 | ERS10517669 | ERP135370 | PRJEB50765 | HNRNPK alleviates RNA toxicity by counteracting DNA damage in C9orf72 ALS | 69e2093b-755e-4be3-88b8-5b4a761258fe | Other | A 'GGGGCC' repeat expansion in the first intron of the C9orf72 gene is the most common cause of amyotrophic lateral sclerosis ALS and frontotemporal dementia FTD. The exact mechanism resulting in these neurodegenerative diseases remains elusive but RNA toxicity has been implicated as a gain of function mechanism. Our aim was to use a zebrafish model for C9orf72 RNA toxicity to identify modifiers of the ALS linked phenotype. We discovered that the RNA binding protein heterogeneous nuclear ribonucleoprotein K HNRNPK can reverse the toxicity of both sense and antisense repeat RNA which is dependent on its subcellular localization and on RNA recognition and not on C9 repeat RNA binding. We observed HNRNPK cytoplasmic mislocalization in C9orf72 ALS patient fibroblasts induced pluripotent stem cell iPSC derived motor neurons and postmortem central cortex suggesting a disrupted HNRNPK function in C9orf72 ALS. In C9 ALS/FTD patient tissue we discovered an increased nuclear translocation but reduced expression of Ribonucleotide Reductase Regulatory Subunit M2 RRM2 a downstream target of HNRNPK involved in DNA damage response. Finally we show that increasing the expression of HNRNPK or RRM2 was sufficient to mitigate DNA damage in our C9 RNA toxicity zebrafish model. Overall our study strengthens the relevance of RNA toxicity as a pathogenic mechanism in C9 ALS and demonstrates its link with aberrant DNA damage response opening novel therapeutic strategies for C9 ALS/FTD. | ENA FIRST PUBLIC:2022 08 22|ENA LAST UPDATE:2022 08 22 | PUBMED:29302778;PUBMED:35895140 | Modifier control | hnRNPK 003 | SAMEA12918519 | vib-ku leuven | ENA FIRST PUBLIC:2022 08 22|ENA LAST UPDATE:2022 08 22|External Id:SAMEA12918519|INSDC center alias:VIB KU Leuven|INSDC center name:vib ku leuven|INSDC first public:2022 08 22T12:15:26Z|INSDC last update:2022 08 22T12:15:26Z|INSDC status:public|Submitter Id:hnRNPK 003|common name:zebrafish|sample name:hnRNPK 003 | NextSeq 500 paired end sequencing; Raw reads: hnRNPK 003 | webin reads hnRNPK 003 | unspecified | RNA-Seq | TRANSCRIPTOMIC | PolyA | PAIRED | ILLUMINA | NextSeq 500 | ERP135370 | Raw reads: hnRNPK 003 | ENA FIRST PUBLIC:2022 08 22|ENA LAST UPDATE:2022 08 22 | hnRNPK_003_R1.fastq.gz hnRNPK_003_R2.fastq.gz | fastq fastq | 2931486932.0 | 19421721.0 | webin reads hnRNPK 003 | 0:75.51 1:75.43 | A:759548162;C:700272829;G:700149526;T:770783019;N:733396 | 75 | 75 | 759548162 | 700272829 | 700149526 | 770783019 | 733396 | ERX8083723 | ERS10517669 | ERA8937191 | vib-ku leuven|European Nucleotide Archive | vib-ku leuven | 2 | 0.9621 | 0.96378 | 0.06994 | 0.06876 | 0.68757 | 0.68998 | 0.46746 | 0.47041 | 76 | 75 | B | B | biological fallback assumption | illumina | nextseq | unknown | poly_a | unknown | bulk | unknown | unknown | Belgium | 2022-08-22 | Undetermined | Undetermined | Undetermined | Undetermined | |||||||||||||||
| 10384 | 10384 | ERR8517226 | ERX8083700 | ERS10517665 | ERP135370 | PRJEB50765 | HNRNPK alleviates RNA toxicity by counteracting DNA damage in C9orf72 ALS | 69e2093b-755e-4be3-88b8-5b4a761258fe | Other | A 'GGGGCC' repeat expansion in the first intron of the C9orf72 gene is the most common cause of amyotrophic lateral sclerosis ALS and frontotemporal dementia FTD. The exact mechanism resulting in these neurodegenerative diseases remains elusive but RNA toxicity has been implicated as a gain of function mechanism. Our aim was to use a zebrafish model for C9orf72 RNA toxicity to identify modifiers of the ALS linked phenotype. We discovered that the RNA binding protein heterogeneous nuclear ribonucleoprotein K HNRNPK can reverse the toxicity of both sense and antisense repeat RNA which is dependent on its subcellular localization and on RNA recognition and not on C9 repeat RNA binding. We observed HNRNPK cytoplasmic mislocalization in C9orf72 ALS patient fibroblasts induced pluripotent stem cell iPSC derived motor neurons and postmortem central cortex suggesting a disrupted HNRNPK function in C9orf72 ALS. In C9 ALS/FTD patient tissue we discovered an increased nuclear translocation but reduced expression of Ribonucleotide Reductase Regulatory Subunit M2 RRM2 a downstream target of HNRNPK involved in DNA damage response. Finally we show that increasing the expression of HNRNPK or RRM2 was sufficient to mitigate DNA damage in our C9 RNA toxicity zebrafish model. Overall our study strengthens the relevance of RNA toxicity as a pathogenic mechanism in C9 ALS and demonstrates its link with aberrant DNA damage response opening novel therapeutic strategies for C9 ALS/FTD. | ENA FIRST PUBLIC:2022 08 22|ENA LAST UPDATE:2022 08 22 | PUBMED:29302778;PUBMED:35895140 | Modifier control | hnRNPK 001 | SAMEA12918515 | vib-ku leuven | ENA FIRST PUBLIC:2022 08 22|ENA LAST UPDATE:2022 08 22|External Id:SAMEA12918515|INSDC center alias:VIB KU Leuven|INSDC center name:vib ku leuven|INSDC first public:2022 08 22T12:15:26Z|INSDC last update:2022 08 22T12:15:26Z|INSDC status:public|Submitter Id:hnRNPK 001|common name:zebrafish|sample name:hnRNPK 001 | NextSeq 500 paired end sequencing; Raw reads: hnRNPK 001 | webin reads hnRNPK 001 | unspecified | RNA-Seq | TRANSCRIPTOMIC | PolyA | PAIRED | ILLUMINA | NextSeq 500 | ERP135370 | Raw reads: hnRNPK 001 | ENA FIRST PUBLIC:2022 08 22|ENA LAST UPDATE:2022 08 22 | hnRNPK_001_R1.fastq.gz hnRNPK_001_R2.fastq.gz | fastq fastq | 2728299749.0 | 18074835.0 | webin reads hnRNPK 001 | 0:75.51 1:75.43 | A:710869412;C:649804308;G:644363972;T:722599378;N:662679 | 75 | 75 | 710869412 | 649804308 | 644363972 | 722599378 | 662679 | ERX8083700 | ERS10517665 | ERA8936710 | vib-ku leuven|European Nucleotide Archive | vib-ku leuven | 2 | 0.96092 | 0.96336 | 0.07296 | 0.07144 | 0.68862 | 0.69209 | 0.47036 | 0.47104 | 76 | 76 | B | B | biological fallback assumption | illumina | nextseq | unknown | poly_a | unknown | bulk | unknown | unknown | Belgium | 2022-08-22 | Undetermined | Undetermined | Undetermined | Undetermined | |||||||||||||||
| 10385 | 10385 | ERR8517194 | ERX8083668 | ERS10517668 | ERP135370 | PRJEB50765 | HNRNPK alleviates RNA toxicity by counteracting DNA damage in C9orf72 ALS | 69e2093b-755e-4be3-88b8-5b4a761258fe | Other | A 'GGGGCC' repeat expansion in the first intron of the C9orf72 gene is the most common cause of amyotrophic lateral sclerosis ALS and frontotemporal dementia FTD. The exact mechanism resulting in these neurodegenerative diseases remains elusive but RNA toxicity has been implicated as a gain of function mechanism. Our aim was to use a zebrafish model for C9orf72 RNA toxicity to identify modifiers of the ALS linked phenotype. We discovered that the RNA binding protein heterogeneous nuclear ribonucleoprotein K HNRNPK can reverse the toxicity of both sense and antisense repeat RNA which is dependent on its subcellular localization and on RNA recognition and not on C9 repeat RNA binding. We observed HNRNPK cytoplasmic mislocalization in C9orf72 ALS patient fibroblasts induced pluripotent stem cell iPSC derived motor neurons and postmortem central cortex suggesting a disrupted HNRNPK function in C9orf72 ALS. In C9 ALS/FTD patient tissue we discovered an increased nuclear translocation but reduced expression of Ribonucleotide Reductase Regulatory Subunit M2 RRM2 a downstream target of HNRNPK involved in DNA damage response. Finally we show that increasing the expression of HNRNPK or RRM2 was sufficient to mitigate DNA damage in our C9 RNA toxicity zebrafish model. Overall our study strengthens the relevance of RNA toxicity as a pathogenic mechanism in C9 ALS and demonstrates its link with aberrant DNA damage response opening novel therapeutic strategies for C9 ALS/FTD. | ENA FIRST PUBLIC:2022 08 22|ENA LAST UPDATE:2022 08 22 | PUBMED:29302778;PUBMED:35895140 | RNA control | GFP 003 | SAMEA12918518 | vib-ku leuven | ENA FIRST PUBLIC:2022 08 22|ENA LAST UPDATE:2022 08 22|External Id:SAMEA12918518|INSDC center alias:VIB KU Leuven|INSDC center name:vib ku leuven|INSDC first public:2022 08 22T12:15:26Z|INSDC last update:2022 08 22T12:15:26Z|INSDC status:public|Submitter Id:GFP 003|common name:zebrafish|sample name:GFP 003 | NextSeq 500 paired end sequencing; Raw reads: GFP 003 | webin reads GFP 003 | unspecified | RNA-Seq | TRANSCRIPTOMIC | PolyA | PAIRED | ILLUMINA | NextSeq 500 | ERP135370 | Raw reads: GFP 003 | ENA FIRST PUBLIC:2022 08 22|ENA LAST UPDATE:2022 08 22 | GFP_003_R1.fastq.gz GFP_003_R2.fastq.gz | fastq fastq | 2845571506.0 | 18850866.0 | webin reads GFP 003 | 0:75.52 1:75.43 | A:737412560;C:678774596;G:684567775;T:744108157;N:708418 | 75 | 75 | 737412560 | 678774596 | 684567775 | 744108157 | 708418 | ERX8083668 | ERS10517668 | ERA8936242 | vib-ku leuven|European Nucleotide Archive | vib-ku leuven | 2 | 0.96279 | 0.96355 | 0.06774 | 0.06607 | 0.68864 | 0.69183 | 0.469 | 0.46906 | 76 | 76 | B | B | biological fallback assumption | illumina | nextseq | unknown | poly_a | unknown | bulk | unknown | unknown | Belgium | 2022-08-22 | Undetermined | Undetermined | Undetermined | Undetermined | |||||||||||||||
| 10386 | 10386 | ERR8517159 | ERX8083633 | ERS10517664 | ERP135370 | PRJEB50765 | HNRNPK alleviates RNA toxicity by counteracting DNA damage in C9orf72 ALS | 69e2093b-755e-4be3-88b8-5b4a761258fe | Other | A 'GGGGCC' repeat expansion in the first intron of the C9orf72 gene is the most common cause of amyotrophic lateral sclerosis ALS and frontotemporal dementia FTD. The exact mechanism resulting in these neurodegenerative diseases remains elusive but RNA toxicity has been implicated as a gain of function mechanism. Our aim was to use a zebrafish model for C9orf72 RNA toxicity to identify modifiers of the ALS linked phenotype. We discovered that the RNA binding protein heterogeneous nuclear ribonucleoprotein K HNRNPK can reverse the toxicity of both sense and antisense repeat RNA which is dependent on its subcellular localization and on RNA recognition and not on C9 repeat RNA binding. We observed HNRNPK cytoplasmic mislocalization in C9orf72 ALS patient fibroblasts induced pluripotent stem cell iPSC derived motor neurons and postmortem central cortex suggesting a disrupted HNRNPK function in C9orf72 ALS. In C9 ALS/FTD patient tissue we discovered an increased nuclear translocation but reduced expression of Ribonucleotide Reductase Regulatory Subunit M2 RRM2 a downstream target of HNRNPK involved in DNA damage response. Finally we show that increasing the expression of HNRNPK or RRM2 was sufficient to mitigate DNA damage in our C9 RNA toxicity zebrafish model. Overall our study strengthens the relevance of RNA toxicity as a pathogenic mechanism in C9 ALS and demonstrates its link with aberrant DNA damage response opening novel therapeutic strategies for C9 ALS/FTD. | ENA FIRST PUBLIC:2022 08 22|ENA LAST UPDATE:2022 08 22 | PUBMED:29302778;PUBMED:35895140 | RNA control | GFP 001 | SAMEA12918514 | vib-ku leuven | ENA FIRST PUBLIC:2022 08 22|ENA LAST UPDATE:2022 08 22|External Id:SAMEA12918514|INSDC center alias:VIB KU Leuven|INSDC center name:vib ku leuven|INSDC first public:2022 08 22T12:15:26Z|INSDC last update:2022 08 22T12:15:26Z|INSDC status:public|Submitter Id:GFP 001|common name:zebrafish|sample name:GFP 001 | NextSeq 500 paired end sequencing; Raw reads: GFP 001 | webin reads GFP 001 | unspecified | RNA-Seq | TRANSCRIPTOMIC | PolyA | PAIRED | ILLUMINA | NextSeq 500 | ERP135370 | Raw reads: GFP 001 | ENA FIRST PUBLIC:2022 08 22|ENA LAST UPDATE:2022 08 22 | GFP_001_R1.fastq.gz GFP_001_R2.fastq.gz | fastq fastq | 2873485447.0 | 19035162.0 | webin reads GFP 001 | 0:75.52 1:75.44 | A:746120172;C:687054955;G:682142981;T:757435799;N:731540 | 75 | 75 | 746120172 | 687054955 | 682142981 | 757435799 | 731540 | ERX8083633 | ERS10517664 | ERA8935703 | vib-ku leuven|European Nucleotide Archive | vib-ku leuven | 2 | 0.96176 | 0.96461 | 0.07014 | 0.06932 | 0.68672 | 0.68913 | 0.47006 | 0.46794 | 75 | 76 | B | B | biological fallback assumption | illumina | nextseq | unknown | poly_a | unknown | bulk | unknown | unknown | Belgium | 2022-08-22 | Undetermined | Undetermined | Undetermined | Undetermined | |||||||||||||||
| 10387 | 10387 | ERR8517115 | ERX8083589 | ERS10517671 | ERP135370 | PRJEB50765 | HNRNPK alleviates RNA toxicity by counteracting DNA damage in C9orf72 ALS | 69e2093b-755e-4be3-88b8-5b4a761258fe | Other | A 'GGGGCC' repeat expansion in the first intron of the C9orf72 gene is the most common cause of amyotrophic lateral sclerosis ALS and frontotemporal dementia FTD. The exact mechanism resulting in these neurodegenerative diseases remains elusive but RNA toxicity has been implicated as a gain of function mechanism. Our aim was to use a zebrafish model for C9orf72 RNA toxicity to identify modifiers of the ALS linked phenotype. We discovered that the RNA binding protein heterogeneous nuclear ribonucleoprotein K HNRNPK can reverse the toxicity of both sense and antisense repeat RNA which is dependent on its subcellular localization and on RNA recognition and not on C9 repeat RNA binding. We observed HNRNPK cytoplasmic mislocalization in C9orf72 ALS patient fibroblasts induced pluripotent stem cell iPSC derived motor neurons and postmortem central cortex suggesting a disrupted HNRNPK function in C9orf72 ALS. In C9 ALS/FTD patient tissue we discovered an increased nuclear translocation but reduced expression of Ribonucleotide Reductase Regulatory Subunit M2 RRM2 a downstream target of HNRNPK involved in DNA damage response. Finally we show that increasing the expression of HNRNPK or RRM2 was sufficient to mitigate DNA damage in our C9 RNA toxicity zebrafish model. Overall our study strengthens the relevance of RNA toxicity as a pathogenic mechanism in C9 ALS and demonstrates its link with aberrant DNA damage response opening novel therapeutic strategies for C9 ALS/FTD. | ENA FIRST PUBLIC:2022 08 22|ENA LAST UPDATE:2022 08 22 | PUBMED:29302778;PUBMED:35895140 | Modifier rescue | 91S hnRNPK 003 | SAMEA12918521 | vib-ku leuven | ENA FIRST PUBLIC:2022 08 22|ENA LAST UPDATE:2022 08 22|External Id:SAMEA12918521|INSDC center alias:VIB KU Leuven|INSDC center name:vib ku leuven|INSDC first public:2022 08 22T12:15:26Z|INSDC last update:2022 08 22T12:15:26Z|INSDC status:public|Submitter Id:91S hnRNPK 003|common name:zebrafish|sample name:91S hnRNPK 003 | NextSeq 500 paired end sequencing; Raw reads: 91S hnRNPK 003 | webin reads 91S hnRNPK 003 | unspecified | RNA-Seq | TRANSCRIPTOMIC | PolyA | PAIRED | ILLUMINA | NextSeq 500 | ERP135370 | Raw reads: 91S hnRNPK 003 | ENA FIRST PUBLIC:2022 08 22|ENA LAST UPDATE:2022 08 22 | 91S_hnRNPK_003_R1.fastq.gz 91S_hnRNPK_003_R2.fastq.gz | fastq fastq | 2853403405.0 | 18902398.0 | webin reads 91S hnRNPK 003 | 0:75.52 1:75.44 | A:739541111;C:681340573;G:681790014;T:750013318;N:718389 | 75 | 75 | 739541111 | 681340573 | 681790014 | 750013318 | 718389 | ERX8083589 | ERS10517671 | ERA8935191 | vib-ku leuven|European Nucleotide Archive | vib-ku leuven | 2 | 0.96234 | 0.96429 | 0.0679 | 0.06627 | 0.68984 | 0.69126 | 0.46434 | 0.47087 | 76 | 76 | B | B | biological fallback assumption | illumina | nextseq | unknown | poly_a | unknown | bulk | unknown | unknown | Belgium | 2022-08-22 | Undetermined | Undetermined | Undetermined | Undetermined | |||||||||||||||
| 10388 | 10388 | ERR8517082 | ERX8083556 | ERS10517667 | ERP135370 | PRJEB50765 | HNRNPK alleviates RNA toxicity by counteracting DNA damage in C9orf72 ALS | 69e2093b-755e-4be3-88b8-5b4a761258fe | Other | A 'GGGGCC' repeat expansion in the first intron of the C9orf72 gene is the most common cause of amyotrophic lateral sclerosis ALS and frontotemporal dementia FTD. The exact mechanism resulting in these neurodegenerative diseases remains elusive but RNA toxicity has been implicated as a gain of function mechanism. Our aim was to use a zebrafish model for C9orf72 RNA toxicity to identify modifiers of the ALS linked phenotype. We discovered that the RNA binding protein heterogeneous nuclear ribonucleoprotein K HNRNPK can reverse the toxicity of both sense and antisense repeat RNA which is dependent on its subcellular localization and on RNA recognition and not on C9 repeat RNA binding. We observed HNRNPK cytoplasmic mislocalization in C9orf72 ALS patient fibroblasts induced pluripotent stem cell iPSC derived motor neurons and postmortem central cortex suggesting a disrupted HNRNPK function in C9orf72 ALS. In C9 ALS/FTD patient tissue we discovered an increased nuclear translocation but reduced expression of Ribonucleotide Reductase Regulatory Subunit M2 RRM2 a downstream target of HNRNPK involved in DNA damage response. Finally we show that increasing the expression of HNRNPK or RRM2 was sufficient to mitigate DNA damage in our C9 RNA toxicity zebrafish model. Overall our study strengthens the relevance of RNA toxicity as a pathogenic mechanism in C9 ALS and demonstrates its link with aberrant DNA damage response opening novel therapeutic strategies for C9 ALS/FTD. | ENA FIRST PUBLIC:2022 08 22|ENA LAST UPDATE:2022 08 22 | PUBMED:29302778;PUBMED:35895140 | Modifier rescue | 91S hnRNPK 001 | SAMEA12918517 | vib-ku leuven | ENA FIRST PUBLIC:2022 08 22|ENA LAST UPDATE:2022 08 22|External Id:SAMEA12918517|INSDC center alias:VIB KU Leuven|INSDC center name:vib ku leuven|INSDC first public:2022 08 22T12:15:26Z|INSDC last update:2022 08 22T12:15:26Z|INSDC status:public|Submitter Id:91S hnRNPK 001|common name:zebrafish|sample name:91S hnRNPK 001 | NextSeq 500 paired end sequencing; Raw reads: 91S hnRNPK 001 | webin reads 91S hnRNPK 001 | unspecified | RNA-Seq | TRANSCRIPTOMIC | PolyA | PAIRED | ILLUMINA | NextSeq 500 | ERP135370 | Raw reads: 91S hnRNPK 001 | ENA FIRST PUBLIC:2022 08 22|ENA LAST UPDATE:2022 08 22 | 91S_hnRNPK_001_R1.fastq.gz 91S_hnRNPK_001_R2.fastq.gz | fastq fastq | 2795603091.0 | 18519699.0 | webin reads 91S hnRNPK 001 | 0:75.52 1:75.43 | A:722724564;C:672552332;G:664566386;T:735058575;N:701234 | 75 | 75 | 722724564 | 672552332 | 664566386 | 735058575 | 701234 | ERX8083556 | ERS10517667 | ERA8934579 | vib-ku leuven|European Nucleotide Archive | vib-ku leuven | 2 | 0.96307 | 0.96547 | 0.06551 | 0.06458 | 0.68714 | 0.68856 | 0.46817 | 0.46555 | 76 | 76 | B | B | biological fallback assumption | illumina | nextseq | unknown | poly_a | unknown | bulk | unknown | unknown | Belgium | 2022-08-22 | Undetermined | Undetermined | Undetermined | Undetermined | |||||||||||||||
| 10389 | 10389 | ERR8517039 | ERX8083513 | ERS10517670 | ERP135370 | PRJEB50765 | HNRNPK alleviates RNA toxicity by counteracting DNA damage in C9orf72 ALS | 69e2093b-755e-4be3-88b8-5b4a761258fe | Other | A 'GGGGCC' repeat expansion in the first intron of the C9orf72 gene is the most common cause of amyotrophic lateral sclerosis ALS and frontotemporal dementia FTD. The exact mechanism resulting in these neurodegenerative diseases remains elusive but RNA toxicity has been implicated as a gain of function mechanism. Our aim was to use a zebrafish model for C9orf72 RNA toxicity to identify modifiers of the ALS linked phenotype. We discovered that the RNA binding protein heterogeneous nuclear ribonucleoprotein K HNRNPK can reverse the toxicity of both sense and antisense repeat RNA which is dependent on its subcellular localization and on RNA recognition and not on C9 repeat RNA binding. We observed HNRNPK cytoplasmic mislocalization in C9orf72 ALS patient fibroblasts induced pluripotent stem cell iPSC derived motor neurons and postmortem central cortex suggesting a disrupted HNRNPK function in C9orf72 ALS. In C9 ALS/FTD patient tissue we discovered an increased nuclear translocation but reduced expression of Ribonucleotide Reductase Regulatory Subunit M2 RRM2 a downstream target of HNRNPK involved in DNA damage response. Finally we show that increasing the expression of HNRNPK or RRM2 was sufficient to mitigate DNA damage in our C9 RNA toxicity zebrafish model. Overall our study strengthens the relevance of RNA toxicity as a pathogenic mechanism in C9 ALS and demonstrates its link with aberrant DNA damage response opening novel therapeutic strategies for C9 ALS/FTD. | ENA FIRST PUBLIC:2022 08 22|ENA LAST UPDATE:2022 08 22 | PUBMED:29302778;PUBMED:35895140 | Toxic condition | 91S GFP 003 | SAMEA12918520 | vib-ku leuven | ENA FIRST PUBLIC:2022 08 22|ENA LAST UPDATE:2022 08 22|External Id:SAMEA12918520|INSDC center alias:VIB KU Leuven|INSDC center name:vib ku leuven|INSDC first public:2022 08 22T12:15:26Z|INSDC last update:2022 08 22T12:15:26Z|INSDC status:public|Submitter Id:91S GFP 003|common name:zebrafish|sample name:91S GFP 003 | NextSeq 500 paired end sequencing; Raw reads: 91S GFP 003 | webin reads 91S GFP 003 | unspecified | RNA-Seq | TRANSCRIPTOMIC | PolyA | PAIRED | ILLUMINA | NextSeq 500 | ERP135370 | Raw reads: 91S GFP 003 | ENA FIRST PUBLIC:2022 08 22|ENA LAST UPDATE:2022 08 22 | 91S_GFP_003_R1.fastq.gz 91S_GFP_003_R2.fastq.gz | fastq fastq | 2946600193.0 | 19521826.0 | webin reads 91S GFP 003 | 0:75.51 1:75.43 | A:763284580;C:704439363;G:702989767;T:775149110;N:737373 | 75 | 75 | 763284580 | 704439363 | 702989767 | 775149110 | 737373 | ERX8083513 | ERS10517670 | ERA8933888 | vib-ku leuven|European Nucleotide Archive | vib-ku leuven | 2 | 0.96151 | 0.96295 | 0.06621 | 0.06481 | 0.68807 | 0.69092 | 0.46928 | 0.46982 | 75 | 76 | B | B | biological fallback assumption | illumina | nextseq | unknown | poly_a | unknown | bulk | unknown | unknown | Belgium | 2022-08-22 | Undetermined | Undetermined | Undetermined | Undetermined | |||||||||||||||
| 10390 | 10390 | ERR8516998 | ERX8083472 | ERS10517666 | ERP135370 | PRJEB50765 | HNRNPK alleviates RNA toxicity by counteracting DNA damage in C9orf72 ALS | 69e2093b-755e-4be3-88b8-5b4a761258fe | Other | A 'GGGGCC' repeat expansion in the first intron of the C9orf72 gene is the most common cause of amyotrophic lateral sclerosis ALS and frontotemporal dementia FTD. The exact mechanism resulting in these neurodegenerative diseases remains elusive but RNA toxicity has been implicated as a gain of function mechanism. Our aim was to use a zebrafish model for C9orf72 RNA toxicity to identify modifiers of the ALS linked phenotype. We discovered that the RNA binding protein heterogeneous nuclear ribonucleoprotein K HNRNPK can reverse the toxicity of both sense and antisense repeat RNA which is dependent on its subcellular localization and on RNA recognition and not on C9 repeat RNA binding. We observed HNRNPK cytoplasmic mislocalization in C9orf72 ALS patient fibroblasts induced pluripotent stem cell iPSC derived motor neurons and postmortem central cortex suggesting a disrupted HNRNPK function in C9orf72 ALS. In C9 ALS/FTD patient tissue we discovered an increased nuclear translocation but reduced expression of Ribonucleotide Reductase Regulatory Subunit M2 RRM2 a downstream target of HNRNPK involved in DNA damage response. Finally we show that increasing the expression of HNRNPK or RRM2 was sufficient to mitigate DNA damage in our C9 RNA toxicity zebrafish model. Overall our study strengthens the relevance of RNA toxicity as a pathogenic mechanism in C9 ALS and demonstrates its link with aberrant DNA damage response opening novel therapeutic strategies for C9 ALS/FTD. | ENA FIRST PUBLIC:2022 08 22|ENA LAST UPDATE:2022 08 22 | PUBMED:29302778;PUBMED:35895140 | Toxic condition | 91S GFP 001 | SAMEA12918516 | vib-ku leuven | ENA FIRST PUBLIC:2022 08 22|ENA LAST UPDATE:2022 08 22|External Id:SAMEA12918516|INSDC center alias:VIB KU Leuven|INSDC center name:vib ku leuven|INSDC first public:2022 08 22T12:15:26Z|INSDC last update:2022 08 22T12:15:26Z|INSDC status:public|Submitter Id:91S GFP 001|common name:zebrafish|sample name:91S GFP 001 | NextSeq 500 paired end sequencing; Raw reads: 91S GFP 001 | webin reads 91S GFP 001 | unspecified | RNA-Seq | TRANSCRIPTOMIC | PolyA | PAIRED | ILLUMINA | NextSeq 500 | ERP135370 | Raw reads: 91S GFP 001 | ENA FIRST PUBLIC:2022 08 22|ENA LAST UPDATE:2022 08 22 | 91S_GFP_001_R1.fastq.gz 91S_GFP_001_R2.fastq.gz | fastq fastq | 2821113913.0 | 18686946.0 | webin reads 91S GFP 001 | 0:75.52 1:75.44 | A:726676187;C:676899384;G:676400816;T:740427303;N:710223 | 75 | 75 | 726676187 | 676899384 | 676400816 | 740427303 | 710223 | ERX8083472 | ERS10517666 | ERA8933211 | vib-ku leuven|European Nucleotide Archive | vib-ku leuven | 2 | 0.96147 | 0.96465 | 0.07106 | 0.06991 | 0.68822 | 0.69556 | 0.47261 | 0.47451 | 75 | 76 | B | B | biological fallback assumption | illumina | nextseq | unknown | poly_a | unknown | bulk | unknown | unknown | Belgium | 2022-08-22 | Undetermined | Undetermined | Undetermined | Undetermined | |||||||||||||||
| 21547 | 21547 | ERR1374860 | ERX1445986 | ERS1036031 | ERP011007 | PRJEB9859 | Transcriptome profiling of single zebrafish cells | Transcriptome_profiling_of_single_zebrafish_cells-sc-2991 | Transcriptome Analysis | Paired end sequence data from the Illumina HiSeq was prepared from individual wild type zebrafish cells. Generated to study the transcriptome of single cells. | Single cell TC6281340 | SAMEA3728882 | Wellcome Sanger Institute | ArrayExpress Species:Danio rerio|ENA first public:2016 04 26|ENA last update:2016 01 19|External Id:SAMEA3728882|INSDC center alias:SC|INSDC center name:Wellcome Sanger Institute|INSDC first public:2016 04 26T14:06:05Z|INSDC last update:2016 01 19T16:49:28Z|INSDC status:public|Submitter Id:63f8d9b0 a4bf 11e5 bdd9 68b59976a382|common name:zebrafish|sample description:3 prime end enriched mRNA from single cells. An 11 base indexing sequence TTTTCCAGCGT is bases 11 to 21 of read 1 followed by CG and polyT.|sample name:63f8d9b0 a4bf 11e5 bdd9 68b59976a382 | Illumina MiSeq paired end sequencing | SC EXP 18668 1#384 | 15545073 | Illumina sequencing of library 15545073 constructed from sample accession ERS1036031 for study accession ERP011007. This is part of an Illumina multiplexed sequencing run 18668 1. This submission includes reads tagged with the sequence TTTTCCAGCGT. | Transcriptome counting qPCR only | RNA-Seq | TRANSCRIPTOMIC | cDNA | PAIRED | ILLUMINA | Illumina MiSeq | ERP011007 | Illumina MiSeq paired end sequencing | ENA FIRST PUBLIC:2016 04 26|ENA LAST UPDATE:2018 11 16 | 18668_1#384.cram | cram | 284058.0 | 2202.0 | SC RUN 18668 1#384 | 0:54 1:75 | A:76261;C:66156;G:64128;T:77513;N:0 | 54 | 75 | 76261 | 66156 | 64128 | 77513 | 0 | ERX1445986 | ERS1036031 | ERA610021 | European Nucleotide Archive | Wellcome Sanger Institute | 2 | 0.0 | 0.0007 | 0.0 | 0.00069 | 1.0 | 1.0 | 54 | 75 | T | T | mates < 9% mapping rate | illumina | miseq | 3prime | cdna_unspecified | unknown | bulk | unknown | unknown | United Kingdom | 2016-01-19 | Undetermined | Undetermined | Undetermined | Undetermined | ||||||||||||||||||
| 21548 | 21548 | ERR1374859 | ERX1445985 | ERS1036030 | ERP011007 | PRJEB9859 | Transcriptome profiling of single zebrafish cells | Transcriptome_profiling_of_single_zebrafish_cells-sc-2991 | Transcriptome Analysis | Paired end sequence data from the Illumina HiSeq was prepared from individual wild type zebrafish cells. Generated to study the transcriptome of single cells. | Single cell TC6281339 | SAMEA3728881 | Wellcome Sanger Institute | ArrayExpress Species:Danio rerio|ENA first public:2016 04 26|ENA last update:2016 01 19|External Id:SAMEA3728881|INSDC center alias:SC|INSDC center name:Wellcome Sanger Institute|INSDC first public:2016 04 26T14:06:05Z|INSDC last update:2016 01 19T16:49:28Z|INSDC status:public|Submitter Id:63ef8ae0 a4bf 11e5 bdd9 68b59976a382|common name:zebrafish|sample description:3 prime end enriched mRNA from single cells. An 11 base indexing sequence TTTGATTCTCG is bases 11 to 21 of read 1 followed by CG and polyT.|sample name:63ef8ae0 a4bf 11e5 bdd9 68b59976a382 | Illumina MiSeq paired end sequencing | SC EXP 18668 1#383 | 15545072 | Illumina sequencing of library 15545072 constructed from sample accession ERS1036030 for study accession ERP011007. This is part of an Illumina multiplexed sequencing run 18668 1. This submission includes reads tagged with the sequence TTTGATTCTCG. | Transcriptome counting qPCR only | RNA-Seq | TRANSCRIPTOMIC | cDNA | PAIRED | ILLUMINA | Illumina MiSeq | ERP011007 | Illumina MiSeq paired end sequencing | ENA FIRST PUBLIC:2016 04 26|ENA LAST UPDATE:2018 11 16 | 18668_1#383.cram | cram | 1304835.0 | 10115.0 | SC RUN 18668 1#383 | 0:54 1:75 | A:352669;C:266861;G:245412;T:439893;N:0 | 54 | 75 | 352669 | 266861 | 245412 | 439893 | 0 | ERX1445985 | ERS1036030 | ERA610021 | European Nucleotide Archive | Wellcome Sanger Institute | 2 | 0.31511 | 0.42794 | 0.3151 | 0.42793 | 1.0 | 1.0 | 54 | 75 | T | B | mate1 technical by mapping diff | illumina | miseq | 3prime | cdna_unspecified | unknown | bulk | unknown | unknown | United Kingdom | 2016-01-19 | Undetermined | Undetermined | Undetermined | Undetermined | ||||||||||||||||||
| 21549 | 21549 | ERR1374858 | ERX1445984 | ERS1036029 | ERP011007 | PRJEB9859 | Transcriptome profiling of single zebrafish cells | Transcriptome_profiling_of_single_zebrafish_cells-sc-2991 | Transcriptome Analysis | Paired end sequence data from the Illumina HiSeq was prepared from individual wild type zebrafish cells. Generated to study the transcriptome of single cells. | Single cell TC6281338 | SAMEA3728880 | Wellcome Sanger Institute | ArrayExpress Species:Danio rerio|ENA first public:2016 04 26|ENA last update:2016 01 19|External Id:SAMEA3728880|INSDC center alias:SC|INSDC center name:Wellcome Sanger Institute|INSDC first public:2016 04 26T14:06:05Z|INSDC last update:2016 01 19T16:49:27Z|INSDC status:public|Submitter Id:63e21d60 a4bf 11e5 bdd9 68b59976a382|common name:zebrafish|sample description:3 prime end enriched mRNA from single cells. An 11 base indexing sequence TTTCGTGTAGA is bases 11 to 21 of read 1 followed by CG and polyT.|sample name:63e21d60 a4bf 11e5 bdd9 68b59976a382 | Illumina MiSeq paired end sequencing | SC EXP 18668 1#382 | 15545071 | Illumina sequencing of library 15545071 constructed from sample accession ERS1036029 for study accession ERP011007. This is part of an Illumina multiplexed sequencing run 18668 1. This submission includes reads tagged with the sequence TTTCGTGTAGA. | Transcriptome counting qPCR only | RNA-Seq | TRANSCRIPTOMIC | cDNA | PAIRED | ILLUMINA | Illumina MiSeq | ERP011007 | Illumina MiSeq paired end sequencing | ENA FIRST PUBLIC:2016 04 26|ENA LAST UPDATE:2018 11 16 | 18668_1#382.cram | cram | 1003104.0 | 7776.0 | SC RUN 18668 1#382 | 0:54 1:75 | A:275526;C:213901;G:190809;T:322868;N:0 | 54 | 75 | 275526 | 213901 | 190809 | 322868 | 0 | ERX1445984 | ERS1036029 | ERA610021 | European Nucleotide Archive | Wellcome Sanger Institute | 2 | 0.17365 | 0.18304 | 0.17364 | 0.18074 | 1.0 | 0.99995 | 0.0 | 54 | 75 | B | B | biological fallback assumption | illumina | miseq | 3prime | cdna_unspecified | unknown | bulk | unknown | unknown | United Kingdom | 2016-01-19 | Undetermined | Undetermined | Undetermined | Undetermined | |||||||||||||||||
| 21550 | 21550 | ERR1374857 | ERX1445983 | ERS1036028 | ERP011007 | PRJEB9859 | Transcriptome profiling of single zebrafish cells | Transcriptome_profiling_of_single_zebrafish_cells-sc-2991 | Transcriptome Analysis | Paired end sequence data from the Illumina HiSeq was prepared from individual wild type zebrafish cells. Generated to study the transcriptome of single cells. | Single cell TC6281337 | SAMEA3728879 | Wellcome Sanger Institute | ArrayExpress Species:Danio rerio|ENA first public:2016 04 26|ENA last update:2016 01 19|External Id:SAMEA3728879|INSDC center alias:SC|INSDC center name:Wellcome Sanger Institute|INSDC first public:2016 04 26T14:06:04Z|INSDC last update:2016 01 19T16:49:27Z|INSDC status:public|Submitter Id:63d8ce90 a4bf 11e5 bdd9 68b59976a382|common name:zebrafish|sample description:3 prime end enriched mRNA from single cells. An 11 base indexing sequence TTTATTAGACG is bases 11 to 21 of read 1 followed by CG and polyT.|sample name:63d8ce90 a4bf 11e5 bdd9 68b59976a382 | Illumina MiSeq paired end sequencing | SC EXP 18668 1#381 | 15545070 | Illumina sequencing of library 15545070 constructed from sample accession ERS1036028 for study accession ERP011007. This is part of an Illumina multiplexed sequencing run 18668 1. This submission includes reads tagged with the sequence TTTATTAGACG. | Transcriptome counting qPCR only | RNA-Seq | TRANSCRIPTOMIC | cDNA | PAIRED | ILLUMINA | Illumina MiSeq | ERP011007 | Illumina MiSeq paired end sequencing | ENA FIRST PUBLIC:2016 04 26|ENA LAST UPDATE:2018 11 16 | 18668_1#381.cram | cram | 553023.0 | 4287.0 | SC RUN 18668 1#381 | 0:54 1:75 | A:147453;C:125606;G:113473;T:166491;N:0 | 54 | 75 | 147453 | 125606 | 113473 | 166491 | 0 | ERX1445983 | ERS1036028 | ERA610021 | European Nucleotide Archive | Wellcome Sanger Institute | 2 | 0.07054 | 0.14591 | 0.07053 | 0.1459 | 1.0 | 1.0 | 54 | 75 | B | B | mate1-mate2 similar by mapping diff | illumina | miseq | 3prime | cdna_unspecified | unknown | bulk | unknown | unknown | United Kingdom | 2016-01-19 | Undetermined | Undetermined | Undetermined | Undetermined | ||||||||||||||||||
| 21551 | 21551 | ERR1374856 | ERX1445982 | ERS1036027 | ERP011007 | PRJEB9859 | Transcriptome profiling of single zebrafish cells | Transcriptome_profiling_of_single_zebrafish_cells-sc-2991 | Transcriptome Analysis | Paired end sequence data from the Illumina HiSeq was prepared from individual wild type zebrafish cells. Generated to study the transcriptome of single cells. | Single cell TC6281336 | SAMEA3728878 | Wellcome Sanger Institute | ArrayExpress Species:Danio rerio|ENA first public:2016 04 26|ENA last update:2016 01 19|External Id:SAMEA3728878|INSDC center alias:SC|INSDC center name:Wellcome Sanger Institute|INSDC first public:2016 04 26T14:06:05Z|INSDC last update:2016 01 19T16:49:27Z|INSDC status:public|Submitter Id:63cfa6d0 a4bf 11e5 bdd9 68b59976a382|common name:zebrafish|sample description:3 prime end enriched mRNA from single cells. An 11 base indexing sequence TTTAGCTCGGT is bases 11 to 21 of read 1 followed by CG and polyT.|sample name:63cfa6d0 a4bf 11e5 bdd9 68b59976a382 | Illumina MiSeq paired end sequencing | SC EXP 18668 1#380 | 15545069 | Illumina sequencing of library 15545069 constructed from sample accession ERS1036027 for study accession ERP011007. This is part of an Illumina multiplexed sequencing run 18668 1. This submission includes reads tagged with the sequence TTTAGCTCGGT. | Transcriptome counting qPCR only | RNA-Seq | TRANSCRIPTOMIC | cDNA | PAIRED | ILLUMINA | Illumina MiSeq | ERP011007 | Illumina MiSeq paired end sequencing | ENA FIRST PUBLIC:2016 04 26|ENA LAST UPDATE:2018 11 16 | 18668_1#380.cram | cram | 1052640.0 | 8160.0 | SC RUN 18668 1#380 | 0:54 1:75 | A:272334;C:229709;G:203715;T:346882;N:0 | 54 | 75 | 272334 | 229709 | 203715 | 346882 | 0 | ERX1445982 | ERS1036027 | ERA610021 | European Nucleotide Archive | Wellcome Sanger Institute | 2 | 0.31077 | 0.37992 | 0.31076 | 0.37991 | 1.0 | 1.0 | 54 | 75 | B | B | biological fallback assumption | illumina | miseq | 3prime | cdna_unspecified | unknown | bulk | unknown | unknown | United Kingdom | 2016-01-19 | Undetermined | Undetermined | Undetermined | Undetermined | ||||||||||||||||||
| 21552 | 21552 | ERR1374855 | ERX1445981 | ERS1036026 | ERP011007 | PRJEB9859 | Transcriptome profiling of single zebrafish cells | Transcriptome_profiling_of_single_zebrafish_cells-sc-2991 | Transcriptome Analysis | Paired end sequence data from the Illumina HiSeq was prepared from individual wild type zebrafish cells. Generated to study the transcriptome of single cells. | Single cell TC6281335 | SAMEA3728877 | Wellcome Sanger Institute | ArrayExpress Species:Danio rerio|ENA first public:2016 04 26|ENA last update:2016 01 19|External Id:SAMEA3728877|INSDC center alias:SC|INSDC center name:Wellcome Sanger Institute|INSDC first public:2016 04 26T14:06:05Z|INSDC last update:2016 01 19T16:49:26Z|INSDC status:public|Submitter Id:63c630f0 a4bf 11e5 bdd9 68b59976a382|common name:zebrafish|sample description:3 prime end enriched mRNA from single cells. An 11 base indexing sequence TTGCGATGTCC is bases 11 to 21 of read 1 followed by CG and polyT.|sample name:63c630f0 a4bf 11e5 bdd9 68b59976a382 | Illumina MiSeq paired end sequencing | SC EXP 18668 1#379 | 15545068 | Illumina sequencing of library 15545068 constructed from sample accession ERS1036026 for study accession ERP011007. This is part of an Illumina multiplexed sequencing run 18668 1. This submission includes reads tagged with the sequence TTGCGATGTCC. | Transcriptome counting qPCR only | RNA-Seq | TRANSCRIPTOMIC | cDNA | PAIRED | ILLUMINA | Illumina MiSeq | ERP011007 | Illumina MiSeq paired end sequencing | ENA FIRST PUBLIC:2016 04 26|ENA LAST UPDATE:2018 11 16 | 18668_1#379.cram | cram | 1640622.0 | 12718.0 | SC RUN 18668 1#379 | 0:54 1:75 | A:431283;C:344682;G:321969;T:542688;N:0 | 54 | 75 | 431283 | 344682 | 321969 | 542688 | 0 | ERX1445981 | ERS1036026 | ERA610021 | European Nucleotide Archive | Wellcome Sanger Institute | 2 | 0.29581 | 0.39023 | 0.2958 | 0.39022 | 1.0 | 1.0 | 54 | 75 | B | B | biological fallback assumption | illumina | miseq | 3prime | cdna_unspecified | unknown | bulk | unknown | unknown | United Kingdom | 2016-01-19 | Undetermined | Undetermined | Undetermined | Undetermined | ||||||||||||||||||
| 21553 | 21553 | ERR1374854 | ERX1445980 | ERS1036025 | ERP011007 | PRJEB9859 | Transcriptome profiling of single zebrafish cells | Transcriptome_profiling_of_single_zebrafish_cells-sc-2991 | Transcriptome Analysis | Paired end sequence data from the Illumina HiSeq was prepared from individual wild type zebrafish cells. Generated to study the transcriptome of single cells. | Single cell TC6281334 | SAMEA3728876 | Wellcome Sanger Institute | ArrayExpress Species:Danio rerio|ENA first public:2016 04 26|ENA last update:2016 01 19|External Id:SAMEA3728876|INSDC center alias:SC|INSDC center name:Wellcome Sanger Institute|INSDC first public:2016 04 26T14:06:05Z|INSDC last update:2016 01 19T16:49:26Z|INSDC status:public|Submitter Id:63bd0930 a4bf 11e5 bdd9 68b59976a382|common name:zebrafish|sample description:3 prime end enriched mRNA from single cells. An 11 base indexing sequence TTGCACTTAAT is bases 11 to 21 of read 1 followed by CG and polyT.|sample name:63bd0930 a4bf 11e5 bdd9 68b59976a382 | Illumina MiSeq paired end sequencing | SC EXP 18668 1#378 | 15545067 | Illumina sequencing of library 15545067 constructed from sample accession ERS1036025 for study accession ERP011007. This is part of an Illumina multiplexed sequencing run 18668 1. This submission includes reads tagged with the sequence TTGCACTTAAT. | Transcriptome counting qPCR only | RNA-Seq | TRANSCRIPTOMIC | cDNA | PAIRED | ILLUMINA | Illumina MiSeq | ERP011007 | Illumina MiSeq paired end sequencing | ENA FIRST PUBLIC:2016 04 26|ENA LAST UPDATE:2018 11 16 | 18668_1#378.cram | cram | 906999.0 | 7031.0 | SC RUN 18668 1#378 | 0:54 1:75 | A:245673;C:184416;G:171222;T:305688;N:0 | 54 | 75 | 245673 | 184416 | 171222 | 305688 | 0 | ERX1445980 | ERS1036025 | ERA610021 | European Nucleotide Archive | Wellcome Sanger Institute | 2 | 0.24186 | 0.3482 | 0.24185 | 0.34819 | 1.0 | 1.0 | 54 | 75 | B | B | mate1-mate2 similar by mapping diff | illumina | miseq | 3prime | cdna_unspecified | unknown | bulk | unknown | unknown | United Kingdom | 2016-01-19 | Undetermined | Undetermined | Undetermined | Undetermined | ||||||||||||||||||
| 21554 | 21554 | ERR1374853 | ERX1445979 | ERS1036024 | ERP011007 | PRJEB9859 | Transcriptome profiling of single zebrafish cells | Transcriptome_profiling_of_single_zebrafish_cells-sc-2991 | Transcriptome Analysis | Paired end sequence data from the Illumina HiSeq was prepared from individual wild type zebrafish cells. Generated to study the transcriptome of single cells. | Single cell TC6281333 | SAMEA3728875 | Wellcome Sanger Institute | ArrayExpress Species:Danio rerio|ENA first public:2016 04 26|ENA last update:2016 01 19|External Id:SAMEA3728875|INSDC center alias:SC|INSDC center name:Wellcome Sanger Institute|INSDC first public:2016 04 26T14:06:05Z|INSDC last update:2016 01 19T16:49:25Z|INSDC status:public|Submitter Id:63b3ba60 a4bf 11e5 bdd9 68b59976a382|common name:zebrafish|sample description:3 prime end enriched mRNA from single cells. An 11 base indexing sequence TTCTGGGAGAG is bases 11 to 21 of read 1 followed by CG and polyT.|sample name:63b3ba60 a4bf 11e5 bdd9 68b59976a382 | Illumina MiSeq paired end sequencing | SC EXP 18668 1#377 | 15545066 | Illumina sequencing of library 15545066 constructed from sample accession ERS1036024 for study accession ERP011007. This is part of an Illumina multiplexed sequencing run 18668 1. This submission includes reads tagged with the sequence TTCTGGGAGAG. | Transcriptome counting qPCR only | RNA-Seq | TRANSCRIPTOMIC | cDNA | PAIRED | ILLUMINA | Illumina MiSeq | ERP011007 | Illumina MiSeq paired end sequencing | ENA FIRST PUBLIC:2016 04 26|ENA LAST UPDATE:2018 11 16 | 18668_1#377.cram | cram | 390612.0 | 3028.0 | SC RUN 18668 1#377 | 0:54 1:75 | A:98977;C:98046;G:87213;T:106376;N:0 | 54 | 75 | 98977 | 98046 | 87213 | 106376 | 0 | ERX1445979 | ERS1036024 | ERA610021 | European Nucleotide Archive | Wellcome Sanger Institute | 2 | 0.00038 | 0.00048 | 0.00037 | 0.00047 | 1.0 | 1.0 | 54 | 75 | T | T | mates < 9% mapping rate | illumina | miseq | 3prime | cdna_unspecified | unknown | bulk | unknown | unknown | United Kingdom | 2016-01-19 | Undetermined | Undetermined | Undetermined | Undetermined | ||||||||||||||||||
| 21555 | 21555 | ERR1374852 | ERX1445978 | ERS1036023 | ERP011007 | PRJEB9859 | Transcriptome profiling of single zebrafish cells | Transcriptome_profiling_of_single_zebrafish_cells-sc-2991 | Transcriptome Analysis | Paired end sequence data from the Illumina HiSeq was prepared from individual wild type zebrafish cells. Generated to study the transcriptome of single cells. | Single cell TC6281332 | SAMEA3728874 | Wellcome Sanger Institute | ArrayExpress Species:Danio rerio|ENA first public:2016 04 26|ENA last update:2016 01 19|External Id:SAMEA3728874|INSDC center alias:SC|INSDC center name:Wellcome Sanger Institute|INSDC first public:2016 04 26T14:06:04Z|INSDC last update:2016 01 19T16:49:25Z|INSDC status:public|Submitter Id:63aa4480 a4bf 11e5 bdd9 68b59976a382|common name:zebrafish|sample description:3 prime end enriched mRNA from single cells. An 11 base indexing sequence TTCTGATTTTG is bases 11 to 21 of read 1 followed by CG and polyT.|sample name:63aa4480 a4bf 11e5 bdd9 68b59976a382 | Illumina MiSeq paired end sequencing | SC EXP 18668 1#376 | 15545065 | Illumina sequencing of library 15545065 constructed from sample accession ERS1036023 for study accession ERP011007. This is part of an Illumina multiplexed sequencing run 18668 1. This submission includes reads tagged with the sequence TTCTGATTTTG. | Transcriptome counting qPCR only | RNA-Seq | TRANSCRIPTOMIC | cDNA | PAIRED | ILLUMINA | Illumina MiSeq | ERP011007 | Illumina MiSeq paired end sequencing | ENA FIRST PUBLIC:2016 04 26|ENA LAST UPDATE:2018 11 16 | 18668_1#376.cram | cram | 1790907.0 | 13883.0 | SC RUN 18668 1#376 | 0:54 1:75 | A:508300;C:371765;G:340642;T:570200;N:0 | 54 | 75 | 508300 | 371765 | 340642 | 570200 | 0 | ERX1445978 | ERS1036023 | ERA610021 | European Nucleotide Archive | Wellcome Sanger Institute | 2 | 0.22446 | 0.28647 | 0.22445 | 0.28626 | 1.0 | 0.99997 | 0.0 | 54 | 75 | B | B | biological fallback assumption | illumina | miseq | 3prime | cdna_unspecified | unknown | bulk | unknown | unknown | United Kingdom | 2016-01-19 | Undetermined | Undetermined | Undetermined | Undetermined | |||||||||||||||||
| 21556 | 21556 | ERR1374851 | ERX1445977 | ERS1036022 | ERP011007 | PRJEB9859 | Transcriptome profiling of single zebrafish cells | Transcriptome_profiling_of_single_zebrafish_cells-sc-2991 | Transcriptome Analysis | Paired end sequence data from the Illumina HiSeq was prepared from individual wild type zebrafish cells. Generated to study the transcriptome of single cells. | Single cell TC6281331 | SAMEA3728873 | Wellcome Sanger Institute | ArrayExpress Species:Danio rerio|ENA first public:2016 04 26|ENA last update:2016 01 19|External Id:SAMEA3728873|INSDC center alias:SC|INSDC center name:Wellcome Sanger Institute|INSDC first public:2016 04 26T14:06:05Z|INSDC last update:2016 01 19T16:49:24Z|INSDC status:public|Submitter Id:63a11cc0 a4bf 11e5 bdd9 68b59976a382|common name:zebrafish|sample description:3 prime end enriched mRNA from single cells. An 11 base indexing sequence TTCGTGCTTTC is bases 11 to 21 of read 1 followed by CG and polyT.|sample name:63a11cc0 a4bf 11e5 bdd9 68b59976a382 | Illumina MiSeq paired end sequencing | SC EXP 18668 1#375 | 15545064 | Illumina sequencing of library 15545064 constructed from sample accession ERS1036022 for study accession ERP011007. This is part of an Illumina multiplexed sequencing run 18668 1. This submission includes reads tagged with the sequence TTCGTGCTTTC. | Transcriptome counting qPCR only | RNA-Seq | TRANSCRIPTOMIC | cDNA | PAIRED | ILLUMINA | Illumina MiSeq | ERP011007 | Illumina MiSeq paired end sequencing | ENA FIRST PUBLIC:2016 04 26|ENA LAST UPDATE:2018 11 16 | 18668_1#375.cram | cram | 1313349.0 | 10181.0 | SC RUN 18668 1#375 | 0:54 1:75 | A:354351;C:262296;G:244012;T:452690;N:0 | 54 | 75 | 354351 | 262296 | 244012 | 452690 | 0 | ERX1445977 | ERS1036022 | ERA610021 | European Nucleotide Archive | Wellcome Sanger Institute | 2 | 0.37529 | 0.46316 | 0.37528 | 0.45581 | 1.0 | 0.99993 | 0.01754 | 54 | 75 | B | B | biological fallback assumption | illumina | miseq | 3prime | cdna_unspecified | unknown | bulk | unknown | unknown | United Kingdom | 2016-01-19 | Undetermined | Undetermined | Undetermined | Undetermined | |||||||||||||||||
| 21557 | 21557 | ERR1374850 | ERX1445976 | ERS1036021 | ERP011007 | PRJEB9859 | Transcriptome profiling of single zebrafish cells | Transcriptome_profiling_of_single_zebrafish_cells-sc-2991 | Transcriptome Analysis | Paired end sequence data from the Illumina HiSeq was prepared from individual wild type zebrafish cells. Generated to study the transcriptome of single cells. | Single cell TC6281330 | SAMEA3728872 | Wellcome Sanger Institute | ArrayExpress Species:Danio rerio|ENA first public:2016 04 26|ENA last update:2016 01 19|External Id:SAMEA3728872|INSDC center alias:SC|INSDC center name:Wellcome Sanger Institute|INSDC first public:2016 04 26T14:06:05Z|INSDC last update:2016 01 19T16:49:24Z|INSDC status:public|Submitter Id:6397cdf0 a4bf 11e5 bdd9 68b59976a382|common name:zebrafish|sample description:3 prime end enriched mRNA from single cells. An 11 base indexing sequence TTCGGCCCAAT is bases 11 to 21 of read 1 followed by CG and polyT.|sample name:6397cdf0 a4bf 11e5 bdd9 68b59976a382 | Illumina MiSeq paired end sequencing | SC EXP 18668 1#374 | 15545063 | Illumina sequencing of library 15545063 constructed from sample accession ERS1036021 for study accession ERP011007. This is part of an Illumina multiplexed sequencing run 18668 1. This submission includes reads tagged with the sequence TTCGGCCCAAT. | Transcriptome counting qPCR only | RNA-Seq | TRANSCRIPTOMIC | cDNA | PAIRED | ILLUMINA | Illumina MiSeq | ERP011007 | Illumina MiSeq paired end sequencing | ENA FIRST PUBLIC:2016 04 26|ENA LAST UPDATE:2018 11 16 | 18668_1#374.cram | cram | 9495561.0 | 73609.0 | SC RUN 18668 1#374 | 0:54 1:75 | A:2538234;C:2126986;G:1889072;T:2941269;N:0 | 54 | 75 | 2538234 | 2126986 | 1889072 | 2941269 | 0 | ERX1445976 | ERS1036021 | ERA610021 | European Nucleotide Archive | Wellcome Sanger Institute | 2 | 0.12462 | 0.15044 | 0.12459 | 0.15041 | 0.99997 | 0.99997 | 1.0 | 0.0 | 54 | 75 | B | B | biological fallback assumption | illumina | miseq | 3prime | cdna_unspecified | unknown | bulk | unknown | unknown | United Kingdom | 2016-01-19 | Undetermined | Undetermined | Undetermined | Undetermined | ||||||||||||||||
| 21558 | 21558 | ERR1374849 | ERX1445975 | ERS1036020 | ERP011007 | PRJEB9859 | Transcriptome profiling of single zebrafish cells | Transcriptome_profiling_of_single_zebrafish_cells-sc-2991 | Transcriptome Analysis | Paired end sequence data from the Illumina HiSeq was prepared from individual wild type zebrafish cells. Generated to study the transcriptome of single cells. | Single cell TC6281329 | SAMEA3728871 | Wellcome Sanger Institute | ArrayExpress Species:Danio rerio|ENA first public:2016 04 26|ENA last update:2016 01 19|External Id:SAMEA3728871|INSDC center alias:SC|INSDC center name:Wellcome Sanger Institute|INSDC first public:2016 04 26T14:06:05Z|INSDC last update:2016 01 19T16:49:23Z|INSDC status:public|Submitter Id:638e5810 a4bf 11e5 bdd9 68b59976a382|common name:zebrafish|sample description:3 prime end enriched mRNA from single cells. An 11 base indexing sequence TTCCCGTTTAA is bases 11 to 21 of read 1 followed by CG and polyT.|sample name:638e5810 a4bf 11e5 bdd9 68b59976a382 | Illumina MiSeq paired end sequencing | SC EXP 18668 1#373 | 15545062 | Illumina sequencing of library 15545062 constructed from sample accession ERS1036020 for study accession ERP011007. This is part of an Illumina multiplexed sequencing run 18668 1. This submission includes reads tagged with the sequence TTCCCGTTTAA. | Transcriptome counting qPCR only | RNA-Seq | TRANSCRIPTOMIC | cDNA | PAIRED | ILLUMINA | Illumina MiSeq | ERP011007 | Illumina MiSeq paired end sequencing | ENA FIRST PUBLIC:2016 04 26|ENA LAST UPDATE:2018 11 16 | 18668_1#373.cram | cram | 1347663.0 | 10447.0 | SC RUN 18668 1#373 | 0:54 1:75 | A:364080;C:281280;G:262702;T:439601;N:0 | 54 | 75 | 364080 | 281280 | 262702 | 439601 | 0 | ERX1445975 | ERS1036020 | ERA610021 | European Nucleotide Archive | Wellcome Sanger Institute | 2 | 0.29672 | 0.29248 | 0.2966 | 0.29223 | 0.99997 | 0.99997 | 0.0 | 0.0 | 54 | 75 | B | B | biological fallback assumption | illumina | miseq | 3prime | cdna_unspecified | unknown | bulk | unknown | unknown | United Kingdom | 2016-01-19 | Undetermined | Undetermined | Undetermined | Undetermined | ||||||||||||||||
| 21559 | 21559 | ERR1374848 | ERX1445974 | ERS1036019 | ERP011007 | PRJEB9859 | Transcriptome profiling of single zebrafish cells | Transcriptome_profiling_of_single_zebrafish_cells-sc-2991 | Transcriptome Analysis | Paired end sequence data from the Illumina HiSeq was prepared from individual wild type zebrafish cells. Generated to study the transcriptome of single cells. | Single cell TC6281328 | SAMEA3728870 | Wellcome Sanger Institute | ArrayExpress Species:Danio rerio|ENA first public:2016 04 26|ENA last update:2016 01 19|External Id:SAMEA3728870|INSDC center alias:SC|INSDC center name:Wellcome Sanger Institute|INSDC first public:2016 04 26T14:06:05Z|INSDC last update:2016 01 19T16:49:23Z|INSDC status:public|Submitter Id:63846d00 a4bf 11e5 bdd9 68b59976a382|common name:zebrafish|sample description:3 prime end enriched mRNA from single cells. An 11 base indexing sequence TTCATCCAATA is bases 11 to 21 of read 1 followed by CG and polyT.|sample name:63846d00 a4bf 11e5 bdd9 68b59976a382 | Illumina MiSeq paired end sequencing | SC EXP 18668 1#372 | 15545061 | Illumina sequencing of library 15545061 constructed from sample accession ERS1036019 for study accession ERP011007. This is part of an Illumina multiplexed sequencing run 18668 1. This submission includes reads tagged with the sequence TTCATCCAATA. | Transcriptome counting qPCR only | RNA-Seq | TRANSCRIPTOMIC | cDNA | PAIRED | ILLUMINA | Illumina MiSeq | ERP011007 | Illumina MiSeq paired end sequencing | ENA FIRST PUBLIC:2016 04 26|ENA LAST UPDATE:2018 11 16 | 18668_1#372.cram | cram | 1457442.0 | 11298.0 | SC RUN 18668 1#372 | 0:54 1:75 | A:392913;C:312562;G:282308;T:469659;N:0 | 54 | 75 | 392913 | 312562 | 282308 | 469659 | 0 | ERX1445974 | ERS1036019 | ERA610021 | European Nucleotide Archive | Wellcome Sanger Institute | 2 | 0.16521 | 0.1733 | 0.1652 | 0.17329 | 1.0 | 1.0 | 54 | 75 | B | B | biological fallback assumption | illumina | miseq | 3prime | cdna_unspecified | unknown | bulk | unknown | unknown | United Kingdom | 2016-01-19 | Undetermined | Undetermined | Undetermined | Undetermined | ||||||||||||||||||
| 21560 | 21560 | ERR1374847 | ERX1445973 | ERS1036018 | ERP011007 | PRJEB9859 | Transcriptome profiling of single zebrafish cells | Transcriptome_profiling_of_single_zebrafish_cells-sc-2991 | Transcriptome Analysis | Paired end sequence data from the Illumina HiSeq was prepared from individual wild type zebrafish cells. Generated to study the transcriptome of single cells. | Single cell TC6281327 | SAMEA3728869 | Wellcome Sanger Institute | ArrayExpress Species:Danio rerio|ENA first public:2016 04 26|ENA last update:2016 01 19|External Id:SAMEA3728869|INSDC center alias:SC|INSDC center name:Wellcome Sanger Institute|INSDC first public:2016 04 26T14:06:05Z|INSDC last update:2016 01 19T16:49:22Z|INSDC status:public|Submitter Id:6379e5b0 a4bf 11e5 bdd9 68b59976a382|common name:zebrafish|sample description:3 prime end enriched mRNA from single cells. An 11 base indexing sequence TTATCGTCAAG is bases 11 to 21 of read 1 followed by CG and polyT.|sample name:6379e5b0 a4bf 11e5 bdd9 68b59976a382 | Illumina MiSeq paired end sequencing | SC EXP 18668 1#371 | 15545060 | Illumina sequencing of library 15545060 constructed from sample accession ERS1036018 for study accession ERP011007. This is part of an Illumina multiplexed sequencing run 18668 1. This submission includes reads tagged with the sequence TTATCGTCAAG. | Transcriptome counting qPCR only | RNA-Seq | TRANSCRIPTOMIC | cDNA | PAIRED | ILLUMINA | Illumina MiSeq | ERP011007 | Illumina MiSeq paired end sequencing | ENA FIRST PUBLIC:2016 04 26|ENA LAST UPDATE:2018 11 16 | 18668_1#371.cram | cram | 528900.0 | 4100.0 | SC RUN 18668 1#371 | 0:54 1:75 | A:135092;C:121387;G:114485;T:157936;N:0 | 54 | 75 | 135092 | 121387 | 114485 | 157936 | 0 | ERX1445973 | ERS1036018 | ERA610021 | European Nucleotide Archive | Wellcome Sanger Institute | B | B | biological fallback assumption | illumina | miseq | 3prime | cdna_unspecified | unknown | bulk | unknown | unknown | United Kingdom | 2016-01-19 | Undetermined | Undetermined | Undetermined | Undetermined | |||||||||||||||||||||||||||
| 21561 | 21561 | ERR1374846 | ERX1445972 | ERS1036017 | ERP011007 | PRJEB9859 | Transcriptome profiling of single zebrafish cells | Transcriptome_profiling_of_single_zebrafish_cells-sc-2991 | Transcriptome Analysis | Paired end sequence data from the Illumina HiSeq was prepared from individual wild type zebrafish cells. Generated to study the transcriptome of single cells. | Single cell TC6281326 | SAMEA3728868 | Wellcome Sanger Institute | ArrayExpress Species:Danio rerio|ENA first public:2016 04 26|ENA last update:2016 01 19|External Id:SAMEA3728868|INSDC center alias:SC|INSDC center name:Wellcome Sanger Institute|INSDC first public:2016 04 26T14:06:05Z|INSDC last update:2016 01 19T16:49:22Z|INSDC status:public|Submitter Id:63706fd0 a4bf 11e5 bdd9 68b59976a382|common name:zebrafish|sample description:3 prime end enriched mRNA from single cells. An 11 base indexing sequence TTAAGGAAGTA is bases 11 to 21 of read 1 followed by CG and polyT.|sample name:63706fd0 a4bf 11e5 bdd9 68b59976a382 | Illumina MiSeq paired end sequencing | SC EXP 18668 1#370 | 15545059 | Illumina sequencing of library 15545059 constructed from sample accession ERS1036017 for study accession ERP011007. This is part of an Illumina multiplexed sequencing run 18668 1. This submission includes reads tagged with the sequence TTAAGGAAGTA. | Transcriptome counting qPCR only | RNA-Seq | TRANSCRIPTOMIC | cDNA | PAIRED | ILLUMINA | Illumina MiSeq | ERP011007 | Illumina MiSeq paired end sequencing | ENA FIRST PUBLIC:2016 04 26|ENA LAST UPDATE:2018 11 16 | 18668_1#370.cram | cram | 891648.0 | 6912.0 | SC RUN 18668 1#370 | 0:54 1:75 | A:224658;C:209577;G:190876;T:266537;N:0 | 54 | 75 | 224658 | 209577 | 190876 | 266537 | 0 | ERX1445972 | ERS1036017 | ERA610021 | European Nucleotide Archive | Wellcome Sanger Institute | 2 | 0.06502 | 0.08158 | 0.06501 | 0.06692 | 1.0 | 0.99995 | 1.0 | 54 | 75 | T | T | mates < 9% mapping rate | illumina | miseq | 3prime | cdna_unspecified | unknown | bulk | unknown | unknown | United Kingdom | 2016-01-19 | Undetermined | Undetermined | Undetermined | Undetermined | |||||||||||||||||
| 21562 | 21562 | ERR1374845 | ERX1445971 | ERS1036016 | ERP011007 | PRJEB9859 | Transcriptome profiling of single zebrafish cells | Transcriptome_profiling_of_single_zebrafish_cells-sc-2991 | Transcriptome Analysis | Paired end sequence data from the Illumina HiSeq was prepared from individual wild type zebrafish cells. Generated to study the transcriptome of single cells. | Single cell TC6281325 | SAMEA3728867 | Wellcome Sanger Institute | ArrayExpress Species:Danio rerio|ENA first public:2016 04 26|ENA last update:2016 01 19|External Id:SAMEA3728867|INSDC center alias:SC|INSDC center name:Wellcome Sanger Institute|INSDC first public:2016 04 26T14:06:05Z|INSDC last update:2016 01 19T16:49:21Z|INSDC status:public|Submitter Id:63672100 a4bf 11e5 bdd9 68b59976a382|common name:zebrafish|sample description:3 prime end enriched mRNA from single cells. An 11 base indexing sequence TTAACAAGTAT is bases 11 to 21 of read 1 followed by CG and polyT.|sample name:63672100 a4bf 11e5 bdd9 68b59976a382 | Illumina MiSeq paired end sequencing | SC EXP 18668 1#369 | 15545058 | Illumina sequencing of library 15545058 constructed from sample accession ERS1036016 for study accession ERP011007. This is part of an Illumina multiplexed sequencing run 18668 1. This submission includes reads tagged with the sequence TTAACAAGTAT. | Transcriptome counting qPCR only | RNA-Seq | TRANSCRIPTOMIC | cDNA | PAIRED | ILLUMINA | Illumina MiSeq | ERP011007 | Illumina MiSeq paired end sequencing | ENA FIRST PUBLIC:2016 04 26|ENA LAST UPDATE:2018 11 16 | 18668_1#369.cram | cram | 1606695.0 | 12455.0 | SC RUN 18668 1#369 | 0:54 1:75 | A:422391;C:343604;G:312477;T:528223;N:0 | 54 | 75 | 422391 | 343604 | 312477 | 528223 | 0 | ERX1445971 | ERS1036016 | ERA610021 | European Nucleotide Archive | Wellcome Sanger Institute | 2 | 0.16991 | 0.23867 | 0.1699 | 0.23866 | 1.0 | 1.0 | 54 | 75 | B | B | mate1-mate2 similar by mapping diff | illumina | miseq | 3prime | cdna_unspecified | unknown | bulk | unknown | unknown | United Kingdom | 2016-01-19 | Undetermined | Undetermined | Undetermined | Undetermined | ||||||||||||||||||
| 21563 | 21563 | ERR1374844 | ERX1445970 | ERS1036015 | ERP011007 | PRJEB9859 | Transcriptome profiling of single zebrafish cells | Transcriptome_profiling_of_single_zebrafish_cells-sc-2991 | Transcriptome Analysis | Paired end sequence data from the Illumina HiSeq was prepared from individual wild type zebrafish cells. Generated to study the transcriptome of single cells. | Single cell TC6281324 | SAMEA3728866 | Wellcome Sanger Institute | ArrayExpress Species:Danio rerio|ENA first public:2016 04 26|ENA last update:2016 01 19|External Id:SAMEA3728866|INSDC center alias:SC|INSDC center name:Wellcome Sanger Institute|INSDC first public:2016 04 26T14:06:04Z|INSDC last update:2016 01 19T16:49:21Z|INSDC status:public|Submitter Id:635dd230 a4bf 11e5 bdd9 68b59976a382|common name:zebrafish|sample description:3 prime end enriched mRNA from single cells. An 11 base indexing sequence TGTTGAACTCC is bases 11 to 21 of read 1 followed by CG and polyT.|sample name:635dd230 a4bf 11e5 bdd9 68b59976a382 | Illumina MiSeq paired end sequencing | SC EXP 18668 1#368 | 15545057 | Illumina sequencing of library 15545057 constructed from sample accession ERS1036015 for study accession ERP011007. This is part of an Illumina multiplexed sequencing run 18668 1. This submission includes reads tagged with the sequence TGTTGAACTCC. | Transcriptome counting qPCR only | RNA-Seq | TRANSCRIPTOMIC | cDNA | PAIRED | ILLUMINA | Illumina MiSeq | ERP011007 | Illumina MiSeq paired end sequencing | ENA FIRST PUBLIC:2016 04 26|ENA LAST UPDATE:2018 11 16 | 18668_1#368.cram | cram | 1928292.0 | 14948.0 | SC RUN 18668 1#368 | 0:54 1:75 | A:521180;C:393086;G:370859;T:643167;N:0 | 54 | 75 | 521180 | 393086 | 370859 | 643167 | 0 | ERX1445970 | ERS1036015 | ERA610021 | European Nucleotide Archive | Wellcome Sanger Institute | 2 | 0.27112 | 0.35395 | 0.27111 | 0.35331 | 1.0 | 0.99997 | 0.0 | 54 | 75 | B | B | biological fallback assumption | illumina | miseq | 3prime | cdna_unspecified | unknown | bulk | unknown | unknown | United Kingdom | 2016-01-19 | Undetermined | Undetermined | Undetermined | Undetermined | |||||||||||||||||
| 21564 | 21564 | ERR1374843 | ERX1445969 | ERS1036014 | ERP011007 | PRJEB9859 | Transcriptome profiling of single zebrafish cells | Transcriptome_profiling_of_single_zebrafish_cells-sc-2991 | Transcriptome Analysis | Paired end sequence data from the Illumina HiSeq was prepared from individual wild type zebrafish cells. Generated to study the transcriptome of single cells. | Single cell TC6281323 | SAMEA3728865 | Wellcome Sanger Institute | ArrayExpress Species:Danio rerio|ENA first public:2016 04 26|ENA last update:2016 01 19|External Id:SAMEA3728865|INSDC center alias:SC|INSDC center name:Wellcome Sanger Institute|INSDC first public:2016 04 26T14:06:05Z|INSDC last update:2016 01 19T16:49:20Z|INSDC status:public|Submitter Id:63548360 a4bf 11e5 bdd9 68b59976a382|common name:zebrafish|sample description:3 prime end enriched mRNA from single cells. An 11 base indexing sequence TGTTACCCGTA is bases 11 to 21 of read 1 followed by CG and polyT.|sample name:63548360 a4bf 11e5 bdd9 68b59976a382 | Illumina MiSeq paired end sequencing | SC EXP 18668 1#367 | 15545056 | Illumina sequencing of library 15545056 constructed from sample accession ERS1036014 for study accession ERP011007. This is part of an Illumina multiplexed sequencing run 18668 1. This submission includes reads tagged with the sequence TGTTACCCGTA. | Transcriptome counting qPCR only | RNA-Seq | TRANSCRIPTOMIC | cDNA | PAIRED | ILLUMINA | Illumina MiSeq | ERP011007 | Illumina MiSeq paired end sequencing | ENA FIRST PUBLIC:2016 04 26|ENA LAST UPDATE:2018 11 16 | 18668_1#367.cram | cram | 1013940.0 | 7860.0 | SC RUN 18668 1#367 | 0:54 1:75 | A:271289;C:212352;G:203745;T:326554;N:0 | 54 | 75 | 271289 | 212352 | 203745 | 326554 | 0 | ERX1445969 | ERS1036014 | ERA610021 | European Nucleotide Archive | Wellcome Sanger Institute | 2 | 0.24792 | 0.25875 | 0.24791 | 0.25841 | 1.0 | 0.99997 | 0.0 | 54 | 75 | B | B | biological fallback assumption | illumina | miseq | 3prime | cdna_unspecified | unknown | bulk | unknown | unknown | United Kingdom | 2016-01-19 | Undetermined | Undetermined | Undetermined | Undetermined | |||||||||||||||||
| 21565 | 21565 | ERR1374842 | ERX1445968 | ERS1036013 | ERP011007 | PRJEB9859 | Transcriptome profiling of single zebrafish cells | Transcriptome_profiling_of_single_zebrafish_cells-sc-2991 | Transcriptome Analysis | Paired end sequence data from the Illumina HiSeq was prepared from individual wild type zebrafish cells. Generated to study the transcriptome of single cells. | Single cell TC6281322 | SAMEA3728864 | Wellcome Sanger Institute | ArrayExpress Species:Danio rerio|ENA first public:2016 04 26|ENA last update:2016 01 19|External Id:SAMEA3728864|INSDC center alias:SC|INSDC center name:Wellcome Sanger Institute|INSDC first public:2016 04 26T14:06:04Z|INSDC last update:2016 01 19T16:49:20Z|INSDC status:public|Submitter Id:634b3490 a4bf 11e5 bdd9 68b59976a382|common name:zebrafish|sample description:3 prime end enriched mRNA from single cells. An 11 base indexing sequence TGTGCATAGTT is bases 11 to 21 of read 1 followed by CG and polyT.|sample name:634b3490 a4bf 11e5 bdd9 68b59976a382 | Illumina MiSeq paired end sequencing | SC EXP 18668 1#366 | 15545055 | Illumina sequencing of library 15545055 constructed from sample accession ERS1036013 for study accession ERP011007. This is part of an Illumina multiplexed sequencing run 18668 1. This submission includes reads tagged with the sequence TGTGCATAGTT. | Transcriptome counting qPCR only | RNA-Seq | TRANSCRIPTOMIC | cDNA | PAIRED | ILLUMINA | Illumina MiSeq | ERP011007 | Illumina MiSeq paired end sequencing | ENA FIRST PUBLIC:2016 04 26|ENA LAST UPDATE:2018 11 16 | 18668_1#366.cram | cram | 1844313.0 | 14297.0 | SC RUN 18668 1#366 | 0:54 1:75 | A:496299;C:374567;G:338084;T:635363;N:0 | 54 | 75 | 496299 | 374567 | 338084 | 635363 | 0 | ERX1445968 | ERS1036013 | ERA610021 | European Nucleotide Archive | Wellcome Sanger Institute | 2 | 0.35247 | 0.39799 | 0.35246 | 0.39665 | 1.0 | 0.99993 | 0.06666 | 54 | 75 | B | B | biological fallback assumption | illumina | miseq | 3prime | cdna_unspecified | unknown | bulk | unknown | unknown | United Kingdom | 2016-01-19 | Undetermined | Undetermined | Undetermined | Undetermined | |||||||||||||||||
| 21566 | 21566 | ERR1374841 | ERX1445967 | ERS1036012 | ERP011007 | PRJEB9859 | Transcriptome profiling of single zebrafish cells | Transcriptome_profiling_of_single_zebrafish_cells-sc-2991 | Transcriptome Analysis | Paired end sequence data from the Illumina HiSeq was prepared from individual wild type zebrafish cells. Generated to study the transcriptome of single cells. | Single cell TC6281321 | SAMEA3728863 | Wellcome Sanger Institute | ArrayExpress Species:Danio rerio|ENA first public:2016 04 26|ENA last update:2016 01 19|External Id:SAMEA3728863|INSDC center alias:SC|INSDC center name:Wellcome Sanger Institute|INSDC first public:2016 04 26T14:06:04Z|INSDC last update:2016 01 19T16:49:19Z|INSDC status:public|Submitter Id:6341e5c0 a4bf 11e5 bdd9 68b59976a382|common name:zebrafish|sample description:3 prime end enriched mRNA from single cells. An 11 base indexing sequence TGTCTATTCAC is bases 11 to 21 of read 1 followed by CG and polyT.|sample name:6341e5c0 a4bf 11e5 bdd9 68b59976a382 | Illumina MiSeq paired end sequencing | SC EXP 18668 1#365 | 15545054 | Illumina sequencing of library 15545054 constructed from sample accession ERS1036012 for study accession ERP011007. This is part of an Illumina multiplexed sequencing run 18668 1. This submission includes reads tagged with the sequence TGTCTATTCAC. | Transcriptome counting qPCR only | RNA-Seq | TRANSCRIPTOMIC | cDNA | PAIRED | ILLUMINA | Illumina MiSeq | ERP011007 | Illumina MiSeq paired end sequencing | ENA FIRST PUBLIC:2016 04 26|ENA LAST UPDATE:2018 11 16 | 18668_1#365.cram | cram | 1835283.0 | 14227.0 | SC RUN 18668 1#365 | 0:54 1:75 | A:493273;C:380459;G:370077;T:591474;N:0 | 54 | 75 | 493273 | 380459 | 370077 | 591474 | 0 | ERX1445967 | ERS1036012 | ERA610021 | European Nucleotide Archive | Wellcome Sanger Institute | 2 | 0.23628 | 0.28935 | 0.23627 | 0.27695 | 1.0 | 0.99995 | 0.93181 | 54 | 75 | B | B | biological fallback assumption | illumina | miseq | 3prime | cdna_unspecified | unknown | bulk | unknown | unknown | United Kingdom | 2016-01-19 | Undetermined | Undetermined | Undetermined | Undetermined | |||||||||||||||||
| 21567 | 21567 | ERR1374840 | ERX1445966 | ERS1036011 | ERP011007 | PRJEB9859 | Transcriptome profiling of single zebrafish cells | Transcriptome_profiling_of_single_zebrafish_cells-sc-2991 | Transcriptome Analysis | Paired end sequence data from the Illumina HiSeq was prepared from individual wild type zebrafish cells. Generated to study the transcriptome of single cells. | Single cell TC6281320 | SAMEA3728862 | Wellcome Sanger Institute | ArrayExpress Species:Danio rerio|ENA first public:2016 04 26|ENA last update:2016 01 19|External Id:SAMEA3728862|INSDC center alias:SC|INSDC center name:Wellcome Sanger Institute|INSDC first public:2016 04 26T14:06:05Z|INSDC last update:2016 01 19T16:49:19Z|INSDC status:public|Submitter Id:633896f0 a4bf 11e5 bdd9 68b59976a382|common name:zebrafish|sample description:3 prime end enriched mRNA from single cells. An 11 base indexing sequence TGTAGCTTACC is bases 11 to 21 of read 1 followed by CG and polyT.|sample name:633896f0 a4bf 11e5 bdd9 68b59976a382 | Illumina MiSeq paired end sequencing | SC EXP 18668 1#364 | 15545053 | Illumina sequencing of library 15545053 constructed from sample accession ERS1036011 for study accession ERP011007. This is part of an Illumina multiplexed sequencing run 18668 1. This submission includes reads tagged with the sequence TGTAGCTTACC. | Transcriptome counting qPCR only | RNA-Seq | TRANSCRIPTOMIC | cDNA | PAIRED | ILLUMINA | Illumina MiSeq | ERP011007 | Illumina MiSeq paired end sequencing | ENA FIRST PUBLIC:2016 04 26|ENA LAST UPDATE:2018 11 16 | 18668_1#364.cram | cram | 1688223.0 | 13087.0 | SC RUN 18668 1#364 | 0:54 1:75 | A:450385;C:348993;G:330742;T:558103;N:0 | 54 | 75 | 450385 | 348993 | 330742 | 558103 | 0 | ERX1445966 | ERS1036011 | ERA610021 | European Nucleotide Archive | Wellcome Sanger Institute | 2 | 0.28027 | 0.3579 | 0.28026 | 0.34887 | 1.0 | 0.99997 | 1.0 | 54 | 75 | B | B | biological fallback assumption | illumina | miseq | 3prime | cdna_unspecified | unknown | bulk | unknown | unknown | United Kingdom | 2016-01-19 | Undetermined | Undetermined | Undetermined | Undetermined | |||||||||||||||||
| 21568 | 21568 | ERR1374839 | ERX1445965 | ERS1036010 | ERP011007 | PRJEB9859 | Transcriptome profiling of single zebrafish cells | Transcriptome_profiling_of_single_zebrafish_cells-sc-2991 | Transcriptome Analysis | Paired end sequence data from the Illumina HiSeq was prepared from individual wild type zebrafish cells. Generated to study the transcriptome of single cells. | Single cell TC6281319 | SAMEA3728861 | Wellcome Sanger Institute | ArrayExpress Species:Danio rerio|ENA first public:2016 04 26|ENA last update:2016 01 19|External Id:SAMEA3728861|INSDC center alias:SC|INSDC center name:Wellcome Sanger Institute|INSDC first public:2016 04 26T14:06:05Z|INSDC last update:2016 01 19T16:49:19Z|INSDC status:public|Submitter Id:632f4820 a4bf 11e5 bdd9 68b59976a382|common name:zebrafish|sample description:3 prime end enriched mRNA from single cells. An 11 base indexing sequence TGTAAGAATCA is bases 11 to 21 of read 1 followed by CG and polyT.|sample name:632f4820 a4bf 11e5 bdd9 68b59976a382 | Illumina MiSeq paired end sequencing | SC EXP 18668 1#363 | 15545052 | Illumina sequencing of library 15545052 constructed from sample accession ERS1036010 for study accession ERP011007. This is part of an Illumina multiplexed sequencing run 18668 1. This submission includes reads tagged with the sequence TGTAAGAATCA. | Transcriptome counting qPCR only | RNA-Seq | TRANSCRIPTOMIC | cDNA | PAIRED | ILLUMINA | Illumina MiSeq | ERP011007 | Illumina MiSeq paired end sequencing | ENA FIRST PUBLIC:2016 04 26|ENA LAST UPDATE:2018 11 16 | 18668_1#363.cram | cram | 4013319.0 | 31111.0 | SC RUN 18668 1#363 | 0:54 1:75 | A:1047562;C:843784;G:749096;T:1372877;N:0 | 54 | 75 | 1047562 | 843784 | 749096 | 1372877 | 0 | ERX1445965 | ERS1036010 | ERA610021 | European Nucleotide Archive | Wellcome Sanger Institute | 2 | 0.26474 | 0.30978 | 0.26473 | 0.30683 | 1.0 | 0.99997 | 0.0 | 54 | 75 | B | B | biological fallback assumption | illumina | miseq | 3prime | cdna_unspecified | unknown | bulk | unknown | unknown | United Kingdom | 2016-01-19 | Undetermined | Undetermined | Undetermined | Undetermined | |||||||||||||||||
| 21569 | 21569 | ERR1374838 | ERX1445964 | ERS1036009 | ERP011007 | PRJEB9859 | Transcriptome profiling of single zebrafish cells | Transcriptome_profiling_of_single_zebrafish_cells-sc-2991 | Transcriptome Analysis | Paired end sequence data from the Illumina HiSeq was prepared from individual wild type zebrafish cells. Generated to study the transcriptome of single cells. | Single cell TC6281318 | SAMEA3728860 | Wellcome Sanger Institute | ArrayExpress Species:Danio rerio|ENA first public:2016 04 26|ENA last update:2016 01 19|External Id:SAMEA3728860|INSDC center alias:SC|INSDC center name:Wellcome Sanger Institute|INSDC first public:2016 04 26T14:06:04Z|INSDC last update:2016 01 19T16:49:18Z|INSDC status:public|Submitter Id:6325f950 a4bf 11e5 bdd9 68b59976a382|common name:zebrafish|sample description:3 prime end enriched mRNA from single cells. An 11 base indexing sequence TGGTTGTGGCC is bases 11 to 21 of read 1 followed by CG and polyT.|sample name:6325f950 a4bf 11e5 bdd9 68b59976a382 | Illumina MiSeq paired end sequencing | SC EXP 18668 1#362 | 15545051 | Illumina sequencing of library 15545051 constructed from sample accession ERS1036009 for study accession ERP011007. This is part of an Illumina multiplexed sequencing run 18668 1. This submission includes reads tagged with the sequence TGGTTGTGGCC. | Transcriptome counting qPCR only | RNA-Seq | TRANSCRIPTOMIC | cDNA | PAIRED | ILLUMINA | Illumina MiSeq | ERP011007 | Illumina MiSeq paired end sequencing | ENA FIRST PUBLIC:2016 04 26|ENA LAST UPDATE:2018 11 16 | 18668_1#362.cram | cram | 8268255.0 | 64095.0 | SC RUN 18668 1#362 | 0:54 1:75 | A:2174138;C:1756790;G:1553021;T:2784306;N:0 | 54 | 75 | 2174138 | 1756790 | 1553021 | 2784306 | 0 | ERX1445964 | ERS1036009 | ERA610021 | European Nucleotide Archive | Wellcome Sanger Institute | 2 | 0.33246 | 0.46406 | 0.33243 | 0.46312 | 0.99997 | 0.99981 | 0.0 | 0.27906 | 54 | 75 | T | B | mate1 technical by mapping diff | illumina | miseq | 3prime | cdna_unspecified | unknown | bulk | unknown | unknown | United Kingdom | 2016-01-19 | Undetermined | Undetermined | Undetermined | Undetermined | ||||||||||||||||
| 21570 | 21570 | ERR1374837 | ERX1445963 | ERS1036008 | ERP011007 | PRJEB9859 | Transcriptome profiling of single zebrafish cells | Transcriptome_profiling_of_single_zebrafish_cells-sc-2991 | Transcriptome Analysis | Paired end sequence data from the Illumina HiSeq was prepared from individual wild type zebrafish cells. Generated to study the transcriptome of single cells. | Single cell TC6281317 | SAMEA3728859 | Wellcome Sanger Institute | ArrayExpress Species:Danio rerio|ENA first public:2016 04 26|ENA last update:2016 01 19|External Id:SAMEA3728859|INSDC center alias:SC|INSDC center name:Wellcome Sanger Institute|INSDC first public:2016 04 26T14:06:05Z|INSDC last update:2016 01 19T16:49:18Z|INSDC status:public|Submitter Id:631caa80 a4bf 11e5 bdd9 68b59976a382|common name:zebrafish|sample description:3 prime end enriched mRNA from single cells. An 11 base indexing sequence TGGGTATCAGG is bases 11 to 21 of read 1 followed by CG and polyT.|sample name:631caa80 a4bf 11e5 bdd9 68b59976a382 | Illumina MiSeq paired end sequencing | SC EXP 18668 1#361 | 15545050 | Illumina sequencing of library 15545050 constructed from sample accession ERS1036008 for study accession ERP011007. This is part of an Illumina multiplexed sequencing run 18668 1. This submission includes reads tagged with the sequence TGGGTATCAGG. | Transcriptome counting qPCR only | RNA-Seq | TRANSCRIPTOMIC | cDNA | PAIRED | ILLUMINA | Illumina MiSeq | ERP011007 | Illumina MiSeq paired end sequencing | ENA FIRST PUBLIC:2016 04 26|ENA LAST UPDATE:2018 11 16 | 18668_1#361.cram | cram | 1545807.0 | 11983.0 | SC RUN 18668 1#361 | 0:54 1:75 | A:388157;C:353499;G:299492;T:504659;N:0 | 54 | 75 | 388157 | 353499 | 299492 | 504659 | 0 | ERX1445963 | ERS1036008 | ERA610021 | European Nucleotide Archive | Wellcome Sanger Institute | 2 | 0.32705 | 0.36263 | 0.32704 | 0.36251 | 1.0 | 0.99997 | 1.0 | 54 | 75 | B | B | biological fallback assumption | illumina | miseq | 3prime | cdna_unspecified | unknown | bulk | unknown | unknown | United Kingdom | 2016-01-19 | Undetermined | Undetermined | Undetermined | Undetermined | |||||||||||||||||
| 21571 | 21571 | ERR1374836 | ERX1445962 | ERS1036007 | ERP011007 | PRJEB9859 | Transcriptome profiling of single zebrafish cells | Transcriptome_profiling_of_single_zebrafish_cells-sc-2991 | Transcriptome Analysis | Paired end sequence data from the Illumina HiSeq was prepared from individual wild type zebrafish cells. Generated to study the transcriptome of single cells. | Single cell TC6281316 | SAMEA3728858 | Wellcome Sanger Institute | ArrayExpress Species:Danio rerio|ENA first public:2016 04 26|ENA last update:2016 01 19|External Id:SAMEA3728858|INSDC center alias:SC|INSDC center name:Wellcome Sanger Institute|INSDC first public:2016 04 26T14:06:05Z|INSDC last update:2016 01 19T16:49:17Z|INSDC status:public|Submitter Id:63122330 a4bf 11e5 bdd9 68b59976a382|common name:zebrafish|sample description:3 prime end enriched mRNA from single cells. An 11 base indexing sequence TGGGCCTTTAG is bases 11 to 21 of read 1 followed by CG and polyT.|sample name:63122330 a4bf 11e5 bdd9 68b59976a382 | Illumina MiSeq paired end sequencing | SC EXP 18668 1#360 | 15545049 | Illumina sequencing of library 15545049 constructed from sample accession ERS1036007 for study accession ERP011007. This is part of an Illumina multiplexed sequencing run 18668 1. This submission includes reads tagged with the sequence TGGGCCTTTAG. | Transcriptome counting qPCR only | RNA-Seq | TRANSCRIPTOMIC | cDNA | PAIRED | ILLUMINA | Illumina MiSeq | ERP011007 | Illumina MiSeq paired end sequencing | ENA FIRST PUBLIC:2016 04 26|ENA LAST UPDATE:2018 11 16 | 18668_1#360.cram | cram | 796962.0 | 6178.0 | SC RUN 18668 1#360 | 0:54 1:75 | A:205421;C:183412;G:167684;T:240445;N:0 | 54 | 75 | 205421 | 183412 | 167684 | 240445 | 0 | ERX1445962 | ERS1036007 | ERA610021 | European Nucleotide Archive | Wellcome Sanger Institute | 2 | 0.16008 | 0.21906 | 0.16007 | 0.21905 | 1.0 | 1.0 | 54 | 75 | B | B | mate1-mate2 similar by mapping diff | illumina | miseq | 3prime | cdna_unspecified | unknown | bulk | unknown | unknown | United Kingdom | 2016-01-19 | Undetermined | Undetermined | Undetermined | Undetermined | ||||||||||||||||||
| 21572 | 21572 | ERR1374835 | ERX1445961 | ERS1036006 | ERP011007 | PRJEB9859 | Transcriptome profiling of single zebrafish cells | Transcriptome_profiling_of_single_zebrafish_cells-sc-2991 | Transcriptome Analysis | Paired end sequence data from the Illumina HiSeq was prepared from individual wild type zebrafish cells. Generated to study the transcriptome of single cells. | Single cell TC6281315 | SAMEA3728857 | Wellcome Sanger Institute | ArrayExpress Species:Danio rerio|ENA first public:2016 04 26|ENA last update:2016 01 19|External Id:SAMEA3728857|INSDC center alias:SC|INSDC center name:Wellcome Sanger Institute|INSDC first public:2016 04 26T14:06:05Z|INSDC last update:2016 01 19T16:49:17Z|INSDC status:public|Submitter Id:6308d460 a4bf 11e5 bdd9 68b59976a382|common name:zebrafish|sample description:3 prime end enriched mRNA from single cells. An 11 base indexing sequence TGGCAAGTTCG is bases 11 to 21 of read 1 followed by CG and polyT.|sample name:6308d460 a4bf 11e5 bdd9 68b59976a382 | Illumina MiSeq paired end sequencing | SC EXP 18668 1#359 | 15545048 | Illumina sequencing of library 15545048 constructed from sample accession ERS1036006 for study accession ERP011007. This is part of an Illumina multiplexed sequencing run 18668 1. This submission includes reads tagged with the sequence TGGCAAGTTCG. | Transcriptome counting qPCR only | RNA-Seq | TRANSCRIPTOMIC | cDNA | PAIRED | ILLUMINA | Illumina MiSeq | ERP011007 | Illumina MiSeq paired end sequencing | ENA FIRST PUBLIC:2016 04 26|ENA LAST UPDATE:2018 11 16 | 18668_1#359.cram | cram | 1457700.0 | 11300.0 | SC RUN 18668 1#359 | 0:54 1:75 | A:381691;C:306041;G:273166;T:496802;N:0 | 54 | 75 | 381691 | 306041 | 273166 | 496802 | 0 | ERX1445961 | ERS1036006 | ERA610021 | European Nucleotide Archive | Wellcome Sanger Institute | 2 | 0.35568 | 0.40861 | 0.35567 | 0.40802 | 1.0 | 0.99995 | 0.0 | 54 | 75 | B | B | biological fallback assumption | illumina | miseq | 3prime | cdna_unspecified | unknown | bulk | unknown | unknown | United Kingdom | 2016-01-19 | Undetermined | Undetermined | Undetermined | Undetermined | |||||||||||||||||
| 21573 | 21573 | ERR1374834 | ERX1445960 | ERS1036005 | ERP011007 | PRJEB9859 | Transcriptome profiling of single zebrafish cells | Transcriptome_profiling_of_single_zebrafish_cells-sc-2991 | Transcriptome Analysis | Paired end sequence data from the Illumina HiSeq was prepared from individual wild type zebrafish cells. Generated to study the transcriptome of single cells. | Single cell TC6281314 | SAMEA3728856 | Wellcome Sanger Institute | ArrayExpress Species:Danio rerio|ENA first public:2016 04 26|ENA last update:2016 01 19|External Id:SAMEA3728856|INSDC center alias:SC|INSDC center name:Wellcome Sanger Institute|INSDC first public:2016 04 26T14:06:05Z|INSDC last update:2016 01 19T16:49:16Z|INSDC status:public|Submitter Id:62ff8590 a4bf 11e5 bdd9 68b59976a382|common name:zebrafish|sample description:3 prime end enriched mRNA from single cells. An 11 base indexing sequence TGCGCTCGGAT is bases 11 to 21 of read 1 followed by CG and polyT.|sample name:62ff8590 a4bf 11e5 bdd9 68b59976a382 | Illumina MiSeq paired end sequencing | SC EXP 18668 1#358 | 15545047 | Illumina sequencing of library 15545047 constructed from sample accession ERS1036005 for study accession ERP011007. This is part of an Illumina multiplexed sequencing run 18668 1. This submission includes reads tagged with the sequence TGCGCTCGGAT. | Transcriptome counting qPCR only | RNA-Seq | TRANSCRIPTOMIC | cDNA | PAIRED | ILLUMINA | Illumina MiSeq | ERP011007 | Illumina MiSeq paired end sequencing | ENA FIRST PUBLIC:2016 04 26|ENA LAST UPDATE:2018 11 16 | 18668_1#358.cram | cram | 1580766.0 | 12254.0 | SC RUN 18668 1#358 | 0:54 1:75 | A:407154;C:319618;G:294050;T:559944;N:0 | 54 | 75 | 407154 | 319618 | 294050 | 559944 | 0 | ERX1445960 | ERS1036005 | ERA610021 | European Nucleotide Archive | Wellcome Sanger Institute | 2 | 0.33503 | 0.48661 | 0.33502 | 0.48649 | 1.0 | 0.99997 | 0.0 | 54 | 75 | T | B | mate1 technical by mapping diff | illumina | miseq | 3prime | cdna_unspecified | unknown | bulk | unknown | unknown | United Kingdom | 2016-01-19 | Undetermined | Undetermined | Undetermined | Undetermined |
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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");;