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,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 2000,1010Application ReadForward1,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,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 2000,1010Application ReadForward1,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,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 2000,1010Application ReadForward1,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,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 2000,1010Application ReadForward1,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,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 2000,1010Application ReadForward1,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,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 2000,1010Application ReadForward1,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,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 2000,1010Application ReadForward1,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,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 2000,1010Application ReadForward1,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,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 2000,1010Application ReadForward1,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,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 2000,1010Application ReadForward1,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,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 2000,1010Application ReadForward1,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,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 2000,1010Application ReadForward1,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,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 2000,1010Application ReadForward1,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,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 2000,1010Application ReadForward1,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,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 2000,1010Application ReadForward1,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,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 2000,1010Application ReadForward1,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,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 2000,1010Application ReadForward1,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,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 2000,1010Application ReadForward1,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
30650,SRR28054745,SRX23704460,SRS20534455,SRP491086,PRJNA1078753,Integrated mRNA and miRNA sequencing analyses unveil the underlying mechanism of tobacco pollutant induced developmental toxicity in zebrafish embryos,PRJNA1078753,Other,Tobacco pollutants are prevalent in the environment leading to inadvertent exposure of pregnant females. Studies of these pollutants' toxic effects on development have not fully elucidated the potential underlying mechanisms. Therefore in this study we aim at investigate the developmental toxicity induced by cigarette smoke extract CSE at concentrations of 0.25% 1% and 2.5% using a zebrafish embryo toxicity test and integrated transcriptomic analysis of microRNA miRNA and messenger RNA mRNA. The findings revealed that CSE caused developmental toxicity including increased mortality and decreased incubation rate in a dose dependent manner. Moreover CSE induced malformations and apoptosis specifically in the head and heart of zebrafish larvae. We used mRNA and miRNA sequencing analyses to compare changes in the expression of genes and miRNAs in zebrafish larvae. The bioinformatics analysis indicates that the mechanism underlying CSE induced developmental toxicity was associated with genetic repair impairment apoptosis disorder and lipid metabolism disturbance. The enrichment analysis and RT qPCR show that the ctsba gene plays a crucial function in embryo developmental apoptosis and the fads2 gene mainly regulates lipid metabolic toxicity. The results of this study improve the understanding of CSE induced developmental toxicity in zebrafish embryos and contribute insights into the formulation of novel preventive strategies against tobacco pollutants during early embryonic development.,,,,,S21K1228,,library ID:H 1|title:High 1|library strategy:OTHER|library source:METATRANSCRIPTIOMIC|library selection:other|library layout:paired|platform:ILLUMINA|instrument model:RNA seq|filetype:fastq|filename:S21K1228 rep1 1 URNA S72 L003 R1 001.fastq|filename2:S21K1228 rep1 1 URNA S72 L003 R2 001.fastq|host:missing|isolation source:missing|collection date:missing|geographic location:missing|latitude and longitude:missing|age:missing|breed:missing|cultivar:missing|dev stage:missing|ecotype:missing|isolate:missing|sex:missing|strain:missing|tissue:missing|BioSampleModel:Model organism or animal,,,,,,,,,High 1,H 1,H 1,missing,,,RNA-Seq,METATRANSCRIPTOMIC,other,PAIRED,ILLUMINA,Illumina NovaSeq 6000,,SRP491086,,,S21K1228_rep1_1_URNA_S72_L003_R1_001.fastq.gz S21K1228_rep1_1_URNA_S72_L003_R2_001.fastq.gz,fastq fastq,6506930400.0,21689768.0,S21K1228 rep1 1 URNA S72 L003 R1 001.fastq.gz,0:150 1:150,A:1750770382;C:1473474222;G:1551729505;T:1730941027;N:15264,150,150,,,1750770382,1473474222,1551729505,1730941027,15264,SRX23704460,SRS20534455,SRA1806456,The Second Affiliated Hospital of Shantou University Medical College|Department of Burns and Plastic Surgery,The Second Affiliated Hospital of Shantou University Medical College,,,,,,,,,,,,B,B,biological fallback assumption,illumina,novaseq_era,unknown,small_rna,unknown,bulk,unknown,unknown,,China,2024-02-22,Undetermined,Multi-stage,Undetermined,Undetermined
30651,SRR28054746,SRX23704459,SRS20534452,SRP491086,PRJNA1078753,Integrated mRNA and miRNA sequencing analyses unveil the underlying mechanism of tobacco pollutant induced developmental toxicity in zebrafish embryos,PRJNA1078753,Other,Tobacco pollutants are prevalent in the environment leading to inadvertent exposure of pregnant females. Studies of these pollutants' toxic effects on development have not fully elucidated the potential underlying mechanisms. Therefore in this study we aim at investigate the developmental toxicity induced by cigarette smoke extract CSE at concentrations of 0.25% 1% and 2.5% using a zebrafish embryo toxicity test and integrated transcriptomic analysis of microRNA miRNA and messenger RNA mRNA. The findings revealed that CSE caused developmental toxicity including increased mortality and decreased incubation rate in a dose dependent manner. Moreover CSE induced malformations and apoptosis specifically in the head and heart of zebrafish larvae. We used mRNA and miRNA sequencing analyses to compare changes in the expression of genes and miRNAs in zebrafish larvae. The bioinformatics analysis indicates that the mechanism underlying CSE induced developmental toxicity was associated with genetic repair impairment apoptosis disorder and lipid metabolism disturbance. The enrichment analysis and RT qPCR show that the ctsba gene plays a crucial function in embryo developmental apoptosis and the fads2 gene mainly regulates lipid metabolic toxicity. The results of this study improve the understanding of CSE induced developmental toxicity in zebrafish embryos and contribute insights into the formulation of novel preventive strategies against tobacco pollutants during early embryonic development.,,,,,S21K1227,,library ID:M 3|title:Medium 3|library strategy:OTHER|library source:METATRANSCRIPTIOMIC|library selection:other|library layout:paired|platform:ILLUMINA|instrument model:RNA seq|filetype:fastq|filename:S21K1227 rep1 1 URNA S71 L003 R1 001.fastq|filename2:S21K1227 rep1 1 URNA S71 L003 R2 001.fastq|host:missing|isolation source:missing|collection date:missing|geographic location:missing|latitude and longitude:missing|age:missing|breed:missing|cultivar:missing|dev stage:missing|ecotype:missing|isolate:missing|sex:missing|strain:missing|tissue:missing|BioSampleModel:Model organism or animal,,,,,,,,,Medium 3,M 3,M 3,missing,,,RNA-Seq,METATRANSCRIPTOMIC,other,PAIRED,ILLUMINA,Illumina NovaSeq 6000,,SRP491086,,,S21K1227_rep1_1_URNA_S71_L003_R1_001.fastq.gz S21K1227_rep1_1_URNA_S71_L003_R2_001.fastq.gz,fastq fastq,6899268300.0,22997561.0,S21K1227 rep1 1 URNA S71 L003 R1 001.fastq.gz,0:150 1:150,A:1858425383;C:1565856426;G:1639602501;T:1835367744;N:16246,150,150,,,1858425383,1565856426,1639602501,1835367744,16246,SRX23704459,SRS20534452,SRA1806456,The Second Affiliated Hospital of Shantou University Medical College|Department of Burns and Plastic Surgery,The Second Affiliated Hospital of Shantou University Medical College,,,,,,,,,,,,B,B,biological fallback assumption,illumina,novaseq_era,unknown,small_rna,unknown,bulk,unknown,unknown,,China,2024-02-22,Undetermined,Multi-stage,Undetermined,Undetermined
30652,SRR28054747,SRX23704458,SRS20534453,SRP491086,PRJNA1078753,Integrated mRNA and miRNA sequencing analyses unveil the underlying mechanism of tobacco pollutant induced developmental toxicity in zebrafish embryos,PRJNA1078753,Other,Tobacco pollutants are prevalent in the environment leading to inadvertent exposure of pregnant females. Studies of these pollutants' toxic effects on development have not fully elucidated the potential underlying mechanisms. Therefore in this study we aim at investigate the developmental toxicity induced by cigarette smoke extract CSE at concentrations of 0.25% 1% and 2.5% using a zebrafish embryo toxicity test and integrated transcriptomic analysis of microRNA miRNA and messenger RNA mRNA. The findings revealed that CSE caused developmental toxicity including increased mortality and decreased incubation rate in a dose dependent manner. Moreover CSE induced malformations and apoptosis specifically in the head and heart of zebrafish larvae. We used mRNA and miRNA sequencing analyses to compare changes in the expression of genes and miRNAs in zebrafish larvae. The bioinformatics analysis indicates that the mechanism underlying CSE induced developmental toxicity was associated with genetic repair impairment apoptosis disorder and lipid metabolism disturbance. The enrichment analysis and RT qPCR show that the ctsba gene plays a crucial function in embryo developmental apoptosis and the fads2 gene mainly regulates lipid metabolic toxicity. The results of this study improve the understanding of CSE induced developmental toxicity in zebrafish embryos and contribute insights into the formulation of novel preventive strategies against tobacco pollutants during early embryonic development.,,,,,S21K1226,,library ID:M 2|title:Medium 2|library strategy:OTHER|library source:METATRANSCRIPTIOMIC|library selection:other|library layout:paired|platform:ILLUMINA|instrument model:RNA seq|filetype:fastq|filename:S21K1226 rep1 1 URNA S70 L003 R1 001.fastq|filename2:S21K1226 rep1 1 URNA S70 L003 R2 001.fastq|host:missing|isolation source:missing|collection date:missing|geographic location:missing|latitude and longitude:missing|age:missing|breed:missing|cultivar:missing|dev stage:missing|ecotype:missing|isolate:missing|sex:missing|strain:missing|tissue:missing|BioSampleModel:Model organism or animal,,,,,,,,,Medium 2,M 2,M 2,missing,,,RNA-Seq,METATRANSCRIPTOMIC,other,PAIRED,ILLUMINA,Illumina NovaSeq 6000,,SRP491086,,,S21K1226_rep1_1_URNA_S70_L003_R1_001.fastq.gz S21K1226_rep1_1_URNA_S70_L003_R2_001.fastq.gz,fastq fastq,6310969500.0,21036565.0,S21K1226 rep1 1 URNA S70 L003 R1 001.fastq.gz,0:150 1:150,A:1688391347;C:1451351943;G:1503321023;T:1667755412;N:149775,150,150,,,1688391347,1451351943,1503321023,1667755412,149775,SRX23704458,SRS20534453,SRA1806456,The Second Affiliated Hospital of Shantou University Medical College|Department of Burns and Plastic Surgery,The Second Affiliated Hospital of Shantou University Medical College,,,,,,,,,,,,B,B,biological fallback assumption,illumina,novaseq_era,unknown,small_rna,unknown,bulk,unknown,unknown,,China,2024-02-22,Undetermined,Multi-stage,Undetermined,Undetermined
30653,SRR28054748,SRX23704457,SRS20534454,SRP491086,PRJNA1078753,Integrated mRNA and miRNA sequencing analyses unveil the underlying mechanism of tobacco pollutant induced developmental toxicity in zebrafish embryos,PRJNA1078753,Other,Tobacco pollutants are prevalent in the environment leading to inadvertent exposure of pregnant females. Studies of these pollutants' toxic effects on development have not fully elucidated the potential underlying mechanisms. Therefore in this study we aim at investigate the developmental toxicity induced by cigarette smoke extract CSE at concentrations of 0.25% 1% and 2.5% using a zebrafish embryo toxicity test and integrated transcriptomic analysis of microRNA miRNA and messenger RNA mRNA. The findings revealed that CSE caused developmental toxicity including increased mortality and decreased incubation rate in a dose dependent manner. Moreover CSE induced malformations and apoptosis specifically in the head and heart of zebrafish larvae. We used mRNA and miRNA sequencing analyses to compare changes in the expression of genes and miRNAs in zebrafish larvae. The bioinformatics analysis indicates that the mechanism underlying CSE induced developmental toxicity was associated with genetic repair impairment apoptosis disorder and lipid metabolism disturbance. The enrichment analysis and RT qPCR show that the ctsba gene plays a crucial function in embryo developmental apoptosis and the fads2 gene mainly regulates lipid metabolic toxicity. The results of this study improve the understanding of CSE induced developmental toxicity in zebrafish embryos and contribute insights into the formulation of novel preventive strategies against tobacco pollutants during early embryonic development.,,,,,S21K1225,,library ID:M 1|title:Medium 1|library strategy:OTHER|library source:METATRANSCRIPTIOMIC|library selection:other|library layout:paired|platform:ILLUMINA|instrument model:RNA seq|filetype:fastq|filename:S21K1225 rep1 1 URNA S69 L003 R1 001.fastq|filename2:S21K1225 rep1 1 URNA S69 L003 R2 001.fastq|host:missing|isolation source:missing|collection date:missing|geographic location:missing|latitude and longitude:missing|age:missing|breed:missing|cultivar:missing|dev stage:missing|ecotype:missing|isolate:missing|sex:missing|strain:missing|tissue:missing|BioSampleModel:Model organism or animal,,,,,,,,,Medium 1,M 1,M 1,missing,,,RNA-Seq,METATRANSCRIPTOMIC,other,PAIRED,ILLUMINA,Illumina NovaSeq 6000,,SRP491086,,,S21K1225_rep1_1_URNA_S69_L003_R1_001.fastq.gz S21K1225_rep1_1_URNA_S69_L003_R2_001.fastq.gz,fastq fastq,8677007700.0,28923359.0,S21K1225 rep1 1 URNA S69 L003 R1 001.fastq.gz,0:150 1:150,A:2318840740;C:1999375306;G:2068690840;T:2290080340;N:20474,150,150,,,2318840740,1999375306,2068690840,2290080340,20474,SRX23704457,SRS20534454,SRA1806456,The Second Affiliated Hospital of Shantou University Medical College|Department of Burns and Plastic Surgery,The Second Affiliated Hospital of Shantou University Medical College,,,,,,,,,,,,B,B,biological fallback assumption,illumina,novaseq_era,unknown,small_rna,unknown,bulk,unknown,unknown,,China,2024-02-22,Undetermined,Multi-stage,Undetermined,Undetermined
30654,SRR28054749,SRX23704456,SRS20534450,SRP491086,PRJNA1078753,Integrated mRNA and miRNA sequencing analyses unveil the underlying mechanism of tobacco pollutant induced developmental toxicity in zebrafish embryos,PRJNA1078753,Other,Tobacco pollutants are prevalent in the environment leading to inadvertent exposure of pregnant females. Studies of these pollutants' toxic effects on development have not fully elucidated the potential underlying mechanisms. Therefore in this study we aim at investigate the developmental toxicity induced by cigarette smoke extract CSE at concentrations of 0.25% 1% and 2.5% using a zebrafish embryo toxicity test and integrated transcriptomic analysis of microRNA miRNA and messenger RNA mRNA. The findings revealed that CSE caused developmental toxicity including increased mortality and decreased incubation rate in a dose dependent manner. Moreover CSE induced malformations and apoptosis specifically in the head and heart of zebrafish larvae. We used mRNA and miRNA sequencing analyses to compare changes in the expression of genes and miRNAs in zebrafish larvae. The bioinformatics analysis indicates that the mechanism underlying CSE induced developmental toxicity was associated with genetic repair impairment apoptosis disorder and lipid metabolism disturbance. The enrichment analysis and RT qPCR show that the ctsba gene plays a crucial function in embryo developmental apoptosis and the fads2 gene mainly regulates lipid metabolic toxicity. The results of this study improve the understanding of CSE induced developmental toxicity in zebrafish embryos and contribute insights into the formulation of novel preventive strategies against tobacco pollutants during early embryonic development.,,,,,S21K1224,,library ID:L 3|title:Low 3|library strategy:OTHER|library source:METATRANSCRIPTIOMIC|library selection:other|library layout:paired|platform:ILLUMINA|instrument model:RNA seq|filetype:fastq|filename:S21K1224 rep1 1 URNA S68 L003 R1 001.fastq|filename2:S21K1224 rep1 1 URNA S68 L003 R2 001.fastq|host:missing|isolation source:missing|collection date:missing|geographic location:missing|latitude and longitude:missing|age:missing|breed:missing|cultivar:missing|dev stage:missing|ecotype:missing|isolate:missing|sex:missing|strain:missing|tissue:missing|BioSampleModel:Model organism or animal,,,,,,,,,Low 3,L 3,L 3,missing,,,RNA-Seq,METATRANSCRIPTOMIC,other,PAIRED,ILLUMINA,Illumina NovaSeq 6000,,SRP491086,,,S21K1224_rep1_1_URNA_S68_L003_R1_001.fastq.gz S21K1224_rep1_1_URNA_S68_L003_R2_001.fastq.gz,fastq fastq,7160279400.0,23867598.0,S21K1224 rep1 1 URNA S68 L003 R1 001.fastq.gz,0:150 1:150,A:1893984011;C:1641393143;G:1753657602;T:1871228004;N:16640,150,150,,,1893984011,1641393143,1753657602,1871228004,16640,SRX23704456,SRS20534450,SRA1806456,The Second Affiliated Hospital of Shantou University Medical College|Department of Burns and Plastic Surgery,The Second Affiliated Hospital of Shantou University Medical College,,,,,,,,,,,,B,B,biological fallback assumption,illumina,novaseq_era,unknown,small_rna,unknown,bulk,unknown,unknown,,China,2024-02-22,Undetermined,Multi-stage,Undetermined,Undetermined
30655,SRR28054750,SRX23704455,SRS20534451,SRP491086,PRJNA1078753,Integrated mRNA and miRNA sequencing analyses unveil the underlying mechanism of tobacco pollutant induced developmental toxicity in zebrafish embryos,PRJNA1078753,Other,Tobacco pollutants are prevalent in the environment leading to inadvertent exposure of pregnant females. Studies of these pollutants' toxic effects on development have not fully elucidated the potential underlying mechanisms. Therefore in this study we aim at investigate the developmental toxicity induced by cigarette smoke extract CSE at concentrations of 0.25% 1% and 2.5% using a zebrafish embryo toxicity test and integrated transcriptomic analysis of microRNA miRNA and messenger RNA mRNA. The findings revealed that CSE caused developmental toxicity including increased mortality and decreased incubation rate in a dose dependent manner. Moreover CSE induced malformations and apoptosis specifically in the head and heart of zebrafish larvae. We used mRNA and miRNA sequencing analyses to compare changes in the expression of genes and miRNAs in zebrafish larvae. The bioinformatics analysis indicates that the mechanism underlying CSE induced developmental toxicity was associated with genetic repair impairment apoptosis disorder and lipid metabolism disturbance. The enrichment analysis and RT qPCR show that the ctsba gene plays a crucial function in embryo developmental apoptosis and the fads2 gene mainly regulates lipid metabolic toxicity. The results of this study improve the understanding of CSE induced developmental toxicity in zebrafish embryos and contribute insights into the formulation of novel preventive strategies against tobacco pollutants during early embryonic development.,,,,,S21K1223,,library ID:L 2|title:Low 2|library strategy:OTHER|library source:METATRANSCRIPTIOMIC|library selection:other|library layout:paired|platform:ILLUMINA|instrument model:RNA seq|filetype:fastq|filename:S21K1223 rep1 1 URNA S67 L003 R1 001.fastq|filename2:S21K1223 rep1 1 URNA S67 L003 R2 001.fastq|host:missing|isolation source:missing|collection date:missing|geographic location:missing|latitude and longitude:missing|age:missing|breed:missing|cultivar:missing|dev stage:missing|ecotype:missing|isolate:missing|sex:missing|strain:missing|tissue:missing|BioSampleModel:Model organism or animal,,,,,,,,,Low 2,L 2,L 2,missing,,,RNA-Seq,METATRANSCRIPTOMIC,other,PAIRED,ILLUMINA,Illumina NovaSeq 6000,,SRP491086,,,S21K1223_rep1_1_URNA_S67_L003_R1_001.fastq.gz S21K1223_rep1_1_URNA_S67_L003_R2_001.fastq.gz,fastq fastq,6779124000.0,22597080.0,S21K1223 rep1 1 URNA S67 L003 R1 001.fastq.gz,0:150 1:150,A:1804338053;C:1556291420;G:1636850001;T:1781628665;N:15861,150,150,,,1804338053,1556291420,1636850001,1781628665,15861,SRX23704455,SRS20534451,SRA1806456,The Second Affiliated Hospital of Shantou University Medical College|Department of Burns and Plastic Surgery,The Second Affiliated Hospital of Shantou University Medical College,,,,,,,,,,,,B,B,biological fallback assumption,illumina,novaseq_era,unknown,small_rna,unknown,bulk,unknown,unknown,,China,2024-02-22,Undetermined,Multi-stage,Undetermined,Undetermined
30656,SRR28054751,SRX23704454,SRS20534449,SRP491086,PRJNA1078753,Integrated mRNA and miRNA sequencing analyses unveil the underlying mechanism of tobacco pollutant induced developmental toxicity in zebrafish embryos,PRJNA1078753,Other,Tobacco pollutants are prevalent in the environment leading to inadvertent exposure of pregnant females. Studies of these pollutants' toxic effects on development have not fully elucidated the potential underlying mechanisms. Therefore in this study we aim at investigate the developmental toxicity induced by cigarette smoke extract CSE at concentrations of 0.25% 1% and 2.5% using a zebrafish embryo toxicity test and integrated transcriptomic analysis of microRNA miRNA and messenger RNA mRNA. The findings revealed that CSE caused developmental toxicity including increased mortality and decreased incubation rate in a dose dependent manner. Moreover CSE induced malformations and apoptosis specifically in the head and heart of zebrafish larvae. We used mRNA and miRNA sequencing analyses to compare changes in the expression of genes and miRNAs in zebrafish larvae. The bioinformatics analysis indicates that the mechanism underlying CSE induced developmental toxicity was associated with genetic repair impairment apoptosis disorder and lipid metabolism disturbance. The enrichment analysis and RT qPCR show that the ctsba gene plays a crucial function in embryo developmental apoptosis and the fads2 gene mainly regulates lipid metabolic toxicity. The results of this study improve the understanding of CSE induced developmental toxicity in zebrafish embryos and contribute insights into the formulation of novel preventive strategies against tobacco pollutants during early embryonic development.,,,,,S21K1222,,library ID:L 1|title:Low 1|library strategy:OTHER|library source:METATRANSCRIPTIOMIC|library selection:other|library layout:paired|platform:ILLUMINA|instrument model:RNA seq|filetype:fastq|filename:S21K1222 rep1 1 URNA S66 L003 R1 001.fastq|filename2:S21K1222 rep1 1 URNA S66 L003 R2 001.fastq|host:missing|isolation source:missing|collection date:missing|geographic location:missing|latitude and longitude:missing|age:missing|breed:missing|cultivar:missing|dev stage:missing|ecotype:missing|isolate:missing|sex:missing|strain:missing|tissue:missing|BioSampleModel:Model organism or animal,,,,,,,,,Low 1,L 1,L 1,missing,,,RNA-Seq,METATRANSCRIPTOMIC,other,PAIRED,ILLUMINA,Illumina NovaSeq 6000,,SRP491086,,,S21K1222_rep1_1_URNA_S66_L003_R1_001.fastq.gz S21K1222_rep1_1_URNA_S66_L003_R2_001.fastq.gz,fastq fastq,7484014500.0,24946715.0,S21K1222 rep1 1 URNA S66 L003 R1 001.fastq.gz,0:150 1:150,A:1895991723;C:1633895559;G:2095064183;T:1859045639;N:17396,150,150,,,1895991723,1633895559,2095064183,1859045639,17396,SRX23704454,SRS20534449,SRA1806456,The Second Affiliated Hospital of Shantou University Medical College|Department of Burns and Plastic Surgery,The Second Affiliated Hospital of Shantou University Medical College,,,,,,,,,,,,B,B,biological fallback assumption,illumina,novaseq_era,unknown,small_rna,unknown,bulk,unknown,unknown,,China,2024-02-22,Undetermined,Multi-stage,Undetermined,Undetermined
30657,SRR28054752,SRX23704453,SRS20534447,SRP491086,PRJNA1078753,Integrated mRNA and miRNA sequencing analyses unveil the underlying mechanism of tobacco pollutant induced developmental toxicity in zebrafish embryos,PRJNA1078753,Other,Tobacco pollutants are prevalent in the environment leading to inadvertent exposure of pregnant females. Studies of these pollutants' toxic effects on development have not fully elucidated the potential underlying mechanisms. Therefore in this study we aim at investigate the developmental toxicity induced by cigarette smoke extract CSE at concentrations of 0.25% 1% and 2.5% using a zebrafish embryo toxicity test and integrated transcriptomic analysis of microRNA miRNA and messenger RNA mRNA. The findings revealed that CSE caused developmental toxicity including increased mortality and decreased incubation rate in a dose dependent manner. Moreover CSE induced malformations and apoptosis specifically in the head and heart of zebrafish larvae. We used mRNA and miRNA sequencing analyses to compare changes in the expression of genes and miRNAs in zebrafish larvae. The bioinformatics analysis indicates that the mechanism underlying CSE induced developmental toxicity was associated with genetic repair impairment apoptosis disorder and lipid metabolism disturbance. The enrichment analysis and RT qPCR show that the ctsba gene plays a crucial function in embryo developmental apoptosis and the fads2 gene mainly regulates lipid metabolic toxicity. The results of this study improve the understanding of CSE induced developmental toxicity in zebrafish embryos and contribute insights into the formulation of novel preventive strategies against tobacco pollutants during early embryonic development.,,,,,S21K1221,,library ID:C 3|title:Control 3|library strategy:OTHER|library source:METATRANSCRIPTIOMIC|library selection:other|library layout:paired|platform:ILLUMINA|instrument model:RNA seq|filetype:fastq|filename:S21K1221 rep1 1 URNA S65 L003 R1 001.fastq|filename2:S21K1221 rep1 1 URNA S65 L003 R2 001.fastq|host:missing|isolation source:missing|collection date:missing|geographic location:missing|latitude and longitude:missing|age:missing|breed:missing|cultivar:missing|dev stage:missing|ecotype:missing|isolate:missing|sex:missing|strain:missing|tissue:missing|BioSampleModel:Model organism or animal,,,,,,,,,Control 3,C 3,C 3,missing,,,RNA-Seq,METATRANSCRIPTOMIC,other,PAIRED,ILLUMINA,Illumina NovaSeq 6000,,SRP491086,,,S21K1221_rep1_1_URNA_S65_L003_R1_001.fastq.gz S21K1221_rep1_1_URNA_S65_L003_R2_001.fastq.gz,fastq fastq,6562506000.0,21875020.0,S21K1221 rep1 1 URNA S65 L003 R1 001.fastq.gz,0:150 1:150,A:1753018331;C:1507753283;G:1569109292;T:1732610076;N:15018,150,150,,,1753018331,1507753283,1569109292,1732610076,15018,SRX23704453,SRS20534447,SRA1806456,The Second Affiliated Hospital of Shantou University Medical College|Department of Burns and Plastic Surgery,The Second Affiliated Hospital of Shantou University Medical College,,,,,,,,,,,,B,B,biological fallback assumption,illumina,novaseq_era,unknown,small_rna,unknown,bulk,unknown,unknown,,China,2024-02-22,Undetermined,Multi-stage,Undetermined,Undetermined
30658,SRR28054753,SRX23704452,SRS20534448,SRP491086,PRJNA1078753,Integrated mRNA and miRNA sequencing analyses unveil the underlying mechanism of tobacco pollutant induced developmental toxicity in zebrafish embryos,PRJNA1078753,Other,Tobacco pollutants are prevalent in the environment leading to inadvertent exposure of pregnant females. Studies of these pollutants' toxic effects on development have not fully elucidated the potential underlying mechanisms. Therefore in this study we aim at investigate the developmental toxicity induced by cigarette smoke extract CSE at concentrations of 0.25% 1% and 2.5% using a zebrafish embryo toxicity test and integrated transcriptomic analysis of microRNA miRNA and messenger RNA mRNA. The findings revealed that CSE caused developmental toxicity including increased mortality and decreased incubation rate in a dose dependent manner. Moreover CSE induced malformations and apoptosis specifically in the head and heart of zebrafish larvae. We used mRNA and miRNA sequencing analyses to compare changes in the expression of genes and miRNAs in zebrafish larvae. The bioinformatics analysis indicates that the mechanism underlying CSE induced developmental toxicity was associated with genetic repair impairment apoptosis disorder and lipid metabolism disturbance. The enrichment analysis and RT qPCR show that the ctsba gene plays a crucial function in embryo developmental apoptosis and the fads2 gene mainly regulates lipid metabolic toxicity. The results of this study improve the understanding of CSE induced developmental toxicity in zebrafish embryos and contribute insights into the formulation of novel preventive strategies against tobacco pollutants during early embryonic development.,,,,,S21K1230,,library ID:H 3|title:High 3|library strategy:OTHER|library source:METATRANSCRIPTIOMIC|library selection:other|library layout:paired|platform:ILLUMINA|instrument model:RNA seq|filetype:fastq|filename:S21K1230 rep1 1 URNA S74 L003 R1 001.fastq|filename2:S21K1230 rep1 1 URNA S74 L003 R2 001.fastq|host:missing|isolation source:missing|collection date:missing|geographic location:missing|latitude and longitude:missing|age:missing|breed:missing|cultivar:missing|dev stage:missing|ecotype:missing|isolate:missing|sex:missing|strain:missing|tissue:missing|BioSampleModel:Model organism or animal,,,,,,,,,High 3,H 3,H 3,missing,,,RNA-Seq,METATRANSCRIPTOMIC,other,SINGLE,ILLUMINA,Illumina NovaSeq 6000,,SRP491086,,,S21K1230_rep1_1_URNA_S74_L003_R1_001.fastq.gz S21K1230_rep1_1_URNA_S74_L003_R2_001.fastq.gz,fastq fastq,6117817800.0,20392726.0,S21K1230 rep1 1 URNA S74 L003 R1 001.fastq.gz,0:150 1:150,A:1635728688;C:1405168032;G:1464072107;T:1612834762;N:14211,150,150,,,1635728688,1405168032,1464072107,1612834762,14211,SRX23704452,SRS20534448,SRA1806456,The Second Affiliated Hospital of Shantou University Medical College|Department of Burns and Plastic Surgery,The Second Affiliated Hospital of Shantou University Medical College,,,,,,,,,,,,B,B,biological fallback assumption,illumina,novaseq_era,unknown,small_rna,unknown,bulk,unknown,unknown,,China,2024-02-22,Undetermined,Multi-stage,Undetermined,Undetermined
30659,SRR28054754,SRX23704451,SRS20534446,SRP491086,PRJNA1078753,Integrated mRNA and miRNA sequencing analyses unveil the underlying mechanism of tobacco pollutant induced developmental toxicity in zebrafish embryos,PRJNA1078753,Other,Tobacco pollutants are prevalent in the environment leading to inadvertent exposure of pregnant females. Studies of these pollutants' toxic effects on development have not fully elucidated the potential underlying mechanisms. Therefore in this study we aim at investigate the developmental toxicity induced by cigarette smoke extract CSE at concentrations of 0.25% 1% and 2.5% using a zebrafish embryo toxicity test and integrated transcriptomic analysis of microRNA miRNA and messenger RNA mRNA. The findings revealed that CSE caused developmental toxicity including increased mortality and decreased incubation rate in a dose dependent manner. Moreover CSE induced malformations and apoptosis specifically in the head and heart of zebrafish larvae. We used mRNA and miRNA sequencing analyses to compare changes in the expression of genes and miRNAs in zebrafish larvae. The bioinformatics analysis indicates that the mechanism underlying CSE induced developmental toxicity was associated with genetic repair impairment apoptosis disorder and lipid metabolism disturbance. The enrichment analysis and RT qPCR show that the ctsba gene plays a crucial function in embryo developmental apoptosis and the fads2 gene mainly regulates lipid metabolic toxicity. The results of this study improve the understanding of CSE induced developmental toxicity in zebrafish embryos and contribute insights into the formulation of novel preventive strategies against tobacco pollutants during early embryonic development.,,,,,S21K1229,,library ID:H 2|title:High 2|library strategy:OTHER|library source:METATRANSCRIPTIOMIC|library selection:other|library layout:paired|platform:ILLUMINA|instrument model:RNA seq|filetype:fastq|filename:S21K1229 rep1 1 URNA S73 L003 R1 001.fastq|filename2:S21K1229 rep1 1 URNA S73 L003 R2 001.fastq|host:missing|isolation source:missing|collection date:missing|geographic location:missing|latitude and longitude:missing|age:missing|breed:missing|cultivar:missing|dev stage:missing|ecotype:missing|isolate:missing|sex:missing|strain:missing|tissue:missing|BioSampleModel:Model organism or animal,,,,,,,,,High 2,H 2,H 2,missing,,,RNA-Seq,METATRANSCRIPTOMIC,other,PAIRED,ILLUMINA,Illumina NovaSeq 6000,,SRP491086,,,S21K1229_rep1_1_URNA_S73_L003_R1_001.fastq.gz S21K1229_rep1_1_URNA_S73_L003_R2_001.fastq.gz,fastq fastq,7164803100.0,23882677.0,S21K1229 rep1 1 URNA S73 L003 R1 001.fastq.gz,0:150 1:150,A:1920286881;C:1649856655;G:1697032084;T:1897610671;N:16809,150,150,,,1920286881,1649856655,1697032084,1897610671,16809,SRX23704451,SRS20534446,SRA1806456,The Second Affiliated Hospital of Shantou University Medical College|Department of Burns and Plastic Surgery,The Second Affiliated Hospital of Shantou University Medical College,,,,,,,,,,,,B,B,biological fallback assumption,illumina,novaseq_era,unknown,small_rna,unknown,bulk,unknown,unknown,,China,2024-02-22,Undetermined,Multi-stage,Undetermined,Undetermined
30660,SRR28054755,SRX23704450,SRS20534445,SRP491086,PRJNA1078753,Integrated mRNA and miRNA sequencing analyses unveil the underlying mechanism of tobacco pollutant induced developmental toxicity in zebrafish embryos,PRJNA1078753,Other,Tobacco pollutants are prevalent in the environment leading to inadvertent exposure of pregnant females. Studies of these pollutants' toxic effects on development have not fully elucidated the potential underlying mechanisms. Therefore in this study we aim at investigate the developmental toxicity induced by cigarette smoke extract CSE at concentrations of 0.25% 1% and 2.5% using a zebrafish embryo toxicity test and integrated transcriptomic analysis of microRNA miRNA and messenger RNA mRNA. The findings revealed that CSE caused developmental toxicity including increased mortality and decreased incubation rate in a dose dependent manner. Moreover CSE induced malformations and apoptosis specifically in the head and heart of zebrafish larvae. We used mRNA and miRNA sequencing analyses to compare changes in the expression of genes and miRNAs in zebrafish larvae. The bioinformatics analysis indicates that the mechanism underlying CSE induced developmental toxicity was associated with genetic repair impairment apoptosis disorder and lipid metabolism disturbance. The enrichment analysis and RT qPCR show that the ctsba gene plays a crucial function in embryo developmental apoptosis and the fads2 gene mainly regulates lipid metabolic toxicity. The results of this study improve the understanding of CSE induced developmental toxicity in zebrafish embryos and contribute insights into the formulation of novel preventive strategies against tobacco pollutants during early embryonic development.,,,,,S21K1220,,library ID:C 2|title:Control 2|library strategy:OTHER|library source:METATRANSCRIPTIOMIC|library selection:other|library layout:paired|platform:ILLUMINA|instrument model:RNA seq|filetype:fastq|filename:S21K1220 rep1 1 URNA S64 L003 R1 001.fastq|filename2:S21K1220 rep1 1 URNA S64 L003 R2 001.fastq|host:missing|isolation source:missing|collection date:missing|geographic location:missing|latitude and longitude:missing|age:missing|breed:missing|cultivar:missing|dev stage:missing|ecotype:missing|isolate:missing|sex:missing|strain:missing|tissue:missing|BioSampleModel:Model organism or animal,,,,,,,,,Control 2,C 2,C 2,missing,,,RNA-Seq,METATRANSCRIPTOMIC,other,PAIRED,ILLUMINA,Illumina NovaSeq 6000,,SRP491086,,,S21K1220_rep1_1_URNA_S64_L003_R1_001.fastq.gz S21K1220_rep1_1_URNA_S64_L003_R2_001.fastq.gz,fastq fastq,6790504800.0,22635016.0,S21K1220 rep1 1 URNA S64 L003 R1 001.fastq.gz,0:150 1:150,A:1784553430;C:1593393319;G:1650087761;T:1762454671;N:15619,150,150,,,1784553430,1593393319,1650087761,1762454671,15619,SRX23704450,SRS20534445,SRA1806456,The Second Affiliated Hospital of Shantou University Medical College|Department of Burns and Plastic Surgery,The Second Affiliated Hospital of Shantou University Medical College,,,,,,,,,,,,B,B,biological fallback assumption,illumina,novaseq_era,unknown,small_rna,unknown,bulk,unknown,unknown,,China,2024-02-22,Undetermined,Multi-stage,Undetermined,Undetermined
30661,SRR28054756,SRX23704449,SRS20534444,SRP491086,PRJNA1078753,Integrated mRNA and miRNA sequencing analyses unveil the underlying mechanism of tobacco pollutant induced developmental toxicity in zebrafish embryos,PRJNA1078753,Other,Tobacco pollutants are prevalent in the environment leading to inadvertent exposure of pregnant females. Studies of these pollutants' toxic effects on development have not fully elucidated the potential underlying mechanisms. Therefore in this study we aim at investigate the developmental toxicity induced by cigarette smoke extract CSE at concentrations of 0.25% 1% and 2.5% using a zebrafish embryo toxicity test and integrated transcriptomic analysis of microRNA miRNA and messenger RNA mRNA. The findings revealed that CSE caused developmental toxicity including increased mortality and decreased incubation rate in a dose dependent manner. Moreover CSE induced malformations and apoptosis specifically in the head and heart of zebrafish larvae. We used mRNA and miRNA sequencing analyses to compare changes in the expression of genes and miRNAs in zebrafish larvae. The bioinformatics analysis indicates that the mechanism underlying CSE induced developmental toxicity was associated with genetic repair impairment apoptosis disorder and lipid metabolism disturbance. The enrichment analysis and RT qPCR show that the ctsba gene plays a crucial function in embryo developmental apoptosis and the fads2 gene mainly regulates lipid metabolic toxicity. The results of this study improve the understanding of CSE induced developmental toxicity in zebrafish embryos and contribute insights into the formulation of novel preventive strategies against tobacco pollutants during early embryonic development.,,,,,S21K1219,,library ID:C 1|title:Control 1|library strategy:OTHER|library source:METATRANSCRIPTIOMIC|library selection:other|library layout:paired|platform:ILLUMINA|instrument model:RNA seq|filetype:fastq|filename:S21K1219 rep1 1 URNA S63 L003 R1 001.fastq|filename2:S21K1219 rep1 1 URNA S63 L003 R2 001.fastq|host:missing|isolation source:missing|collection date:missing|geographic location:missing|latitude and longitude:missing|age:missing|breed:missing|cultivar:missing|dev stage:missing|ecotype:missing|isolate:missing|sex:missing|strain:missing|tissue:missing|BioSampleModel:Model organism or animal,,,,,,,,,Control 1,C 1,C 1,missing,,,RNA-Seq,METATRANSCRIPTOMIC,other,PAIRED,ILLUMINA,Illumina NovaSeq 6000,,SRP491086,,,S21K1219_rep1_1_URNA_S63_L003_R1_001.fastq.gz S21K1219_rep1_1_URNA_S63_L003_R2_001.fastq.gz,fastq fastq,7498264200.0,24994214.0,S21K1219 rep1 1 URNA S63 L003 R1 001.fastq.gz,0:150 1:150,A:2002773492;C:1716996682;G:1800329295;T:1978147319;N:17412,150,150,,,2002773492,1716996682,1800329295,1978147319,17412,SRX23704449,SRS20534444,SRA1806456,The Second Affiliated Hospital of Shantou University Medical College|Department of Burns and Plastic Surgery,The Second Affiliated Hospital of Shantou University Medical College,,,,,,,,,,,,B,B,biological fallback assumption,illumina,novaseq_era,unknown,small_rna,unknown,bulk,unknown,unknown,,China,2024-02-22,Undetermined,Multi-stage,Undetermined,Undetermined
32508,SRR29290248,SRX24807391,SRS21522263,SRP511901,PRJNA1120203,Study of liver transcriptome in zebrafish May 29 '24,PRJNA1120203,Other,Liver of the transcriptome data from zebrafish exposed to small car tire wear particles,,,15 days experimental group parallel 1,liver transcriptome,L4 1,,strain:not applicable|isolate:not applicable|breed:zebrafish|cultivar:not applicable|ecotype:not applicable|age:3 month|dev stage:3 month|collection date:2023 08 09|geo loc name:China|sex:not collected|tissue:liver|birth date:2023 05 14|experiment description:Exposure to 80 100 mesh tire wear particles for 15 days|BioSampleModel:Model organism or animal,,,,,,,,,Zebrafish liver,L4 1,L4 1,Total RNA was extracted from the zebrafish liver tissue using a commercial RNA extraction kit following the manufacturer's instructions.The prepared library was sequenced on an Illumina HiSeq platform generating paired end reads.,,,OTHER,METATRANSCRIPTOMIC,other,PAIRED,ILLUMINA,Illumina NovaSeq 6000,,SRP511901,,,TMFA6-7L.R1.fq.gz TMFA6-7L.R2.fq.gz,fastq fastq,5892231600.0,19640772.0,TMFA6 7L.R1.fq.gz,0:150 1:150,A:1471743634;C:1450664701;G:1502453832;T:1466956960;N:412473,150,150,,,1471743634,1450664701,1502453832,1466956960,412473,SRX24807391,SRS21522263,SRA1889615,Qingdao University of Science and technology|College of marine science and biological engineeri,Qingdao University of Science and technology,,,,,,,,,,,,B,B,biological fallback assumption,illumina,novaseq_era,unknown,other,unknown,bulk,unknown,unknown,,China,2024-06-05,Adult,Adult,Liver,Liver and Biliary System
32509,SRR29290249,SRX24807390,SRS21522262,SRP511901,PRJNA1120203,Study of liver transcriptome in zebrafish May 29 '24,PRJNA1120203,Other,Liver of the transcriptome data from zebrafish exposed to small car tire wear particles,,,30 days experimental group parallel 3,liver transcriptome,L3 3,,strain:not applicable|isolate:not applicable|breed:zebrafish|cultivar:not applicable|ecotype:not applicable|age:3 month|dev stage:3 month|collection date:2023 08 23|geo loc name:China|sex:not collected|tissue:liver|birth date:2023 05 13|experiment description:Exposed to tire wear particles above 120 mesh excretion for 15 days|BioSampleModel:Model organism or animal,,,,,,,,,Zebrafish liver,L3 3,L3 3,Total RNA was extracted from the zebrafish liver tissue using a commercial RNA extraction kit following the manufacturer's instructions.The prepared library was sequenced on an Illumina HiSeq platform generating paired end reads.,,,OTHER,METATRANSCRIPTOMIC,other,PAIRED,ILLUMINA,Illumina NovaSeq 6000,,SRP511901,,,TLSC-5L.R1.fq.gz TLSC-5L.R2.fq.gz,fastq fastq,6269295000.0,20897650.0,TLSC 5L.R1.fq.gz,0:150 1:150,A:1541736942;C:1578334203;G:1620160556;T:1528907120;N:156179,150,150,,,1541736942,1578334203,1620160556,1528907120,156179,SRX24807390,SRS21522262,SRA1889615,Qingdao University of Science and technology|College of marine science and biological engineeri,Qingdao University of Science and technology,,,,,,,,,,,,B,B,biological fallback assumption,illumina,novaseq_era,unknown,other,unknown,bulk,unknown,unknown,,China,2024-06-05,Adult,Adult,Liver,Liver and Biliary System
32510,SRR29290250,SRX24807389,SRS21522261,SRP511901,PRJNA1120203,Study of liver transcriptome in zebrafish May 29 '24,PRJNA1120203,Other,Liver of the transcriptome data from zebrafish exposed to small car tire wear particles,,,30 days experimental group parallel 2,liver transcriptome,L3 2,,strain:not applicable|isolate:not applicable|breed:zebrafish|cultivar:not applicable|ecotype:not applicable|age:3 month|dev stage:3 month|collection date:2023 08 23|geo loc name:China|sex:not collected|tissue:liver|birth date:2023 05 12|experiment description:Exposed to tire wear particles above 120 mesh excretion for 15 days|BioSampleModel:Model organism or animal,,,,,,,,,Zebrafish liver,L3 2,L3 2,Total RNA was extracted from the zebrafish liver tissue using a commercial RNA extraction kit following the manufacturer's instructions.The prepared library was sequenced on an Illumina HiSeq platform generating paired end reads.,,,OTHER,METATRANSCRIPTOMIC,other,PAIRED,ILLUMINA,Illumina NovaSeq 6000,,SRP511901,,,TLSB-3L.R1.fq.gz TLSB-3L.R2.fq.gz,fastq fastq,6206673000.0,20688910.0,TLSB 3L.R1.fq.gz,0:150 1:150,A:1592564670;C:1487253074;G:1531600191;T:1595004475;N:250590,150,150,,,1592564670,1487253074,1531600191,1595004475,250590,SRX24807389,SRS21522261,SRA1889615,Qingdao University of Science and technology|College of marine science and biological engineeri,Qingdao University of Science and technology,,,,,,,,,,,,B,B,biological fallback assumption,illumina,novaseq_era,unknown,other,unknown,bulk,unknown,unknown,,China,2024-06-05,Adult,Adult,Liver,Liver and Biliary System
32511,SRR29290251,SRX24807388,SRS21522260,SRP511901,PRJNA1120203,Study of liver transcriptome in zebrafish May 29 '24,PRJNA1120203,Other,Liver of the transcriptome data from zebrafish exposed to small car tire wear particles,,,30 days experimental group parallel 1,liver transcriptome,L3 1,,strain:not applicable|isolate:not applicable|breed:zebrafish|cultivar:not applicable|ecotype:not applicable|age:3 month|dev stage:3 month|collection date:2023 08 23|geo loc name:China|sex:not collected|tissue:liver|birth date:2023 05 11|experiment description:Exposed to tire wear particles above 120 mesh excretion for 15 days|BioSampleModel:Model organism or animal,,,,,,,,,Zebrafish liver,L3 1,L3 1,Total RNA was extracted from the zebrafish liver tissue using a commercial RNA extraction kit following the manufacturer's instructions.The prepared library was sequenced on an Illumina HiSeq platform generating paired end reads.,,,OTHER,METATRANSCRIPTOMIC,other,PAIRED,ILLUMINA,Illumina NovaSeq 6000,,SRP511901,,,TLSA-1L.R1.fq.gz TLSA-1L.R2.fq.gz,fastq fastq,6188928300.0,20629761.0,TLSA 1L.R1.fq.gz,0:150 1:150,A:1584479312;C:1464260894;G:1549296685;T:1590644766;N:246643,150,150,,,1584479312,1464260894,1549296685,1590644766,246643,SRX24807388,SRS21522260,SRA1889615,Qingdao University of Science and technology|College of marine science and biological engineeri,Qingdao University of Science and technology,,,,,,,,,,,,B,B,biological fallback assumption,illumina,novaseq_era,unknown,other,unknown,bulk,unknown,unknown,,China,2024-06-05,Adult,Adult,Liver,Liver and Biliary System
32512,SRR29290252,SRX24807387,SRS21522259,SRP511901,PRJNA1120203,Study of liver transcriptome in zebrafish May 29 '24,PRJNA1120203,Other,Liver of the transcriptome data from zebrafish exposed to small car tire wear particles,,,15 days experimental group parallel 3,liver transcriptome,L2 3,,strain:not applicable|isolate:not applicable|breed:zebrafish|cultivar:not applicable|ecotype:not applicable|age:3 month|dev stage:3 month|collection date:2023 08 08|geo loc name:China|sex:not collected|tissue:liver|birth date:2023 05 16|experiment description:Exposed to 120 or above tire wear particles for 15 days|BioSampleModel:Model organism or animal,,,,,,,,,Zebrafish liver,L2 3,L2 3,Total RNA was extracted from the zebrafish liver tissue using a commercial RNA extraction kit following the manufacturer's instructions.The prepared library was sequenced on an Illumina HiSeq platform generating paired end reads.,,,OTHER,METATRANSCRIPTOMIC,other,PAIRED,ILLUMINA,Illumina NovaSeq 6000,,SRP511901,,,TLFC1-3L.R1.fq.gz TLFC1-3L.R2.fq.gz,fastq fastq,6367070400.0,21223568.0,TLFC1 3L.R1.fq.gz,0:150 1:150,A:1579430230;C:1587605262;G:1613210542;T:1586578782;N:245584,150,150,,,1579430230,1587605262,1613210542,1586578782,245584,SRX24807387,SRS21522259,SRA1889615,Qingdao University of Science and technology|College of marine science and biological engineeri,Qingdao University of Science and technology,,,,,,,,,,,,B,B,biological fallback assumption,illumina,novaseq_era,unknown,other,unknown,bulk,unknown,unknown,,China,2024-06-05,Adult,Adult,Liver,Liver and Biliary System
32513,SRR29290253,SRX24807386,SRS21522258,SRP511901,PRJNA1120203,Study of liver transcriptome in zebrafish May 29 '24,PRJNA1120203,Other,Liver of the transcriptome data from zebrafish exposed to small car tire wear particles,,,15 days experimental group parallel 2,liver transcriptome,L2 2,,strain:not applicable|isolate:not applicable|breed:zebrafish|cultivar:not applicable|ecotype:not applicable|age:3 month|dev stage:3 month|collection date:2023 08 08|geo loc name:China|sex:not collected|tissue:liver|birth date:2023 05 15|experiment description:Exposed to 120 or above tire wear particles for 15 days|BioSampleModel:Model organism or animal,,,,,,,,,Zebrafish liver,L2 2,L2 2,Total RNA was extracted from the zebrafish liver tissue using a commercial RNA extraction kit following the manufacturer's instructions.The prepared library was sequenced on an Illumina HiSeq platform generating paired end reads.,,,OTHER,METATRANSCRIPTOMIC,other,PAIRED,ILLUMINA,Illumina NovaSeq 6000,,SRP511901,,,TLFB1-3L.R1.fq.gz TLFB1-3L.R2.fq.gz,fastq fastq,6996653100.0,23322177.0,TLFB1 3L.R1.fq.gz,0:150 1:150,A:1803878205;C:1678057588;G:1715367000;T:1799170285;N:180022,150,150,,,1803878205,1678057588,1715367000,1799170285,180022,SRX24807386,SRS21522258,SRA1889615,Qingdao University of Science and technology|College of marine science and biological engineeri,Qingdao University of Science and technology,,,,,,,,,,,,B,B,biological fallback assumption,illumina,novaseq_era,unknown,other,unknown,bulk,unknown,unknown,,China,2024-06-05,Adult,Adult,Liver,Liver and Biliary System
32514,SRR29290254,SRX24807385,SRS21522257,SRP511901,PRJNA1120203,Study of liver transcriptome in zebrafish May 29 '24,PRJNA1120203,Other,Liver of the transcriptome data from zebrafish exposed to small car tire wear particles,,,15 days experimental group parallel 1,liver transcriptome,L2 1,,strain:not applicable|isolate:not applicable|breed:zebrafish|cultivar:not applicable|ecotype:not applicable|age:3 month|dev stage:3 month|collection date:2023 08 08|geo loc name:China|sex:not collected|tissue:liver|birth date:2023 05 14|experiment description:Exposed to 120 or above tire wear particles for 15 days|BioSampleModel:Model organism or animal,,,,,,,,,Zebrafish liver,L2 1,L2 1,Total RNA was extracted from the zebrafish liver tissue using a commercial RNA extraction kit following the manufacturer's instructions.The prepared library was sequenced on an Illumina HiSeq platform generating paired end reads.,,,OTHER,METATRANSCRIPTOMIC,other,PAIRED,ILLUMINA,Illumina NovaSeq 6000,,SRP511901,,,TLFA6-7L.R1.fq.gz TLFA6-7L.R2.fq.gz,fastq fastq,6109509300.0,20365031.0,TLFA6 7L.R1.fq.gz,0:150 1:150,A:1525902154;C:1507317327;G:1549698641;T:1526193716;N:397462,150,150,,,1525902154,1507317327,1549698641,1526193716,397462,SRX24807385,SRS21522257,SRA1889615,Qingdao University of Science and technology|College of marine science and biological engineeri,Qingdao University of Science and technology,,,,,,,,,,,,B,B,biological fallback assumption,illumina,novaseq_era,unknown,other,unknown,bulk,unknown,unknown,,China,2024-06-05,Adult,Adult,Liver,Liver and Biliary System
32515,SRR29290255,SRX24807384,SRS21522256,SRP511901,PRJNA1120203,Study of liver transcriptome in zebrafish May 29 '24,PRJNA1120203,Other,Liver of the transcriptome data from zebrafish exposed to small car tire wear particles,,,30 days experimental group parallel 3,liver transcriptome,L7 3,,strain:not applicable|isolate:not applicable|breed:zebrafish|cultivar:not applicable|ecotype:not applicable|age:3 month|dev stage:3 month|collection date:2023 08 25|geo loc name:China|sex:not collected|tissue:liver|birth date:2023 05 13|experiment description:Exposed to tire wear particles 40 60 mesh excretion for 15 days|BioSampleModel:Model organism or animal,,,,,,,,,Zebrafish liver,L7 3,L7 3,Total RNA was extracted from the zebrafish liver tissue using a commercial RNA extraction kit following the manufacturer's instructions.The prepared library was sequenced on an Illumina HiSeq platform generating paired end reads.,,,OTHER,METATRANSCRIPTOMIC,other,PAIRED,ILLUMINA,Illumina NovaSeq 6000,,SRP511901,,,TSSC-5L.R1.fq.gz TSSC-5L.R2.fq.gz,fastq fastq,6846271200.0,22820904.0,TSSC 5L.R1.fq.gz,0:150 1:150,A:1704275603;C:1639794530;G:1792628691;T:1709317043;N:255333,150,150,,,1704275603,1639794530,1792628691,1709317043,255333,SRX24807384,SRS21522256,SRA1889615,Qingdao University of Science and technology|College of marine science and biological engineeri,Qingdao University of Science and technology,,,,,,,,,,,,B,B,biological fallback assumption,illumina,novaseq_era,unknown,other,unknown,bulk,unknown,unknown,,China,2024-06-05,Adult,Adult,Liver,Liver and Biliary System
32516,SRR29290256,SRX24807383,SRS21522255,SRP511901,PRJNA1120203,Study of liver transcriptome in zebrafish May 29 '24,PRJNA1120203,Other,Liver of the transcriptome data from zebrafish exposed to small car tire wear particles,,,Control parallel 3,liver transcriptome,L1 3,,strain:not applicable|isolate:not applicable|breed:zebrafish|cultivar:not applicable|ecotype:not applicable|age:3 month|dev stage:3 month|collection date:2023 08 11|geo loc name:China|sex:not collected|tissue:liver|birth date:2023 05 13|experiment description:Sample from control group|BioSampleModel:Model organism or animal,,,,,,,,,Zebrafish liver,L1 3,L1 3,Total RNA was extracted from the zebrafish liver tissue using a commercial RNA extraction kit following the manufacturer's instructions.The prepared library was sequenced on an Illumina HiSeq platform generating paired end reads.,,,OTHER,METATRANSCRIPTOMIC,other,PAIRED,ILLUMINA,Illumina NovaSeq 6000,,SRP511901,,,FCFC1-3L.R1.fq.gz FCFC1-3L.R2.fq.gz,fastq fastq,6360438000.0,21201460.0,FCFC1 3L.R1.fq.gz,0:150 1:150,A:1591177652;C:1544470038;G:1615057708;T:1609485267;N:247335,150,150,,,1591177652,1544470038,1615057708,1609485267,247335,SRX24807383,SRS21522255,SRA1889615,Qingdao University of Science and technology|College of marine science and biological engineeri,Qingdao University of Science and technology,,,,,,,,,,,,B,B,biological fallback assumption,illumina,novaseq_era,unknown,other,unknown,bulk,unknown,unknown,,China,2024-06-05,Adult,Adult,Liver,Liver and Biliary System
32517,SRR29290257,SRX24807382,SRS21522254,SRP511901,PRJNA1120203,Study of liver transcriptome in zebrafish May 29 '24,PRJNA1120203,Other,Liver of the transcriptome data from zebrafish exposed to small car tire wear particles,,,30 days experimental group parallel 2,liver transcriptome,L7 2,,strain:not applicable|isolate:not applicable|breed:zebrafish|cultivar:not applicable|ecotype:not applicable|age:3 month|dev stage:3 month|collection date:2023 08 25|geo loc name:China|sex:not collected|tissue:liver|birth date:2023 05 12|experiment description:Exposed to tire wear particles 40 60 mesh excretion for 15 days|BioSampleModel:Model organism or animal,,,,,,,,,Zebrafish liver,L7 2,L7 2,Total RNA was extracted from the zebrafish liver tissue using a commercial RNA extraction kit following the manufacturer's instructions.The prepared library was sequenced on an Illumina HiSeq platform generating paired end reads.,,,OTHER,METATRANSCRIPTOMIC,other,PAIRED,ILLUMINA,Illumina NovaSeq 6000,,SRP511901,,,TSSB-3L.R1.fq.gz TSSB-3L.R2.fq.gz,fastq fastq,6285285600.0,20950952.0,TSSB 3L.R1.fq.gz,0:150 1:150,A:1584093051;C:1516123512;G:1599998121;T:1584824364;N:246552,150,150,,,1584093051,1516123512,1599998121,1584824364,246552,SRX24807382,SRS21522254,SRA1889615,Qingdao University of Science and technology|College of marine science and biological engineeri,Qingdao University of Science and technology,,,,,,,,,,,,B,B,biological fallback assumption,illumina,novaseq_era,unknown,other,unknown,bulk,unknown,unknown,,China,2024-06-05,Adult,Adult,Liver,Liver and Biliary System
32518,SRR29290258,SRX24807381,SRS21522253,SRP511901,PRJNA1120203,Study of liver transcriptome in zebrafish May 29 '24,PRJNA1120203,Other,Liver of the transcriptome data from zebrafish exposed to small car tire wear particles,,,30 days experimental group parallel 1,liver transcriptome,L7 1,,strain:not applicable|isolate:not applicable|breed:zebrafish|cultivar:not applicable|ecotype:not applicable|age:3 month|dev stage:3 month|collection date:2023 08 25|geo loc name:China|sex:not collected|tissue:liver|birth date:2023 05 11|experiment description:Exposed to tire wear particles 40 60 mesh excretion for 15 days|BioSampleModel:Model organism or animal,,,,,,,,,Zebrafish liver,L7 1,L7 1,Total RNA was extracted from the zebrafish liver tissue using a commercial RNA extraction kit following the manufacturer's instructions.The prepared library was sequenced on an Illumina HiSeq platform generating paired end reads.,,,OTHER,METATRANSCRIPTOMIC,other,PAIRED,ILLUMINA,Illumina NovaSeq 6000,,SRP511901,,,TSSA-1L.R1.fq.gz TSSA-1L.R2.fq.gz,fastq fastq,6078740100.0,20262467.0,TSSA 1L.R1.fq.gz,0:150 1:150,A:1530149533;C:1486474895;G:1528868563;T:1533006599;N:240510,150,150,,,1530149533,1486474895,1528868563,1533006599,240510,SRX24807381,SRS21522253,SRA1889615,Qingdao University of Science and technology|College of marine science and biological engineeri,Qingdao University of Science and technology,,,,,,,,,,,,B,B,biological fallback assumption,illumina,novaseq_era,unknown,other,unknown,bulk,unknown,unknown,,China,2024-06-05,Adult,Adult,Liver,Liver and Biliary System
32519,SRR29290259,SRX24807380,SRS21522252,SRP511901,PRJNA1120203,Study of liver transcriptome in zebrafish May 29 '24,PRJNA1120203,Other,Liver of the transcriptome data from zebrafish exposed to small car tire wear particles,,,15 days experimental group parallel 3,liver transcriptome,L6 3,,strain:not applicable|isolate:not applicable|breed:zebrafish|cultivar:not applicable|ecotype:not applicable|age:3 month|dev stage:3 month|collection date:2023 08 10|geo loc name:China|sex:not collected|tissue:liver|birth date:2023 05 16|experiment description:Exposure to 40 60 mesh tire wear particles for 15 days|BioSampleModel:Model organism or animal,,,,,,,,,Zebrafish liver,L6 3,L6 3,Total RNA was extracted from the zebrafish liver tissue using a commercial RNA extraction kit following the manufacturer's instructions.The prepared library was sequenced on an Illumina HiSeq platform generating paired end reads.,,,OTHER,METATRANSCRIPTOMIC,other,PAIRED,ILLUMINA,Illumina NovaSeq 6000,,SRP511901,,,TSFC1-3L.R1.fq.gz TSFC1-3L.R2.fq.gz,fastq fastq,6857466600.0,22858222.0,TSFC1 3L.R1.fq.gz,0:150 1:150,A:1755136176;C:1642995302;G:1688825155;T:1770233592;N:276375,150,150,,,1755136176,1642995302,1688825155,1770233592,276375,SRX24807380,SRS21522252,SRA1889615,Qingdao University of Science and technology|College of marine science and biological engineeri,Qingdao University of Science and technology,,,,,,,,,,,,B,B,biological fallback assumption,illumina,novaseq_era,unknown,other,unknown,bulk,unknown,unknown,,China,2024-06-05,Adult,Adult,Liver,Liver and Biliary System
32520,SRR29290260,SRX24807379,SRS21522251,SRP511901,PRJNA1120203,Study of liver transcriptome in zebrafish May 29 '24,PRJNA1120203,Other,Liver of the transcriptome data from zebrafish exposed to small car tire wear particles,,,15 days experimental group parallel 2,liver transcriptome,L6 2,,strain:not applicable|isolate:not applicable|breed:zebrafish|cultivar:not applicable|ecotype:not applicable|age:3 month|dev stage:3 month|collection date:2023 08 10|geo loc name:China|sex:not collected|tissue:liver|birth date:2023 05 15|experiment description:Exposure to 40 60 mesh tire wear particles for 15 days|BioSampleModel:Model organism or animal,,,,,,,,,Zebrafish liver,L6 2,L6 2,Total RNA was extracted from the zebrafish liver tissue using a commercial RNA extraction kit following the manufacturer's instructions.The prepared library was sequenced on an Illumina HiSeq platform generating paired end reads.,,,OTHER,METATRANSCRIPTOMIC,other,PAIRED,ILLUMINA,Illumina NovaSeq 6000,,SRP511901,,,TSFB1-3L.R1.fq.gz TSFB1-3L.R2.fq.gz,fastq fastq,7250329800.0,24167766.0,TSFB1 3L.R1.fq.gz,0:150 1:150,A:1825803037;C:1766132142;G:1813762639;T:1844348502;N:283480,150,150,,,1825803037,1766132142,1813762639,1844348502,283480,SRX24807379,SRS21522251,SRA1889615,Qingdao University of Science and technology|College of marine science and biological engineeri,Qingdao University of Science and technology,,,,,,,,,,,,B,B,biological fallback assumption,illumina,novaseq_era,unknown,other,unknown,bulk,unknown,unknown,,China,2024-06-05,Adult,Adult,Liver,Liver and Biliary System
32521,SRR29290261,SRX24807378,SRS21522250,SRP511901,PRJNA1120203,Study of liver transcriptome in zebrafish May 29 '24,PRJNA1120203,Other,Liver of the transcriptome data from zebrafish exposed to small car tire wear particles,,,15 days experimental group parallel 1,liver transcriptome,L6 1,,strain:not applicable|isolate:not applicable|breed:zebrafish|cultivar:not applicable|ecotype:not applicable|age:3 month|dev stage:3 month|collection date:2023 08 10|geo loc name:China|sex:not collected|tissue:liver|birth date:2023 05 14|experiment description:Exposure to 40 60 mesh tire wear particles for 15 days|BioSampleModel:Model organism or animal,,,,,,,,,Zebrafish liver,L6 1,L6 1,Total RNA was extracted from the zebrafish liver tissue using a commercial RNA extraction kit following the manufacturer's instructions.The prepared library was sequenced on an Illumina HiSeq platform generating paired end reads.,,,OTHER,METATRANSCRIPTOMIC,other,PAIRED,ILLUMINA,Illumina NovaSeq 6000,,SRP511901,,,TSFA1-3L.R1.fq.gz TSFA1-3L.R2.fq.gz,fastq fastq,6257752800.0,20859176.0,TSFA1 3L.R1.fq.gz,0:150 1:150,A:1588621972;C:1490176001;G:1573465475;T:1605244426;N:244926,150,150,,,1588621972,1490176001,1573465475,1605244426,244926,SRX24807378,SRS21522250,SRA1889615,Qingdao University of Science and technology|College of marine science and biological engineeri,Qingdao University of Science and technology,,,,,,,,,,,,B,B,biological fallback assumption,illumina,novaseq_era,unknown,other,unknown,bulk,unknown,unknown,,China,2024-06-05,Adult,Adult,Liver,Liver and Biliary System
32522,SRR29290262,SRX24807377,SRS21522249,SRP511901,PRJNA1120203,Study of liver transcriptome in zebrafish May 29 '24,PRJNA1120203,Other,Liver of the transcriptome data from zebrafish exposed to small car tire wear particles,,,30 days experimental group parallel 3,liver transcriptome,L5 3,,strain:not applicable|isolate:not applicable|breed:zebrafish|cultivar:not applicable|ecotype:not applicable|age:3 month|dev stage:3 month|collection date:2023 08 24|geo loc name:China|sex:not collected|tissue:liver|birth date:2023 05 13|experiment description:Exposed to tire wear particles 80 100 mesh excretion for 15 days|BioSampleModel:Model organism or animal,,,,,,,,,Zebrafish liver,L5 3,L5 3,Total RNA was extracted from the zebrafish liver tissue using a commercial RNA extraction kit following the manufacturer's instructions.The prepared library was sequenced on an Illumina HiSeq platform generating paired end reads.,,,OTHER,METATRANSCRIPTOMIC,other,PAIRED,ILLUMINA,Illumina NovaSeq 6000,,SRP511901,,,TMSC-5L.R1.fq.gz TMSC-5L.R2.fq.gz,fastq fastq,6227549100.0,20758497.0,TMSC 5L.R1.fq.gz,0:150 1:150,A:1601663321;C:1467885504;G:1549957271;T:1607796578;N:246426,150,150,,,1601663321,1467885504,1549957271,1607796578,246426,SRX24807377,SRS21522249,SRA1889615,Qingdao University of Science and technology|College of marine science and biological engineeri,Qingdao University of Science and technology,,,,,,,,,,,,B,B,biological fallback assumption,illumina,novaseq_era,unknown,other,unknown,bulk,unknown,unknown,,China,2024-06-05,Adult,Adult,Liver,Liver and Biliary System
32523,SRR29290263,SRX24807376,SRS21522248,SRP511901,PRJNA1120203,Study of liver transcriptome in zebrafish May 29 '24,PRJNA1120203,Other,Liver of the transcriptome data from zebrafish exposed to small car tire wear particles,,,30 days experimental group parallel 2,liver transcriptome,L5 2,,strain:not applicable|isolate:not applicable|breed:zebrafish|cultivar:not applicable|ecotype:not applicable|age:3 month|dev stage:3 month|collection date:2023 08 24|geo loc name:China|sex:not collected|tissue:liver|birth date:2023 05 12|experiment description:Exposed to tire wear particles 80 100 mesh excretion for 15 days|BioSampleModel:Model organism or animal,,,,,,,,,Zebrafish liver,L5 2,L5 2,Total RNA was extracted from the zebrafish liver tissue using a commercial RNA extraction kit following the manufacturer's instructions.The prepared library was sequenced on an Illumina HiSeq platform generating paired end reads.,,,OTHER,METATRANSCRIPTOMIC,other,PAIRED,ILLUMINA,Illumina NovaSeq 6000,,SRP511901,,,TMSB-3L.R1.fq.gz TMSB-3L.R2.fq.gz,fastq fastq,5889087600.0,19630292.0,TMSB 3L.R1.fq.gz,0:150 1:150,A:1507527640;C:1395223794;G:1475557797;T:1510549619;N:228750,150,150,,,1507527640,1395223794,1475557797,1510549619,228750,SRX24807376,SRS21522248,SRA1889615,Qingdao University of Science and technology|College of marine science and biological engineeri,Qingdao University of Science and technology,,,,,,,,,,,,B,B,biological fallback assumption,illumina,novaseq_era,unknown,other,unknown,bulk,unknown,unknown,,China,2024-06-05,Adult,Adult,Liver,Liver and Biliary System
32524,SRR29290264,SRX24807375,SRS21522247,SRP511901,PRJNA1120203,Study of liver transcriptome in zebrafish May 29 '24,PRJNA1120203,Other,Liver of the transcriptome data from zebrafish exposed to small car tire wear particles,,,30 days experimental group parallel 1,liver transcriptome,L5 1,,strain:not applicable|isolate:not applicable|breed:zebrafish|cultivar:not applicable|ecotype:not applicable|age:3 month|dev stage:3 month|collection date:2023 08 24|geo loc name:China|sex:not collected|tissue:liver|birth date:2023 05 11|experiment description:Exposed to tire wear particles 80 100 mesh excretion for 15 days|BioSampleModel:Model organism or animal,,,,,,,,,Zebrafish liver,L5 1,L5 1,Total RNA was extracted from the zebrafish liver tissue using a commercial RNA extraction kit following the manufacturer's instructions.The prepared library was sequenced on an Illumina HiSeq platform generating paired end reads.,,,OTHER,METATRANSCRIPTOMIC,other,PAIRED,ILLUMINA,Illumina NovaSeq 6000,,SRP511901,,,TMSA-1L.R1.fq.gz TMSA-1L.R2.fq.gz,fastq fastq,6438780300.0,21462601.0,TMSA 1L.R1.fq.gz,0:150 1:150,A:1651115385;C:1542448300;G:1589631411;T:1655336061;N:249143,150,150,,,1651115385,1542448300,1589631411,1655336061,249143,SRX24807375,SRS21522247,SRA1889615,Qingdao University of Science and technology|College of marine science and biological engineeri,Qingdao University of Science and technology,,,,,,,,,,,,B,B,biological fallback assumption,illumina,novaseq_era,unknown,other,unknown,bulk,unknown,unknown,,China,2024-06-05,Adult,Adult,Liver,Liver and Biliary System
32525,SRR29290265,SRX24807374,SRS21522246,SRP511901,PRJNA1120203,Study of liver transcriptome in zebrafish May 29 '24,PRJNA1120203,Other,Liver of the transcriptome data from zebrafish exposed to small car tire wear particles,,,15 days experimental group parallel 3,liver transcriptome,L4 3,,strain:not applicable|isolate:not applicable|breed:zebrafish|cultivar:not applicable|ecotype:not applicable|age:3 month|dev stage:3 month|collection date:2023 08 09|geo loc name:China|sex:not collected|tissue:liver|birth date:2023 05 16|experiment description:Exposure to 80 100 mesh tire wear particles for 15 days|BioSampleModel:Model organism or animal,,,,,,,,,Zebrafish liver,L4 3,L4 3,Total RNA was extracted from the zebrafish liver tissue using a commercial RNA extraction kit following the manufacturer's instructions.The prepared library was sequenced on an Illumina HiSeq platform generating paired end reads.,,,OTHER,METATRANSCRIPTOMIC,other,PAIRED,ILLUMINA,Illumina NovaSeq 6000,,SRP511901,,,TMFC1-3L.R1.fq.gz TMFC1-3L.R2.fq.gz,fastq fastq,6083883300.0,20279611.0,TMFC1 3L.R1.fq.gz,0:150 1:150,A:1510698562;C:1511134044;G:1540128451;T:1521679717;N:242526,150,150,,,1510698562,1511134044,1540128451,1521679717,242526,SRX24807374,SRS21522246,SRA1889615,Qingdao University of Science and technology|College of marine science and biological engineeri,Qingdao University of Science and technology,,,,,,,,,,,,B,B,biological fallback assumption,illumina,novaseq_era,unknown,other,unknown,bulk,unknown,unknown,,China,2024-06-05,Adult,Adult,Liver,Liver and Biliary System
32526,SRR29290266,SRX24807373,SRS21522245,SRP511901,PRJNA1120203,Study of liver transcriptome in zebrafish May 29 '24,PRJNA1120203,Other,Liver of the transcriptome data from zebrafish exposed to small car tire wear particles,,,15 days experimental group parallel 2,liver transcriptome,L4 2,,strain:not applicable|isolate:not applicable|breed:zebrafish|cultivar:not applicable|ecotype:not applicable|age:3 month|dev stage:3 month|collection date:2023 08 09|geo loc name:China|sex:not collected|tissue:liver|birth date:2023 05 15|experiment description:Exposure to 80 100 mesh tire wear particles for 15 days|BioSampleModel:Model organism or animal,,,,,,,,,Zebrafish liver,L4 2,L4 2,Total RNA was extracted from the zebrafish liver tissue using a commercial RNA extraction kit following the manufacturer's instructions.The prepared library was sequenced on an Illumina HiSeq platform generating paired end reads.,,,OTHER,METATRANSCRIPTOMIC,other,PAIRED,ILLUMINA,Illumina NovaSeq 6000,,SRP511901,,,TMFB1-3L.R1.fq.gz TMFB1-3L.R2.fq.gz,fastq fastq,5908013700.0,19693379.0,TMFB1 3L.R1.fq.gz,0:150 1:150,A:1507137134;C:1415511620;G:1463261753;T:1521838130;N:265063,150,150,,,1507137134,1415511620,1463261753,1521838130,265063,SRX24807373,SRS21522245,SRA1889615,Qingdao University of Science and technology|College of marine science and biological engineeri,Qingdao University of Science and technology,,,,,,,,,,,,B,B,biological fallback assumption,illumina,novaseq_era,unknown,other,unknown,bulk,unknown,unknown,,China,2024-06-05,Adult,Adult,Liver,Liver and Biliary System
32527,SRR29290267,SRX24807372,SRS21522244,SRP511901,PRJNA1120203,Study of liver transcriptome in zebrafish May 29 '24,PRJNA1120203,Other,Liver of the transcriptome data from zebrafish exposed to small car tire wear particles,,,Control parallel 2,liver transcriptome,L1 2,,strain:not applicable|isolate:not applicable|breed:zebrafish|cultivar:not applicable|ecotype:not applicable|age:3 month|dev stage:3 month|collection date:2023 08 11|geo loc name:China|sex:not collected|tissue:liver|birth date:2023 05 12|experiment description:Sample from control group|BioSampleModel:Model organism or animal,,,,,,,,,Zebrafish liver,L1 2,L1 2,Total RNA was extracted from the zebrafish liver tissue using a commercial RNA extraction kit following the manufacturer's instructions.The prepared library was sequenced on an Illumina HiSeq platform generating paired end reads.,,,OTHER,METATRANSCRIPTOMIC,other,PAIRED,ILLUMINA,Illumina NovaSeq 6000,,SRP511901,,,FCFB1-3L.R1.fq.gz FCFB1-3L.R2.fq.gz,fastq fastq,6637856700.0,22126189.0,FCFB1 3L.R1.fq.gz,0:150 1:150,A:1714779556;C:1575842801;G:1628771136;T:1718209685;N:253522,150,150,,,1714779556,1575842801,1628771136,1718209685,253522,SRX24807372,SRS21522244,SRA1889615,Qingdao University of Science and technology|College of marine science and biological engineeri,Qingdao University of Science and technology,,,,,,,,,,,,B,B,biological fallback assumption,illumina,novaseq_era,unknown,other,unknown,bulk,unknown,unknown,,China,2024-06-05,Adult,Adult,Liver,Liver and Biliary System
32528,SRR29290268,SRX24807371,SRS21522243,SRP511901,PRJNA1120203,Study of liver transcriptome in zebrafish May 29 '24,PRJNA1120203,Other,Liver of the transcriptome data from zebrafish exposed to small car tire wear particles,,,Control parallel 1,liver transcriptome,L1 1,,strain:not applicable|isolate:not applicable|breed:zebrafish|cultivar:not applicable|ecotype:not applicable|age:3 month|dev stage:3 month|collection date:2023 08 11|geo loc name:China|sex:not collected|tissue:liver|birth date:2023 05 11|experiment description:Sample from control group|BioSampleModel:Model organism or animal,,,,,,,,,Zebrafish liver,L1 1,L1 1,Total RNA was extracted from the zebrafish liver tissue using a commercial RNA extraction kit following the manufacturer's instructions.The prepared library was sequenced on an Illumina HiSeq platform generating paired end reads.,,,OTHER,METATRANSCRIPTOMIC,other,PAIRED,ILLUMINA,Illumina NovaSeq 6000,,SRP511901,,,FCFA1-3L.R1.fq.gz FCFA1-3L.R2.fq.gz,fastq fastq,7360809900.0,24536033.0,FCFA1 3L.R1.fq.gz,0:150 1:150,A:1885247052;C:1777296186;G:1818891778;T:1879185198;N:189686,150,150,,,1885247052,1777296186,1818891778,1879185198,189686,SRX24807371,SRS21522243,SRA1889615,Qingdao University of Science and technology|College of marine science and biological engineeri,Qingdao University of Science and technology,,,,,,,,,,,,B,B,biological fallback assumption,illumina,novaseq_era,unknown,other,unknown,bulk,unknown,unknown,,China,2024-06-05,Adult,Adult,Liver,Liver and Biliary System