run_metadata
41 rows where devstage_curation_coarse = "Undetermined" and tissue_curation_coarse = "Muscular System"
This data as json, CSV (advanced)
| Link | rowid ▼ | run.accession | experiment.accession | sample.accession | study.accession | bioproject | study.title | study.alias | study.type | study.abstract | study.attributes | study.PMIDs | sample.description | sample.title | sample.alias | sample.centername | sample.attributes | GEOsample.title | GEOsample.dataprocessing | GEOsample.source | GEOsample.treatmentprotocol | GEOsample.extractprotocol | GEOsample.growthprotocol | GEOsample.characteristics | GEOsample.accession | experiment.title | experiment.alias | experiment.library_name | experiment.design_description | experiment.library_construction_protocol | experiment.attributes | experiment.library_strategy | experiment.library_source | experiment.library_selection | experiment.library_layout | experiment.platform | experiment.instrument_model | experiment.spot_descriptor | experiment.study_ref | run.title | run.attributes | run.filename | run.semantic_name | run.total_bases | run.total_spots | run.alias | run.read_lengths | run.base_counts | run.r1_length | run.r2_length | run.r3_length | run.r4_length | run.Acount | run.Ccount | run.Gcount | run.Tcount | run.Ncount | run.experiment | run.pool_member | submission.accession | submission.srasource | submission.bioprojectsource | seqdetective.n_mates | seqdetective.mapping_rate.mate1 | seqdetective.mapping_rate.mate2 | seqdetective.nofeature_rate.mate1 | seqdetective.nofeature_rate.mate2 | seqdetective.sparsity.mate1 | seqdetective.sparsity.mate2 | seqdetective.pos_strand_rate.mate1 | seqdetective.pos_strand_rate.mate2 | seqdetective.readlen.mate1 | seqdetective.readlen.mate2 | seqdetective.judgement.mate1 | seqdetective.judgement.mate2 | seqdetective.judgement.reason | platform_family | instrument_generation | read_bias | selection_class | prep_kit | sc_or_bulk | tech_class | technology | tech_variant | submission.bioprojectsource.country | earliest_date | devstage_curation | devstage_curation_coarse | tissue_curation | tissue_curation_coarse |
|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|
| 49268 | 49268 | SRR7883101 | SRX4721396 | SRS3806484 | SRP162257 | PRJNA492308 | Cortisol acting through the glucocorticoid receptor is not responsible for exercise enhanced growth but does affect the white skeletal muscle transcriptome in zebrafish Danio rerio | GSE120253 | Transcriptome Analysis | Forced sustained swimming exercise at optimal speed enhances growth in many fish species particularly through hypertrophy of the white skeletal muscle. The exact mechanism of this effect has not been resolved yet. To explore the mechanism we first subjected wild type zebrafish to an exercise protocol validated for exercise enhanced growth and showed that exercised zebrafish which indeed showed enhanced growth had higher cortisol levels than the non exercised controls. A central role was therefore hypothesized for the steroid hormone cortisol acting through the Glucocorticoid receptor Gr. Second we subjected wild type zebrafish and zebrafish with a mutant Gr to exercise at optimal suboptimal and super optimal speeds and compared them with non exercised controls. Exercised zebrafish showed growth enhancement at all speeds with highest growth at optimal speeds. In the Gr mutant fish exercise resulted in growth enhancement similar to wild type zebrafish indicating that cortisol cannot be considered as a main determinant of exercise enhanced growth. Finally the transcriptome of white skeletal muscle tissue was analysed by RNA sequencing. The results of this analysis showed that in the muscle tissue of Gr mutant fish a lower number of genes is regulated by exercise than in wild type fish 183 versus 351. A cluster of 36 genes was regulated by exercise in both wild type and mutant fish. In this cluster genes involved in transcriptional regulation and protein ubiquitination were overrepresented. Since growth was enhanced similarly in both wild type fish and mutants these processes may play an important role in exercise enhanced growth. Overall design: Deep sequencing transcriptome analysis of white muscle samples derived from wild type ++ or glucocorticoid receptor Gr mutant Danio rerio specimens that were exposed to either a resting REST or a swimming UOPT regimen: wild type resting REST++; n=3 Gr mutant resting REST ; n=3 wild type swimming UOPT++; n=3 Gr mutant swimming UOPT ; n=3. | pubmed:30692930 | Gr mutant swimming UOPT sample 3 | GSM3396896 | source name:Gr mutant swimming UOPT |biomaterial provider:[Origin of specimen] zebrafish facilities of the Institute of Biology Leiden Leiden The Netherlands|tissue:white muscle|genotype:Gr mutant|treatment:swimming|tissue:white muscle | Gr mutant swimming UOPT sample 3 | Illumina Casava software used for basecalling: SCS2.2.38/RTA1.18.61 Illumina reads were aligned against the zebrafish genome sequence GRCz10.80 using TopHat version 2.0.5 Trapnell et al. 2009 The resulting files were filtered using SAMtools version 0.1.18 Li et al. 2009 to exclude secondary alignment of reads Aligned fragments per predicted gene were counted from SAM alignment files using the Python package HTSeq version 0.5.3p9 Anders and Huber 2014 Differentially expressed genes were identified using DESeq Anders and Huber 2010 and data were further processed using Microsoft Excel Genome build: Danio rerio.GRCz10.80 Supplementary files format and content: UOPT++ versus REST++ DiffExpr.txt UOPT versus REST DiffExpr.txt REST versus REST++ DiffExpr.txt and UOPT versus UOPT++ DiffExpr.txt: Microsoft Office Excel file .txt with the following columns: ENSEMBL ID; Associated Gene Name; Description; 6x sample x; baseMean; baseMeanA; baseMeanB; foldChange; log2FoldChange; pval; padj | Gr mutant swimming UOPT | White muscle fillet was dissected dorsally from the lateral line in the epaxial quadrant along the whole length of the fish and stored in RNAlater Ambion at 20 ºC. Tissue was lysed in QIAzol Lysis Reagent. A Qiagen TissueRuptor was used to cut up the tissue samples and RNA was extracted using the Qiagen miRNeasy Mini Kit according to the manufacturer’s description Qiagen Benelux BV Venlo the Netherlands. RNA was eluted in 50 μl and quantified by Nanodrop Thermo Fisher Scientific Amsterdam the Netherlands. Integrity of the RNA was confirmed using an Agilent Bioanalyzer 2100 total RNA Nanoseries II chip Agilent Amstelveen Netherlands. Illumina RNAseq libraries were prepared from 1 μg total RNA using the Illumina TruSeq RNA Sample Prep Kit v2 according to the manufacturer’s instructions Illumina San Diego CA USA. | tissue:white muscle|genotype:Gr mutant|treatment:swimming|tissue:white muscle | GSM3396896 | GSM3396896: Gr mutant swimming UOPT sample 3; Danio rerio; RNA Seq | GSM3396896 | 1 | White muscle fillet was dissected dorsally from the lateral line in the epaxial quadrant along the whole length of the fish and stored in RNAlater Ambion at 20 ºC. Tissue was lysed in QIAzol Lysis Reagent. A Qiagen TissueRuptor was used to cut up the tissue samples and RNA was extracted using the Qiagen miRNeasy Mini Kit according to the manufacturer's description Qiagen Benelux BV Venlo the Netherlands. RNA was eluted in 50 μl and quantified by Nanodrop Thermo Fisher Scientific Amsterdam the Netherlands. Integrity of the RNA was confirmed using an Agilent Bioanalyzer 2100 total RNA Nanoseries II chip Agilent Amstelveen Netherlands. Illumina RNAseq libraries were prepared from 1 μg total RNA using the Illumina TruSeq RNA Sample Prep Kit v2 according to the manufacturer's instructions Illumina San Diego CA USA. | GEO Accession:GSM3396896 | RNA-Seq | TRANSCRIPTOMIC | cDNA | SINGLE | ILLUMINA | Illumina HiSeq 2500 | SRP162257 | ZFG-15-20_15_15105_CTTGTA_L001_R1_001.fastq.gz | fastq | 248411565.0 | 4870815.0 | GSM3396896 r1 | 0:51 | A:56574599;C:63639902;G:59333109;T:68728919;N:135036 | 51 | 56574599 | 63639902 | 59333109 | 68728919 | 135036 | SRX4721396 | SRS3806484 | SRA780034 | GEO | ZF-screens BV | 1 | 0.95963 | 0.03133 | 0.82144 | 0.50958 | 51 | B | usable mapping rate | illumina | hiseq_era | unknown | cdna_unspecified | trueseq | bulk | unknown | unknown | Unknown | 2018-09-20 | Undetermined | Undetermined | Muscle | Muscular System | |||||||||||||||||||
| 49269 | 49269 | SRR7883102 | SRX4721396 | SRS3806484 | SRP162257 | PRJNA492308 | Cortisol acting through the glucocorticoid receptor is not responsible for exercise enhanced growth but does affect the white skeletal muscle transcriptome in zebrafish Danio rerio | GSE120253 | Transcriptome Analysis | Forced sustained swimming exercise at optimal speed enhances growth in many fish species particularly through hypertrophy of the white skeletal muscle. The exact mechanism of this effect has not been resolved yet. To explore the mechanism we first subjected wild type zebrafish to an exercise protocol validated for exercise enhanced growth and showed that exercised zebrafish which indeed showed enhanced growth had higher cortisol levels than the non exercised controls. A central role was therefore hypothesized for the steroid hormone cortisol acting through the Glucocorticoid receptor Gr. Second we subjected wild type zebrafish and zebrafish with a mutant Gr to exercise at optimal suboptimal and super optimal speeds and compared them with non exercised controls. Exercised zebrafish showed growth enhancement at all speeds with highest growth at optimal speeds. In the Gr mutant fish exercise resulted in growth enhancement similar to wild type zebrafish indicating that cortisol cannot be considered as a main determinant of exercise enhanced growth. Finally the transcriptome of white skeletal muscle tissue was analysed by RNA sequencing. The results of this analysis showed that in the muscle tissue of Gr mutant fish a lower number of genes is regulated by exercise than in wild type fish 183 versus 351. A cluster of 36 genes was regulated by exercise in both wild type and mutant fish. In this cluster genes involved in transcriptional regulation and protein ubiquitination were overrepresented. Since growth was enhanced similarly in both wild type fish and mutants these processes may play an important role in exercise enhanced growth. Overall design: Deep sequencing transcriptome analysis of white muscle samples derived from wild type ++ or glucocorticoid receptor Gr mutant Danio rerio specimens that were exposed to either a resting REST or a swimming UOPT regimen: wild type resting REST++; n=3 Gr mutant resting REST ; n=3 wild type swimming UOPT++; n=3 Gr mutant swimming UOPT ; n=3. | pubmed:30692930 | Gr mutant swimming UOPT sample 3 | GSM3396896 | source name:Gr mutant swimming UOPT |biomaterial provider:[Origin of specimen] zebrafish facilities of the Institute of Biology Leiden Leiden The Netherlands|tissue:white muscle|genotype:Gr mutant|treatment:swimming|tissue:white muscle | Gr mutant swimming UOPT sample 3 | Illumina Casava software used for basecalling: SCS2.2.38/RTA1.18.61 Illumina reads were aligned against the zebrafish genome sequence GRCz10.80 using TopHat version 2.0.5 Trapnell et al. 2009 The resulting files were filtered using SAMtools version 0.1.18 Li et al. 2009 to exclude secondary alignment of reads Aligned fragments per predicted gene were counted from SAM alignment files using the Python package HTSeq version 0.5.3p9 Anders and Huber 2014 Differentially expressed genes were identified using DESeq Anders and Huber 2010 and data were further processed using Microsoft Excel Genome build: Danio rerio.GRCz10.80 Supplementary files format and content: UOPT++ versus REST++ DiffExpr.txt UOPT versus REST DiffExpr.txt REST versus REST++ DiffExpr.txt and UOPT versus UOPT++ DiffExpr.txt: Microsoft Office Excel file .txt with the following columns: ENSEMBL ID; Associated Gene Name; Description; 6x sample x; baseMean; baseMeanA; baseMeanB; foldChange; log2FoldChange; pval; padj | Gr mutant swimming UOPT | White muscle fillet was dissected dorsally from the lateral line in the epaxial quadrant along the whole length of the fish and stored in RNAlater Ambion at 20 ºC. Tissue was lysed in QIAzol Lysis Reagent. A Qiagen TissueRuptor was used to cut up the tissue samples and RNA was extracted using the Qiagen miRNeasy Mini Kit according to the manufacturer’s description Qiagen Benelux BV Venlo the Netherlands. RNA was eluted in 50 μl and quantified by Nanodrop Thermo Fisher Scientific Amsterdam the Netherlands. Integrity of the RNA was confirmed using an Agilent Bioanalyzer 2100 total RNA Nanoseries II chip Agilent Amstelveen Netherlands. Illumina RNAseq libraries were prepared from 1 μg total RNA using the Illumina TruSeq RNA Sample Prep Kit v2 according to the manufacturer’s instructions Illumina San Diego CA USA. | tissue:white muscle|genotype:Gr mutant|treatment:swimming|tissue:white muscle | GSM3396896 | GSM3396896: Gr mutant swimming UOPT sample 3; Danio rerio; RNA Seq | GSM3396896 | 1 | White muscle fillet was dissected dorsally from the lateral line in the epaxial quadrant along the whole length of the fish and stored in RNAlater Ambion at 20 ºC. Tissue was lysed in QIAzol Lysis Reagent. A Qiagen TissueRuptor was used to cut up the tissue samples and RNA was extracted using the Qiagen miRNeasy Mini Kit according to the manufacturer's description Qiagen Benelux BV Venlo the Netherlands. RNA was eluted in 50 μl and quantified by Nanodrop Thermo Fisher Scientific Amsterdam the Netherlands. Integrity of the RNA was confirmed using an Agilent Bioanalyzer 2100 total RNA Nanoseries II chip Agilent Amstelveen Netherlands. Illumina RNAseq libraries were prepared from 1 μg total RNA using the Illumina TruSeq RNA Sample Prep Kit v2 according to the manufacturer's instructions Illumina San Diego CA USA. | GEO Accession:GSM3396896 | RNA-Seq | TRANSCRIPTOMIC | cDNA | SINGLE | ILLUMINA | Illumina HiSeq 2500 | SRP162257 | ZFG-15-20_15_15105_CTTGTA_L002_R1_001.fastq.gz | fastq | 245868501.0 | 4820951.0 | GSM3396896 r2 | 0:51 | A:55999278;C:63022234;G:58753181;T:68048742;N:45066 | 51 | 55999278 | 63022234 | 58753181 | 68048742 | 45066 | SRX4721396 | SRS3806484 | SRA780034 | GEO | ZF-screens BV | 1 | 0.9607 | 0.03061 | 0.81876 | 0.50656 | 51 | B | usable mapping rate | illumina | hiseq_era | unknown | cdna_unspecified | trueseq | bulk | unknown | unknown | Unknown | 2018-09-20 | Undetermined | Undetermined | Muscle | Muscular System | |||||||||||||||||||
| 49270 | 49270 | SRR7883099 | SRX4721395 | SRS3806483 | SRP162257 | PRJNA492308 | Cortisol acting through the glucocorticoid receptor is not responsible for exercise enhanced growth but does affect the white skeletal muscle transcriptome in zebrafish Danio rerio | GSE120253 | Transcriptome Analysis | Forced sustained swimming exercise at optimal speed enhances growth in many fish species particularly through hypertrophy of the white skeletal muscle. The exact mechanism of this effect has not been resolved yet. To explore the mechanism we first subjected wild type zebrafish to an exercise protocol validated for exercise enhanced growth and showed that exercised zebrafish which indeed showed enhanced growth had higher cortisol levels than the non exercised controls. A central role was therefore hypothesized for the steroid hormone cortisol acting through the Glucocorticoid receptor Gr. Second we subjected wild type zebrafish and zebrafish with a mutant Gr to exercise at optimal suboptimal and super optimal speeds and compared them with non exercised controls. Exercised zebrafish showed growth enhancement at all speeds with highest growth at optimal speeds. In the Gr mutant fish exercise resulted in growth enhancement similar to wild type zebrafish indicating that cortisol cannot be considered as a main determinant of exercise enhanced growth. Finally the transcriptome of white skeletal muscle tissue was analysed by RNA sequencing. The results of this analysis showed that in the muscle tissue of Gr mutant fish a lower number of genes is regulated by exercise than in wild type fish 183 versus 351. A cluster of 36 genes was regulated by exercise in both wild type and mutant fish. In this cluster genes involved in transcriptional regulation and protein ubiquitination were overrepresented. Since growth was enhanced similarly in both wild type fish and mutants these processes may play an important role in exercise enhanced growth. Overall design: Deep sequencing transcriptome analysis of white muscle samples derived from wild type ++ or glucocorticoid receptor Gr mutant Danio rerio specimens that were exposed to either a resting REST or a swimming UOPT regimen: wild type resting REST++; n=3 Gr mutant resting REST ; n=3 wild type swimming UOPT++; n=3 Gr mutant swimming UOPT ; n=3. | pubmed:30692930 | Gr mutant swimming UOPT sample 2 | GSM3396895 | source name:Gr mutant swimming UOPT |biomaterial provider:[Origin of specimen] zebrafish facilities of the Institute of Biology Leiden Leiden The Netherlands|tissue:white muscle|genotype:Gr mutant|treatment:swimming|tissue:white muscle | Gr mutant swimming UOPT sample 2 | Illumina Casava software used for basecalling: SCS2.2.38/RTA1.18.61 Illumina reads were aligned against the zebrafish genome sequence GRCz10.80 using TopHat version 2.0.5 Trapnell et al. 2009 The resulting files were filtered using SAMtools version 0.1.18 Li et al. 2009 to exclude secondary alignment of reads Aligned fragments per predicted gene were counted from SAM alignment files using the Python package HTSeq version 0.5.3p9 Anders and Huber 2014 Differentially expressed genes were identified using DESeq Anders and Huber 2010 and data were further processed using Microsoft Excel Genome build: Danio rerio.GRCz10.80 Supplementary files format and content: UOPT++ versus REST++ DiffExpr.txt UOPT versus REST DiffExpr.txt REST versus REST++ DiffExpr.txt and UOPT versus UOPT++ DiffExpr.txt: Microsoft Office Excel file .txt with the following columns: ENSEMBL ID; Associated Gene Name; Description; 6x sample x; baseMean; baseMeanA; baseMeanB; foldChange; log2FoldChange; pval; padj | Gr mutant swimming UOPT | White muscle fillet was dissected dorsally from the lateral line in the epaxial quadrant along the whole length of the fish and stored in RNAlater Ambion at 20 ºC. Tissue was lysed in QIAzol Lysis Reagent. A Qiagen TissueRuptor was used to cut up the tissue samples and RNA was extracted using the Qiagen miRNeasy Mini Kit according to the manufacturer’s description Qiagen Benelux BV Venlo the Netherlands. RNA was eluted in 50 μl and quantified by Nanodrop Thermo Fisher Scientific Amsterdam the Netherlands. Integrity of the RNA was confirmed using an Agilent Bioanalyzer 2100 total RNA Nanoseries II chip Agilent Amstelveen Netherlands. Illumina RNAseq libraries were prepared from 1 μg total RNA using the Illumina TruSeq RNA Sample Prep Kit v2 according to the manufacturer’s instructions Illumina San Diego CA USA. | tissue:white muscle|genotype:Gr mutant|treatment:swimming|tissue:white muscle | GSM3396895 | GSM3396895: Gr mutant swimming UOPT sample 2; Danio rerio; RNA Seq | GSM3396895 | 1 | White muscle fillet was dissected dorsally from the lateral line in the epaxial quadrant along the whole length of the fish and stored in RNAlater Ambion at 20 ºC. Tissue was lysed in QIAzol Lysis Reagent. A Qiagen TissueRuptor was used to cut up the tissue samples and RNA was extracted using the Qiagen miRNeasy Mini Kit according to the manufacturer's description Qiagen Benelux BV Venlo the Netherlands. RNA was eluted in 50 μl and quantified by Nanodrop Thermo Fisher Scientific Amsterdam the Netherlands. Integrity of the RNA was confirmed using an Agilent Bioanalyzer 2100 total RNA Nanoseries II chip Agilent Amstelveen Netherlands. Illumina RNAseq libraries were prepared from 1 μg total RNA using the Illumina TruSeq RNA Sample Prep Kit v2 according to the manufacturer's instructions Illumina San Diego CA USA. | GEO Accession:GSM3396895 | RNA-Seq | TRANSCRIPTOMIC | cDNA | SINGLE | ILLUMINA | Illumina HiSeq 2500 | SRP162257 | ZFG-15-20_14_15104_CAGATC_L001_R1_001.fastq.gz | fastq | 219513996.0 | 4304196.0 | GSM3396895 r1 | 0:51 | A:48361086;C:57271498;G:53468696;T:60291615;N:121101 | 51 | 48361086 | 57271498 | 53468696 | 60291615 | 121101 | SRX4721395 | SRS3806483 | SRA780034 | GEO | ZF-screens BV | 1 | 0.95734 | 0.02232 | 0.83037 | 0.46039 | 51 | B | usable mapping rate | illumina | hiseq_era | unknown | cdna_unspecified | trueseq | bulk | unknown | unknown | Unknown | 2018-09-20 | Undetermined | Undetermined | Muscle | Muscular System | |||||||||||||||||||
| 49271 | 49271 | SRR7883100 | SRX4721395 | SRS3806483 | SRP162257 | PRJNA492308 | Cortisol acting through the glucocorticoid receptor is not responsible for exercise enhanced growth but does affect the white skeletal muscle transcriptome in zebrafish Danio rerio | GSE120253 | Transcriptome Analysis | Forced sustained swimming exercise at optimal speed enhances growth in many fish species particularly through hypertrophy of the white skeletal muscle. The exact mechanism of this effect has not been resolved yet. To explore the mechanism we first subjected wild type zebrafish to an exercise protocol validated for exercise enhanced growth and showed that exercised zebrafish which indeed showed enhanced growth had higher cortisol levels than the non exercised controls. A central role was therefore hypothesized for the steroid hormone cortisol acting through the Glucocorticoid receptor Gr. Second we subjected wild type zebrafish and zebrafish with a mutant Gr to exercise at optimal suboptimal and super optimal speeds and compared them with non exercised controls. Exercised zebrafish showed growth enhancement at all speeds with highest growth at optimal speeds. In the Gr mutant fish exercise resulted in growth enhancement similar to wild type zebrafish indicating that cortisol cannot be considered as a main determinant of exercise enhanced growth. Finally the transcriptome of white skeletal muscle tissue was analysed by RNA sequencing. The results of this analysis showed that in the muscle tissue of Gr mutant fish a lower number of genes is regulated by exercise than in wild type fish 183 versus 351. A cluster of 36 genes was regulated by exercise in both wild type and mutant fish. In this cluster genes involved in transcriptional regulation and protein ubiquitination were overrepresented. Since growth was enhanced similarly in both wild type fish and mutants these processes may play an important role in exercise enhanced growth. Overall design: Deep sequencing transcriptome analysis of white muscle samples derived from wild type ++ or glucocorticoid receptor Gr mutant Danio rerio specimens that were exposed to either a resting REST or a swimming UOPT regimen: wild type resting REST++; n=3 Gr mutant resting REST ; n=3 wild type swimming UOPT++; n=3 Gr mutant swimming UOPT ; n=3. | pubmed:30692930 | Gr mutant swimming UOPT sample 2 | GSM3396895 | source name:Gr mutant swimming UOPT |biomaterial provider:[Origin of specimen] zebrafish facilities of the Institute of Biology Leiden Leiden The Netherlands|tissue:white muscle|genotype:Gr mutant|treatment:swimming|tissue:white muscle | Gr mutant swimming UOPT sample 2 | Illumina Casava software used for basecalling: SCS2.2.38/RTA1.18.61 Illumina reads were aligned against the zebrafish genome sequence GRCz10.80 using TopHat version 2.0.5 Trapnell et al. 2009 The resulting files were filtered using SAMtools version 0.1.18 Li et al. 2009 to exclude secondary alignment of reads Aligned fragments per predicted gene were counted from SAM alignment files using the Python package HTSeq version 0.5.3p9 Anders and Huber 2014 Differentially expressed genes were identified using DESeq Anders and Huber 2010 and data were further processed using Microsoft Excel Genome build: Danio rerio.GRCz10.80 Supplementary files format and content: UOPT++ versus REST++ DiffExpr.txt UOPT versus REST DiffExpr.txt REST versus REST++ DiffExpr.txt and UOPT versus UOPT++ DiffExpr.txt: Microsoft Office Excel file .txt with the following columns: ENSEMBL ID; Associated Gene Name; Description; 6x sample x; baseMean; baseMeanA; baseMeanB; foldChange; log2FoldChange; pval; padj | Gr mutant swimming UOPT | White muscle fillet was dissected dorsally from the lateral line in the epaxial quadrant along the whole length of the fish and stored in RNAlater Ambion at 20 ºC. Tissue was lysed in QIAzol Lysis Reagent. A Qiagen TissueRuptor was used to cut up the tissue samples and RNA was extracted using the Qiagen miRNeasy Mini Kit according to the manufacturer’s description Qiagen Benelux BV Venlo the Netherlands. RNA was eluted in 50 μl and quantified by Nanodrop Thermo Fisher Scientific Amsterdam the Netherlands. Integrity of the RNA was confirmed using an Agilent Bioanalyzer 2100 total RNA Nanoseries II chip Agilent Amstelveen Netherlands. Illumina RNAseq libraries were prepared from 1 μg total RNA using the Illumina TruSeq RNA Sample Prep Kit v2 according to the manufacturer’s instructions Illumina San Diego CA USA. | tissue:white muscle|genotype:Gr mutant|treatment:swimming|tissue:white muscle | GSM3396895 | GSM3396895: Gr mutant swimming UOPT sample 2; Danio rerio; RNA Seq | GSM3396895 | 1 | White muscle fillet was dissected dorsally from the lateral line in the epaxial quadrant along the whole length of the fish and stored in RNAlater Ambion at 20 ºC. Tissue was lysed in QIAzol Lysis Reagent. A Qiagen TissueRuptor was used to cut up the tissue samples and RNA was extracted using the Qiagen miRNeasy Mini Kit according to the manufacturer's description Qiagen Benelux BV Venlo the Netherlands. RNA was eluted in 50 μl and quantified by Nanodrop Thermo Fisher Scientific Amsterdam the Netherlands. Integrity of the RNA was confirmed using an Agilent Bioanalyzer 2100 total RNA Nanoseries II chip Agilent Amstelveen Netherlands. Illumina RNAseq libraries were prepared from 1 μg total RNA using the Illumina TruSeq RNA Sample Prep Kit v2 according to the manufacturer's instructions Illumina San Diego CA USA. | GEO Accession:GSM3396895 | RNA-Seq | TRANSCRIPTOMIC | cDNA | SINGLE | ILLUMINA | Illumina HiSeq 2500 | SRP162257 | ZFG-15-20_14_15104_CAGATC_L002_R1_001.fastq.gz | fastq | 217279176.0 | 4260376.0 | GSM3396895 r2 | 0:51 | A:47895589;C:56699017;G:52953041;T:59691639;N:39890 | 51 | 47895589 | 56699017 | 52953041 | 59691639 | 39890 | SRX4721395 | SRS3806483 | SRA780034 | GEO | ZF-screens BV | 1 | 0.95882 | 0.02375 | 0.82753 | 0.45523 | 51 | B | usable mapping rate | illumina | hiseq_era | unknown | cdna_unspecified | trueseq | bulk | unknown | unknown | Unknown | 2018-09-20 | Undetermined | Undetermined | Muscle | Muscular System | |||||||||||||||||||
| 49272 | 49272 | SRR7883095 | SRX4721394 | SRS3806482 | SRP162257 | PRJNA492308 | Cortisol acting through the glucocorticoid receptor is not responsible for exercise enhanced growth but does affect the white skeletal muscle transcriptome in zebrafish Danio rerio | GSE120253 | Transcriptome Analysis | Forced sustained swimming exercise at optimal speed enhances growth in many fish species particularly through hypertrophy of the white skeletal muscle. The exact mechanism of this effect has not been resolved yet. To explore the mechanism we first subjected wild type zebrafish to an exercise protocol validated for exercise enhanced growth and showed that exercised zebrafish which indeed showed enhanced growth had higher cortisol levels than the non exercised controls. A central role was therefore hypothesized for the steroid hormone cortisol acting through the Glucocorticoid receptor Gr. Second we subjected wild type zebrafish and zebrafish with a mutant Gr to exercise at optimal suboptimal and super optimal speeds and compared them with non exercised controls. Exercised zebrafish showed growth enhancement at all speeds with highest growth at optimal speeds. In the Gr mutant fish exercise resulted in growth enhancement similar to wild type zebrafish indicating that cortisol cannot be considered as a main determinant of exercise enhanced growth. Finally the transcriptome of white skeletal muscle tissue was analysed by RNA sequencing. The results of this analysis showed that in the muscle tissue of Gr mutant fish a lower number of genes is regulated by exercise than in wild type fish 183 versus 351. A cluster of 36 genes was regulated by exercise in both wild type and mutant fish. In this cluster genes involved in transcriptional regulation and protein ubiquitination were overrepresented. Since growth was enhanced similarly in both wild type fish and mutants these processes may play an important role in exercise enhanced growth. Overall design: Deep sequencing transcriptome analysis of white muscle samples derived from wild type ++ or glucocorticoid receptor Gr mutant Danio rerio specimens that were exposed to either a resting REST or a swimming UOPT regimen: wild type resting REST++; n=3 Gr mutant resting REST ; n=3 wild type swimming UOPT++; n=3 Gr mutant swimming UOPT ; n=3. | pubmed:30692930 | Gr mutant swimming UOPT sample 1 | GSM3396894 | source name:Gr mutant swimming UOPT |biomaterial provider:[Origin of specimen] zebrafish facilities of the Institute of Biology Leiden Leiden The Netherlands|tissue:white muscle|genotype:Gr mutant|treatment:swimming|tissue:white muscle | Gr mutant swimming UOPT sample 1 | Illumina Casava software used for basecalling: SCS2.2.38/RTA1.18.61 Illumina reads were aligned against the zebrafish genome sequence GRCz10.80 using TopHat version 2.0.5 Trapnell et al. 2009 The resulting files were filtered using SAMtools version 0.1.18 Li et al. 2009 to exclude secondary alignment of reads Aligned fragments per predicted gene were counted from SAM alignment files using the Python package HTSeq version 0.5.3p9 Anders and Huber 2014 Differentially expressed genes were identified using DESeq Anders and Huber 2010 and data were further processed using Microsoft Excel Genome build: Danio rerio.GRCz10.80 Supplementary files format and content: UOPT++ versus REST++ DiffExpr.txt UOPT versus REST DiffExpr.txt REST versus REST++ DiffExpr.txt and UOPT versus UOPT++ DiffExpr.txt: Microsoft Office Excel file .txt with the following columns: ENSEMBL ID; Associated Gene Name; Description; 6x sample x; baseMean; baseMeanA; baseMeanB; foldChange; log2FoldChange; pval; padj | Gr mutant swimming UOPT | White muscle fillet was dissected dorsally from the lateral line in the epaxial quadrant along the whole length of the fish and stored in RNAlater Ambion at 20 ºC. Tissue was lysed in QIAzol Lysis Reagent. A Qiagen TissueRuptor was used to cut up the tissue samples and RNA was extracted using the Qiagen miRNeasy Mini Kit according to the manufacturer’s description Qiagen Benelux BV Venlo the Netherlands. RNA was eluted in 50 μl and quantified by Nanodrop Thermo Fisher Scientific Amsterdam the Netherlands. Integrity of the RNA was confirmed using an Agilent Bioanalyzer 2100 total RNA Nanoseries II chip Agilent Amstelveen Netherlands. Illumina RNAseq libraries were prepared from 1 μg total RNA using the Illumina TruSeq RNA Sample Prep Kit v2 according to the manufacturer’s instructions Illumina San Diego CA USA. | tissue:white muscle|genotype:Gr mutant|treatment:swimming|tissue:white muscle | GSM3396894 | GSM3396894: Gr mutant swimming UOPT sample 1; Danio rerio; RNA Seq | GSM3396894 | 1 | White muscle fillet was dissected dorsally from the lateral line in the epaxial quadrant along the whole length of the fish and stored in RNAlater Ambion at 20 ºC. Tissue was lysed in QIAzol Lysis Reagent. A Qiagen TissueRuptor was used to cut up the tissue samples and RNA was extracted using the Qiagen miRNeasy Mini Kit according to the manufacturer's description Qiagen Benelux BV Venlo the Netherlands. RNA was eluted in 50 μl and quantified by Nanodrop Thermo Fisher Scientific Amsterdam the Netherlands. Integrity of the RNA was confirmed using an Agilent Bioanalyzer 2100 total RNA Nanoseries II chip Agilent Amstelveen Netherlands. Illumina RNAseq libraries were prepared from 1 μg total RNA using the Illumina TruSeq RNA Sample Prep Kit v2 according to the manufacturer's instructions Illumina San Diego CA USA. | GEO Accession:GSM3396894 | RNA-Seq | TRANSCRIPTOMIC | cDNA | SINGLE | ILLUMINA | Illumina HiSeq 2500 | SRP162257 | ZFG-15-20_11_14126_CGATGT_L001_R1_000.fastq.gz | fastq | 76142847.0 | 1492997.0 | GSM3396894 r1 | 0:51 | A:17764968;C:19359482;G:17546237;T:21458644;N:13516 | 51 | 17764968 | 19359482 | 17546237 | 21458644 | 13516 | SRX4721394 | SRS3806482 | SRA780034 | GEO | ZF-screens BV | 1 | 0.94854 | 0.03967 | 0.81239 | 0.52843 | 51 | B | usable mapping rate | illumina | hiseq_era | unknown | cdna_unspecified | trueseq | bulk | unknown | unknown | Unknown | 2018-09-20 | Undetermined | Undetermined | Muscle | Muscular System | |||||||||||||||||||
| 49273 | 49273 | SRR7883096 | SRX4721394 | SRS3806482 | SRP162257 | PRJNA492308 | Cortisol acting through the glucocorticoid receptor is not responsible for exercise enhanced growth but does affect the white skeletal muscle transcriptome in zebrafish Danio rerio | GSE120253 | Transcriptome Analysis | Forced sustained swimming exercise at optimal speed enhances growth in many fish species particularly through hypertrophy of the white skeletal muscle. The exact mechanism of this effect has not been resolved yet. To explore the mechanism we first subjected wild type zebrafish to an exercise protocol validated for exercise enhanced growth and showed that exercised zebrafish which indeed showed enhanced growth had higher cortisol levels than the non exercised controls. A central role was therefore hypothesized for the steroid hormone cortisol acting through the Glucocorticoid receptor Gr. Second we subjected wild type zebrafish and zebrafish with a mutant Gr to exercise at optimal suboptimal and super optimal speeds and compared them with non exercised controls. Exercised zebrafish showed growth enhancement at all speeds with highest growth at optimal speeds. In the Gr mutant fish exercise resulted in growth enhancement similar to wild type zebrafish indicating that cortisol cannot be considered as a main determinant of exercise enhanced growth. Finally the transcriptome of white skeletal muscle tissue was analysed by RNA sequencing. The results of this analysis showed that in the muscle tissue of Gr mutant fish a lower number of genes is regulated by exercise than in wild type fish 183 versus 351. A cluster of 36 genes was regulated by exercise in both wild type and mutant fish. In this cluster genes involved in transcriptional regulation and protein ubiquitination were overrepresented. Since growth was enhanced similarly in both wild type fish and mutants these processes may play an important role in exercise enhanced growth. Overall design: Deep sequencing transcriptome analysis of white muscle samples derived from wild type ++ or glucocorticoid receptor Gr mutant Danio rerio specimens that were exposed to either a resting REST or a swimming UOPT regimen: wild type resting REST++; n=3 Gr mutant resting REST ; n=3 wild type swimming UOPT++; n=3 Gr mutant swimming UOPT ; n=3. | pubmed:30692930 | Gr mutant swimming UOPT sample 1 | GSM3396894 | source name:Gr mutant swimming UOPT |biomaterial provider:[Origin of specimen] zebrafish facilities of the Institute of Biology Leiden Leiden The Netherlands|tissue:white muscle|genotype:Gr mutant|treatment:swimming|tissue:white muscle | Gr mutant swimming UOPT sample 1 | Illumina Casava software used for basecalling: SCS2.2.38/RTA1.18.61 Illumina reads were aligned against the zebrafish genome sequence GRCz10.80 using TopHat version 2.0.5 Trapnell et al. 2009 The resulting files were filtered using SAMtools version 0.1.18 Li et al. 2009 to exclude secondary alignment of reads Aligned fragments per predicted gene were counted from SAM alignment files using the Python package HTSeq version 0.5.3p9 Anders and Huber 2014 Differentially expressed genes were identified using DESeq Anders and Huber 2010 and data were further processed using Microsoft Excel Genome build: Danio rerio.GRCz10.80 Supplementary files format and content: UOPT++ versus REST++ DiffExpr.txt UOPT versus REST DiffExpr.txt REST versus REST++ DiffExpr.txt and UOPT versus UOPT++ DiffExpr.txt: Microsoft Office Excel file .txt with the following columns: ENSEMBL ID; Associated Gene Name; Description; 6x sample x; baseMean; baseMeanA; baseMeanB; foldChange; log2FoldChange; pval; padj | Gr mutant swimming UOPT | White muscle fillet was dissected dorsally from the lateral line in the epaxial quadrant along the whole length of the fish and stored in RNAlater Ambion at 20 ºC. Tissue was lysed in QIAzol Lysis Reagent. A Qiagen TissueRuptor was used to cut up the tissue samples and RNA was extracted using the Qiagen miRNeasy Mini Kit according to the manufacturer’s description Qiagen Benelux BV Venlo the Netherlands. RNA was eluted in 50 μl and quantified by Nanodrop Thermo Fisher Scientific Amsterdam the Netherlands. Integrity of the RNA was confirmed using an Agilent Bioanalyzer 2100 total RNA Nanoseries II chip Agilent Amstelveen Netherlands. Illumina RNAseq libraries were prepared from 1 μg total RNA using the Illumina TruSeq RNA Sample Prep Kit v2 according to the manufacturer’s instructions Illumina San Diego CA USA. | tissue:white muscle|genotype:Gr mutant|treatment:swimming|tissue:white muscle | GSM3396894 | GSM3396894: Gr mutant swimming UOPT sample 1; Danio rerio; RNA Seq | GSM3396894 | 1 | White muscle fillet was dissected dorsally from the lateral line in the epaxial quadrant along the whole length of the fish and stored in RNAlater Ambion at 20 ºC. Tissue was lysed in QIAzol Lysis Reagent. A Qiagen TissueRuptor was used to cut up the tissue samples and RNA was extracted using the Qiagen miRNeasy Mini Kit according to the manufacturer's description Qiagen Benelux BV Venlo the Netherlands. RNA was eluted in 50 μl and quantified by Nanodrop Thermo Fisher Scientific Amsterdam the Netherlands. Integrity of the RNA was confirmed using an Agilent Bioanalyzer 2100 total RNA Nanoseries II chip Agilent Amstelveen Netherlands. Illumina RNAseq libraries were prepared from 1 μg total RNA using the Illumina TruSeq RNA Sample Prep Kit v2 according to the manufacturer's instructions Illumina San Diego CA USA. | GEO Accession:GSM3396894 | RNA-Seq | TRANSCRIPTOMIC | cDNA | SINGLE | ILLUMINA | Illumina HiSeq 2500 | SRP162257 | ZFG-15-20_11_14126_CGATGT_L002_R1_000.fastq.gz | fastq | 75245655.0 | 1475405.0 | GSM3396894 r2 | 0:51 | A:17559056;C:19128796;G:17344883;T:21206265;N:6655 | 51 | 17559056 | 19128796 | 17344883 | 21206265 | 6655 | SRX4721394 | SRS3806482 | SRA780034 | GEO | ZF-screens BV | 1 | 0.95076 | 0.03952 | 0.81057 | 0.52805 | 51 | B | usable mapping rate | illumina | hiseq_era | unknown | cdna_unspecified | trueseq | bulk | unknown | unknown | Unknown | 2018-09-20 | Undetermined | Undetermined | Muscle | Muscular System | |||||||||||||||||||
| 49274 | 49274 | SRR7883097 | SRX4721394 | SRS3806482 | SRP162257 | PRJNA492308 | Cortisol acting through the glucocorticoid receptor is not responsible for exercise enhanced growth but does affect the white skeletal muscle transcriptome in zebrafish Danio rerio | GSE120253 | Transcriptome Analysis | Forced sustained swimming exercise at optimal speed enhances growth in many fish species particularly through hypertrophy of the white skeletal muscle. The exact mechanism of this effect has not been resolved yet. To explore the mechanism we first subjected wild type zebrafish to an exercise protocol validated for exercise enhanced growth and showed that exercised zebrafish which indeed showed enhanced growth had higher cortisol levels than the non exercised controls. A central role was therefore hypothesized for the steroid hormone cortisol acting through the Glucocorticoid receptor Gr. Second we subjected wild type zebrafish and zebrafish with a mutant Gr to exercise at optimal suboptimal and super optimal speeds and compared them with non exercised controls. Exercised zebrafish showed growth enhancement at all speeds with highest growth at optimal speeds. In the Gr mutant fish exercise resulted in growth enhancement similar to wild type zebrafish indicating that cortisol cannot be considered as a main determinant of exercise enhanced growth. Finally the transcriptome of white skeletal muscle tissue was analysed by RNA sequencing. The results of this analysis showed that in the muscle tissue of Gr mutant fish a lower number of genes is regulated by exercise than in wild type fish 183 versus 351. A cluster of 36 genes was regulated by exercise in both wild type and mutant fish. In this cluster genes involved in transcriptional regulation and protein ubiquitination were overrepresented. Since growth was enhanced similarly in both wild type fish and mutants these processes may play an important role in exercise enhanced growth. Overall design: Deep sequencing transcriptome analysis of white muscle samples derived from wild type ++ or glucocorticoid receptor Gr mutant Danio rerio specimens that were exposed to either a resting REST or a swimming UOPT regimen: wild type resting REST++; n=3 Gr mutant resting REST ; n=3 wild type swimming UOPT++; n=3 Gr mutant swimming UOPT ; n=3. | pubmed:30692930 | Gr mutant swimming UOPT sample 1 | GSM3396894 | source name:Gr mutant swimming UOPT |biomaterial provider:[Origin of specimen] zebrafish facilities of the Institute of Biology Leiden Leiden The Netherlands|tissue:white muscle|genotype:Gr mutant|treatment:swimming|tissue:white muscle | Gr mutant swimming UOPT sample 1 | Illumina Casava software used for basecalling: SCS2.2.38/RTA1.18.61 Illumina reads were aligned against the zebrafish genome sequence GRCz10.80 using TopHat version 2.0.5 Trapnell et al. 2009 The resulting files were filtered using SAMtools version 0.1.18 Li et al. 2009 to exclude secondary alignment of reads Aligned fragments per predicted gene were counted from SAM alignment files using the Python package HTSeq version 0.5.3p9 Anders and Huber 2014 Differentially expressed genes were identified using DESeq Anders and Huber 2010 and data were further processed using Microsoft Excel Genome build: Danio rerio.GRCz10.80 Supplementary files format and content: UOPT++ versus REST++ DiffExpr.txt UOPT versus REST DiffExpr.txt REST versus REST++ DiffExpr.txt and UOPT versus UOPT++ DiffExpr.txt: Microsoft Office Excel file .txt with the following columns: ENSEMBL ID; Associated Gene Name; Description; 6x sample x; baseMean; baseMeanA; baseMeanB; foldChange; log2FoldChange; pval; padj | Gr mutant swimming UOPT | White muscle fillet was dissected dorsally from the lateral line in the epaxial quadrant along the whole length of the fish and stored in RNAlater Ambion at 20 ºC. Tissue was lysed in QIAzol Lysis Reagent. A Qiagen TissueRuptor was used to cut up the tissue samples and RNA was extracted using the Qiagen miRNeasy Mini Kit according to the manufacturer’s description Qiagen Benelux BV Venlo the Netherlands. RNA was eluted in 50 μl and quantified by Nanodrop Thermo Fisher Scientific Amsterdam the Netherlands. Integrity of the RNA was confirmed using an Agilent Bioanalyzer 2100 total RNA Nanoseries II chip Agilent Amstelveen Netherlands. Illumina RNAseq libraries were prepared from 1 μg total RNA using the Illumina TruSeq RNA Sample Prep Kit v2 according to the manufacturer’s instructions Illumina San Diego CA USA. | tissue:white muscle|genotype:Gr mutant|treatment:swimming|tissue:white muscle | GSM3396894 | GSM3396894: Gr mutant swimming UOPT sample 1; Danio rerio; RNA Seq | GSM3396894 | 1 | White muscle fillet was dissected dorsally from the lateral line in the epaxial quadrant along the whole length of the fish and stored in RNAlater Ambion at 20 ºC. Tissue was lysed in QIAzol Lysis Reagent. A Qiagen TissueRuptor was used to cut up the tissue samples and RNA was extracted using the Qiagen miRNeasy Mini Kit according to the manufacturer's description Qiagen Benelux BV Venlo the Netherlands. RNA was eluted in 50 μl and quantified by Nanodrop Thermo Fisher Scientific Amsterdam the Netherlands. Integrity of the RNA was confirmed using an Agilent Bioanalyzer 2100 total RNA Nanoseries II chip Agilent Amstelveen Netherlands. Illumina RNAseq libraries were prepared from 1 μg total RNA using the Illumina TruSeq RNA Sample Prep Kit v2 according to the manufacturer's instructions Illumina San Diego CA USA. | GEO Accession:GSM3396894 | RNA-Seq | TRANSCRIPTOMIC | cDNA | SINGLE | ILLUMINA | Illumina HiSeq 2500 | SRP162257 | ZFG-15-20_11_14126_CGATGT_L001_R1_001.fastq.gz | fastq | 282942084.0 | 5547884.0 | GSM3396894 r3 | 0:51 | A:65346157;C:71914444;G:66015753;T:79625150;N:40580 | 51 | 65346157 | 71914444 | 66015753 | 79625150 | 40580 | SRX4721394 | SRS3806482 | SRA780034 | GEO | ZF-screens BV | 1 | 0.95533 | 0.03742 | 0.81044 | 0.52574 | 51 | B | usable mapping rate | illumina | hiseq_era | unknown | cdna_unspecified | trueseq | bulk | unknown | unknown | Unknown | 2018-09-20 | Undetermined | Undetermined | Muscle | Muscular System | |||||||||||||||||||
| 49275 | 49275 | SRR7883098 | SRX4721394 | SRS3806482 | SRP162257 | PRJNA492308 | Cortisol acting through the glucocorticoid receptor is not responsible for exercise enhanced growth but does affect the white skeletal muscle transcriptome in zebrafish Danio rerio | GSE120253 | Transcriptome Analysis | Forced sustained swimming exercise at optimal speed enhances growth in many fish species particularly through hypertrophy of the white skeletal muscle. The exact mechanism of this effect has not been resolved yet. To explore the mechanism we first subjected wild type zebrafish to an exercise protocol validated for exercise enhanced growth and showed that exercised zebrafish which indeed showed enhanced growth had higher cortisol levels than the non exercised controls. A central role was therefore hypothesized for the steroid hormone cortisol acting through the Glucocorticoid receptor Gr. Second we subjected wild type zebrafish and zebrafish with a mutant Gr to exercise at optimal suboptimal and super optimal speeds and compared them with non exercised controls. Exercised zebrafish showed growth enhancement at all speeds with highest growth at optimal speeds. In the Gr mutant fish exercise resulted in growth enhancement similar to wild type zebrafish indicating that cortisol cannot be considered as a main determinant of exercise enhanced growth. Finally the transcriptome of white skeletal muscle tissue was analysed by RNA sequencing. The results of this analysis showed that in the muscle tissue of Gr mutant fish a lower number of genes is regulated by exercise than in wild type fish 183 versus 351. A cluster of 36 genes was regulated by exercise in both wild type and mutant fish. In this cluster genes involved in transcriptional regulation and protein ubiquitination were overrepresented. Since growth was enhanced similarly in both wild type fish and mutants these processes may play an important role in exercise enhanced growth. Overall design: Deep sequencing transcriptome analysis of white muscle samples derived from wild type ++ or glucocorticoid receptor Gr mutant Danio rerio specimens that were exposed to either a resting REST or a swimming UOPT regimen: wild type resting REST++; n=3 Gr mutant resting REST ; n=3 wild type swimming UOPT++; n=3 Gr mutant swimming UOPT ; n=3. | pubmed:30692930 | Gr mutant swimming UOPT sample 1 | GSM3396894 | source name:Gr mutant swimming UOPT |biomaterial provider:[Origin of specimen] zebrafish facilities of the Institute of Biology Leiden Leiden The Netherlands|tissue:white muscle|genotype:Gr mutant|treatment:swimming|tissue:white muscle | Gr mutant swimming UOPT sample 1 | Illumina Casava software used for basecalling: SCS2.2.38/RTA1.18.61 Illumina reads were aligned against the zebrafish genome sequence GRCz10.80 using TopHat version 2.0.5 Trapnell et al. 2009 The resulting files were filtered using SAMtools version 0.1.18 Li et al. 2009 to exclude secondary alignment of reads Aligned fragments per predicted gene were counted from SAM alignment files using the Python package HTSeq version 0.5.3p9 Anders and Huber 2014 Differentially expressed genes were identified using DESeq Anders and Huber 2010 and data were further processed using Microsoft Excel Genome build: Danio rerio.GRCz10.80 Supplementary files format and content: UOPT++ versus REST++ DiffExpr.txt UOPT versus REST DiffExpr.txt REST versus REST++ DiffExpr.txt and UOPT versus UOPT++ DiffExpr.txt: Microsoft Office Excel file .txt with the following columns: ENSEMBL ID; Associated Gene Name; Description; 6x sample x; baseMean; baseMeanA; baseMeanB; foldChange; log2FoldChange; pval; padj | Gr mutant swimming UOPT | White muscle fillet was dissected dorsally from the lateral line in the epaxial quadrant along the whole length of the fish and stored in RNAlater Ambion at 20 ºC. Tissue was lysed in QIAzol Lysis Reagent. A Qiagen TissueRuptor was used to cut up the tissue samples and RNA was extracted using the Qiagen miRNeasy Mini Kit according to the manufacturer’s description Qiagen Benelux BV Venlo the Netherlands. RNA was eluted in 50 μl and quantified by Nanodrop Thermo Fisher Scientific Amsterdam the Netherlands. Integrity of the RNA was confirmed using an Agilent Bioanalyzer 2100 total RNA Nanoseries II chip Agilent Amstelveen Netherlands. Illumina RNAseq libraries were prepared from 1 μg total RNA using the Illumina TruSeq RNA Sample Prep Kit v2 according to the manufacturer’s instructions Illumina San Diego CA USA. | tissue:white muscle|genotype:Gr mutant|treatment:swimming|tissue:white muscle | GSM3396894 | GSM3396894: Gr mutant swimming UOPT sample 1; Danio rerio; RNA Seq | GSM3396894 | 1 | White muscle fillet was dissected dorsally from the lateral line in the epaxial quadrant along the whole length of the fish and stored in RNAlater Ambion at 20 ºC. Tissue was lysed in QIAzol Lysis Reagent. A Qiagen TissueRuptor was used to cut up the tissue samples and RNA was extracted using the Qiagen miRNeasy Mini Kit according to the manufacturer's description Qiagen Benelux BV Venlo the Netherlands. RNA was eluted in 50 μl and quantified by Nanodrop Thermo Fisher Scientific Amsterdam the Netherlands. Integrity of the RNA was confirmed using an Agilent Bioanalyzer 2100 total RNA Nanoseries II chip Agilent Amstelveen Netherlands. Illumina RNAseq libraries were prepared from 1 μg total RNA using the Illumina TruSeq RNA Sample Prep Kit v2 according to the manufacturer's instructions Illumina San Diego CA USA. | GEO Accession:GSM3396894 | RNA-Seq | TRANSCRIPTOMIC | cDNA | SINGLE | ILLUMINA | Illumina HiSeq 2500 | SRP162257 | ZFG-15-20_11_14126_CGATGT_L002_R1_001.fastq.gz | fastq | 279101274.0 | 5472574.0 | GSM3396894 r4 | 0:51 | A:64447735;C:70937019;G:65137622;T:78531620;N:47278 | 51 | 64447735 | 70937019 | 65137622 | 78531620 | 47278 | SRX4721394 | SRS3806482 | SRA780034 | GEO | ZF-screens BV | 1 | 0.95428 | 0.03783 | 0.81128 | 0.52701 | 51 | B | usable mapping rate | illumina | hiseq_era | unknown | cdna_unspecified | trueseq | bulk | unknown | unknown | Unknown | 2018-09-20 | Undetermined | Undetermined | Muscle | Muscular System | |||||||||||||||||||
| 49276 | 49276 | SRR7883093 | SRX4721393 | SRS3806481 | SRP162257 | PRJNA492308 | Cortisol acting through the glucocorticoid receptor is not responsible for exercise enhanced growth but does affect the white skeletal muscle transcriptome in zebrafish Danio rerio | GSE120253 | Transcriptome Analysis | Forced sustained swimming exercise at optimal speed enhances growth in many fish species particularly through hypertrophy of the white skeletal muscle. The exact mechanism of this effect has not been resolved yet. To explore the mechanism we first subjected wild type zebrafish to an exercise protocol validated for exercise enhanced growth and showed that exercised zebrafish which indeed showed enhanced growth had higher cortisol levels than the non exercised controls. A central role was therefore hypothesized for the steroid hormone cortisol acting through the Glucocorticoid receptor Gr. Second we subjected wild type zebrafish and zebrafish with a mutant Gr to exercise at optimal suboptimal and super optimal speeds and compared them with non exercised controls. Exercised zebrafish showed growth enhancement at all speeds with highest growth at optimal speeds. In the Gr mutant fish exercise resulted in growth enhancement similar to wild type zebrafish indicating that cortisol cannot be considered as a main determinant of exercise enhanced growth. Finally the transcriptome of white skeletal muscle tissue was analysed by RNA sequencing. The results of this analysis showed that in the muscle tissue of Gr mutant fish a lower number of genes is regulated by exercise than in wild type fish 183 versus 351. A cluster of 36 genes was regulated by exercise in both wild type and mutant fish. In this cluster genes involved in transcriptional regulation and protein ubiquitination were overrepresented. Since growth was enhanced similarly in both wild type fish and mutants these processes may play an important role in exercise enhanced growth. Overall design: Deep sequencing transcriptome analysis of white muscle samples derived from wild type ++ or glucocorticoid receptor Gr mutant Danio rerio specimens that were exposed to either a resting REST or a swimming UOPT regimen: wild type resting REST++; n=3 Gr mutant resting REST ; n=3 wild type swimming UOPT++; n=3 Gr mutant swimming UOPT ; n=3. | pubmed:30692930 | Wild type swimming UOPT++ sample 3 | GSM3396893 | source name:Wild type swimming UOPT++|biomaterial provider:[Origin of specimen] zebrafish facilities of the Institute of Biology Leiden Leiden The Netherlands|tissue:white muscle|genotype:Wild type|treatment:swimming|tissue:white muscle | Wild type swimming UOPT++ sample 3 | Illumina Casava software used for basecalling: SCS2.2.38/RTA1.18.61 Illumina reads were aligned against the zebrafish genome sequence GRCz10.80 using TopHat version 2.0.5 Trapnell et al. 2009 The resulting files were filtered using SAMtools version 0.1.18 Li et al. 2009 to exclude secondary alignment of reads Aligned fragments per predicted gene were counted from SAM alignment files using the Python package HTSeq version 0.5.3p9 Anders and Huber 2014 Differentially expressed genes were identified using DESeq Anders and Huber 2010 and data were further processed using Microsoft Excel Genome build: Danio rerio.GRCz10.80 Supplementary files format and content: UOPT++ versus REST++ DiffExpr.txt UOPT versus REST DiffExpr.txt REST versus REST++ DiffExpr.txt and UOPT versus UOPT++ DiffExpr.txt: Microsoft Office Excel file .txt with the following columns: ENSEMBL ID; Associated Gene Name; Description; 6x sample x; baseMean; baseMeanA; baseMeanB; foldChange; log2FoldChange; pval; padj | Wild type swimming UOPT++ | White muscle fillet was dissected dorsally from the lateral line in the epaxial quadrant along the whole length of the fish and stored in RNAlater Ambion at 20 ºC. Tissue was lysed in QIAzol Lysis Reagent. A Qiagen TissueRuptor was used to cut up the tissue samples and RNA was extracted using the Qiagen miRNeasy Mini Kit according to the manufacturer’s description Qiagen Benelux BV Venlo the Netherlands. RNA was eluted in 50 μl and quantified by Nanodrop Thermo Fisher Scientific Amsterdam the Netherlands. Integrity of the RNA was confirmed using an Agilent Bioanalyzer 2100 total RNA Nanoseries II chip Agilent Amstelveen Netherlands. Illumina RNAseq libraries were prepared from 1 μg total RNA using the Illumina TruSeq RNA Sample Prep Kit v2 according to the manufacturer’s instructions Illumina San Diego CA USA. | tissue:white muscle|genotype:Wild type|treatment:swimming|tissue:white muscle | GSM3396893 | GSM3396893: Wild type swimming UOPT++ sample 3; Danio rerio; RNA Seq | GSM3396893 | 1 | White muscle fillet was dissected dorsally from the lateral line in the epaxial quadrant along the whole length of the fish and stored in RNAlater Ambion at 20 ºC. Tissue was lysed in QIAzol Lysis Reagent. A Qiagen TissueRuptor was used to cut up the tissue samples and RNA was extracted using the Qiagen miRNeasy Mini Kit according to the manufacturer's description Qiagen Benelux BV Venlo the Netherlands. RNA was eluted in 50 μl and quantified by Nanodrop Thermo Fisher Scientific Amsterdam the Netherlands. Integrity of the RNA was confirmed using an Agilent Bioanalyzer 2100 total RNA Nanoseries II chip Agilent Amstelveen Netherlands. Illumina RNAseq libraries were prepared from 1 μg total RNA using the Illumina TruSeq RNA Sample Prep Kit v2 according to the manufacturer's instructions Illumina San Diego CA USA. | GEO Accession:GSM3396893 | RNA-Seq | TRANSCRIPTOMIC | cDNA | SINGLE | ILLUMINA | Illumina HiSeq 2500 | SRP162257 | ZFG-15-20_13_15103_GCCAAT_L001_R1_001.fastq.gz | fastq | 354993966.0 | 6960666.0 | GSM3396893 r1 | 0:51 | A:84489335;C:86597253;G:84240000;T:99472362;N:195016 | 51 | 84489335 | 86597253 | 84240000 | 99472362 | 195016 | SRX4721393 | SRS3806481 | SRA780034 | GEO | ZF-screens BV | 1 | 0.95532 | 0.04239 | 0.80653 | 0.55623 | 51 | B | usable mapping rate | illumina | hiseq_era | unknown | cdna_unspecified | trueseq | bulk | unknown | unknown | Unknown | 2018-09-20 | Undetermined | Undetermined | Muscle | Muscular System | |||||||||||||||||||
| 49277 | 49277 | SRR7883094 | SRX4721393 | SRS3806481 | SRP162257 | PRJNA492308 | Cortisol acting through the glucocorticoid receptor is not responsible for exercise enhanced growth but does affect the white skeletal muscle transcriptome in zebrafish Danio rerio | GSE120253 | Transcriptome Analysis | Forced sustained swimming exercise at optimal speed enhances growth in many fish species particularly through hypertrophy of the white skeletal muscle. The exact mechanism of this effect has not been resolved yet. To explore the mechanism we first subjected wild type zebrafish to an exercise protocol validated for exercise enhanced growth and showed that exercised zebrafish which indeed showed enhanced growth had higher cortisol levels than the non exercised controls. A central role was therefore hypothesized for the steroid hormone cortisol acting through the Glucocorticoid receptor Gr. Second we subjected wild type zebrafish and zebrafish with a mutant Gr to exercise at optimal suboptimal and super optimal speeds and compared them with non exercised controls. Exercised zebrafish showed growth enhancement at all speeds with highest growth at optimal speeds. In the Gr mutant fish exercise resulted in growth enhancement similar to wild type zebrafish indicating that cortisol cannot be considered as a main determinant of exercise enhanced growth. Finally the transcriptome of white skeletal muscle tissue was analysed by RNA sequencing. The results of this analysis showed that in the muscle tissue of Gr mutant fish a lower number of genes is regulated by exercise than in wild type fish 183 versus 351. A cluster of 36 genes was regulated by exercise in both wild type and mutant fish. In this cluster genes involved in transcriptional regulation and protein ubiquitination were overrepresented. Since growth was enhanced similarly in both wild type fish and mutants these processes may play an important role in exercise enhanced growth. Overall design: Deep sequencing transcriptome analysis of white muscle samples derived from wild type ++ or glucocorticoid receptor Gr mutant Danio rerio specimens that were exposed to either a resting REST or a swimming UOPT regimen: wild type resting REST++; n=3 Gr mutant resting REST ; n=3 wild type swimming UOPT++; n=3 Gr mutant swimming UOPT ; n=3. | pubmed:30692930 | Wild type swimming UOPT++ sample 3 | GSM3396893 | source name:Wild type swimming UOPT++|biomaterial provider:[Origin of specimen] zebrafish facilities of the Institute of Biology Leiden Leiden The Netherlands|tissue:white muscle|genotype:Wild type|treatment:swimming|tissue:white muscle | Wild type swimming UOPT++ sample 3 | Illumina Casava software used for basecalling: SCS2.2.38/RTA1.18.61 Illumina reads were aligned against the zebrafish genome sequence GRCz10.80 using TopHat version 2.0.5 Trapnell et al. 2009 The resulting files were filtered using SAMtools version 0.1.18 Li et al. 2009 to exclude secondary alignment of reads Aligned fragments per predicted gene were counted from SAM alignment files using the Python package HTSeq version 0.5.3p9 Anders and Huber 2014 Differentially expressed genes were identified using DESeq Anders and Huber 2010 and data were further processed using Microsoft Excel Genome build: Danio rerio.GRCz10.80 Supplementary files format and content: UOPT++ versus REST++ DiffExpr.txt UOPT versus REST DiffExpr.txt REST versus REST++ DiffExpr.txt and UOPT versus UOPT++ DiffExpr.txt: Microsoft Office Excel file .txt with the following columns: ENSEMBL ID; Associated Gene Name; Description; 6x sample x; baseMean; baseMeanA; baseMeanB; foldChange; log2FoldChange; pval; padj | Wild type swimming UOPT++ | White muscle fillet was dissected dorsally from the lateral line in the epaxial quadrant along the whole length of the fish and stored in RNAlater Ambion at 20 ºC. Tissue was lysed in QIAzol Lysis Reagent. A Qiagen TissueRuptor was used to cut up the tissue samples and RNA was extracted using the Qiagen miRNeasy Mini Kit according to the manufacturer’s description Qiagen Benelux BV Venlo the Netherlands. RNA was eluted in 50 μl and quantified by Nanodrop Thermo Fisher Scientific Amsterdam the Netherlands. Integrity of the RNA was confirmed using an Agilent Bioanalyzer 2100 total RNA Nanoseries II chip Agilent Amstelveen Netherlands. Illumina RNAseq libraries were prepared from 1 μg total RNA using the Illumina TruSeq RNA Sample Prep Kit v2 according to the manufacturer’s instructions Illumina San Diego CA USA. | tissue:white muscle|genotype:Wild type|treatment:swimming|tissue:white muscle | GSM3396893 | GSM3396893: Wild type swimming UOPT++ sample 3; Danio rerio; RNA Seq | GSM3396893 | 1 | White muscle fillet was dissected dorsally from the lateral line in the epaxial quadrant along the whole length of the fish and stored in RNAlater Ambion at 20 ºC. Tissue was lysed in QIAzol Lysis Reagent. A Qiagen TissueRuptor was used to cut up the tissue samples and RNA was extracted using the Qiagen miRNeasy Mini Kit according to the manufacturer's description Qiagen Benelux BV Venlo the Netherlands. RNA was eluted in 50 μl and quantified by Nanodrop Thermo Fisher Scientific Amsterdam the Netherlands. Integrity of the RNA was confirmed using an Agilent Bioanalyzer 2100 total RNA Nanoseries II chip Agilent Amstelveen Netherlands. Illumina RNAseq libraries were prepared from 1 μg total RNA using the Illumina TruSeq RNA Sample Prep Kit v2 according to the manufacturer's instructions Illumina San Diego CA USA. | GEO Accession:GSM3396893 | RNA-Seq | TRANSCRIPTOMIC | cDNA | SINGLE | ILLUMINA | Illumina HiSeq 2500 | SRP162257 | ZFG-15-20_13_15103_GCCAAT_L002_R1_001.fastq.gz | fastq | 351290193.0 | 6888043.0 | GSM3396893 r2 | 0:51 | A:83629618;C:85716733;G:83395630;T:98483376;N:64836 | 51 | 83629618 | 85716733 | 83395630 | 98483376 | 64836 | SRX4721393 | SRS3806481 | SRA780034 | GEO | ZF-screens BV | 1 | 0.95631 | 0.04199 | 0.8056 | 0.54571 | 51 | B | usable mapping rate | illumina | hiseq_era | unknown | cdna_unspecified | trueseq | bulk | unknown | unknown | Unknown | 2018-09-20 | Undetermined | Undetermined | Muscle | Muscular System | |||||||||||||||||||
| 49278 | 49278 | SRR7883089 | SRX4721392 | SRS3806480 | SRP162257 | PRJNA492308 | Cortisol acting through the glucocorticoid receptor is not responsible for exercise enhanced growth but does affect the white skeletal muscle transcriptome in zebrafish Danio rerio | GSE120253 | Transcriptome Analysis | Forced sustained swimming exercise at optimal speed enhances growth in many fish species particularly through hypertrophy of the white skeletal muscle. The exact mechanism of this effect has not been resolved yet. To explore the mechanism we first subjected wild type zebrafish to an exercise protocol validated for exercise enhanced growth and showed that exercised zebrafish which indeed showed enhanced growth had higher cortisol levels than the non exercised controls. A central role was therefore hypothesized for the steroid hormone cortisol acting through the Glucocorticoid receptor Gr. Second we subjected wild type zebrafish and zebrafish with a mutant Gr to exercise at optimal suboptimal and super optimal speeds and compared them with non exercised controls. Exercised zebrafish showed growth enhancement at all speeds with highest growth at optimal speeds. In the Gr mutant fish exercise resulted in growth enhancement similar to wild type zebrafish indicating that cortisol cannot be considered as a main determinant of exercise enhanced growth. Finally the transcriptome of white skeletal muscle tissue was analysed by RNA sequencing. The results of this analysis showed that in the muscle tissue of Gr mutant fish a lower number of genes is regulated by exercise than in wild type fish 183 versus 351. A cluster of 36 genes was regulated by exercise in both wild type and mutant fish. In this cluster genes involved in transcriptional regulation and protein ubiquitination were overrepresented. Since growth was enhanced similarly in both wild type fish and mutants these processes may play an important role in exercise enhanced growth. Overall design: Deep sequencing transcriptome analysis of white muscle samples derived from wild type ++ or glucocorticoid receptor Gr mutant Danio rerio specimens that were exposed to either a resting REST or a swimming UOPT regimen: wild type resting REST++; n=3 Gr mutant resting REST ; n=3 wild type swimming UOPT++; n=3 Gr mutant swimming UOPT ; n=3. | pubmed:30692930 | Wild type swimming UOPT++ sample 2 | GSM3396892 | source name:Wild type swimming UOPT++|biomaterial provider:[Origin of specimen] zebrafish facilities of the Institute of Biology Leiden Leiden The Netherlands|tissue:white muscle|genotype:Wild type|treatment:swimming|tissue:white muscle | Wild type swimming UOPT++ sample 2 | Illumina Casava software used for basecalling: SCS2.2.38/RTA1.18.61 Illumina reads were aligned against the zebrafish genome sequence GRCz10.80 using TopHat version 2.0.5 Trapnell et al. 2009 The resulting files were filtered using SAMtools version 0.1.18 Li et al. 2009 to exclude secondary alignment of reads Aligned fragments per predicted gene were counted from SAM alignment files using the Python package HTSeq version 0.5.3p9 Anders and Huber 2014 Differentially expressed genes were identified using DESeq Anders and Huber 2010 and data were further processed using Microsoft Excel Genome build: Danio rerio.GRCz10.80 Supplementary files format and content: UOPT++ versus REST++ DiffExpr.txt UOPT versus REST DiffExpr.txt REST versus REST++ DiffExpr.txt and UOPT versus UOPT++ DiffExpr.txt: Microsoft Office Excel file .txt with the following columns: ENSEMBL ID; Associated Gene Name; Description; 6x sample x; baseMean; baseMeanA; baseMeanB; foldChange; log2FoldChange; pval; padj | Wild type swimming UOPT++ | White muscle fillet was dissected dorsally from the lateral line in the epaxial quadrant along the whole length of the fish and stored in RNAlater Ambion at 20 ºC. Tissue was lysed in QIAzol Lysis Reagent. A Qiagen TissueRuptor was used to cut up the tissue samples and RNA was extracted using the Qiagen miRNeasy Mini Kit according to the manufacturer’s description Qiagen Benelux BV Venlo the Netherlands. RNA was eluted in 50 μl and quantified by Nanodrop Thermo Fisher Scientific Amsterdam the Netherlands. Integrity of the RNA was confirmed using an Agilent Bioanalyzer 2100 total RNA Nanoseries II chip Agilent Amstelveen Netherlands. Illumina RNAseq libraries were prepared from 1 μg total RNA using the Illumina TruSeq RNA Sample Prep Kit v2 according to the manufacturer’s instructions Illumina San Diego CA USA. | tissue:white muscle|genotype:Wild type|treatment:swimming|tissue:white muscle | GSM3396892 | GSM3396892: Wild type swimming UOPT++ sample 2; Danio rerio; RNA Seq | GSM3396892 | 1 | White muscle fillet was dissected dorsally from the lateral line in the epaxial quadrant along the whole length of the fish and stored in RNAlater Ambion at 20 ºC. Tissue was lysed in QIAzol Lysis Reagent. A Qiagen TissueRuptor was used to cut up the tissue samples and RNA was extracted using the Qiagen miRNeasy Mini Kit according to the manufacturer's description Qiagen Benelux BV Venlo the Netherlands. RNA was eluted in 50 μl and quantified by Nanodrop Thermo Fisher Scientific Amsterdam the Netherlands. Integrity of the RNA was confirmed using an Agilent Bioanalyzer 2100 total RNA Nanoseries II chip Agilent Amstelveen Netherlands. Illumina RNAseq libraries were prepared from 1 μg total RNA using the Illumina TruSeq RNA Sample Prep Kit v2 according to the manufacturer's instructions Illumina San Diego CA USA. | GEO Accession:GSM3396892 | RNA-Seq | TRANSCRIPTOMIC | cDNA | SINGLE | ILLUMINA | Illumina HiSeq 2500 | SRP162257 | ZFG-15-20_09_14125_GAGTGG_L001_R1_000.fastq.gz | fastq | 70889949.0 | 1389999.0 | GSM3396892 r1 | 0:51 | A:16926874;C:17543094;G:16728407;T:19679197;N:12377 | 51 | 16926874 | 17543094 | 16728407 | 19679197 | 12377 | SRX4721392 | SRS3806480 | SRA780034 | GEO | ZF-screens BV | 1 | 0.95627 | 0.03548 | 0.82451 | 0.53415 | 51 | B | usable mapping rate | illumina | hiseq_era | unknown | cdna_unspecified | trueseq | bulk | unknown | unknown | Unknown | 2018-09-20 | Undetermined | Undetermined | Muscle | Muscular System | |||||||||||||||||||
| 49279 | 49279 | SRR7883090 | SRX4721392 | SRS3806480 | SRP162257 | PRJNA492308 | Cortisol acting through the glucocorticoid receptor is not responsible for exercise enhanced growth but does affect the white skeletal muscle transcriptome in zebrafish Danio rerio | GSE120253 | Transcriptome Analysis | Forced sustained swimming exercise at optimal speed enhances growth in many fish species particularly through hypertrophy of the white skeletal muscle. The exact mechanism of this effect has not been resolved yet. To explore the mechanism we first subjected wild type zebrafish to an exercise protocol validated for exercise enhanced growth and showed that exercised zebrafish which indeed showed enhanced growth had higher cortisol levels than the non exercised controls. A central role was therefore hypothesized for the steroid hormone cortisol acting through the Glucocorticoid receptor Gr. Second we subjected wild type zebrafish and zebrafish with a mutant Gr to exercise at optimal suboptimal and super optimal speeds and compared them with non exercised controls. Exercised zebrafish showed growth enhancement at all speeds with highest growth at optimal speeds. In the Gr mutant fish exercise resulted in growth enhancement similar to wild type zebrafish indicating that cortisol cannot be considered as a main determinant of exercise enhanced growth. Finally the transcriptome of white skeletal muscle tissue was analysed by RNA sequencing. The results of this analysis showed that in the muscle tissue of Gr mutant fish a lower number of genes is regulated by exercise than in wild type fish 183 versus 351. A cluster of 36 genes was regulated by exercise in both wild type and mutant fish. In this cluster genes involved in transcriptional regulation and protein ubiquitination were overrepresented. Since growth was enhanced similarly in both wild type fish and mutants these processes may play an important role in exercise enhanced growth. Overall design: Deep sequencing transcriptome analysis of white muscle samples derived from wild type ++ or glucocorticoid receptor Gr mutant Danio rerio specimens that were exposed to either a resting REST or a swimming UOPT regimen: wild type resting REST++; n=3 Gr mutant resting REST ; n=3 wild type swimming UOPT++; n=3 Gr mutant swimming UOPT ; n=3. | pubmed:30692930 | Wild type swimming UOPT++ sample 2 | GSM3396892 | source name:Wild type swimming UOPT++|biomaterial provider:[Origin of specimen] zebrafish facilities of the Institute of Biology Leiden Leiden The Netherlands|tissue:white muscle|genotype:Wild type|treatment:swimming|tissue:white muscle | Wild type swimming UOPT++ sample 2 | Illumina Casava software used for basecalling: SCS2.2.38/RTA1.18.61 Illumina reads were aligned against the zebrafish genome sequence GRCz10.80 using TopHat version 2.0.5 Trapnell et al. 2009 The resulting files were filtered using SAMtools version 0.1.18 Li et al. 2009 to exclude secondary alignment of reads Aligned fragments per predicted gene were counted from SAM alignment files using the Python package HTSeq version 0.5.3p9 Anders and Huber 2014 Differentially expressed genes were identified using DESeq Anders and Huber 2010 and data were further processed using Microsoft Excel Genome build: Danio rerio.GRCz10.80 Supplementary files format and content: UOPT++ versus REST++ DiffExpr.txt UOPT versus REST DiffExpr.txt REST versus REST++ DiffExpr.txt and UOPT versus UOPT++ DiffExpr.txt: Microsoft Office Excel file .txt with the following columns: ENSEMBL ID; Associated Gene Name; Description; 6x sample x; baseMean; baseMeanA; baseMeanB; foldChange; log2FoldChange; pval; padj | Wild type swimming UOPT++ | White muscle fillet was dissected dorsally from the lateral line in the epaxial quadrant along the whole length of the fish and stored in RNAlater Ambion at 20 ºC. Tissue was lysed in QIAzol Lysis Reagent. A Qiagen TissueRuptor was used to cut up the tissue samples and RNA was extracted using the Qiagen miRNeasy Mini Kit according to the manufacturer’s description Qiagen Benelux BV Venlo the Netherlands. RNA was eluted in 50 μl and quantified by Nanodrop Thermo Fisher Scientific Amsterdam the Netherlands. Integrity of the RNA was confirmed using an Agilent Bioanalyzer 2100 total RNA Nanoseries II chip Agilent Amstelveen Netherlands. Illumina RNAseq libraries were prepared from 1 μg total RNA using the Illumina TruSeq RNA Sample Prep Kit v2 according to the manufacturer’s instructions Illumina San Diego CA USA. | tissue:white muscle|genotype:Wild type|treatment:swimming|tissue:white muscle | GSM3396892 | GSM3396892: Wild type swimming UOPT++ sample 2; Danio rerio; RNA Seq | GSM3396892 | 1 | White muscle fillet was dissected dorsally from the lateral line in the epaxial quadrant along the whole length of the fish and stored in RNAlater Ambion at 20 ºC. Tissue was lysed in QIAzol Lysis Reagent. A Qiagen TissueRuptor was used to cut up the tissue samples and RNA was extracted using the Qiagen miRNeasy Mini Kit according to the manufacturer's description Qiagen Benelux BV Venlo the Netherlands. RNA was eluted in 50 μl and quantified by Nanodrop Thermo Fisher Scientific Amsterdam the Netherlands. Integrity of the RNA was confirmed using an Agilent Bioanalyzer 2100 total RNA Nanoseries II chip Agilent Amstelveen Netherlands. Illumina RNAseq libraries were prepared from 1 μg total RNA using the Illumina TruSeq RNA Sample Prep Kit v2 according to the manufacturer's instructions Illumina San Diego CA USA. | GEO Accession:GSM3396892 | RNA-Seq | TRANSCRIPTOMIC | cDNA | SINGLE | ILLUMINA | Illumina HiSeq 2500 | SRP162257 | ZFG-15-20_09_14125_GAGTGG_L002_R1_000.fastq.gz | fastq | 70218126.0 | 1376826.0 | GSM3396892 r2 | 0:51 | A:16757913;C:17378481;G:16577230;T:19498501;N:6001 | 51 | 16757913 | 17378481 | 16577230 | 19498501 | 6001 | SRX4721392 | SRS3806480 | SRA780034 | GEO | ZF-screens BV | 1 | 0.95571 | 0.03554 | 0.82806 | 0.50999 | 51 | B | usable mapping rate | illumina | hiseq_era | unknown | cdna_unspecified | trueseq | bulk | unknown | unknown | Unknown | 2018-09-20 | Undetermined | Undetermined | Muscle | Muscular System | |||||||||||||||||||
| 49280 | 49280 | SRR7883091 | SRX4721392 | SRS3806480 | SRP162257 | PRJNA492308 | Cortisol acting through the glucocorticoid receptor is not responsible for exercise enhanced growth but does affect the white skeletal muscle transcriptome in zebrafish Danio rerio | GSE120253 | Transcriptome Analysis | Forced sustained swimming exercise at optimal speed enhances growth in many fish species particularly through hypertrophy of the white skeletal muscle. The exact mechanism of this effect has not been resolved yet. To explore the mechanism we first subjected wild type zebrafish to an exercise protocol validated for exercise enhanced growth and showed that exercised zebrafish which indeed showed enhanced growth had higher cortisol levels than the non exercised controls. A central role was therefore hypothesized for the steroid hormone cortisol acting through the Glucocorticoid receptor Gr. Second we subjected wild type zebrafish and zebrafish with a mutant Gr to exercise at optimal suboptimal and super optimal speeds and compared them with non exercised controls. Exercised zebrafish showed growth enhancement at all speeds with highest growth at optimal speeds. In the Gr mutant fish exercise resulted in growth enhancement similar to wild type zebrafish indicating that cortisol cannot be considered as a main determinant of exercise enhanced growth. Finally the transcriptome of white skeletal muscle tissue was analysed by RNA sequencing. The results of this analysis showed that in the muscle tissue of Gr mutant fish a lower number of genes is regulated by exercise than in wild type fish 183 versus 351. A cluster of 36 genes was regulated by exercise in both wild type and mutant fish. In this cluster genes involved in transcriptional regulation and protein ubiquitination were overrepresented. Since growth was enhanced similarly in both wild type fish and mutants these processes may play an important role in exercise enhanced growth. Overall design: Deep sequencing transcriptome analysis of white muscle samples derived from wild type ++ or glucocorticoid receptor Gr mutant Danio rerio specimens that were exposed to either a resting REST or a swimming UOPT regimen: wild type resting REST++; n=3 Gr mutant resting REST ; n=3 wild type swimming UOPT++; n=3 Gr mutant swimming UOPT ; n=3. | pubmed:30692930 | Wild type swimming UOPT++ sample 2 | GSM3396892 | source name:Wild type swimming UOPT++|biomaterial provider:[Origin of specimen] zebrafish facilities of the Institute of Biology Leiden Leiden The Netherlands|tissue:white muscle|genotype:Wild type|treatment:swimming|tissue:white muscle | Wild type swimming UOPT++ sample 2 | Illumina Casava software used for basecalling: SCS2.2.38/RTA1.18.61 Illumina reads were aligned against the zebrafish genome sequence GRCz10.80 using TopHat version 2.0.5 Trapnell et al. 2009 The resulting files were filtered using SAMtools version 0.1.18 Li et al. 2009 to exclude secondary alignment of reads Aligned fragments per predicted gene were counted from SAM alignment files using the Python package HTSeq version 0.5.3p9 Anders and Huber 2014 Differentially expressed genes were identified using DESeq Anders and Huber 2010 and data were further processed using Microsoft Excel Genome build: Danio rerio.GRCz10.80 Supplementary files format and content: UOPT++ versus REST++ DiffExpr.txt UOPT versus REST DiffExpr.txt REST versus REST++ DiffExpr.txt and UOPT versus UOPT++ DiffExpr.txt: Microsoft Office Excel file .txt with the following columns: ENSEMBL ID; Associated Gene Name; Description; 6x sample x; baseMean; baseMeanA; baseMeanB; foldChange; log2FoldChange; pval; padj | Wild type swimming UOPT++ | White muscle fillet was dissected dorsally from the lateral line in the epaxial quadrant along the whole length of the fish and stored in RNAlater Ambion at 20 ºC. Tissue was lysed in QIAzol Lysis Reagent. A Qiagen TissueRuptor was used to cut up the tissue samples and RNA was extracted using the Qiagen miRNeasy Mini Kit according to the manufacturer’s description Qiagen Benelux BV Venlo the Netherlands. RNA was eluted in 50 μl and quantified by Nanodrop Thermo Fisher Scientific Amsterdam the Netherlands. Integrity of the RNA was confirmed using an Agilent Bioanalyzer 2100 total RNA Nanoseries II chip Agilent Amstelveen Netherlands. Illumina RNAseq libraries were prepared from 1 μg total RNA using the Illumina TruSeq RNA Sample Prep Kit v2 according to the manufacturer’s instructions Illumina San Diego CA USA. | tissue:white muscle|genotype:Wild type|treatment:swimming|tissue:white muscle | GSM3396892 | GSM3396892: Wild type swimming UOPT++ sample 2; Danio rerio; RNA Seq | GSM3396892 | 1 | White muscle fillet was dissected dorsally from the lateral line in the epaxial quadrant along the whole length of the fish and stored in RNAlater Ambion at 20 ºC. Tissue was lysed in QIAzol Lysis Reagent. A Qiagen TissueRuptor was used to cut up the tissue samples and RNA was extracted using the Qiagen miRNeasy Mini Kit according to the manufacturer's description Qiagen Benelux BV Venlo the Netherlands. RNA was eluted in 50 μl and quantified by Nanodrop Thermo Fisher Scientific Amsterdam the Netherlands. Integrity of the RNA was confirmed using an Agilent Bioanalyzer 2100 total RNA Nanoseries II chip Agilent Amstelveen Netherlands. Illumina RNAseq libraries were prepared from 1 μg total RNA using the Illumina TruSeq RNA Sample Prep Kit v2 according to the manufacturer's instructions Illumina San Diego CA USA. | GEO Accession:GSM3396892 | RNA-Seq | TRANSCRIPTOMIC | cDNA | SINGLE | ILLUMINA | Illumina HiSeq 2500 | SRP162257 | ZFG-15-20_09_14125_GAGTGG_L001_R1_001.fastq.gz | fastq | 276251241.0 | 5416691.0 | GSM3396892 r3 | 0:51 | A:65379164;C:68332333;G:65926683;T:76572534;N:40527 | 51 | 65379164 | 68332333 | 65926683 | 76572534 | 40527 | SRX4721392 | SRS3806480 | SRA780034 | GEO | ZF-screens BV | 1 | 0.96013 | 0.0352 | 0.82814 | 0.53974 | 51 | B | usable mapping rate | illumina | hiseq_era | unknown | cdna_unspecified | trueseq | bulk | unknown | unknown | Unknown | 2018-09-20 | Undetermined | Undetermined | Muscle | Muscular System | |||||||||||||||||||
| 49281 | 49281 | SRR7883092 | SRX4721392 | SRS3806480 | SRP162257 | PRJNA492308 | Cortisol acting through the glucocorticoid receptor is not responsible for exercise enhanced growth but does affect the white skeletal muscle transcriptome in zebrafish Danio rerio | GSE120253 | Transcriptome Analysis | Forced sustained swimming exercise at optimal speed enhances growth in many fish species particularly through hypertrophy of the white skeletal muscle. The exact mechanism of this effect has not been resolved yet. To explore the mechanism we first subjected wild type zebrafish to an exercise protocol validated for exercise enhanced growth and showed that exercised zebrafish which indeed showed enhanced growth had higher cortisol levels than the non exercised controls. A central role was therefore hypothesized for the steroid hormone cortisol acting through the Glucocorticoid receptor Gr. Second we subjected wild type zebrafish and zebrafish with a mutant Gr to exercise at optimal suboptimal and super optimal speeds and compared them with non exercised controls. Exercised zebrafish showed growth enhancement at all speeds with highest growth at optimal speeds. In the Gr mutant fish exercise resulted in growth enhancement similar to wild type zebrafish indicating that cortisol cannot be considered as a main determinant of exercise enhanced growth. Finally the transcriptome of white skeletal muscle tissue was analysed by RNA sequencing. The results of this analysis showed that in the muscle tissue of Gr mutant fish a lower number of genes is regulated by exercise than in wild type fish 183 versus 351. A cluster of 36 genes was regulated by exercise in both wild type and mutant fish. In this cluster genes involved in transcriptional regulation and protein ubiquitination were overrepresented. Since growth was enhanced similarly in both wild type fish and mutants these processes may play an important role in exercise enhanced growth. Overall design: Deep sequencing transcriptome analysis of white muscle samples derived from wild type ++ or glucocorticoid receptor Gr mutant Danio rerio specimens that were exposed to either a resting REST or a swimming UOPT regimen: wild type resting REST++; n=3 Gr mutant resting REST ; n=3 wild type swimming UOPT++; n=3 Gr mutant swimming UOPT ; n=3. | pubmed:30692930 | Wild type swimming UOPT++ sample 2 | GSM3396892 | source name:Wild type swimming UOPT++|biomaterial provider:[Origin of specimen] zebrafish facilities of the Institute of Biology Leiden Leiden The Netherlands|tissue:white muscle|genotype:Wild type|treatment:swimming|tissue:white muscle | Wild type swimming UOPT++ sample 2 | Illumina Casava software used for basecalling: SCS2.2.38/RTA1.18.61 Illumina reads were aligned against the zebrafish genome sequence GRCz10.80 using TopHat version 2.0.5 Trapnell et al. 2009 The resulting files were filtered using SAMtools version 0.1.18 Li et al. 2009 to exclude secondary alignment of reads Aligned fragments per predicted gene were counted from SAM alignment files using the Python package HTSeq version 0.5.3p9 Anders and Huber 2014 Differentially expressed genes were identified using DESeq Anders and Huber 2010 and data were further processed using Microsoft Excel Genome build: Danio rerio.GRCz10.80 Supplementary files format and content: UOPT++ versus REST++ DiffExpr.txt UOPT versus REST DiffExpr.txt REST versus REST++ DiffExpr.txt and UOPT versus UOPT++ DiffExpr.txt: Microsoft Office Excel file .txt with the following columns: ENSEMBL ID; Associated Gene Name; Description; 6x sample x; baseMean; baseMeanA; baseMeanB; foldChange; log2FoldChange; pval; padj | Wild type swimming UOPT++ | White muscle fillet was dissected dorsally from the lateral line in the epaxial quadrant along the whole length of the fish and stored in RNAlater Ambion at 20 ºC. Tissue was lysed in QIAzol Lysis Reagent. A Qiagen TissueRuptor was used to cut up the tissue samples and RNA was extracted using the Qiagen miRNeasy Mini Kit according to the manufacturer’s description Qiagen Benelux BV Venlo the Netherlands. RNA was eluted in 50 μl and quantified by Nanodrop Thermo Fisher Scientific Amsterdam the Netherlands. Integrity of the RNA was confirmed using an Agilent Bioanalyzer 2100 total RNA Nanoseries II chip Agilent Amstelveen Netherlands. Illumina RNAseq libraries were prepared from 1 μg total RNA using the Illumina TruSeq RNA Sample Prep Kit v2 according to the manufacturer’s instructions Illumina San Diego CA USA. | tissue:white muscle|genotype:Wild type|treatment:swimming|tissue:white muscle | GSM3396892 | GSM3396892: Wild type swimming UOPT++ sample 2; Danio rerio; RNA Seq | GSM3396892 | 1 | White muscle fillet was dissected dorsally from the lateral line in the epaxial quadrant along the whole length of the fish and stored in RNAlater Ambion at 20 ºC. Tissue was lysed in QIAzol Lysis Reagent. A Qiagen TissueRuptor was used to cut up the tissue samples and RNA was extracted using the Qiagen miRNeasy Mini Kit according to the manufacturer's description Qiagen Benelux BV Venlo the Netherlands. RNA was eluted in 50 μl and quantified by Nanodrop Thermo Fisher Scientific Amsterdam the Netherlands. Integrity of the RNA was confirmed using an Agilent Bioanalyzer 2100 total RNA Nanoseries II chip Agilent Amstelveen Netherlands. Illumina RNAseq libraries were prepared from 1 μg total RNA using the Illumina TruSeq RNA Sample Prep Kit v2 according to the manufacturer's instructions Illumina San Diego CA USA. | GEO Accession:GSM3396892 | RNA-Seq | TRANSCRIPTOMIC | cDNA | SINGLE | ILLUMINA | Illumina HiSeq 2500 | SRP162257 | ZFG-15-20_09_14125_GAGTGG_L002_R1_001.fastq.gz | fastq | 273560328.0 | 5363928.0 | GSM3396892 r4 | 0:51 | A:64737712;C:67666247;G:65306231;T:75803211;N:46927 | 51 | 64737712 | 67666247 | 65306231 | 75803211 | 46927 | SRX4721392 | SRS3806480 | SRA780034 | GEO | ZF-screens BV | 1 | 0.95941 | 0.03355 | 0.82745 | 0.54235 | 51 | B | usable mapping rate | illumina | hiseq_era | unknown | cdna_unspecified | trueseq | bulk | unknown | unknown | Unknown | 2018-09-20 | Undetermined | Undetermined | Muscle | Muscular System | |||||||||||||||||||
| 49282 | 49282 | SRR7883087 | SRX4721391 | SRS3806479 | SRP162257 | PRJNA492308 | Cortisol acting through the glucocorticoid receptor is not responsible for exercise enhanced growth but does affect the white skeletal muscle transcriptome in zebrafish Danio rerio | GSE120253 | Transcriptome Analysis | Forced sustained swimming exercise at optimal speed enhances growth in many fish species particularly through hypertrophy of the white skeletal muscle. The exact mechanism of this effect has not been resolved yet. To explore the mechanism we first subjected wild type zebrafish to an exercise protocol validated for exercise enhanced growth and showed that exercised zebrafish which indeed showed enhanced growth had higher cortisol levels than the non exercised controls. A central role was therefore hypothesized for the steroid hormone cortisol acting through the Glucocorticoid receptor Gr. Second we subjected wild type zebrafish and zebrafish with a mutant Gr to exercise at optimal suboptimal and super optimal speeds and compared them with non exercised controls. Exercised zebrafish showed growth enhancement at all speeds with highest growth at optimal speeds. In the Gr mutant fish exercise resulted in growth enhancement similar to wild type zebrafish indicating that cortisol cannot be considered as a main determinant of exercise enhanced growth. Finally the transcriptome of white skeletal muscle tissue was analysed by RNA sequencing. The results of this analysis showed that in the muscle tissue of Gr mutant fish a lower number of genes is regulated by exercise than in wild type fish 183 versus 351. A cluster of 36 genes was regulated by exercise in both wild type and mutant fish. In this cluster genes involved in transcriptional regulation and protein ubiquitination were overrepresented. Since growth was enhanced similarly in both wild type fish and mutants these processes may play an important role in exercise enhanced growth. Overall design: Deep sequencing transcriptome analysis of white muscle samples derived from wild type ++ or glucocorticoid receptor Gr mutant Danio rerio specimens that were exposed to either a resting REST or a swimming UOPT regimen: wild type resting REST++; n=3 Gr mutant resting REST ; n=3 wild type swimming UOPT++; n=3 Gr mutant swimming UOPT ; n=3. | pubmed:30692930 | Wild type swimming UOPT++ sample 1 | GSM3396891 | source name:Wild type swimming UOPT++|biomaterial provider:[Origin of specimen] zebrafish facilities of the Institute of Biology Leiden Leiden The Netherlands|tissue:white muscle|genotype:Wild type|treatment:swimming|tissue:white muscle | Wild type swimming UOPT++ sample 1 | Illumina Casava software used for basecalling: SCS2.2.38/RTA1.18.61 Illumina reads were aligned against the zebrafish genome sequence GRCz10.80 using TopHat version 2.0.5 Trapnell et al. 2009 The resulting files were filtered using SAMtools version 0.1.18 Li et al. 2009 to exclude secondary alignment of reads Aligned fragments per predicted gene were counted from SAM alignment files using the Python package HTSeq version 0.5.3p9 Anders and Huber 2014 Differentially expressed genes were identified using DESeq Anders and Huber 2010 and data were further processed using Microsoft Excel Genome build: Danio rerio.GRCz10.80 Supplementary files format and content: UOPT++ versus REST++ DiffExpr.txt UOPT versus REST DiffExpr.txt REST versus REST++ DiffExpr.txt and UOPT versus UOPT++ DiffExpr.txt: Microsoft Office Excel file .txt with the following columns: ENSEMBL ID; Associated Gene Name; Description; 6x sample x; baseMean; baseMeanA; baseMeanB; foldChange; log2FoldChange; pval; padj | Wild type swimming UOPT++ | White muscle fillet was dissected dorsally from the lateral line in the epaxial quadrant along the whole length of the fish and stored in RNAlater Ambion at 20 ºC. Tissue was lysed in QIAzol Lysis Reagent. A Qiagen TissueRuptor was used to cut up the tissue samples and RNA was extracted using the Qiagen miRNeasy Mini Kit according to the manufacturer’s description Qiagen Benelux BV Venlo the Netherlands. RNA was eluted in 50 μl and quantified by Nanodrop Thermo Fisher Scientific Amsterdam the Netherlands. Integrity of the RNA was confirmed using an Agilent Bioanalyzer 2100 total RNA Nanoseries II chip Agilent Amstelveen Netherlands. Illumina RNAseq libraries were prepared from 1 μg total RNA using the Illumina TruSeq RNA Sample Prep Kit v2 according to the manufacturer’s instructions Illumina San Diego CA USA. | tissue:white muscle|genotype:Wild type|treatment:swimming|tissue:white muscle | GSM3396891 | GSM3396891: Wild type swimming UOPT++ sample 1; Danio rerio; RNA Seq | GSM3396891 | 1 | White muscle fillet was dissected dorsally from the lateral line in the epaxial quadrant along the whole length of the fish and stored in RNAlater Ambion at 20 ºC. Tissue was lysed in QIAzol Lysis Reagent. A Qiagen TissueRuptor was used to cut up the tissue samples and RNA was extracted using the Qiagen miRNeasy Mini Kit according to the manufacturer's description Qiagen Benelux BV Venlo the Netherlands. RNA was eluted in 50 μl and quantified by Nanodrop Thermo Fisher Scientific Amsterdam the Netherlands. Integrity of the RNA was confirmed using an Agilent Bioanalyzer 2100 total RNA Nanoseries II chip Agilent Amstelveen Netherlands. Illumina RNAseq libraries were prepared from 1 μg total RNA using the Illumina TruSeq RNA Sample Prep Kit v2 according to the manufacturer's instructions Illumina San Diego CA USA. | GEO Accession:GSM3396891 | RNA-Seq | TRANSCRIPTOMIC | cDNA | SINGLE | ILLUMINA | Illumina HiSeq 2500 | SRP162257 | ZFG-15-20_08_14124_CGTACG_L001_R1_001.fastq.gz | fastq | 391510986.0 | 7676686.0 | GSM3396891 r1 | 0:51 | A:93242107;C:96684654;G:92114654;T:109292193;N:177378 | 51 | 93242107 | 96684654 | 92114654 | 109292193 | 177378 | SRX4721391 | SRS3806479 | SRA780034 | GEO | ZF-screens BV | 1 | 0.95344 | 0.05682 | 0.80612 | 0.46874 | 51 | B | usable mapping rate | illumina | hiseq_era | unknown | cdna_unspecified | trueseq | bulk | unknown | unknown | Unknown | 2018-09-20 | Undetermined | Undetermined | Muscle | Muscular System | |||||||||||||||||||
| 49283 | 49283 | SRR7883088 | SRX4721391 | SRS3806479 | SRP162257 | PRJNA492308 | Cortisol acting through the glucocorticoid receptor is not responsible for exercise enhanced growth but does affect the white skeletal muscle transcriptome in zebrafish Danio rerio | GSE120253 | Transcriptome Analysis | Forced sustained swimming exercise at optimal speed enhances growth in many fish species particularly through hypertrophy of the white skeletal muscle. The exact mechanism of this effect has not been resolved yet. To explore the mechanism we first subjected wild type zebrafish to an exercise protocol validated for exercise enhanced growth and showed that exercised zebrafish which indeed showed enhanced growth had higher cortisol levels than the non exercised controls. A central role was therefore hypothesized for the steroid hormone cortisol acting through the Glucocorticoid receptor Gr. Second we subjected wild type zebrafish and zebrafish with a mutant Gr to exercise at optimal suboptimal and super optimal speeds and compared them with non exercised controls. Exercised zebrafish showed growth enhancement at all speeds with highest growth at optimal speeds. In the Gr mutant fish exercise resulted in growth enhancement similar to wild type zebrafish indicating that cortisol cannot be considered as a main determinant of exercise enhanced growth. Finally the transcriptome of white skeletal muscle tissue was analysed by RNA sequencing. The results of this analysis showed that in the muscle tissue of Gr mutant fish a lower number of genes is regulated by exercise than in wild type fish 183 versus 351. A cluster of 36 genes was regulated by exercise in both wild type and mutant fish. In this cluster genes involved in transcriptional regulation and protein ubiquitination were overrepresented. Since growth was enhanced similarly in both wild type fish and mutants these processes may play an important role in exercise enhanced growth. Overall design: Deep sequencing transcriptome analysis of white muscle samples derived from wild type ++ or glucocorticoid receptor Gr mutant Danio rerio specimens that were exposed to either a resting REST or a swimming UOPT regimen: wild type resting REST++; n=3 Gr mutant resting REST ; n=3 wild type swimming UOPT++; n=3 Gr mutant swimming UOPT ; n=3. | pubmed:30692930 | Wild type swimming UOPT++ sample 1 | GSM3396891 | source name:Wild type swimming UOPT++|biomaterial provider:[Origin of specimen] zebrafish facilities of the Institute of Biology Leiden Leiden The Netherlands|tissue:white muscle|genotype:Wild type|treatment:swimming|tissue:white muscle | Wild type swimming UOPT++ sample 1 | Illumina Casava software used for basecalling: SCS2.2.38/RTA1.18.61 Illumina reads were aligned against the zebrafish genome sequence GRCz10.80 using TopHat version 2.0.5 Trapnell et al. 2009 The resulting files were filtered using SAMtools version 0.1.18 Li et al. 2009 to exclude secondary alignment of reads Aligned fragments per predicted gene were counted from SAM alignment files using the Python package HTSeq version 0.5.3p9 Anders and Huber 2014 Differentially expressed genes were identified using DESeq Anders and Huber 2010 and data were further processed using Microsoft Excel Genome build: Danio rerio.GRCz10.80 Supplementary files format and content: UOPT++ versus REST++ DiffExpr.txt UOPT versus REST DiffExpr.txt REST versus REST++ DiffExpr.txt and UOPT versus UOPT++ DiffExpr.txt: Microsoft Office Excel file .txt with the following columns: ENSEMBL ID; Associated Gene Name; Description; 6x sample x; baseMean; baseMeanA; baseMeanB; foldChange; log2FoldChange; pval; padj | Wild type swimming UOPT++ | White muscle fillet was dissected dorsally from the lateral line in the epaxial quadrant along the whole length of the fish and stored in RNAlater Ambion at 20 ºC. Tissue was lysed in QIAzol Lysis Reagent. A Qiagen TissueRuptor was used to cut up the tissue samples and RNA was extracted using the Qiagen miRNeasy Mini Kit according to the manufacturer’s description Qiagen Benelux BV Venlo the Netherlands. RNA was eluted in 50 μl and quantified by Nanodrop Thermo Fisher Scientific Amsterdam the Netherlands. Integrity of the RNA was confirmed using an Agilent Bioanalyzer 2100 total RNA Nanoseries II chip Agilent Amstelveen Netherlands. Illumina RNAseq libraries were prepared from 1 μg total RNA using the Illumina TruSeq RNA Sample Prep Kit v2 according to the manufacturer’s instructions Illumina San Diego CA USA. | tissue:white muscle|genotype:Wild type|treatment:swimming|tissue:white muscle | GSM3396891 | GSM3396891: Wild type swimming UOPT++ sample 1; Danio rerio; RNA Seq | GSM3396891 | 1 | White muscle fillet was dissected dorsally from the lateral line in the epaxial quadrant along the whole length of the fish and stored in RNAlater Ambion at 20 ºC. Tissue was lysed in QIAzol Lysis Reagent. A Qiagen TissueRuptor was used to cut up the tissue samples and RNA was extracted using the Qiagen miRNeasy Mini Kit according to the manufacturer's description Qiagen Benelux BV Venlo the Netherlands. RNA was eluted in 50 μl and quantified by Nanodrop Thermo Fisher Scientific Amsterdam the Netherlands. Integrity of the RNA was confirmed using an Agilent Bioanalyzer 2100 total RNA Nanoseries II chip Agilent Amstelveen Netherlands. Illumina RNAseq libraries were prepared from 1 μg total RNA using the Illumina TruSeq RNA Sample Prep Kit v2 according to the manufacturer's instructions Illumina San Diego CA USA. | GEO Accession:GSM3396891 | RNA-Seq | TRANSCRIPTOMIC | cDNA | SINGLE | ILLUMINA | Illumina HiSeq 2500 | SRP162257 | ZFG-15-20_08_14124_CGTACG_L002_R1_001.fastq.gz | fastq | 387065571.0 | 7589521.0 | GSM3396891 r2 | 0:51 | A:92211053;C:95616109;G:91125664;T:108078262;N:34483 | 51 | 92211053 | 95616109 | 91125664 | 108078262 | 34483 | SRX4721391 | SRS3806479 | SRA780034 | GEO | ZF-screens BV | 1 | 0.95555 | 0.05726 | 0.80655 | 0.50316 | 51 | B | usable mapping rate | illumina | hiseq_era | unknown | cdna_unspecified | trueseq | bulk | unknown | unknown | Unknown | 2018-09-20 | Undetermined | Undetermined | Muscle | Muscular System | |||||||||||||||||||
| 49284 | 49284 | SRR7883085 | SRX4721390 | SRS3806478 | SRP162257 | PRJNA492308 | Cortisol acting through the glucocorticoid receptor is not responsible for exercise enhanced growth but does affect the white skeletal muscle transcriptome in zebrafish Danio rerio | GSE120253 | Transcriptome Analysis | Forced sustained swimming exercise at optimal speed enhances growth in many fish species particularly through hypertrophy of the white skeletal muscle. The exact mechanism of this effect has not been resolved yet. To explore the mechanism we first subjected wild type zebrafish to an exercise protocol validated for exercise enhanced growth and showed that exercised zebrafish which indeed showed enhanced growth had higher cortisol levels than the non exercised controls. A central role was therefore hypothesized for the steroid hormone cortisol acting through the Glucocorticoid receptor Gr. Second we subjected wild type zebrafish and zebrafish with a mutant Gr to exercise at optimal suboptimal and super optimal speeds and compared them with non exercised controls. Exercised zebrafish showed growth enhancement at all speeds with highest growth at optimal speeds. In the Gr mutant fish exercise resulted in growth enhancement similar to wild type zebrafish indicating that cortisol cannot be considered as a main determinant of exercise enhanced growth. Finally the transcriptome of white skeletal muscle tissue was analysed by RNA sequencing. The results of this analysis showed that in the muscle tissue of Gr mutant fish a lower number of genes is regulated by exercise than in wild type fish 183 versus 351. A cluster of 36 genes was regulated by exercise in both wild type and mutant fish. In this cluster genes involved in transcriptional regulation and protein ubiquitination were overrepresented. Since growth was enhanced similarly in both wild type fish and mutants these processes may play an important role in exercise enhanced growth. Overall design: Deep sequencing transcriptome analysis of white muscle samples derived from wild type ++ or glucocorticoid receptor Gr mutant Danio rerio specimens that were exposed to either a resting REST or a swimming UOPT regimen: wild type resting REST++; n=3 Gr mutant resting REST ; n=3 wild type swimming UOPT++; n=3 Gr mutant swimming UOPT ; n=3. | pubmed:30692930 | Gr mutant resting REST sample 3 | GSM3396890 | source name:Gr mutant resting REST |biomaterial provider:[Origin of specimen] zebrafish facilities of the Institute of Biology Leiden Leiden The Netherlands|tissue:white muscle|genotype:Gr mutant|treatment:resting|tissue:white muscle | Gr mutant resting REST sample 3 | Illumina Casava software used for basecalling: SCS2.2.38/RTA1.18.61 Illumina reads were aligned against the zebrafish genome sequence GRCz10.80 using TopHat version 2.0.5 Trapnell et al. 2009 The resulting files were filtered using SAMtools version 0.1.18 Li et al. 2009 to exclude secondary alignment of reads Aligned fragments per predicted gene were counted from SAM alignment files using the Python package HTSeq version 0.5.3p9 Anders and Huber 2014 Differentially expressed genes were identified using DESeq Anders and Huber 2010 and data were further processed using Microsoft Excel Genome build: Danio rerio.GRCz10.80 Supplementary files format and content: UOPT++ versus REST++ DiffExpr.txt UOPT versus REST DiffExpr.txt REST versus REST++ DiffExpr.txt and UOPT versus UOPT++ DiffExpr.txt: Microsoft Office Excel file .txt with the following columns: ENSEMBL ID; Associated Gene Name; Description; 6x sample x; baseMean; baseMeanA; baseMeanB; foldChange; log2FoldChange; pval; padj | Gr mutant resting REST | White muscle fillet was dissected dorsally from the lateral line in the epaxial quadrant along the whole length of the fish and stored in RNAlater Ambion at 20 ºC. Tissue was lysed in QIAzol Lysis Reagent. A Qiagen TissueRuptor was used to cut up the tissue samples and RNA was extracted using the Qiagen miRNeasy Mini Kit according to the manufacturer’s description Qiagen Benelux BV Venlo the Netherlands. RNA was eluted in 50 μl and quantified by Nanodrop Thermo Fisher Scientific Amsterdam the Netherlands. Integrity of the RNA was confirmed using an Agilent Bioanalyzer 2100 total RNA Nanoseries II chip Agilent Amstelveen Netherlands. Illumina RNAseq libraries were prepared from 1 μg total RNA using the Illumina TruSeq RNA Sample Prep Kit v2 according to the manufacturer’s instructions Illumina San Diego CA USA. | tissue:white muscle|genotype:Gr mutant|treatment:resting|tissue:white muscle | GSM3396890 | GSM3396890: Gr mutant resting REST sample 3; Danio rerio; RNA Seq | GSM3396890 | 1 | White muscle fillet was dissected dorsally from the lateral line in the epaxial quadrant along the whole length of the fish and stored in RNAlater Ambion at 20 ºC. Tissue was lysed in QIAzol Lysis Reagent. A Qiagen TissueRuptor was used to cut up the tissue samples and RNA was extracted using the Qiagen miRNeasy Mini Kit according to the manufacturer's description Qiagen Benelux BV Venlo the Netherlands. RNA was eluted in 50 μl and quantified by Nanodrop Thermo Fisher Scientific Amsterdam the Netherlands. Integrity of the RNA was confirmed using an Agilent Bioanalyzer 2100 total RNA Nanoseries II chip Agilent Amstelveen Netherlands. Illumina RNAseq libraries were prepared from 1 μg total RNA using the Illumina TruSeq RNA Sample Prep Kit v2 according to the manufacturer's instructions Illumina San Diego CA USA. | GEO Accession:GSM3396890 | RNA-Seq | TRANSCRIPTOMIC | cDNA | SINGLE | ILLUMINA | Illumina HiSeq 2500 | SRP162257 | ZFG-15-20_06_14123_GTTTCG_L001_R1_001.fastq.gz | fastq | 402333798.0 | 7888898.0 | GSM3396890 r1 | 0:51 | A:93056953;C:102519574;G:95945518;T:110623659;N:188094 | 51 | 93056953 | 102519574 | 95945518 | 110623659 | 188094 | SRX4721390 | SRS3806478 | SRA780034 | GEO | ZF-screens BV | 1 | 0.96072 | 0.03044 | 0.83151 | 0.49904 | 51 | B | usable mapping rate | illumina | hiseq_era | unknown | cdna_unspecified | trueseq | bulk | unknown | unknown | Unknown | 2018-09-20 | Undetermined | Undetermined | Muscle | Muscular System | |||||||||||||||||||
| 49285 | 49285 | SRR7883086 | SRX4721390 | SRS3806478 | SRP162257 | PRJNA492308 | Cortisol acting through the glucocorticoid receptor is not responsible for exercise enhanced growth but does affect the white skeletal muscle transcriptome in zebrafish Danio rerio | GSE120253 | Transcriptome Analysis | Forced sustained swimming exercise at optimal speed enhances growth in many fish species particularly through hypertrophy of the white skeletal muscle. The exact mechanism of this effect has not been resolved yet. To explore the mechanism we first subjected wild type zebrafish to an exercise protocol validated for exercise enhanced growth and showed that exercised zebrafish which indeed showed enhanced growth had higher cortisol levels than the non exercised controls. A central role was therefore hypothesized for the steroid hormone cortisol acting through the Glucocorticoid receptor Gr. Second we subjected wild type zebrafish and zebrafish with a mutant Gr to exercise at optimal suboptimal and super optimal speeds and compared them with non exercised controls. Exercised zebrafish showed growth enhancement at all speeds with highest growth at optimal speeds. In the Gr mutant fish exercise resulted in growth enhancement similar to wild type zebrafish indicating that cortisol cannot be considered as a main determinant of exercise enhanced growth. Finally the transcriptome of white skeletal muscle tissue was analysed by RNA sequencing. The results of this analysis showed that in the muscle tissue of Gr mutant fish a lower number of genes is regulated by exercise than in wild type fish 183 versus 351. A cluster of 36 genes was regulated by exercise in both wild type and mutant fish. In this cluster genes involved in transcriptional regulation and protein ubiquitination were overrepresented. Since growth was enhanced similarly in both wild type fish and mutants these processes may play an important role in exercise enhanced growth. Overall design: Deep sequencing transcriptome analysis of white muscle samples derived from wild type ++ or glucocorticoid receptor Gr mutant Danio rerio specimens that were exposed to either a resting REST or a swimming UOPT regimen: wild type resting REST++; n=3 Gr mutant resting REST ; n=3 wild type swimming UOPT++; n=3 Gr mutant swimming UOPT ; n=3. | pubmed:30692930 | Gr mutant resting REST sample 3 | GSM3396890 | source name:Gr mutant resting REST |biomaterial provider:[Origin of specimen] zebrafish facilities of the Institute of Biology Leiden Leiden The Netherlands|tissue:white muscle|genotype:Gr mutant|treatment:resting|tissue:white muscle | Gr mutant resting REST sample 3 | Illumina Casava software used for basecalling: SCS2.2.38/RTA1.18.61 Illumina reads were aligned against the zebrafish genome sequence GRCz10.80 using TopHat version 2.0.5 Trapnell et al. 2009 The resulting files were filtered using SAMtools version 0.1.18 Li et al. 2009 to exclude secondary alignment of reads Aligned fragments per predicted gene were counted from SAM alignment files using the Python package HTSeq version 0.5.3p9 Anders and Huber 2014 Differentially expressed genes were identified using DESeq Anders and Huber 2010 and data were further processed using Microsoft Excel Genome build: Danio rerio.GRCz10.80 Supplementary files format and content: UOPT++ versus REST++ DiffExpr.txt UOPT versus REST DiffExpr.txt REST versus REST++ DiffExpr.txt and UOPT versus UOPT++ DiffExpr.txt: Microsoft Office Excel file .txt with the following columns: ENSEMBL ID; Associated Gene Name; Description; 6x sample x; baseMean; baseMeanA; baseMeanB; foldChange; log2FoldChange; pval; padj | Gr mutant resting REST | White muscle fillet was dissected dorsally from the lateral line in the epaxial quadrant along the whole length of the fish and stored in RNAlater Ambion at 20 ºC. Tissue was lysed in QIAzol Lysis Reagent. A Qiagen TissueRuptor was used to cut up the tissue samples and RNA was extracted using the Qiagen miRNeasy Mini Kit according to the manufacturer’s description Qiagen Benelux BV Venlo the Netherlands. RNA was eluted in 50 μl and quantified by Nanodrop Thermo Fisher Scientific Amsterdam the Netherlands. Integrity of the RNA was confirmed using an Agilent Bioanalyzer 2100 total RNA Nanoseries II chip Agilent Amstelveen Netherlands. Illumina RNAseq libraries were prepared from 1 μg total RNA using the Illumina TruSeq RNA Sample Prep Kit v2 according to the manufacturer’s instructions Illumina San Diego CA USA. | tissue:white muscle|genotype:Gr mutant|treatment:resting|tissue:white muscle | GSM3396890 | GSM3396890: Gr mutant resting REST sample 3; Danio rerio; RNA Seq | GSM3396890 | 1 | White muscle fillet was dissected dorsally from the lateral line in the epaxial quadrant along the whole length of the fish and stored in RNAlater Ambion at 20 ºC. Tissue was lysed in QIAzol Lysis Reagent. A Qiagen TissueRuptor was used to cut up the tissue samples and RNA was extracted using the Qiagen miRNeasy Mini Kit according to the manufacturer's description Qiagen Benelux BV Venlo the Netherlands. RNA was eluted in 50 μl and quantified by Nanodrop Thermo Fisher Scientific Amsterdam the Netherlands. Integrity of the RNA was confirmed using an Agilent Bioanalyzer 2100 total RNA Nanoseries II chip Agilent Amstelveen Netherlands. Illumina RNAseq libraries were prepared from 1 μg total RNA using the Illumina TruSeq RNA Sample Prep Kit v2 according to the manufacturer's instructions Illumina San Diego CA USA. | GEO Accession:GSM3396890 | RNA-Seq | TRANSCRIPTOMIC | cDNA | SINGLE | ILLUMINA | Illumina HiSeq 2500 | SRP162257 | ZFG-15-20_06_14123_GTTTCG_L002_R1_001.fastq.gz | fastq | 397844166.0 | 7800866.0 | GSM3396890 r2 | 0:51 | A:92045457;C:101410388;G:94956743;T:109396044;N:35534 | 51 | 92045457 | 101410388 | 94956743 | 109396044 | 35534 | SRX4721390 | SRS3806478 | SRA780034 | GEO | ZF-screens BV | 1 | 0.96026 | 0.03027 | 0.82994 | 0.49932 | 51 | B | usable mapping rate | illumina | hiseq_era | unknown | cdna_unspecified | trueseq | bulk | unknown | unknown | Unknown | 2018-09-20 | Undetermined | Undetermined | Muscle | Muscular System | |||||||||||||||||||
| 49286 | 49286 | SRR7883083 | SRX4721389 | SRS3806477 | SRP162257 | PRJNA492308 | Cortisol acting through the glucocorticoid receptor is not responsible for exercise enhanced growth but does affect the white skeletal muscle transcriptome in zebrafish Danio rerio | GSE120253 | Transcriptome Analysis | Forced sustained swimming exercise at optimal speed enhances growth in many fish species particularly through hypertrophy of the white skeletal muscle. The exact mechanism of this effect has not been resolved yet. To explore the mechanism we first subjected wild type zebrafish to an exercise protocol validated for exercise enhanced growth and showed that exercised zebrafish which indeed showed enhanced growth had higher cortisol levels than the non exercised controls. A central role was therefore hypothesized for the steroid hormone cortisol acting through the Glucocorticoid receptor Gr. Second we subjected wild type zebrafish and zebrafish with a mutant Gr to exercise at optimal suboptimal and super optimal speeds and compared them with non exercised controls. Exercised zebrafish showed growth enhancement at all speeds with highest growth at optimal speeds. In the Gr mutant fish exercise resulted in growth enhancement similar to wild type zebrafish indicating that cortisol cannot be considered as a main determinant of exercise enhanced growth. Finally the transcriptome of white skeletal muscle tissue was analysed by RNA sequencing. The results of this analysis showed that in the muscle tissue of Gr mutant fish a lower number of genes is regulated by exercise than in wild type fish 183 versus 351. A cluster of 36 genes was regulated by exercise in both wild type and mutant fish. In this cluster genes involved in transcriptional regulation and protein ubiquitination were overrepresented. Since growth was enhanced similarly in both wild type fish and mutants these processes may play an important role in exercise enhanced growth. Overall design: Deep sequencing transcriptome analysis of white muscle samples derived from wild type ++ or glucocorticoid receptor Gr mutant Danio rerio specimens that were exposed to either a resting REST or a swimming UOPT regimen: wild type resting REST++; n=3 Gr mutant resting REST ; n=3 wild type swimming UOPT++; n=3 Gr mutant swimming UOPT ; n=3. | pubmed:30692930 | Gr mutant resting REST sample 2 | GSM3396889 | source name:Gr mutant resting REST |biomaterial provider:[Origin of specimen] zebrafish facilities of the Institute of Biology Leiden Leiden The Netherlands|tissue:white muscle|genotype:Gr mutant|treatment:resting|tissue:white muscle | Gr mutant resting REST sample 2 | Illumina Casava software used for basecalling: SCS2.2.38/RTA1.18.61 Illumina reads were aligned against the zebrafish genome sequence GRCz10.80 using TopHat version 2.0.5 Trapnell et al. 2009 The resulting files were filtered using SAMtools version 0.1.18 Li et al. 2009 to exclude secondary alignment of reads Aligned fragments per predicted gene were counted from SAM alignment files using the Python package HTSeq version 0.5.3p9 Anders and Huber 2014 Differentially expressed genes were identified using DESeq Anders and Huber 2010 and data were further processed using Microsoft Excel Genome build: Danio rerio.GRCz10.80 Supplementary files format and content: UOPT++ versus REST++ DiffExpr.txt UOPT versus REST DiffExpr.txt REST versus REST++ DiffExpr.txt and UOPT versus UOPT++ DiffExpr.txt: Microsoft Office Excel file .txt with the following columns: ENSEMBL ID; Associated Gene Name; Description; 6x sample x; baseMean; baseMeanA; baseMeanB; foldChange; log2FoldChange; pval; padj | Gr mutant resting REST | White muscle fillet was dissected dorsally from the lateral line in the epaxial quadrant along the whole length of the fish and stored in RNAlater Ambion at 20 ºC. Tissue was lysed in QIAzol Lysis Reagent. A Qiagen TissueRuptor was used to cut up the tissue samples and RNA was extracted using the Qiagen miRNeasy Mini Kit according to the manufacturer’s description Qiagen Benelux BV Venlo the Netherlands. RNA was eluted in 50 μl and quantified by Nanodrop Thermo Fisher Scientific Amsterdam the Netherlands. Integrity of the RNA was confirmed using an Agilent Bioanalyzer 2100 total RNA Nanoseries II chip Agilent Amstelveen Netherlands. Illumina RNAseq libraries were prepared from 1 μg total RNA using the Illumina TruSeq RNA Sample Prep Kit v2 according to the manufacturer’s instructions Illumina San Diego CA USA. | tissue:white muscle|genotype:Gr mutant|treatment:resting|tissue:white muscle | GSM3396889 | GSM3396889: Gr mutant resting REST sample 2; Danio rerio; RNA Seq | GSM3396889 | 1 | White muscle fillet was dissected dorsally from the lateral line in the epaxial quadrant along the whole length of the fish and stored in RNAlater Ambion at 20 ºC. Tissue was lysed in QIAzol Lysis Reagent. A Qiagen TissueRuptor was used to cut up the tissue samples and RNA was extracted using the Qiagen miRNeasy Mini Kit according to the manufacturer's description Qiagen Benelux BV Venlo the Netherlands. RNA was eluted in 50 μl and quantified by Nanodrop Thermo Fisher Scientific Amsterdam the Netherlands. Integrity of the RNA was confirmed using an Agilent Bioanalyzer 2100 total RNA Nanoseries II chip Agilent Amstelveen Netherlands. Illumina RNAseq libraries were prepared from 1 μg total RNA using the Illumina TruSeq RNA Sample Prep Kit v2 according to the manufacturer's instructions Illumina San Diego CA USA. | GEO Accession:GSM3396889 | RNA-Seq | TRANSCRIPTOMIC | cDNA | SINGLE | ILLUMINA | Illumina HiSeq 2500 | SRP162257 | ZFG-15-20_05_14122_GTGGCC_L001_R1_001.fastq.gz | fastq | 415265307.0 | 8142457.0 | GSM3396889 r1 | 0:51 | A:96524820;C:105111599;G:96647633;T:116788874;N:192381 | 51 | 96524820 | 105111599 | 96647633 | 116788874 | 192381 | SRX4721389 | SRS3806477 | SRA780034 | GEO | ZF-screens BV | 1 | 0.95102 | 0.04156 | 0.79164 | 0.52657 | 51 | B | usable mapping rate | illumina | hiseq_era | unknown | cdna_unspecified | trueseq | bulk | unknown | unknown | Unknown | 2018-09-20 | Undetermined | Undetermined | Muscle | Muscular System | |||||||||||||||||||
| 49287 | 49287 | SRR7883084 | SRX4721389 | SRS3806477 | SRP162257 | PRJNA492308 | Cortisol acting through the glucocorticoid receptor is not responsible for exercise enhanced growth but does affect the white skeletal muscle transcriptome in zebrafish Danio rerio | GSE120253 | Transcriptome Analysis | Forced sustained swimming exercise at optimal speed enhances growth in many fish species particularly through hypertrophy of the white skeletal muscle. The exact mechanism of this effect has not been resolved yet. To explore the mechanism we first subjected wild type zebrafish to an exercise protocol validated for exercise enhanced growth and showed that exercised zebrafish which indeed showed enhanced growth had higher cortisol levels than the non exercised controls. A central role was therefore hypothesized for the steroid hormone cortisol acting through the Glucocorticoid receptor Gr. Second we subjected wild type zebrafish and zebrafish with a mutant Gr to exercise at optimal suboptimal and super optimal speeds and compared them with non exercised controls. Exercised zebrafish showed growth enhancement at all speeds with highest growth at optimal speeds. In the Gr mutant fish exercise resulted in growth enhancement similar to wild type zebrafish indicating that cortisol cannot be considered as a main determinant of exercise enhanced growth. Finally the transcriptome of white skeletal muscle tissue was analysed by RNA sequencing. The results of this analysis showed that in the muscle tissue of Gr mutant fish a lower number of genes is regulated by exercise than in wild type fish 183 versus 351. A cluster of 36 genes was regulated by exercise in both wild type and mutant fish. In this cluster genes involved in transcriptional regulation and protein ubiquitination were overrepresented. Since growth was enhanced similarly in both wild type fish and mutants these processes may play an important role in exercise enhanced growth. Overall design: Deep sequencing transcriptome analysis of white muscle samples derived from wild type ++ or glucocorticoid receptor Gr mutant Danio rerio specimens that were exposed to either a resting REST or a swimming UOPT regimen: wild type resting REST++; n=3 Gr mutant resting REST ; n=3 wild type swimming UOPT++; n=3 Gr mutant swimming UOPT ; n=3. | pubmed:30692930 | Gr mutant resting REST sample 2 | GSM3396889 | source name:Gr mutant resting REST |biomaterial provider:[Origin of specimen] zebrafish facilities of the Institute of Biology Leiden Leiden The Netherlands|tissue:white muscle|genotype:Gr mutant|treatment:resting|tissue:white muscle | Gr mutant resting REST sample 2 | Illumina Casava software used for basecalling: SCS2.2.38/RTA1.18.61 Illumina reads were aligned against the zebrafish genome sequence GRCz10.80 using TopHat version 2.0.5 Trapnell et al. 2009 The resulting files were filtered using SAMtools version 0.1.18 Li et al. 2009 to exclude secondary alignment of reads Aligned fragments per predicted gene were counted from SAM alignment files using the Python package HTSeq version 0.5.3p9 Anders and Huber 2014 Differentially expressed genes were identified using DESeq Anders and Huber 2010 and data were further processed using Microsoft Excel Genome build: Danio rerio.GRCz10.80 Supplementary files format and content: UOPT++ versus REST++ DiffExpr.txt UOPT versus REST DiffExpr.txt REST versus REST++ DiffExpr.txt and UOPT versus UOPT++ DiffExpr.txt: Microsoft Office Excel file .txt with the following columns: ENSEMBL ID; Associated Gene Name; Description; 6x sample x; baseMean; baseMeanA; baseMeanB; foldChange; log2FoldChange; pval; padj | Gr mutant resting REST | White muscle fillet was dissected dorsally from the lateral line in the epaxial quadrant along the whole length of the fish and stored in RNAlater Ambion at 20 ºC. Tissue was lysed in QIAzol Lysis Reagent. A Qiagen TissueRuptor was used to cut up the tissue samples and RNA was extracted using the Qiagen miRNeasy Mini Kit according to the manufacturer’s description Qiagen Benelux BV Venlo the Netherlands. RNA was eluted in 50 μl and quantified by Nanodrop Thermo Fisher Scientific Amsterdam the Netherlands. Integrity of the RNA was confirmed using an Agilent Bioanalyzer 2100 total RNA Nanoseries II chip Agilent Amstelveen Netherlands. Illumina RNAseq libraries were prepared from 1 μg total RNA using the Illumina TruSeq RNA Sample Prep Kit v2 according to the manufacturer’s instructions Illumina San Diego CA USA. | tissue:white muscle|genotype:Gr mutant|treatment:resting|tissue:white muscle | GSM3396889 | GSM3396889: Gr mutant resting REST sample 2; Danio rerio; RNA Seq | GSM3396889 | 1 | White muscle fillet was dissected dorsally from the lateral line in the epaxial quadrant along the whole length of the fish and stored in RNAlater Ambion at 20 ºC. Tissue was lysed in QIAzol Lysis Reagent. A Qiagen TissueRuptor was used to cut up the tissue samples and RNA was extracted using the Qiagen miRNeasy Mini Kit according to the manufacturer's description Qiagen Benelux BV Venlo the Netherlands. RNA was eluted in 50 μl and quantified by Nanodrop Thermo Fisher Scientific Amsterdam the Netherlands. Integrity of the RNA was confirmed using an Agilent Bioanalyzer 2100 total RNA Nanoseries II chip Agilent Amstelveen Netherlands. Illumina RNAseq libraries were prepared from 1 μg total RNA using the Illumina TruSeq RNA Sample Prep Kit v2 according to the manufacturer's instructions Illumina San Diego CA USA. | GEO Accession:GSM3396889 | RNA-Seq | TRANSCRIPTOMIC | cDNA | SINGLE | ILLUMINA | Illumina HiSeq 2500 | SRP162257 | ZFG-15-20_05_14122_GTGGCC_L002_R1_001.fastq.gz | fastq | 410798625.0 | 8054875.0 | GSM3396889 r2 | 0:51 | A:95514290;C:104001536;G:95684811;T:115561454;N:36534 | 51 | 95514290 | 104001536 | 95684811 | 115561454 | 36534 | SRX4721389 | SRS3806477 | SRA780034 | GEO | ZF-screens BV | 1 | 0.95117 | 0.04146 | 0.79032 | 0.51379 | 51 | B | usable mapping rate | illumina | hiseq_era | unknown | cdna_unspecified | trueseq | bulk | unknown | unknown | Unknown | 2018-09-20 | Undetermined | Undetermined | Muscle | Muscular System | |||||||||||||||||||
| 49288 | 49288 | SRR7883081 | SRX4721388 | SRS3806476 | SRP162257 | PRJNA492308 | Cortisol acting through the glucocorticoid receptor is not responsible for exercise enhanced growth but does affect the white skeletal muscle transcriptome in zebrafish Danio rerio | GSE120253 | Transcriptome Analysis | Forced sustained swimming exercise at optimal speed enhances growth in many fish species particularly through hypertrophy of the white skeletal muscle. The exact mechanism of this effect has not been resolved yet. To explore the mechanism we first subjected wild type zebrafish to an exercise protocol validated for exercise enhanced growth and showed that exercised zebrafish which indeed showed enhanced growth had higher cortisol levels than the non exercised controls. A central role was therefore hypothesized for the steroid hormone cortisol acting through the Glucocorticoid receptor Gr. Second we subjected wild type zebrafish and zebrafish with a mutant Gr to exercise at optimal suboptimal and super optimal speeds and compared them with non exercised controls. Exercised zebrafish showed growth enhancement at all speeds with highest growth at optimal speeds. In the Gr mutant fish exercise resulted in growth enhancement similar to wild type zebrafish indicating that cortisol cannot be considered as a main determinant of exercise enhanced growth. Finally the transcriptome of white skeletal muscle tissue was analysed by RNA sequencing. The results of this analysis showed that in the muscle tissue of Gr mutant fish a lower number of genes is regulated by exercise than in wild type fish 183 versus 351. A cluster of 36 genes was regulated by exercise in both wild type and mutant fish. In this cluster genes involved in transcriptional regulation and protein ubiquitination were overrepresented. Since growth was enhanced similarly in both wild type fish and mutants these processes may play an important role in exercise enhanced growth. Overall design: Deep sequencing transcriptome analysis of white muscle samples derived from wild type ++ or glucocorticoid receptor Gr mutant Danio rerio specimens that were exposed to either a resting REST or a swimming UOPT regimen: wild type resting REST++; n=3 Gr mutant resting REST ; n=3 wild type swimming UOPT++; n=3 Gr mutant swimming UOPT ; n=3. | pubmed:30692930 | Gr mutant resting REST sample 1 | GSM3396888 | source name:Gr mutant resting REST |biomaterial provider:[Origin of specimen] zebrafish facilities of the Institute of Biology Leiden Leiden The Netherlands|tissue:white muscle|genotype:Gr mutant|treatment:resting|tissue:white muscle | Gr mutant resting REST sample 1 | Illumina Casava software used for basecalling: SCS2.2.38/RTA1.18.61 Illumina reads were aligned against the zebrafish genome sequence GRCz10.80 using TopHat version 2.0.5 Trapnell et al. 2009 The resulting files were filtered using SAMtools version 0.1.18 Li et al. 2009 to exclude secondary alignment of reads Aligned fragments per predicted gene were counted from SAM alignment files using the Python package HTSeq version 0.5.3p9 Anders and Huber 2014 Differentially expressed genes were identified using DESeq Anders and Huber 2010 and data were further processed using Microsoft Excel Genome build: Danio rerio.GRCz10.80 Supplementary files format and content: UOPT++ versus REST++ DiffExpr.txt UOPT versus REST DiffExpr.txt REST versus REST++ DiffExpr.txt and UOPT versus UOPT++ DiffExpr.txt: Microsoft Office Excel file .txt with the following columns: ENSEMBL ID; Associated Gene Name; Description; 6x sample x; baseMean; baseMeanA; baseMeanB; foldChange; log2FoldChange; pval; padj | Gr mutant resting REST | White muscle fillet was dissected dorsally from the lateral line in the epaxial quadrant along the whole length of the fish and stored in RNAlater Ambion at 20 ºC. Tissue was lysed in QIAzol Lysis Reagent. A Qiagen TissueRuptor was used to cut up the tissue samples and RNA was extracted using the Qiagen miRNeasy Mini Kit according to the manufacturer’s description Qiagen Benelux BV Venlo the Netherlands. RNA was eluted in 50 μl and quantified by Nanodrop Thermo Fisher Scientific Amsterdam the Netherlands. Integrity of the RNA was confirmed using an Agilent Bioanalyzer 2100 total RNA Nanoseries II chip Agilent Amstelveen Netherlands. Illumina RNAseq libraries were prepared from 1 μg total RNA using the Illumina TruSeq RNA Sample Prep Kit v2 according to the manufacturer’s instructions Illumina San Diego CA USA. | tissue:white muscle|genotype:Gr mutant|treatment:resting|tissue:white muscle | GSM3396888 | GSM3396888: Gr mutant resting REST sample 1; Danio rerio; RNA Seq | GSM3396888 | 1 | White muscle fillet was dissected dorsally from the lateral line in the epaxial quadrant along the whole length of the fish and stored in RNAlater Ambion at 20 ºC. Tissue was lysed in QIAzol Lysis Reagent. A Qiagen TissueRuptor was used to cut up the tissue samples and RNA was extracted using the Qiagen miRNeasy Mini Kit according to the manufacturer's description Qiagen Benelux BV Venlo the Netherlands. RNA was eluted in 50 μl and quantified by Nanodrop Thermo Fisher Scientific Amsterdam the Netherlands. Integrity of the RNA was confirmed using an Agilent Bioanalyzer 2100 total RNA Nanoseries II chip Agilent Amstelveen Netherlands. Illumina RNAseq libraries were prepared from 1 μg total RNA using the Illumina TruSeq RNA Sample Prep Kit v2 according to the manufacturer's instructions Illumina San Diego CA USA. | GEO Accession:GSM3396888 | RNA-Seq | TRANSCRIPTOMIC | cDNA | SINGLE | ILLUMINA | Illumina HiSeq 2500 | SRP162257 | ZFG-15-20_04_14121_GGCTAC_L001_R1_001.fastq.gz | fastq | 356273607.0 | 6985757.0 | GSM3396888 r1 | 0:51 | A:83067213;C:89144746;G:86927052;T:96973321;N:161275 | 51 | 83067213 | 89144746 | 86927052 | 96973321 | 161275 | SRX4721388 | SRS3806476 | SRA780034 | GEO | ZF-screens BV | 1 | 0.9514 | 0.03636 | 0.78064 | 0.49277 | 51 | B | usable mapping rate | illumina | hiseq_era | unknown | cdna_unspecified | trueseq | bulk | unknown | unknown | Unknown | 2018-09-20 | Undetermined | Undetermined | Muscle | Muscular System | |||||||||||||||||||
| 49289 | 49289 | SRR7883082 | SRX4721388 | SRS3806476 | SRP162257 | PRJNA492308 | Cortisol acting through the glucocorticoid receptor is not responsible for exercise enhanced growth but does affect the white skeletal muscle transcriptome in zebrafish Danio rerio | GSE120253 | Transcriptome Analysis | Forced sustained swimming exercise at optimal speed enhances growth in many fish species particularly through hypertrophy of the white skeletal muscle. The exact mechanism of this effect has not been resolved yet. To explore the mechanism we first subjected wild type zebrafish to an exercise protocol validated for exercise enhanced growth and showed that exercised zebrafish which indeed showed enhanced growth had higher cortisol levels than the non exercised controls. A central role was therefore hypothesized for the steroid hormone cortisol acting through the Glucocorticoid receptor Gr. Second we subjected wild type zebrafish and zebrafish with a mutant Gr to exercise at optimal suboptimal and super optimal speeds and compared them with non exercised controls. Exercised zebrafish showed growth enhancement at all speeds with highest growth at optimal speeds. In the Gr mutant fish exercise resulted in growth enhancement similar to wild type zebrafish indicating that cortisol cannot be considered as a main determinant of exercise enhanced growth. Finally the transcriptome of white skeletal muscle tissue was analysed by RNA sequencing. The results of this analysis showed that in the muscle tissue of Gr mutant fish a lower number of genes is regulated by exercise than in wild type fish 183 versus 351. A cluster of 36 genes was regulated by exercise in both wild type and mutant fish. In this cluster genes involved in transcriptional regulation and protein ubiquitination were overrepresented. Since growth was enhanced similarly in both wild type fish and mutants these processes may play an important role in exercise enhanced growth. Overall design: Deep sequencing transcriptome analysis of white muscle samples derived from wild type ++ or glucocorticoid receptor Gr mutant Danio rerio specimens that were exposed to either a resting REST or a swimming UOPT regimen: wild type resting REST++; n=3 Gr mutant resting REST ; n=3 wild type swimming UOPT++; n=3 Gr mutant swimming UOPT ; n=3. | pubmed:30692930 | Gr mutant resting REST sample 1 | GSM3396888 | source name:Gr mutant resting REST |biomaterial provider:[Origin of specimen] zebrafish facilities of the Institute of Biology Leiden Leiden The Netherlands|tissue:white muscle|genotype:Gr mutant|treatment:resting|tissue:white muscle | Gr mutant resting REST sample 1 | Illumina Casava software used for basecalling: SCS2.2.38/RTA1.18.61 Illumina reads were aligned against the zebrafish genome sequence GRCz10.80 using TopHat version 2.0.5 Trapnell et al. 2009 The resulting files were filtered using SAMtools version 0.1.18 Li et al. 2009 to exclude secondary alignment of reads Aligned fragments per predicted gene were counted from SAM alignment files using the Python package HTSeq version 0.5.3p9 Anders and Huber 2014 Differentially expressed genes were identified using DESeq Anders and Huber 2010 and data were further processed using Microsoft Excel Genome build: Danio rerio.GRCz10.80 Supplementary files format and content: UOPT++ versus REST++ DiffExpr.txt UOPT versus REST DiffExpr.txt REST versus REST++ DiffExpr.txt and UOPT versus UOPT++ DiffExpr.txt: Microsoft Office Excel file .txt with the following columns: ENSEMBL ID; Associated Gene Name; Description; 6x sample x; baseMean; baseMeanA; baseMeanB; foldChange; log2FoldChange; pval; padj | Gr mutant resting REST | White muscle fillet was dissected dorsally from the lateral line in the epaxial quadrant along the whole length of the fish and stored in RNAlater Ambion at 20 ºC. Tissue was lysed in QIAzol Lysis Reagent. A Qiagen TissueRuptor was used to cut up the tissue samples and RNA was extracted using the Qiagen miRNeasy Mini Kit according to the manufacturer’s description Qiagen Benelux BV Venlo the Netherlands. RNA was eluted in 50 μl and quantified by Nanodrop Thermo Fisher Scientific Amsterdam the Netherlands. Integrity of the RNA was confirmed using an Agilent Bioanalyzer 2100 total RNA Nanoseries II chip Agilent Amstelveen Netherlands. Illumina RNAseq libraries were prepared from 1 μg total RNA using the Illumina TruSeq RNA Sample Prep Kit v2 according to the manufacturer’s instructions Illumina San Diego CA USA. | tissue:white muscle|genotype:Gr mutant|treatment:resting|tissue:white muscle | GSM3396888 | GSM3396888: Gr mutant resting REST sample 1; Danio rerio; RNA Seq | GSM3396888 | 1 | White muscle fillet was dissected dorsally from the lateral line in the epaxial quadrant along the whole length of the fish and stored in RNAlater Ambion at 20 ºC. Tissue was lysed in QIAzol Lysis Reagent. A Qiagen TissueRuptor was used to cut up the tissue samples and RNA was extracted using the Qiagen miRNeasy Mini Kit according to the manufacturer's description Qiagen Benelux BV Venlo the Netherlands. RNA was eluted in 50 μl and quantified by Nanodrop Thermo Fisher Scientific Amsterdam the Netherlands. Integrity of the RNA was confirmed using an Agilent Bioanalyzer 2100 total RNA Nanoseries II chip Agilent Amstelveen Netherlands. Illumina RNAseq libraries were prepared from 1 μg total RNA using the Illumina TruSeq RNA Sample Prep Kit v2 according to the manufacturer's instructions Illumina San Diego CA USA. | GEO Accession:GSM3396888 | RNA-Seq | TRANSCRIPTOMIC | cDNA | SINGLE | ILLUMINA | Illumina HiSeq 2500 | SRP162257 | ZFG-15-20_04_14121_GGCTAC_L002_R1_001.fastq.gz | fastq | 353427042.0 | 6929942.0 | GSM3396888 r2 | 0:51 | A:82429330;C:88444066;G:86279627;T:96242734;N:31285 | 51 | 82429330 | 88444066 | 86279627 | 96242734 | 31285 | SRX4721388 | SRS3806476 | SRA780034 | GEO | ZF-screens BV | 1 | 0.95127 | 0.03685 | 0.78125 | 0.49716 | 51 | B | usable mapping rate | illumina | hiseq_era | unknown | cdna_unspecified | trueseq | bulk | unknown | unknown | Unknown | 2018-09-20 | Undetermined | Undetermined | Muscle | Muscular System | |||||||||||||||||||
| 49290 | 49290 | SRR7883079 | SRX4721387 | SRS3806475 | SRP162257 | PRJNA492308 | Cortisol acting through the glucocorticoid receptor is not responsible for exercise enhanced growth but does affect the white skeletal muscle transcriptome in zebrafish Danio rerio | GSE120253 | Transcriptome Analysis | Forced sustained swimming exercise at optimal speed enhances growth in many fish species particularly through hypertrophy of the white skeletal muscle. The exact mechanism of this effect has not been resolved yet. To explore the mechanism we first subjected wild type zebrafish to an exercise protocol validated for exercise enhanced growth and showed that exercised zebrafish which indeed showed enhanced growth had higher cortisol levels than the non exercised controls. A central role was therefore hypothesized for the steroid hormone cortisol acting through the Glucocorticoid receptor Gr. Second we subjected wild type zebrafish and zebrafish with a mutant Gr to exercise at optimal suboptimal and super optimal speeds and compared them with non exercised controls. Exercised zebrafish showed growth enhancement at all speeds with highest growth at optimal speeds. In the Gr mutant fish exercise resulted in growth enhancement similar to wild type zebrafish indicating that cortisol cannot be considered as a main determinant of exercise enhanced growth. Finally the transcriptome of white skeletal muscle tissue was analysed by RNA sequencing. The results of this analysis showed that in the muscle tissue of Gr mutant fish a lower number of genes is regulated by exercise than in wild type fish 183 versus 351. A cluster of 36 genes was regulated by exercise in both wild type and mutant fish. In this cluster genes involved in transcriptional regulation and protein ubiquitination were overrepresented. Since growth was enhanced similarly in both wild type fish and mutants these processes may play an important role in exercise enhanced growth. Overall design: Deep sequencing transcriptome analysis of white muscle samples derived from wild type ++ or glucocorticoid receptor Gr mutant Danio rerio specimens that were exposed to either a resting REST or a swimming UOPT regimen: wild type resting REST++; n=3 Gr mutant resting REST ; n=3 wild type swimming UOPT++; n=3 Gr mutant swimming UOPT ; n=3. | pubmed:30692930 | Wild type resting REST++ sample 3 | GSM3396887 | source name:Wild type resting REST++|biomaterial provider:[Origin of specimen] zebrafish facilities of the Institute of Biology Leiden Leiden The Netherlands|tissue:white muscle|genotype:Wild type|treatment:resting|tissue:white muscle | Wild type resting REST++ sample 3 | Illumina Casava software used for basecalling: SCS2.2.38/RTA1.18.61 Illumina reads were aligned against the zebrafish genome sequence GRCz10.80 using TopHat version 2.0.5 Trapnell et al. 2009 The resulting files were filtered using SAMtools version 0.1.18 Li et al. 2009 to exclude secondary alignment of reads Aligned fragments per predicted gene were counted from SAM alignment files using the Python package HTSeq version 0.5.3p9 Anders and Huber 2014 Differentially expressed genes were identified using DESeq Anders and Huber 2010 and data were further processed using Microsoft Excel Genome build: Danio rerio.GRCz10.80 Supplementary files format and content: UOPT++ versus REST++ DiffExpr.txt UOPT versus REST DiffExpr.txt REST versus REST++ DiffExpr.txt and UOPT versus UOPT++ DiffExpr.txt: Microsoft Office Excel file .txt with the following columns: ENSEMBL ID; Associated Gene Name; Description; 6x sample x; baseMean; baseMeanA; baseMeanB; foldChange; log2FoldChange; pval; padj | Wild type resting REST++ | White muscle fillet was dissected dorsally from the lateral line in the epaxial quadrant along the whole length of the fish and stored in RNAlater Ambion at 20 ºC. Tissue was lysed in QIAzol Lysis Reagent. A Qiagen TissueRuptor was used to cut up the tissue samples and RNA was extracted using the Qiagen miRNeasy Mini Kit according to the manufacturer’s description Qiagen Benelux BV Venlo the Netherlands. RNA was eluted in 50 μl and quantified by Nanodrop Thermo Fisher Scientific Amsterdam the Netherlands. Integrity of the RNA was confirmed using an Agilent Bioanalyzer 2100 total RNA Nanoseries II chip Agilent Amstelveen Netherlands. Illumina RNAseq libraries were prepared from 1 μg total RNA using the Illumina TruSeq RNA Sample Prep Kit v2 according to the manufacturer’s instructions Illumina San Diego CA USA. | tissue:white muscle|genotype:Wild type|treatment:resting|tissue:white muscle | GSM3396887 | GSM3396887: Wild type resting REST++ sample 3; Danio rerio; RNA Seq | GSM3396887 | 1 | White muscle fillet was dissected dorsally from the lateral line in the epaxial quadrant along the whole length of the fish and stored in RNAlater Ambion at 20 ºC. Tissue was lysed in QIAzol Lysis Reagent. A Qiagen TissueRuptor was used to cut up the tissue samples and RNA was extracted using the Qiagen miRNeasy Mini Kit according to the manufacturer's description Qiagen Benelux BV Venlo the Netherlands. RNA was eluted in 50 μl and quantified by Nanodrop Thermo Fisher Scientific Amsterdam the Netherlands. Integrity of the RNA was confirmed using an Agilent Bioanalyzer 2100 total RNA Nanoseries II chip Agilent Amstelveen Netherlands. Illumina RNAseq libraries were prepared from 1 μg total RNA using the Illumina TruSeq RNA Sample Prep Kit v2 according to the manufacturer's instructions Illumina San Diego CA USA. | GEO Accession:GSM3396887 | RNA-Seq | TRANSCRIPTOMIC | cDNA | SINGLE | ILLUMINA | Illumina HiSeq 2500 | SRP162257 | ZFG-15-20_03_14120_TAGCTT_L001_R1_001.fastq.gz | fastq | 407925846.0 | 7998546.0 | GSM3396887 r1 | 0:51 | A:95664418;C:101106745;G:99163612;T:111801493;N:189578 | 51 | 95664418 | 101106745 | 99163612 | 111801493 | 189578 | SRX4721387 | SRS3806475 | SRA780034 | GEO | ZF-screens BV | 1 | 0.95163 | 0.03911 | 0.80308 | 0.47176 | 51 | B | usable mapping rate | illumina | hiseq_era | unknown | cdna_unspecified | trueseq | bulk | unknown | unknown | Unknown | 2018-09-20 | Undetermined | Undetermined | Muscle | Muscular System | |||||||||||||||||||
| 49291 | 49291 | SRR7883080 | SRX4721387 | SRS3806475 | SRP162257 | PRJNA492308 | Cortisol acting through the glucocorticoid receptor is not responsible for exercise enhanced growth but does affect the white skeletal muscle transcriptome in zebrafish Danio rerio | GSE120253 | Transcriptome Analysis | Forced sustained swimming exercise at optimal speed enhances growth in many fish species particularly through hypertrophy of the white skeletal muscle. The exact mechanism of this effect has not been resolved yet. To explore the mechanism we first subjected wild type zebrafish to an exercise protocol validated for exercise enhanced growth and showed that exercised zebrafish which indeed showed enhanced growth had higher cortisol levels than the non exercised controls. A central role was therefore hypothesized for the steroid hormone cortisol acting through the Glucocorticoid receptor Gr. Second we subjected wild type zebrafish and zebrafish with a mutant Gr to exercise at optimal suboptimal and super optimal speeds and compared them with non exercised controls. Exercised zebrafish showed growth enhancement at all speeds with highest growth at optimal speeds. In the Gr mutant fish exercise resulted in growth enhancement similar to wild type zebrafish indicating that cortisol cannot be considered as a main determinant of exercise enhanced growth. Finally the transcriptome of white skeletal muscle tissue was analysed by RNA sequencing. The results of this analysis showed that in the muscle tissue of Gr mutant fish a lower number of genes is regulated by exercise than in wild type fish 183 versus 351. A cluster of 36 genes was regulated by exercise in both wild type and mutant fish. In this cluster genes involved in transcriptional regulation and protein ubiquitination were overrepresented. Since growth was enhanced similarly in both wild type fish and mutants these processes may play an important role in exercise enhanced growth. Overall design: Deep sequencing transcriptome analysis of white muscle samples derived from wild type ++ or glucocorticoid receptor Gr mutant Danio rerio specimens that were exposed to either a resting REST or a swimming UOPT regimen: wild type resting REST++; n=3 Gr mutant resting REST ; n=3 wild type swimming UOPT++; n=3 Gr mutant swimming UOPT ; n=3. | pubmed:30692930 | Wild type resting REST++ sample 3 | GSM3396887 | source name:Wild type resting REST++|biomaterial provider:[Origin of specimen] zebrafish facilities of the Institute of Biology Leiden Leiden The Netherlands|tissue:white muscle|genotype:Wild type|treatment:resting|tissue:white muscle | Wild type resting REST++ sample 3 | Illumina Casava software used for basecalling: SCS2.2.38/RTA1.18.61 Illumina reads were aligned against the zebrafish genome sequence GRCz10.80 using TopHat version 2.0.5 Trapnell et al. 2009 The resulting files were filtered using SAMtools version 0.1.18 Li et al. 2009 to exclude secondary alignment of reads Aligned fragments per predicted gene were counted from SAM alignment files using the Python package HTSeq version 0.5.3p9 Anders and Huber 2014 Differentially expressed genes were identified using DESeq Anders and Huber 2010 and data were further processed using Microsoft Excel Genome build: Danio rerio.GRCz10.80 Supplementary files format and content: UOPT++ versus REST++ DiffExpr.txt UOPT versus REST DiffExpr.txt REST versus REST++ DiffExpr.txt and UOPT versus UOPT++ DiffExpr.txt: Microsoft Office Excel file .txt with the following columns: ENSEMBL ID; Associated Gene Name; Description; 6x sample x; baseMean; baseMeanA; baseMeanB; foldChange; log2FoldChange; pval; padj | Wild type resting REST++ | White muscle fillet was dissected dorsally from the lateral line in the epaxial quadrant along the whole length of the fish and stored in RNAlater Ambion at 20 ºC. Tissue was lysed in QIAzol Lysis Reagent. A Qiagen TissueRuptor was used to cut up the tissue samples and RNA was extracted using the Qiagen miRNeasy Mini Kit according to the manufacturer’s description Qiagen Benelux BV Venlo the Netherlands. RNA was eluted in 50 μl and quantified by Nanodrop Thermo Fisher Scientific Amsterdam the Netherlands. Integrity of the RNA was confirmed using an Agilent Bioanalyzer 2100 total RNA Nanoseries II chip Agilent Amstelveen Netherlands. Illumina RNAseq libraries were prepared from 1 μg total RNA using the Illumina TruSeq RNA Sample Prep Kit v2 according to the manufacturer’s instructions Illumina San Diego CA USA. | tissue:white muscle|genotype:Wild type|treatment:resting|tissue:white muscle | GSM3396887 | GSM3396887: Wild type resting REST++ sample 3; Danio rerio; RNA Seq | GSM3396887 | 1 | White muscle fillet was dissected dorsally from the lateral line in the epaxial quadrant along the whole length of the fish and stored in RNAlater Ambion at 20 ºC. Tissue was lysed in QIAzol Lysis Reagent. A Qiagen TissueRuptor was used to cut up the tissue samples and RNA was extracted using the Qiagen miRNeasy Mini Kit according to the manufacturer's description Qiagen Benelux BV Venlo the Netherlands. RNA was eluted in 50 μl and quantified by Nanodrop Thermo Fisher Scientific Amsterdam the Netherlands. Integrity of the RNA was confirmed using an Agilent Bioanalyzer 2100 total RNA Nanoseries II chip Agilent Amstelveen Netherlands. Illumina RNAseq libraries were prepared from 1 μg total RNA using the Illumina TruSeq RNA Sample Prep Kit v2 according to the manufacturer's instructions Illumina San Diego CA USA. | GEO Accession:GSM3396887 | RNA-Seq | TRANSCRIPTOMIC | cDNA | SINGLE | ILLUMINA | Illumina HiSeq 2500 | SRP162257 | ZFG-15-20_03_14120_TAGCTT_L002_R1_001.fastq.gz | fastq | 403131897.0 | 7904547.0 | GSM3396887 r2 | 0:51 | A:94571267;C:99984137;G:98039941;T:110500771;N:35781 | 51 | 94571267 | 99984137 | 98039941 | 110500771 | 35781 | SRX4721387 | SRS3806475 | SRA780034 | GEO | ZF-screens BV | 1 | 0.95153 | 0.03927 | 0.80081 | 0.43253 | 51 | B | usable mapping rate | illumina | hiseq_era | unknown | cdna_unspecified | trueseq | bulk | unknown | unknown | Unknown | 2018-09-20 | Undetermined | Undetermined | Muscle | Muscular System | |||||||||||||||||||
| 49292 | 49292 | SRR7883077 | SRX4721386 | SRS3806474 | SRP162257 | PRJNA492308 | Cortisol acting through the glucocorticoid receptor is not responsible for exercise enhanced growth but does affect the white skeletal muscle transcriptome in zebrafish Danio rerio | GSE120253 | Transcriptome Analysis | Forced sustained swimming exercise at optimal speed enhances growth in many fish species particularly through hypertrophy of the white skeletal muscle. The exact mechanism of this effect has not been resolved yet. To explore the mechanism we first subjected wild type zebrafish to an exercise protocol validated for exercise enhanced growth and showed that exercised zebrafish which indeed showed enhanced growth had higher cortisol levels than the non exercised controls. A central role was therefore hypothesized for the steroid hormone cortisol acting through the Glucocorticoid receptor Gr. Second we subjected wild type zebrafish and zebrafish with a mutant Gr to exercise at optimal suboptimal and super optimal speeds and compared them with non exercised controls. Exercised zebrafish showed growth enhancement at all speeds with highest growth at optimal speeds. In the Gr mutant fish exercise resulted in growth enhancement similar to wild type zebrafish indicating that cortisol cannot be considered as a main determinant of exercise enhanced growth. Finally the transcriptome of white skeletal muscle tissue was analysed by RNA sequencing. The results of this analysis showed that in the muscle tissue of Gr mutant fish a lower number of genes is regulated by exercise than in wild type fish 183 versus 351. A cluster of 36 genes was regulated by exercise in both wild type and mutant fish. In this cluster genes involved in transcriptional regulation and protein ubiquitination were overrepresented. Since growth was enhanced similarly in both wild type fish and mutants these processes may play an important role in exercise enhanced growth. Overall design: Deep sequencing transcriptome analysis of white muscle samples derived from wild type ++ or glucocorticoid receptor Gr mutant Danio rerio specimens that were exposed to either a resting REST or a swimming UOPT regimen: wild type resting REST++; n=3 Gr mutant resting REST ; n=3 wild type swimming UOPT++; n=3 Gr mutant swimming UOPT ; n=3. | pubmed:30692930 | Wild type resting REST++ sample 2 | GSM3396886 | source name:Wild type resting REST++|biomaterial provider:[Origin of specimen] zebrafish facilities of the Institute of Biology Leiden Leiden The Netherlands|tissue:white muscle|genotype:Wild type|treatment:resting|tissue:white muscle | Wild type resting REST++ sample 2 | Illumina Casava software used for basecalling: SCS2.2.38/RTA1.18.61 Illumina reads were aligned against the zebrafish genome sequence GRCz10.80 using TopHat version 2.0.5 Trapnell et al. 2009 The resulting files were filtered using SAMtools version 0.1.18 Li et al. 2009 to exclude secondary alignment of reads Aligned fragments per predicted gene were counted from SAM alignment files using the Python package HTSeq version 0.5.3p9 Anders and Huber 2014 Differentially expressed genes were identified using DESeq Anders and Huber 2010 and data were further processed using Microsoft Excel Genome build: Danio rerio.GRCz10.80 Supplementary files format and content: UOPT++ versus REST++ DiffExpr.txt UOPT versus REST DiffExpr.txt REST versus REST++ DiffExpr.txt and UOPT versus UOPT++ DiffExpr.txt: Microsoft Office Excel file .txt with the following columns: ENSEMBL ID; Associated Gene Name; Description; 6x sample x; baseMean; baseMeanA; baseMeanB; foldChange; log2FoldChange; pval; padj | Wild type resting REST++ | White muscle fillet was dissected dorsally from the lateral line in the epaxial quadrant along the whole length of the fish and stored in RNAlater Ambion at 20 ºC. Tissue was lysed in QIAzol Lysis Reagent. A Qiagen TissueRuptor was used to cut up the tissue samples and RNA was extracted using the Qiagen miRNeasy Mini Kit according to the manufacturer’s description Qiagen Benelux BV Venlo the Netherlands. RNA was eluted in 50 μl and quantified by Nanodrop Thermo Fisher Scientific Amsterdam the Netherlands. Integrity of the RNA was confirmed using an Agilent Bioanalyzer 2100 total RNA Nanoseries II chip Agilent Amstelveen Netherlands. Illumina RNAseq libraries were prepared from 1 μg total RNA using the Illumina TruSeq RNA Sample Prep Kit v2 according to the manufacturer’s instructions Illumina San Diego CA USA. | tissue:white muscle|genotype:Wild type|treatment:resting|tissue:white muscle | GSM3396886 | GSM3396886: Wild type resting REST++ sample 2; Danio rerio; RNA Seq | GSM3396886 | 1 | White muscle fillet was dissected dorsally from the lateral line in the epaxial quadrant along the whole length of the fish and stored in RNAlater Ambion at 20 ºC. Tissue was lysed in QIAzol Lysis Reagent. A Qiagen TissueRuptor was used to cut up the tissue samples and RNA was extracted using the Qiagen miRNeasy Mini Kit according to the manufacturer's description Qiagen Benelux BV Venlo the Netherlands. RNA was eluted in 50 μl and quantified by Nanodrop Thermo Fisher Scientific Amsterdam the Netherlands. Integrity of the RNA was confirmed using an Agilent Bioanalyzer 2100 total RNA Nanoseries II chip Agilent Amstelveen Netherlands. Illumina RNAseq libraries were prepared from 1 μg total RNA using the Illumina TruSeq RNA Sample Prep Kit v2 according to the manufacturer's instructions Illumina San Diego CA USA. | GEO Accession:GSM3396886 | RNA-Seq | TRANSCRIPTOMIC | cDNA | SINGLE | ILLUMINA | Illumina HiSeq 2500 | SRP162257 | ZFG-15-20_02_14119_GATCAG_L001_R1_001.fastq.gz | fastq | 321180252.0 | 6297652.0 | GSM3396886 r1 | 0:51 | A:76187242;C:79646315;G:76288340;T:88907254;N:151101 | 51 | 76187242 | 79646315 | 76288340 | 88907254 | 151101 | SRX4721386 | SRS3806474 | SRA780034 | GEO | ZF-screens BV | 1 | 0.95633 | 0.0376 | 0.82294 | 0.48192 | 51 | B | usable mapping rate | illumina | hiseq_era | unknown | cdna_unspecified | trueseq | bulk | unknown | unknown | Unknown | 2018-09-20 | Undetermined | Undetermined | Muscle | Muscular System | |||||||||||||||||||
| 49293 | 49293 | SRR7883078 | SRX4721386 | SRS3806474 | SRP162257 | PRJNA492308 | Cortisol acting through the glucocorticoid receptor is not responsible for exercise enhanced growth but does affect the white skeletal muscle transcriptome in zebrafish Danio rerio | GSE120253 | Transcriptome Analysis | Forced sustained swimming exercise at optimal speed enhances growth in many fish species particularly through hypertrophy of the white skeletal muscle. The exact mechanism of this effect has not been resolved yet. To explore the mechanism we first subjected wild type zebrafish to an exercise protocol validated for exercise enhanced growth and showed that exercised zebrafish which indeed showed enhanced growth had higher cortisol levels than the non exercised controls. A central role was therefore hypothesized for the steroid hormone cortisol acting through the Glucocorticoid receptor Gr. Second we subjected wild type zebrafish and zebrafish with a mutant Gr to exercise at optimal suboptimal and super optimal speeds and compared them with non exercised controls. Exercised zebrafish showed growth enhancement at all speeds with highest growth at optimal speeds. In the Gr mutant fish exercise resulted in growth enhancement similar to wild type zebrafish indicating that cortisol cannot be considered as a main determinant of exercise enhanced growth. Finally the transcriptome of white skeletal muscle tissue was analysed by RNA sequencing. The results of this analysis showed that in the muscle tissue of Gr mutant fish a lower number of genes is regulated by exercise than in wild type fish 183 versus 351. A cluster of 36 genes was regulated by exercise in both wild type and mutant fish. In this cluster genes involved in transcriptional regulation and protein ubiquitination were overrepresented. Since growth was enhanced similarly in both wild type fish and mutants these processes may play an important role in exercise enhanced growth. Overall design: Deep sequencing transcriptome analysis of white muscle samples derived from wild type ++ or glucocorticoid receptor Gr mutant Danio rerio specimens that were exposed to either a resting REST or a swimming UOPT regimen: wild type resting REST++; n=3 Gr mutant resting REST ; n=3 wild type swimming UOPT++; n=3 Gr mutant swimming UOPT ; n=3. | pubmed:30692930 | Wild type resting REST++ sample 2 | GSM3396886 | source name:Wild type resting REST++|biomaterial provider:[Origin of specimen] zebrafish facilities of the Institute of Biology Leiden Leiden The Netherlands|tissue:white muscle|genotype:Wild type|treatment:resting|tissue:white muscle | Wild type resting REST++ sample 2 | Illumina Casava software used for basecalling: SCS2.2.38/RTA1.18.61 Illumina reads were aligned against the zebrafish genome sequence GRCz10.80 using TopHat version 2.0.5 Trapnell et al. 2009 The resulting files were filtered using SAMtools version 0.1.18 Li et al. 2009 to exclude secondary alignment of reads Aligned fragments per predicted gene were counted from SAM alignment files using the Python package HTSeq version 0.5.3p9 Anders and Huber 2014 Differentially expressed genes were identified using DESeq Anders and Huber 2010 and data were further processed using Microsoft Excel Genome build: Danio rerio.GRCz10.80 Supplementary files format and content: UOPT++ versus REST++ DiffExpr.txt UOPT versus REST DiffExpr.txt REST versus REST++ DiffExpr.txt and UOPT versus UOPT++ DiffExpr.txt: Microsoft Office Excel file .txt with the following columns: ENSEMBL ID; Associated Gene Name; Description; 6x sample x; baseMean; baseMeanA; baseMeanB; foldChange; log2FoldChange; pval; padj | Wild type resting REST++ | White muscle fillet was dissected dorsally from the lateral line in the epaxial quadrant along the whole length of the fish and stored in RNAlater Ambion at 20 ºC. Tissue was lysed in QIAzol Lysis Reagent. A Qiagen TissueRuptor was used to cut up the tissue samples and RNA was extracted using the Qiagen miRNeasy Mini Kit according to the manufacturer’s description Qiagen Benelux BV Venlo the Netherlands. RNA was eluted in 50 μl and quantified by Nanodrop Thermo Fisher Scientific Amsterdam the Netherlands. Integrity of the RNA was confirmed using an Agilent Bioanalyzer 2100 total RNA Nanoseries II chip Agilent Amstelveen Netherlands. Illumina RNAseq libraries were prepared from 1 μg total RNA using the Illumina TruSeq RNA Sample Prep Kit v2 according to the manufacturer’s instructions Illumina San Diego CA USA. | tissue:white muscle|genotype:Wild type|treatment:resting|tissue:white muscle | GSM3396886 | GSM3396886: Wild type resting REST++ sample 2; Danio rerio; RNA Seq | GSM3396886 | 1 | White muscle fillet was dissected dorsally from the lateral line in the epaxial quadrant along the whole length of the fish and stored in RNAlater Ambion at 20 ºC. Tissue was lysed in QIAzol Lysis Reagent. A Qiagen TissueRuptor was used to cut up the tissue samples and RNA was extracted using the Qiagen miRNeasy Mini Kit according to the manufacturer's description Qiagen Benelux BV Venlo the Netherlands. RNA was eluted in 50 μl and quantified by Nanodrop Thermo Fisher Scientific Amsterdam the Netherlands. Integrity of the RNA was confirmed using an Agilent Bioanalyzer 2100 total RNA Nanoseries II chip Agilent Amstelveen Netherlands. Illumina RNAseq libraries were prepared from 1 μg total RNA using the Illumina TruSeq RNA Sample Prep Kit v2 according to the manufacturer's instructions Illumina San Diego CA USA. | GEO Accession:GSM3396886 | RNA-Seq | TRANSCRIPTOMIC | cDNA | SINGLE | ILLUMINA | Illumina HiSeq 2500 | SRP162257 | ZFG-15-20_02_14119_GATCAG_L002_R1_001.fastq.gz | fastq | 318001371.0 | 6235321.0 | GSM3396886 r2 | 0:51 | A:75443385;C:78910190;G:75585800;T:88033421;N:28575 | 51 | 75443385 | 78910190 | 75585800 | 88033421 | 28575 | SRX4721386 | SRS3806474 | SRA780034 | GEO | ZF-screens BV | 1 | 0.95684 | 0.03736 | 0.8228 | 0.42199 | 51 | B | usable mapping rate | illumina | hiseq_era | unknown | cdna_unspecified | trueseq | bulk | unknown | unknown | Unknown | 2018-09-20 | Undetermined | Undetermined | Muscle | Muscular System | |||||||||||||||||||
| 49294 | 49294 | SRR7883075 | SRX4721385 | SRS3806473 | SRP162257 | PRJNA492308 | Cortisol acting through the glucocorticoid receptor is not responsible for exercise enhanced growth but does affect the white skeletal muscle transcriptome in zebrafish Danio rerio | GSE120253 | Transcriptome Analysis | Forced sustained swimming exercise at optimal speed enhances growth in many fish species particularly through hypertrophy of the white skeletal muscle. The exact mechanism of this effect has not been resolved yet. To explore the mechanism we first subjected wild type zebrafish to an exercise protocol validated for exercise enhanced growth and showed that exercised zebrafish which indeed showed enhanced growth had higher cortisol levels than the non exercised controls. A central role was therefore hypothesized for the steroid hormone cortisol acting through the Glucocorticoid receptor Gr. Second we subjected wild type zebrafish and zebrafish with a mutant Gr to exercise at optimal suboptimal and super optimal speeds and compared them with non exercised controls. Exercised zebrafish showed growth enhancement at all speeds with highest growth at optimal speeds. In the Gr mutant fish exercise resulted in growth enhancement similar to wild type zebrafish indicating that cortisol cannot be considered as a main determinant of exercise enhanced growth. Finally the transcriptome of white skeletal muscle tissue was analysed by RNA sequencing. The results of this analysis showed that in the muscle tissue of Gr mutant fish a lower number of genes is regulated by exercise than in wild type fish 183 versus 351. A cluster of 36 genes was regulated by exercise in both wild type and mutant fish. In this cluster genes involved in transcriptional regulation and protein ubiquitination were overrepresented. Since growth was enhanced similarly in both wild type fish and mutants these processes may play an important role in exercise enhanced growth. Overall design: Deep sequencing transcriptome analysis of white muscle samples derived from wild type ++ or glucocorticoid receptor Gr mutant Danio rerio specimens that were exposed to either a resting REST or a swimming UOPT regimen: wild type resting REST++; n=3 Gr mutant resting REST ; n=3 wild type swimming UOPT++; n=3 Gr mutant swimming UOPT ; n=3. | pubmed:30692930 | Wild type resting REST++ sample 1 | GSM3396885 | source name:Wild type resting REST++|biomaterial provider:[Origin of specimen] zebrafish facilities of the Institute of Biology Leiden Leiden The Netherlands|tissue:white muscle|genotype:Wild type|treatment:resting|tissue:white muscle | Wild type resting REST++ sample 1 | Illumina Casava software used for basecalling: SCS2.2.38/RTA1.18.61 Illumina reads were aligned against the zebrafish genome sequence GRCz10.80 using TopHat version 2.0.5 Trapnell et al. 2009 The resulting files were filtered using SAMtools version 0.1.18 Li et al. 2009 to exclude secondary alignment of reads Aligned fragments per predicted gene were counted from SAM alignment files using the Python package HTSeq version 0.5.3p9 Anders and Huber 2014 Differentially expressed genes were identified using DESeq Anders and Huber 2010 and data were further processed using Microsoft Excel Genome build: Danio rerio.GRCz10.80 Supplementary files format and content: UOPT++ versus REST++ DiffExpr.txt UOPT versus REST DiffExpr.txt REST versus REST++ DiffExpr.txt and UOPT versus UOPT++ DiffExpr.txt: Microsoft Office Excel file .txt with the following columns: ENSEMBL ID; Associated Gene Name; Description; 6x sample x; baseMean; baseMeanA; baseMeanB; foldChange; log2FoldChange; pval; padj | Wild type resting REST++ | White muscle fillet was dissected dorsally from the lateral line in the epaxial quadrant along the whole length of the fish and stored in RNAlater Ambion at 20 ºC. Tissue was lysed in QIAzol Lysis Reagent. A Qiagen TissueRuptor was used to cut up the tissue samples and RNA was extracted using the Qiagen miRNeasy Mini Kit according to the manufacturer’s description Qiagen Benelux BV Venlo the Netherlands. RNA was eluted in 50 μl and quantified by Nanodrop Thermo Fisher Scientific Amsterdam the Netherlands. Integrity of the RNA was confirmed using an Agilent Bioanalyzer 2100 total RNA Nanoseries II chip Agilent Amstelveen Netherlands. Illumina RNAseq libraries were prepared from 1 μg total RNA using the Illumina TruSeq RNA Sample Prep Kit v2 according to the manufacturer’s instructions Illumina San Diego CA USA. | tissue:white muscle|genotype:Wild type|treatment:resting|tissue:white muscle | GSM3396885 | GSM3396885: Wild type resting REST++ sample 1; Danio rerio; RNA Seq | GSM3396885 | 1 | White muscle fillet was dissected dorsally from the lateral line in the epaxial quadrant along the whole length of the fish and stored in RNAlater Ambion at 20 ºC. Tissue was lysed in QIAzol Lysis Reagent. A Qiagen TissueRuptor was used to cut up the tissue samples and RNA was extracted using the Qiagen miRNeasy Mini Kit according to the manufacturer's description Qiagen Benelux BV Venlo the Netherlands. RNA was eluted in 50 μl and quantified by Nanodrop Thermo Fisher Scientific Amsterdam the Netherlands. Integrity of the RNA was confirmed using an Agilent Bioanalyzer 2100 total RNA Nanoseries II chip Agilent Amstelveen Netherlands. Illumina RNAseq libraries were prepared from 1 μg total RNA using the Illumina TruSeq RNA Sample Prep Kit v2 according to the manufacturer's instructions Illumina San Diego CA USA. | GEO Accession:GSM3396885 | RNA-Seq | TRANSCRIPTOMIC | cDNA | SINGLE | ILLUMINA | Illumina HiSeq 2500 | SRP162257 | ZFG-15-20_01_14118_ACTTGA_L001_R1_001.fastq.gz | fastq | 332939526.0 | 6528226.0 | GSM3396885 r1 | 0:51 | A:79370894;C:82057170;G:79743998;T:91615147;N:152317 | 51 | 79370894 | 82057170 | 79743998 | 91615147 | 152317 | SRX4721385 | SRS3806473 | SRA780034 | GEO | ZF-screens BV | 1 | 0.9559 | 0.03764 | 0.81146 | 0.48877 | 51 | B | usable mapping rate | illumina | hiseq_era | unknown | cdna_unspecified | trueseq | bulk | unknown | unknown | Unknown | 2018-09-20 | Undetermined | Undetermined | Muscle | Muscular System | |||||||||||||||||||
| 49295 | 49295 | SRR7883076 | SRX4721385 | SRS3806473 | SRP162257 | PRJNA492308 | Cortisol acting through the glucocorticoid receptor is not responsible for exercise enhanced growth but does affect the white skeletal muscle transcriptome in zebrafish Danio rerio | GSE120253 | Transcriptome Analysis | Forced sustained swimming exercise at optimal speed enhances growth in many fish species particularly through hypertrophy of the white skeletal muscle. The exact mechanism of this effect has not been resolved yet. To explore the mechanism we first subjected wild type zebrafish to an exercise protocol validated for exercise enhanced growth and showed that exercised zebrafish which indeed showed enhanced growth had higher cortisol levels than the non exercised controls. A central role was therefore hypothesized for the steroid hormone cortisol acting through the Glucocorticoid receptor Gr. Second we subjected wild type zebrafish and zebrafish with a mutant Gr to exercise at optimal suboptimal and super optimal speeds and compared them with non exercised controls. Exercised zebrafish showed growth enhancement at all speeds with highest growth at optimal speeds. In the Gr mutant fish exercise resulted in growth enhancement similar to wild type zebrafish indicating that cortisol cannot be considered as a main determinant of exercise enhanced growth. Finally the transcriptome of white skeletal muscle tissue was analysed by RNA sequencing. The results of this analysis showed that in the muscle tissue of Gr mutant fish a lower number of genes is regulated by exercise than in wild type fish 183 versus 351. A cluster of 36 genes was regulated by exercise in both wild type and mutant fish. In this cluster genes involved in transcriptional regulation and protein ubiquitination were overrepresented. Since growth was enhanced similarly in both wild type fish and mutants these processes may play an important role in exercise enhanced growth. Overall design: Deep sequencing transcriptome analysis of white muscle samples derived from wild type ++ or glucocorticoid receptor Gr mutant Danio rerio specimens that were exposed to either a resting REST or a swimming UOPT regimen: wild type resting REST++; n=3 Gr mutant resting REST ; n=3 wild type swimming UOPT++; n=3 Gr mutant swimming UOPT ; n=3. | pubmed:30692930 | Wild type resting REST++ sample 1 | GSM3396885 | source name:Wild type resting REST++|biomaterial provider:[Origin of specimen] zebrafish facilities of the Institute of Biology Leiden Leiden The Netherlands|tissue:white muscle|genotype:Wild type|treatment:resting|tissue:white muscle | Wild type resting REST++ sample 1 | Illumina Casava software used for basecalling: SCS2.2.38/RTA1.18.61 Illumina reads were aligned against the zebrafish genome sequence GRCz10.80 using TopHat version 2.0.5 Trapnell et al. 2009 The resulting files were filtered using SAMtools version 0.1.18 Li et al. 2009 to exclude secondary alignment of reads Aligned fragments per predicted gene were counted from SAM alignment files using the Python package HTSeq version 0.5.3p9 Anders and Huber 2014 Differentially expressed genes were identified using DESeq Anders and Huber 2010 and data were further processed using Microsoft Excel Genome build: Danio rerio.GRCz10.80 Supplementary files format and content: UOPT++ versus REST++ DiffExpr.txt UOPT versus REST DiffExpr.txt REST versus REST++ DiffExpr.txt and UOPT versus UOPT++ DiffExpr.txt: Microsoft Office Excel file .txt with the following columns: ENSEMBL ID; Associated Gene Name; Description; 6x sample x; baseMean; baseMeanA; baseMeanB; foldChange; log2FoldChange; pval; padj | Wild type resting REST++ | White muscle fillet was dissected dorsally from the lateral line in the epaxial quadrant along the whole length of the fish and stored in RNAlater Ambion at 20 ºC. Tissue was lysed in QIAzol Lysis Reagent. A Qiagen TissueRuptor was used to cut up the tissue samples and RNA was extracted using the Qiagen miRNeasy Mini Kit according to the manufacturer’s description Qiagen Benelux BV Venlo the Netherlands. RNA was eluted in 50 μl and quantified by Nanodrop Thermo Fisher Scientific Amsterdam the Netherlands. Integrity of the RNA was confirmed using an Agilent Bioanalyzer 2100 total RNA Nanoseries II chip Agilent Amstelveen Netherlands. Illumina RNAseq libraries were prepared from 1 μg total RNA using the Illumina TruSeq RNA Sample Prep Kit v2 according to the manufacturer’s instructions Illumina San Diego CA USA. | tissue:white muscle|genotype:Wild type|treatment:resting|tissue:white muscle | GSM3396885 | GSM3396885: Wild type resting REST++ sample 1; Danio rerio; RNA Seq | GSM3396885 | 1 | White muscle fillet was dissected dorsally from the lateral line in the epaxial quadrant along the whole length of the fish and stored in RNAlater Ambion at 20 ºC. Tissue was lysed in QIAzol Lysis Reagent. A Qiagen TissueRuptor was used to cut up the tissue samples and RNA was extracted using the Qiagen miRNeasy Mini Kit according to the manufacturer's description Qiagen Benelux BV Venlo the Netherlands. RNA was eluted in 50 μl and quantified by Nanodrop Thermo Fisher Scientific Amsterdam the Netherlands. Integrity of the RNA was confirmed using an Agilent Bioanalyzer 2100 total RNA Nanoseries II chip Agilent Amstelveen Netherlands. Illumina RNAseq libraries were prepared from 1 μg total RNA using the Illumina TruSeq RNA Sample Prep Kit v2 according to the manufacturer's instructions Illumina San Diego CA USA. | GEO Accession:GSM3396885 | RNA-Seq | TRANSCRIPTOMIC | cDNA | SINGLE | ILLUMINA | Illumina HiSeq 2500 | SRP162257 | ZFG-15-20_01_14118_ACTTGA_L002_R1_001.fastq.gz | fastq | 328832853.0 | 6447703.0 | GSM3396885 r2 | 0:51 | A:78396828;C:81102360;G:78796819;T:90507746;N:29100 | 51 | 78396828 | 81102360 | 78796819 | 90507746 | 29100 | SRX4721385 | SRS3806473 | SRA780034 | GEO | ZF-screens BV | 1 | 0.9556 | 0.03749 | 0.81144 | 0.48578 | 51 | B | usable mapping rate | illumina | hiseq_era | unknown | cdna_unspecified | trueseq | bulk | unknown | unknown | Unknown | 2018-09-20 | Undetermined | Undetermined | Muscle | Muscular System | |||||||||||||||||||
| 63901 | 63901 | SRR14213392 | SRX10579910 | SRS8684378 | SRP314470 | PRJNA721381 | RNA Seq from zebrafish adult tissues | GSE171906 | Transcriptome Analysis | The goal of this study was to profile transcript expression levels across zebrafish adult tissues. Overall design: Transcriptome profiles of nine zebrafish adult tissues. Every tissue contains triplicates. | pubmed:34556579 | Muscle3 | GSM5237134 | source name:zebrafish muscle|genotype:wild type|tissue:muscle|strain:TLAB | Muscle3 | Libraries were sequenced on a Illumina Hiseq 2500 on SR100 mode BAM files containing sequencing reads were converted to fastq files using samtools v1.9 Barcoded libraries were demultiplexed using fastx toolkit v0.0.14 Sequencing adapters were trimmed with cutadapt v1.18 and only reads longer than 25 bases were kept Reads were aligned to GRCz11 with Hisat2 v2.1.0 using the Ensembl transcriptome release 102. The following parameters were used: hisat2 q dta rna strandness R k 12 no unal Quantification at the gene level to obtain transcript per million TPM was perfomed using Kallisto v0.43.0 Genome build: GRCz11 Supplementary files format and content: Tab delimited files containing TPM | zebrafish muscle | Total RNA was extracted using the standard TRIzol Invitrogen protocol. To obtain polyA+ RNA the polyA selection kit from LEXOGEN was used. Strand specific cDNA libraries were generated using NEBNext Ultra Directional RNA Library Prep Kit for Illumina and indexed with NEBNext Multiplex Oligos for Illumina | Zebrafish Danio rerio were raised according to standard protocols 28°C water temperature; 14/10 hour light/dark cycle | genotype:wild type|tissue:muscle|strain:TLAB | GSM5237134 | GSM5237134: Muscle3; Danio rerio; RNA Seq | GSM5237134 | 1 | Total RNA was extracted using the standard TRIzol Invitrogen protocol. To obtain polyA+ RNA the polyA selection kit from LEXOGEN was used. Strand specific cDNA libraries were generated using NEBNext Ultra Directional RNA Library Prep Kit for Illumina and indexed with NEBNext Multiplex Oligos for Illumina | GEO Accession:GSM5237134 | RNA-Seq | TRANSCRIPTOMIC | cDNA | SINGLE | ILLUMINA | Illumina HiSeq 2500 | SRP314470 | Muscle3.fastq | fastq | 1248063700.0 | 12480637.0 | GSM5237134 r1 | 0:100 | A:316318738;C:303727991;G:295436036;T:332533144;N:47791 | 100 | 316318738 | 303727991 | 295436036 | 332533144 | 47791 | SRX10579910 | SRS8684378 | SRA1217576 | GEO | Pauli lab, Research Institute of Molecular Pathology | 1 | 0.94648 | 0.0938 | 0.73474 | 0.51744 | 100 | B | usable mapping rate | illumina | hiseq_era | unknown | poly_a | nebnext | bulk | unknown | unknown | Austria | 2021-04-12 | Undetermined | Undetermined | Muscle | Muscular System | ||||||||||||||||||
| 63902 | 63902 | SRR14213391 | SRX10579909 | SRS8684377 | SRP314470 | PRJNA721381 | RNA Seq from zebrafish adult tissues | GSE171906 | Transcriptome Analysis | The goal of this study was to profile transcript expression levels across zebrafish adult tissues. Overall design: Transcriptome profiles of nine zebrafish adult tissues. Every tissue contains triplicates. | pubmed:34556579 | Muscle2 | GSM5237133 | source name:zebrafish muscle|genotype:wild type|tissue:muscle|strain:TLAB | Muscle2 | Libraries were sequenced on a Illumina Hiseq 2500 on SR100 mode BAM files containing sequencing reads were converted to fastq files using samtools v1.9 Barcoded libraries were demultiplexed using fastx toolkit v0.0.14 Sequencing adapters were trimmed with cutadapt v1.18 and only reads longer than 25 bases were kept Reads were aligned to GRCz11 with Hisat2 v2.1.0 using the Ensembl transcriptome release 102. The following parameters were used: hisat2 q dta rna strandness R k 12 no unal Quantification at the gene level to obtain transcript per million TPM was perfomed using Kallisto v0.43.0 Genome build: GRCz11 Supplementary files format and content: Tab delimited files containing TPM | zebrafish muscle | Total RNA was extracted using the standard TRIzol Invitrogen protocol. To obtain polyA+ RNA the polyA selection kit from LEXOGEN was used. Strand specific cDNA libraries were generated using NEBNext Ultra Directional RNA Library Prep Kit for Illumina and indexed with NEBNext Multiplex Oligos for Illumina | Zebrafish Danio rerio were raised according to standard protocols 28°C water temperature; 14/10 hour light/dark cycle | genotype:wild type|tissue:muscle|strain:TLAB | GSM5237133 | GSM5237133: Muscle2; Danio rerio; RNA Seq | GSM5237133 | 1 | Total RNA was extracted using the standard TRIzol Invitrogen protocol. To obtain polyA+ RNA the polyA selection kit from LEXOGEN was used. Strand specific cDNA libraries were generated using NEBNext Ultra Directional RNA Library Prep Kit for Illumina and indexed with NEBNext Multiplex Oligos for Illumina | GEO Accession:GSM5237133 | RNA-Seq | TRANSCRIPTOMIC | cDNA | SINGLE | ILLUMINA | Illumina HiSeq 2500 | SRP314470 | Muscle2.fastq | fastq | 823487500.0 | 8234875.0 | GSM5237133 r1 | 0:100 | A:204892783;C:204949522;G:196850367;T:216763445;N:31383 | 100 | 204892783 | 204949522 | 196850367 | 216763445 | 31383 | SRX10579909 | SRS8684377 | SRA1217576 | GEO | Pauli lab, Research Institute of Molecular Pathology | 1 | 0.95133 | 0.08777 | 0.73081 | 0.52808 | 100 | B | usable mapping rate | illumina | hiseq_era | unknown | poly_a | nebnext | bulk | unknown | unknown | Austria | 2021-04-12 | Undetermined | Undetermined | Muscle | Muscular System | ||||||||||||||||||
| 63903 | 63903 | SRR14213390 | SRX10579908 | SRS8684376 | SRP314470 | PRJNA721381 | RNA Seq from zebrafish adult tissues | GSE171906 | Transcriptome Analysis | The goal of this study was to profile transcript expression levels across zebrafish adult tissues. Overall design: Transcriptome profiles of nine zebrafish adult tissues. Every tissue contains triplicates. | pubmed:34556579 | Muscle1 | GSM5237132 | source name:zebrafish muscle|genotype:wild type|tissue:muscle|strain:TLAB | Muscle1 | Libraries were sequenced on a Illumina Hiseq 2500 on SR100 mode BAM files containing sequencing reads were converted to fastq files using samtools v1.9 Barcoded libraries were demultiplexed using fastx toolkit v0.0.14 Sequencing adapters were trimmed with cutadapt v1.18 and only reads longer than 25 bases were kept Reads were aligned to GRCz11 with Hisat2 v2.1.0 using the Ensembl transcriptome release 102. The following parameters were used: hisat2 q dta rna strandness R k 12 no unal Quantification at the gene level to obtain transcript per million TPM was perfomed using Kallisto v0.43.0 Genome build: GRCz11 Supplementary files format and content: Tab delimited files containing TPM | zebrafish muscle | Total RNA was extracted using the standard TRIzol Invitrogen protocol. To obtain polyA+ RNA the polyA selection kit from LEXOGEN was used. Strand specific cDNA libraries were generated using NEBNext Ultra Directional RNA Library Prep Kit for Illumina and indexed with NEBNext Multiplex Oligos for Illumina | Zebrafish Danio rerio were raised according to standard protocols 28°C water temperature; 14/10 hour light/dark cycle | genotype:wild type|tissue:muscle|strain:TLAB | GSM5237132 | GSM5237132: Muscle1; Danio rerio; RNA Seq | GSM5237132 | 1 | Total RNA was extracted using the standard TRIzol Invitrogen protocol. To obtain polyA+ RNA the polyA selection kit from LEXOGEN was used. Strand specific cDNA libraries were generated using NEBNext Ultra Directional RNA Library Prep Kit for Illumina and indexed with NEBNext Multiplex Oligos for Illumina | GEO Accession:GSM5237132 | RNA-Seq | TRANSCRIPTOMIC | cDNA | SINGLE | ILLUMINA | Illumina HiSeq 2500 | SRP314470 | Muscle1.fastq | fastq | 1561939300.0 | 15619393.0 | GSM5237132 r1 | 0:100 | A:390941013;C:387779384;G:377636588;T:405523724;N:58591 | 100 | 390941013 | 387779384 | 377636588 | 405523724 | 58591 | SRX10579908 | SRS8684376 | SRA1217576 | GEO | Pauli lab, Research Institute of Molecular Pathology | 1 | 0.95362 | 0.08324 | 0.7483 | 0.49389 | 100 | B | usable mapping rate | illumina | hiseq_era | unknown | poly_a | nebnext | bulk | unknown | unknown | Austria | 2021-04-12 | Undetermined | Undetermined | Muscle | Muscular System | ||||||||||||||||||
| 72661 | 72661 | SRR23048170 | SRX19001706 | SRS16421813 | SRP416971 | PRJNA922874 | Transcriptome Profiling Reveals Enhanced Mitochondrial Activity as a Cold Adaptive Strategy to Hypothermia in Zebrafish Muscle | GSE222614 | Transcriptome Analysis | The utilisation of synthetic torpor for interplanetary travel once seemed farfetched. However mounting evidence points to torpor induced protective benefits from the main hazards of space travel namely exposure to radiation and microgravity. To determine the radio protective effects of an induced torpor like state we exploited the ectothermic nature of the Danio rerio zebrafish in reducing their body temperatures to replicate the hypothermic states seen during natural torpor. We also administered melatonin as a sedative to reduce physical activity. Zebrafish were then exposed to low dose radiation 0.3Gy to simulate radiation exposure on long term space missions. Transcriptomic analysis found that radiation exposure led to an upregulation of inflammatory and immune signatures and a differentiation and regeneration phenotype driven by STAT3 and MYOD1 transcription factors. In addition DNA repair processes were downregulated in the muscle two days' post irradiation. The effects of hypothermia led to an increase in mitochondrial translation including genes involved in oxidative phosphorylation and a downregulation of ex tracellular matrix and developmental genes. Upon radiation exposure increases in endoplasmic reticulum stress genes were observed in a torpor+radiation group with downregulation of im mune related and ECM genes. Exposing hypothermic zebrafish to radiation also resulted in a downregulation of ECM and developmental genes however immune/inflammatory related pathways were downregulated in contrast to that observed in the radiation only group. A cross species comparison was performed with the muscle of hibernating Ursus arctos horribilis brown bear to define shared mechanisms of cold tolerance. Shared responses show an upregula tion of protein translation and metabolism of amino acids as well as a hypoxia response with the shared downregulation of glycolysis ECM and developmental genes. Overall design: Transcriptomic analysis of zebrafish muscle assessing the protective effects of induced torpor o… | 18 M4 24 NoRad | GSM6927792 | source name:Muscle|tissue:Muscle|condition:Torpor|geo loc name:missing|collection date:missing | 18 M4 24 NoRad | Sequence quality was assessed with FastQC to identify over represented sequences and low quality reads Low quality reads and over represented sequences were removed with Cutadapt The STAR aligner was utilised to align the RNA Seq reads to the zebrafish genome GRCz11 HTSeq was used to determine the number of reads per transcript DESeq2 was used for determination of differentially expressed genes Assembly: zebrafish genome GRCz11 | Muscle | A melatonin group 28.5 melatonin received melatonin daily for 10 days at a concentration of 24 µM for 10 days to reduce locomotion and arousal. A reduced temperature group 18.5 Ctrl received a reduction in ambient temperature by 10°C from 28.5°C to 18.5°C to reduce their metabolism. An induced torpor group 18.5 mel was established with a 10°C reduction in ambient temperature and the addition of 24 µM melatonin. A radiation group was exposed to a total whole body dose of 32.68 cGy.A torpor+radiation group was also established using a cold acclimatised group with melatonin that was also subject to the radiation protocol. | Total mRNA was extracted from liver tissue of the zebrafish using Qiagen’s miRNeasy Mini kit Qiagen Hilden Germany. To prepare mRNA seq kit poly A capture KAPA RNA hyperIllumina San Diego CA USA; was utilized; 100ng of total input muscle RNA was used in accordance with the manufacturer’s protocol. High through put RNA sequencing RNAseq was performed at the Queens University Belfast Genomics Core Technology Unit on an Illumina Next SEQ 2000 instruments with the mRNA library sequenced to a minimum depth of 50 million reads using forward stranded PE50 strategy. | tissue:Muscle|condition:Torpor|radiation cgy:0|temperature c:18.5|melatonin um:24 | GSM6927792 | GSM6927792: 18 M4 24 NoRad; Danio rerio; RNA Seq | GSM6927792 r1 | GSM6927792 | 1 | Total mRNA was extracted from liver tissue of the zebrafish using Qiagen's miRNeasy Mini kit Qiagen Hilden Germany. To prepare mRNA seq kit poly A capture KAPA RNA hyperIllumina San Diego CA USA; was utilized; 100ng of total input muscle RNA was used in accordance with the manufacturer's protocol. High through put RNA sequencing RNAseq was performed at the Queens University Belfast Genomics Core Technology Unit on an Illumina Next SEQ 2000 instruments with the mRNA library sequenced to a minimum depth of 50 million reads using forward stranded PE50 strategy. | RNA-Seq | TRANSCRIPTOMIC | cDNA | PAIRED | ILLUMINA | NextSeq 2000 | SRP416971 | loader:fastq load.py | PN0320_0012_S12_L001_R1_001.fastq.gz PN0320_0012_S12_L001_R2_001.fastq.gz | fastq fastq | 2216625964.0 | 21957637.0 | GSM6927792 r1 | 0:50.43 1:50.52 | A:604204769;C:495482915;G:495882249;T:620889427;N:166604 | 50 | 50 | 604204769 | 495482915 | 495882249 | 620889427 | 166604 | SRX19001706 | SRS16421813 | SRA1572773 | Queens university Belfast | Queens university Belfast | 2 | 0.9598 | 0.95793 | 0.08459 | 0.08863 | 0.8117 | 0.81318 | 0.65691 | 0.65676 | 50 | 51 | B | B | biological fallback assumption | illumina | nextseq_v2 | unknown | poly_a | unknown | bulk | unknown | unknown | United Kingdom | 2023-01-11 | Undetermined | Undetermined | Muscle | Muscular System | |||||||||||
| 72662 | 72662 | SRR23048171 | SRX19001705 | SRS16421812 | SRP416971 | PRJNA922874 | Transcriptome Profiling Reveals Enhanced Mitochondrial Activity as a Cold Adaptive Strategy to Hypothermia in Zebrafish Muscle | GSE222614 | Transcriptome Analysis | The utilisation of synthetic torpor for interplanetary travel once seemed farfetched. However mounting evidence points to torpor induced protective benefits from the main hazards of space travel namely exposure to radiation and microgravity. To determine the radio protective effects of an induced torpor like state we exploited the ectothermic nature of the Danio rerio zebrafish in reducing their body temperatures to replicate the hypothermic states seen during natural torpor. We also administered melatonin as a sedative to reduce physical activity. Zebrafish were then exposed to low dose radiation 0.3Gy to simulate radiation exposure on long term space missions. Transcriptomic analysis found that radiation exposure led to an upregulation of inflammatory and immune signatures and a differentiation and regeneration phenotype driven by STAT3 and MYOD1 transcription factors. In addition DNA repair processes were downregulated in the muscle two days' post irradiation. The effects of hypothermia led to an increase in mitochondrial translation including genes involved in oxidative phosphorylation and a downregulation of ex tracellular matrix and developmental genes. Upon radiation exposure increases in endoplasmic reticulum stress genes were observed in a torpor+radiation group with downregulation of im mune related and ECM genes. Exposing hypothermic zebrafish to radiation also resulted in a downregulation of ECM and developmental genes however immune/inflammatory related pathways were downregulated in contrast to that observed in the radiation only group. A cross species comparison was performed with the muscle of hibernating Ursus arctos horribilis brown bear to define shared mechanisms of cold tolerance. Shared responses show an upregula tion of protein translation and metabolism of amino acids as well as a hypoxia response with the shared downregulation of glycolysis ECM and developmental genes. Overall design: Transcriptomic analysis of zebrafish muscle assessing the protective effects of induced torpor o… | 18 M3 24 NoRad | GSM6927791 | source name:Muscle|tissue:Muscle|condition:Torpor|geo loc name:missing|collection date:missing | 18 M3 24 NoRad | Sequence quality was assessed with FastQC to identify over represented sequences and low quality reads Low quality reads and over represented sequences were removed with Cutadapt The STAR aligner was utilised to align the RNA Seq reads to the zebrafish genome GRCz11 HTSeq was used to determine the number of reads per transcript DESeq2 was used for determination of differentially expressed genes Assembly: zebrafish genome GRCz11 | Muscle | A melatonin group 28.5 melatonin received melatonin daily for 10 days at a concentration of 24 µM for 10 days to reduce locomotion and arousal. A reduced temperature group 18.5 Ctrl received a reduction in ambient temperature by 10°C from 28.5°C to 18.5°C to reduce their metabolism. An induced torpor group 18.5 mel was established with a 10°C reduction in ambient temperature and the addition of 24 µM melatonin. A radiation group was exposed to a total whole body dose of 32.68 cGy.A torpor+radiation group was also established using a cold acclimatised group with melatonin that was also subject to the radiation protocol. | Total mRNA was extracted from liver tissue of the zebrafish using Qiagen’s miRNeasy Mini kit Qiagen Hilden Germany. To prepare mRNA seq kit poly A capture KAPA RNA hyperIllumina San Diego CA USA; was utilized; 100ng of total input muscle RNA was used in accordance with the manufacturer’s protocol. High through put RNA sequencing RNAseq was performed at the Queens University Belfast Genomics Core Technology Unit on an Illumina Next SEQ 2000 instruments with the mRNA library sequenced to a minimum depth of 50 million reads using forward stranded PE50 strategy. | tissue:Muscle|condition:Torpor|radiation cgy:0|temperature c:18.5|melatonin um:24 | GSM6927791 | GSM6927791: 18 M3 24 NoRad; Danio rerio; RNA Seq | GSM6927791 r1 | GSM6927791 | 1 | Total mRNA was extracted from liver tissue of the zebrafish using Qiagen's miRNeasy Mini kit Qiagen Hilden Germany. To prepare mRNA seq kit poly A capture KAPA RNA hyperIllumina San Diego CA USA; was utilized; 100ng of total input muscle RNA was used in accordance with the manufacturer's protocol. High through put RNA sequencing RNAseq was performed at the Queens University Belfast Genomics Core Technology Unit on an Illumina Next SEQ 2000 instruments with the mRNA library sequenced to a minimum depth of 50 million reads using forward stranded PE50 strategy. | RNA-Seq | TRANSCRIPTOMIC | cDNA | PAIRED | ILLUMINA | NextSeq 2000 | SRP416971 | loader:fastq load.py | PN0320_00011_S11_L001_R1_001.fastq.gz PN0320_00011_S11_L001_R2_001.fastq.gz | fastq fastq | 2062918539.0 | 20433414.0 | GSM6927791 r1 | 0:50.44 1:50.52 | A:552665146;C:469413584;G:472562709;T:568108230;N:168870 | 50 | 50 | 552665146 | 469413584 | 472562709 | 568108230 | 168870 | SRX19001705 | SRS16421812 | SRA1572773 | Queens university Belfast | Queens university Belfast | 2 | 0.9585 | 0.95783 | 0.08664 | 0.09023 | 0.79971 | 0.80144 | 0.62278 | 0.61825 | 50 | 48 | B | B | biological fallback assumption | illumina | nextseq_v2 | unknown | poly_a | unknown | bulk | unknown | unknown | United Kingdom | 2023-01-11 | Undetermined | Undetermined | Muscle | Muscular System | |||||||||||
| 72663 | 72663 | SRR23048172 | SRX19001704 | SRS16421811 | SRP416971 | PRJNA922874 | Transcriptome Profiling Reveals Enhanced Mitochondrial Activity as a Cold Adaptive Strategy to Hypothermia in Zebrafish Muscle | GSE222614 | Transcriptome Analysis | The utilisation of synthetic torpor for interplanetary travel once seemed farfetched. However mounting evidence points to torpor induced protective benefits from the main hazards of space travel namely exposure to radiation and microgravity. To determine the radio protective effects of an induced torpor like state we exploited the ectothermic nature of the Danio rerio zebrafish in reducing their body temperatures to replicate the hypothermic states seen during natural torpor. We also administered melatonin as a sedative to reduce physical activity. Zebrafish were then exposed to low dose radiation 0.3Gy to simulate radiation exposure on long term space missions. Transcriptomic analysis found that radiation exposure led to an upregulation of inflammatory and immune signatures and a differentiation and regeneration phenotype driven by STAT3 and MYOD1 transcription factors. In addition DNA repair processes were downregulated in the muscle two days' post irradiation. The effects of hypothermia led to an increase in mitochondrial translation including genes involved in oxidative phosphorylation and a downregulation of ex tracellular matrix and developmental genes. Upon radiation exposure increases in endoplasmic reticulum stress genes were observed in a torpor+radiation group with downregulation of im mune related and ECM genes. Exposing hypothermic zebrafish to radiation also resulted in a downregulation of ECM and developmental genes however immune/inflammatory related pathways were downregulated in contrast to that observed in the radiation only group. A cross species comparison was performed with the muscle of hibernating Ursus arctos horribilis brown bear to define shared mechanisms of cold tolerance. Shared responses show an upregula tion of protein translation and metabolism of amino acids as well as a hypoxia response with the shared downregulation of glycolysis ECM and developmental genes. Overall design: Transcriptomic analysis of zebrafish muscle assessing the protective effects of induced torpor o… | 18 M1 24 Rad | GSM6927790 | source name:Muscle|tissue:Muscle|condition:Torpor+radiation|geo loc name:missing|collection date:missing | 18 M1 24 Rad | Sequence quality was assessed with FastQC to identify over represented sequences and low quality reads Low quality reads and over represented sequences were removed with Cutadapt The STAR aligner was utilised to align the RNA Seq reads to the zebrafish genome GRCz11 HTSeq was used to determine the number of reads per transcript DESeq2 was used for determination of differentially expressed genes Assembly: zebrafish genome GRCz11 | Muscle | A melatonin group 28.5 melatonin received melatonin daily for 10 days at a concentration of 24 µM for 10 days to reduce locomotion and arousal. A reduced temperature group 18.5 Ctrl received a reduction in ambient temperature by 10°C from 28.5°C to 18.5°C to reduce their metabolism. An induced torpor group 18.5 mel was established with a 10°C reduction in ambient temperature and the addition of 24 µM melatonin. A radiation group was exposed to a total whole body dose of 32.68 cGy.A torpor+radiation group was also established using a cold acclimatised group with melatonin that was also subject to the radiation protocol. | Total mRNA was extracted from liver tissue of the zebrafish using Qiagen’s miRNeasy Mini kit Qiagen Hilden Germany. To prepare mRNA seq kit poly A capture KAPA RNA hyperIllumina San Diego CA USA; was utilized; 100ng of total input muscle RNA was used in accordance with the manufacturer’s protocol. High through put RNA sequencing RNAseq was performed at the Queens University Belfast Genomics Core Technology Unit on an Illumina Next SEQ 2000 instruments with the mRNA library sequenced to a minimum depth of 50 million reads using forward stranded PE50 strategy. | tissue:Muscle|condition:Torpor+radiation|radiation cgy:32.64|temperature c:18.5|melatonin um:24 | GSM6927790 | GSM6927790: 18 M1 24 Rad; Danio rerio; RNA Seq | GSM6927790 r1 | GSM6927790 | 1 | Total mRNA was extracted from liver tissue of the zebrafish using Qiagen's miRNeasy Mini kit Qiagen Hilden Germany. To prepare mRNA seq kit poly A capture KAPA RNA hyperIllumina San Diego CA USA; was utilized; 100ng of total input muscle RNA was used in accordance with the manufacturer's protocol. High through put RNA sequencing RNAseq was performed at the Queens University Belfast Genomics Core Technology Unit on an Illumina Next SEQ 2000 instruments with the mRNA library sequenced to a minimum depth of 50 million reads using forward stranded PE50 strategy. | RNA-Seq | TRANSCRIPTOMIC | cDNA | PAIRED | ILLUMINA | NextSeq 2000 | SRP416971 | loader:fastq load.py | PN0320_0010_S10_L001_R1_001.fastq.gz PN0320_0010_S10_L001_R2_001.fastq.gz | fastq fastq | 2260102047.0 | 22386719.0 | GSM6927790 r1 | 0:50.44 1:50.52 | A:604400943;C:515255815;G:521377200;T:618920421;N:147668 | 50 | 50 | 604400943 | 515255815 | 521377200 | 618920421 | 147668 | SRX19001704 | SRS16421811 | SRA1572773 | Queens university Belfast | Queens university Belfast | 2 | 0.96368 | 0.96034 | 0.07366 | 0.07721 | 0.81834 | 0.82144 | 0.63399 | 0.63531 | 49 | 51 | B | B | biological fallback assumption | illumina | nextseq_v2 | unknown | poly_a | unknown | bulk | unknown | unknown | United Kingdom | 2023-01-11 | Undetermined | Undetermined | Muscle | Muscular System | |||||||||||
| 72664 | 72664 | SRR23048173 | SRX19001703 | SRS16421810 | SRP416971 | PRJNA922874 | Transcriptome Profiling Reveals Enhanced Mitochondrial Activity as a Cold Adaptive Strategy to Hypothermia in Zebrafish Muscle | GSE222614 | Transcriptome Analysis | The utilisation of synthetic torpor for interplanetary travel once seemed farfetched. However mounting evidence points to torpor induced protective benefits from the main hazards of space travel namely exposure to radiation and microgravity. To determine the radio protective effects of an induced torpor like state we exploited the ectothermic nature of the Danio rerio zebrafish in reducing their body temperatures to replicate the hypothermic states seen during natural torpor. We also administered melatonin as a sedative to reduce physical activity. Zebrafish were then exposed to low dose radiation 0.3Gy to simulate radiation exposure on long term space missions. Transcriptomic analysis found that radiation exposure led to an upregulation of inflammatory and immune signatures and a differentiation and regeneration phenotype driven by STAT3 and MYOD1 transcription factors. In addition DNA repair processes were downregulated in the muscle two days' post irradiation. The effects of hypothermia led to an increase in mitochondrial translation including genes involved in oxidative phosphorylation and a downregulation of ex tracellular matrix and developmental genes. Upon radiation exposure increases in endoplasmic reticulum stress genes were observed in a torpor+radiation group with downregulation of im mune related and ECM genes. Exposing hypothermic zebrafish to radiation also resulted in a downregulation of ECM and developmental genes however immune/inflammatory related pathways were downregulated in contrast to that observed in the radiation only group. A cross species comparison was performed with the muscle of hibernating Ursus arctos horribilis brown bear to define shared mechanisms of cold tolerance. Shared responses show an upregula tion of protein translation and metabolism of amino acids as well as a hypoxia response with the shared downregulation of glycolysis ECM and developmental genes. Overall design: Transcriptomic analysis of zebrafish muscle assessing the protective effects of induced torpor o… | 18 F1 24 Rad | GSM6927789 | source name:Muscle|tissue:Muscle|condition:Torpor+radiation|geo loc name:missing|collection date:missing | 18 F1 24 Rad | Sequence quality was assessed with FastQC to identify over represented sequences and low quality reads Low quality reads and over represented sequences were removed with Cutadapt The STAR aligner was utilised to align the RNA Seq reads to the zebrafish genome GRCz11 HTSeq was used to determine the number of reads per transcript DESeq2 was used for determination of differentially expressed genes Assembly: zebrafish genome GRCz11 | Muscle | A melatonin group 28.5 melatonin received melatonin daily for 10 days at a concentration of 24 µM for 10 days to reduce locomotion and arousal. A reduced temperature group 18.5 Ctrl received a reduction in ambient temperature by 10°C from 28.5°C to 18.5°C to reduce their metabolism. An induced torpor group 18.5 mel was established with a 10°C reduction in ambient temperature and the addition of 24 µM melatonin. A radiation group was exposed to a total whole body dose of 32.68 cGy.A torpor+radiation group was also established using a cold acclimatised group with melatonin that was also subject to the radiation protocol. | Total mRNA was extracted from liver tissue of the zebrafish using Qiagen’s miRNeasy Mini kit Qiagen Hilden Germany. To prepare mRNA seq kit poly A capture KAPA RNA hyperIllumina San Diego CA USA; was utilized; 100ng of total input muscle RNA was used in accordance with the manufacturer’s protocol. High through put RNA sequencing RNAseq was performed at the Queens University Belfast Genomics Core Technology Unit on an Illumina Next SEQ 2000 instruments with the mRNA library sequenced to a minimum depth of 50 million reads using forward stranded PE50 strategy. | tissue:Muscle|condition:Torpor+radiation|radiation cgy:32.64|temperature c:18.5|melatonin um:24 | GSM6927789 | GSM6927789: 18 F1 24 Rad; Danio rerio; RNA Seq | GSM6927789 r1 | GSM6927789 | 1 | Total mRNA was extracted from liver tissue of the zebrafish using Qiagen's miRNeasy Mini kit Qiagen Hilden Germany. To prepare mRNA seq kit poly A capture KAPA RNA hyperIllumina San Diego CA USA; was utilized; 100ng of total input muscle RNA was used in accordance with the manufacturer's protocol. High through put RNA sequencing RNAseq was performed at the Queens University Belfast Genomics Core Technology Unit on an Illumina Next SEQ 2000 instruments with the mRNA library sequenced to a minimum depth of 50 million reads using forward stranded PE50 strategy. | RNA-Seq | TRANSCRIPTOMIC | cDNA | PAIRED | ILLUMINA | NextSeq 2000 | SRP416971 | loader:fastq load.py | PN0320_0009_S9_L001_R1_001.fastq.gz PN0320_0009_S9_L001_R2_001.fastq.gz | fastq fastq | 2137718215.0 | 21176234.0 | GSM6927789 r1 | 0:50.44 1:50.51 | A:589518415;C:468034248;G:471805595;T:608202476;N:157481 | 50 | 50 | 589518415 | 468034248 | 471805595 | 608202476 | 157481 | SRX19001703 | SRS16421810 | SRA1572773 | Queens university Belfast | Queens university Belfast | 2 | 0.95902 | 0.95561 | 0.08555 | 0.08962 | 0.81073 | 0.81363 | 0.64855 | 0.66154 | 51 | 51 | B | B | biological fallback assumption | illumina | nextseq_v2 | unknown | poly_a | unknown | bulk | unknown | unknown | United Kingdom | 2023-01-11 | Undetermined | Undetermined | Muscle | Muscular System | |||||||||||
| 72665 | 72665 | SRR23048174 | SRX19001702 | SRS16421809 | SRP416971 | PRJNA922874 | Transcriptome Profiling Reveals Enhanced Mitochondrial Activity as a Cold Adaptive Strategy to Hypothermia in Zebrafish Muscle | GSE222614 | Transcriptome Analysis | The utilisation of synthetic torpor for interplanetary travel once seemed farfetched. However mounting evidence points to torpor induced protective benefits from the main hazards of space travel namely exposure to radiation and microgravity. To determine the radio protective effects of an induced torpor like state we exploited the ectothermic nature of the Danio rerio zebrafish in reducing their body temperatures to replicate the hypothermic states seen during natural torpor. We also administered melatonin as a sedative to reduce physical activity. Zebrafish were then exposed to low dose radiation 0.3Gy to simulate radiation exposure on long term space missions. Transcriptomic analysis found that radiation exposure led to an upregulation of inflammatory and immune signatures and a differentiation and regeneration phenotype driven by STAT3 and MYOD1 transcription factors. In addition DNA repair processes were downregulated in the muscle two days' post irradiation. The effects of hypothermia led to an increase in mitochondrial translation including genes involved in oxidative phosphorylation and a downregulation of ex tracellular matrix and developmental genes. Upon radiation exposure increases in endoplasmic reticulum stress genes were observed in a torpor+radiation group with downregulation of im mune related and ECM genes. Exposing hypothermic zebrafish to radiation also resulted in a downregulation of ECM and developmental genes however immune/inflammatory related pathways were downregulated in contrast to that observed in the radiation only group. A cross species comparison was performed with the muscle of hibernating Ursus arctos horribilis brown bear to define shared mechanisms of cold tolerance. Shared responses show an upregula tion of protein translation and metabolism of amino acids as well as a hypoxia response with the shared downregulation of glycolysis ECM and developmental genes. Overall design: Transcriptomic analysis of zebrafish muscle assessing the protective effects of induced torpor o… | 18 M2 24 Rad | GSM6927788 | source name:Muscle|tissue:Muscle|condition:Torpor+radiation|geo loc name:missing|collection date:missing | 18 M2 24 Rad | Sequence quality was assessed with FastQC to identify over represented sequences and low quality reads Low quality reads and over represented sequences were removed with Cutadapt The STAR aligner was utilised to align the RNA Seq reads to the zebrafish genome GRCz11 HTSeq was used to determine the number of reads per transcript DESeq2 was used for determination of differentially expressed genes Assembly: zebrafish genome GRCz11 | Muscle | A melatonin group 28.5 melatonin received melatonin daily for 10 days at a concentration of 24 µM for 10 days to reduce locomotion and arousal. A reduced temperature group 18.5 Ctrl received a reduction in ambient temperature by 10°C from 28.5°C to 18.5°C to reduce their metabolism. An induced torpor group 18.5 mel was established with a 10°C reduction in ambient temperature and the addition of 24 µM melatonin. A radiation group was exposed to a total whole body dose of 32.68 cGy.A torpor+radiation group was also established using a cold acclimatised group with melatonin that was also subject to the radiation protocol. | Total mRNA was extracted from liver tissue of the zebrafish using Qiagen’s miRNeasy Mini kit Qiagen Hilden Germany. To prepare mRNA seq kit poly A capture KAPA RNA hyperIllumina San Diego CA USA; was utilized; 100ng of total input muscle RNA was used in accordance with the manufacturer’s protocol. High through put RNA sequencing RNAseq was performed at the Queens University Belfast Genomics Core Technology Unit on an Illumina Next SEQ 2000 instruments with the mRNA library sequenced to a minimum depth of 50 million reads using forward stranded PE50 strategy. | tissue:Muscle|condition:Torpor+radiation|radiation cgy:32.64|temperature c:18.5|melatonin um:24 | GSM6927788 | GSM6927788: 18 M2 24 Rad; Danio rerio; RNA Seq | GSM6927788 r1 | GSM6927788 | 1 | Total mRNA was extracted from liver tissue of the zebrafish using Qiagen's miRNeasy Mini kit Qiagen Hilden Germany. To prepare mRNA seq kit poly A capture KAPA RNA hyperIllumina San Diego CA USA; was utilized; 100ng of total input muscle RNA was used in accordance with the manufacturer's protocol. High through put RNA sequencing RNAseq was performed at the Queens University Belfast Genomics Core Technology Unit on an Illumina Next SEQ 2000 instruments with the mRNA library sequenced to a minimum depth of 50 million reads using forward stranded PE50 strategy. | RNA-Seq | TRANSCRIPTOMIC | cDNA | PAIRED | ILLUMINA | NextSeq 2000 | SRP416971 | loader:fastq load.py | PN0320_008_S8_L001_R1_001.fastq.gz PN0320_008_S8_L001_R2_001.fastq.gz | fastq fastq | 2030494635.0 | 20112784.0 | GSM6927788 r1 | 0:50.44 1:50.51 | A:537958829;C:467846795;G:473301503;T:551248281;N:139227 | 50 | 50 | 537958829 | 467846795 | 473301503 | 551248281 | 139227 | SRX19001702 | SRS16421809 | SRA1572773 | Queens university Belfast | Queens university Belfast | 2 | 0.96799 | 0.96544 | 0.05168 | 0.05576 | 0.82617 | 0.82739 | 0.60829 | 0.60078 | 51 | 51 | B | B | biological fallback assumption | illumina | nextseq_v2 | unknown | poly_a | unknown | bulk | unknown | unknown | United Kingdom | 2023-01-11 | Undetermined | Undetermined | Muscle | Muscular System | |||||||||||
| 72666 | 72666 | SRR23048175 | SRX19001701 | SRS16421808 | SRP416971 | PRJNA922874 | Transcriptome Profiling Reveals Enhanced Mitochondrial Activity as a Cold Adaptive Strategy to Hypothermia in Zebrafish Muscle | GSE222614 | Transcriptome Analysis | The utilisation of synthetic torpor for interplanetary travel once seemed farfetched. However mounting evidence points to torpor induced protective benefits from the main hazards of space travel namely exposure to radiation and microgravity. To determine the radio protective effects of an induced torpor like state we exploited the ectothermic nature of the Danio rerio zebrafish in reducing their body temperatures to replicate the hypothermic states seen during natural torpor. We also administered melatonin as a sedative to reduce physical activity. Zebrafish were then exposed to low dose radiation 0.3Gy to simulate radiation exposure on long term space missions. Transcriptomic analysis found that radiation exposure led to an upregulation of inflammatory and immune signatures and a differentiation and regeneration phenotype driven by STAT3 and MYOD1 transcription factors. In addition DNA repair processes were downregulated in the muscle two days' post irradiation. The effects of hypothermia led to an increase in mitochondrial translation including genes involved in oxidative phosphorylation and a downregulation of ex tracellular matrix and developmental genes. Upon radiation exposure increases in endoplasmic reticulum stress genes were observed in a torpor+radiation group with downregulation of im mune related and ECM genes. Exposing hypothermic zebrafish to radiation also resulted in a downregulation of ECM and developmental genes however immune/inflammatory related pathways were downregulated in contrast to that observed in the radiation only group. A cross species comparison was performed with the muscle of hibernating Ursus arctos horribilis brown bear to define shared mechanisms of cold tolerance. Shared responses show an upregula tion of protein translation and metabolism of amino acids as well as a hypoxia response with the shared downregulation of glycolysis ECM and developmental genes. Overall design: Transcriptomic analysis of zebrafish muscle assessing the protective effects of induced torpor o… | 28.5 F3 Ctrl NoRad | GSM6927787 | source name:Muscle|tissue:Muscle|condition:Control|geo loc name:missing|collection date:missing | 28.5 F3 Ctrl NoRad | Sequence quality was assessed with FastQC to identify over represented sequences and low quality reads Low quality reads and over represented sequences were removed with Cutadapt The STAR aligner was utilised to align the RNA Seq reads to the zebrafish genome GRCz11 HTSeq was used to determine the number of reads per transcript DESeq2 was used for determination of differentially expressed genes Assembly: zebrafish genome GRCz11 | Muscle | A melatonin group 28.5 melatonin received melatonin daily for 10 days at a concentration of 24 µM for 10 days to reduce locomotion and arousal. A reduced temperature group 18.5 Ctrl received a reduction in ambient temperature by 10°C from 28.5°C to 18.5°C to reduce their metabolism. An induced torpor group 18.5 mel was established with a 10°C reduction in ambient temperature and the addition of 24 µM melatonin. A radiation group was exposed to a total whole body dose of 32.68 cGy.A torpor+radiation group was also established using a cold acclimatised group with melatonin that was also subject to the radiation protocol. | Total mRNA was extracted from liver tissue of the zebrafish using Qiagen’s miRNeasy Mini kit Qiagen Hilden Germany. To prepare mRNA seq kit poly A capture KAPA RNA hyperIllumina San Diego CA USA; was utilized; 100ng of total input muscle RNA was used in accordance with the manufacturer’s protocol. High through put RNA sequencing RNAseq was performed at the Queens University Belfast Genomics Core Technology Unit on an Illumina Next SEQ 2000 instruments with the mRNA library sequenced to a minimum depth of 50 million reads using forward stranded PE50 strategy. | tissue:Muscle|condition:Control|radiation cgy:0|temperature c:28.5|melatonin um:0 | GSM6927787 | GSM6927787: 28.5 F3 Ctrl NoRad; Danio rerio; RNA Seq | GSM6927787 r1 | GSM6927787 | 1 | Total mRNA was extracted from liver tissue of the zebrafish using Qiagen's miRNeasy Mini kit Qiagen Hilden Germany. To prepare mRNA seq kit poly A capture KAPA RNA hyperIllumina San Diego CA USA; was utilized; 100ng of total input muscle RNA was used in accordance with the manufacturer's protocol. High through put RNA sequencing RNAseq was performed at the Queens University Belfast Genomics Core Technology Unit on an Illumina Next SEQ 2000 instruments with the mRNA library sequenced to a minimum depth of 50 million reads using forward stranded PE50 strategy. | RNA-Seq | TRANSCRIPTOMIC | cDNA | PAIRED | ILLUMINA | NextSeq 2000 | SRP416971 | loader:fastq load.py | PN0320_0006_S6_L001_R1_001.fastq.gz PN0320_0006_S6_L001_R2_001.fastq.gz | fastq fastq | 1800412241.0 | 17839207.0 | GSM6927787 r1 | 0:50.41 1:50.51 | A:462759635;C:430537770;G:433332403;T:473582116;N:200317 | 50 | 50 | 462759635 | 430537770 | 433332403 | 473582116 | 200317 | SRX19001701 | SRS16421808 | SRA1572773 | Queens university Belfast | Queens university Belfast | 2 | 0.97029 | 0.96749 | 0.06652 | 0.06984 | 0.82051 | 0.82274 | 0.59697 | 0.59781 | 51 | 51 | B | B | biological fallback assumption | illumina | nextseq_v2 | unknown | poly_a | unknown | bulk | unknown | unknown | United Kingdom | 2023-01-11 | Undetermined | Undetermined | Muscle | Muscular System | |||||||||||
| 72667 | 72667 | SRR23048176 | SRX19001700 | SRS16421807 | SRP416971 | PRJNA922874 | Transcriptome Profiling Reveals Enhanced Mitochondrial Activity as a Cold Adaptive Strategy to Hypothermia in Zebrafish Muscle | GSE222614 | Transcriptome Analysis | The utilisation of synthetic torpor for interplanetary travel once seemed farfetched. However mounting evidence points to torpor induced protective benefits from the main hazards of space travel namely exposure to radiation and microgravity. To determine the radio protective effects of an induced torpor like state we exploited the ectothermic nature of the Danio rerio zebrafish in reducing their body temperatures to replicate the hypothermic states seen during natural torpor. We also administered melatonin as a sedative to reduce physical activity. Zebrafish were then exposed to low dose radiation 0.3Gy to simulate radiation exposure on long term space missions. Transcriptomic analysis found that radiation exposure led to an upregulation of inflammatory and immune signatures and a differentiation and regeneration phenotype driven by STAT3 and MYOD1 transcription factors. In addition DNA repair processes were downregulated in the muscle two days' post irradiation. The effects of hypothermia led to an increase in mitochondrial translation including genes involved in oxidative phosphorylation and a downregulation of ex tracellular matrix and developmental genes. Upon radiation exposure increases in endoplasmic reticulum stress genes were observed in a torpor+radiation group with downregulation of im mune related and ECM genes. Exposing hypothermic zebrafish to radiation also resulted in a downregulation of ECM and developmental genes however immune/inflammatory related pathways were downregulated in contrast to that observed in the radiation only group. A cross species comparison was performed with the muscle of hibernating Ursus arctos horribilis brown bear to define shared mechanisms of cold tolerance. Shared responses show an upregula tion of protein translation and metabolism of amino acids as well as a hypoxia response with the shared downregulation of glycolysis ECM and developmental genes. Overall design: Transcriptomic analysis of zebrafish muscle assessing the protective effects of induced torpor o… | 28.5 F7 Ctrl NoRad | GSM6927786 | source name:Muscle|tissue:Muscle|condition:Control|geo loc name:missing|collection date:missing | 28.5 F7 Ctrl NoRad | Sequence quality was assessed with FastQC to identify over represented sequences and low quality reads Low quality reads and over represented sequences were removed with Cutadapt The STAR aligner was utilised to align the RNA Seq reads to the zebrafish genome GRCz11 HTSeq was used to determine the number of reads per transcript DESeq2 was used for determination of differentially expressed genes Assembly: zebrafish genome GRCz11 | Muscle | A melatonin group 28.5 melatonin received melatonin daily for 10 days at a concentration of 24 µM for 10 days to reduce locomotion and arousal. A reduced temperature group 18.5 Ctrl received a reduction in ambient temperature by 10°C from 28.5°C to 18.5°C to reduce their metabolism. An induced torpor group 18.5 mel was established with a 10°C reduction in ambient temperature and the addition of 24 µM melatonin. A radiation group was exposed to a total whole body dose of 32.68 cGy.A torpor+radiation group was also established using a cold acclimatised group with melatonin that was also subject to the radiation protocol. | Total mRNA was extracted from liver tissue of the zebrafish using Qiagen’s miRNeasy Mini kit Qiagen Hilden Germany. To prepare mRNA seq kit poly A capture KAPA RNA hyperIllumina San Diego CA USA; was utilized; 100ng of total input muscle RNA was used in accordance with the manufacturer’s protocol. High through put RNA sequencing RNAseq was performed at the Queens University Belfast Genomics Core Technology Unit on an Illumina Next SEQ 2000 instruments with the mRNA library sequenced to a minimum depth of 50 million reads using forward stranded PE50 strategy. | tissue:Muscle|condition:Control|radiation cgy:0|temperature c:28.5|melatonin um:0 | GSM6927786 | GSM6927786: 28.5 F7 Ctrl NoRad; Danio rerio; RNA Seq | GSM6927786 r1 | GSM6927786 | 1 | Total mRNA was extracted from liver tissue of the zebrafish using Qiagen's miRNeasy Mini kit Qiagen Hilden Germany. To prepare mRNA seq kit poly A capture KAPA RNA hyperIllumina San Diego CA USA; was utilized; 100ng of total input muscle RNA was used in accordance with the manufacturer's protocol. High through put RNA sequencing RNAseq was performed at the Queens University Belfast Genomics Core Technology Unit on an Illumina Next SEQ 2000 instruments with the mRNA library sequenced to a minimum depth of 50 million reads using forward stranded PE50 strategy. | RNA-Seq | TRANSCRIPTOMIC | cDNA | PAIRED | ILLUMINA | NextSeq 2000 | SRP416971 | loader:fastq load.py | PN0320_0005_S5_L001_R1_001.fastq.gz PN0320_0005_S5_L001_R2_001.fastq.gz | fastq fastq | 2139428158.0 | 21192983.0 | GSM6927786 r1 | 0:50.43 1:50.52 | A:553052484;C:508236266;G:511711831;T:566255672;N:171905 | 50 | 50 | 553052484 | 508236266 | 511711831 | 566255672 | 171905 | SRX19001700 | SRS16421807 | SRA1572773 | Queens university Belfast | Queens university Belfast | 2 | 0.96864 | 0.96586 | 0.05444 | 0.05784 | 0.82589 | 0.82824 | 0.59491 | 0.5971 | 51 | 51 | B | B | biological fallback assumption | illumina | nextseq_v2 | unknown | poly_a | unknown | bulk | unknown | unknown | United Kingdom | 2023-01-11 | Undetermined | Undetermined | Muscle | Muscular System | |||||||||||
| 72668 | 72668 | SRR23048177 | SRX19001699 | SRS16421806 | SRP416971 | PRJNA922874 | Transcriptome Profiling Reveals Enhanced Mitochondrial Activity as a Cold Adaptive Strategy to Hypothermia in Zebrafish Muscle | GSE222614 | Transcriptome Analysis | The utilisation of synthetic torpor for interplanetary travel once seemed farfetched. However mounting evidence points to torpor induced protective benefits from the main hazards of space travel namely exposure to radiation and microgravity. To determine the radio protective effects of an induced torpor like state we exploited the ectothermic nature of the Danio rerio zebrafish in reducing their body temperatures to replicate the hypothermic states seen during natural torpor. We also administered melatonin as a sedative to reduce physical activity. Zebrafish were then exposed to low dose radiation 0.3Gy to simulate radiation exposure on long term space missions. Transcriptomic analysis found that radiation exposure led to an upregulation of inflammatory and immune signatures and a differentiation and regeneration phenotype driven by STAT3 and MYOD1 transcription factors. In addition DNA repair processes were downregulated in the muscle two days' post irradiation. The effects of hypothermia led to an increase in mitochondrial translation including genes involved in oxidative phosphorylation and a downregulation of ex tracellular matrix and developmental genes. Upon radiation exposure increases in endoplasmic reticulum stress genes were observed in a torpor+radiation group with downregulation of im mune related and ECM genes. Exposing hypothermic zebrafish to radiation also resulted in a downregulation of ECM and developmental genes however immune/inflammatory related pathways were downregulated in contrast to that observed in the radiation only group. A cross species comparison was performed with the muscle of hibernating Ursus arctos horribilis brown bear to define shared mechanisms of cold tolerance. Shared responses show an upregula tion of protein translation and metabolism of amino acids as well as a hypoxia response with the shared downregulation of glycolysis ECM and developmental genes. Overall design: Transcriptomic analysis of zebrafish muscle assessing the protective effects of induced torpor o… | 28.5 F1 Ctrl Rad | GSM6927785 | source name:Muscle|tissue:Muscle|condition:Radiation|geo loc name:missing|collection date:missing | 28.5 F1 Ctrl Rad | Sequence quality was assessed with FastQC to identify over represented sequences and low quality reads Low quality reads and over represented sequences were removed with Cutadapt The STAR aligner was utilised to align the RNA Seq reads to the zebrafish genome GRCz11 HTSeq was used to determine the number of reads per transcript DESeq2 was used for determination of differentially expressed genes Assembly: zebrafish genome GRCz11 | Muscle | A melatonin group 28.5 melatonin received melatonin daily for 10 days at a concentration of 24 µM for 10 days to reduce locomotion and arousal. A reduced temperature group 18.5 Ctrl received a reduction in ambient temperature by 10°C from 28.5°C to 18.5°C to reduce their metabolism. An induced torpor group 18.5 mel was established with a 10°C reduction in ambient temperature and the addition of 24 µM melatonin. A radiation group was exposed to a total whole body dose of 32.68 cGy.A torpor+radiation group was also established using a cold acclimatised group with melatonin that was also subject to the radiation protocol. | Total mRNA was extracted from liver tissue of the zebrafish using Qiagen’s miRNeasy Mini kit Qiagen Hilden Germany. To prepare mRNA seq kit poly A capture KAPA RNA hyperIllumina San Diego CA USA; was utilized; 100ng of total input muscle RNA was used in accordance with the manufacturer’s protocol. High through put RNA sequencing RNAseq was performed at the Queens University Belfast Genomics Core Technology Unit on an Illumina Next SEQ 2000 instruments with the mRNA library sequenced to a minimum depth of 50 million reads using forward stranded PE50 strategy. | tissue:Muscle|condition:Radiation|radiation cgy:32.64|temperature c:28.5|melatonin um:0 | GSM6927785 | GSM6927785: 28.5 F1 Ctrl Rad; Danio rerio; RNA Seq | GSM6927785 r1 | GSM6927785 | 1 | Total mRNA was extracted from liver tissue of the zebrafish using Qiagen's miRNeasy Mini kit Qiagen Hilden Germany. To prepare mRNA seq kit poly A capture KAPA RNA hyperIllumina San Diego CA USA; was utilized; 100ng of total input muscle RNA was used in accordance with the manufacturer's protocol. High through put RNA sequencing RNAseq was performed at the Queens University Belfast Genomics Core Technology Unit on an Illumina Next SEQ 2000 instruments with the mRNA library sequenced to a minimum depth of 50 million reads using forward stranded PE50 strategy. | RNA-Seq | TRANSCRIPTOMIC | cDNA | PAIRED | ILLUMINA | NextSeq 2000 | SRP416971 | loader:fastq load.py | PN0320_0003_S3_L001_R1_001.fastq.gz PN0320_0003_S3_L001_R2_001.fastq.gz | fastq fastq | 1891546117.0 | 18735987.0 | GSM6927785 r1 | 0:50.44 1:50.52 | A:502125154;C:434363680;G:438899220;T:516030974;N:127089 | 50 | 50 | 502125154 | 434363680 | 438899220 | 516030974 | 127089 | SRX19001699 | SRS16421806 | SRA1572773 | Queens university Belfast | Queens university Belfast | 2 | 0.96654 | 0.9638 | 0.05566 | 0.06014 | 0.8239 | 0.8266 | 0.62793 | 0.63121 | 47 | 51 | B | B | biological fallback assumption | illumina | nextseq_v2 | unknown | poly_a | unknown | bulk | unknown | unknown | United Kingdom | 2023-01-11 | Undetermined | Undetermined | Muscle | Muscular System | |||||||||||
| 72669 | 72669 | SRR23048178 | SRX19001698 | SRS16421805 | SRP416971 | PRJNA922874 | Transcriptome Profiling Reveals Enhanced Mitochondrial Activity as a Cold Adaptive Strategy to Hypothermia in Zebrafish Muscle | GSE222614 | Transcriptome Analysis | The utilisation of synthetic torpor for interplanetary travel once seemed farfetched. However mounting evidence points to torpor induced protective benefits from the main hazards of space travel namely exposure to radiation and microgravity. To determine the radio protective effects of an induced torpor like state we exploited the ectothermic nature of the Danio rerio zebrafish in reducing their body temperatures to replicate the hypothermic states seen during natural torpor. We also administered melatonin as a sedative to reduce physical activity. Zebrafish were then exposed to low dose radiation 0.3Gy to simulate radiation exposure on long term space missions. Transcriptomic analysis found that radiation exposure led to an upregulation of inflammatory and immune signatures and a differentiation and regeneration phenotype driven by STAT3 and MYOD1 transcription factors. In addition DNA repair processes were downregulated in the muscle two days' post irradiation. The effects of hypothermia led to an increase in mitochondrial translation including genes involved in oxidative phosphorylation and a downregulation of ex tracellular matrix and developmental genes. Upon radiation exposure increases in endoplasmic reticulum stress genes were observed in a torpor+radiation group with downregulation of im mune related and ECM genes. Exposing hypothermic zebrafish to radiation also resulted in a downregulation of ECM and developmental genes however immune/inflammatory related pathways were downregulated in contrast to that observed in the radiation only group. A cross species comparison was performed with the muscle of hibernating Ursus arctos horribilis brown bear to define shared mechanisms of cold tolerance. Shared responses show an upregula tion of protein translation and metabolism of amino acids as well as a hypoxia response with the shared downregulation of glycolysis ECM and developmental genes. Overall design: Transcriptomic analysis of zebrafish muscle assessing the protective effects of induced torpor o… | 28.5 F2 Ctrl Rad | GSM6927784 | source name:Muscle|tissue:Muscle|condition:Radiation|geo loc name:missing|collection date:missing | 28.5 F2 Ctrl Rad | Sequence quality was assessed with FastQC to identify over represented sequences and low quality reads Low quality reads and over represented sequences were removed with Cutadapt The STAR aligner was utilised to align the RNA Seq reads to the zebrafish genome GRCz11 HTSeq was used to determine the number of reads per transcript DESeq2 was used for determination of differentially expressed genes Assembly: zebrafish genome GRCz11 | Muscle | A melatonin group 28.5 melatonin received melatonin daily for 10 days at a concentration of 24 µM for 10 days to reduce locomotion and arousal. A reduced temperature group 18.5 Ctrl received a reduction in ambient temperature by 10°C from 28.5°C to 18.5°C to reduce their metabolism. An induced torpor group 18.5 mel was established with a 10°C reduction in ambient temperature and the addition of 24 µM melatonin. A radiation group was exposed to a total whole body dose of 32.68 cGy.A torpor+radiation group was also established using a cold acclimatised group with melatonin that was also subject to the radiation protocol. | Total mRNA was extracted from liver tissue of the zebrafish using Qiagen’s miRNeasy Mini kit Qiagen Hilden Germany. To prepare mRNA seq kit poly A capture KAPA RNA hyperIllumina San Diego CA USA; was utilized; 100ng of total input muscle RNA was used in accordance with the manufacturer’s protocol. High through put RNA sequencing RNAseq was performed at the Queens University Belfast Genomics Core Technology Unit on an Illumina Next SEQ 2000 instruments with the mRNA library sequenced to a minimum depth of 50 million reads using forward stranded PE50 strategy. | tissue:Muscle|condition:Radiation|radiation cgy:32.64|temperature c:28.5|melatonin um:0 | GSM6927784 | GSM6927784: 28.5 F2 Ctrl Rad; Danio rerio; RNA Seq | GSM6927784 r1 | GSM6927784 | 1 | Total mRNA was extracted from liver tissue of the zebrafish using Qiagen's miRNeasy Mini kit Qiagen Hilden Germany. To prepare mRNA seq kit poly A capture KAPA RNA hyperIllumina San Diego CA USA; was utilized; 100ng of total input muscle RNA was used in accordance with the manufacturer's protocol. High through put RNA sequencing RNAseq was performed at the Queens University Belfast Genomics Core Technology Unit on an Illumina Next SEQ 2000 instruments with the mRNA library sequenced to a minimum depth of 50 million reads using forward stranded PE50 strategy. | RNA-Seq | TRANSCRIPTOMIC | cDNA | PAIRED | ILLUMINA | NextSeq 2000 | SRP416971 | loader:fastq load.py | PN0320_0002_S2_L001_R1_001.fastq.gz PN0320_0002_S2_L001_R2_001.fastq.gz | fastq fastq | 1993571088.0 | 19751994.0 | GSM6927784 r1 | 0:50.42 1:50.51 | A:525369176;C:463140815;G:465749997;T:539110618;N:200482 | 50 | 50 | 525369176 | 463140815 | 465749997 | 539110618 | 200482 | SRX19001698 | SRS16421805 | SRA1572773 | Queens university Belfast | Queens university Belfast | 2 | 0.96751 | 0.96513 | 0.05986 | 0.06243 | 0.82522 | 0.82704 | 0.61116 | 0.61156 | 50 | 51 | B | B | biological fallback assumption | illumina | nextseq_v2 | unknown | poly_a | unknown | bulk | unknown | unknown | United Kingdom | 2023-01-11 | Undetermined | Undetermined | Muscle | Muscular System | |||||||||||
| 72670 | 72670 | SRR23048179 | SRX19001697 | SRS16421804 | SRP416971 | PRJNA922874 | Transcriptome Profiling Reveals Enhanced Mitochondrial Activity as a Cold Adaptive Strategy to Hypothermia in Zebrafish Muscle | GSE222614 | Transcriptome Analysis | The utilisation of synthetic torpor for interplanetary travel once seemed farfetched. However mounting evidence points to torpor induced protective benefits from the main hazards of space travel namely exposure to radiation and microgravity. To determine the radio protective effects of an induced torpor like state we exploited the ectothermic nature of the Danio rerio zebrafish in reducing their body temperatures to replicate the hypothermic states seen during natural torpor. We also administered melatonin as a sedative to reduce physical activity. Zebrafish were then exposed to low dose radiation 0.3Gy to simulate radiation exposure on long term space missions. Transcriptomic analysis found that radiation exposure led to an upregulation of inflammatory and immune signatures and a differentiation and regeneration phenotype driven by STAT3 and MYOD1 transcription factors. In addition DNA repair processes were downregulated in the muscle two days' post irradiation. The effects of hypothermia led to an increase in mitochondrial translation including genes involved in oxidative phosphorylation and a downregulation of ex tracellular matrix and developmental genes. Upon radiation exposure increases in endoplasmic reticulum stress genes were observed in a torpor+radiation group with downregulation of im mune related and ECM genes. Exposing hypothermic zebrafish to radiation also resulted in a downregulation of ECM and developmental genes however immune/inflammatory related pathways were downregulated in contrast to that observed in the radiation only group. A cross species comparison was performed with the muscle of hibernating Ursus arctos horribilis brown bear to define shared mechanisms of cold tolerance. Shared responses show an upregula tion of protein translation and metabolism of amino acids as well as a hypoxia response with the shared downregulation of glycolysis ECM and developmental genes. Overall design: Transcriptomic analysis of zebrafish muscle assessing the protective effects of induced torpor o… | 28.5 F7 Ctrl Rad | GSM6927783 | source name:Muscle|tissue:Muscle|condition:Radiation|geo loc name:missing|collection date:missing | 28.5 F7 Ctrl Rad | Sequence quality was assessed with FastQC to identify over represented sequences and low quality reads Low quality reads and over represented sequences were removed with Cutadapt The STAR aligner was utilised to align the RNA Seq reads to the zebrafish genome GRCz11 HTSeq was used to determine the number of reads per transcript DESeq2 was used for determination of differentially expressed genes Assembly: zebrafish genome GRCz11 | Muscle | A melatonin group 28.5 melatonin received melatonin daily for 10 days at a concentration of 24 µM for 10 days to reduce locomotion and arousal. A reduced temperature group 18.5 Ctrl received a reduction in ambient temperature by 10°C from 28.5°C to 18.5°C to reduce their metabolism. An induced torpor group 18.5 mel was established with a 10°C reduction in ambient temperature and the addition of 24 µM melatonin. A radiation group was exposed to a total whole body dose of 32.68 cGy.A torpor+radiation group was also established using a cold acclimatised group with melatonin that was also subject to the radiation protocol. | Total mRNA was extracted from liver tissue of the zebrafish using Qiagen’s miRNeasy Mini kit Qiagen Hilden Germany. To prepare mRNA seq kit poly A capture KAPA RNA hyperIllumina San Diego CA USA; was utilized; 100ng of total input muscle RNA was used in accordance with the manufacturer’s protocol. High through put RNA sequencing RNAseq was performed at the Queens University Belfast Genomics Core Technology Unit on an Illumina Next SEQ 2000 instruments with the mRNA library sequenced to a minimum depth of 50 million reads using forward stranded PE50 strategy. | tissue:Muscle|condition:Radiation|radiation cgy:32.64|temperature c:28.5|melatonin um:0 | GSM6927783 | GSM6927783: 28.5 F7 Ctrl Rad; Danio rerio; RNA Seq | GSM6927783 r1 | GSM6927783 | 1 | Total mRNA was extracted from liver tissue of the zebrafish using Qiagen's miRNeasy Mini kit Qiagen Hilden Germany. To prepare mRNA seq kit poly A capture KAPA RNA hyperIllumina San Diego CA USA; was utilized; 100ng of total input muscle RNA was used in accordance with the manufacturer's protocol. High through put RNA sequencing RNAseq was performed at the Queens University Belfast Genomics Core Technology Unit on an Illumina Next SEQ 2000 instruments with the mRNA library sequenced to a minimum depth of 50 million reads using forward stranded PE50 strategy. | RNA-Seq | TRANSCRIPTOMIC | cDNA | PAIRED | ILLUMINA | NextSeq 2000 | SRP416971 | loader:fastq load.py | PN0320_0001_S1_L001_R1_001.fastq.gz PN0320_0001_S1_L001_R2_001.fastq.gz | fastq fastq | 2532727358.0 | 25091050.0 | GSM6927783 r1 | 0:50.42 1:50.52 | A:652264108;C:605047979;G:607887475;T:667327837;N:199959 | 50 | 50 | 652264108 | 605047979 | 607887475 | 667327837 | 199959 | SRX19001697 | SRS16421804 | SRA1572773 | Queens university Belfast | Queens university Belfast | 2 | 0.97088 | 0.96851 | 0.05232 | 0.05605 | 0.83704 | 0.83855 | 0.51127 | 0.57751 | 51 | 50 | B | B | biological fallback assumption | illumina | nextseq_v2 | unknown | poly_a | unknown | bulk | unknown | unknown | United Kingdom | 2023-01-11 | Undetermined | Undetermined | Muscle | Muscular System |
Advanced export
JSON shape: default, array, newline-delimited
CREATE TABLE run_metadata("run.accession" VARCHAR, "experiment.accession" VARCHAR, "sample.accession" VARCHAR, "study.accession" VARCHAR, bioproject VARCHAR, "study.title" VARCHAR, "study.alias" VARCHAR, "study.type" VARCHAR, "study.abstract" VARCHAR, "study.attributes" VARCHAR, "study.PMIDs" VARCHAR, "sample.description" VARCHAR, "sample.title" VARCHAR, "sample.alias" VARCHAR, "sample.centername" VARCHAR, "sample.attributes" VARCHAR, "GEOsample.title" VARCHAR, "GEOsample.dataprocessing" VARCHAR, "GEOsample.source" VARCHAR, "GEOsample.treatmentprotocol" VARCHAR, "GEOsample.extractprotocol" VARCHAR, "GEOsample.growthprotocol" VARCHAR, "GEOsample.characteristics" VARCHAR, "GEOsample.accession" VARCHAR, "experiment.title" VARCHAR, "experiment.alias" VARCHAR, "experiment.library_name" VARCHAR, "experiment.design_description" VARCHAR, "experiment.library_construction_protocol" VARCHAR, "experiment.attributes" VARCHAR, "experiment.library_strategy" VARCHAR, "experiment.library_source" VARCHAR, "experiment.library_selection" VARCHAR, "experiment.library_layout" VARCHAR, "experiment.platform" VARCHAR, "experiment.instrument_model" VARCHAR, "experiment.spot_descriptor" VARCHAR, "experiment.study_ref" VARCHAR, "run.title" VARCHAR, "run.attributes" VARCHAR, "run.filename" VARCHAR, "run.semantic_name" VARCHAR, "run.total_bases" DOUBLE, "run.total_spots" DOUBLE, "run.alias" VARCHAR, "run.read_lengths" VARCHAR, "run.base_counts" VARCHAR, "run.r1_length" BIGINT, "run.r2_length" BIGINT, "run.r3_length" BIGINT, "run.r4_length" BIGINT, "run.Acount" BIGINT, "run.Ccount" BIGINT, "run.Gcount" BIGINT, "run.Tcount" BIGINT, "run.Ncount" BIGINT, "run.experiment" VARCHAR, "run.pool_member" VARCHAR, "submission.accession" VARCHAR, "submission.srasource" VARCHAR, "submission.bioprojectsource" VARCHAR, "seqdetective.n_mates" BIGINT, "seqdetective.mapping_rate.mate1" DOUBLE, "seqdetective.mapping_rate.mate2" DOUBLE, "seqdetective.nofeature_rate.mate1" DOUBLE, "seqdetective.nofeature_rate.mate2" DOUBLE, "seqdetective.sparsity.mate1" DOUBLE, "seqdetective.sparsity.mate2" DOUBLE, "seqdetective.pos_strand_rate.mate1" DOUBLE, "seqdetective.pos_strand_rate.mate2" DOUBLE, "seqdetective.readlen.mate1" BIGINT, "seqdetective.readlen.mate2" BIGINT, "seqdetective.judgement.mate1" VARCHAR, "seqdetective.judgement.mate2" VARCHAR, "seqdetective.judgement.reason" VARCHAR, platform_family VARCHAR, instrument_generation VARCHAR, read_bias VARCHAR, selection_class VARCHAR, prep_kit VARCHAR, sc_or_bulk VARCHAR, tech_class VARCHAR, technology VARCHAR, tech_variant VARCHAR, "submission.bioprojectsource.country" VARCHAR, earliest_date DATE, devstage_curation VARCHAR, devstage_curation_coarse VARCHAR, tissue_curation VARCHAR, tissue_curation_coarse VARCHAR);;
CREATE INDEX idx_run_bioproject ON run_metadata(bioproject);;
CREATE INDEX idx_run_run_accession ON run_metadata("run.accession");;