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SRX14670123: GSM5984951: R+V_P8_rep1; Vibrio hepatarius; Ruegeria pomeroyi DSS-3; RNA-Seq
4 ILLUMINA (NextSeq 500) runs: 14.7M spots, 1.1G bases, 390.4Mb downloads

External Id: GSM5984951_r1
Submitted by: Moran, Department of Marine Sciences, University of Georgia
Study: Transcriptome of a Synthetic Microbial Community
show Abstracthide Abstract
To explore the ecological basis for multiple bacteria species coexistence, we set up three bacteria (Ruegeria pomeroyi DSS-3, Vibrio hepatarius HF70, and Thalassospira sp. HF15), either in monoculture or in co-cultures (in all combinations) for a 8 day growth-dilution cycles. At ~15h of day 4 (P4) and day 8 (P8) of growth-dilution cycles, we examined transcriptomic responses of these bacteria. Differential gene expressions were used to generate hypothesis about ecological and physiological responses of one in the presence of another/other bacteria. Overall design: mRNA profile of three bacteria under different conditions Please note that mono-culture samples of three bacterial species were pooled together for RNA-seq library prep and sequencing run.
Sample: R+V_P8_rep1
SAMN27107722 • SRS12434686 • All experiments • All runs
Library:
Name: GSM5984951
Instrument: NextSeq 500
Strategy: RNA-Seq
Source: TRANSCRIPTOMIC
Selection: cDNA
Layout: SINGLE
Construction protocol: RNA was extracted from filters using the ZymoBIOMICS RNA Miniprep Kit (Zymo Research), treated with Turbo DNase (Invitrogen, Waltham, MA, USA), and cleaned using RNA Clean & Concentrator (Zymo Research). Ribosomal rRNA was removed using the NEBNext® rRNA Depletion Kit (NEB, Ipswich, MA, USA). Stranded RNA-seq libraries were prepared and sequenced using an Illumina NextSeq 500 SE75 High Output flow cell at the Georgia Genomics and Bioinformatics Core (University of Georgia). Mono-culture samples of three bacterial species were pooled together for RNA-seq library prep and sequencing run.
Runs: 4 runs, 14.7M spots, 1.1G bases, 390.4Mb
Run# of Spots# of BasesSizePublished
SRR185402493,660,921278.2M96.8Mb2022-08-01
SRR185402503,637,091276.4M95.9Mb2022-08-01
SRR185402513,696,491280.9M99.7Mb2022-08-01
SRR185402523,657,571278M97.9Mb2022-08-01

ID:
20981412

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