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SRX997544: metagenome SB1 from not soured petroleum reservoir, Schrader bluffer formation, Alaska North Slope
1 ILLUMINA (Illumina MiSeq) run: 17.2M spots, 8.6G bases, 5Gb downloads

Design: DNA was extracted from filters having produced water passed through them using a bead-beating and organic solvent extraction protocol. DNA was purified using a MoBio UltraSoil DNA extraction kit starting by adding Solution S3 to the extract and continuing per the manufacturer’s protocol. DNA was prepared for sequencing by shearing (Covaris) and bead-purifying to roughly 400 bp and then using an Illumina sequencing kit (paired-end, 150 bp reads) for MiSeq instrument. Library preparation was performed by the Yale Center for Genome Analysis.
Submitted by: Lawrence Berkeley National Lab
Study: Alaska oil reservoir Metagenome
show Abstracthide Abstract
Hydrocarbon reservoirs are major sites of methane production and carbon turnover, processes with significant impacts on energy resources and global biogeochemical cycles. We applied a cultivation-independent genomic approach to define microbial community membership and predict roles for specific organisms in biogeochemical transformations in North Slope, Alaska oil fields. Samples were collected from six locations between 1,128 m (24-27°C) and 2,743 m (80 - 83°C) below the surface. Sample complexity decreased with increasing temperature. Bacteria from candidate phyla (CP) were highly represented in the lower temperature zones and to some extent the intermediate temperature zones. Most microorganisms in the intermediate and higher temperature samples were related to previously studied methanogenic and non-methanogenic archaea and thermophilic bacteria. We reconstructed a near-complete genome for an organism sampled from the lower temperature reservoir SB1 for an OD1 population that is present at an abundance level close to that of the dominant Methanosaeta harundinacea population. Consistent with prior findings for members of this lineage, the OD1 genome is small and metabolic predictions support an obligate anaerobic, fermentation-based lifestyle. At moderate abundance in samples were members of other CP bacteria, including TA06, OP11, OP9, Marinimicrobia (SAR406) and OP1. For OP1 we reconstructed the first near-complete genome. Based on the inventory of glycosyl hydrolase genes and the absence of respiratory capacity, we infer that the predominant roles for the OP1 bacterium are fermentation of mannan, cellulose or cell wall carbon polymers and hydrogen cycling. Overall, our results elucidate roles of uncultivated organisms in hydrocarbon reservoir biological processes.
Sample:
SAMN03408292 • SRS911763 • All experiments • All runs
Library:
Name: MPI04_SB1
Instrument: Illumina MiSeq
Strategy: WGS
Source: METAGENOMIC
Selection: RANDOM
Layout: PAIRED
Spot descriptor:
forward251  reverse

Runs: 1 run, 17.2M spots, 8.6G bases, 5Gb
Run# of Spots# of BasesSizePublished
SRR197694817,228,2028.6G5Gb2016-01-01

ID:
1448430

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