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Genomic Insight Into the Predominance of Candidate Phylum Atribacteria JS1 Lineage in Marine Sediments. | LitMetric

AI Article Synopsis

  • The Atribacteria JS1 lineage is a significant group of bacteria found in anoxic (oxygen-poor) sediments, particularly where organic material or gas hydrates are present.
  • Research conducted in the Ross Sea, Antarctica, identified Atribacteria JS1 as the most abundant bacterial candidate phylum, comprising up to 40.8% of the local microbial community.
  • Single-cell genomic analysis revealed specific metabolic capabilities of this lineage, suggesting it plays a key role in fermentative processes and interactions with methane-producing organisms in these environments.

Article Abstract

Candidate phylum Atribacteria JS1 lineage is one of the predominant bacterial groups in anoxic subseafloor sediments, especially in organic-rich or gas hydrate-containing sediments. However, due to the lack of axenic culture representatives, metabolic potential and biogeochemical roles of this phylum have remained elusive. Here, we examined the microbial communities of marine sediments of the Ross Sea, Antarctica, and found candidate phylum Atribacteria JS1 lineage was the most abundant candidate phylum accounting for 9.8-40.8% of the bacterial communities with a single dominant operational taxonomic unit (OTU). To elucidate the metabolic potential and ecological function of this species, we applied a single-cell genomic approach and obtained 18 single-cell amplified genomes presumably from a single species that was consistent with the dominant OTU throughout the sediments. The composite genome constructed by co-assembly showed the highest genome completeness among available Atribacteria JS1 genomes. Metabolic reconstruction suggested fermentative potential using various substrates and syntrophic acetate oxidation coupled with hydrogen or formate scavenging methanogens. This metabolic potential supports the predominance of Atribacteria JS1 in anoxic environments expanding our knowledge of the ecological function of this uncultivated group.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC6281690PMC
http://dx.doi.org/10.3389/fmicb.2018.02909DOI Listing

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