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Genomic resolution of a cold subsurface aquifer community provides metabolic insights for novel microbes adapted to high CO 2 concentrations

Alexander J. Probst; Cindy J. Castelle; Andrea Singh; Christopher T. Brown; Karthik Anantharaman; Itai Sharon; Laura A. Hug; David Burstein; Joanne B. Emerson; Brian C. Thomas; Jillian F. Banfield
Environmental Microbiology · Vol. 19, Issue 2 · pp. 459-474 · 2017

Abstract

Summary As in many deep underground environments, the microbial communities in subsurface high‐CO 2 ecosystems remain relatively unexplored. Recent investigations based on single‐gene assays revealed a remarkable variety of organisms from little studied phyla in Crystal Geyser (Utah, USA), a site where deeply sourced CO 2 ‐saturated fluids are erupted at the surface. To provide genomic resolution of the metabolisms of these organisms, we used a novel metagenomic approach to recover 227 high‐quality genomes from 150 microbial species affiliated with 46 different phylum‐level lineages. Bacteria from two novel phylum‐level lineages have the capacity for CO 2 fixation. Analyses of carbon fixation pathways in all studied organisms revealed that the Wood‐Ljungdahl pathway and the Calvin‐Benson‐Bassham Cycle occurred with the highest frequency, whereas the reverse TCA cycle was little used. We infer that this, and selection for form II RuBisCOs, are adaptions to high CO 2 ‐concentrations. However, many autotrophs can also grow mixotrophically, a strategy that confers metabolic versatility. The assignment of 156 hydrogenases to 90 different organisms suggests that H 2 is an important inter‐species energy currency even under gaseous CO 2 ‐saturation. Overall, metabolic analyses at the organism level provided insight into the biochemical cycles that support subsurface life under the extreme condition of CO 2 saturation.

Bibliographic Information

JournalEnvironmental Microbiology
PublisherWiley
Publication Date2017-02-01
Publication Year2017
Volume19
Issue2
Pages459-474
Document TypeJournal Article
Print ISSN1462-2912
eISSN1462-2920
DOI10.1111/1462-2920.13362
SubjectMicrobial Ecology

Access Information

NARA Access Coverage1999-01-01~Current
Journal Homepagehttps://onlinelibrary.wiley.com/loi/14622920
Publisher PageOpen Publisher Page
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