Title : Genomic resolution of a cold subsurface aquifer community provides metabolic insights for novel microbes adapted to high CO2 concentrations - Probst_2017_Environ.Microbiol_19_459 |
Author(s) : Probst AJ , Castelle CJ , Singh A , Brown CT , Anantharaman K , Sharon I , Hug LA , Burstein D , Emerson JB , Thomas BC , Banfield JF |
Ref : Environ Microbiol , 19 :459 , 2017 |
Abstract :
As in many deep underground environments, the microbial communities in subsurface high-CO2 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 CO2 -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 CO2 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 CO2 -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 H2 is an important inter-species energy currency even under gaseous CO2 -saturation. Overall, metabolic analyses at the organism level provided insight into the biochemical cycles that support subsurface life under the extreme condition of CO2 saturation. |
PubMedSearch : Probst_2017_Environ.Microbiol_19_459 |
PubMedID: 27112493 |
Gene_locus related to this paper: 9bact-a0a1j5b1a3 , 9delt-a0a1j5dck5 , 9bact-a0a1j4sae3 , 9bact-a0a1j4vix4 , 9bact-a0a1j5a4q9 , 9bact-a0a1j5acn2 , 9bact-a0a1j5ba31 , 9delt-a0a1j4sq21 , 9bact-a0a1j5fm19 , 9delt-a0a1j5edt4 , 9delt-a0a1j5dgg6 , 9gamm-a0a1j5ij09 , 9prot-a0a1j4y0r0 , 9bact-a0a1j4x4y9 , 9bact-a0a1j5b0a6 |
Probst AJ, Castelle CJ, Singh A, Brown CT, Anantharaman K, Sharon I, Hug LA, Burstein D, Emerson JB, Thomas BC, Banfield JF (2017)
Genomic resolution of a cold subsurface aquifer community provides metabolic insights for novel microbes adapted to high CO2 concentrations
Environ Microbiol
19 :459
Probst AJ, Castelle CJ, Singh A, Brown CT, Anantharaman K, Sharon I, Hug LA, Burstein D, Emerson JB, Thomas BC, Banfield JF (2017)
Environ Microbiol
19 :459