Evans_2015_Science_350_434

Reference

Title : Methane metabolism in the archaeal phylum Bathyarchaeota revealed by genome-centric metagenomics - Evans_2015_Science_350_434
Author(s) : Evans PN , Parks DH , Chadwick GL , Robbins SJ , Orphan VJ , Golding SD , Tyson GW
Ref : Science , 350 :434 , 2015
Abstract :

Methanogenic and methanotrophic archaea play important roles in the global flux of methane. Culture-independent approaches are providing deeper insight into the diversity and evolution of methane-metabolizing microorganisms, but, until now, no compelling evidence has existed for methane metabolism in archaea outside the phylum Euryarchaeota. We performed metagenomic sequencing of a deep aquifer, recovering two near-complete genomes belonging to the archaeal phylum Bathyarchaeota (formerly known as the Miscellaneous Crenarchaeotal Group). These genomes contain divergent homologs of the genes necessary for methane metabolism, including those that encode the methyl-coenzyme M reductase (MCR) complex. Additional non-euryarchaeotal MCR-encoding genes identified in a range of environments suggest that unrecognized archaeal lineages may also contribute to global methane cycling. These findings indicate that methane metabolism arose before the last common ancestor of the Euryarchaeota and Bathyarchaeota.

PubMedSearch : Evans_2015_Science_350_434
PubMedID: 26494757
Gene_locus related to this paper: 9arch-a0a0n8pwm8

Related information

Gene_locus 9arch-a0a0n8pwm8

Citations formats

Evans PN, Parks DH, Chadwick GL, Robbins SJ, Orphan VJ, Golding SD, Tyson GW (2015)
Methane metabolism in the archaeal phylum Bathyarchaeota revealed by genome-centric metagenomics
Science 350 :434

Evans PN, Parks DH, Chadwick GL, Robbins SJ, Orphan VJ, Golding SD, Tyson GW (2015)
Science 350 :434