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Here we used soil metagenomics and metatranscriptomics to uncover novel members within the genus Methylobacter . We denote these closely related genomes as members of the lineage OWC Methylobacter . Despite the incredibly high microbial diversity in soils, here we present findings that unexpectedly showed that methane cycling was primarily mediated by a single genus for both methane production (“ Candidatus Methanothrix paradoxum”) and methane consumption (OWC Methylobacter ). Metatranscriptomic analyses revealed that decreased methanotrophic activity rather than increased methanogenic activity possibly contributed to the greater methane emissions that we had previously observed in summer months, findings important for biogeochemical methane models. Although members of this Methylococcales order have been cultivated for decades, multi-omic approaches continue to illuminate the methanotroph phylogenetic and metabolic diversity harbored in terrestrial and marine ecosystems.
Smith et al. (Tue,) studied this question.