Methanotrophy by a Mycobacterium species that dominates a cave microbial ecosystem

Publication date

2022-12

Authors

Van spanning, Rob J. M.
Guan, Qingtian
Melkonian, ChratsISNI 0000000509606743
Gallant, James
Polerecky, L.ISNI 0000000352137263
Flot, Jean-françois
Brandt, Bernd W.
Braster, Martin
Iturbe espinoza, Paul
Aerts, Joost W.

Editors

Advisors

Supervisors

Document Type

Article
Open Access logo

License

taverne

Abstract

So far, only members of the bacterial phyla Proteobacteria and Verrucomicrobia are known to grow methanotrophically under aerobic conditions. Here we report that this metabolic trait is also observed within the Actinobacteria. We enriched and cultivated a methanotrophic Mycobacterium from an extremely acidic biofilm growing on a cave wall at a gaseous chemocline interface between volcanic gases and the Earth's atmosphere. This Mycobacterium, for which we propose the name Candidatus Mycobacterium methanotrophicum, is closely related to well-known obligate pathogens such as M. tuberculosis and M. leprae. Genomic and proteomic analyses revealed that Candidatus M. methanotrophicum expresses a full suite of enzymes required for aerobic growth on methane, including a soluble methane monooxygenase that catalyses the hydroxylation of methane to methanol and enzymes involved in formaldehyde fixation via the ribulose monophosphate pathway. Growth experiments combined with stable isotope probing using 13C-labelled methane confirmed that Candidatus M. methanotrophicum can grow on methane as a sole carbon and energy source. A broader survey based on 16S metabarcoding suggests that species closely related to Candidatus M. methanotrophicum may be abundant in low-pH, high-methane environments.

Keywords

Alcohol-dehydrogenase, Bacteria, Eastern carpathians, Gas, Methane, Monooxygenase gene-cluster, Multiple sequence alignment, Oxidation, Pathways, Tool, Taverne, SDG 3 - Good Health and Well-being

Citation

Van spanning, R J M, Guan, Q, Melkonian, C, Gallant, J, Polerecky, L, Flot, J, Brandt, B W, Braster, M, Iturbe espinoza, P, Aerts, J W, Meima-Franke, M M, Piersma, S R, Bunduc, C M, Ummels, R, Pain, A, Fleming, E J, Van der wel, N N, Gherman, V D, Sarbu, S M, Bodelier, P L E & Bitter, W 2022, 'Methanotrophy by a Mycobacterium species that dominates a cave microbial ecosystem', Nature Reviews Microbiology, vol. 7, no. 12, pp. 2089-2100. https://doi.org/10.1038/s41564-022-01252-3