Lateral Gene Transfer Drives Metabolic Flexibility in the Anaerobic Methane-Oxidizing Archaeal Family Methanoperedenaceae

Author:

Leu Andy O.1,McIlroy Simon J.12ORCID,Ye Jun1,Parks Donovan H.1,Orphan Victoria J.3,Tyson Gene W.12

Affiliation:

1. Australian Centre for Ecogenomics, School of Chemistry and Molecular Biosciences, University of Queensland, St. Lucia, Australia

2. Centre for Microbiome Research, School of Biomedical Sciences, Queensland University of Technology (QUT), Translational Research Institute, Woolloongabba, Australia

3. Department of Geological and Planetary Sciences, California Institute of Technology, Pasadena, California, USA

Abstract

AOM by microorganisms limits the atmospheric release of the potent greenhouse gas methane and has consequent importance for the global carbon cycle and climate change modeling. While the oxidation of methane coupled to sulfate by consortia of anaerobic methanotrophic (ANME) archaea and bacteria is well documented, several other potential electron acceptors have also been reported to support AOM. In this study, we identify a number of novel respiratory strategies that appear to have been laterally acquired by members of the Methanoperedenaceae , as they are absent from related archaea and other ANME lineages. Expanding the known metabolic potential for members of the Methanoperedenaceae provides important insight into their ecology and suggests their role in linking methane oxidation to several global biogeochemical cycles.

Funder

U.S. Department of Energy

Department of Education and Training | Australian Research Council

Publisher

American Society for Microbiology

Subject

Virology,Microbiology

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