Insights into the ecological roles and evolution of methyl-coenzyme M reductase-containing hot spring Archaea

Author:

Hua Zheng-Shuang,Wang Yu-Lin,Evans Paul N.,Qu Yan-Ni,Goh Kian MauORCID,Rao Yang-ZhiORCID,Qi Yan-Ling,Li Yu-Xian,Huang Min-Jun,Jiao Jian-Yu,Chen Ya-Ting,Mao Yan-Ping,Shu Wen-Sheng,Hozzein WaelORCID,Hedlund Brian P.ORCID,Tyson Gene W.ORCID,Zhang Tong,Li Wen-JunORCID

Abstract

Abstract Several recent studies have shown the presence of genes for the key enzyme associated with archaeal methane/alkane metabolism, methyl-coenzyme M reductase (Mcr), in metagenome-assembled genomes (MAGs) divergent to existing archaeal lineages. Here, we study the mcr-containing archaeal MAGs from several hot springs, which reveal further expansion in the diversity of archaeal organisms performing methane/alkane metabolism. Significantly, an MAG basal to organisms from the phylum Thaumarchaeota that contains mcr genes, but not those for ammonia oxidation or aerobic metabolism, is identified. Together, our phylogenetic analyses and ancestral state reconstructions suggest a mostly vertical evolution of mcrABG genes among methanogens and methanotrophs, along with frequent horizontal gene transfer of mcr genes between alkanotrophs. Analysis of all mcr-containing archaeal MAGs/genomes suggests a hydrothermal origin for these microorganisms based on optimal growth temperature predictions. These results also suggest methane/alkane oxidation or methanogenesis at high temperature likely existed in a common archaeal ancestor.

Funder

National Natural Science Foundation of China

Chinese Ministry of Science and Technology | Department of S and T for Social Development

Publisher

Springer Science and Business Media LLC

Subject

General Physics and Astronomy,General Biochemistry, Genetics and Molecular Biology,General Chemistry

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