'Candidatus Methanophagales' (ANME-1) is an order-level clade of archaea responsible for anaerobic methane oxidation in deep-sea sediments. The diversity, ecology and evolution of ANME-1 remain poorly understood. In this study, we use metagenomics on deep-sea hydrothermal samples to expand ANME-1 diversity and uncover the effect of virus-host dynamics. Phylogenetic analyses reveal a deep-branching, thermophilic family, 'Candidatus Methanospirareceae', closely related to short-chain alkane oxidizers. Global phylogeny and near-complete genomes show that hydrogen metabolism within ANME-1 is an ancient trait that was vertically inherited but differentially lost during lineage diversification. Metagenomics also uncovered 16 undescribed virus families so far exclusively targeting ANME-1 archaea, showing unique structural and replicative signatures. The expansive ANME-1 virome contains a metabolic gene repertoire that can influence host ecology and evolution through virus-mediated gene displacement. Our results suggest an evolutionary continuum between anaerobic methane and short-chain alkane oxidizers and underscore the effects of viruses on the dynamics and evolution of methane-driven ecosystems.
Evolutionary diversification of methanotrophic ANME-1 archaea and their expansive virome.
甲烷氧化古菌 ANME-1 的进化多样化及其庞大的病毒组
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作者:Laso-Pérez Rafael, Wu Fabai, Crémière Antoine, Speth Daan R, Magyar John S, Zhao Kehan, Krupovic Mart, Orphan Victoria J
| 期刊: | Nature Microbiology | 影响因子: | 19.400 |
| 时间: | 2023 | 起止号: | 2023 Feb;8(2):231-245 |
| doi: | 10.1038/s41564-022-01297-4 | 研究方向: | 微生物学 |
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