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在古菌门 Verstraetearchaeota 中发现了甲基营养型产甲烷作用。

Methylotrophic methanogenesis discovered in the archaeal phylum Verstraetearchaeota.

机构信息

Australian Centre for Ecogenomics, School of Chemistry and Molecular Biosciences, The University of Queensland, St Lucia, Queensland 4072, Australia.

Advanced Water Management Centre, The University of Queensland, St Lucia, Queensland 4072, Australia.

出版信息

Nat Microbiol. 2016 Oct 3;1:16170. doi: 10.1038/nmicrobiol.2016.170.

Abstract

Methanogenesis is the primary biogenic source of methane in the atmosphere and a key contributor to climate change. The long-standing dogma that methanogenesis originated within the Euryarchaeota was recently challenged by the discovery of putative methane-metabolizing genes in members of the Bathyarchaeota, suggesting that methanogenesis may be more phylogenetically widespread than currently appreciated. Here, we present the discovery of divergent methyl-coenzyme M reductase genes in population genomes recovered from anoxic environments with high methane flux that belong to a new archaeal phylum, the Verstraetearchaeota. These archaea encode the genes required for methylotrophic methanogenesis, and may conserve energy using a mechanism similar to that proposed for the obligate H-dependent methylotrophic Methanomassiliicoccales and recently described Candidatus 'Methanofastidiosa'. Our findings indicate that we are only beginning to understand methanogen diversity and support an ancient origin for methane metabolism in the Archaea, which is changing our understanding of the global carbon cycle.

摘要

产甲烷作用是大气中甲烷的主要生物成因来源,也是气候变化的主要贡献者。长期以来,产甲烷作用起源于广古菌的教条最近受到了在深海古菌成员中发现假定的甲烷代谢基因的挑战,这表明产甲烷作用可能比目前认识的更为广泛。在这里,我们发现了在具有高甲烷通量的缺氧环境中从种群基因组中回收的 divergen 甲基辅酶 M 还原酶基因,这些基因属于一个新的古菌门,即 Verstraetearchaeota。这些古菌编码了甲基营养型产甲烷作用所需的基因,并且可能使用类似于为专性 H 依赖性甲基营养型 Methanomassiliicoccales 和最近描述的 Candidatus 'Methanofastidiosa' 提出的机制来保存能量。我们的研究结果表明,我们才刚刚开始了解产甲烷菌的多样性,并支持古菌中甲烷代谢的古老起源,这正在改变我们对全球碳循环的理解。

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