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DOI10.1134/S0026261719030068
Genome of a Member of the Candidate Archaeal Phylum Verstraetearchaeota from a Subsurface Thermal Aquifer Revealed Pathways of Methyl-Reducing Methanogenesis and Fermentative Metabolism
Kadnikov, V. V.1,2; Mardanov, A. V.1; Beletsky, A. V.1; Frank, Y. A.3; Karnachuk, O. V.3; Ravin, N. V.1,2
发表日期2019
ISSN0026-2617
EISSN1608-3237
卷号88期号:3页码:316-323
英文摘要

Methanogenesis is the main source of biogenic methane in the atmosphere and therefore plays an important role in climate change. While all methanogens known until recently belonged to the phylum Euryarchaeota, potential methanogens were recently found among two uncultured archaeal phyla, Bathyarchaeota and Verstraetearchaeota. Analysis of the genomes of several members of Verstraetearchaeota revealed their ability to use methylated compounds for methanogenesis; however, all these genomes were incomplete, which prevents an unequivocal reconstruction of their metabolic pathways. The present work reports the complete genome of a new member of Verstraetearchaeota from the metagenome of the microbial community of a deep subsurface reservoir of thermal waters in Western Siberia. Phylogenetic analysis revealed the new archaeon to belong to a new species of the genus Candidatus Methanosuratus', for which the name Candidatus Methanosuratus subterraneum' was proposed. The possibility of methyl-reducing methanogenesis was indicated by the presence of the methyl coenzyme M reductase complex and of the genes required for methane production using methanol as the methyl group donor, while the genes required for the oxidation of methyl group to CO2 were missing. Genome analysis showed that Ca. Methanosuratus subterraneum' has the metabolic pathways required for growth by fermentation of proteinaceous substrates. Analysis of the global distribution of Ca. Methanosuratus' revealed the 16S rRNA gene sequences assigned to this genus in hot springs, underground waters, and oil reservoirs, which makes it possible to consider this genus as a representative of the subsurface biosphere.


WOS研究方向Microbiology
来源期刊MICROBIOLOGY
文献类型期刊论文
条目标识符http://gcip.llas.ac.cn/handle/2XKMVOVA/96806
作者单位1.Russian Acad Sci, Res Ctr Biotechnol, Inst Bioengn, Moscow 119071, Russia;
2.Moscow MV Lomonosov State Univ, Fac Biol, Moscow 119192, Russia;
3.Tomsk State Univ, Tomsk 634050, Russia
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Kadnikov, V. V.,Mardanov, A. V.,Beletsky, A. V.,et al. Genome of a Member of the Candidate Archaeal Phylum Verstraetearchaeota from a Subsurface Thermal Aquifer Revealed Pathways of Methyl-Reducing Methanogenesis and Fermentative Metabolism[J],2019,88(3):316-323.
APA Kadnikov, V. V.,Mardanov, A. V.,Beletsky, A. V.,Frank, Y. A.,Karnachuk, O. V.,&Ravin, N. V..(2019).Genome of a Member of the Candidate Archaeal Phylum Verstraetearchaeota from a Subsurface Thermal Aquifer Revealed Pathways of Methyl-Reducing Methanogenesis and Fermentative Metabolism.MICROBIOLOGY,88(3),316-323.
MLA Kadnikov, V. V.,et al."Genome of a Member of the Candidate Archaeal Phylum Verstraetearchaeota from a Subsurface Thermal Aquifer Revealed Pathways of Methyl-Reducing Methanogenesis and Fermentative Metabolism".MICROBIOLOGY 88.3(2019):316-323.
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