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Biogeography of microbial communities in high‐latitude ecosystems: Contrasting drivers for methanogens, methanotrophs and global prokaryotes

Christophe V. W. Seppey; Léa Cabrol; Frederic Thalasso; Laure Gandois; Céline Lavergne; Karla Martinez‐Cruz; Armando Sepulveda‐Jauregui; Polette Aguilar‐Muñoz; María Soledad Astorga‐España; Rolando Chamy; Bruna Martins Dellagnezze; Claudia Etchebehere; Gilberto J. Fochesatto; Oscar Gerardo‐Nieto; Andrés Mansilla; Alison Murray; Maxime Sweetlove; Nikita Tananaev; Roman Teisserenc; Alexander T. Tveit; Anton Van de Putte; Mette M. Svenning; Maialen Barret
Environmental Microbiology · Vol. 25, Issue 12 · pp. 3364-3386 · 2023

Abstract

Methane‐cycling is becoming more important in high‐latitude ecosystems as global warming makes permafrost organic carbon increasingly available. We explored 387 samples from three high‐latitudes regions (Siberia, Alaska and Patagonia) focusing on mineral/organic soils (wetlands, peatlands, forest), lake/pond sediment and water. Physicochemical, climatic and geographic variables were integrated with 16S rDNA amplicon sequences to determine the structure of the overall microbial communities and of specific methanogenic and methanotrophic guilds. Physicochemistry (especially pH) explained the largest proportion of variation in guild composition, confirming species sorting (i.e., environmental filtering) as a key mechanism in microbial assembly. Geographic distance impacted more strongly beta diversity for (i) methanogens and methanotrophs than the overall prokaryotes and, (ii) the sediment habitat, suggesting that dispersal limitation contributed to shape the communities of methane‐cycling microorganisms. Bioindicator taxa characterising different ecological niches (i.e., specific combinations of geographic, climatic and physicochemical variables) were identified, highlighting the importance of Methanoregula as generalist methanogens. Methylocystis and Methylocapsa were key methanotrophs in low pH niches while Methylobacter and Methylomonadaceae in neutral environments. This work gives insight into the present and projected distribution of methane‐cycling microbes at high latitudes under climate change predictions, which is crucial for constraining their impact on greenhouse gas budgets.

Bibliographic Information

JournalEnvironmental Microbiology
PublisherWiley
Publication Date2023-12-01
Publication Year2023
Volume25
Issue12
Pages3364-3386
Document TypeJournal Article
Print ISSN1462-2912
eISSN1462-2920
DOI10.1111/1462-2920.16526
SubjectMicrobial Ecology

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NARA Access Coverage1999-01-01~Current
Journal Homepagehttps://onlinelibrary.wiley.com/loi/14622920
Publisher PageOpen Publisher Page
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