Temperature differently affected methanogenic pathways and microbial communities in sub-Antarctic freshwater ecosystems. (September 2021)
- Record Type:
- Journal Article
- Title:
- Temperature differently affected methanogenic pathways and microbial communities in sub-Antarctic freshwater ecosystems. (September 2021)
- Main Title:
- Temperature differently affected methanogenic pathways and microbial communities in sub-Antarctic freshwater ecosystems
- Authors:
- Lavergne, Céline
Aguilar-Muñoz, Polette
Calle, Natalia
Thalasso, Frédéric
Astorga-España, Maria Soledad
Sepulveda-Jauregui, Armando
Martinez-Cruz, Karla
Gandois, Laure
Mansilla, Andrés
Chamy, Rolando
Barret, Maialen
Cabrol, Léa - Abstract:
- Highlights: Temperature outcome on methanogenesis was investigated in austral lakes. A 5 °C increase doubled methane production rates in freshwater sediments. H2 /CO2 -based methanogenesis is more sensitive to temperature than acetate-based. Microbial community structure exhibits high site-specific variability. Methanosarcina and Methanobacterium respectively drove acetate- and H2 /CO2 -amendments. Abstract: Freshwater ecosystems are responsible for an important part of the methane (CH4 ) emissions which are likely to change with global warming. This study aims to evaluate temperature-induced (from 5 to 20 °C) changes on microbial community structure and methanogenic pathways in five sub-Antarctic lake sediments from Magallanes strait to Cape Horn, Chile. We combined in situ CH4 flux measurements, CH4 production rates (MPRs), gene abundance quantification and microbial community structure analysis (metabarcoding of the 16S rRNA gene). Under unamended conditions, a temperature increase of 5 °C doubled MPR while microbial community structure was not affected. Stimulation of methanogenesis by methanogenic precursors as acetate and H2 /CO2, resulted in an increase of MPRs up to 127-fold and 19-fold, respectively, as well as an enrichment of mcrA -carriers strikingly stronger under acetate amendment. At low temperatures, H2 /CO2 -derived MPRs were considerably lower (down to 160-fold lower) than the acetate-derived MPRs, but the contribution of hydrogenotrophic methanogenesisHighlights: Temperature outcome on methanogenesis was investigated in austral lakes. A 5 °C increase doubled methane production rates in freshwater sediments. H2 /CO2 -based methanogenesis is more sensitive to temperature than acetate-based. Microbial community structure exhibits high site-specific variability. Methanosarcina and Methanobacterium respectively drove acetate- and H2 /CO2 -amendments. Abstract: Freshwater ecosystems are responsible for an important part of the methane (CH4 ) emissions which are likely to change with global warming. This study aims to evaluate temperature-induced (from 5 to 20 °C) changes on microbial community structure and methanogenic pathways in five sub-Antarctic lake sediments from Magallanes strait to Cape Horn, Chile. We combined in situ CH4 flux measurements, CH4 production rates (MPRs), gene abundance quantification and microbial community structure analysis (metabarcoding of the 16S rRNA gene). Under unamended conditions, a temperature increase of 5 °C doubled MPR while microbial community structure was not affected. Stimulation of methanogenesis by methanogenic precursors as acetate and H2 /CO2, resulted in an increase of MPRs up to 127-fold and 19-fold, respectively, as well as an enrichment of mcrA -carriers strikingly stronger under acetate amendment. At low temperatures, H2 /CO2 -derived MPRs were considerably lower (down to 160-fold lower) than the acetate-derived MPRs, but the contribution of hydrogenotrophic methanogenesis increased with temperature. Temperature dependence of MPRs was significantly higher in incubations spiked with H2 /CO2 (c. 1.9 eV) compared to incubations spiked with acetate or unamended (c. 0.8 eV). Temperature was not found to shape the total microbial community structure, that rather exhibited a site-specific variability among the studied lakes. However, the methanogenic archaeal community structure was driven by amended methanogenic precursors with a dominance of Methanobacterium in H2 /CO2 -based incubations and Methanosarcina in acetate-based incubations. We also suggested the importance of acetogenic H2 -production outcompeting hydrogenotrohic methanogenesis especially at low temperatures, further supported by homoacetogen proportion in the microcosm communities. The combination of in situ-, and laboratory-based measurements and molecular approaches indicates that the hydrogenotrophic pathway may become more important with increasing temperatures than the acetoclastic pathway. In a continuously warming environment driven by climate change, such issues are crucial and may receive more attention. … (more)
- Is Part Of:
- Environment international. Volume 154(2021)
- Journal:
- Environment international
- Issue:
- Volume 154(2021)
- Issue Display:
- Volume 154, Issue 2021 (2021)
- Year:
- 2021
- Volume:
- 154
- Issue:
- 2021
- Issue Sort Value:
- 2021-0154-2021-0000
- Page Start:
- Page End:
- Publication Date:
- 2021-09
- Subjects:
- 16S rRNA amplicons -- Archaea -- Bacteria -- Limnology -- Methane -- Global warming
Environmental protection -- Periodicals
Environmental health -- Periodicals
Environmental monitoring -- Periodicals
Environmental Monitoring -- Periodicals
Environnement -- Protection -- Périodiques
Hygiène du milieu -- Périodiques
Environnement -- Surveillance -- Périodiques
Environmental health
Environmental monitoring
Environmental protection
Periodicals
333.705 - Journal URLs:
- http://www.sciencedirect.com/science/journal/01604120 ↗
http://www.elsevier.com/journals ↗ - DOI:
- 10.1016/j.envint.2021.106575 ↗
- Languages:
- English
- ISSNs:
- 0160-4120
- Deposit Type:
- Legaldeposit
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- Available online (eLD content is only available in our Reading Rooms) ↗
- Physical Locations:
- British Library DSC - 3791.330000
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