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Response of Methanogens in Arctic Sediments to Temperature and Methanogenic Substrate Availability

Blake, Lynsay I.; Tveit, Alexander; Øvreås, Lise; Head, Ian M.; Gray, Neil D.

Response of Methanogens in Arctic Sediments to Temperature and Methanogenic Substrate Availability Thumbnail


Authors

Lynsay I. Blake

Alexander Tveit

Lise Øvreås

Ian M. Head

Neil D. Gray



Abstract

Although cold environments are major contributors to global biogeochemical cycles, comparatively little is known about their microbial community function, structure, and limits of activity. In this study a microcosm based approach was used to investigate the effects of temperature, and methanogenic substrate amendment, (acetate, methanol and H2/CO2) on methanogen activity and methanogen community structure in high Arctic wetlands (Solvatnet and Stuphallet, Svalbard). Methane production was not detected in Stuphallet sediment microcosms (over a 150 day period) and occurred within Solvatnet sediments microcosms (within 24 hours) at temperatures from 5 to 40°C, the maximum temperature being at far higher than in situ maximum temperatures (which range from air temperatures of -1.4 to 14.1°C during summer months). Distinct responses were observed in the Solvatnet methanogen community under different short term incubation conditions. Specifically, different communities were selected at higher and lower temperatures. At lower temperatures (5°C) addition of exogenous substrates (acetate, methanol or H2/CO2) had no stimulatory effect on the rate of methanogenesis or on methanogen community structure. The community in these incubations was dominated by members of the Methanoregulaceae/WCHA2-08 family-level group, which were most similar to the psychrotolerant hydrogenotrophic methanogen Methanosphaerula palustris strain E1-9c. In contrast, at higher temperatures, substrate amendment enhanced methane production in H2/CO2 amended microcosms, and played a clear role in structuring methanogen communities. Specifically, at 30°C members of the Methanoregulaceae/WCHA2-08 predominated following incubation with H2/CO2, and Methanosarcinaceaeand Methanosaetaceae were enriched in response to acetate addition. These results may indicate that in transiently cold environments, methanogen communities can rapidly respond to moderate short term increases in temperature, but not necessarily to the seasonal release of previously frozen organic carbon from thawing permafrost soils. However, as temperatures increase such inputs of carbon will likely have a greater influence on methane production and methanogen community structure. Understanding the action and limitations of anaerobic microorganisms within cold environments may provide information which can be used in defining region-specific differences in the microbial processes; which ultimately control methane flux to the atmosphere.

Citation

Blake, L. I., Tveit, A., Øvreås, L., Head, I. M., & Gray, N. D. (2015). Response of Methanogens in Arctic Sediments to Temperature and Methanogenic Substrate Availability. PLoS ONE, 10(6), Article e0129733. https://doi.org/10.1371/journal.pone.0129733

Journal Article Type Article
Acceptance Date May 12, 2015
Online Publication Date Jun 17, 2015
Publication Date Jun 17, 2015
Deposit Date Aug 8, 2018
Publicly Available Date Aug 9, 2018
Journal PLoS ONE
Electronic ISSN 1932-6203
Publisher Public Library of Science
Peer Reviewed Peer Reviewed
Volume 10
Issue 6
Article Number e0129733
DOI https://doi.org/10.1371/journal.pone.0129733
Public URL https://durham-repository.worktribe.com/output/1318120
Related Public URLs https://eprint.ncl.ac.uk/213413

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Published Journal Article (2.2 Mb)
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Publisher Licence URL
http://creativecommons.org/licenses/by/4.0/

Copyright Statement
© 2015 Blake et al. This is an open access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.





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