Methane oxidation coupled to oxygenic photosynthesis in anoxic waters

被引:0
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作者
Jana Milucka
Mathias Kirf
Lu Lu
Andreas Krupke
Phyllis Lam
Sten Littmann
Marcel MM Kuypers
Carsten J Schubert
机构
[1] Max Planck Institute for Marine Microbiology,Department of Biogeochemistry
[2] Swiss Federal Institute of Aquatic Science and Technology (Eawag),Department of Surface Waters—Research and Management
[3] State Key Laboratory of Soil and Sustainable Agriculture,undefined
[4] Institute of Soil Science,undefined
[5] Chinese Academy of Sciences,undefined
[6] University of Chinese Academy of Sciences,undefined
[7] 5Current address: Ocean and Earth Science,undefined
[8] University of Southampton,undefined
[9] Southampton,undefined
[10] UK.,undefined
来源
The ISME Journal | 2015年 / 9卷
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摘要
Freshwater lakes represent large methane sources that, in contrast to the Ocean, significantly contribute to non-anthropogenic methane emissions to the atmosphere. Particularly mixed lakes are major methane emitters, while permanently and seasonally stratified lakes with anoxic bottom waters are often characterized by strongly reduced methane emissions. The causes for this reduced methane flux from anoxic lake waters are not fully understood. Here we identified the microorganisms and processes responsible for the near complete consumption of methane in the anoxic waters of a permanently stratified lake, Lago di Cadagno. Interestingly, known anaerobic methanotrophs could not be detected in these waters. Instead, we found abundant gamma-proteobacterial aerobic methane-oxidizing bacteria active in the anoxic waters. In vitro incubations revealed that, among all the tested potential electron acceptors, only the addition of oxygen enhanced the rates of methane oxidation. An equally pronounced stimulation was also observed when the anoxic water samples were incubated in the light. Our combined results from molecular, biogeochemical and single-cell analyses indicate that methane removal at the anoxic chemocline of Lago di Cadagno is due to true aerobic oxidation of methane fuelled by in situ oxygen production by photosynthetic algae. A similar mechanism could be active in seasonally stratified lakes and marine basins such as the Black Sea, where light penetrates to the anoxic chemocline. Given the widespread occurrence of seasonally stratified anoxic lakes, aerobic methane oxidation coupled to oxygenic photosynthesis might have an important but so far neglected role in methane emissions from lakes.
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页码:1991 / 2002
页数:11
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