Photochemical alteration of organic carbon draining permafrost soils shifts microbial metabolic pathways and stimulates respiration
Collin P. Ward, Sarah G. Nalven, Byron C. Crump, George W. Kling, Rose M. Cory
University of Michigan Woods Hole Oceanographic Institution Oregon State University
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摘要与影响
In sunlit waters, photochemical alteration of dissolved organic carbon (DOC) impacts the microbial respiration of DOC to CO 2 . This coupled photochemical and biological degradation of DOC is especially critical for carbon budgets in the Arctic, where thawing permafrost soils increase opportunities for DOC oxidation to CO 2 in surface waters, thereby reinforcing global warming. Here we show how and why sunlight exposure impacts microbial respiration of DOC draining permafrost soils. Sunlight significantly increases or decreases microbial respiration of DOC depending on whether photo-alteration produces or removes molecules that native microbial communities used prior to light exposure. Using high-resolution chemical and microbial approaches, we show that rates of DOC processing by microbes are likely governed by a combination of the abundance and lability of DOC exported from land to water and produced by photochemical processes, and the capacity and timescale that microbial communities have to adapt to metabolize photo-altered DOC.
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物理Climate change and permafrost
Methane Hydrates and Related Phenomena · Microbial Community Ecology and Physiology
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