Authors
Lauren Hale, Wenting Feng, Huaqun Yin, Xue Guo, Xishu Zhou, Rosvel Bracho, Elaine Pegoraro, C Ryan Penton, Liyou Wu, James Cole, Konstantinos T Konstantinidis, Yiqi Luo, James M Tiedje, Edward AG Schuur, Jizhong Zhou
Publication date
2019/12
Journal
The ISME journal
Volume
13
Issue
12
Pages
2901-2915
Publisher
Oxford University Press
Description
The susceptibility of soil organic carbon (SOC) in tundra to microbial decomposition under warmer climate scenarios potentially threatens a massive positive feedback to climate change, but the underlying mechanisms of stable SOC decomposition remain elusive. Herein, Alaskan tundra soils from three depths (a fibric O horizon with litter and course roots, an O horizon with decomposing litter and roots, and a mineral-organic mix, laying just above the permafrost) were incubated. Resulting respiration data were assimilated into a 3-pool model to derive decomposition kinetic parameters for fast, slow, and passive SOC pools. Bacterial, archaeal, and fungal taxa and microbial functional genes were profiled throughout the 3-year incubation. Correlation analyses and a Random Forest approach revealed associations between model parameters and microbial community profiles, taxa, and traits. There were more …
Total citations
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