生物地球化学循环
营养循环
氮气循环
微观世界
生态系统
磷
降水
环境化学
背景(考古学)
人口
抗性(生态学)
自行车
陆地生态系统
氮气
生态化学计量学
环境科学
土壤水分
化学
生态学
生物
地理
林业
气象学
古生物学
人口学
有机化学
社会学
作者
Gongwen Luo,Chao Xue,Qianhong Jiang,Yan Xiao,Fengge Zhang,Shiwei Guo,Qirong Shen,Ning Ling
出处
期刊:MSystems
[American Society for Microbiology]
日期:2020-06-29
卷期号:5 (3)
被引量:201
标识
DOI:10.1128/msystems.00162-20
摘要
To be effective in predicting future stability of soil functions in the context of various external disturbances, it is necessary to follow the effects of global change on functionally specialized microbes related to C and nutrient cycling. Our study represents an exploratory effort to couple the stoichiometric drivers to microbial populations related with main C, N, and P cycling and their resistances to global change. The abundance of microbial groups involved in cellulose, starch, and xylan degradation, nitrification, N fixation, denitrification, organic P mineralization, and inorganic P dissolution showed a high stoichiometry dependency. Resistance of these microbial populations to global change could be predicted by soil C:N:P stoichiometry. Our work highlights that stoichiometric balance in soil C and nutrients is instrumental in maintaining the stability and adaptability of ecosystem functions under global change.
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