Microbial resistance and resilience to drought and rewetting modulate soil N2O emissions with different fertilizers

环境科学 含水量 硝化作用 肥料 农学 反硝化 一氧化二氮 环境化学 氮气 化学 生态学 生物 岩土工程 有机化学 工程类
作者
Xiaoya Xu,Yaowei Liu,Caixian Tang,Yihan Yang,Lei Yu,Didier Lesueur,Laetitia Herrmann,Hongjie Di,Yong Li,Qinfen Li,Jianming Xu
出处
期刊:Science of The Total Environment [Elsevier BV]
卷期号:917: 170380-170380 被引量:12
标识
DOI:10.1016/j.scitotenv.2024.170380
摘要

Future climate models indicate an enhanced severity of regional drought and frequent rewetting events, which may cause cascading impacts on soil nitrogen cycle and nitrous oxide (N2O) emissions, but the underlying microbial mechanism remains largely unknown. Here we report an incubation study that examined the impacts of soil moisture status and nitrification inhibitor (DCD) on the N2O-producers and N2O-reducers following the application of urea and composted swine manure in an acid soil. The soil moisture treatments included 100 % water-holding capacity (WHC) (wetting, 35.3 % gravimetric soil water content), 40 % WHC (drought, 7 % gravimetric soil water content), and 40 % to 100 % WHC (rewetting). The results showed that N2O emissions were significantly decreased under drought conditions and were significantly increased after rewetting. The resistance of ammonia-oxidizing bacteria and nosZII, which was inhibited by urea or manure application, modulated N2O emissions under drought conditions. The resilience of the functional guilds modulated their dominant role in N2O emissions with rewetting. Ammonia-oxidizing bacteria, nirS-type denitrifying bacteria and nosZI showed significant resilience in response to rewetting. Significant negative relationships were observed between N2O emissions and nosZII clade under wetting condition and between N2O emissions and nosZI clade after rewetting. Our results highlighted the importance of microbial resistance and resilience in modulating N2O emissions, which help to better understand the dominant way of N2O emissions, and consequently make efficient mitigation strategies under the global climate change.
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