Warming increases CH4 emissions from rice paddies through shifts in methanogenic and methanotrophic communities
文献类型: 外文期刊
第一作者: Mo, Danmei
作者: Mo, Danmei;Liu, Yunlong;Li, Min;Li, Huixin;Qian, Haoyu;Ding, Yanfeng;Jiang, Yu;Mo, Danmei;Liu, Yunlong;Li, Min;Li, Huixin;Qian, Haoyu;Ding, Yanfeng;Jiang, Yu;Mo, Danmei;Liu, Yunlong;Li, Min;Li, Huixin;Qian, Haoyu;Ding, Yanfeng;Jiang, Yu;Zhang, Jun
作者机构:
关键词: Warming; CH 4 emission; Rice paddy; DNA stable-isotope probing; Microbial community
期刊名称:SOIL BIOLOGY & BIOCHEMISTRY ( 影响因子:10.3; 五年影响因子:11.5 )
ISSN: 0038-0717
年卷期: 2025 年 200 卷
页码:
收录情况: SCI
摘要: Warming often stimulates methane (CH4) emissions from rice paddies, one of the largest anthropogenic sources of CH4 emissions. However, the responses of methanogenic and methanotrophic communities to warming, particularly within active communities, remain unclear. Therefore, based on a field warming experiment in a rice-wheat system, we investigated the effects of warming on methanogenic and methanotrophic communities, using the DNA stable-isotope probing technology. Our results indicated that warming increased CH4 emissions by 27-49% over two rice growing seasons compared to ambient conditions. Warming significantly increased the abundance of methanogens by 53%, whereas did not affect activities of methanogens and active methanogenic community. Conversely, warming did not influence the abundance of methanotrophs, but reduced activities of methanotrophs by 44%. Notably, warming led to a significant rise in the relative abundance of the active type II methanotrophic community, which exhibits lower CH4 oxidation efficiency. These findings suggest that the observed increase in CH4 emissions under warming conditions is primarily driven by the enhanced abundance of methanogens and the increased presence of less efficient active type II methanotrophs. This study underscores the critical role of active microbial communities in understanding and managing CH4 emissions from rice paddies in a warming world.
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