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Elevated ground-level O3 negatively influences paddy methanogenic archaeal community

机译:升高的地面O3对稻田产甲烷甲烷的古生菌群落产生负面影响

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摘要

The current knowledge regarding the effect of global climate change on rice-paddy methane (CH4) emissions is incomplete, partly because information is limited concerning the mechanism of the microbial response to elevated ground-level ozone (O3). A field experiment was conducted in the China Ozone Free-Air Concentration Enrichment facility in a rice–wheat rotation system to investigate the responses of methanogenic archaeal communities to elevated ground-level O3 by culture-independent and -reliant approaches. We found that elevated ground-level O3 inhibited methanogenic activity and influenced the composition of paddy methanogenic communities, reducing the abundance and diversity of paddy methanogens by adversely affecting dominant groups, such as aceticlastic Methanosaeta, especially at the rice tillering stage. Our results indicated that continuously elevated ground-level O3 would negatively influence paddy methanogenic archaeal communities and its critical ecological function. These findings will contribute to a comprehensive understanding of the responses and feedbacks of paddy ecosystems to global climate change.
机译:关于全球气候变化对稻田甲烷(CH4)排放的影响的当前知识是不完整的,部分原因是关于微生物对升高的地面臭氧(O3)的反应机理的信息有限。在水稻-小麦轮作系统中的中国臭氧自由空气富集设施中进行了田间试验,以通过与文化无关和依赖的方法研究产甲烷古细菌群落对升高的地面O3的响应。我们发现,升高的地面O3抑制了甲烷生成活动,并影响了稻田甲烷生成群落的组成,通过不利地影响优势群体(例如,回弹甲烷甲烷菌,尤其是在水稻分me期),降低了稻田甲烷生成素的丰度和多样性。我们的结果表明,持续升高的地面O3会对稻田产甲烷的古生菌群落及其关键的生态功能产生负面影响。这些发现将有助于全面了解稻田生态系统对全球气候变化的反应和反馈。

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