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两个水稻品种中产甲烷古菌群落对地面臭氧浓度升高的不同响应

Divergent responses of methanogenic archaeal communities in two rice cultivars to elevated ground-level O3.

作者信息

Zhang Jianwei, Tang Haoye, Zhu Jianguo, Lin Xiangui, Feng Youzhi

机构信息

State Key Laboratory of Soil and Sustainable Agriculture, Institute of Soil Science, Chinese Academy of Sciences, Nanjing, 210008, PR China.

State Key Laboratory of Soil and Sustainable Agriculture, Institute of Soil Science, Chinese Academy of Sciences, Nanjing, 210008, PR China.

出版信息

Environ Pollut. 2016 Jun;213:127-134. doi: 10.1016/j.envpol.2016.01.062. Epub 2016 Feb 16.

Abstract

Inhibitive effect of elevated ground-level ozone (O3) on paddy methane (CH4) emission varies with rice cultivars. However, little information is available on its microbial mechanism. For this purpose, the responses of methane-metabolizing microorganisms, methanogenic archaea and methanotrophic bacteria to O3 pollution were investigated in the O3-tolerant (YD6) and the O3-sensitive (IIY084) cultivars at two rice growth stages in Free Air Concentration Elevation of O3 (O3-FACE) system of China. It was found that O3 pollution didn't change the abundances of Type I and Type II methanotrophic bacteria at two rice stages. For methanogenic archaea, their abundances in both cultivars were decreased by O3 pollution at the tillering stage. Furthermore, a greater negative influence on methanogenic archaeal community was observed on IIY084 than on YD6: at tillering stage, the alpha diversity indices of methanogenic archaeal community in IIY084 was decreased to a greater extent than in YD6; IIY084 shifted methanogenic archaeal community composition and decreased the abundances and the diversities of Methanosarcinaceae and Methanosaetaceae as well as the abundance of Methanomicrobiales, while the diversity of Methanocellaceae were increased in YD6. These findings indicate that the variations in the responses of paddy CH4 emission to O3 pollution between cultivars could result from the divergent responses of their methanogenic archaea.

摘要

地面臭氧(O₃)浓度升高对稻田甲烷(CH₄)排放的抑制作用因水稻品种而异。然而,关于其微生物机制的信息却很少。为此,在中国臭氧自由空气浓度升高(O₃-FACE)系统中,研究了耐臭氧品种(扬稻6号)和臭氧敏感品种(IIY084)在两个水稻生长阶段,甲烷代谢微生物、产甲烷古菌和甲烷氧化细菌对O₃污染的响应。结果发现,O₃污染在两个水稻阶段均未改变I型和II型甲烷氧化细菌的丰度。对于产甲烷古菌,在分蘖期,两个品种中产甲烷古菌的丰度均因O₃污染而降低。此外,观察到IIY084比扬稻6号对产甲烷古菌群落的负面影响更大:在分蘖期,IIY084中产甲烷古菌群落的α多样性指数下降幅度大于扬稻6号;IIY084改变了产甲烷古菌群落组成,降低了甲烷八叠球菌科和甲烷鬃毛菌科的丰度和多样性以及甲烷微菌目的丰度,而扬稻6号中甲烷杆菌科的多样性增加。这些发现表明,不同品种稻田CH₄排放对O₃污染响应的差异可能源于它们产甲烷古菌的不同响应。

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