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The differential effects of ammonium and nitrate on methanotrophs in rice field soil

机译:铵态氮和硝态氮对稻田土壤甲烷营养的影响

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It has been known that nitrogenous fertilizers can either stimulate or inhibit methane oxidation in soils. The mechanism, however, remains unclear. Here we conducted laboratory incubation experiments to evaluate the effects of ammonium versus nitrate amendment on CH4 oxidation in a rice field soil. The results showed that both N forms stimulated CH4 oxidation. But nitrate stimulated CH4 oxidation to a greater extent than ammonium per unit N base. The 16S rRNA genes and the pmoA genes were analyzed to determine the dynamics of total bacterial and methanotrophic populations, respectively. The methanotrophic community consisted of type! and type II methanotrophs and was dominated by type I group after two weeks of incubation. Nitrate promoted both types of methanotrophs, but ammonium promoted only type I. DNA-based stable isotope probing confirmed that ammonium stimulated the incorporation of (CH4)-C-13 into type I methanotrophs but not type II, while nitrate caused almost homogenous distribution of (CH4)-C-13 in type I and type II methanotrophs. Our study suggests that nitrate can promote CH4 oxidation more significantly than ammonium and is probably a better N source for both types of methanotrophs in rice field soil. More investigations, e.g. using N-15 labeling, are necessary to elucidate this possibility. (C) 2015 Elsevier Ltd. All rights reserved.
机译:众所周知,含氮肥料可以刺激或抑制土壤中的甲烷氧化。但是,该机制仍不清楚。在这里,我们进行了实验室培养实验,以评估铵盐和硝酸盐改良剂对稻田土壤中CH4氧化的影响。结果表明,两种氮形式均能促进CH4氧化。但是硝酸盐对CH4的氧化作用比每单位N碱中的铵盐刺激程度更大。分析了16S rRNA基因和pmoA基因,分别确定了总细菌种群和甲烷营养种群的动态。甲烷营养群落由类型组成!孵化两周后,由I型群占主导地位。硝酸盐促进了两种类型的甲烷营养菌,而铵盐仅促进了I型甲烷。基于DNA的稳定同位素探测证实,铵刺激(CH4)-C-13掺入I型甲烷营养菌,但不能刺激II型甲烷营养菌,而硝酸盐却导致了甲烷的几乎均匀分布。 I型和II型甲烷营养菌中的(CH4)-C-13。我们的研究表明,硝酸盐比铵盐更能促进CH4的氧化,并且可能是稻田土壤中两种甲烷营养菌的较好氮源。更多调查,例如为了阐明这种可能性,有必要使用N-15标签。 (C)2015 Elsevier Ltd.保留所有权利。

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