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Effects of Nitrogen Load on the Function and Diversity of Methanotrophs in the Littoral Wetland of a Boreal Lake

机译:氮负荷对北方湖泊沿岸湿地甲烷营养生物功能和多样性的影响

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摘要

Methane is the second most abundant greenhouse gas in the atmosphere. A major part of the total methane emissions from lake ecosystems is emitted from littoral wetlands. Methane emissions are significantly reduced by methanotrophs, as they use methane as their sole energy and carbon source. Methanotrophic activity can be either activated or inhibited by nitrogen. However, the effects of nitrogen on methanotrophs in littoral wetlands are unknown. Here we report how nitrogen loading in situ affected the function and diversity of methanotrophs in a boreal littoral wetland. Methanotrophic community composition and functional diversity were analyzed with a particulate methane monooxygenase (pmoA) gene targeted microarray. Nitrogen load had no effects on methane oxidation potential and methane fluxes. Nitrogen load activated pmoA gene transcription of type I (Methylobacter, Methylomonas, and LW21-freshwater phylotypes) methanotrophs, but decreased the relative abundance of type II (Methylocystis, Methylosinus trichosporium, and Methylosinus phylotypes) methanotrophs. Hence, the overall activity of a methanotroph community in littoral wetlands is not affected by nitrogen leached from the catchment area.
机译:甲烷是大气中第二丰富的温室气体。湖泊生态系统甲烷排放总量的很大一部分来自沿海湿地。甲烷营养物质可显着减少甲烷排放,因为甲烷利用甲烷作为唯一的能源和碳源。甲烷营养活性可以被氮激活或抑制。但是,氮对沿海湿地甲烷营养生物的影响尚不清楚。在这里,我们报告了原位氮负荷如何影响北部沿海湿地甲烷氧化菌的功能和多样性。甲烷营养物种组成和功能多样性进行了分析与颗粒甲烷单加氧酶(pmoA)基因靶向微阵列。氮负荷对甲烷氧化电位和甲烷通量没有影响。氮负荷激活了I型(甲基杆菌属,Methylomonas和LW21-淡水系统型)甲烷营养生物的pmoA基因转录,但降低了II型(甲基囊藻,Methylosinus trichosporium和Methylosinus系统型)甲烷生物的相对丰度。因此,沿岸湿地甲烷营养生物群落的总体活动不受集水区浸出氮的影响。

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