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Aerobic and nitrite-dependent methane-oxidizing microorganisms in sediments of freshwater lakes on the Yunnan Plateau

机译:云南高原淡水湖泊沉积物中需氧和亚硝酸盐依赖的甲烷氧化微生物

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Both aerobic methane-oxidizing bacteria (MOB) and nitrite-dependent anaerobic methane oxidation (n-damo) bacteria can play an important role in mitigating the methane emission produced in anoxic sediment layers to the atmosphere. However, the environmental factors regulating the distribution of these methane-oxidizing microorganisms in lacustrine ecosystems remain essentially unclear. The present study investigated the distribution of aerobic MOB and n-damo bacteria in sediments of various freshwater lakes on the Yunnan Plateau (China). Quantitative PCR assay and clone library analysis illustrated the spatial variations in the abundances and structures of aerobic MOB and n-damo bacterial communities. Type I MOB (Methylosoma and Methylobacter) and type II MOB (Methylocystis) were detected, while type I MOB was more abundant than type II MOB. Lake sediments n-damo bacterial communities were composed of novel Methylomirabilis oxyfera-like pmoA genes. Lake sediments in the same geographic region could share a relatively similar aerobic MOB community structure. Moreover, Pearson's correlation analysis indicated that n-damo pmoA gene diversity showed a positive correlation with the ratio of organic matter to total nitrogen in lake sediment.
机译:需氧甲烷氧化细菌(MOB)和依赖于亚硝酸盐的厌氧甲烷氧化(n-damo)细菌均可在减轻缺氧沉积物层向大气中排放的甲烷方面发挥重要作用。然而,调节湖泊甲烷生态系统中这些甲烷氧化微生物分布的环境因素仍然不清楚。本研究调查了中国云南高原各种淡水湖沉积物中好氧微生物和正达摩细菌的分布。定量PCR分析和克隆文库分析说明了好氧MOB和n-damo细菌群落的丰度和结构的空间变化。检测到I型MOB(甲型肌瘤和甲基细菌)和II型MOB(甲型囊肿),而I型MOB比II型MOB丰富。湖泊沉积物的n-damo细菌群落由新的羟甲基甲烷菌类似的pmoA基因组成。同一地理区域内的湖泊沉积物可能共享相对相似的有氧生物群落结构。而且,Pearson的相关分析表明,n-damo pmoA基因多样性与湖泊沉积物中有机质与总氮的比率呈正相关。

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