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首页> 外文期刊>World Journal of Microbiology & Biotechnology >Methanogen genotypes involved in methane formation during anaerobic decomposition of Microcystis blooms at different temperatures
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Methanogen genotypes involved in methane formation during anaerobic decomposition of Microcystis blooms at different temperatures

机译:微囊藻在不同温度下厌氧分解过程中甲烷形成的甲烷源基因型

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摘要

The main goal of this work was to determine which methanogens were present during the anaerobic degradation of Microcystis biomass in the water columns of freshwater lakes. Simulation experiments were performed in which 30 ml Microcystis slurries were anaerobically incubated in 60 ml airtight bottles at three temperatures (15, 25, and 35 A degrees C) for over 90 days. The production of CH4 was monitored, and the methanogenic community was analyzed by cloning and sequencing the mcrA genes in samples incubated at the three different temperatures. In total, four clusters were detected at different temperatures by phylogenetic analysis of mcrA genes; these included members of Methanomicrobiales, Methanobacteriaceae, and Methanosarcina. An apparent linkage between temperature and phylogeny of the methanogenic community was observed: Methanomicrobiales and Methanobacteriaceae dominated the incubation system at the lower temperatures of 15 and 25 A degrees C, whereas Methanosarcina prevailed at 35 A degrees C. The dominance of these hydrogenotrophic methanogens suggested that, at least at lower temperatures, H-2 and CO2 might be the primary substrates for CH4 production during Microcystis anaerobic decomposition.
机译:这项工作的主要目的是确定淡水湖水柱中微囊藻生物量的厌氧降解过程中存在哪些产甲烷菌。进行模拟实验,其中将30 ml的微囊藻浆液在60 ml的密封瓶中在三种温度(15、25和35 A摄氏度)下厌氧孵育90天以上。监测CH4的产生,并通过克隆和测序在三个不同温度下孵育的样品中的mcrA基因分析产甲烷菌群落。通过对mcrA基因的系统发育分析,总共在不同温度下检测到四个簇;其中包括Methanomicrobiales,Methanobacteriaceae和Methanosarcina的成员。观察到温度与产甲烷菌群落的系统发育之间存在明显的联系:在15和25 A的较低温度下,甲烷菌和甲烷菌在孵化系统中占主导地位,而甲烷八叠球菌在35 A的温度下占优势。这些氢营养型产甲烷菌的优势表明,至少在较低温度下,H-2和CO2可能是微囊藻厌氧分解过程中CH4产生的主要底物。

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