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Vertical Profiles of Abundance and Potential Activity of Methane-Oxidizing Bacteria in Sediment of Lake Biwa Japan

机译:日本琵琶湖沉积物中甲烷氧化细菌的丰度和潜在活性的垂直剖面

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摘要

Vertical profiles of the abundance, community composition, and potential activity of methane-oxidizing bacteria (MOB) were investigated in the sediment of Lake Biwa. Sediment samples were obtained from two sites at different water depths. The abundance of MOB was assessed as the copy number of the pmoA gene (encoding the alpha subunit of particulate methane monooxygenase), measured with quantitative real-time PCR. Abundance of the pmoA gene peaked in the 5–8 cm layer of the sediment from both sites. MOB community composition was investigated by denaturing gradient gel electrophoresis (DGGE) analysis of pmoA and 16S rRNA genes. The band patterns observed in DGGE did not significantly differ with sediment depths or sampling sites. Sequence analysis of the DGGE bands indicated the dominance of the genus Methylobacter. Potential activity, which was measured in the presence of sufficient amounts of methane and oxygen, decreased linearly from the sediment surface to deeper layers. These results suggest that the pmoA gene copy number cannot be regarded as an indicator of aerobic MOB that retain potential activity in sediments.
机译:在琵琶湖的沉积物中调查了甲烷的氧化细菌(MOB)的丰度,群落组成和潜在活性的垂直分布。从不同水深的两个地点获得了沉积物样本。 MOB的丰度评估为pmoA基因的拷贝数(编码颗粒甲烷单加氧酶的α亚基),通过定量实时PCR测量。 pmoA基因的丰度在两个位置的沉积物的5-8 cm层达到峰值。通过对pmoA和16S rRNA基因进行变性梯度凝胶电泳(DGGE)分析,研究了MOB群落组成。 DGGE中观察到的带状图谱与沉积物深度或采样点没有显着差异。 DGGE带的序列分析表明甲基杆菌属的优势。在存在足够量的甲烷和氧气的情况下测得的潜在活性从沉积物表面到更深的层呈线性下降。这些结果表明,不能将pmoA基因的拷贝数视为保留沉积物中潜在活性的好氧MOB的指标。

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