Zaitseva S V, Abidueva E Yu, Namsaraev V V, Wang L, Wu L
Mikrobiologiia. 2014 Nov-Dec;83(6):722-9.
Investigation of microbial taxonomic diversity and of the rates of microbial processes of production and decomposition of organic matter made it possible to establish considerable diversity and activity of the sulfur cycle microorganisms in the microbial community of Lake Beloe (pH 9.4, salinity 3.1 g/L) upper sediment layer. According to the results of pyrosequencing, of the 16S rRNA gene, bacteria involved in H2 formation and oxidation were numerically predominant and highly diverse. The Hydrogenophaga spp. dominating in the community are aerobic or facultatively anaerobic chemoorgano- and chemolithoautotrophs using hydrogen oxidation as the source of energy. They play an important role in the transitory zones of mixing of subterranean and surface water.
对微生物分类多样性以及有机物质生产和分解的微生物过程速率进行调查,使得我们能够确定别洛耶湖(pH 9.4,盐度3.1 g/L)上层沉积物微生物群落中硫循环微生物具有相当的多样性和活性。根据焦磷酸测序结果,在16S rRNA基因方面,参与氢气形成和氧化的细菌在数量上占主导且高度多样化。群落中占主导的嗜氢菌属是需氧或兼性厌氧的化学有机营养型和化能无机自养型细菌,它们利用氢气氧化作为能量来源。它们在地下水和地表水混合的过渡区域发挥着重要作用。