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Dominance of putative marine benthic Archaea in Qinghai Lake, north-western China

机译:中国西北海域假定的海洋底栖古生菌的优势

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摘要

Recent studies have revealed important and versatile roles that Archaea play in a wide variety of environmental processes on Earth. In this study, we investigated the abundance and diversity of archaeal communities in lake water and a 5 m sediment core collected from Qinghai Lake on the Tibetan Plateau, north-western China. An integrated approach was employed including geochemistry, quantitative polymerase chain reaction (Q-PCR) and 16S rRNA gene analysis. Here, we show that Archaea dominated the prokaryotic community in the lake sediments. Members of putative marine benthic groups [Marine Benthic Group (MBG)-B, -C and -D] and Miscellaneous Crenarchaeotic Group (MCG) were dominant, many of which were previously reported to be predominantly present in deep-sea environments. These results demonstrate that these groups are not limited to marine sediments. Despite their ubiquitous presence in aquatic environments, metabolic functions of these important groups largely remain unknown. Whereas many of these groups (such as MBG-B and -D) have typically been found in methane-hydrate deposits in marine environments, our carbon isotopic and molecular results from Qinghai Lake sediments indicate a lacustrine origin.
机译:最近的研究表明,古细菌在地球上的各种环境过程中都扮演着重要的角色。在这项研究中,我们调查了湖水中古细菌群落的丰度和多样性,以及从中国西北部青藏高原青海湖收集的5 m沉积物核心。采用了一种综合方法,包括地球化学,定量聚合酶链反应(Q-PCR)和16S rRNA基因分析。在这里,我们表明古细菌主导了湖泊沉积物中的原核生物群落。假定的海洋底栖动物群的成员[海洋底栖动物群(MBG)-B,-C和-D]和杂类颅骨成群动物(MCG)占主导地位,以前据报道其中许多主要存在于深海环境中。这些结果表明,这些组不限于海洋沉积物。尽管它们在水生环境中普遍存在,但这些重要群体的代谢功能在很大程度上仍然未知。尽管通常在海洋环境中的甲烷水合物矿床中发现了其中许多基团(例如MBG-B和-D),但我们从青海湖沉积物中获得的碳同位素和分子结果表明湖相的起源。

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