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首页> 外文期刊>Scientific reports. >Diversity and geochemical community assembly processes of the living rare biosphere in a sand-and-gravel aquifer ecosystem in the Midwestern United States
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Diversity and geochemical community assembly processes of the living rare biosphere in a sand-and-gravel aquifer ecosystem in the Midwestern United States

机译:在美国砂砾含水层生态系统中生命稀有生物圈的多样性和地球化学社区组装过程

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Natural microbial communities consist of a limited number of abundant species and an extraordinarily diverse population of rare species referred to as the rare biosphere. Recent studies have revealed that the rare biosphere is not merely an inactive dormant population but may play substantial functional roles in the ecosystem. However, structure, activity and community assembly processes of the rare biosphere are poorly understood. In this study, we evaluated the present and living microbial community structures including rare populations in an aquifer ecosystem, the Mahomet Aquifer, USA, by both 16S rDNA and rRNA amplicon deep sequencing. The 13 groundwater samples formed three distinct groups based on the "entire" community structure, and the same grouping was obtained when focusing on the "rare" subcommunities (0.1% of total abundance), while the "abundant" subcommunities (1.0%) gave a different grouping. In the correlation analyses, the observed grouping pattern is associated with several geochemical factors, and structures of not only the entire community but also the rare subcommunity are correlated with geochemical profiles in the aquifer ecosystem. Our findings first indicate that the living rare biosphere in the aquifer system has the metabolic potential to adapt to local geochemical factors which dictate the community assembly processes.
机译:天然微生物社区由有限数量的丰富物种组成,以及罕见的罕见物种称为稀有生物圈。最近的研究表明,稀有生物圈不仅仅是一种不活跃的休眠群体,而且可能在生态系统中发挥实质性作用。然而,稀有生物圈的结构,活动和社区组装过程很难理解。在这项研究中,我们评估了本发明和生命的微生物群落结构,包括含水层生态系统,Mahomet患者,美国的含水层生态系统中的稀有种群,通过16S rDNA和RRNA扩增子深度测序。基于“整个”群落结构的13个地下水样品形成了三个不同的基团,并且在关注“罕见”小组船上时获得相同的分组(占总丰富的<0.1%),而“丰富”的小组刑(> 1.0%) )给出了不同的分组。在相关性分析中,观察到的分组模式与若干地球化学因子相关,并且不仅具有整个社区的结构,而且罕见的子信子也与含水层生态系统中的地球化学曲线相关联。我们的研究结果首先表明含水层系统的生活稀有生物圈具有适应局部地球化学因素的代谢潜力,这些因素决定了社区装配过程。

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