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Extracellular DNA as a genetic recorder of microbial diversity in benthic deep-sea ecosystems

机译:细胞外DNA作为底层海洋生态系统中微生物多样性的遗传记录仪

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Extracellular DNA in deep-sea sediments represents a major repository of genes, which previously belonged to living organisms. However, the extent to which these extracellular genes influence current estimates of prokaryotic biodiversity is unknown. We investigated the abundance and diversity of 16S rDNA sequences contained within extracellular DNA from continental margins of different biogeographic regions. We also compared the taxonomic composition of microbial assemblages through the analysis of extracellular DNA and DNA associated with living cells. 16S rDNA contained in the extracellular DNA pool contributed up to 50% of the total 16S rDNA copy number determined in the sediments. Ca. 4% of extracellular Operational Taxonomic Units (OTUs) were shared among the different biogeographic regions revealing the presence of a core of preserved OTUs. A higher fraction of OTUs was exclusive of each region potentially due to its geographic and thermohaline characteristics. Ca. one third of the OTUs identified in the extracellular DNA were absent from living prokaryotic assemblages, possibly representing the signatures of past assemblages. Our findings expand the knowledge of the contribution of extracellular microbial sequences to current estimates of prokaryotic diversity obtained through the analyses of “environmental DNA”, and open new perspectives for understanding microbial successions in benthic ecosystems.
机译:深海沉积物中的细胞外DNA代表了先前属于生物体的基因的主要储存库。然而,这些细胞外基因影响原核生物多样性估计的程度是未知的。我们研究了来自不同生物地区大陆边缘的细胞外DNA中包含的16S rDNA序列的丰富和多样性。我们还通过分析与活细胞相关的细胞外DNA和DNA进行微生物组合的分类组成。细胞外DNA池中包含的16S RDNA可导致沉积物中确定的总16S rDNA拷贝数的50%。加利福尼亚州。 4%的细胞外运作分类单位(Otus)在不同的生物地理区域中分享,揭示了保存的Otus核心的存在。由于其地理和热卤素特征,较高的OTU级数可能是可能的每个区域。加利福尼亚州。在细胞外DNA中发现的oTus中的三分之一没有生物原核组合,可能代表过去组装的签名。我们的调查结果扩展了通过分析“环境DNA”获得的细胞外微生物序列对当前核查多样性估计的贡献的知识,并开放了解底栖生态系统中的微生物演替的新观点。

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