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Preservation of microbial DNA in marine sediments: insights from extracellular DNA pools

机译:海洋沉积物中微生物DNA的保存:细胞外DNA池的见解

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摘要

Marine sediments harbour extracellular DNA (exDNA) not associated with currently living organisms. Including this exDNA in genetic surveys may distort abundance and diversity estimates of living prokaryotic communities. We separately extract exDNA and intracellular DNA (inDNA) from 11 horizons in a 10-m deep sediment core from Aarhus Bay (Denmark) that spans 9000 years of Holocene sedimentation. We compare depth profiles of bacterial and archaeal 16S rRNA gene compositions to those of macrofaunal activity (bioturbation), sulfate and methane concentrations, sediment age and lithology. Among these variables, bioturbation shows the strongest relationship with the two DNA pools. In bioturbated surface sediments, the majority of Operational Taxonomic Units (OTUs) present in exDNA is absent from inDNA, thus belonging to microorganisms that were not alive at the time of sampling. Below the bioturbation zone, the two DNA pools display a much higher phylogenetic similarity. At all depths, the majority of exDNA and inDNA sequences show highest sequence similarities to sediment microorganisms, a finding that is additionally supported by separate analyses on low- and high-molecular weight exDNA. Our results indicate that in Aarhus Bay the vast majority of prokaryotic exDNA is turned over, thus not contributing to a genetic archive of past environmental change.
机译:海洋沉积物患有与目前生物体无关的细胞外DNA(exdna)。包括遗传调查中的exdna可能扭曲了生活原核社区的丰富和多样性估计。我们将ExDNA和细胞内DNA(Indna)分别从10米的沉积物核心中提取11个视野,从Aarhus湾(丹麦)跨越& 9000年全新世沉降。我们将细菌和古物16S rRNA基因组合物的深度分布与大型癌症活性(生物扰动),硫酸盐和甲烷浓度,沉积物年龄和岩性的细菌和抗rRNA基因组合物进行比较。在这些变量中,生物扰动表现出与两种DNA池的最强关系。在生物干扰的表面沉积物中,exDNA中存在的大多数操作分类单位(OTU)不存在INDNA,因此属于在取样时不活着的微生物。在生物扰动区下方,两个DNA池显示出更高的系统发育相似性。在所有深度,大多数ExDNA和INDNA序列都显示出与沉积物微生物的最高序列相似性,该发现是另外通过单独分析对低和高分子量exDNA的分析而另外的分析。我们的结果表明,在Aarhus湾,绝大多数原核exdna被转过来,因此没有促进过去环境变化的遗传档案。

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