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Deep biosphere-related bacteria within the subsurface of tidal flat sediments

机译:潮滩沉积物地下的深层生物圈相关细菌

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摘要

Biogeochemical and microbiological processes in the upper sediment layers of tidal flats were analysed in many investigations, while deeper zones remained largely unexplored. Therefore, denaturant gradient gel electrophoresis (DGGE) analysis of 16S rRNA gene fragments along the depth profile of up to 5.5 m-long sediment cores was performed in comparison with lithological and geochemical parameters. The investigation revealed that different compartments of the sediment columns were characterized by specific microbial communities. These compartments were analysed by sequencing of 113 DGGE bands. The upper layers down to 160-200 cm were dominated by gamma- and delta-Proteobacteria representing more than 60% of the total number of phylotypes. Underneath, a striking shift in community composition was observed, as the Proteobacteria were replaced by Chloroflexi with more than 60% of all sequences. As sulfate was still available as an electron acceptor in these layers, the abundance of Chloroflexi might be promoted by the electron donor or the quality of the carbon source. The dominance of this group, previously known as green non-sulfur bacteria, indicates the presence of a typical deep-biosphere microbial community in relatively young subsurface sediments. Thus, tidal flats might offer a convenient possibility to study and understand certain aspects of the deep biosphere in general.
机译:在许多调查中分析了潮滩上部沉积物层的生物地球化学和微生物过程,而更深的区域仍未开发。因此,与岩性和地球化学参数进行了比较,对沿着长达5.5 m长的沉积物核的深度剖面对16S rRNA基因片段进行了变性梯度凝胶电泳(DGGE)分析。调查显示,沉积物柱的不同隔室的特征是特定的微生物群落。通过对113个DGGE条带进行测序来分析这些区室。向下至160-200 cm的上层主要是γ-和δ-变形杆菌,占系统型总数的60%以上。在下面,观察到群落组成发生了惊人的变化,因为变形杆菌被绿弯曲杆菌取代,占所有序列的60%以上。由于在这些层中硫酸盐仍可作为电子受体,因此,通过电子供体或碳源的质量可能会提高氯柔屈虫的丰度。这群人以前被称为绿色非硫细菌,这表明相对年轻的地下沉积物中存在典型的深层生物圈微生物群落。因此,滩涂可能为研究和了解一般生物圈的某些方面提供便利的可能性。

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