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Superimposed Pristine Limestone Aquifers with Marked Hydrochemical Differences Exhibit Distinct Fungal Communities

机译:具有明显化学差异的叠加原始石灰岩含水层表现出不同的真菌群落

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Fungi are one important group of eukaryotic microorganisms in a diverse range of ecosystems, but their diversity in groundwater ecosystems is largely unknown. We used DNA-based pyro-tag sequencing of the fungal internal transcribed spacer (ITS) rDNA gene to investigate the presence and community structure of fungi at different sampling sites of two superimposed limestone aquifers ranging from 8.5 to 84 m depth in the newly established Hainich Critical Zone Exploratory (Hainich CZE). We detected a diversity of fungal OTUs in groundwater samples of all sampling sites. The relative percentage abundance of Basidiomycota was higher in the upper aquifer assemblage, whilst Ascomycota dominated the lower one. In parallel to differences in the hydrochemistry we found distinct fungal communities at all sampling sites. Classification into functional groups revealed an overwhelming majority of saprotrophs. Finding taxa common to all analyzed groundwater sites, point to a groundwater specific fungal microbiome. The presence of different functional groups and, in particular plant and cattle pathogens that are not typical of subsurface habitats, suggests links between the surface and subsurface biogeosphere due to rapid transportation across the fracture networks typical of karstic regions during recharge episodes. However, further studies including sampling series extended in both time and space are necessary to confirm this hypothesis.
机译:真菌是各种生态系统中的一类重要的真核微生物,但在地下水生态系统中它们的多样性却鲜为人知。我们使用了基于DNA的真菌内部转录间隔子(ITS)rDNA基因的pyro-tag序列,研究了在新建立的海尼希的两个叠加的石灰岩含水层(深度为8.5至84 m)中不同采样点处真菌的存在和群落结构关键区域探索(Hainich CZE)。我们在所有采样点的地下水样品中检测到多种真菌OTU。在上部含水层组合中,担子菌相对丰度较高,而在下部较低的组合中以子囊菌为主。除了水化学差异外,我们还在所有采样点发现了不同的真菌群落。按功能组分类显示绝大多数腐生菌。找到所有被分析的地下水位共有的分类单元,指向地下水特有的真菌微生物组。由于在补给过程中跨岩溶区典型裂隙网络的快速运输,不同功能群的存在,尤其是地下生境所不常见的植物和牛病原体,表明了表层和地下生物地球圈之间的联系。但是,需要进一步的研究,包括在时间和空间上扩展的采样序列,以证实这一假设。

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