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Diversity and Dynamics of Active Small Microbial Eukaryotes in the Anoxic Zone of a Freshwater Meromictic Lake (Pavin, France)

机译:淡水微生物湖(法国帕文)缺氧区中活性小微生物真核生物的多样性和动力学

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摘要

Microbial eukaryotes play a crucial role in ecosystem functioning and oxygen is considered to be one of the strongest barriers against their local dispersal. However, diversity of microbial eukaryotes in freshwater habitats with oxygen gradients has previously received very little attention. We applied high-throughput sequencing (V4 region of the 18S rRNA gene) in conjunction with quantitative PCR (DNA and RNA) and fluorescent in situ hybridization (FISH) analyses, to provide an unique spatio-temporal analysis of microbial eukaryotes diversity and potential activity in a meromictic freshwater lake (lake Pavin). This study revealed a high genetic diversity of unicellular eukaryotes in the permanent anoxic zone of lake Pavin and allowed the discrimination of active vs. inactive components. Forty-two percent of the OTUs (Operational Taxonomic Units) are exclusively present in the monimolimnion, where Alveolata (Ciliophora and Dinophyceae) and Fungi (Dikarya and Chytrids) are the most active phyla and are probably represented by species capable of anaerobic metabolism. Pigmented eukaryotes (Haptophyceae and Chlorophyceae) are also present and active in this zone, which opens up questions regarding their metabolism.
机译:微生物真核生物在生态系统功能中起关键作用,氧气被认为是阻止其局部扩散的最强屏障之一。然而,具有氧梯度的淡水生境中微生物真核生物的多样性以前很少受到关注。我们将高通量测序(18S rRNA基因的V4区域)与定量PCR(DNA和RNA)以及荧光原位杂交(FISH)分析结合使用,以提供微生物真核生物多样性和潜在活性的独特时空分析在一个淡紫色的淡水湖(帕文湖)中。这项研究揭示了帕文湖永久缺氧区中单细胞真核生物的高度遗传多样性,并可以区分活性成分与非活性成分。 42%的OTU(操作性生物分类单位)仅存在于单核生物中,其中肺泡(纤毛虫和恐龙科)和真菌(狄卡里亚虫和梭菌)是最活跃的门,并可能由具有厌氧代谢能力的物种代表。色素真核生物(七叶植物和绿藻科)也存在并活跃于该区域,这引发了有关其代谢的问题。

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