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Overview of freshwater microbial eukaryotes diversity: a first analysis of publicly available metabarcoding data

机译:淡水微生物真核生物的概述多样性:首次分析公开的沟通数据

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摘要

Although they are widespread, diverse and involved in biogeochemical cycles, microbial eukaryotes attract less attention than their prokaryotic counterparts in environmental microbiology. In this study, we used publicly available 18S barcoding data to define biases that may limit such analyses and to gain an overview of the planktonic microbial eukaryotic diversity in freshwater ecosystems. The richness of the microbial eukaryotes was estimated to 100 798 operational taxonomic units (OTUs) delineating 1267 clusters or phylogenetic units (PUs, i.e. monophyletic groups of OTUs that are phylogenetically close). By summing the richness found in aquatic environments, we can predict the microbial eukaryotic richness to be around 200 000- 250 000 species. The molecular diversity of protists in freshwater environments is generally higher than that of the morphospecies and cultivated species catalogued in public databases. Amoebozoa, Viridiplantae, Ichthyosporea, and Cryptophyta are the most phylogenetically diverse taxa, and characterisation of these groups is still needed. A network analysis showed that Fungi, Stramenopiles and Viridiplantae play central role in lake ecosystems. Finally, this work provides guidance for compiling metabarcoding data and identifies missing data that should be obtained to increase our knowledge on microbial eukaryote diversity.
机译:虽然它们是普遍的,多样化和参与生物地球化学循环,但微生物真核生物比其环境微生物学中的原核对应物更少吸引注意力。在本研究中,我们使用公开可用的18秒条形码数据来定义可能限制这种分析的偏差,并在淡水生态系统中获得浮游微生物真核样品的概述。估计微生物真核生物的丰富性估计为100 798个运营分类单位(OTUS)划定1267个簇或系统发育单位(PUS,即卵瘤的otus的单左右)。通过求解水生环境中的丰富度,我们可以预测微生物真核丰富度为200 000-250 000种。淡水环境中的保护物的分子多样性通常高于公共数据库中编目的形态学和栽培物种的分子多样性。 Amoebozoa,Viridiplantae,Ichthyosporea和Cryptophyta是最灵感多样的分类群,仍然需要这些群体的表征。网络分析表明,真菌,stramenopiles和viridiplantae在湖泊生态系统中起着中心作用。最后,这项工作提供了编译元建数据的指导,并识别应该获得的缺失数据,以提高我们对微生物真核生物多样性的知识。

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