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Utility of combining morphological characters, nuclear and mitochondrial genes: An attempt to resolve the conflicts of species identification for ciliated protists

机译:结合形态特征,核和线粒体基因的效用:试图解决纤毛虫物种鉴定的冲突

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摘要

Ciliates comprise a highly diverse protozoan lineage inhabiting all biotopes and playing crucial roles in regulating microbial food webs. Nevertheless, subtle morphological differences and tiny sizes hinder proper species identification for many ciliates. Here, we use the species-rich taxon Frontonia and employ both nuclear and mitochondrial loci. We attempt to assess the level of genetic diversity and evaluate the potential of each marker in delineating species of Frontonia. Morphological features and ecological characteristics are also integrated into genetic results, in an attempt to resolve conflicts of species identification based on morphological and molecular methods. Our studies reveal: (1) the mitochondrial cox1 gene, nuclear ITS1 and ITS2 as well as the hypervariable D2 region of LSU rDNA are promising candidates for species delineation; (2) the cox1 gene provides the best resolution for analyses below the species level; (3) the V2 and V4 hypervariable regions of SSU rDNA, and D1 of LSU rDNA as well as the 5.8S rDNA gene do not show distinct barcoding gap due to overlap between intra- and inter-specific genetic divergences; (4) morphological character-based analysis shows promise for delimitation of Frontonia species; and (5) all gene markers and character-based analyses demonstrate that the genus Frontonia consists of three groups and monophyly of the genus Frontonia is questionable. (C) 2015 Elsevier Inc. All rights reserved.
机译:纤毛虫包括高度多样化的原生动物谱系,它们生活在所有生物群落中,并在调节微生物食物网中起关键作用。然而,细微的形态差异和微小的尺寸阻碍了许多纤毛虫的正确物种识别。在这里,我们使用物种丰富的分类单元Frontonia,同时使用核和线粒体基因座。我们试图评估遗传多样性的水平,并评估每种标记物在划定Frontonia物种中的潜力。形态特征和生态特征也被整合到遗传结果中,以试图解决基于形态学和分子方法的物种识别冲突。我们的研究表明:(1)线粒体cox1基因,核ITS1和ITS2以及LSU rDNA的高变D2区是有希望进行物种鉴定的候选基因; (2)cox1基因为低于物种水平的分析提供了最佳分辨率; (3)由于种内和种间遗传差异的重叠,SSU rDNA的V2和V4高变区以及LSU rDNA的D1和5.8S rDNA基因没有显示明显的条形码缺口。 (4)基于形态特征的分析显示了对Frontonia物种划界的希望; (5)所有基因标记和基于特征的分析表明,Frontonia属由三类组成,并且Frontonia属的单性是有问题的。 (C)2015 Elsevier Inc.保留所有权利。

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