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首页> 外文期刊>Molecular phylogenetics and evolution >Unraveling the intricate biodiversity of the benthic harpacticoid genus Nannopus (Copepoda, Harpacticoida, Nannopodidae) in Korean waters
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Unraveling the intricate biodiversity of the benthic harpacticoid genus Nannopus (Copepoda, Harpacticoida, Nannopodidae) in Korean waters

机译:在韩国水域中解开底栖骨质类动物的复杂生物多样性<它> Nannopus (Copepoda,Harpactica,Nannopodidae)

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摘要

Nannopus (Harpacticoida, Nannopodidae) species are abundant and widely distributed throughout the world across a variety of habitats. Nannopus is well known for high frequencies of misidentifications and thus may comprise several cryptic complexes and morphologically distinct species. Cryptic taxa are common in meiofauna communities. In this study, we aimed to identify Nannopus species using an integrative approach including molecular taxonomy. We adopted a non-destructive DNA extraction method so that morphological and molecular data could be obtained from the same specimen. We analyzed the molecular diversity and distributions of Nannopus using a total of 190 individuals. We sequenced the 190 mtCOI, 53 mtCYTB, 25 18SrDNA, and 4328SrDNA genes from 190 individuals. Several species delimitation approaches were applied, including uncorrected p-distances for mtCOI, mtCYTB, 18SrDNA, and 28SrDNA, and Automatic Barcode Gap Discovery and Bayesian implemented Poisson tree processes for mtCOI and mtCYTB data. The maximum likelihood and Bayesian approaches were used to examine the phylogenetic relationships among individuals using the combined set of all four genes. Our species delimitation and phylogenetic analyses indicated the presence of three cryptic and six morphologically distinct species. All species are sympatric and widely distributed across mudflats ranging from the Yellow Sea to the South Sea in Korea. The divergence patterns of the four genes were not congruent. A phylogenetic tree based on the concatenated dataset was the most robust, was congruent with morphology, and suggested two major clades. We considered the validity of reinstating the genus Ilyophilus (Lilljeborg, 1902) and ultimately concluded that including all congeners in Nannopus until the type species (N. palustris Brady, 1880) is re-described was the most prudent approach.
机译:Nannopus(Harpacticoida,Nannopodidae)物种在各种栖息地各地的全世界都丰富而广泛分布。 Nannopus以高频率的误识别而众所周知,因此可以包括几种神秘的复合物和形态学上不同的物种。隐秘的分类群在Meiofauna社区很常见。在这项研究中,我们旨在使用包含分子分类的一体化方法鉴定Nannopus物种。我们采用了一种非破坏性DNA提取方法,以便可以从相同的标本获得形态学和分子数据。我们使用总共190人分析了Nannopus的分子多样性和分布。我们从190个个体测序190 mtcoi,53 mtcytb,2518例,4328srdna基因。应用了几种物种划定方法,包括用于MTCOI,MTCYTB,18SRDNA和28SRDNA的未校正的P距离,以及自动条形码差距发现和贝叶斯的MTCOI和MTCYTB数据的泊松树过程。使用所有四种基因的组合集来使用最大可能性和贝叶斯方法来检查个体之间的系统发育关系。我们的物种划界和系统发育分析表明存在三种神秘和六种形态学截然不同的物种。所有物种都是对称的,广泛分布在山脉到韩国的黄海到南海的泥潭。四种基因的分歧模式并不一致。基于连接数据集的系统发育树是最强大的,是与形态的一致性,并建议两个主要的林。我们考虑了芦苇属(Lilljeborg,1902)属的有效性,最终得出结论,其中包括Nannopus中的所有同胞,直到物种(N.Palustris Brady,1880)重新描述是最谨慎的方法。

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