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首页> 外文期刊>Molecular phylogenetics and evolution >Uncovering cryptic diversity in Aspidomorphus (Serpentes: Elapidae): Evidence from mitochondrial and nuclear markers
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Uncovering cryptic diversity in Aspidomorphus (Serpentes: Elapidae): Evidence from mitochondrial and nuclear markers

机译:揭露天蛾(Serpentes:天牛科)的隐秘多样性:线粒体和核标记物的证据

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摘要

The Papuan region, comprising New Guinea and nearby islands, has a complex geological history that has fostered high levels of biodiversity and endemism. Unfortunately, much of this diversity remains undocumented. We examine the evolutionary relationships of the venomous snake genus Aspidomorphus (Elapidae: Hydrophiinae), a Papuan endemic, and document extensive cryptic lineage diversification. Between Aspidomorphus species we find 22.2-27.9% corrected cyt-b sequence divergence. Within species we find 17.7-23.7% maximum sequence divergence. These high levels of genetic divergence may have complicated previous phylogenetic studies, which have had difficulty placing Aspidomorphus within the subfamily Hydrophiinae. Compared to previous studies, we increase sampling within Hydrophiinae to include all currently recognized species of Aspidomorphus and increase species representation for the genera Demansia and Toxicocalamus. We confirm monophyly of Aspidomorphus and resolve placement of the genus utilizing a set of seven molecular markers (12S, 16S, cyt-b, ND4, c-mos, MyHC-2, and RAG-1); we find strong support for a sister-group relationship between Aspidomorphus and a Demansia/Toxicocalamus preussi clade. We also use one mitochondrial (cyt-b) and one nuclear marker (SPTBN1) to document deep genetic divergence within all currently recognized species of Aspidomorphus and discuss the Solomon Island Arc as a potential center of divergence in this species. Lastly, we find high levels of concordance between the mtDNA and nuDNA markers used for inter-species phylogenetic reconstruction.
机译:包括新几内亚和附近岛屿在内的巴布亚地区具有复杂的地质历史,促进了高水平的生物多样性和特有性。不幸的是,许多这种多样性仍然没有记载。我们检查了毒蛇属Aspidomorphus(天蝎:Hydrophiinae),巴布亚流行的进化关系,并记录了广泛的隐性谱系多样化。在Aspidomorphus物种之间,我们发现22.2-27.9%的校正cyt-b序列差异。在物种内,我们发现最大序列差异为17.7-23.7%。这些高水平的遗传差异可能使以前的系统发育研究变得复杂,这些研究很难将Aspidomorphus放置在水蛇亚科中。与以前的研究相比,我们增加了在水蛇藻内的采样,以包括目前所有公认的天冬葵属物种,并增加了Demansia和Toxicocalamus属的物种代表性。我们确定Aspidomorphus的单性,并利用一组七个分子标记(12S,16S,cyt-b,ND4,c-mos,MyHC-2和RAG-1)解决该属的位置;我们强烈支持Aspidomorphus和Demansia / Toxicocalamus preussi进化枝之间的姐妹群关系。我们还使用一种线粒体(cyt-b)和一种核标记物(SPTBN1)来记录所有当前公认的Aspidomorphus物种内的深层遗传分歧,并讨论所罗门群岛弧作为该物种潜在的分歧中心。最后,我们发现用于种间系统发育重建的mtDNA和nuDNA标记之间高度一致。

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