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首页> 外文期刊>Molecular phylogenetics and evolution >Multiple nuclear and mitochondrial genes resolve the branching order of a rapid radiation of crested newts (Triturus, Salamandridae)
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Multiple nuclear and mitochondrial genes resolve the branching order of a rapid radiation of crested newts (Triturus, Salamandridae)

机译:多个核和线粒体基因解决了有顶new(Triturus,Salamandridae)快速辐射的分支顺序

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摘要

Newts of the genus Triturus are parapatrically distributed across Europe. Within this group, the crested newts (Triturus cristatus superspecies) radiated in a short temporal interval. Given the relatively short timespan in between branching events and to address the gene tree-species tree problem, we sequenced two mitochondrial and five nuclear genes from populations representing the distribution range of all the five crested newt species. We built gene trees using non-hierarchical Bayesian phylogenetics and phylogenetic networks, and a species tree with a recently developed method, which uses a hierarchical Bayesian approach. While the single gene trees did not provide resolution, the hierarchical Bayesian method yielded an almost fully resolved species tree, even though branching events followed one another closely. Results show a previously undetected basal dichotomy between T. karelinii and the other four species and a deep differentiation of T. karelinii in two lineages, here raised to full species status.
机译:Triturus属的在整个欧洲都有父系分布。在这个组中,有顶new(Triturus cristatus superspecies)以短时间间隔放射。考虑到分支事件之间的时间间隔相对较短,并且为了解决基因树种树的问题,我们从代表所有5个new类物种分布范围的种群中测序了两个线粒体和五个核基因。我们使用非分层贝叶斯系统学和系统发育网络构建基因树,并使用最近开发的方法(使用分层贝叶斯方法)构建树种。尽管单个基因树无法提供分辨率,但是即使分支事件紧随其后,但贝叶斯分级贝叶斯方法却产生了几乎完全解析的物种树。结果表明,以前未发现过卡里氏梭菌与其他四个物种之间的基础二分法,并且卡里氏梭菌在两个谱系中有较深的分化,在这里它们上升为完整物种状态。

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