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A molecular phylogenetic framework for the Ergalataxinae (Neogastropoda: Muricidae)

机译:Ergalataxinae(Neogastropoda:muricidae)的分子系统发育框架

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摘要

The validity of the muricid subfamily Ergalataxinae has recently been confirmed with molecular data, but its composition and the relationships among its constituent genera remain unclear. In order to investigate this, we use four genes (28S rRNA, 12S rRNA, 16S rRNA and cytochrome oxidase subunit I) to construct a Bayesian phylogeny of 52 ergalataxine species in 18 genera, representing . 40% of the currently accepted species and 86% of the genera. This is the most complete phylogeny of this taxonomically confusing subfamily yet produced. Our results indicate the polyphyly of many traditional genera, including and . In order to improve the correspondence between classification and phylogeny, we restrict the definition of , resurrect and elevate to full genus, but describe no new genera. Several species in this analysis could not be identified and may be new, but we do not describe them. Further molecular and morphological analyses, in the context of this framework, should help to resolve the remaining ambiguities in the classification of this subfamily. The oldest fossil member of the Ergalataxinae known to us is of Early Oligocene age.
机译:最近已通过分子数据证实了类杀虫亚科Ergalataxinae的有效性,但其组成及其组成属间的关系尚不清楚。为了对此进行研究,我们使用四个基因(28S rRNA,12S rRNA,16S rRNA和细胞色素氧化酶亚基I)来构建18个属中52个ergalataxine物种的贝叶斯系统发育。目前接受物种的40%和属的86%。这是迄今尚未产生的分类学上令人困惑的亚科的最完整系统发育。我们的结果表明许多传统属的多重性,包括和。为了改善分类和系统发育之间的对应关系,我们将的定义,复活和提升限制为全属,但没有描述新属。此分析中的几种物种无法识别,可能是新物种,但我们没有对其进行描述。在此框架内,进一步的分子和形态分析应有助于解决该亚科分类中尚存的歧义。我们所知道的最古老的埃尔加拉塔奇族化石成员是渐新世早期。

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