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首页> 外文期刊>Journal of Natural History: An International Journal of Systematics and General Biology >Molecular phylogeny of Acanthochitonina (Mollusca: Polyplacophora: Chitonida): three new mitochondrial genomes, rearranged gene orders and systematics
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Molecular phylogeny of Acanthochitonina (Mollusca: Polyplacophora: Chitonida): three new mitochondrial genomes, rearranged gene orders and systematics

机译:Acanthochitonina(软体动物:Polyplacophora:Chitonida)的分子系统发育:三个新的线粒体基因组,重排的基因顺序和系统的

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Few molecular studies have addressed the phylogenetic relationships within Acanthochitonina. Here, we use high-throughput sequencing to determine three mitochondrial genomes of Acanthochitonina. We further explore phylogenetic relationships with expanded taxon sampling based on mitochondrial and nuclear sequence data. Phylogenetic analyses recover two major lineages roughly corresponding to Cryptoplacoidea and Mopalioidea, but the necessity of reassigning multiple genera challenges their conventional definition and that of the families Mopaliidae, Schizoplacidae and Lepidochitonidae. Two mitogenomes share a gene rearrangement that might represent a synapomorphy for Lepidochitonidae. Our phylogenetic results support the reinterpretation of certain morphological characters as homologous, previously assumed to be convergent. They further reveal that major Acanthochitonina lineages were restricted to particular ocean basins, where they diverged into endemisms with disparate morphology. Our results are corroborated by morphological and biogeographical evidence and contribute toward resolving the phylogenetic relationships of Acanthochitonina, and highlight the need for further phylogenetic and systematic studies.
机译:很少有分子研究解决棘皮动物内的系统发育关系。在这里,我们使用高通量测序来确定棘皮动物线虫的三个线粒体基因组。我们进一步探索与线粒体和核序列数据的基础上扩展的分类单元采样的系统发育关系。系统发生分析恢复了两个主要谱系,大致对应于隐隐藻科和拟隐孢子虫,但是重新分配多个属的必要性挑战了它们的常规定义以及Mopaliidae,Schizoplacidae和Lepidochitonidae科的常规定义。两个有丝分裂基因组共享一个基因重排,该基因重排可能代表纤毛虫科的突触。我们的系统发育结果支持将某些形态特征重新解释为同源,以前假定是趋同的。他们进一步揭示,主要棘皮动物谱系仅限于特定的海洋盆地,在那里它们分化为形态各异的特有物种。我们的结果得到形态学和生物地理学证据的证实,并有助于解决棘皮棘藻的系统发育关系,并强调需要进一步的系统发育和系统研究。

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