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首页> 外文期刊>Molecular phylogenetics and evolution >Phylogenetic relationships and biogeography of Pseudoxiphophorus (Teleostei: Poeciliidae) based on mitochondrial and nuclear genes
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Phylogenetic relationships and biogeography of Pseudoxiphophorus (Teleostei: Poeciliidae) based on mitochondrial and nuclear genes

机译:基于线粒体和核基因的拟拟磷虫(Teleostei:Poeciliidae)的亲缘关系和生物地理学

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Phylogenetic relationships of species of genus Pseudoxiphophorus have been only tackled in detail based on morphology so far. However, phylogenetic evidence based on molecular data is still lacking. In this study, we have used five molecular markers (mitochondrial cytb, 16S, atp6-8, and nuclear actB and S7) to reconstruct a robust, inclusive phylogeny of Pseudoxiphophorus. Our phylogenetic results strongly disagree with the main morphological hypothesis, and indicate different phylogenetic relationships among the recognized species of Pseudoxiphophorus. Pseudoxiphophorus jonesii is recovered as the sister group of all other Pseudoxiphophorus lineages, and this initial splitting may be associated to the extension of the Mexican Neovolcanic Plateau at the Punta del Morro site (event used to calibrate our dating analysis). The branch leading to all other Pseudoxiphophorus separated subsequently into two major groups, one comprising those lineages occurring in southern Mexico and Guatemala-Belize, and another with those lineages that extended further southwards to Honduras and Nicaragua. This event took place during the Pliocene, and is likely associated with periods of inundation of the Polochic-Motagua fault area. The Isthmus of Tehuantepec also appears to have been a strong biogeographic barrier triggering cladogenesis in Pseudoxiphophorus. Heterandria formosa (traditionally placed as sister to Pseudoxiphophorus) is not sharing the most recent common ancestor with Pseudoxiphophorus, and is recovered as more distantly related to them. Furthermore, Pseudoxiphophorus bimaculatus (the most cosmopolitan species) is also recovered as a polyphyletic assemblage that appears to comprise those Pseudoxiphophorus that have not been assigned to the other eight, more localized species. All this suggests that Pseudoxiphophorus needs a major taxonomic revision as a whole in order to incorporate all existing diversity.
机译:到目前为止,假单孢菌属物种的系统发生关系仅根据形态学进行了详细研究。但是,仍然缺乏基于分子数据的系统发育证据。在这项研究中,我们已经使用了五个分子标记(线粒体cytb,16S,atp6-8,以及核actB和S7)来构建一个强大的,包容性的假单孢菌系统发育。我们的系统发育结果强烈反对主要的形态学假设,并表明在已鉴定的假磷虫物种之间不同的系统发育关系。假单孢菌被恢复为所有其他假单胞菌谱系的姊妹组,这种初始分裂可能与墨西哥新火山高原在蓬塔德尔莫罗站点的扩张有关(该事件用于校准我们的年代分析)。导致所有其他伪磷的分支随后分为两个主要类别,一个类别包括墨西哥南部和危地马拉-伯利兹境内的那些宗族,另一个类别进一步向南延伸至洪都拉斯和尼加拉瓜。该事件发生在上新世,可能与波洛克-莫塔瓜断裂带的淹没时期有关。 Tehuantepec的地峡似乎也是触发Pseudoxiphophorus枝条形成的强大生物地理屏​​障。福尔摩斯杂种(传统上是假锡pho的姊妹)与假锡pho没有共享最新的祖先,并且与它们的亲缘关系更远。此外,Pseudoxiphophorus bimaculatus(最具国际化的物种)也作为一种多系统组合而被回收,该组合似乎包含那些尚未分配给其他八个更局限的物种的Pseudoxiphophorus。所有这些表明,伪剑鱼整体需要进行重大的分类学修订,以纳入所有现有的多样性。

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