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首页> 外文期刊>Molecular phylogenetics and evolution >Unlocking the black box of feather louse diversity: A molecular phylogeny of the hyper-diverse genus Brueelia
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Unlocking the black box of feather louse diversity: A molecular phylogeny of the hyper-diverse genus Brueelia

机译:揭开羽毛虱多样性的黑匣子:超多样性布鲁氏菌属的分子系统发育

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Songbirds host one of the largest, and most poorly understood, groups of lice: the Brueelia-complex. The Brueelia-complex contains nearly one-tenth of all known louse species (Phthiraptera), and the genus Brueelia has over 300 species. To date, revisions have been confounded by extreme morphological variation, convergent evolution, and periodic movement of lice between unrelated hosts. Here we use Bayesian inference based on mitochondrial (COI) and nuclear (EF-1 alpha) gene fragments to analyze the phylogenetic relationships among 333 individuals within the Brueelia-complex. We show that the genus Brueelia, as it is currently recognized, is paraphyletic. Many well-supported and morphologically unified clades within our phylogenetic reconstruction of Brueelia were previously described as genera. These genera should be recognized, and the erection of several new genera should be explored. We show that four distinct ecomorphs have evolved repeatedly within the Brueelia-complex, mirroring the evolutionary history of feather-lice across the entire order. We show that lice in the Brueelia-complex, with some notable exceptions, are extremely host specific and that the host family associations and geographic distributions of these lice are significantly correlated with our understanding of their phylogenetic history. Several ecological phenomena, including phoresis, may be responsible for the macroevolutionary patterns in this diverse group. (C) 2015 Elsevier Inc. All rights reserved.
机译:鸣禽寄养着最大,最鲜为人知的虱子群之一:布鲁埃利亚复合体。布鲁氏菌复合体包含所有已知虱子物种(Phthiraptera)的近十分之一,布鲁氏菌属有300多种。迄今为止,由于极端的形态变异,趋同的进化以及虱子在无关宿主之间的周期性运动而使修订变得混乱。在这里,我们使用基于线粒体(COI)和核(EF-1 alpha)基因片段的贝叶斯推断来分析Brueelia-complex中333个人之间的系统发育关系。我们表明,布鲁埃利亚属,如目前公认的,是共生的。我们先前将布鲁氏菌属系统发育重建中的许多支撑良好且形态统一的进化枝描述为属。这些属应该被认识,并且几个新属的建立应该被探索。我们显示了四个不同的生态型在Brueelia复杂体中反复演化,反映了整个过程中羽毛虱子的进化历史。我们显示,在Brueelia-complex中的虱子,除某些显着例外外,都是极具宿主特异性的,并且这些虱子的寄主家庭关联和地理分布与我们对它们的系统发生历史的了解显着相关。在这种多样化的群体中,包括电泳在内的几种生态现象可能是宏观进化模式的原因。 (C)2015 Elsevier Inc.保留所有权利。

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