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Phylogeny of Molossidae Gervais (Mammalia: Chiroptera) inferred by morphological data

机译:通过形态学数据推断的摩斯兽科的系统发育史(哺乳动物:手翅目)

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Molossidae is a large (roughly 100 species) pantropically distributed clade of swift aerially insectivorous bats for which the phylogeny remains relatively unknown and little studied compared with other speciose groups of bats. We investigated phylogenetic relationships among 62 species, representing all extant molossid genera and most of the subgenera, using 102 morphological characters from the skull, dentition, postcrania, external morphology, tongue, and penis, based on direct observation and literature reports. Both parsimony and Bayesian analyses were used in phylogenetic reconstruction. Our analysis supports two main clades of molossids, both of which mingle Old World and New World taxa. One clade is comprised of Mormopterus, Platymops, Sauromys, Neoplatymops, Molossops, Cynomops, Cheiromeles, Molossus, and Promops. The other clade includes Tadarida, Otomops, Nyctinomops, Eumops, Chaerephon, and Mops. The position of Myopterus with respect to these two groups is unclear. As in other recent analyses, we find that several genera do not appear to be monophyletic (e.g. Tadarida, Chaerephon, and Molossops sensu lato). We recommend that the subgenera of Molossops sensu lato and Austronomus be recognized at the generic level. We conclude that much more data are needed to investigate lower level problems (generic monophyly and relationships within genera) and to resolve the higher-level branching pattern of the family. (C) The Willi Hennig Society 2015.
机译:软体动物科是大型的(大约100种)全热带分布的快速空中食虫蝙蝠进化支,相对于其他特殊种类的蝙蝠,系统进化史仍然相对未知,并且研究很少。我们根据直接观察和文献报道,使用了来自头骨,齿列,后颅骨,外部形态,舌头和阴茎的102个形态特征,调查了代表所有现存的软体动物属和大部分亚属的62种之间的系统发生关系。简约和贝叶斯分析均用于系统发育重建。我们的分析支持两类主要的软体动物,它们都融合了旧世界和新世界生物群。一个进化枝包括Mor翅目,鸭嘴兽,Sauromys,新platymopops,Molossops,cynomops,cheiromeles,Molossus和Promops。另一个分支包括塔达里达(Tadarida),Otomops,Nyctinomops,Eumops,Chaerephon和Mops。 Myopterus在这两组中的位置尚不清楚。与最近的其他分析一样,我们发现几个属似乎都不是一类的(例如Tadarida,Chaerephon和Molossops sensu lato)。我们建议在通用级别上识别莫洛索斯拉苏(Molossops sensu lato)和澳大利亚(Austronomus)的子属。我们得出的结论是,需要更多的数据来研究较低级别的问题(属类属和属下的亲属关系)并解决该家族的较高级别分支模式。 (C)威利·亨尼格学会2015年。

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