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First phylogenetic analysis of the family Neriidae (Diptera), with a study on the issue of scaling continuous characters

机译:鸟科(双翅目)的首次系统发育分析,并研究了扩展连续字符的问题

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摘要

Neriidae are a small family of acalyptratae flies, mostly distributed in the tropics. Very little is known about their biology, and the evolutionary relationships among species have never been evaluated. We perform the first comprehensive phylogenetic analysis of the family, including 48 species from all biogeographic regions inhabited, as well as five species of Micropezidae and one Cypselosomatidae as outgroups. We build a morphological data matrix of 194 characters, including 72 continuous characters. We first explore ways to deal with the issue of scaling continuous characters, including rescaling ranges to unity and using implied weighting. We find that both strategies result in very different phylogenetic hypotheses, and that implied weighting reduces the problem of scaling, but only partially. Furthermore, using implied weighting after rescaling characters improves the congruence between partitions and results in higher values of group support. With respect to the Neriidae, we confirm the monophyly of the family and of most its genera, although we do not obtain any of the currently accepted suprageneric groups. We propose to restrict the Eoneria and Nerius groups exclusively to the Neotropical fauna, and synonymize Glyphidops subgenus Oncopsia Enderlein with Glyphidops subgenus Glyphidops Enderlein, eliminating the subgeneric divisions. This revised phylogeny presents a striking biogeographic consistency, and shows that previous main divisions of the family were based on events of convergence.
机译:鸟科是一类小型的蝇科蝇,大部分分布在热带地区。关于它们的生物学知之甚少,并且从未评估物种之间的进化关系。我们对该科进行了首次全面的系统发育分析,其中包括来自所有生物地理区域的48个物种,以及五种微型pe科和一个拟南芥科。我们建立了194个字符的形态数据矩阵,其中包括72个连续字符。我们首先探索解决连续字符缩放问题的方法,包括将范围重新缩放为统一并使用隐式加权。我们发现,这两种策略均会导致非常不同的系统发育假说,并且隐含的权重减少了缩放的问题,但仅部分解决了问题。此外,在重新缩放字符后使用隐式加权可改善分区之间的一致性,并导致更高的组支持值。关于Neriidae,尽管我们没有获得任何目前公认的超家族成员,但我们确认了该家族及其大多数属的一夫一妻制。我们建议将Eoneria和Nerius组仅限于新热带动物区系,并将Glyphidops亚科Oncopsia Enderlein与Glyphidops亚属Glyphidops Enderlein同义词,消除亚属划分。修订后的系统发生学表现出惊人的生物地理一致性,并表明该家族以前的主要部门是基于融合事件。

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