首页> 外文期刊>Cladistics: The international journal of the Willi Hennig Society >Conflict and congruence in a combined DNA-morphology analysis of megachiropteran bat relationships (Mammalia : Chiroptera : Pteropodidae)
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Conflict and congruence in a combined DNA-morphology analysis of megachiropteran bat relationships (Mammalia : Chiroptera : Pteropodidae)

机译:大型手足类蝙蝠关系的DNA形态学分析中的冲突和一致性(哺乳动物:手足类:翼足类)

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The phylogeny of megabats (Mammalia: Chiroptera: Megachiroptera) has been addressed only on molecular grounds, as little effort has previously been made to describe the impressive morphological variation of the group in terms of phylogenetically informative characters. Here we provide a morphological matrix of 236 characters from the integument, dentition, cranial and post-cranial skeleton, digestive apparatus and urogenital system. This data set covers most characters discussed previously in more restricted taxonomic contexts, as well a large number of new characters. Our aim was to generate a phylogenetic hypothesis for megabats based on a combined analysis of morphological characters and available gene sequence data from four mitochondrial and one nuclear loci. We used direct optimization under conventional equal costs, as well as under a cost ratio that maximizes homology when inapplicables (gaps) are present. Our results contradict the allegedly high level of conflict between the molecular and morphological partitions. We found that, although morphology alone recovered trees different and to some extent incompatible with those from previous molecular analyses, the combination of the two sources of evidence easily accommodated the morphological and molecular signals, yielding a resolved and relatively well-supported phylogeny of Megachiroptera that is in reasonable agreement with the current morphology-based taxonomy of the group. Overall congruence favored the maximization of homology by a narrow margin. In addition, partial analyses showed that implied weighting of morphology performed slightly better than equal weighting with respect to the combined analyses. (C) The Willi Hennig Society 2005.
机译:巨型蝙蝠的系统发育仅以分子为基础进行了研究,因为以前很少做出努力来根据系统发育信息学特征描述该组令人印象深刻的形态变异。在这里,我们提供了一个由236个字符组成的形态矩阵,分别来自外皮,牙列,颅骨和颅后骨骼,消化器官和泌尿生殖系统。该数据集涵盖了先前在更严格的分类环境中讨论的大多数字符,以及大量的新字符。我们的目标是根据形态特征和来自四个线粒体和一个核基因座的可用基因序列数据的组合分析,为巨型蝙蝠生成系统发生假说。我们在常规等价成本下以及在存在不适用项(缺口)时最大化同源性的成本比下使用直接优化。我们的结果与分子和形态分区之间据称的高度冲突相矛盾。我们发现,虽然仅形态学就能恢复树木,并且在一定程度上与先前的分子分析不符,但两种证据的结合很容易容纳形态学和分子信号,从而产生了解析的且相对良好支持的大翅目系统发育,与该小组当前基于形态的分类法合理地一致。总体一致性使同源性最大化仅占很小的比例。此外,部分分析表明,就组合分析而言,隐含的形态加权比同等加权稍好。 (C)2005年威利·亨尼格学会(Willi Hennig Society)。

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