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Combined-evidence analyses of ultraconserved elements and morphological data: an empirical example in iguanian lizards

机译:超法元素和形态学数据的综合证据分析:IGuanian蜥蜴的实证例

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摘要

Genomic datasets generated by next-generation sequencing are increasingly prevalent in phylogenetics, but morphological data are required to phylogenetically place fossils, corroborate molecular hypotheses and date phylogenies. Combined-evidence analyses provide an integrative assessment of tree topology. However, no attempt has been made to simultaneously analyse next-generation genomic datasets and morphological data, and the future of morphology in the context of genomic data is uncertain. I conducted combined-evidence analyses that include genomic and morphological datasets, specifically, with ultraconserved elements and two morphological matrices. In unweighted maximum-likelihood and Bayesian combined-evidence analyses, morphological signal was dwarfed by the ultraconserved elements, and some node support values were reduced relative to ultraconserved element-only analyses. Increasing the weight of morphological characters allowed those data to influence the tree, but weighting subjectivity should be considered in future analyses. More attempts should be made to simultaneously analyse genomic and morphological datasets.
机译:由下一代测序产生的基因组数据集在系统发育中越来越普遍,但是形态学数据是文学地放置化石,证实分子假设和枣化学原理。综合证据分析提供了树拓扑的一体化评估。然而,没有尝试同时分析下一代基因组数据集和形态数据,并且在基因组数据的背景下的形态的未来是不确定的。我进行了组合证据分析,其包括基因组和形态学数据集,具体地,具有超委托元素和两种形态学基质。在未加权的最大可能性和贝叶斯联合证据分析中,通过超级元素赋予形态信号,相对于仅超刻度的元素分析,一些节点支持值减少。增加形态字符的重量允许这些数据影响树,但在将来的分析中应考虑加权主观性。应更多的尝试同时分析基因组和形态学数据集。

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