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首页> 外文期刊>Molecular phylogenetics and evolution >What are the roles of taxon sampling and model fit in tests of cyto-nuclear discordance using avian mitogenomic data?
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What are the roles of taxon sampling and model fit in tests of cyto-nuclear discordance using avian mitogenomic data?

机译:分类型抽样和模型适应在使用禽介质组织的Cyto-uncton-unit uncort的测试中的角色是什么?

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摘要

Conflicts between nuclear and mitochondrial phylogenies have led to uncertainty for some relationships within the tree of life. These conflicts have led some to question the value of mitochondrial DNA in phylogenetics now that genome-scale nuclear data can be readily obtained. However, since mitochondrial DNA is maternally inherited and does not recombine, its phylogeny should be closer to the species tree. Additionally, its rapid evolutionary rate may drive accumulation of mutations along short internodes where relevant information from nuclear loci may be limited. In this study, we examine the mitochondrial phylogeny of Cavitaves to elucidate its congruence with recently published nuclear phylogenies of this group of birds. Cavitaves includes the orders Trogoniformes (trogons), Bucerotiformes (hornbills), Coraciiformes (kingfishers and allies), and Piciformes (woodpeckers and allies). We hypothesized that sparse taxon sampling in previously published mitochondrial trees was responsible for apparent cyto-nuclear discordance. To test this hypothesis, we assembled 27 additional Cavitaves mitogenomes and estimated phylogenies using seven different taxon sampling schemes ranging from five to 42 ingroup species. We also tested the role that partitioning and model choice played in the observed discordance. Our analyses demonstrated that improved taxon sampling could resolve many of the disagreements. Similarly, partitioning was valuable in improving congruence with the topology from nuclear phylogenies, though the model used to generate the mitochondrial phylogenies had less influence. Overall, our results suggest that the mitochondrial tree is trustworthy when partitioning is used with suitable taxon sampling.
机译:核和线粒体系统之间的冲突导致了生命之树内的某些关系的不确定性。这些冲突导致了一些问题在系统发育中的线粒体DNA中的价值现在可以容易地获得基因组尺寸的核数据。然而,由于线粒体DNA是母体遗传并且不重组,其系统发育应更接近物种树。另外,其快速进化率可能沿着核基因座的相关信息的短节间突出突变的累积。在这项研究中,我们研究了喇叭的线粒体系统发育,以阐明其最近公布这组鸟类的核系统的一致性。 Cavitaves包括秩序Trogoniformes(Trogons),Bucerotiformes(犀鸟),coraciformes(翠鸟和盟友)和Piciformes(啄木鸟和盟友)。我们假设以前发表的线粒体树木中的稀疏分类素取样负责表观的细胞核不间断。为了测试这一假设,我们组装了27个额外的空穴毒蛛和估计的系统发育,使用七种不同的紫杉群采样方案从5到42种范围内的范围。我们还测试了在观察到的义务中分区和模型选择的作用。我们的分析表明,改进的分类种类抽样可以解决许多分歧。同样,分区对于改善来自核系统生成的拓扑的同时性是有价值的,尽管用于产生线粒体的模型的影响较小。总体而言,我们的结果表明,当分区使用适当的分类种类抽样时,线粒体树是值得信赖的。

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