首页> 外文期刊>Molecular phylogenetics and evolution >Phylogenomic analyses resolve an ancient trichotomy at the base of Ischyropsalidoidea (Arachnida, Opiliones) despite high levels of gene tree conflict and unequal minority resolution frequencies
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Phylogenomic analyses resolve an ancient trichotomy at the base of Ischyropsalidoidea (Arachnida, Opiliones) despite high levels of gene tree conflict and unequal minority resolution frequencies

机译:尽管高水平的基因树冲突和不平等的少数群体解决频率,系统遗传学分析还是解决了在Ischyropsalidoidea(Arachnida,Opiliones)基地的古代三分法

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摘要

Phylogenetic resolution of ancient rapid radiations has remained problematic despite major advances in statistical approaches and DNA sequencing technologies. Here we report on a combined phylogenetic approach utilizing transcriptome data in conjunction with Sanger sequence data to investigate a tandem of ancient divergences in the harvestmen superfamily Ischyropsalidoidea (Arachnida, Opiliones, Dyspnoi). We rely on Sanger sequences to resolve nodes within and between closely related genera, and use RNA-seq data from a subset of taxa to resolve a short and ancient internal branch. We use several analytical approaches to explore this succession of ancient diversification events, including concatenated and coalescent-based analyses and maximum likelihood gene trees for each locus. We evaluate the robustness of phylogenetic inferences using a randomized locus sub-sampling approach, and find congruence across these methods despite considerable incongruence across gene trees. Incongruent gene trees are not recovered in frequencies expected from a simple multispecies coalescent model, and we reject incomplete lineage sorting as the sole contributor to gene tree conflict. Using these approaches we attain robust support for higher-level phylogenetic relationships within Ischyropsalidoidea. (C) 2015 Elsevier Inc. All rights reserved.
机译:尽管统计方法和DNA测序技术取得了重大进展,但古代快速辐射的系统发生解析仍然存在问题。在这里,我们报告了结合转录组数据和Sanger序列数据的综合系统发生方法,以研究串联在收割者超家族Ischyropsalidoidea(Arachnida,Opiliones,Dyspnoi)中的古代分歧。我们依靠Sanger序列来解析密切相关属内和之间的节点,并使用来自一个分类单元的RNA-seq数据来解析一个短而古老的内部分支。我们使用多种分析方法来探索这种古老的多样化事件的演替,包括基于串联和合并的分析以及每个基因座的最大似然基因树。我们使用随机基因座亚采样方法评估系统发育推断的鲁棒性,并且尽管基因树之间存在很大的不一致,但在这些方法中发现了一致性。不一致的基因树无法以简单的多物种合并模型预期的频率恢复,我们拒绝将不完整的谱系排序作为造成基因树冲突的唯一原因。使用这些方法,我们获得了对Ischyropsalidoidea内更高层次的系统发育关系的有力支持。 (C)2015 Elsevier Inc.保留所有权利。

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