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Expanded Taxonomic Sampling Coupled with Gene Genealogy Interrogation Provides Unambiguous Resolution for the Evolutionary Root of Angiosperms

机译:扩展的分类采样与基因家谱询问相结合为被子植物的进化根提供了明确的解决方案

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摘要

The branching order of major angiosperm lineages is a challenging phylogenetic question that has received substantial attention in recent years. Two main competing hypotheses place the New Caledonian Amborella as either sister to all other extant angiosperms (Amborella-sister) or to the water lilies (Amborella + Nymphaeales). Here, we revisit this question by expanding a transcriptomic data set of 310 genes previously assembled to include data from seven species comprising two major lineages of flowering plants that were poorly represented or missing from the original study. We also applied gene genealogy interrogation, a recent approach based on constrained tree searches in combination with topology tests, to account for gene tree estimation error and its downstream effects in coalescent analyses. In addition to gene genealogy interrogation, we conducted a large number of multilocus analyses, including concatenation and coalescent approaches (using both unconstrained and constrained gene trees), and based on different data sets (original and expanded) and data types (nucleotide and amino acid sequences). We show that the majority of gene trees favor Amborella-sister topology, and all multilocus analyses conducted (concatenation and coalescent) provide overwhelming support for this hypothesis regardless of data type. Beyond resolving the evolutionary root of angiosperms with confidence, our results highlight the importance of both broadening taxonomic sampling in phylogenomics and addressing the effects of gene tree error in summary coalescent inferences.
机译:主要被子植物谱系的分支顺序是一个具有挑战性的系统发育问题,近年来受到了广泛关注。有两个主要的相互竞争的假设:新喀里多尼亚安博列虫是所有其他现存被子植物(Amborella姐妹)或睡莲(Amborella ++ Nymphaeales)的姐妹。在这里,我们通过扩展先前组装的310个基因的转录组数据集来重新考虑这个问题,以包括来自七个物种的数据,这些物种包括两个主要谱系的开花植物,而这些植物在原始研究中表现不佳或缺失。我们还应用了基因谱系询问,这是一种基于受约束的树搜索并结合拓扑测试的最新方法,以解决基因树估计误差及其在聚结分析中的下游影响。除了询问基因家谱外,我们还进行了许多多基因座分析,包括连接和合并方法(使用无约束和受约束的基因树),并且基于不同的数据集(原始和扩展)和数据类型(核苷酸和氨基酸)序列)。我们表明,大多数基因树都支持Amborella-sister拓扑结构,并且进行的所有多基因座分析(串联和合并)为该假设提供了压倒性的支持,而与数据类型无关。除了自信地解决被子植物的进化根源外,我们的研究结果还强调了在系统发育组学中扩大分类学抽样范围以及在汇总的归纳推断中解决基因树错误的影响的重要性。

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