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Inferring Phylogeny and Introgression using RADseq Data: An Example from Flowering Plants (Pedicularis: Orobanchaceae)

机译:使用RADseq数据推断系统发育和基因渗入:以开花植物为例(Pedicularis:Orobanchaceae)

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摘要

Phylogenetic relationships among recently diverged species are often difficult to resolve due to insufficient phylogenetic signal in available markers and/or conflict among gene trees. Here we explore the use of reduced-representation genome sequencing, specifically in the form of restriction-site associated DNA (RAD), for phylogenetic inference and the detection of ancestral hybridization in non-model organisms. As a case study, we investigate Pedicularis section Cyathophora, a systematically recalcitrant clade of flowering plants in the broomrape family (Orobanchaceae). Two methods of phylogenetic inference, maximum likelihood and Bayesian concordance, were applied to data sets that included as many as 40,000 RAD loci. Both methods yielded similar topologies that included two major clades: a “rex-thamnophila” clade, composed of two species and several subspecies with relatively low floral diversity, and geographically widespread distributions at lower elevations, and a “superba” clade, composed of three species characterized by relatively high floral diversity and isolated geographic distributions at higher elevations. Levels of molecular divergence between subspecies in the rex-thamnophila clade are similar to those between species in the superba clade. Using Patterson’s D-statistic test, including a novel extension of the method that enables finer-grained resolution of introgression among multiple candidate taxa by removing the effect of their shared ancestry, we detect significant introgression among nearly all taxa in the rex-thamnophila clade, but not between clades or among taxa within the superba clade. These results suggest an important role for geographic isolation in the emergence of species barriers, by facilitating local adaptation and differentiation in the absence of homogenizing gene flow. [Concordance factors; genotyping-by-sequencing; hybridization; partitioned D-statistic test; Pedicularis; restriction-site associated DNA.]
机译:由于可用标记中的系统发生信号不足和/或基因树之间存在冲突,最近分化的物种之间的系统发生关系通常很难解决。在这里,我们探讨了减少表示形式的基因组测序的使用,特别是以限制性位点相关的DNA(RAD)的形式,用于系统发育推断和非模式生物中祖先杂交的检测。作为案例研究,我们调查了Pedicularis切片Cyathophora,这是一种在room帚科(Orobanchaceae)中开花植物的系统顽固进化枝。系统发育推断的两种方法,最大似然法和贝叶斯一致性,已应用于包含多达40,000个RAD基因座的数据集。两种方法都产生了类似的拓扑,包括两个主要进化枝:“雷克斯嗜血菌”进化枝,由两个物种和几个亚种组成,具有相对较低的花艺多样性,并且在较低海拔高度分布在地理上;还有一个“ superba”进化枝,由三个物种组成具有较高的花艺多样性和较高海拔的孤立地理分布特征的物种。霸王龙进化枝亚种之间的亚种间的分子差异水平与superba进化枝间的种间相似。使用帕特森(Datterson)的D统计检验,包括该方法的新颖扩展,该方法可通过消除多个候选类群的共同血统来更精细地解决其基因渗入的问题,从而检测到雷克斯嗜血杆菌分支中几乎所有类群的显着渗入,但不是在进化枝之间或在超级进化枝内的类群之间。这些结果表明,在没有均质基因流的情况下,通过促进局部适应和分化,地理隔离在物种壁垒的出现中具有重要作用。 [一致因素;测序基因分型杂交分区D统计检验;梗限制性酶切位点相关的DNA。

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