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DNA barcoding a taxonomically complex hemiparasitic genus reveals deep divergence between ploidy levels but lack of species-level resolution

机译:编码分类学上复杂的半寄生虫属的DNA显示倍性水平之间的深层分歧但缺乏物种水平的分辨率

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摘要

DNA barcoding is emerging as a useful tool not only for species identification but also for studying evolutionary and ecological processes. Although plant DNA barcodes do not always provide species-level resolution, the generation of large DNA barcode data sets can provide insights into the mechanisms underlying the generation of species diversity. Here, we study evolutionary processes in taxonomically complex British Euphrasia (Orobanchaceae), a group with multiple ploidy levels, frequent self-fertilization, young species divergence and widespread hybridization. We use a phylogenetic approach to investigate the colonization history of British Euphrasia, followed by a DNA barcoding survey and population genetic analyses to reveal the causes of shared sequence variation. Phylogenetic analysis shows Euphrasia have colonized Britain from mainland Europe on multiple occasions. DNA barcoding reveals that no British Euphrasia species has a consistent diagnostic sequence profile, and instead, plastid haplotypes are either widespread across species, or are population specific. The partitioning of nuclear genetic variation suggests differences in ploidy act as a barrier to gene exchange, while the divergence between diploid and tetraploid ITS sequences supports the polyploids being allotetraploid in origin. Overall, these results show that even when lacking species-level resolution, analyses of DNA barcoding data can reveal evolutionary patterns in taxonomically complex genera.
机译:DNA条形码正在成为一种有用的工具,不仅可以用于物种识别,还可以用于研究进化和生态过程。尽管植物DNA条形码并不总是提供物种级别的分辨率,但是大型DNA条形码数据集的生成可以提供对物种多样性生成基础的机制的见解。在这里,我们研究生物分类学复杂的英国Euphrasia(Orobanchaceae)的进化过程,该群体具有多个倍性水平,频繁的自体受精,年轻的物种分化和广泛的杂交。我们使用系统发育方法来调查英国Euphrasia的定殖历史,然后进行DNA条码调查和群体遗传分析以揭示共有序列变异的原因。系统发育分析表明,欧弗拉希娅已多次从欧洲大陆殖民英国。 DNA条码显示,没有任何英国Euphrasia种具有一致的诊断序列,而质体单倍型要么在种间广泛分布,要么是种群特异性的。核遗传变异的划分表明,倍性差异是基因交换的障碍,而二倍体和四倍体ITS序列之间的差异则支持多倍体起源于异源四倍体。总体而言,这些结果表明,即使缺乏物种级别的分辨率,对DNA条码数据的分析也可以揭示出分类学上复杂的属的进化模式。

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