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Population Genetics of Speciation in Two Closely Related Wild Tomatoes (Solanum Section Lycopersicon)

机译:两个密切相关的野生番茄(茄属部分番茄)的物种形成的种群遗传学。

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摘要

We present a multilocus sequencing study to assess patterns of polymorphism and divergence in the closely related wild tomato species, Solanum peruvianum and S. chilense (Solanum section Lycopersicon, Solanaceae). The data set comprises seven mapped nuclear loci (≈9.3 kb of analyzed sequence across loci) and four local population samples per species that cover much of the species' range (between 80 and 88 sequenced alleles across both species). We employ the analytical framework of divergence population genetics (DPG) in evaluating the utility of the “isolation” model of speciation to explain observed patterns of polymorphism and divergence. Whereas the isolation model is not rejected by goodness-of-fit criteria established via coalescent simulations, patterns of intragenic linkage disequilibrium provide evidence for postdivergence gene flow at two of the seven loci. These results suggest that speciation occurred under residual gene flow, implying that natural selection is one of the evolutionary forces driving the divergence of these tomato species. This inference is fully consistent with their recent divergence, conservatively estimated to be ≤0.55 million years. We discuss possible biases in the demographic parameter estimates due to the current restriction of DPG algorithms to panmictic species.
机译:我们提出了一个多基因座测序研究,以评估密切相关的野生番茄,茄属番茄和S. chilense(茄科Lycopersicon,茄科)的多态性和差异模式。该数据集包括七个映射的核基因座(整个基因座中约9.3 kb的分析序列)和每个物种四个覆盖整个物种范围的本地样本(两个物种中80至88个测序的等位基因)。在评估物种“分离”模型的效用以解释观察到的多态性和差异模式时,我们采用了差异种群遗传学(DPG)的分析框架。尽管隔离模型不会被合并模拟建立的拟合优度标准所拒绝,但基因内连锁不平衡的模式为七个基因座中两个基因座的差异后基因流提供了证据。这些结果表明物种形成是在残留基因流下发生的,这意味着自然选择是驱动这些番茄物种分化的进化力之一。该推论与他们最近的差异完全一致,保守估计为≤55万年。由于DPG算法目前对全景物种的限制,我们讨论了人口统计学参数估计中的可能偏差。

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