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Gene flow and species delimitation: A case study of two pine species with overlapping distributions in Southeast China

机译:基因流与物种划界:以中国东南部两种分布重叠的松树种为例

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Species delimitation detected by molecular markers is complicated by introgression and incomplete lineage sorting between species. Recent modeling suggests that fixed genetic differences between species are highly related to rates of intraspecific gene flow. However, it remains unclear whether such differences are due to high levels of intraspecific gene flow overriding the spread of introgressed alleles or favoring rapid lineage sorting between species. In pines, chloroplast (cp) and mitochondrial (mt) DNAs are normally paternally and maternally inherited, respectively, and thus their relative rates of intraspecific gene flow are expected to be high and low, respectively. In this study, we used two pine species with overlapping geographical distributions in southeast China, P. massoniana and P. hwangshanensis, as a model system to examine the association between organelle gene flow and variation within and between species. We found that cpDNA variation across these two pine species is more species specific than mtDNA variation and almost delimits taxonomic boundaries. The shared mt/cp DNA genetic variation between species shows no bias in regard to parapatric versus allopatric species' distributions. Our results therefore support the hypothesis that high intraspecific gene flow has accelerated cpDNA lineage sorting between these two pine species.
机译:通过分子标记检测到的种间界限由于种间的渗入和种系分类不完全而变得复杂。最近的建模表明,物种之间固定的遗传差异与种内基因流的速率高度相关。但是,目前尚不清楚这种差异是否是由于种内基因水平高而使渗入等位基因的扩散所覆盖,还是有利于物种之间的快速谱系排序。在松树中,叶绿体(cp)和线粒体(mt)DNA通常分别是父本和母本遗传的,因此,它们种内基因流的相对速率预计分别为高和低。在这项研究中,我们使用了中国东南部的两个松树物种,即地理分布重叠的马尾松和黄山山松,作为模型系统来研究细胞器基因流与物种内和物种间变异之间的关联。我们发现跨这两个松树物种的cpDNA变异比mtDNA变异更具物种特异性,并且几乎划定了分类界限。物种之间共有的mt / cp DNA遗传变异表明,对于异源物种和异源物种的分布没有偏见。因此,我们的结果支持以下假设:种内高基因流加速了这两个松树物种之间的cpDNA谱系排序。

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