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首页> 外文期刊>Molecular ecology >Barrier to gene flow between two ecologically divergent Populus species, P alba (white poplar) and P tremula (European aspen): the role of ecology and life history in gene introgression
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Barrier to gene flow between two ecologically divergent Populus species, P alba (white poplar) and P tremula (European aspen): the role of ecology and life history in gene introgression

机译:两种生态上不同的杨树(白杨)和白杨(欧洲白杨)之间的基因流动障碍:生态和生活史在基因渗入中的作用

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The renewed interest in the use of hybrid zones for studying speciation calls for the identification and study of hybrid zones across a wide range of organisms, especially in long-lived taxa for which it is often difficult to generate interpopulation variation through controlled crosses. Here, we report on the extent and direction of introgression between two members of the 'model tree' genus Populus: Populus alba (white poplar) and Populus tremula (European aspen), across a large zone of sympatry located in the Danube valley. We genotyped 93 hybrid morphotypes and samples from four parental reference populations from within and outside the zone of sympatry for a genome-wide set of 20 nuclear microsatellites and eight plastid DNA restriction site polymorphisms. Our results indicate that introgression occurs preferentially from P. tremula to P. alba via P. tremula pollen. This unidirectional pattern is facilitated by high levels of pollen vs. seed dispersal in P. tremula (pollen/seed flow = 23.9) and by great ecological opportunity in the lowland floodplain forest in proximity to P. alba seed parents, which maintains gene flow in the direction of P. alba despite smaller effective population sizes (N-e) in this species (P. alba N(e)c. 500-550; P. tremula N(e)c. 550-700). Our results indicate that hybrid zones will be valuable tools for studying the genetic architecture of the barrier to gene flow between these two ecologically divergent Populus species.
机译:对使用杂种区研究物种的兴趣再次引起人们的兴趣,这就需要对广泛的生物体进行杂种区的鉴定和研究,特别是在长寿命的分类单元中,因为通常很难通过控制杂交产生种群间的差异。在这里,我们报告了位于多瑙河谷大面积共生区域中的“模型树”杨属的两个成员之间的渗入程度和方向:白杨(白杨)和白杨(欧洲白杨)。我们对来自共生区内部和外部的四个亲代参考种群的93个杂种形态型和样本进行了基因分型,以实现全基因组的20个核微卫星和8个质体DNA限制性位点多态性。我们的结果表明,渗入优先发生于金银假单胞菌经由金银假单胞菌花粉到白僵菌。花粉vs.种子在金银花中的散布水平高(花粉/种子流= 23.9),以及靠近白杨种子亲本的低地洪泛区森林中的巨大生态机会,可以维持这种单向模式,从而维持了基因的流动。尽管该物种的有效种群数量较小(Ne),但其方向仍为白斑病菌(P. alba N(e)c。500-550; P. tremula N(e)c。550-700)。我们的结果表明,杂种区将是研究这两种生态上不同的杨树之间基因流动障碍的遗传结构的有价值的工具。

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