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首页> 外文期刊>Evolution: International Journal of Organic Evolution >Reproductive patterns shape introgression dynamics and species succession within the European white oak species complex
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Reproductive patterns shape introgression dynamics and species succession within the European white oak species complex

机译:生殖模式影响欧洲白栎树种群内的渗入动态和物种演替

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The reproductive system of hybrids is an important factor shaping introgression dynamics within species complexes. We combined paternity and parentage analyses with previous species characterization by genetic assignment, to directly identify reproductive events that occurred within a stand comprising four European white oak species. Comparing species status of parent pairs provided a precise quantification of hybridization rate, backcrosses, and intraspecific matings in two life stages. The detailed mating system analysis revealed new findings on the dynamics of interspecific gene flow. First, hybrids acted successfully as both male and female during reproduction. They produced acorns and seedlings that were as viable as those sired by purebreds. Second, species maintenance could be due to a relatively low level of interspecific mating contrasting with a large proportion of intraspecific crosses and backcrosses. Despite a high proportion of hybrids and extensive interspecific gene flow, partial species integrity is maintained by genetically controlled pollen discrimination, ensuring preferential matings within purebreds and high parental species fidelity in hybrid reproduction, which impedes complete collapse into a continuous hybrid swarm. Finally, we showed that pollen from the different species had unequal contributions to reproduction suggesting that introgression processes could ultimately lead to extirpation or expansion of some species.
机译:杂种的生殖系统是影响物种复合体内渗入动态的重要因素。我们通过遗传分配将亲子关系和亲子关系分析与以前的物种特征相结合,以直接识别在包含四种欧洲白橡树种的林分中发生的生殖事件。比较亲本对的物种状态可以精确定量两个生命阶段的杂交率,回交和种内交配。详细的交配系统分析揭示了种间基因流动力学的新发现。首先,杂种在繁殖过程中成功地发挥了雄性和雌性的作用。他们生产的橡子和幼苗与纯种的橡子和幼苗一样可行。其次,物种维持可能是由于种间交配水平相对较低,而种内杂交和回交所占比例较大。尽管杂种比例很高且种间基因流广泛,但通过遗传控制的花粉区分可维持部分物种的完整性,从而确保纯种内的优先交配和杂种繁殖中的高亲本物种保真度,从而阻碍了整个杂交群体的彻底崩溃。最后,我们显示了来自不同物种的花粉对繁殖的贡献不平等,这表明渗入过程最终可能导致某些物种的灭绝或扩展。

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