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Population size and relatedness affect fitness of a self-incompatible invasive plant

机译:种群数量和相关性影响自交不亲和的入侵植物的适应性

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摘要

One of the lingering paradoxes in invasion biology is how founder populations of an introduced species are able to overcome the limitations of small size and, in a "reversal of fortune," proliferate in a new habitat. The transition from colonist to invader is especially enigmatic for self-incompatible species, which must find a mate to reproduce. In small populations, the inability to find a mate can result in the Allee effect, a positive relationship between individual fitness and population size or density. Theoretically, the Allee effect should be common in founder populations of self-incompatible colonizing species and may account for the high rate of failed introductions, but little supporting evidence exists. We created a field experiment to test whether the Allee effect affects the maternal fitness of a self-incompatible invasive species, wild radish (Raphanus sativus). We created populations of varying size and relatedness. We measured maternal fitness in terms of both fruit set per flower and seed number per fruit. We found that both population size and the level of genetic relatedness among individuals influence maternal reproductive success. Our results explicitly define an ecological genetic obstacle faced by populations of an exotic species on its way to becoming invasive. Such a mechanistic understanding of the invasions of species that require a mate can and should be exploited for both controlling current outbreaks and reducing their frequency in the future.
机译:入侵生物学中挥之不去的悖论之一是,引进物种的始祖种群如何能够克服小规模的局限,并在“逆转财富”的情况下在新的栖息地中繁衍。从殖民者到侵略者的转变对于自我不相容的物种尤其神秘,因为它们必须找到繁殖的伴侣。在人口较少的人群中,无法找到伴侣会导致Allee效应,这是个体适应度与人口规模或密度之间的正相关关系。从理论上讲,Allee效应在自我不相容的定殖物种的始祖种群中应该很普遍,并且可能导致引入失败的可能性很高,但是几乎没有支持证据。我们创建了一个野外实验,以测试Allee效应是否会影响自我不相容的入侵物种野生萝卜(Raphanus sativus)的母体适应性。我们创建了大小和相关性不同的种群。我们根据每朵花的结实率和每朵果的种子数来衡量母体适应性。我们发现人口规模和个体之间的遗传相关性水平都会影响孕产妇的生殖成功。我们的结果明确定义了外来物种种群在进入入侵过程中面临的生态遗传障碍。对需要伴侣的物种入侵的这种机械理解可以并且应该被利用来控制当前的暴发并降低未来的暴发频率。

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