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Inbreeding Depression Is Purged in the Invasive Insect Harmonia axyridis

机译:近交性抑郁症在侵袭性虫口和谐中得以消除

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摘要

Bottlenecks in population size reduce genetic diversity and increase inbreeding, which can lead to inbreeding depression [1]. It is thus puzzling how introduced species, which typically pass through bottlenecks, become such successful invaders [2]. However, under certain theoretical conditions, bottlenecks of intermediate size can actually purge the alleles that cause inbreeding depression [3]. Although this process has been confirmed in model laboratory systems [4], it has yet to be observed in natural invasive populations. We evaluate whether such purging could facilitate biological invasions by using the world-wide invasion of the ladybird (or ladybug) Harmonia axyridis. We first show that invasive populations endured a bottleneck of intermediate intensity. We then demonstrate that replicate introduced populations experience almost none of the inbreeding depression suffered by native populations. Thus, rather than posing a barrier to invasion as often assumed, bottlenecks, by purging deleterious alleles, can enable the evolution of invaders that maintain high fitness even when inbred.
机译:人口规模的瓶颈减少了遗传多样性并增加了近交,这可能导致近交衰退[1]。因此,令人困惑的是通常经过瓶颈的引进物种如何成为如此成功的入侵者[2]。但是,在某些理论条件下,中等大小的瓶颈实际上可以清除引起近交抑制的等位基因[3]。尽管此过程已在模型实验室系统中得到证实[4],但尚未在自然入侵人群中观察到。我们通过使用全球范围内的瓢虫(或瓢虫)Harmonia axyridis入侵来评估这种清除是否可以促进生物入侵。我们首先表明,入侵人群承受了中等强度的瓶颈。然后,我们证明了引进的重复种群几乎没有经历过本土种群遭受的近亲衰退。因此,通过清除有害等位基因,瓶颈不会像通常认为的那样构成入侵的障碍,而是可以使入侵者进化,即使自交时也能保持高适应性。

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