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Rapid trait evolution drives increased speed and variance in experimental range expansions

机译:快速性状进化推动了实验范围扩展的速度和方差的增加

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摘要

Range expansions are central to two ecological issues reshaping patterns of global biodiversity: biological invasions and climate change. Traditional theory considers range expansion as the outcome of the demographic processes of birth, death and dispersal, while ignoring the evolutionary implications of such processes. Recent research suggests evolution could also play a critical role in determining expansion speed but controlled experiments are lacking. Here we use flour beetles (Tribolium castaneum) to show experimentally that mean expansion speed and stochastic variation in speed are both increased by rapid evolution of traits at the expansion edge. We find that higher dispersal ability and lower intrinsic growth rates evolve at the expansion edge compared with spatially nonevolving controls. Furthermore, evolution of these traits is variable, leading to enhanced variance in speed among replicate population expansions. Our results demonstrate that evolutionary processes must be considered alongside demographic ones to better understand and predict range expansions.
机译:范围扩大是重塑全球生物多样性的两个生态问题的核心:生物入侵和气候变化。传统理论将范围扩展视为人口出生,死亡和分散的人口统计过程的结果,而忽略了此类过程的进化含义。最近的研究表明,进化在确定扩展速度方面也可能起关键作用,但缺乏受控的实验。在这里,我们使用面粉甲虫(Tribolium castaneum)进行实验显示,平均扩张速度和速度的随机变化都通过扩张边缘性状的快速进化而增加。我们发现,与空间上无变化的控制相比,更高的分散能力和更低的内在增长率在扩展边缘处发展。此外,这些性状的进化是可变的,导致复制种群扩展之间速度差异的增加。我们的结果表明,进化过程必须与人口统计学一起考虑,以更好地理解和预测范围的扩大。

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