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Transient local adaptation and source–sink dynamics in experimental populations experiencing spatially heterogeneous environments

机译:经历空间异质性环境的实验人群的瞬时局部适应和源库动态

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摘要

Local adaptation is determined by the strength of selection and the level of gene flow within heterogeneous landscapes. The presence of benign habitat can act as an evolutionary stepping stone for local adaptation to challenging environments by providing the necessary genetic variation. At the same time, migration load from benign habitats will hinder adaptation. In a community context, interspecific competition is expected to select against maladapted migrants, hence reducing migration load and facilitating adaptation. As the interplay between competition and spatial heterogeneity on the joint ecological and evolutionary dynamics of populations is poorly understood, we performed an evolutionary experiment using the herbivore spider mite Tetranychus urticae as a model. We studied the species's demography and local adaptation in a challenging environment that consisted of an initial sink (pepper plants) and/or a more benign environment (cucumber plants). Half of the experimental populations were exposed to a competitor, the congeneric T. ludeni. We show that while spider mites only adapted to the challenging pepper environment when it was spatially interspersed with benign cucumber habitat, this adaptation was only temporary and disappeared when the populations in the benign cucumber environment were expanding and spilling-over to the challenging pepper environment. Although the focal species outcompeted the competitor after about two months, a negative effect of competition on the focal species’s performance persisted in the benign environment. Adaptation to challenging habitat in heterogeneous landscapes thus highly depends on demography and source–sink dynamics, but also on competitive interactions with other species, even if they are only present for a short time span.
机译:局部适应性取决于异质景观中的选择强度和基因流动水平。良性栖息地的存在可以通过提供必要的遗传变异,作为局部适应挑战性环境的进化的垫脚石。同时,良性生境的迁徙负荷将阻碍适应。在社区背景下,种间竞争预计将针对适应不良的移民,从而减少移民负担并促进适应。由于对种群的联合生态和进化动力学的竞争和空间异质性之间的相互作用知之甚少,我们使用草食性螨螨Tetranychus urticae作为模型进行了进化实验。我们在具有挑战性的环境中研究了物种的人口统计学和当地适应性,其中包括初始水槽(辣椒植物)和/或更温和的环境(黄瓜植物)。一半的实验人群暴露于同类竞争者T. ludeni。我们显示,虽然蜘蛛螨在空间上穿插良性黄瓜栖息地时仅适应于具有挑战性的辣椒环境,但当良性黄瓜环境中的种群扩展并溢出到具有挑战性的辣椒环境时,这种适应只是暂时的而消失了。尽管焦点物种在大约两个月后的表现优于竞争对手,但在良性环境中,竞争对焦点物种表现的负面影响仍然存在。因此,对异质景观中具有挑战性的栖息地的适应在很大程度上取决于人口统计和源汇动态,而且还取决于与其他物种的竞争性相互作用,即使它们只是在很短的时间内出现。

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