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Trapped by habitat choice: Ecological trap emerging from adaptation in an evolutionary experiment

机译:被栖息地选择:生态陷阱在进化实验中的适应性中出现

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摘要

Individuals moving in heterogeneous environments can improve their fitness considerably by habitat choice. Induction by past exposure, genetic preference alleles and comparison of local performances can all drive this decision‐making process. Despite the importance of habitat choice mechanisms for eco‐evolutionary dynamics in metapopulations, we lack insights on the connection of their cue with its effect on fitness optimization. We selected a laboratory population of Koch (two‐spotted spider mite) according to three distinct host‐choice selection treatments for ten generations. Additionally, we tested the presence of induced habitat choice mechanisms and quantified the adaptive value of a choice before and after ten generations of artificial selection in order to gather insight on the habitat choice mechanisms at play. Unexpectedly, we observed no evolution of habitat choice in our experimental system: the initial choice of cucumber over tomato remained. However, this choice became maladaptive as tomato ensured a higher fitness at the end of the experiment. Furthermore, a noteworthy proportion of induced habitat choice can modify this ecological trap depending on past environments. Despite abundant theory and applied relevance, we provide the first experimental evidence of an emerging trap. The maladaptive choice also illustrates the constraints habitat choice has in rescuing populations endangered by environmental challenges or in pest control.
机译:在异构环境中移动的个人可以通过栖息地选择显着提高他们的健康。过去暴露的诱导,遗传偏好等位基因和当地表演的比较都可以推动这种决策过程。尽管栖息地选择机制对生态进化动力学的栖息地选择机制,但我们对其提示与其对健身优化的影响的见解。我们选择了一系列不同的宿主选择选择治疗的Koch(双察觉蜘蛛螨)的实验室人群。此外,我们测试了诱导的栖息地选择机制的存在,并量化了十几代人工选择前后选择的自适应价值,以便收集对栖息地选择机制的洞察。出乎意料的是,我们观察到我们的实验系统中的栖息地选择的演变:番茄上黄瓜的初始选择仍然存在。然而,这种选择变得适用,因为番茄确保了在实验结束时的健康状况较高。此外,诱导栖息地选择的值得注意的比例可以根据过去的环境来修改这种生态疏水阀。尽管理论丰富和应用相关性,但我们提供了新兴陷阱的第一个实验证据。不适的选择也说明了限制栖息地选择在拯救环境挑战或害虫控制中的救援人口。

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