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Density-dependent selection closes an eco-evolutionary feedback loop in the stick insect Timema cristinae

机译:依赖密度的选择封闭了条虫Timema cristinae中的生态进化反馈回路

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摘要

Empirical demonstrations of feedbacks between ecology and evolution are rare. Here, we used a field experiment to test the hypothesis that avian predators impose density-dependent selection (DDS) on Timema cristinae stick insects. We transplanted wild-caught T. cristinae to wild bushes at 50 : 50 cryptic : conspicuous morph ratio and manipulated density by transplanting either 24 or 48 individuals. The frequency of the conspicuous morph was reduced by 73% in the low-density treatment, but only by 50% in the high-density treatment, supporting a hypothesis of negative DDS. Coupled with previous studies on T. cristinae, which demonstrate that maladaptive gene flow reduces population density, we support an eco-evolutionary feedback loop in this system. Furthermore, our results support the hypothesis that predator satiation is the mechanism driving DDS. We found no effects of T. cristinae density on the abundance or species richness of other arthropods. Eco-evolutionary feedbacks, driven by processes like DDS, can have implications for adaptive divergence and speciation.
机译:关于生态与进化之间的反馈的经验证明很少。在这里,我们使用了一个野外实验来检验以下假设:鸟类捕食者将硬顶stin昆虫强加于密度依赖选择(DDS)。我们以50:50的隐蔽性:明显的形态比例和野生密度将野生捕捞的克氏杆菌移植到野生灌木丛中,并通过移植24或48个人来控制密度。在低密度处理中,显着形态的频率降低了73%,但在高密度处理中仅降低了50%,从而支持了DDS阴性的假设。结合以前对cri。cristinae的研究,这些研究表明适应不良的基因流降低了种群密度,我们支持该系统中的生态进化反馈回路。此外,我们的研究结果支持了捕食者饱食是驱动DDS的机制的假说。我们发现丁香锥虫密度对其他节肢动物的丰度或物种丰富度没有影响。由DDS之类的过程驱动的生态进化反馈可能会对自适应发散和物种形成产生影响。

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