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Antagonistic coevolution mediated by phenotypic differences between quantitative traits

机译:数量性状之间的表型差异介导的拮抗协同进化

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Many well-studied coevolutionary interactions between predators and prey or hosts and parasites are mediated by quantitative traits. In some interactions, such as those between cuckoos and their hosts, interactions are mediated by the degree of phenotype matching among species, and a significant body of theory has been developed to predict the coevolutionary dynamics and outcomes of such interactions. In a large number of other cases, however, interactions are mediated by the extent to which the phenotype of one species exceeds that of the other. For these cases-which are arguably more numerous-few theoretical predictions exist for coevolutionary dynamics and outcomes. Here we develop and analyze mathematical models of interspecific interactions mediated by the extent to which the quantitative trait of one species exceeds that of the other. Our results identify important differences from previously studied models based on trait matching. First, our results show that cyclical dynamics are possible only if the strength of coevolutionary selection exceeds a threshold and stabilizing selection acts on the interacting traits. Second, our results demonstrate that significant levels of genetic polymorphism can be maintained only when cyclical dynamics occur. This result leads to the unexpected prediction that maintenance of genetic polymorphism is enhanced by strong selection. Finally, our results demonstrate that there is no a priori reason to expect the traits of interacting species should match in any literal sense, even in the absence of gene flow among populations.
机译:捕食者与猎物或宿主和寄生虫之间的许多经过深入研究的协同进化相互作用是由数量性状介导的。在某些相互作用中,例如杜鹃与其宿主之间的相互作用,相互作用是通过物种之间的表型匹配程度来介导的,并且已经开发出重要的理论体系来预测这种相互作用的共同进化动力学和结果。然而,在许多其他情况下,相互作用是通过一种物种的表型超过另一种的表型的程度来介导的。对于这些情况(可以说是更多),很少有关于协同进化动力学和结果的理论预测。在这里,我们开发和分析种间相互作用的数学模型,该模型由一种物种的数量性状超过另一种物种的数量性状介导。我们的结果发现与以前基于特征匹配研究的模型存在重要差异。首先,我们的结果表明,只有当协同进化选择的强度超过阈值并且稳定选择作用于交互性状时,周期性动力学才可能。第二,我们的结果表明,只有当周期性动力学发生时,才能维持显着水平的遗传多态性。该结果导致出乎意料的预测,即通过强选择增强了遗传多态性的维持。最后,我们的研究结果表明,即使没有种群间的基因流,也没有先验的理由可以期望相互作用物种的特征在任何字面上都可以匹配。

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