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首页> 外文期刊>The American Naturalist: Devoted to the Conceptual Unification of the Biological Sciences >Comparing the Effects of Rapid Evolution and Phenotypic Plasticity on Predator-Prey Dynamics
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Comparing the Effects of Rapid Evolution and Phenotypic Plasticity on Predator-Prey Dynamics

机译:比较快速进化和表型可塑性对捕食者-猎物动力学的影响

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Ecologists have increasingly focused on how rapid adaptive trait changes can affect population dynamics. Rapid adaptation can result from either rapid evolution or phenotypic plasticity, but their effects on population dynamics are seldom compared directly. Here we examine theoretically the effects of rapid evolution and phenotypic plasticity of antipredatory defense on predator-prey dynamics. Our analyses reveal that phenotypic plasticity tends to stabilize population dynamics more strongly than rapid evolution. It is therefore important to know the mechanism by which phenotypic variation is generated for predicting the dynamics of rapidly adapting populations. We next examine an advantage of a phenotypically plastic prey genotype over the polymorphism of specialist prey genotypes. Numerical analyses reveal that the plastic genotype, if there is a small cost for maintaining it, cannot coexist with the pairs of specialist counterparts unless the system has a limit cycle. Furthermore, for the plastic genotype to replace specialist genotypes, a forced environmental fluctuation is critical in a broad parameter range. When these results are combined, the plastic genotype enjoys an advantage with population oscillations, but plasticity tends to lose its advantage by stabilizing the oscillations. This dilemma leads to an interesting intermittent limit cycle with the changing frequency of phenotypic plasticity.
机译:生态学家越来越关注快速适应性状的变化如何影响种群动态。快速适应可能来自快速进化或表型可塑性,但很少直接比较它们对种群动态的影响。在这里,我们从理论上考察反掠夺性防御的快速演变和表型可塑性对掠夺者—猎物动力学的影响。我们的分析表明,表型可塑性比快速演化更倾向于稳定种群动态。因此,重要的是要了解产生表型变异的机制,以预测快速适应种群的动态。接下来,我们研究表型可塑性猎物基因型相对于专业猎物基因型多态性的优势。数值分析表明,塑料基因型,如果维护成本很小,就不能与成对的专家基因共存,除非系统有一个极限周期。此外,要用塑料基因型代替专业基因型,在广泛的参数范围内,强制性环境波动至关重要。综合这些结果,可塑性基因型在总体振荡方面具有优势,但可塑性倾向于通过稳定振荡而失去其优势。这种困境导致随着表型可塑性变化频率的有趣的间歇极限循环。

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