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Hybridization selects for prime‐numbered life cycles in Magicicada: An individual‐based simulation model of a structured periodical cicada population

机译:杂交为Magicicada中的质数生命周期选择:结构化周期性蝉种群的基于个体的仿真模型

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摘要

We investigate competition between separate periodical cicada populations each possessing different life‐cycle lengths. We build an individual‐based model to simulate the cicada life cycle and allow random migrations to occur between patches inhabited by the different populations. We show that if hybridization between different cycle lengths produces offspring that have an intermediate life‐cycle length, then predation acts disproportionately to select against the hybrid offspring. This happens because they emerge in low densities without the safety‐in‐numbers provided by either parent population. Thus, prime‐numbered life cycles that can better avoid hybridization are favored. However, we find that this advantage of prime‐numbered cycles occurs only if there is some mechanism that can occasionally synchronize emergence between local populations in sufficiently many patches.
机译:我们调查了具有不同生命周期长度的独立蝉种群之间的竞争。我们建立了一个基于个体的模型来模拟蝉的生命周期,并允许在不同种群居住的斑块之间发生随机迁移。我们表明,如果不同周期长度之间的杂交产生的后代具有中等的生命周期长度,那么掠夺行为就会不成比例地选择来对抗杂交后代。发生这种情况是因为它们以低密度出现而没有父母双方提供的安全数量上的限制。因此,倾向于可以更好地避免杂交的素数生命周期受到青睐。但是,我们发现素数周期的这种优势只有在某些机制可以偶尔使足够数量的斑块中局部种群之间的出现同步时才会出现。

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