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The joint evolution of dispersal and dormancy in a metapopulation with local extinctions and kin competition

机译:具有局部灭绝和亲缘关系竞争的散居种群中分散和休眠的联合进化

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摘要

Dispersal and dormancy are two strategies that allow recolonization of empty patches and escape from kin competition. Because they presumably respond to similar evolutionary forces, it is tempting to consider that these strategies may substitute for each other. Yet in order to predict the outcome of the evolution of dispersal and dormancy, and to characterize the emerging covariation between both traits, it is necessary to consider models where dispersal and dormancy evolve jointly. Here, we analyze the evolution of dispersal and dormancy as a function of direct fitness costs, environmental variation, and competition among relatives. We consider two scenarios depending on whether the rates of dormancy for philopatric and dispersed individuals are constrained to be the same (unconditional dormancy) or allowed to be different (conditional dormancy). We show that only philopatric individuals should enter dormancy, at a rate increasing with increasing rates of local extinction and decreasing population sizes. When dormancy and dispersal evolve jointly, we observe a wide range of evolutionary outcomes. In particular, we find that the pattern of covariation between the evolutionarily stable rates of dispersal and dormancy is molded by the rate of extinction and the local population size.
机译:分散和休眠是两种策略,可以使空补丁重新定居并从亲属竞争中逃脱。由于它们可能对相似的进化力做出反应,因此很容易考虑这些策略可以互相替代。然而,为了预测分散和休眠演变的结果,并表征两个特征之间正在出现的协变,有必要考虑分散和休眠共同演化的模型。在这里,我们分析了直接适应成本,环境变化和亲属之间竞争的关系,即分散和休眠的演变。我们考虑两种情况,这取决于是否将个体和散居个体的休眠率限制为相同(无条件休眠)或允许为不同(条件休眠)。我们表明,只有个体化的个体才应该进入休眠状态,休眠的速度随着局部灭绝率的增加和种群数量的减少而增加。当休眠和分散一起进化时,我们观察到了各种各样的进化结果。特别是,我们发现,消散速度和当地种群规模塑造了进化稳定的休眠速率与休眠速率之间的协变模式。

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