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首页> 外文期刊>The Royal Society Proceedings B: Biological Sciences >Evolution of density- and patch-size-dependent dispersal rates.
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Evolution of density- and patch-size-dependent dispersal rates.

机译:密度和斑块大小相关的分散速率的演变。

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摘要

Based on a marginal value approach, we derive a nonlinear expression for evolutionarily stable (ES) dispersal rates in a metapopulation with global dispersal. For the general case of density-dependent population growth, our analysis shows that individual dispersal rates should decrease with patch capacity and-beyond a certain threshold-increase with population density. We performed a number of spatially explicit, individual-based simulation experiments to test these predictions and to explore further the relevance of variation in the rate of population increase, density dependence, environmental fluctuations and dispersal mortality on the evolution of dispersal rates. They confirm the predictions of our analytical approach. In addition, they show that dispersal rates in metapopulations mostly depend on dispersal mortality and inter-patch variation in population density. The latter is dominantly driven by environmental fluctuations and the rate of population increase. These conclusions are not altered by the introduction of neighbourhood dispersal. With patch capacities in the order of 100 individuals, kin competition seems to be of negligible importance for ES dispersal rates except when overall dispersal rates are low.
机译:基于边际值方法,我们导出了具有全局分散性的种群中进化稳定(ES)分散率的非线性表达式。对于密度依赖的人口增长的一般情况,我们的分析表明,个体扩散速度应随斑块容量的增加而降低,并且超过一定的阈值时,人口密度应增加。我们进行了许多基于空间的,基于个体的模拟实验,以测试这些预测,并进一步探索人口增长率,密度依赖性,环境波动和分散死亡率的变化与分散速率演变的相关性。他们证实了我们分析方法的预测。此外,他们表明,在亚群中的散播率主要取决于散播死亡率和种群密度的斑块间变化。后者主要受环境波动和人口增长的驱动。引入邻域分散不会改变这些结论。补丁数量约为100个个体时,亲属竞争对于ES的散播率似乎微不足道,除非总体散播率较低。

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