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Density-dependent dispersal and spatial population dynamics

机译:依赖密度的分散和空间种群动态

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The synchronization of the dynamics of spatially subdivided populations is of both fundamental and applied interest in population biology. Based on theoretical studies, dispersal movements have been inferred to be one of the most general causes of population synchrony, yet no empirical study has mapped distance-dependent estimates of movement rates on the actual pattern of synchrony in species that are known to exhibit population synchrony. Northern vole and lemming species are particularly well-known for their spatially synchronized population dynamics. Here, we use results from an experimental study to demonstrate that tundra vole dispersal movements did not act to synchronize population dynamics in fragmented habitats. In contrast to the constant dispersal rate assumed in earlier theoretical studies, the tundra vole, and many other species, exhibit negative density-dependent dispersal. Simulations of a simple mathematical model, parametrized on the basis of our experimental data, verify the empirical results, namely that the observed negative density-dependent dispersal did not have a significant synchronizing effect.
机译:空间细分种群动态的同步在种群生物学中具有基础和应用意义。根据理论研究,散布运动被认为是种群同步的最普遍原因之一,但尚无经验研究将距离相关的运动速率估计值映射到已知具有种群同步性的物种的实际同步模式上。 。北方田鼠和旅鼠物种因其空间同步种群动态而特别出名。在这里,我们使用一项实验研究的结果来证明苔原田鼠的分散运动并没有起到使零散生境中种群动态同步的作用。与早期理论研究中假定的恒定分散速率相反,苔原田鼠和许多其他物种显示出负的密度依赖性分散。根据我们的实验数据对一个简单的数学模型进行参数化的仿真,验证了经验结果,即所观察到的负密度依赖性色散没有明显的同步效应。

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