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The Role of Landscape-Dependent Disturbance and Dispersal in Metapopulation Persistence

机译:景观相关的干扰和分散在种群持久性中的作用

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The fundamental processes that influence metapopulation dynamics (extinction and recolonization) will often depend on landscape structure. Disturbances that increase patch extinction rates will frequently be landscape dependent such that they are spatially aggregated and have an increased likelihood of occurring in some areas. Similarly, landscape structure can influence organism movement, producing asymmetric dispersal between patches. Using a stochastic, spatially explicit model, we examine how landscape-dependent correlations between dispersal and disturbance rates Influence metapopulation dynamics. Habitat patches that are situated in areas where the likelihood of disturbance is low will experience lower extinction rates and will function as partial refuges. We discovered that the presence of partial refuges increases metapopulation viability and that the value of partial refuges was contingent on whether dispersal was also landscape dependent. Somewhat counterintuitively, metapopulation viability was reduced when individuals had a preponderance to disperse away from refuges and was highest when there was biased dispersal toward refuges. Our work demonstrates that landscape structure needs to be incorporated into metapopulation models when there is either empirical data or ecological rationale for extinction and/or dispersal rates being landscape dependent.
机译:影响种群动态(灭绝和再定殖)的基本过程通常取决于景观结构。增加斑块灭绝速率的干扰通常取决于景观,因此它们在空间上聚集在一起,并且在某些地区发生的可能性增加。同样,景观结构也会影响生物体的运动,从而在斑块之间产生不对称的分散。使用随机的,空间上明确的模型,我们研究了分散率和干扰率之间与景观相关的关系如何影响种群动态。位于扰动可能性较低的地区的栖息地将面临较低的灭绝率,并将作为部分避难所。我们发现部分庇护所的存在增加了种群的生存能力,并且部分庇护所的价值取决于分散是否还取决于景观。有点与直觉相反,当个体具有从避难所分散的优势时,种群的生存力降低,而当偏向避难所的分散程度最高时,种群的生存力最高。我们的工作表明,当有经验数据或灭绝和/或散布速率与景观有关的生态学依据时,需要将景观结构纳入亚种群模型。

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