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首页> 外文期刊>Theoretical Population Biology >Competition landscapes: scaling up local biotic and abiotic processes in heterogeneous environments
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Competition landscapes: scaling up local biotic and abiotic processes in heterogeneous environments

机译:竞争格局:在异构环境中扩大本地生物和非生物过程

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摘要

I present a model based on benthic populations by first defining a competition landscape where competitive interactions are confined to small areas, defined by the distribution of resource renewal from a global pool. Using truncated kernels and results from 1-dimensional percolation theory, I then derive an approximation allowing the scaling up of local interactions among individuals to patch and landscape levels. This approximation is used to explore how spatially structured habitats can affect competition intensity. The competition landscape is then compared to a simulation of mussel colonization under various flow velocity patterns, and is shown to predict the qualitative effect of the scale of patchiness in habitat quality on total competition intensity. The interaction between large scale hydrodynamic forcing and local competition is also shown to provide an alternate hypothesis explaining the observed among-year reversal of the relationship between topographic scale and mussel abundance in some intertidal communities. The model more generally highlights the nonlinear scaling up of competitive interactions in competition landscapes, and provides a framework for the study of self-organization in heterogeneous ecosystems.
机译:我通过首先定义一个竞争格局来提出基于底栖种群的模型,在竞争格局中,竞争互动仅限于小区域,这是由全球资源更新的分布来定义的。然后,使用截断的核和一维渗滤理论的结果,得出一个近似值,允许按比例放大个人之间的局部交互作用,以达到补丁和景观级别。该近似值用于探讨空间结构化栖息地如何影响竞争强度。然后将竞争景观与模拟贻贝在各种流速模式下定居的模拟进行比较,并显示出预测栖息地质量的斑块规模对总竞争强度的定性影响。大规模水动力强迫与局部竞争之间的相互作用也被证明提供了另一种假设,解释了某些潮间带群落中地形尺度与贻贝丰度之间的年际反转。该模型更普遍地强调了竞争格局中竞争相互作用的非线性放大,并为研究异构生态系统中的自组织提供了框架。

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