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首页> 外文期刊>The Royal Society Proceedings B: Biological Sciences >Evolution of reduced dispersal mortality and 'fat-tailed' dispersal kernels in autocorrelated landscapes.
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Evolution of reduced dispersal mortality and 'fat-tailed' dispersal kernels in autocorrelated landscapes.

机译:自相关景观中降低的分散死亡率和“肥尾”分散核的演变。

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Models describing the evolution of dispersal strategies have mostly focused on the evolution of dispersal rates. Taking trees as a model for organisms with undirected, passive dispersal, we have developed an individual-based, spatially explicit simulation tool to investigate the evolution of the dispersal kernel, P(r), and its resulting cumulative seed-density distribution, D(r). Simulations were run on a variety of fractal landscapes differing in the fraction of suitable habitat and the spatial autocorrelation. Starting from a uniform D(r), evolution led to an increase in the fraction of seeds staying in the home cell, a reduction of the dispersal mortality (arrival in unsuitable habitat), and the evolution of 'fat-tailed' D(r) in autocorrelated landscapes and approximately uniform D(r) in random landscapes. The evolutionary process was characterized by long periods of stasis with a few bouts of rapid change in the dispersal rate.
机译:描述分散策略演变的模型主要集中于分散速率的演变。以树木为模型,该生物具有无方向性的被动扩散,我们开发了一种基于个体的,空间明确的仿真工具,以研究扩散核P(r)的演化及其所产生的累积种子密度分布D( r)。对各种分形景观进行了模拟,这些分形景观在合适的栖息地比例和空间自相关方面有所不同。从均匀的D(r)开始,进化导致留在宿主细胞中的种子比例增加,传播死亡率降低(在不合适的生境中到达),以及``肥尾''D(r自相关景观中的)和随机景观中的近似均匀D(r)。进化过程的特点是停滞期长,分散速度迅速变化。

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