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Joint evolution of dispersal and connectivity

机译:分散和连接的联合演变

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Functional connectivity, the realized flow of individuals between the suitable sites of a heterogeneous landscape, is a prime determinant of the maintenance and evolution of populations in fragmented habitats. While a large body of literature examines the evolution of dispersal propensity, it is less known how evolution shapes functional connectivity via traits that influence the distribution of the dispersers. Here, we use a simple model to demonstrate that, in a heterogeneous environment with clustered and solitary sites (i.e., with variable structural connectivity), the evolutionarily stable population contains strains that are strongly differentiated in their pattern of connectivity (local vs. global dispersal), but not necessarily in the fraction of dispersed individuals. Also during evolutionary branching, selection is disruptive predominantly on the pattern of connectivity rather than on dispersal propensity itself. Our model predicts diversification along a hitherto neglected axis of dispersal strategies and highlights the role of the solitary sites-the more isolated and therefore seemingly less important patches of habitat-in maintaining global dispersal that keeps all sites connected.
机译:功能连通性,在异质景观的合适部位之间的个人流动,是碎片栖息地群体维护和演变的主要决定因素。虽然大量的文献检查了分散倾向的演变,但尚不清楚如何通过影响分散器分布的特性来形成功能性连接。在这里,我们使用一个简单的模型来证明,在具有聚类和孤独地点的异质环境中(即,具有可变结构连接),进化稳定的人群含有在它们的连接模式中强烈区分的菌株(本地与全球分散),但不一定在分散的个体的一部分中。而且在进化分支期间,选择是主要的,主要是在连接的模式上,而不是在分散倾向本身上。我们的模型预测了迄今为止忽视的分散策略轴的多样化,并突出了孤独地点的作用 - 居住地越孤立,因此似乎不太重要的栖息地维护全球分散的斑块,以保持所有连接的所有网站。

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