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Evolutionarily stable range limits set by interspecific competition

机译:种间竞争设定的进化稳定范围限制

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A combination of abiotic and biotic factors probably restricts the range of many species. Recent evolutionary models and tests of those models have asked how a gradual change in environmental conditions can set the range limit, with a prominent idea being that gene flow disrupts local adaptation. We investigate how biotic factors, explicitly competition for limited resources, result in evolutionarily stable range limits even in the absence of the disruptive effect of gene flow. We model two competing species occupying different segments of the resource spectrum. If one segment of the resource spectrum declines across space, a species that specializes on that segment can be driven to extinction, even though in the absence of competition it would evolve to exploit other abundant resources and so be saved. The result is that a species range limit is set in both evolutionary and ecological time, as the resources associated with its niche decline. Factors promoting this outcome include: (i) inherent gaps in the resource distribution, (ii) relatively high fitness of the species when in its own niche, and low fitness in the alternative niche, even when resource abundances are similar in each niche, (iii) strong interspecific competition, and (iv) asymmetric interspecific competition. We suggest that these features are likely to be common in multispecies communities, thereby setting evolutionarily stable range limits.
机译:非生物和生物因素的结合可能会限制许多物种的范围。最近的进化模型和对这些模型的测试已经问到环境条件的逐渐变化如何设置范围极限,一个突出的想法是基因流破坏了局部适应性。我们研究了即使没有基因流的破坏作用,生物因素如何显式竞争有限的资源,也导致进化上稳定的范围限制。我们对两个竞争物种进行建模,它们占据了资源谱的不同部分。如果资源频谱的一部分在整个空间中下降,那么专注于该部分的物种就可能灭绝,即使在缺乏竞争的情况下,它也会进化为利用其他丰富的资源从而得到保存。结果是,随着与其生态位相关的资源减少,在进化和生态时期都设定了物种范围限制。促成这一结果的因素包括:(i)资源分布方面的固有差距,(ii)物种在其自身的生态位中的适应度较高,在替代生态位中的适应度较低,即使每个生态位的资源丰富度相似,( iii)激烈的种间竞争,以及(iv)不对称的种间竞争。我们建议这些特征可能在多物种社区中很常见,从而设置了进化上稳定的范围限制。

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