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首页> 外文期刊>The Royal Society Proceedings B: Biological Sciences >A novel theory to explain species diversity in landscapes: positive frequency dependence and habitat suitability.
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A novel theory to explain species diversity in landscapes: positive frequency dependence and habitat suitability.

机译:一种解释景观物种多样性的新颖理论:正向频率依赖性和栖息地适宜性。

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摘要

Theories to explain the diversity of species have required that individual species occupy unique niches and/or vary in their response to environmental factors. Positive interactions within a species, although common in communities, have not been thought to maintain species diversity because in non-spatial models the more abundant species always outcompetes the rarer species. Here, we show, using a stochastic spatial model, that positive intraspecific interactions such as those caused by positive frequency dependence and/or priority effects, can maintain species diversity if interactions between individuals are primarily local and the habitat contains areas that cannot be colonized by any species, such as boulders or other physical obstructions. When intraspecific interactions are primarily neutral, species diversity will eventually erode to a single species. When the landscape is homogeneous (i.e. does not contain areas that cannot be colonized by any species), the presence of strong intraspecific interactions will not maintain diversity.
机译:解释物种多样性的理论要求单个物种占据独特的生态位和/或改变其对环境因素的反应。物种内部的积极互动虽然在社区中很普​​遍,但并未被认为能够维持物种多样性,因为在非空间模型中,越丰富的物种总是胜过稀有物种。在这里,我们显示,使用随机空间模型,如果个体之间的相互作用主要是局部的,并且栖息地包含无法被殖民的区域,那么正种内相互作用(例如由正频率依赖性和/或优先效应引起的种内相互作用)可以维持物种多样性。任何物种,例如巨石或其他物理障碍物。当种内相互作用主要是中性时,物种多样性最终将侵蚀为单个物种。当景观是同质的(即不包含任何物种无法定殖的区域)时,种内强烈的相互作用将无法维持多样性。

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