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Limiting similarity and functional diversity along environmental gradients

机译:沿环境梯度限制相似性和功能多样性

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Recent developments in community models emphasize the importance of incorporating stochastic processes (e.g. ecological drift) in models of niche-structured community assembly. We constructed a finite, spatially explicit, lottery model to simulate the distribution of species in a one-dimensional landscape with an underlying gradient in environmental conditions. Our framework combines the potential for ecological drift with environmentally-mediated competition for space in a heterogeneous environment. We examined the influence of niche breadth, dispersal distances, community size (total number of individuals) and the breadth of the environmental gradient on levels of species and functional trait diversity (i.e. differences in niche optima). Three novel results emerge from this model: (1) niche differences between adjacent species (e.g. limiting similarity) increase in smaller communities, because of the interaction of competitive effects and finite population sizes; (2) immigration from a regional species pool, stochasticity and niche-assembly generate a bimodal distribution of species residence times ('transient' and 'resident') under a heterogeneous environment; and (3) the magnitude of environmental heterogeneity has a U-shaped effect on diversity, because of shifts in species richness of resident vs. transient species. These predictions illustrate the potential importance of stochastic (although not necessarily neutral) processes in community assembly.
机译:社区模型的最新发展强调了在生态位结构的社区组装模型中纳入随机过程(例如生态漂移)的重要性。我们构建了一个有限的,空间明确的彩票模型,以模拟环境条件下具有潜在梯度的一维景观中物种的分布。我们的框架将生态漂移的潜力与环境介导的异质空间竞争相结合。我们研究了生态位宽度,分散距离,社区规模(个体总数)和环境梯度的宽度对物种水平和功能性状多样性(即生态位最佳差异的影响)的影响。该模型产生了三个新颖的结果:(1)由于竞争效应和有限种群规模的相互作用,较小物种中相邻物种之间的生态位差异(例如,限制相似性)增加; (2)在异质环境下,从区域物种库的迁移,随机性和小生境组装产生物种停留时间(“瞬时”和“居住”)的双峰分布; (3)由于常驻物种和过渡物种的物种丰富度的变化,环境异质性的大小对多样性具有U型影响。这些预测说明了随机(尽管不一定是中立的)过程在社区集会中的潜在重要性。

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