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Species diversity rises exponentially with the number of available resources in a multi-trait competition model

机译:物种多样性以多特征竞争模型中的可用资源数量为指数呈指数级呈指数级

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摘要

Theoretical studies of ecosystem models have generally concluded that large numbers of species will not stably coexist if the species are all competing for the same limited set of resources. Here, we describe a simple multi-trait model of competition where the presence of N resources will lead to the stable coexistence of up to 2(N) species. Our model also predicts that the long-term dynamics of the population will lie on a neutral attractor hyperplane. When the population shifts within the hyperplane, its dynamics will behave neutrally, while shifts which occur perpendicular to the hyperplane will be subject to restoring forces. This provides a potential explanation of why complex ecosystems might exhibit both niche-like and neutral responses to perturbations. Like the neutral theory of biodiversity, our model generates good fits to species abundance distributions in several datasets but does so without needing to evoke inter-generational stochastic effects, continuous species creation or immigration dynamics. Additionally, our model is able to explain species abundance correlations between independent but similar ecosystems separated by more than 1400 km inside the Amazonian forests.
机译:生态系统模型的理论研究通常得出结论,如果物种全部竞争相同有限的资源,大量物种将不会稳定共存。在这里,我们描述了一种简单的多特征竞争模型,其中N个资源的存在将导致最多2(n)种的稳定共存。我们的模型还预测,人口的长期动态将位于中性吸引子过平面上。当人口在超平面内转变时,其动态将表现出中性,而垂直于过平面发生的转变将受到恢复力。这提供了对为什么复杂的生态系统可能表现出与扰动的基因样和中性反应的潜在说明。与中立的生物多样性理论一样,我们的模型在多个数据集中产生了良好的拟合,但在几个数据集中的物种丰富分布,但是在不需要唤起代际随机效果,连续物种创建或移民动态。此外,我们的模型能够在亚马逊森林内分开超过1400公里的独立但类似的生态系统之间的物种丰富相关性。

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