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An evolutionary tolerance model explaining spatial patterns in species richness under environmental gradients and geometric constraints

机译:解释环境梯度和几何约束下物种丰富度空间格局的进化容忍模型

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摘要

In this study, we developed a simulation model based on the ecological and evolutionary dynamics of geographical ranges, to understand the role of species' environmental tolerances and the strength of the environmental gradient in determining spatial patterns in species richness. Using an one-dimensional space, we present the model and dissect its parameters. Also, we test the ability of the model to simulate richness in complex two-dimensional domains and to fit real patterns in species richness, using South American Tyrannidae as an example. We found that a mid-spatial peak in species richness arises spontaneously under conditions of high environmental tolerances and/or a weak environmental gradient, since this condition causes wide species' geographic ranges, which are constrained by domain's boundary and tend to overlap in the middle. Our model was also a good predictor of real patterns in species richness, especially under conditions of high environmental strength and small species' tolerance. We conclude that this kind of spatial simulation models based on species' physiological tolerance may be an important tool to understand the evolutionary dynamics of species' geographic ranges and in spatial patterns of species richness.
机译:在这项研究中,我们开发了基于地理范围的生态和进化动力学的模拟模型,以了解物种的环境忍受力和环境梯度的强度在确定物种丰富度的空间格局中的作用。使用一维空间,我们展示了模型并剖析了其参数。此外,我们以南美霸王龙为例,测试了该模型模拟复杂二维域中的丰富度并适合物种丰富度中的真实模式的能力。我们发现,在高环境耐受性和/或弱环境梯度的情况下,物种丰富度的中度空间峰值会自发出现,因为这种条件会导致物种的地理范围宽广,而地理范围受到域边界的限制,并且往往在中间重叠。我们的模型还可以很好地预测物种丰富度的真实模式,尤其是在高环境强度和小物种耐受性的条件下。我们得出的结论是,这种基于物种生理耐受性的空间模拟模型可能是了解物种地理范围和物种丰富度空间格局演变动态的重要工具。

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