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A population facing climate change: joint influences of Allee effects and environmental boundary geometry

机译:面临气候变化的人口:阿利效应和环境边界几何的共同影响

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摘要

As a result of climate change, many populations have to modify their range to follow the suitable areas—their “climate envelope”—often risking extinction. During this migration process, they may face absolute boundaries to dispersal because of external environmental factors. Consequently, not only the position, but also the shape of the climate envelope can be modified. We use a reaction-diffusion model to analyse the effects on population persistence of simultaneous changes in the position and shape of the climate envelope. When the growth term is of logistic type, we show that extinction and persistence are principally conditioned by the species mobility and the speed of climate change, but not by the shape of the climate envelope. However, with a growth term taking an Allee effect into account, we find a high sensitivity to variations in the shape of the climate envelope. In this case, the species which have a high mobility, although they could more easily follow the migration of the climate envelope, would be at risk of extinction when encountering a local narrowing of the boundary geometry. This effect can be attenuated by a progressive opening at the exit of the narrowing into the available space, even though this leads temporarily to a diminished area of the climate envelope.
机译:气候变化的结果是,许多人口不得不改变其分布范围,以适应适当的地区(即他们的“气候范围”),这经常会面临灭绝的危险。在此迁移过程中,由于外部环境因素,它们可能面临传播的绝对边界。因此,不仅可以改变气候包络线的位置,而且可以改变其形状。我们使用反应扩散模型来分析气候包层的位置和形状的同时变化对人口持久性的影响。当生长项是逻辑类型时,我们表明灭绝和持久性主要是由物种的流动性和气候变化的速度决定的,而不是由气候包络的形状决定的。但是,考虑到Allee效应的增长期,我们发现对气候包络线形状变化的敏感性很高。在这种情况下,具有高迁移率的物种尽管可以更轻松地跟随气候边界的迁移,但在遇到边界几何形状的局部缩小时将面临灭绝的风险。即使逐渐缩小了气候范围,也可以通过在狭窄区域出口处逐渐打开开口来减弱这种影响。

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