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首页> 外文期刊>Journal of Mathematical Biology >Expansion or extinction: Deterministic and stochastic two-patch models with Allee effects
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Expansion or extinction: Deterministic and stochastic two-patch models with Allee effects

机译:扩展或消亡:具有Allee效应的确定性和随机两补丁模型

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We investigate the impact of Allee effect and dispersal on the long-term evolution of a population in a patchy environment. Our main focus is on whether a population already established in one patch either successfully invades an adjacent empty patch or undergoes a global extinction. Our study is based on the combination of analytical and numerical results for both a deterministic two-patch model and a stochastic counterpart. The deterministic model has either two, three or four attractors. The existence of a regime with exactly three attractors only appears when patches have distinct Allee thresholds. In the presence of weak dispersal, the analysis of the deterministic model shows that a high-density and a low-density populations can coexist at equilibrium in nearby patches, whereas the analysis of the stochastic model indicates that this equilibrium is metastable, thus leading after a large random time to either a global expansion or a global extinction. Up to some critical dispersal, increasing the intensity of the interactions leads to an increase of both the basin of attraction of the global extinction and the basin of attraction of the global expansion. Above this threshold, for both the deterministic and the stochastic models, the patches tend to synchronize as the intensity of the dispersal increases. This results in either a global expansion or a global extinction. For the deterministic model, there are only two attractors, while the stochastic model no longer exhibits a metastable behavior. In the presence of strong dispersal, the limiting behavior is entirely determined by the value of the Allee thresholds as the global population size in the deterministic and the stochastic models evolves as dictated by their single-patch counterparts. For all values of the dispersal parameter, Allee effects promote global extinction in terms of an expansion of the basin of attraction of the extinction equilibrium for the deterministic model and an increase of the probability of extinction for the stochastic model.
机译:我们调查Allee效应和分散对斑驳环境中人口的长期演变的影响。我们的主要重点是已经建立在一个斑块中的种群是成功入侵邻近的空旷斑块还是全球灭绝。我们的研究基于确定性两色模型和随机对应物的分析结果和数值结果的组合。确定性模型具有两个,三个或四个吸引子。仅当补丁具有不同的Allee阈值时,才会出现具有恰好三个吸引子的状态。在存在弱扩散的情况下,对确定性模型的分析表明,高密度种群和低密度种群可以在附近斑块处以平衡状态共存,而随机模型的分析表明,这种平衡状态是亚稳态的,因此导致全球扩张或全球灭绝的大量随机时间。直到某些临界扩散,相互作用的强度增加导致全球灭绝的吸引力之盆和全球扩张的吸引力之盆增加。在此阈值之上,对于确定性模型和随机模型而言,色块都倾向于随着分散强度的增加而同步。这导致全球扩张或全球灭绝。对于确定性模型,只有两个吸引子,而随机模型不再表现出亚稳态行为。在强分散的情况下,当确定性和随机模型的全局种群大小按其单补丁对应物的指示发展时,限制行为完全由Allee阈值确定。对于分散参数的所有值,就确定性模型而言,Allee效应促进了灭绝平衡的吸引盆的扩大,对于随机模型而言,灭绝的可能性增加,从而促进了全球灭绝。

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