双补丁元种群中的最佳扩散和扩散增强的稳健性:起源的鞍源性质很重要。

IF 1.3 4区 生物学 Q3 BIOLOGY Theory in Biosciences Pub Date : 2024-02-01 Epub Date: 2024-02-21 DOI:10.1007/s12064-023-00411-2
Marc Jorba-Cuscó, Ruth I Oliva-Zúniga, Josep Sardanyés, Daniel Pérez-Palau
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引用次数: 0

摘要

本研究通过分析和数值方法研究了一个双斑块逻辑元种群模型,重点研究了扩散对种群动态的影响。首先,研究了全局动态对完全灭绝平衡点稳定性类型的依赖性。然后,分析研究了扩散对总种群的影响。我们的研究结果表明,在存在随机扰动的情况下,扩散对亚种群和整个元种群的保存起着至关重要的作用。在低扩散条件下,原点是一个排斥因子,导致轨道几乎平行于轴线,面临随机灭绝的风险。较高的扩散会将排斥器变成一个鞍点。轨道会迅速向鞍的不稳定流形汇聚,从而降低灭绝的几率。矢量场的这种变化增强了元种群的稳健性。另一方面,我们进一步研究了众所周知的事实,即斑块上的不对称条件对整个种群有利。以往的研究已经针对足够大或足够小的分散值对这一现象进行了研究。在这项工作中,我们完成了所有分散值的理论研究。特别是,我们通过分析推导出了使总种群数量最大化的最佳分散值公式。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Optimal dispersal and diffusion-enhanced robustness in two-patch metapopulations: origin's saddle-source nature matters.

A two-patch logistic metapopulation model is investigated both analytically and numerically focusing on the impact of dispersal on population dynamics. First, the dependence of the global dynamics on the stability type of the full extinction equilibrium point is tackled. Then, the behaviour of the total population with respect to the dispersal is studied analytically. Our findings demonstrate that diffusion plays a crucial role in the preservation of both subpopulations and the full metapopulation under the presence of stochastic perturbations. At low diffusion, the origin is a repulsor, causing the orbits to flow nearly parallel to the axes, risking stochastic extinctions. Higher diffusion turns the repeller into a saddle point. Orbits then quickly converge to the saddle's unstable manifold, reducing extinction chances. This change in the vector field enhances metapopulation robustness. On the other hand, the well-known fact that asymmetric conditions on the patches is beneficial for the total population is further investigated. This phenomenon has been studied in previous works for large enough or small enough values of the dispersal. In this work, we complete the theory for all values of the dispersal. In particular, we derive analytically a formula for the optimal value of the dispersal that maximizes the total population.

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来源期刊
Theory in Biosciences
Theory in Biosciences 生物-生物学
CiteScore
2.70
自引率
9.10%
发文量
21
审稿时长
3 months
期刊介绍: Theory in Biosciences focuses on new concepts in theoretical biology. It also includes analytical and modelling approaches as well as philosophical and historical issues. Central topics are: Artificial Life; Bioinformatics with a focus on novel methods, phenomena, and interpretations; Bioinspired Modeling; Complexity, Robustness, and Resilience; Embodied Cognition; Evolutionary Biology; Evo-Devo; Game Theoretic Modeling; Genetics; History of Biology; Language Evolution; Mathematical Biology; Origin of Life; Philosophy of Biology; Population Biology; Systems Biology; Theoretical Ecology; Theoretical Molecular Biology; Theoretical Neuroscience & Cognition.
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