Department of Mathematics, University of California, Davis, Davis, 95616, California.
Department of Biological Sciences, California State University, Northridge, Northridge, 91330, California.
J Theor Biol. 2018 Nov 7;456:201-212. doi: 10.1016/j.jtbi.2018.08.013. Epub 2018 Aug 9.
In recent decades, myriad studies have explored the population dynamics of coevolving populations of predator and prey. A variety of choices are made in these models: exponential or logistic prey growth in the absence of a predator, various forms of predator functional response, and uni- or bi-directional trait axes. In addition, some form of trade-offs are assumed in order to prevent run-away evolution of the prey and predator traits. While there is a considerable amount of theory regarding various forms of prey growth rates and predator functional responses, only a few studies have explored how different types of trade-offs affect predator-prey dynamics. Here, we compared two ditrophic coevolution models incorporating different trade-offs via dual effects of the prey trait on attack rate and either prey carrying capacity or intrinsic growth rate. We employed a standard dynamical systems approach to analyze the equilibrium conditions of each model and find conditions for non-equilibrium oscillatory coexistence. The exact effect of various parameters on the outcome of predator-prey interactions depends on whether the trade-offs affect the intrinsic growth rate or carrying capacity. In particular, coexistence is more likely when prey growth rate is affected by the evolving trait. In addition, in parameter regimes where cycles occur in both models, oscillations typically have larger periods and amplitudes when prey growth rate is affected by the evolving trait.
近几十年来,众多研究探索了捕食者和猎物共同进化群体的种群动态。在这些模型中,有多种选择:在没有捕食者的情况下,猎物呈指数或逻辑增长,捕食者的功能反应有多种形式,性状轴是单向或双向的。此外,为了防止猎物和捕食者性状的逃逸进化,通常会假设某种形式的权衡。虽然关于各种形式的猎物增长率和捕食者功能反应有相当多的理论,但只有少数研究探讨了不同类型的权衡如何影响捕食者-猎物动态。在这里,我们比较了两个包含不同权衡的双营养级共进化模型,这些权衡通过猎物性状对攻击率的双重影响以及猎物承载能力或内在增长率来体现。我们采用标准的动力系统方法来分析每个模型的平衡条件,并找到非平衡振动态共存的条件。各种参数对捕食者-猎物相互作用结果的确切影响取决于权衡是否影响内在增长率或承载能力。特别是,当猎物增长率受到进化性状的影响时,共存的可能性更大。此外,在两个模型中都存在循环的参数区域中,当猎物增长率受到进化性状的影响时,振荡通常具有更大的周期和幅度。