Terry Alan J
Division of Mathematics, University of Dundee, Dundee, DD1 4HN, UK.
Math Biosci. 2014 Feb;248:57-66. doi: 10.1016/j.mbs.2013.12.002. Epub 2013 Dec 15.
We propose and study a predator-prey model in which the predator has a Holling type II functional response and generic per capita birth and death rates. Given that prey consumption provides the energy for predator activity, and that the predator functional response represents the prey consumption rate per predator, we assume that the per capita birth and death rates for the predator are, respectively, increasing and decreasing functions of the predator functional response. These functions are monotonic, but not necessarily strictly monotonic, for all values of the argument. In particular, we allow the possibility that the predator birth rate is zero for all sufficiently small values of the predator functional response, reflecting the idea that a certain level of energy intake is needed before a predator can reproduce. Our analysis reveals that the model exhibits the behaviours typically found in predator-prey models - extinction of the predator population, convergence to a periodic orbit, or convergence to a co-existence fixed point. For a specific example, in which the predator birth and death rates are constant for all sufficiently small or large values of the predator functional response, we corroborate our analysis with numerical simulations. In the unlikely case where these birth and death rates equal the same constant for all sufficiently large values of the predator functional response, the model is capable of structurally unstable behaviour, with a small change in the initial conditions leading to a more pronounced change in the long-term dynamics.
我们提出并研究了一种捕食者 - 猎物模型,其中捕食者具有Holling II型功能反应以及一般的人均出生率和死亡率。鉴于猎物消耗为捕食者活动提供能量,且捕食者功能反应代表每个捕食者的猎物消耗率,我们假设捕食者的人均出生率和死亡率分别是捕食者功能反应的增函数和减函数。对于自变量的所有值,这些函数是单调的,但不一定是严格单调的。特别地,我们允许对于捕食者功能反应的所有足够小的值,捕食者出生率为零的可能性,这反映了捕食者在能够繁殖之前需要一定水平能量摄入的观点。我们的分析表明,该模型展现出捕食者 - 猎物模型中常见的行为——捕食者种群灭绝、收敛到周期轨道或收敛到共存不动点。对于一个具体例子,其中对于捕食者功能反应的所有足够小或大的值,捕食者出生率和死亡率是恒定的,我们用数值模拟证实了我们的分析。在不太可能的情况下,即对于捕食者功能反应的所有足够大的值,这些出生率和死亡率等于同一个常数,该模型能够表现出结构不稳定行为,初始条件的微小变化会导致长期动态中更显著的变化。