Tiutiunov Iu V, Sapukhina N Iu, Senina I N, Arditi R
Department of Mathematical Methods in Economics and Ecology, Institute of Mechanics & Applied Mathematics, Rostov State University, Stachki ul. 200/1, Rostov-na-Dony 344090, Russia.
Zh Obshch Biol. 2002 Mar-Apr;63(2):137-48.
The authors present an approach for explicit modeling of spatio-temporal dynamics of predator-prey community. This approach is based on a reaction-diffusion-adjection PD (prey dependent) system. Local kinetics of population is determined by logistic reproduction function of prey, constant natural mortality of predator and Holling type 2 trophic function. Searching behavior of predator is described by the advective term in predator balance equation assuming the predator acceleration to be proportional to the prey density gradient. The model was studied with zero-flux boundary conditions. The influence of predator searching activity on the community dynamics, in particular, on the emergence of spatial heterogeneity, has been investigated by linear analysis and numerical simulations. It has been shown how searching activity may effect the persistence of species, stabilizing predator-prey interactions at very low level of pest density. It has been demonstrated that obtaining of such dynamic regimes does not require the use of complex trophic functions.
作者提出了一种用于明确建模捕食者 - 猎物群落时空动态的方法。该方法基于反应 - 扩散 - 对流的猎物依赖型(PD)系统。种群的局部动力学由猎物的逻辑斯谛繁殖函数、捕食者恒定的自然死亡率以及霍林Ⅱ型营养函数确定。捕食者的搜索行为通过捕食者平衡方程中的对流项来描述,假设捕食者的加速度与猎物密度梯度成正比。该模型采用零通量边界条件进行研究。通过线性分析和数值模拟研究了捕食者搜索活动对群落动态的影响,特别是对空间异质性出现的影响。研究表明搜索活动如何影响物种的持久性,在极低害虫密度水平下稳定捕食者 - 猎物相互作用。结果表明,获得这种动态模式不需要使用复杂的营养函数。