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Disease induced dynamics in host–parasitoid systems: chaos and coexistence

机译:疾病在宿主-拟寄生物系统中的动力学:混乱与共存

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摘要

All animals and plants are, to some extent, susceptible to disease caused by varying combinations of parasites, viruses and bacteria. In this paper, we present a mathematical model of interactions between a host, two parasitoids and a pathogen which shows that the presence of an infection can preserve and promote diversity in such multi-species systems. Initially, we use a system of ordinary differential equations to investigate interactions between two species of parasitoids, a host and a host infection. We show that the presence of all four species is necessary for the system as a whole to persist, and that in particular, the presence of the pathogen is necessary for the coexistence of the two parasitoid species. The inclusion of infection induces a wide range of dynamics, including chaos, and these dynamics are robust for a wide range of parameter values. We then extend the model to include spatial effects by introducing random motility (diffusion) of all three species and examine the subsequent spatio-temporal dynamics, including travelling waves and other more complicated heterogeneous behaviour. The computational simulation results of the model suggest that infection in the hosts can blunt the effects of competition between parasitoids, allowing the weaker competitor to survive. Regardless of the nature of the stability of the coexistent steady state of the system, there is an initial period of transient dynamics, the length of which can be extended by an appropriate choice of initial conditions. The existence of these transient dynamics suggests that systems subject to regular restoration to a starting state, such as agro-ecosystems, may be kept in a continual state of dynamic transience, and this has implications for the use of natural enemies to control insect pests, the preservation of biodiversity in farmland habitats and the more general dynamics of disease processes.
机译:在某种程度上,所有动植物都容易受到由寄生虫,病毒和细菌的不同组合引起的疾病的影响。在本文中,我们提出了宿主,两个寄生虫和病原体之间相互作用的数学模型,该模型表明感染的存在可以保留和促进这种多物种系统中的多样性。最初,我们使用常微分方程组来研究两种寄生物,宿主和宿主感染之间的相互作用。我们表明,所有四个物种的存在对于整个系统的持续存在是必要的,特别是,病原体的存在对于两种寄生虫物种的共存是必需的。包含感染会引起各种各样的动态变化,包括混乱,并且这些动态变化对于各种参数值都是可靠的。然后,我们通过引入所有三个物种的随机运动性(扩散)来扩展模型以包括空间效应,并研究随后的时空动态,包括行波和其他更复杂的异质行为。该模型的计算仿真结果表明,宿主中的感染可以钝化寄生虫之间的竞争效应,从而使较弱的竞争者得以生存。无论系统共存稳态的稳定性如何,都存在一个初始阶段的瞬态动力学,可以通过适当选择初始条件来延长其长度。这些瞬态动力学的存在表明,应定期恢复到初始状态的系统(例如农业生态系统)可以保持连续的动态瞬态状态,这对于利用天敌控制害虫具有影响,保护农田生境中的生物多样性以及疾病过程的更普遍动态。

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