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Hybrid systems framework for modeling host-parasitoid population dynamics

机译:混合系统框架用于建模宿主寄生虫种群动态

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Discrete-time models are the traditional approach for capturing population dynamics of insects living in the temperate regions of the world. These models are characterized by an update function that connects the population densities from one year to the next. We revisit classical discrete-time models used for modeling interactions between two insect species (a host and a parasitoid), and provide novel result on the stability of the population dynamics. In particular, for a class of models we show that the fixed point is stable, if and only if, the host equilibrium density is an increasing function of the host’s reproduction rate. We also introduce a hybrid approach for obtaining the update functions by solving ordinary differential equations that mechanistically capture the ecological interactions between the host and the parasitoid. This hybrid approach is used to study the suppression of host density by a parasitoid. Our analysis shows that when the parasitoid attacks the host at a constant rate, then the host density cannot be suppressed beyond a certain point without making the population dynamics unstable. In contrast, when the parasitoid’s attack rate increases with increasing host density, then the host population density can be suppressed to arbitrarily low levels. These results have important implications for biological control where a natural enemy, such as a parasitoid wasp, is introduced to eliminate a pest that is the host species for the parasitoid.
机译:离散时间模型是捕获生活在世界温带地区的昆虫种群动态的传统方法。这些模型的特点是更新功能,可以将人口密度从一年到下一个连接。我们重新撤销用于对两种昆虫物种(宿主和寄生虫)之间的相互作用进行建模的经典离散时间模型,并提供新的群体动态稳定性的结果。特别是,对于一类模型,我们表明定点是稳定的,如果且仅当,主机平衡密度是主机再现率的越来越多的函数。我们还通过求解机械地捕获宿主和寄生虫之间的生态相互作用的普通微分方程来介绍一种混合方法来获得更新功能。这种混合方法用于通过寄生素研究宿主密度的抑制。我们的分析表明,当寄生素以恒定速率攻击主机时,在不使人口动态不稳定的情况下,主体密度不能抑制超出某个点。相反,当寄生肝素的攻击率随着宿主密度的增加而增加时,宿主人群密度可以被抑制到任意较低的水平。这些结果对生物控制具有重要意义,其中引入了诸如寄生虫黄蜂的天然敌人以消除作为寄生虫的宿主物种的害虫。

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