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Mathematical modeling of cascading migration in a tri-trophic food-chain system

机译:三营养食物链系统中级联迁移的数学模型

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摘要

Diel vertical migration is a behavioral antipredator defense that is shaped by a trade-off between higher predation risk in surface waters and reduced growth in deeper waters. The strength of migration of zooplankton increases with a rise in the abundance of predators and their exudates (kairomone). Recent studies span multiple trophic levels, which lead to the concept of coupled vertical migration. The migrations that occur at one trophic level can affect the vertical migration of the next lower trophic level, and so on, throughout the food chain. This is called cascading migration. In this paper, we introduce cascading migration in a well-known model (Hastings and Powell, Ecology 73:896–903, ). We represent the dynamics of the system as proposed by Hastings and Powell as a phytoplankton–zooplankton–fish (prey–middle predator–top predator) model where fish affect the migrations of zooplankton, which in turn affect the migrations of motile phytoplankton. The system under cascading migration enhances system stability and population coexistence. It is also observed that for a higher rate of cascading migration, the system shows chaotic behavior. We conclude that the observations of Hastings and Powell remain true if the cascading migration rate is high enough.
机译:Diel垂直迁移是一种行为上的反捕食者防御,其形成方式是在地表水的较高捕食风险与深水的生长减少之间进行权衡。浮游动物迁移的强度随着捕食者及其分泌物(海洛酮)的增加而增加。最近的研究跨越多个营养级,这导致了耦合垂直迁移的概念。在一个营养级发生的迁移会影响整个食物链中下一个营养级的垂直迁移,依此类推。这称为级联迁移。在本文中,我们以众所周知的模型介绍了级联迁移(Hastings和Powell,Ecoology 73:896-903,)。我们将黑斯廷斯和鲍威尔提出的系统动力学表示为浮游植物-浮游动物-鱼类(猎物-中部捕食者-顶级捕食者)模型,其中鱼影响浮游动物的迁移,继而影响活动性浮游植物的迁移。级联迁移的系统增强了系统的稳定性和人口共存。还观察到,对于更高的级联迁移速率,系统显示出混沌行为。我们得出的结论是,如果级联迁移率足够高,Hastings和Powell的观测仍然成立。

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