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一群扩散者对寄主-寄生蜂系统的影响。

The effects of a pool of dispersers on host-parasitoid systems.

作者信息

Weisser W W, Jansen V A, Hassell M P

机构信息

Department of Biology, Imperial College at Silwood Park, Ascot, Berks. SL5 7PY, U.K.

出版信息

J Theor Biol. 1997 Dec 21;189(4):413-25. doi: 10.1006/jtbi.1997.0529.

Abstract

When individuals migrate in a multi-patch environment, a considerable proportion of their lifetime might be spent in transit between patches. We investigate the effects such a pool of dispersers can have on local stability and dynamics for a variety of multi-patch host-parasitoid models. When an arbitrary number of patches with internal Lotka-Volterra dynamics is coupled via a global pool of dispersers, the equilibrium is globally stable. The global pool is stabilising if dispersal is by hosts only, by parasitoids only, or by both hosts and parasitoids. If dispersal is local such that individuals first enter a pool close to the patch where they originate and then disperse to adjacent pools, the equilibrium is locally stable. We also analyse the situation where the functional response of parasitoids within a patch is Holling type II which is known to destabilise host-parasitoid systems. Coupling this single patch to a pool of dispersers can produce a locally stable interaction, provided the handling time of hosts is not too long. However, the pool provides a biologically realistic example of an interaction that is locally stable but not permanent. The longer the handling time, the smaller the region of population densities within which populations converge to the equilibrium state. In a multi-patch environment with a global disperser pool, the dynamics of the system are not qualitatively different from the single patch case (i.e. the equilibrium can be locally stable but the system is not permanent). In a multi-patch environment with local disperser pools, true spatial interactions between patches can develop. In contrast to the global pool, local pools can destabilise the stable equilibrium of the single patch case. Limit cycles develop around this unstable equilibrium that lead to extremely complicated dynamics. In contrast to the global pool, a system of local pools can exhibit bounded fluctuations so that populations do not go extinct.

摘要

当个体在多斑块环境中迁移时,它们一生中相当一部分时间可能会花在斑块之间的迁移过程中。我们研究了这样一群扩散者对各种多斑块宿主 - 寄生蜂模型的局部稳定性和动态的影响。当任意数量的具有内部洛特卡 - 沃尔泰拉动态的斑块通过一个全局扩散者库耦合时,平衡点是全局稳定的。如果扩散仅由宿主进行、仅由寄生蜂进行或由宿主和寄生蜂两者进行,那么全局扩散者库会起到稳定作用。如果扩散是局部的,即个体首先进入其起源斑块附近的一个库,然后再扩散到相邻的库,那么平衡点是局部稳定的。我们还分析了斑块内寄生蜂的功能反应为霍林Ⅱ型的情况,已知这种情况会使宿主 - 寄生蜂系统不稳定。将这个单斑块与一个扩散者库耦合可以产生局部稳定的相互作用,前提是宿主的处理时间不太长。然而,这个库提供了一个生物学上现实的例子,即一种相互作用是局部稳定但不是永久稳定的。处理时间越长,种群密度收敛到平衡状态的区域就越小。在具有全局扩散者库的多斑块环境中,系统的动态与单斑块情况在定性上没有差异(即平衡点可以是局部稳定的,但系统不是永久稳定的)。在具有局部扩散者库的多斑块环境中,斑块之间可以形成真正的空间相互作用。与全局扩散者库不同,局部扩散者库会使单斑块情况下的稳定平衡点变得不稳定。围绕这个不稳定平衡点会出现极限环,导致极其复杂的动态。与全局扩散者库不同,局部扩散者库系统可以表现出有界波动,从而使种群不会灭绝。

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