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处理时间的演变会破坏周期性捕食者的共存。

Evolution of handling time can destroy the coexistence of cycling predators.

作者信息

Kisdi E, Liu S

机构信息

Department of Mathematics, University of Turku, Turku, Finland.

出版信息

J Evol Biol. 2006 Jan;19(1):49-58. doi: 10.1111/j.1420-9101.2005.00993.x.

Abstract

Several consumers (predators) with Holling type II functional response may robustly coexist even if they utilize the same resource (prey), provided that the population exhibits nonequilibrium dynamics and the handling time of predators is sufficiently different. We investigate the evolution of handling time and, in particular, its effect on coexistence. Longer handling time is costly in terms of lost foraging time, but allows more nutrients to be extracted from a captured prey individual. Assuming a hyperbolically saturating relationship between handling time and the number of new predators produced per prey consumed, we obtain three results: (i) There is a globally evolutionarily stable handling time; (ii) At most two predator strategies can coexist in this model; (iii) When two predators coexist, a mutant with intermediate handling time can always invade. This implies that there is no evolutionarily stable coexistence, and the evolution of handling time eventually leads to a single evolutionarily stable predator. These results are proven analytically and are valid for arbitrary (not only small) mutations; they however depend on the relationship between handling time and offspring production and on the assumption that predators differ only in their prey handling strategy.

摘要

即使几种具有Holling II型功能反应的消费者(捕食者)利用相同的资源(猎物),它们也可能稳健共存,前提是种群呈现非平衡动态且捕食者的处理时间有足够差异。我们研究了处理时间的演化,特别是其对共存的影响。从失去的觅食时间角度来看,较长的处理时间成本较高,但能从捕获的单个猎物中获取更多营养。假设处理时间与每消耗一个猎物产生的新捕食者数量之间存在双曲线饱和关系,我们得到三个结果:(i)存在一个全局进化稳定的处理时间;(ii)在该模型中最多两种捕食者策略可以共存;(iii)当两种捕食者共存时,具有中间处理时间的突变体总能入侵。这意味着不存在进化稳定的共存,处理时间的演化最终会导致单一的进化稳定捕食者。这些结果通过分析得到证明,对任意(不仅是小的)突变都有效;然而,它们取决于处理时间与后代产生之间的关系以及捕食者仅在猎物处理策略上存在差异这一假设。

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