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具有温度依赖性的物候结构捕食者-猎物动态

Phenologically-structured predator-prey dynamics with temperature dependence.

作者信息

Logan J David

机构信息

Department of Mathematics, University of Nebraska, Lincoln, NE 68588-0130, USA.

出版信息

Bull Math Biol. 2008 Jan;70(1):1-20. doi: 10.1007/s11538-007-9237-6. Epub 2007 Sep 25.

Abstract

Studies document the fact that temperature changes strongly affect interactions in many consumer-resource systems through altered, or shifted, phenologies. The mistiming of events, such as migration or emergence times, or the contraction or expansion of development times can upset the normal synchronization and lead to increased or decreased predation events. In this paper, we formulate a continuous time, phenologically-structured model of predator-prey interactions that is driven by temperature variations. It is particularly applicable to arthropod interactions because their development rates are so strongly temperature related. The model takes the form of a system of partial differential-integral equations for the species' population densities in development-time variables. In special cases, the model is analytically tractable and we find a closed-form solution. By calculating density variations under different temperature regimes, the model gives a quantitative method for assessing the effects of global temperature change on consumer-resource interactions.

摘要

研究表明,温度变化通过改变或转移物候现象,强烈影响许多消费者 - 资源系统中的相互作用。事件的时间错配,如迁徙或出现时间,或发育时间的缩短或延长,可能会扰乱正常的同步性,并导致捕食事件增加或减少。在本文中,我们构建了一个由温度变化驱动的捕食者 - 猎物相互作用的连续时间、物候结构模型。它特别适用于节肢动物的相互作用,因为它们的发育速率与温度密切相关。该模型采用偏微分 - 积分方程组的形式,以发育时间变量表示物种的种群密度。在特殊情况下,该模型易于进行分析,我们找到了一个封闭形式的解。通过计算不同温度条件下的密度变化,该模型提供了一种定量方法,用于评估全球温度变化对消费者 - 资源相互作用的影响。

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