A system dynamics model of the population dynamics of Oestrus sp. (Diptera: Oestridae) infesting Iberian ibex, Capra pyrenaica

J. M. Pérez, V. Moreno, J. Navas, N. Vélez de Mendizábal, J. Quesada, F. Esteban
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引用次数: 1

Abstract

Abstract We modelled the population biology of Oestrus sp. parasitising the Iberian ibex (Capra pyrenaica), using a system dynamics approach. Levels included in the model were as follows: first-instar larvae, third-instar larvae, pupae and resilient pupae. The values used for flows and auxiliary variables were obtained from the scientific literature, including research on both Oestrus ovis and O. sp.; we assumed that these two species are closely related, both morphologically and from a biological point of view. Simulations provided by our model allowed us to estimate the minimum monthly production of first-instar larvae and thus to establish periodic population dynamics, together with predictions for the number of larval generations. The model predicted 3–4 larval generations per year. The model proved to be very sensitive to minimal changes in a number of variables, especially the first-instar larval production rate. Despite its limitations, this methodology could be a versatile tool for studying the population dynamics of this kind of parasites, and for simulating the effects of control programmes.
伊比利亚野山山羊种群动态的系统动力学模型(双翅目:雌蚊科
摘要采用系统动力学方法对寄生于伊比利亚野山羊(Capra pyrenaica)的Oestrus sp.进行种群生物学建模。模型中包括的水平如下:一龄幼虫、三龄幼虫、蛹和弹性蛹。流量和辅助变量的取值来自科学文献,包括对Oestrus ovis和O. sp.的研究;我们认为这两个物种在形态学和生物学上都是密切相关的。我们的模型提供的模拟使我们能够估计一龄幼虫的最小月产量,从而建立周期性的种群动态,并预测幼虫的世代数。该模型预测每年3-4代幼虫。该模型对一些变量的微小变化非常敏感,尤其是第一龄幼虫的产量。尽管有其局限性,但这种方法可以成为研究这类寄生虫种群动态和模拟控制规划效果的通用工具。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Italian Journal of Zoology
Italian Journal of Zoology 生物-动物学
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6-12 weeks
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