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具有抗药性的害虫-天敌系统中自然天敌的适应性释放。

Adaptive release of natural enemies in a pest-natural enemy system with pesticide resistance.

机构信息

College of Mathematics and Information Science, Shaanxi Normal University, Xi'an, 710062, P.R. China,

出版信息

Bull Math Biol. 2013 Nov;75(11):2167-95. doi: 10.1007/s11538-013-9886-6. Epub 2013 Aug 13.

Abstract

Integrated pest management options such as combining chemical and biological control are optimal for combating pesticide resistance, but pose questions if a pest is to be controlled to extinction. These questions include (i) what is the relationship between the evolution of pesticide resistance and the number of natural enemies released? (ii) How does the cumulative number of natural enemies dying affect the number of natural enemies to be released? To address these questions, we developed two novel pest-natural enemy interaction models incorporating the evolution of pesticide resistance. We investigated the number of natural enemies to be released when threshold conditions for the extinction of the pest population in two different control tactics are reached. Our results show that the number of natural enemies to be released to ensure pest eradication in the presence of increasing pesticide resistance can be determined analytically and depends on the cumulative number of dead natural enemies before the next scheduled release time.

摘要

综合虫害管理选项,如结合化学和生物防治,是对抗农药抗性的最佳选择,但如果要将害虫消灭到灭绝,就会引发一些问题。这些问题包括:(i)农药抗性的进化与释放的天敌数量之间存在什么关系?(ii) 累积死亡的天敌数量如何影响需要释放的天敌数量?为了解决这些问题,我们开发了两种新的害虫-天敌相互作用模型,纳入了农药抗性的进化。我们研究了当两种不同控制策略下害虫种群灭绝的阈值条件达到时,需要释放的天敌数量。研究结果表明,可以通过分析确定在不断增加的农药抗性下确保害虫根除所需的释放天敌的数量,并且取决于下一次预定释放时间之前累积的死亡天敌数量。

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