健康成本与杀虫剂抗性有关吗?一个荟萃分析。

Dylan J Brown, Richard A Redak
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引用次数: 0

摘要

杀虫剂抗药性威胁着重要的农业和医学害虫的控制。抗性可能以害虫的适应性成本为代价,而这些适应性成本是否存在可能决定了在没有杀虫剂的情况下抗性的持久性。并非所有具有抗性的种群都显示出与抗性相关的健康成本。揭示杀虫剂抗性对杀虫剂种类、抗性水平和昆虫目间适应度成本影响的可能模式,有助于提高我们对抗性进化成本的理解,并有助于优化现有的抗性管理策略。我们进行了全面的文献检索,以确定检查适应性成本与杀虫剂抗性相关的研究。收集了各种生活史特征的适应度数据,并进行了多次荟萃分析,以确定抗性的总体影响。一般来说,对杀虫剂的抗药性往往是以牺牲健康为代价的;然而,杀虫剂的种类、昆虫的目和抗性程度并没有产生适合度成本。结果表明:(1)在双翅目、半翅目和鳞翅目中,抗性雌性昆虫的繁殖力低于易感雌性昆虫;(2)在双翅目、半翅目和鳞翅目昆虫中,抗性幼虫比敏感幼虫发育时间更长;(3)鳞翅目、双翅目和半翅目易感个体的成活率明显高于抗性个体;(4)双翅目杀虫剂抗性个体雌雄成虫寿命缩短;(5)抗性程度与潜在适应度影响之间没有明确一致的趋势。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Are fitness costs associated with insecticide resistance? A meta-analysis.

Insecticide resistance threatens control of agricultural and medically important insect pests. Resistance may come at a fitness cost to the insect pest, and whether these fitness costs exist may determine the persistence of resistance in the absence of insecticides. Not all resistant populations have shown fitness costs associated with resistance. Revealing possible patterns in the effects of insecticide resistance on fitness costs among insecticide classes, resistance levels, and insect orders would improve our understanding of evolutionary costs of resistance and may assist in optimizing existing resistance management strategies. We performed a comprehensive literature search to identify studies that examined fitness costs associated with insecticide resistance. Fitness data were collected on various life-history traits and subjected to multiple meta-analyses to determine overall effects of resistance. Generally, insecticide resistance often came with a cost to fitness; however, there were insecticide classes, orders of insects, and resistance magnitude levels that did not confer a fitness cost. The emerging patterns suggest that (i) resistant female insects exhibited a lower fecundity compared to susceptible females within the orders Diptera, Hemiptera, and Lepidoptera; (ii) resistant juvenile insects had prolonged development compared to susceptible juveniles within the orders Diptera, Hemiptera, and Lepidoptera; (iii) juvenile survival rate was much higher for susceptible than resistant individuals in the orders Lepidoptera, Diptera, and Hemiptera; (iv) female and male adult longevity were reduced for insecticide resistant individuals in the order Diptera, and (v) there was no clear and consistent trend between the magnitude of resistance and potential effects on fitness.

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