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Rapid evolutionary responses to insecticide resistance management interventions by the German cockroach (Blattella germanica L.)

机译:对德国蟑螂(Blattella germanica L.)对杀虫剂抗性管理干预措施的快速进化反应

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摘要

The German cockroach (Blattella germanica L.) is a worldwide pest that lives exclusively in human environments. B. germanica threatens human health by producing asthma-triggering allergens, vectoring pathogenic/antibiotic-resistant microbes, and by contributing to unhealthy indoor environments. While insecticides are essential for reducing cockroach populations and improving health outcomes, insecticide resistance has been a consistent barrier to cockroach control since the 1950s. We conducted seminal field studies to compare three insecticide resistance intervention strategies for cockroaches and evaluated resistance evolution across multiple generations. Using pre-treatment resistance assessment to drive decisions, we found that single active ingredient (AI) treatments can successfully eliminate cockroaches if starting resistance levels are low. We further established that rotation treatments intuitively reduce selection pressure, and are effective when insecticides with no/low resistance are used. We also found that mixture products containing thiamethoxam + λ-cyhalothrin AIs were universally ineffective and highly repellent; and finally, evolution of cross-resistance among AIs is a significant, previously unrealized challenge.
机译:德国蟑螂(Blattella germanica L.)是一种世界性害虫,仅生活在人类环境中。德国芽孢杆菌通过产生触发哮喘的变应原,引导病原性/抗生素抗性微生物以及造成不健康的室内环境来威胁人类健康。尽管杀虫剂对于减少蟑螂数量和改善健康状况至关重要,但自1950年代以来,抗药性一直是控制蟑螂的一贯障碍。我们进行了开创性的田间研究,比较了三种蟑螂对杀虫剂的抗性干预策略,并评估了多代产品的抗性演变。使用治疗前抗药性评估来制定决策,我们发现,如果起始抗药性水平较低,则单一活性成分(AI)治疗可以成功消除蟑螂。我们进一步确定,旋转处理可以直观地降低选择压力,并且在使用无/低抗性的杀虫剂时有效。我们还发现,含有噻虫嗪+λ-氯氟氰菊酯AIs的混合产品普遍无效且具有很高的驱避性。最后,AI之间交叉抗性的发展是一个重大的,以前没有实现的挑战。

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