Insecticide mixtures reduce the selectivity enhanced by pyrethroid resistance in a predatory lady beetle.

IF 2.4 4区 环境科学与生态学 Q2 ECOLOGY
Maria Raquel Sousa Soares, Natalia Carolina Bermúdez, Rogério Lira, Jorge Braz Torres
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引用次数: 0

Abstract

Insecticide mixtures provide various modes of action in a ready-to-use formulation, broadening the range of managed pest species and delaying the development of insecticide resistance. Nonetheless, the insecticides used in the mixture may change the selectivity status for natural enemies obtained when using an individual formulation. Eriopis connexa (Germar), a lady beetle resistant to the broad-spectrum pyrethroid λ-cyhalothrin (EcViR), was exposed to insecticides in both individual and mixture formulations. The insecticides λ-cyhalothrin, chlorantraniliprole, sulfoxaflor, λ-cyhalothrin+dinotefuran, λ-cyhalothrin+thiamethoxam, and λ-chlorantraniliprole+thiamethoxam were tested. Survival of larvae and survival and reproduction of adults were assessed when enclosed with dry insecticide residues obtained at the maximum insecticide recommended rate. Furthermore, concentration-mortality curves were also established for larvae and adults exposed to insecticides with mortality rates exceeding 40%. For 30 days, the number of adults who survived exposure at the larval and adult stages and were still living and reproducing was recorded. The toxicity of the neonicotinoids thiamethoxam and dinotefuran present in the mixture prevailed over the physiological selectivity obtained through the resistance to λ-cyhalothrin. The combination index revealed that adding neonicotinoids to λ-cyhalothrin or chlorantraniliprole was very harmful to the lady beetle. On the other hand, the combination of λ-cyhalothrin with chlorantraniliprole or sulfoxaflor allowed EcViR larvae and adults to survive more than 80%. Therefore, incorporating neonicotinoids into the insecticide formulation nullified the physiological selectivity achieved by E. connexa resistance to λ-cyhalothrin, reducing the potential effectiveness of E. connexa in pest management as an augmentative biological control agent.

混合杀虫剂降低了雌甲虫对拟除虫菊酯类杀虫剂抗性所增强的选择性。
杀虫剂混合物在即用制剂中提供了多种作用模式,扩大了被管理害虫物种的范围,并延缓了杀虫剂耐药性的发展。尽管如此,在混合物中使用的杀虫剂可能会改变使用单个配方时获得的对天敌的选择性状态。对广谱拟除虫菊酯类杀虫剂λ-氯氟氰菊酯(EcViR)具有抗性的德国雌甲虫(Eriopis connexa)进行了单独和混合杀虫剂暴露试验。分别测定了λ-氯氟氰菊酯、氯氰菊酯、亚砜菊酯、λ-氯氟氰菊酯+呋虫胺、λ-氯氟氰菊酯+噻虫嗪、λ-氯氰菊酯+噻虫嗪。在以最大推荐用量获得的干杀虫剂残留物封闭时,评估了幼虫的存活率和成虫的存活率和繁殖情况。此外,还建立了幼虫和成虫接触杀虫剂的浓度-死亡率曲线,死亡率均超过40%。在30天内,记录在幼虫期和成虫期存活并仍存活和繁殖的成虫数量。混合物中新烟碱类噻虫脒和呋虫胺的毒性优于对λ-氯氟氰菊酯的抗性所获得的生理选择性。组合指数表明,新烟碱类杀虫剂与λ氯氟氰菊酯或氯虫腈混合对瓢虫的危害较大。λ-氯氟氰菊酯与氯虫腈或亚砜氟联用可使EcViR幼虫和成虫存活率达到80%以上。因此,将新烟碱类添加到杀虫剂配方中,会使小蠹蛾对 -氯氟氰菊酯产生抗性的生理选择性失效,降低小蠹蛾作为增效生物防治剂在害虫管理中的潜在有效性。
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来源期刊
Ecotoxicology
Ecotoxicology 环境科学-毒理学
CiteScore
5.30
自引率
3.70%
发文量
107
审稿时长
4.7 months
期刊介绍: Ecotoxicology is an international journal devoted to the publication of fundamental research on the effects of toxic chemicals on populations, communities and terrestrial, freshwater and marine ecosystems. It aims to elucidate mechanisms and processes whereby chemicals exert their effects on ecosystems and the impact caused at the population or community level. The journal is not biased with respect to taxon or biome, and papers that indicate possible new approaches to regulation and control of toxic chemicals and those aiding in formulating ways of conserving threatened species are particularly welcome. Studies on individuals should demonstrate linkage to population effects in clear and quantitative ways. Laboratory studies must show a clear linkage to specific field situations. The journal includes not only original research papers but technical notes and review articles, both invited and submitted. A strong, broadly based editorial board ensures as wide an international coverage as possible.
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