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Population variation in and selection for resistance to pyrethroid-neonicotinoid insecticides in the bed bug

机译:臭虫中拟除虫菊酯类新烟碱类杀虫剂的种群变异和抗药性选择

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摘要

Pyrethroid resistance in bed bugs, Cimex lectularius, has prompted a change to combination products that include a pyrethroid and a neonicotinoid. Ten populations of bed bugs were challenged with two combination products (Temprid SC and Transport GHP). Susceptibility of these populations varied, with the correlated response of the two products indicating cross resistance. We imposed selection on three populations using label rate Temprid, and then reared progeny from unselected and selected strains. All selected strains were significantly less susceptible to Temprid SC than unselected strains. Temprid selected strains were also less susceptible to Transport. The pyrethroid component of Temprid showed a significantly higher LD50 in selected strains, but susceptibility to the neonicotinoid remained unchanged. Taken together these results indicate resistance to combination insecticides is present in field populations at levels that should be of concern, and that short-term selection affecting existing variance in susceptibility can quickly increase resistance.
机译:臭虫(Cimex lectularius)对拟除虫菊酯的抗药性促使人们改变了包括拟除虫菊酯和新烟碱类化合物的组合产品。十个臭虫种群受到两种组合产品(Temprid SC和Transport GHP)的挑战。这些种群的易感性各不相同,两种产品的相关反应表明交叉耐药。我们使用标记率Temprid对三个种群进行选择,然后从未选择和选择的菌株中繁殖后代。与未选择的菌株相比,所有选择的菌株对Temprid SC的敏感度均显着降低。选择的temprid菌株也较不易运输。在选定的菌株中,Temprid的拟除虫菊酯成分显示出较高的LD50,但对新烟碱的敏感性保持不变。综上所述,这些结果表明,田间种群对组合杀虫剂的抗药性应受到关注,而且短期选择会影响现有药敏性的变化,从而迅速增加抗药性。

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