Gordon Jennifer R, Goodman Mark H, Potter Michael F, Haynes Kenneth F
Department of Entomology, University of Kentucky, Lexington, KY 40546-0091, USA.
Sci Rep. 2014 Jan 23;4:3836. doi: 10.1038/srep03836.
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.
臭虫(温带臭虫)对拟除虫菊酯产生抗性,促使人们转而使用包含拟除虫菊酯和新烟碱类的复方产品。用两种复方产品(Temprid SC和Transport GHP)对10个臭虫种群进行了测试。这些种群的易感性各不相同,两种产品的相关反应表明存在交叉抗性。我们使用标签剂量的Temprid对3个种群进行了选择,然后从未经选择和经选择的品系中培育后代。所有经选择的品系对Temprid SC的易感性均显著低于未经选择的品系。经Temprid选择的品系对Transport的易感性也较低。Temprid的拟除虫菊酯成分在经选择的品系中显示出显著更高的半数致死剂量(LD50),但对新烟碱类的易感性保持不变。综合这些结果表明,田间种群中存在对复方杀虫剂的抗性,其水平值得关注,而且影响现有易感性差异的短期选择可迅速增加抗性。