Department of Entomology and Plant Pathology, 301 Funchess Hall, Auburn University, Auburn, AL 36849-5413, USA.
J Med Entomol. 2013 May;50(3):585-93. doi: 10.1603/me12198.
Insecticides, especially pyrethroids, are important components in the vector-control effort. To better understand the development of resistance, the current study characterized resistance profiles in individual single-egg-raft colonies of a field population of Culex quinquefasciatus Say, HAmCq(G0). Our study, with 104 colonies derived from each of the single-egg-rafts of HAmCq(G0), indicated that the levels of resistance to permethrin in fourth instar larvae ranged from 0.4- to 280-fold compared with laboratory susceptible S-Lab larvae. We characterized the distribution of single-egg-raft colonies with different levels of resistance in the HAmCq(G0) population and found that 65% individual colonies had < 10-fold levels of resistance to permethrin, 16% from 10- to 20- fold, 7% from 20- to 30-fold, and 12% < or = 30-fold. We further characterized the frequency of the L-to-F kdr allelic expression of sodium channels in the single-egg-raft colonies with different levels of resistance to determine its possible role in resistance. The correlation between allelic expression and levels of resistance clearly showed the importance of L-to-F kdr mutation mediated sodium channel insensitivity in resistance development. However, our results also suggested that the sodium channel insensitivity is unlikely to be the sole mechanism and multiple mechanisms may present among the single colonies in response to insecticide resistance.
杀虫剂,尤其是拟除虫菊酯,是病媒控制工作的重要组成部分。为了更好地了解抗药性的发展,本研究对来自田间种群的 Culex quinquefasciatus Say, HAmCq(G0) 的单个卵筏的个体单卵筏群体的抗药性特征进行了描述。我们的研究表明,与实验室敏感的 S-Lab 幼虫相比,第四龄幼虫对氯菊酯的抗性水平在 0.4 至 280 倍之间,这是从 HAmCq(G0)的单个卵筏中获得的 104 个群体。我们描述了 HAmCq(G0)群体中具有不同抗药性水平的单个卵筏群体的分布情况,发现 65%的个体群体对氯菊酯的抗性水平<10 倍,16%的群体的抗性水平在 10 至 20 倍之间,7%的群体的抗性水平在 20 至 30 倍之间,12%的群体的抗性水平<或=30 倍。我们进一步描述了具有不同抗药性水平的单个卵筏群体中钠离子通道 L 到 F kdr 等位基因表达的频率,以确定其在抗药性中的可能作用。等位基因表达与抗性水平之间的相关性清楚地表明了 L 到 F kdr 突变介导的钠离子通道不敏感性在抗药性发展中的重要性。然而,我们的结果还表明,钠离子通道不敏感性不太可能是唯一的机制,而且在单个群体中可能存在多种机制来应对杀虫剂的抗性。