Amorim Liliane Barbosa, Helvecio Elisama, de Oliveira Cláudia Maria Fontes, Ayres Constância Flávia Junqueira
Department of Entomology, Centro de Pesquisas Aggeu Magalhães/FIOCRUZ, Recife-PE, Brazil; Postgraduate Programme of Animal Biology/UFPE.
Pest Manag Sci. 2013 Dec;69(12):1307-14. doi: 10.1002/ps.3502. Epub 2013 Apr 15.
Culex quinquefasciatus is the vector of many agents of human diseases, including Wuchereria bancrofti, the parasite that causes bancroftian filariasis, an endemic disease in Pernambuco State, Brazil. Although temephos is not currently used to control C. quinquefasciatus, the species might be under a selection process from incidental exposure to this compound. This study aimed to evaluate the susceptibility status of C. quinquefasciatus to temephos, using bioassays, and to investigate its putative resistance mechanisms through biochemical assays and screening of the G119S mutation in the acetylcholinesterase gene, which is associated with organophosphate resistance, carried out by PCR and sequencing.
The results showed that only mosquitoes from Santa Cruz do Capibaribe (SC) had an alteration in their susceptibility status (RR = 7.2-fold), while the other populations were all susceptible to the insecticide. Biochemical assays showed increased activity for all esterases in SC, as well as evidence of acetylcholinesterase insensitivity. The G119S mutation was detected in this population with a frequency of 0.11, but it was not found in the remaining populations.
These data show that mechanisms of temephos resistance have been selected in natural C. quinquefasciatus populations from Pernambuco, which could undermine future control actions.
致倦库蚊是多种人类疾病病原体的传播媒介,包括班氏吴策线虫,这种寄生虫会引发班氏丝虫病,是巴西伯南布哥州的一种地方病。尽管目前尚未使用双硫磷来控制致倦库蚊,但该物种可能因偶然接触这种化合物而处于选择过程中。本研究旨在通过生物测定评估致倦库蚊对双硫磷的易感性状况,并通过生化测定以及采用聚合酶链反应(PCR)和测序对与有机磷抗性相关的乙酰胆碱酯酶基因中的G119S突变进行筛查,来研究其假定的抗性机制。
结果表明,只有来自卡皮巴里贝河畔圣克鲁斯(SC)的蚊子易感性状况发生了改变(抗性比率RR = 7.2倍),而其他种群对该杀虫剂均敏感。生化测定显示,SC中所有酯酶的活性均有所增加,同时也有乙酰胆碱酯酶不敏感的证据。在该种群中检测到G119S突变,频率为0.11,但在其余种群中未发现。
这些数据表明,在伯南布哥州的自然致倦库蚊种群中已选择出对双硫磷的抗性机制,这可能会破坏未来的控制行动。