Université de La Réunion, UMR PIMIT (Processus Infectieux en Milieu Insulaire Tropical) CNRS 9192, INSERM 1187, IRD 249; 2 rue Maxime Rivière, 97490 Sainte Clotilde, Reunion Island, France.
UMR 117 ASTRE, INRAE-CIRAD, Campus International de Baillarguet, 34398 Montpellier Cedex 5, France.
J Insect Sci. 2022 May 1;22(3). doi: 10.1093/jisesa/ieac023.
The control of mosquito populations using insecticides is increasingly threatened by the spread of resistance mechanisms. Dieldrin resistance, conferred by point mutations in the Rdl gene encoding the γ-aminobutyric acid receptor, has been reported at high prevalence in mosquito populations in response to selective pressures. In this study, we monitored spatio-temporal dynamics of the resistance-conferring RdlR allele in Aedes (Stegomyia) albopictus (Skuse, 1895) and Culex (Culex) quinquefasciatus (Say, 1823) populations from Reunion Island. Specimens of both mosquito species were sampled over a 12-month period in three cities and in sites located at lower (<61 m) and higher (between 503 and 564 m) altitudes. Mosquitoes were genotyped using a molecular test detecting the alanine to serine substitution (A302S) in the Rdl gene. Overall, the RdlR frequencies were higher in Cx. quinquefasciatus than Ae. albopictus. For both mosquito species, the RdlR frequencies were significantly influenced by location and altitude with higher RdlR frequencies in the most urbanized areas and at lower altitudes. This study highlights environmental factors that influence the dynamics of insecticide resistance genes, which is critical for the management of insecticide resistance and the implementation of alternative and efficient vector control strategies.
利用杀虫剂控制蚊虫种群的方法正日益受到抗药性传播机制的威胁。在蚊虫种群中,由于 Rdl 基因编码的γ-氨基丁酸受体发生点突变,导致二氯苯醚菊酯抗性的出现,并对选择压力产生高频率的反应。在这项研究中,我们监测了来自留尼汪岛的白纹伊蚊(Aedes albopictus)和致倦库蚊(Culex quinquefasciatus)种群中携带抗性的 RdlR 等位基因的时空动态。在三个月的时间里,我们在三个城市以及海拔较低(<61 米)和较高(503 米至 564 米之间)的地点采集了这两种蚊子的样本。使用分子检测方法检测 Rdl 基因中的丙氨酸到丝氨酸取代(A302S),对蚊子进行基因分型。总的来说,Cx. quinquefasciatus 的 RdlR 频率高于 Ae. albopictus。对于这两种蚊子,RdlR 频率受到位置和海拔的显著影响,在城市化程度最高的地区和海拔较低的地区,RdlR 频率更高。本研究强调了影响杀虫剂抗性基因动态的环境因素,这对于杀虫剂抗性的管理和替代和有效的蚊虫控制策略的实施至关重要。