Faculty of Medicine, AJA University of Medical Sciences, Tehran, Iran.
Department of Parasitology and Mycology, Faculty of Medicine, AJA University of Medical Sciences, Tehran, Iran.
Am J Trop Med Hyg. 2022 Jun 6;107(1):204-207. doi: 10.4269/ajtmh.22-0092. Print 2022 Jul 13.
The worldwide resurgence of tropical bed bug Cimex hemipterus beginning in the late 1990s has led to growing concern. Molecular data on pyrethroid resistance, which is essential for the control strategies, is unknown for C. hemipterus in Iran. The current study evaluated the deltamethrin resistance status of C. hemipterus by bioassay and molecular tests. Live bed bugs were collected from sleeping quarters (dormitories) in the city of Tehran and used for insecticide bioassay tests. For bioassay evaluation, mixed-sex pools of adult bugs were exposed to deltamethrin (0.025%)-treated paper. Polymerase chain reaction assay evaluated resistance-related mutations in the voltage-gated sodium channel gene (VGSC) gene of studied populations. On the basis of the bioassay test within the 48-h exposure to deltamethrin, C. hemipterus were determined to be resistant. Knockdown time ratios (KR50) in the studied populations of C. hemipterus was 5.5-fold compared with those of the C. lectularius Teh strain. DNA sequencing of the VGSC gene revealed the presence of mutations at M918I and L1014 in C. hemipterus. According to the bioassay and molecular results of current study, C. hemipterus showed a high degree of pyrethroid resistance. The application of multiple approaches including physical, biological, and chemical tests should be regarded in future bed bug control strategies.
自 20 世纪 90 年代末以来,全球热带臭虫 Cimex hemipterus 的复苏引起了人们越来越多的关注。对于伊朗的 C. hemipterus,有关拟除虫菊酯抗性的分子数据对于控制策略至关重要,但目前尚不清楚。本研究通过生物测定和分子试验评估了 C. hemipterus 对溴氰菊酯的抗性状况。从德黑兰市的宿舍(宿舍)中收集活臭虫,并将其用于杀虫剂生物测定试验。为了进行生物测定评估,将雌雄混合的成年臭虫暴露于溴氰菊酯(0.025%)处理的纸上。聚合酶链反应(PCR)检测评估了研究人群的电压门控钠离子通道(VGSC)基因中的抗性相关突变。根据在接触溴氰菊酯 48 小时内的生物测定试验,确定 C. hemipterus 具有抗性。与 C. lectularius Teh 株相比,研究人群的击倒时间比(KR50)为 5.5 倍。VGSC 基因的 DNA 测序显示,在 C. hemipterus 中存在 M918I 和 L1014 突变。根据本研究的生物测定和分子结果,C. hemipterus 表现出高度的拟除虫菊酯抗性。在未来的臭虫控制策略中,应考虑应用多种方法,包括物理,生物和化学测试。