Department of Biology, Brandon University, Brandon, MB R78 6A9, Canada.
Department of Biology, Brandon University, Brandon, MB R78 6A9, Canada.
Ticks Tick Borne Dis. 2019 Apr;10(3):515-522. doi: 10.1016/j.ttbdis.2018.12.006. Epub 2019 Jan 2.
For more than 50 years DEET (N,N-Diethyl-m-toluamide) has been considered the gold standard of repellents. It is applied to the skin or clothing to deter mosquitoes and other blood-sucking invertebrate pests from approaching and/or settling, and ultimately it provides temporary protection from bites. Despite rampant global use, surprisingly little is understood about DEET's mode of action and the molecular targets of the active ingredient. Furthermore, the theories into its mechanism for repellency are largely based off fruit fly and mosquito research. Since ticks possess a unique sensory structure, the Haller's organ, the specific genes and pathways associated with DEET avoidance may differ from insects. In these studies, we collected American dog ticks (Dermacentor variabilis) from four natural populations within Manitoba, Canada. We first carried out behavior assays, which showed DEET effectively repelled the ticks. RNA sequencing revealed that DEET caused a rapid and substantial reduction in the abundance of transcripts encoding cytochrome P450 and acetylcholinesterase genes, which gradually recovered over the 24 h time course. Finally, enzymatic kinetics provided functional support for DEET's role as an effective inhibitor of P450 s. While many facets of its mode of action remain to be worked out, our study provides valuable insights into the molecular underpinnings of DEET's repellence in ticks.
超过 50 年来,避蚊胺(N,N-二乙基-间-甲苯酰胺)一直被认为是驱虫剂的金标准。它被涂抹在皮肤或衣服上,以防止蚊子和其他吸血无脊椎害虫靠近和/或停留,最终提供暂时的防叮咬保护。尽管避蚊胺在全球范围内广泛使用,但人们对其作用模式和有效成分的分子靶标知之甚少。此外,关于其驱避机制的理论在很大程度上是基于果蝇和蚊子的研究。由于蜱虫具有独特的感觉结构,即 Haller 器,与避蚊胺相关的特定基因和途径可能与昆虫不同。在这些研究中,我们从加拿大马尼托巴省的四个自然种群中收集了美洲狗蜱(Dermacentor variabilis)。我们首先进行了行为测定,结果表明避蚊胺能有效地驱赶蜱虫。RNA 测序显示,避蚊胺迅速且大量减少了编码细胞色素 P450 和乙酰胆碱酯酶基因的转录本丰度,而这些基因的丰度在 24 小时的时间过程中逐渐恢复。最后,酶动力学为避蚊胺作为 P450 的有效抑制剂的作用提供了功能支持。虽然其作用模式的许多方面仍有待研究,但我们的研究为避蚊胺在蜱虫中的驱避作用的分子基础提供了有价值的见解。