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HL-IR介导孤雌生殖长角血蜱对肉桂醛的驱避行为。

HL-IR mediates cinnamaldehyde repellency behavior in parthenogenetic Haemaphysalis longicornis.

作者信息

Kuang Ceyan, Shi Han, Cao Jie, Zhou Yongzhi, Zhang Houshuang, Wang Yanan, Zhou Jinlin

机构信息

Key Laboratory of Animal Parasitology of Ministry of Agriculture, Shanghai Veterinary Research Institute, Chinese Academy of Agricultural Sciences, Shanghai, China.

出版信息

PLoS Negl Trop Dis. 2025 Mar 17;19(3):e0012877. doi: 10.1371/journal.pntd.0012877. eCollection 2025 Mar.

Abstract

Chemical repellents against arthropods have limitations in terms of toxicity and resistance. Natural plant compounds can be utilized as alternatives for developing environmentally friendly repellents for humans and animals. A variety of plant essential oils exhibit strong repellent effects against ticks; however, the mechanisms of action against ticks remain unknown. Here, we investigated the repellency of cinnamaldehyde, a primary compound found in cinnamon oil, and demonstrated that it affected the electrophysiological responses on Haller's organs of parthenogenetic Haemaphysalis longicornis. Transcriptome data indicated that the cinnamaldehyde response was linked to ionotropic receptor (HL-IR) at various tick developmental stages. HL-IR was widely expressed in a variety of tissues and developmental stages of ticks according to RT-qPCR. In situ hybridization results showed that HL-IR was highly expressed on Haller's organs of the ticks. Microinjection of HL-IR double-stranded RNA (dsRNA) showed that reduced transcript levels led to significant decreases in the tick repellency rate from cinnamaldehyde and the EAG response of Haller's organ. Experiments using competitive fluorescence binding and mutation sites showed that 218ASN was the critical binding site for cinnamaldehyde and HL-IR. We conclude that Haller's organ of ticks expresses HL-IR, and that this interaction mediates tick-repellent behavior by binding to cinnamaldehyde.

摘要

用于防治节肢动物的化学驱避剂在毒性和抗药性方面存在局限性。天然植物化合物可作为开发对人和动物环保型驱避剂的替代品。多种植物精油对蜱虫表现出强烈的驱避作用;然而,其对蜱虫的作用机制尚不清楚。在此,我们研究了肉桂油中的主要成分肉桂醛的驱避作用,并证明它影响孤雌生殖长角血蜱哈勒氏器的电生理反应。转录组数据表明,肉桂醛反应在蜱虫的各个发育阶段均与离子型受体(HL-IR)相关。根据逆转录定量聚合酶链反应(RT-qPCR),HL-IR在蜱虫的多种组织和发育阶段广泛表达。原位杂交结果显示,HL-IR在蜱虫的哈勒氏器上高度表达。显微注射HL-IR双链RNA(dsRNA)表明,转录水平降低导致蜱虫对肉桂醛的驱避率以及哈勒氏器的触角电位(EAG)反应显著下降。使用竞争性荧光结合和突变位点进行的实验表明,218ASN是肉桂醛与HL-IR的关键结合位点。我们得出结论,蜱虫的哈勒氏器表达HL-IR,并且这种相互作用通过与肉桂醛结合介导蜱虫的驱避行为。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/85e8/11913321/118917e14075/pntd.0012877.g001.jpg

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