State Key Laboratory of Infectious Disease Prevention and Control, WHO Collaborating Centre for Vector Surveillance and Management, National Institute for Communicable Disease Control and Prevention, Chinese Center for Disease Control and Prevention, Beijing, China.
College of Agriculture, Shihezi University, Shihezi, Xinjiang, China.
Exp Appl Acarol. 2022 Aug;87(4):337-350. doi: 10.1007/s10493-022-00729-4. Epub 2022 Aug 16.
Studies have shown that the main pathway for tick host localization and perception of mating information may be chemosensory. However, chemical communication in ticks is poorly understood, especially in those other than the Ixodes ticks. Niemann-Pick C2 (NPC2) protein and ionotropic receptors (IRs) are considered to be closely related to the perception of infochemicals in arthropods. Through bioinformatic analysis, eight NPC2 and four IR candidate genes were identified through screening and identification of the transcriptome sequencing database of Haemaphysalis longicornis. Phylogenetic tree analysis indicated that H. longicornis possesses similar homology to the genus Ixodes. A comparison of the expression of NPC2 and IR in tick forelegs (first pair of legs), hind legs (fourth pair of legs), and capitula using RT-PCR revealed that, barring HlonNPC2-8, 11 candidate genes were highly expressed in the foreleg and capitulum, which are the main sensory organs of ticks. They were also expressed in the hind legs, except for six genes that were not expressed in the males. RT-qPCR analysis showed upregulation and higher relative expression of HlonNPC2-1, HlonNPC2-3, HlonNPC2-6, and HlonNPC2-8 when stimulated by ammonium hydroxide, whereas the others were downregulated and demonstrated lower relative expression. These results further support the putative role of NPC2s as a new odorant carrier in ticks and present 12 promising candidate genes for understanding tick olfactory communication, enriching the data on these genes, especially outside the genus Ixodes.
研究表明,蜱虫宿主定位和感知交配信息的主要途径可能是化学感觉。然而,蜱虫的化学通讯了解甚少,尤其是在伊蚊以外的蜱虫中。尼曼-匹克 C2(NPC2)蛋白和离子型受体(IRs)被认为与节肢动物信息素的感知密切相关。通过生物信息学分析,从长角血蜱转录组测序数据库的筛选和鉴定中,鉴定出 8 个 NPC2 和 4 个 IR 候选基因。系统发育树分析表明,长角血蜱与属伊蚊具有相似的同源性。使用 RT-PCR 比较 NPC2 和 IR 在蜱虫前腿(第一对腿)、后腿(第四对腿)和头部的表达,除 HlonNPC2-8 外,11 个候选基因在前腿和头部高度表达,前腿和头部是蜱虫的主要感觉器官。它们在后腿也有表达,除了 6 个基因在雄性中不表达。RT-qPCR 分析显示,当用氨水处理时,HlonNPC2-1、HlonNPC2-3、HlonNPC2-6 和 HlonNPC2-8 的表达上调和相对表达较高,而其他基因的表达下调和相对表达较低。这些结果进一步支持 NPC2s 作为蜱虫中新的气味载体的作用,并提出了 12 个有前途的候选基因,用于理解蜱虫嗅觉通讯,丰富了这些基因的数据,特别是在伊蚊属之外。