HL-TRP channel is required for various repellents for the parthenogenetic Haemaphysalis longicornis
文献类型: 外文期刊
作者: Kuang, Ceyan;Cao, Jie;Zhou, Yongzhi;Zhang, Houshuang;Wang, Yanan;Zhou, Jinlin
作者机构:
关键词: HL-TRP channel;Icaridin;DEET;Cinnamaldehyde;Olfaction
期刊名称: PARASITES & VECTORS
ISSN: 1756-3305
年卷期: 2025 年 18 卷 1 期
页码:
收录情况: SCIE(2025版)
摘要: BackgroundTicks can transmit a wide range of pathogens that endanger human and animal health. Although repellents are commonly used for tick control, understanding their mechanisms aren't complete.MethodsThe repellent effects of N, N-diethyl-meta-toluamide (DEET); sec-butyl 2-(2-hydroxyethyl) piperidine-1-carboxylate (icaridin); N, N-diethyl-3-methylbenzamide (IR3535); and cinnamaldehyde on the parthenogenetic tick Haemaphysalis longicornis at the nymph stage were assessed using Y-tubes. The involvement of transient receptor potential (HL-TRP) channel molecules in the repellent mechanism was investigated through in situ hybridization, subcellular localization, real-time fluorescence quantitative polymerase chain reaction (PCR), RNA interference, and electroantennography. In addition, the binding affinity of HL-TRP molecules to repellents was predicted using AlphaFold3.ResultsDEET, icaridin, IR3535, and cinnamaldehyde have been shown to effectively repel nymphs. HL-TRP channel is shared among various arthropods, particularly several species of ticks. It is localized to the cell membrane and Haller's organ. Moreover, microinjection of double-stranded RNA elicited tick repellency behavior, and the electroantennogram responses to those repellents were significantly decreased. The TYR783 site was proposed as an essential binding site to establish hydrogen bonds with icaridin, DEET, and cinnamaldehyde.ConclusionsThis exploration of ticks and repellents found that HL-TRP channel functions as a chemosensory receptor for repellents and, thereby, mediates avoidance behavior.
分类号:
- 相关文献
作者其他论文 更多>>
-
HL-IR mediates cinnamaldehyde repellency behavior in parthenogenetic Haemaphysalis longicornis
作者:Kuang, Ceyan;Shi, Han;Cao, Jie;Zhou, Yongzhi;Zhang, Houshuang;Wang, Yanan;Zhou, Jinlin
关键词:
-
Decoding genetic diversity through genome engineering in bryophytes
作者:Ye, Hao;Luo, Guangyu;Liu, Jia;Cao, Jie;Ma, Qilong;Xiao, Mengnan;Dai, Junbiao
关键词:(1-1-1)genome engineering;bryophyte;synthetic biology;synthetic genomics;Physcomitrium patens;moss
-
Effects of Expanded Polytetrafluoroethylene Porous Membrane Covering and Biochar on Nitrogen, Phosphorus, and Potassium Contents in Aerobic Composting
作者:Cao, Jie;Li, Ruirong;Qu, Haoli;Wang, Pengjun;Fu, Jingjing;Gong, Yan;Chen, Mingjiang
关键词:Biochar;Membrane covering;Potassium;Phosphorus;Aerobic composting;Nitrogen
-
Engineering the Biosynthesis of Daidzein and Genistein with the Red Oleaginous Yeast Rhodotorula toruloides
作者:Huang, Ying;Gao, Qidou;Dong, Yaqi;Wang, Yanan;Wang, Xue;Yang, Xiaobing
关键词:
-
TaIRE1-mediated unconventional splicing of the TabZIP60 mRNA and the miR172 precursor regulates heat stress tolerance in wheat
作者:Li, Haoran;Qin, Zhen;Geng, Xiaoli;Cao, Jie;Yuan, Xinyang;Peng, Huiru;Yao, Yingyin;Hu, Zhaorong;Guo, Weilong;Zhang, Yumei;Liu, Jie;Rossi, Vincenzo;De Smet, Ive;Ni, Zhongfu;Sun, Qixin;Xin, Mingming
关键词:heat stress tolerance;miR172;TabZIP60;TaIRE1;wheat
-
An egg parasitoid assesses host egg quality from afar using oviposition-induced plant volatiles
作者:Tian, Zhiqiang;Wang, Yuanyuan;Sun, Tao;Hu, Xiaoyun;Hao, Wanting;Zhao, Te;Wang, Yanan;Zhang, Lei;Jiang, Xingfu;Turlings, Ted C. J.;Li, Yunhe
关键词:biological control;; oviposition-induced plant volatiles OIPVs;; egg parasitoids;; host selection;; parasitic strategies;; plant-insect-natural enemy;; co-evolution
-
Transcriptome analysis reveals the role of GA in fruit development of 'Cuiguan' pear (Pyrus pyrifolia)
作者:Zhai, Wenjing;Zhang, Xiangzhan;Wang, Yanan;Wang, Suke;Su, Yanli;Wang, Long;Xue, Huabai
关键词:Pear;Gibberellin;Fruit development;Transcriptome