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关于可能通过哈勒氏器参与蜱嗅觉的化学感应相关候选分子的当前知识。

Current Knowledge on Chemosensory-Related Candidate Molecules Potentially Involved in Tick Olfaction via Haller's Organ.

作者信息

Gebremedhin Mebrahtu Berhe, Xu Zhengmao, Kuang Ceyan, Shumuye Nigus Abebe, Cao Jie, Zhou Yongzhi, Zhang Houshuang, 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 200241, China.

State Key Laboratory of Veterinary Etiological Biology, National Animal Echinococcosis Para-Reference Laboratory, Key Laboratory of Veterinary Parasitology of Gansu Province, Lanzhou Veterinary Research Institute, Chinese Academy of Agricultural Sciences, Lanzhou 730046, China.

出版信息

Insects. 2023 Mar 18;14(3):294. doi: 10.3390/insects14030294.

Abstract

Ticks are obligatory hematophagous ectoparasites and vectors of many animal and human pathogens. Chemosensation plays a significant role in tick communication with their environment, including seeking out blood meal hosts. Studies on the structure and function of Haller's organ and its components have improved our understanding regarding tick olfaction and its chemical ecology. Compared with the knowledge on insect olfaction, less is known about the molecular basis of olfaction in ticks. This review focused on the chemosensory-related candidate molecules likely involved in tick olfaction. Members of the ionotropic receptor family and a new class of odorant-binding proteins are now known to be involved in tick olfaction, which appear to differ from that of insects. These candidate molecules are more closely related to those of mites and spiders than to other arthropods. The amino acid sequences of candidate niemann-pick type C2 and microplusin-like proteins in ticks exhibit features indicating their potential role as binding proteins. In the future, more comprehensive pertinent research considering the existing shortcomings will be required to fully understand the molecular basis of tick olfactory chemoreception. This information may contribute to the development of new molecular-based control mechanisms to reduce tick populations and related disease transmission.

摘要

蜱是专性吸血的体外寄生虫,也是许多动物和人类病原体的传播媒介。化学感应在蜱与环境的交流中起着重要作用,包括寻找血餐宿主。对哈勒氏器及其组成部分的结构和功能的研究增进了我们对蜱嗅觉及其化学生态学的理解。与昆虫嗅觉的知识相比,蜱嗅觉的分子基础了解较少。本综述聚焦于可能参与蜱嗅觉的化学感应相关候选分子。现已知道离子otropic受体家族成员和一类新的气味结合蛋白参与蜱的嗅觉,这似乎与昆虫的不同。这些候选分子与螨类和蜘蛛的分子比与其他节肢动物的分子关系更密切。蜱中候选的尼曼-皮克C2型蛋白和微小牛蜱素样蛋白的氨基酸序列显示出表明它们作为结合蛋白潜在作用的特征。未来,需要考虑现有不足进行更全面的相关研究,以充分理解蜱嗅觉化学感受的分子基础。这些信息可能有助于开发基于分子的新控制机制,以减少蜱的数量和相关疾病的传播。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c3d0/10053194/2e5a20fe8503/insects-14-00294-g001.jpg

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