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蜱内向整流钾通道的系统发育基因组学及其作为创新控制技术靶点的潜力。

Phylogenomics of Tick Inward Rectifier Potassium Channels and Their Potential as Targets to Innovate Control Technologies.

作者信息

Saelao Perot, Hickner Paul V, Bendele Kylie G, Pérez de León Adalberto A

机构信息

USDA-ARS Knipling-Bushland U.S. Livestock Insects Research Laboratory, Kerrville, TX, United States.

Veterinary Pest Genomics Center, Kerrville, TX, United States.

出版信息

Front Cell Infect Microbiol. 2021 Mar 19;11:647020. doi: 10.3389/fcimb.2021.647020. eCollection 2021.

Abstract

This study was conducted to enhance the identification of novel targets to develop acaricides that can be used to advance integrated tick-borne disease management. Drivers for the emergence and re-emergence of tick-borne diseases affecting humans, livestock, and other domestic animals in many parts of the world include the increased abundance and expanded geographic distribution of tick species that vector pathogens. The evolution of resistance to acaricides among some of the most important tick vector species highlights the vulnerability of relying on chemical treatments for tick control to mitigate the health burden of tick-borne diseases. The involvement of inward rectifier potassium (Kir) channels in homeostasis, diuresis, and salivary gland secretion in ticks and other pests identified them as attractive targets to develop novel acaricides. However, few studies exist on the molecular characteristics of Kir channels in ticks. This bioinformatic analysis described Kir channels in 20 species of hard and soft ticks. Summarizing relevant investigations on Kir channel function in invertebrate pests allowed the phylogenomic study of this class of ion channels in ticks. How this information can be adapted to innovate tick control technologies is discussed.

摘要

开展本研究是为了加强对新型靶标的识别,以开发可用于推进蜱传疾病综合管理的杀螨剂。在世界许多地区,影响人类、牲畜和其他家畜的蜱传疾病出现和再度出现的驱动因素包括传播病原体的蜱种数量增加和地理分布扩大。一些最重要的蜱传病媒物种对杀螨剂产生抗药性,这凸显了依靠化学处理来控制蜱虫以减轻蜱传疾病健康负担的脆弱性。内向整流钾(Kir)通道参与蜱虫和其他害虫的体内平衡、利尿和唾液腺分泌,这使其成为开发新型杀螨剂的有吸引力的靶标。然而,关于蜱虫中Kir通道分子特征的研究很少。这项生物信息学分析描述了20种硬蜱和软蜱中的Kir通道。总结有关无脊椎动物害虫中Kir通道功能的相关研究,有助于对蜱虫中这类离子通道进行系统发育基因组学研究。本文还讨论了如何利用这些信息创新蜱虫控制技术。

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