解密病毒受体在植物-病毒-病媒相互作用中的作用

Receptors Pub Date : 2024-06-03 DOI:10.3390/receptors3020013
Sumit Jangra, Senthilraja Chinnaiah, Sneha Rashtrapal Patil, Bhavya Shukla, Ragunathan Devendran, Manish Kumar
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引用次数: 0

摘要

昆虫传播的植物病毒是全球农作物生产的主要威胁。受体在宿主-病原体和病媒的相互作用中发挥着重要作用。病毒与病媒的关系涉及病毒受体和病媒受体。类受体激酶(RLKs)和类受体蛋白在植物免疫中起着至关重要的作用,起到基础防御的作用。病原体可以通过其效应蛋白抑制病原体识别受体(PRR)介导的信号传导,从而逃避或阻断宿主的识别。耐人寻味的是,已知 RLKs 还能与病毒蛋白相互作用,影响植物对病毒的敏感性,而载体中的内细胞受体则能帮助病毒与载体结合。真菌和细菌的其他受体有三个不同的结构域,分别位于细胞外或细胞内,可感知多种分子模式,而病毒受体则不同,其特征描述相当复杂和有限,因为病毒是通过昆虫载体直接注入植物细胞的。人们对这些受体知之甚少。揭示参与病毒进入和在载体内传播的受体将为病毒与载体的相互作用提供重要信息。本综述重点介绍在鉴定和描述宿主和载体内植物病毒受体方面所做的工作。这将有助于更好地了解病毒传播和扩散的细胞机制,并进一步为研究人员提供新的替代工具,以开发综合方法来管理病毒性疾病和相关载体。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Deciphering the Role of Virus Receptors in Plant–Virus–Vector Interactions
Insect-transmitted plant viruses are a major threat to global agricultural crop production. Receptors play a prominent role in the interplay between host-pathogen and vector interaction. The virus–vector relationship involves both viral and vector receptors. Receptors-like kinases (RLKs) and receptor-like proteins play a crucial role in plant immunity, which acts as a basal defense. Pathogens can evade or block host recognition by their effector proteins to inhibit pathogen recognition receptor (PRR)-mediated signaling. Intriguingly, RLKs are also known to interact with viral proteins and impact plant susceptibility against viruses, while the endocytic receptors in vectors assist in the binding of the virus to the vectors. Unlike other receptors of fungi and bacteria which have three different domains located from extracellular or intracellular to perceive a multitude of molecular patterns, the characterization of viral receptors is quite complex and limited since the virus is directly injected into plant cells by insect vectors. Little is known about these receptors. Unraveling the receptors involved in virus entry and transmission within the vector will provide vital information in virus–vector interactions. This review focuses on efforts undertaken in the identification and characterization of receptors of plant viruses within the host and vector. This will lead to a better understanding of the cellular mechanism of virus transmission and spread, and further suggests new alternative tools for researchers to develop an integrated approach for the management of viral diseases and associated vectors.
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