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R proteins as fundamentals of plant innate immunity

机译:R蛋白是植物固有免疫力的基础

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Plants are attacked by a wide spectrum of pathogens, being the targets of viruses, bacteria, fungi, protozoa, nematodes and insects. Over the course of their evolution, plants have developed numerous defense mechanisms including the chemical and physical barriers that are constitutive elements of plant cell responses locally and/or systemically. However, the modern approach in plant sciences focuses on the evolution and role of plant protein receptors corresponding to specific pathogen effectors. The recognition of an invader’s molecules could be in most cases a prerequisite sine qua non for plant survival. Although the predicted three-dimensional structure of plant resistance proteins (R) is based on research on their animal homologs, advanced technologies in molecular biology and bioinformatics tools enable the investigation or prediction of interaction mechanisms for specific receptors with pathogen effectors. Most of the identified R proteins belong to the NBS-LRR family. The presence of other domains (including the TIR domain) apart from NBS and LRR is fundamental for the classification of R proteins into subclasses. Recently discovered additional domains (e.g. WRKY) of R proteins allowed the examination of their localization in plant cells and the role they play in signal transduction during the plant resistance response to biotic stress factors. This review focuses on the current state of knowledge about the NBS-LRR family of plant R proteins: their structure, function and evolution, and the role they play in plant innate immunity.
机译:植物受到多种病原体的攻击,这些病原体是病毒,细菌,真菌,原生动物,线虫和昆虫的目标。在其进化过程中,植物已开发出多种防御机制,包括化学和物理屏障,这些屏障是局部和/或系统性植物细胞反应的组成要素。但是,现代植物科学方法着眼于与特定病原体效应物相对应的植物蛋白受体的进化和作用。在大多数情况下,识别入侵者的分子可能是植物存活的必要先决条件。尽管预测的植物抗性蛋白(R)的三维结构是基于其动物同源物的研究,但是分子生物学和生物信息学工具中的先进技术仍可以研究或预测特定受体与病原体效应子的相互作用机制。大多数已鉴定的R蛋白都属于NBS-LRR家族。除NBS和LRR外,其他域(包括TIR域)的存在对于将R蛋白分类为亚类至关重要。最近发现的R蛋白的其他结构域(例如WRKY)可以检查其在植物细胞中的定位以及它们在植物对生物胁迫因素的抗性反应期间在信号转导中的作用。这篇综述着重于有关植物R蛋白的NBS-LRR家族的当前知识状态:其结构,功能和进化,以及它们在植物固有免疫中的作用。

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