The potential of plant antimicrobial peptides for crop protection against diseases

A. S. Barashkova, E. A. Rogozhin*
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Abstract

Antimicrobial peptides (AMPs) are the most important components of plant innate immunity to environmental stress factors and one of the most ancient tools of the defense system. Most of them are synthesized as factors of constitutive plant immunity, but there are also inducible forms belonging to “pathogenesis-related proteins” (PR-proteins from classes 12, 13 and 14). This review provides characteristics of the primary and three-dimensional structures of the main families of plant AMPs. The relationship between the types of spatial arrangement of the polypeptide chain is drawn. The functional analysis of plant AMPs is presented by data on the spectrum and quantitative level of activities against a number of economically significant fungal and bacterial phytopathogens, and related biological effects are indicated. Additionally, current information is provided on the molecular mechanisms of the antimicrobial action of plant AMPs based on defensins as the most studied structural group. In conclusion, aspects of the modes of action for plant AMPs on microorganisms are considered, on the basis of which a variant of the functional classification of these molecules is proposed. Based on these data, the prospects for their use as the basis of biopesticides for plant protection against pathogens were assessed.
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植物抗菌肽在保护作物免受病害侵害方面的潜力
抗菌肽(AMPs)是植物对环境胁迫因子产生先天免疫力的最重要成分,也是防御系统最古老的工具之一。它们大多作为植物组成型免疫因子合成,但也有属于 "致病相关蛋白"(第 12、13 和 14 类 PR 蛋白)的诱导型形式。本综述介绍了植物 AMPs 主要家族的一级结构和三维结构的特点。还介绍了多肽链空间排列类型之间的关系。通过对一些具有重要经济价值的真菌和细菌植物病原体的活性谱和定量水平的数据,介绍了植物 AMPs 的功能分析,并指出了相关的生物效应。此外,还提供了以防御素(研究最多的结构群)为基础的植物 AMPs 抗菌作用分子机制的最新信息。最后,考虑了植物 AMPs 对微生物作用模式的各个方面,并在此基础上提出了这些分子功能分类的变体。在这些数据的基础上,评估了将其用作植物保护免受病原体侵害的生物农药的前景。
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