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Surveying the potential of secreted antimicrobial peptides to enhance plant disease resistance

机译:调查分泌的抗菌肽增强植物抗病能力的潜力

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摘要

Antimicrobial peptides (AMPs) are natural products found across diverse taxa as part of the innate immune system against pathogen attacks. Some AMPs are synthesized through the canonical gene expression machinery and are called ribosomal AMPs. Other AMPs are assembled by modular enzymes generating nonribosomal AMPs and harbor unusual structural diversity. Plants synthesize an array of AMPs, yet are still subject to many pathogen invasions. Crop breeding programs struggle to release new cultivars in which complete disease resistance is achieved, and usually such resistance becomes quickly overcome by the targeted pathogens which have a shorter generation time. AMPs could offer a solution by exploring not only plant-derived AMPs, related or unrelated to the crop of interest, but also non-plant AMPs produced by bacteria, fungi, oomycetes or animals. This review highlights some promising candidates within the plant kingdom and elsewhere, and offers some perspectives on how to identify and validate their bioactivities. Technological advances, particularly in mass spectrometry (MS) and nuclear magnetic resonance (NMR), have been instrumental in identifying and elucidating the structure of novel AMPs, especially nonribosomal peptides which cannot be identified through genomics approaches. The majority of non-plant AMPs showing potential for plant disease immunity are often tested using in vitro assays. The greatest challenge remains the functional validation of candidate AMPs in plants through transgenic experiments, particularly introducing nonribosomal AMPs into crops.
机译:抗菌肽(AMPs)是在自然界中广泛发现的天然产物,是抵抗病原体攻击的先天免疫系统的一部分。一些AMP通过规范的基因表达机制合成,称为核糖体AMP。其他AMP由产生非核糖体AMP的模块化酶组装而成,具有异常的结构多样性。植物合成了一系列AMP,但仍然受到许多病原体入侵。作物育种计划努力释放能够实现完全抗病性的新品种,通常这种抗性会很快被具有较短生成时间的目标病原体所克服。 AMP不仅可以探索与目标作物相关或无关的植物源AMP,而且可以探索细菌,真菌,卵菌或动物产生的非植物AMP,从而提供解决方案。这篇综述重点介绍了植物界和其他地方的一些有前途的候选人,并就如何鉴定和验证其生物活性提供了一些见解。技术进步,特别是质谱(MS)和核磁共振(NMR)方面的技术进步,已有助于鉴定和阐明新型AMP的结构,尤其是无法通过基因组学方法鉴定的非核糖体肽。多数具有植物免疫力潜力的非植物AMP经常使用体外测定法进行测试。最大的挑战仍然是通过转基因实验对植物中候选AMP进行功能验证,特别是将非核糖体AMP引入作物中。

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