鉴定(生物学)
计算生物学
生物
生物技术
激发子
植物病害
植物发育
植物种类
人类疾病
肽
农作物产量
机制(生物学)
植物生物学
计算机科学
电厂系统
生化工程
作者
Shunxi Wang,Jinghua Zhang,Xiaojing Gao,Xiaodong Bao,Shanshan Liu,Ritian Qin,Benge Xin,Pengpeng Li,Bokai Zhang,Liuji Wu
标识
DOI:10.1016/j.xplc.2026.101739
摘要
Plant peptides have emerged as key regulators of plant growth, development, immunity, and environmental adaptation. Early studies in crops demonstrate the potential application of certain peptides, such as systemin and plant elicitor peptides, to enhance disease resistance. Based on their structure and function, plant peptides are typically classified into canonical peptides, non-canonical peptides, and non-ribosomal peptides. Advances in peptidogenomics and mass spectrometry enable genome-wide discovery of numerous endogenous peptides, including those translated from untranslated regions and non-coding RNAs, greatly expanding the known plant peptidome. This review provides a comprehensive overview of plant peptides, including their classification, biosynthesis, and functional mechanisms in regulating diverse biological processes. Importantly, it systematically summarizes the historical development and recent advances in strategies for plant peptide identification. Despite substantial progress, peptide discovery and functional annotation remain challenging. We therefore propose that integrating high-throughput technologies, functional genomics, and synthetic biology will be essential for unlocking the full potential of plant peptides in crop improvement and cross-disciplinary innovation.
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