植物免疫
生物
信号
串扰
计算生物学
效应器
免疫系统
水杨酸
机制(生物学)
系统获得性抵抗
免疫
细胞生物学
基因
遗传学
拟南芥
突变体
哲学
物理
认识论
光学
作者
Rajib Roychowdhury,Sapna Mishra,Gautam Anand,Debalika Dalal,Rupali Gupta,Ajay Kumar,Ravi Gupta
摘要
Abstract Salicylic acid (SA) is an important phytohormone, well‐known for its regulatory role in shaping plant immune responses. In recent years, significant progress has been made in unravelling the molecular mechanisms underlying SA biosynthesis, perception, and downstream signalling cascades. Through the concerted efforts employing genetic, biochemical, and omics approaches, our understanding of SA‐mediated defence responses has undergone remarkable expansion. In general, following SA biosynthesis through Avr effectors of the pathogens, newly synthesized SA undergoes various biochemical changes to achieve its active/inactive forms (e.g. methyl salicylate). The activated SA subsequently triggers signalling pathways associated with the perception of pathogen‐derived signals, expression of defence genes, and induction of systemic acquired resistance (SAR) to tailor the intricate regulatory networks that coordinate plant immune responses. Nonetheless, the mechanistic understanding of SA‐mediated plant immune regulation is currently limited because of its crosstalk with other signalling networks, which makes understanding this hormone signalling more challenging. This comprehensive review aims to provide an integrated overview of SA‐mediated plant immunity, deriving current knowledge from diverse research outcomes. Through the integration of case studies, experimental evidence, and emerging trends, this review offers insights into the regulatory mechanisms governing SA‐mediated immunity and signalling. Additionally, this review discusses the potential applications of SA‐mediated defence strategies in crop improvement, disease management, and sustainable agricultural practices.
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