生物
NPR1
转录因子
生物逆境
拟南芥
串扰
非生物成分
细胞生物学
WRKY蛋白质结构域
非生物胁迫
系统获得性抵抗
植物对草食的防御
调节器
基因
遗传学
突变体
生态学
利钠肽
医学
心力衰竭
物理
内科学
光学
作者
Raul Zavaliev,Xinnian Dong
出处
期刊:Molecular Cell
[Elsevier BV]
日期:2023-12-15
卷期号:84 (1): 131-141
被引量:35
标识
DOI:10.1016/j.molcel.2023.11.018
摘要
Nonexpressor of pathogenesis-related genes 1 (NPR1) was discovered in Arabidopsis as an activator of salicylic acid (SA)-mediated immune responses nearly 30 years ago. How NPR1 confers resistance against a variety of pathogens and stresses has been extensively studied; however, only in recent years have the underlying molecular mechanisms been uncovered, particularly NPR1's role in SA-mediated transcriptional reprogramming, stress protein homeostasis, and cell survival. Structural analyses ultimately defined NPR1 and its paralogs as SA receptors. The SA-bound NPR1 dimer induces transcription by bridging two TGA transcription factor dimers, forming an enhanceosome. Moreover, NPR1 orchestrates its multiple functions through the formation of distinct nuclear and cytoplasmic biomolecular condensates. Furthermore, NPR1 plays a central role in plant health by regulating the crosstalk between SA and other defense and growth hormones. In this review, we focus on these recent advances and discuss how NPR1 can be utilized to engineer resistance against biotic and abiotic stresses.
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