苯丙氨酸
水杨酸
生物合成
化学
生物化学
氨基酸
酶
作者
Yukang Wang,Shuyan Song,Wenxuan Zhang,Qianwen Deng,Yanlei Feng,Tao Mei,M.S. Kang,Qi Zhang,Lijia Yang,Xinyu Wang,Changan Zhu,Xiaowen Wang,Weidong Zhu,Yixiao Zhu,Pengfei Cao,Jia Chen,Jinheng Pan,Shan Feng,Xianyan Chen,Huaxin Dai
出处
期刊:Nature
[Nature Portfolio]
日期:2025-07-23
卷期号:645 (8079): 208-217
被引量:13
标识
DOI:10.1038/s41586-025-09280-9
摘要
Salicylic acid (SA) is a ubiquitous plant hormone with a long history in human civilization1,2. Because of the central role of SA in orchestrating plant pathogen defence, understanding SA biosynthesis is fundamental to plant immunity research and crop improvement. Isochorismate-derived SA biosynthesis has been well defined in Arabidopsis. However, increasing evidence suggests a crucial function for phenylalanine-derived SA biosynthesis in many other plant species1. Here we reveal the phenylalanine-derived SA biosynthetic pathway in rice by identifying three dedicated enzymes - peroxisomal benzoyl-CoA:benzyl alcohol benzoyltransferase (BEBT), the endoplasmic reticulum-associated cytochrome P450 enzyme benzylbenzoate hydroxylase (BBH), and cytosolic benzylsalicylate esterase (BSE) that sequentially convert benzoyl-CoA to benzylbenzoate, benzylsalicylate and SA. The pathogen-induced gene expression pattern and SA biosynthetic functions of this triple-enzyme module are conserved in diverse plants. This work fills a major knowledge gap in the biosynthesis of a key plant defence hormone, establishing a foundation for new strategies to create disease-resistant crops.
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