Wang_2025_Nature__

Reference

Title : Deciphering phenylalanine-derived salicylic acid biosynthesis in plants - Wang_2025_Nature__
Author(s) : Wang Y , Song S , Zhang W , Deng Q , Feng Y , Tao M , Kang M , Zhang Q , Yang L , Wang X , Zhu C , Zhu W , Zhu Y , Cao P , Chen J , Pan J , Feng S , Chen X , Dai H , Yang J , Zhao T , Cao F , Tao Z , Shen X , Last RL , Hu J , Yu J , Fan P , Pan R
Ref : Nature , : , 2025
Abstract :

Salicylic acid (SA) is a ubiquitous plant hormone with a long history in human civilization(1,2). 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 species(1). 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.

PubMedSearch : Wang_2025_Nature__
PubMedID: 40702180
Gene_locus related to this paper: orysa-q6j657

Related information

Substrate Benzyl-salicylate    Benzyl-benzoate
Gene_locus orysa-q6j657

Citations formats

Wang Y, Song S, Zhang W, Deng Q, Feng Y, Tao M, Kang M, Zhang Q, Yang L, Wang X, Zhu C, Zhu W, Zhu Y, Cao P, Chen J, Pan J, Feng S, Chen X, Dai H, Yang J, Zhao T, Cao F, Tao Z, Shen X, Last RL, Hu J, Yu J, Fan P, Pan R (2025)
Deciphering phenylalanine-derived salicylic acid biosynthesis in plants
Nature :

Wang Y, Song S, Zhang W, Deng Q, Feng Y, Tao M, Kang M, Zhang Q, Yang L, Wang X, Zhu C, Zhu W, Zhu Y, Cao P, Chen J, Pan J, Feng S, Chen X, Dai H, Yang J, Zhao T, Cao F, Tao Z, Shen X, Last RL, Hu J, Yu J, Fan P, Pan R (2025)
Nature :