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水杨酸通过菊花中的NPR3-WRKY1模块调控花香(E)-β-法尼烯的生物合成。

Salicylic acid regulates biosynthesis of floral fragrance (E)-β-farnesene via NPR3-WRKY1 module in chrysanthemum.

作者信息

Wang Zhiling, Yuan Yixin, Dong Rui, Zeng Ruihong, Zhao Xin, Xu Yanjie, Gao Junping, Hong Bo, Gu Zhaoyu

机构信息

Beijing Key Laboratory of Development and Quality Control of Ornamental Crops, Department of Ornamental Horticulture, China Agricultural University, Beijing, 100193, China.

出版信息

Mol Hortic. 2025 Sep 5;5(1):52. doi: 10.1186/s43897-025-00174-y.

Abstract

Floral fragrance is essential for the attraction of pollinators and responses to biotic and abiotic stresses. It also enhances the quality and economic value of plants. Phytohormones, acting as key signaling molecules, are crucial roles in regulating plant growth and development. However, the molecular mechanisms underlying the biosynthesis of fragrance-related volatiles and their crosstalk with other endogenous signals within plants remain largely unknown. Here, we identified a sesquiterpene synthase gene, CmEβFS, in chrysanthemum, which encodes a catalytic enzyme responsible for synthesizing the key fragrance-related compound (E)-β-farnesene. We demonstrated that CmEβFS is negatively regulated by CmWRKY1, thereby inhibiting (E)-β-farnesene biosynthesis. Furthermore, CmWRKY1 interacts with the salicylic acid (SA) receptor CmNPR3 to regulate SA-mediated CmEβFS transcription. Our findings reveal that SA regulates (E)-β-farnesene biosynthesis by controlling CmEβFS expression via the CmWRKY1-CmNPR3 module during floral development. These findings enhanced our understanding of the mechanisms underlying SA-mediated regulation of volatile organic compounds (VOCs) biosynthesis and provided insights into improving floral fragrance.

摘要

花香对于吸引传粉者以及植物对生物和非生物胁迫的响应至关重要。它还能提高植物的品质和经济价值。植物激素作为关键的信号分子,在调节植物生长发育中起着至关重要的作用。然而,与香气相关的挥发性物质生物合成及其与植物体内其他内源信号相互作用的分子机制仍 largely 未知。在这里,我们在菊花中鉴定出一个倍半萜合酶基因 CmEβFS,它编码一种催化酶,负责合成关键的与香气相关的化合物(E)-β-法尼烯。我们证明 CmEβFS 受 CmWRKY1 负调控,从而抑制(E)-β-法尼烯的生物合成。此外,CmWRKY1 与水杨酸(SA)受体 CmNPR3 相互作用,以调节 SA 介导的 CmEβFS 转录。我们的研究结果表明,在花发育过程中,SA 通过 CmWRKY1-CmNPR3 模块控制 CmEβFS 的表达来调节(E)-β-法尼烯的生物合成。这些发现加深了我们对 SA 介导的挥发性有机化合物(VOCs)生物合成调控机制的理解,并为改善花香提供了见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/550d/12412252/c050a92dd6cc/43897_2025_174_Fig1_HTML.jpg

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