College of Horticulture, Northwest A&F University, Yangling, 712100, Shaanxi, China.
Plant J. 2024 Oct;120(2):598-614. doi: 10.1111/tpj.17003. Epub 2024 Aug 29.
Geraniol is one of the most abundant aromatic compounds in fresh tea leaves and contributes to the pleasant odor of tea products. Additionally, it functions as an airborne signal that interacts with other members of the ecosystem. To date, the regulation of the geraniol biosynthesis in tea plants remains to be investigated. In this study, a correlation test of the content of geraniol and its glycosides with gene expression data revealed that nudix hydrolase, CsNudix26, and its transcription factor, CsbHLH133 are involved in geraniol biosynthesis. In vitro enzyme assays and metabolic analyses of genetically modified tea plants confirmed that CsNudix26 is responsible for the formation of geraniol. Yeast one-hybrid, dual-luciferase reporter, and EMSA assays were used to verify the binding of CsbHLH133 to the CsNudix26 promoter. Overexpression of CsbHLH133 in tea leaves enhanced CsNudix26 expression and geraniol accumulation, whereas CsbHLH133 silencing reduced CsNudix26 transcript levels and geraniol content. Interestingly, CsbHLH133-AS, produced by alternative splicing, was discovered and proved to be the primary transcript expressed in response to various environmental stresses. Furthermore, geraniol release was found to be affected by various factors that alter the expression patterns of CsbHLH133 and CsbHLH133-AS. Our findings indicate that distinct transcript splicing patterns of CsbHLH133 regulate geraniol biosynthesis in tea plants in response to different regulatory factors.
香叶醇是新鲜茶叶中含量最丰富的芳香化合物之一,赋予了茶叶产品宜人的香气。此外,它还作为一种空气传播信号,与生态系统的其他成员相互作用。迄今为止,茶树中香叶醇的生物合成调控仍有待研究。在本研究中,香叶醇及其糖苷含量与基因表达数据的相关测试表明,NUDIX 水解酶 CsNudix26 及其转录因子 CsbHLH133 参与了香叶醇的生物合成。对转基因茶树的体外酶测定和代谢分析证实,CsNudix26 负责香叶醇的形成。酵母单杂交、双荧光素酶报告基因和 EMSA 测定用于验证 CsbHLH133 与 CsNudix26 启动子的结合。在茶叶叶片中过表达 CsbHLH133 增强了 CsNudix26 的表达和香叶醇的积累,而 CsbHLH133 的沉默则降低了 CsNudix26 的转录水平和香叶醇的含量。有趣的是,通过选择性剪接发现并证实 CsbHLH133-AS 是一种主要的转录本,它可以响应各种环境胁迫而表达。此外,香叶醇的释放受到各种因素的影响,这些因素改变了 CsbHLH133 和 CsbHLH133-AS 的表达模式。我们的研究结果表明,CsbHLH133 的不同转录剪接模式调节了茶树中香叶醇的生物合成,以响应不同的调节因子。