Gu Haike, Peng Zhuangju, Kuang Xiuwen, Hou Li, Peng Xinyuan, Song Meifang, Liu Junfeng
Institute of Radiation Technology, Beijing Academy of Science and Technology, Beijing 100875, China.
College of Life Science and Technology, Beijing University of Chemical Technology, Beijing 100029, China.
Metabolites. 2024 Dec 11;14(12):700. doi: 10.3390/metabo14120700.
Volatile compounds have a deep influence on the quality and application of the medicinal herb ; however, little is known about the effect of UV-B radiation on volatile metabolites. We herein investigated the effects of UV-B exposure on the volatile compounds and transcriptome of to assess the potential for improving its quality and medicinal characteristics. Out of 733 volatiles obtained, a total of 133 differentially expressed metabolites (DEMs) were identified by metabolome analysis. These were classified into 16 categories, primarily consisting of terpenoids, esters, heterocyclic compounds, alcohols, and ketones. Sensory odor analysis indicated that green was the odor with the highest number of annotations. Among the 544 differentially expressed genes (DEGs) identified by transcriptome analysis, most DEGs were linked to "metabolic pathways" and "biosynthesis of secondary metabolites". Integrated analysis revealed that volatiles were mainly synthesized through the shikimate pathway and the MEP pathway. RNA-seq and qPCR results indicated that transcription factors HY5, bHLH25, bHLH18, bHLH148, MYB114, MYB12, and MYB111 were upregulated significantly after UV-B radiation, and were therefore considered key regulatory factors for volatiles synthesis under UV-B radiation. These findings not only provide new insights into UV-induced changes in volatile compounds, but also provide an exciting opportunity to enhance medicinal herbs' value, facilitating the development of products with higher levels of essential oils, flavor, and bioactivity.
挥发性化合物对药草的品质和应用有着深远影响;然而,关于UV - B辐射对挥发性代谢产物的影响却知之甚少。我们在此研究了UV - B照射对[药草名称未给出]挥发性化合物和转录组的影响,以评估改善其品质和药用特性的潜力。在获得的733种挥发物中,通过代谢组分析共鉴定出133种差异表达代谢物(DEM)。这些代谢物被分为16类,主要包括萜类、酯类、杂环化合物、醇类和酮类。感官气味分析表明,“绿色”是注释数量最多的气味。在转录组分析鉴定出的544个差异表达基因(DEG)中,大多数DEG与“代谢途径”和“次生代谢物的生物合成”有关。综合分析表明,挥发物主要通过莽草酸途径和MEP途径合成。RNA测序和qPCR结果表明,转录因子HY5、bHLH25、bHLH18、bHLH148、MYB114、MYB12和MYB111在UV - B辐射后显著上调,因此被认为是UV - B辐射下挥发物合成的关键调控因子。这些发现不仅为UV诱导的挥发性化合物变化提供了新的见解,还为提高药草价值提供了令人兴奋的机会,有助于开发具有更高水平精油、风味和生物活性的产品。