Liang Shuang, Zhao Yang, Luo Zhaohui, Liu Junchen, Jiang Xicen, Yang Bingxian, Zhang Lin, Fu Hongwei, Zhong Zhuoheng
College of Life Sciences and Medicine, Zhejiang Sci-Tech University, Hangzhou, China.
Front Plant Sci. 2024 Dec 20;15:1487613. doi: 10.3389/fpls.2024.1487613. eCollection 2024.
(Mill.) Druce is rich in bioactive components with high medicinal value. To maximize the clinical benefits, it is of great significance to efficiently extract key bioactive components from appropriate growth stages in which they are most abundant. In this study, we analyzed the changes of metabolite accumulation and protein expression in rhizomes at different growth stages using targeted metabolomics combined with proteomics, and identified a total of 1,237 differentially abundant metabolites (DAMs). Flavonoids accumulated most in winter, and the biosynthesis pathways associated with flavonoids, isoflavonoids, flavones and flavonols exhibited significant differentially expressed proteins (DEPs). Among them, PGT, FLS, CYP75B1, HIDH, IF7MAT, and UFT73C6 were positively correlated with flavonoid accumulation. Steroid saponins accumulated most in spring, and the biosynthetic pathways of steroid and brassinosteroid biosynthesis exhibited DEPs. Among them, FDFT1, TM7SF2, DHCR7, CAS1, and 3BETAHSDD were positively correlated with steroidal saponin accumulation. In summary, these results revealed the accumulation of secondary metabolites in different growth stages, which can provide an effective reference for the extraction of specific bioactive components and the study of their regulatory mechanisms.
(米尔.)德鲁斯富含具有高药用价值的生物活性成分。为了最大化临床效益,从关键生物活性成分含量最丰富的适当生长阶段高效提取这些成分具有重要意义。在本研究中,我们结合蛋白质组学运用靶向代谢组学分析了不同生长阶段根茎中代谢物积累和蛋白质表达的变化,共鉴定出1237种差异丰富代谢物(DAMs)。黄酮类化合物在冬季积累最多,与黄酮类、异黄酮类、黄酮醇类生物合成途径相关的蛋白质呈现显著差异表达(DEPs)。其中,PGT、FLS、CYP75B1、HIDH、IF7MAT和UFT73C6与黄酮类化合物积累呈正相关。甾体皂苷在春季积累最多,甾体和油菜素内酯生物合成途径呈现差异表达蛋白。其中,FDFT1、TM7SF2、DHCR7、CAS1和3BETAHSDD与甾体皂苷积累呈正相关。总之,这些结果揭示了不同生长阶段次生代谢物的积累情况,可为特定生物活性成分的提取及其调控机制的研究提供有效参考。