Niu Yuqing, Zheng Meixia, Tian Dagang, Zhu Yanming, Chen Hong, Zhu Yujing, Su Hailan
Institute of Crop Sciences, Fujian Academy of Agricultural Sciences, Fuzhou 350013, China.
Biotechnology Research Institute, Fujian Academy of Agricultural Sciences, Fuzhou 350013, China.
Plants (Basel). 2025 May 23;14(11):1585. doi: 10.3390/plants14111585.
Benth is a significant botanical resource utilized for both medicinal and dietary purposes, and the Xiaoye variety (XY) exhibited the highest antioxidant activity among the varieties. Despite its importance, metabolic information regarding its medicinal and nutritional properties remains sparse. This study examined the secondary metabolites of four Benth varieties using UHPLC-MS/MS and identified 102, 105, and 286 metabolites exhibiting differential accumulation in the XY variety compared to the Taiwan variety (TW), Minxuan variety (MX), and Zengcheng variety (ZC), respectively, among the 1287 metabolites identified. These metabolites are predominantly involved in secondary metabolic pathways such as "Tropane, Piperidine, and Pyridine Alkaloid Biosynthesis" and "Flavone and Flavonol Biosynthesis". In addition, we identified the ten most significant differential metabolites that influence antioxidant activity, with flavonoids recognized as the primary contributors to the variation in antioxidant activities. In this study, we have outlined the metabolic landscape of Benth. These findings may aid in elucidating the mechanism behind the antioxidant activity of XY, which provides valuable insights for breeding, quality assurance, and product innovation related to Benth.
九层塔是一种重要的植物资源,兼具药用和食用价值,其中小叶品种(XY)在各品种中表现出最高的抗氧化活性。尽管其很重要,但关于其药用和营养特性的代谢信息仍然匮乏。本研究使用超高效液相色谱-串联质谱法(UHPLC-MS/MS)检测了四种九层塔品种的次生代谢产物,在鉴定出的1287种代谢产物中,分别确定了与台湾品种(TW)、闽选品种(MX)和增城品种(ZC)相比,在XY品种中差异积累的102种、105种和286种代谢产物。这些代谢产物主要参与“托品烷、哌啶和吡啶生物碱生物合成”以及“黄酮和黄酮醇生物合成”等次生代谢途径。此外,我们确定了影响抗氧化活性的十种最显著差异代谢产物,其中黄酮类化合物被认为是抗氧化活性变化的主要贡献者。在本研究中,我们勾勒出了九层塔的代谢图谱。这些发现可能有助于阐明XY抗氧化活性背后的机制,为九层塔的育种、质量保证和产品创新提供有价值的见解。