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Comparative Metabolite Profiling of Wild and Cultivated Licorice Based on Ultra-Fast Liquid Chromatography Coupled with Triple Quadrupole-Time of Flight Tandem Mass Spectrometry

机译:基于超快速液相色谱和三重串联四极杆飞行时间串联质谱的野生和栽培甘草代谢物分析

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Licorice is one of the ancient and most frequently applied herbs for its diverse phytochemicals. At present, wild resources of licorice have rapidly declined with increasing demand and the proportion of cultivated products in the market is quickly growing. However, the different level in chemical composition between the wild and cultivated licorice may result in the discrepancy in quality and pharmacological activity. Therefore, an ultra-fast liquid chromatography coupled with triple quadrupole-time of flight tandem mass spectrometry (UFLC-Triple TOF-MS/MS) method combined with multivariate statistical analysis technology was employed to explore chemical composition differences. The result showed that total 63 components were identified from licorice samples. The wild and the cultivated licorice are obviously classified into two groups according to principal component analysis (PCA). PCA and partial least squared discrimination analysis (PLS-DA) were also introduced to rapidly find 14 candidate compounds between two ecotypes of licorice. Apart from glycyrrhizin, licorice saponin J2/G2, glyasperin D and dehydroglyasperin D also could be selected as chemical markers based on t -test and variable importance in the projection (VIP) value. Our study successfully established an effective method for exploring metabolite profiling between two ecotypes of licorice and laying the foundation for distinguishing wild and cultivated licorice.
机译:欧亚甘草由于其多种植物化学成分而成为古老且最常用的草药之一。目前,随着需求的增加,甘草的野生资源已迅速减少,并且耕种产品在市场中的比重正在迅速增长。但是,野生甘草和栽培甘草之间化学成分的不同水平可能会导致质量和药理活性的差异。因此,采用超快速液相色谱结合三重四极杆飞行时间串联质谱(UFLC-Triple TOF-MS / MS)方法结合多元统计分析技术来研究化学成分差异。结果表明,从甘草样品中共鉴定出63种成分。根据主成分分析(PCA),野生和种植的甘草显然分为两类。还引入了PCA和偏最小二乘判别分析(PLS-DA),以在两种甘草型生态类型之间快速找到14种候选化合物。除甘草甜素外,还可以基于t检验和预测值(VIP)的可变重要性,选择甘草皂苷J2 / G2,甘草素D和脱氢甘草素D作为化学标记。我们的研究成功地建立了一种探索两种甘草型之间的代谢物谱的有效方法,并为区分野生和栽培甘草奠定了基础。

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