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首页> 外文期刊>Analytical and bioanalytical chemistry >Distinguishing Ontario ginseng landraces and ginseng species using NMR-based metabolomics
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Distinguishing Ontario ginseng landraces and ginseng species using NMR-based metabolomics

机译:使用基于NMR的代谢组学区分安大略省人参地方品种和人参种类

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摘要

The use of ~1H-NMR-based metabolomics to distinguish and identify unique markers of five Ontario ginseng(Panax quinquefolius L.) landraces and two ginseng species(P. quinquefolius and P. ginseng) was evaluated. Three landraces(2, 3, and 5) were distinguished from one another in the principal component analysis (PCA) scores plot. Further analysis was conducted and specific discriminating metabolites from the PCA loadings were determined. Landraces 3 and 5 were distinguishable on the basis of a decreased NMR intensity in the methyl ginsenoside region, indicating decreased overall ginsenoside levels. In addition, landrace 5 was separated by an increased amount of sucrose relative to the rest of the landraces. Landrace 2 was separated from the rest of the landraces by the increased level of ginsenoside Rb1. The Ontario P. quinquefolius was also compared with Asian P. ginseng by PCA, and clear separation between the two groups was detected in the PCA scores plot. The PCA loadings plot and a t-test NMR difference plot were able to identify an increased level of maltose and a decreased level of sucrose in the Asian ginseng compared with the Ontario ginseng. An overall decrease of ginsenoside content, especially ginsenoside Rb1, was also detected in the Asian ginseng's metabolic profile. This study demonstrates the potential of NMR-based metabolomics as a powerful high-throughput technique in distinguishing various closely related ginseng landraces and its ability to identify metabolic differences from Ontario and Asian ginseng. The results from this study will allow better understanding for quality assessment, species authentication, and the potential for developing a fully automated method for quality control.
机译:评价了基于〜1 H-NMR的代谢组学,以区分和鉴定五个安大略人参(Panax quinquefolius L.)地方品种和两个人参物种(P. quinquefolius和P. ginseng)的独特标记。在主成分分析(PCA)评分图中,将三个地方品种(2、3和5)区分开来。进行了进一步的分析,并确定了从PCA载量中鉴定出的特定代谢产物。根据甲基人参皂苷区域的NMR强度降低,可以区分出地方品种3和5,表明人参皂苷的总体含量降低。另外,相对于其余的地方品种,地方品种5被增加量的蔗糖分开。人参皂甙Rb1水平的提高将长白2与其他长白分开。 PCA也将安大略省的P. quinquefolius与亚洲人参进行了比较,并且在PCA分数图中检测到两组之间的明显分离。与安大略省人参相比,PCA含量图和t检验NMR差异图能够确定亚洲人参中麦芽糖水平升高和蔗糖水平降低。在人参的代谢谱中也发现了人参皂苷含量的整体下降,尤其是人参皂苷Rb1。这项研究证明了基于NMR的代谢组学在区分各种密切相关的人参地方品种方面的潜力以及其识别安大略省和亚洲人参代谢差异的能力。这项研究的结果将使人们更好地了解质量评估,物种鉴定以及开发完全自动化的质量控制方法的潜力。

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