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Comparative Analysis of Panax ginseng Berries from Seven Cultivars Using UPLC-QTOF/MS and NMR-Based Metabolic Profiling

机译:使用UPLC-QTOF / MS和基于NMR的代谢谱分析比较七个品种的人参浆果

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摘要

The commercial use of Panax ginseng berries is increasing as P. ginseng berries are known to contain large amounts of ginsenosides, and many pharmacological activities have been reported for the various ginsenosides. For the proper use of P. ginseng berries, it is necessary to study efficient and accurate quality control and the profiling of the overall composition of each cultivar. Ginseng berry samples from seven cultivars (Eumseung, Chung-buk Province, Republic of Korea) were analyzed using ultra-performance liquid chromatography-quadrupole-time-of-flight mass spectrometry (UPLC-QTOF/MS) for profiling of the ginsenosides, and high-resolution magic-angle-spinning nuclear magnetic resonance (HR-MAS NMR) spectroscopy for profiling of the primary metabolites. Comparing twenty-six ginsenoside profiles between the variant representatives and between the violet-stem variant, Kumpoong and Sunwon were classified. In the case of primary metabolites, the cultivars Kumpoong and Gopoong were classified. As a result of correlation analyses of the primary and secondary metabolites, in the Gopoong cultivar, the metabolism was found to lean toward energy metabolism rather than ginsenoside synthesis, and accumulation of osmolytes was low. The Gopoong cultivar had higher levels of most of the amino acids, such as arginine, phenylalanine, isoleucine, threonine, and valine, and it contained the highest level of choline and the lowest level of myo-inositol. Except for these, there were no significant differences of primary metabolites. In the Kumpoong cultivar, the protopanaxatriol (PPT)-type ginsenosides, ginsenoside Re and ginsenoside Rg2, were much lower than in the other cultivars, while the other PPT-type ginsenosides were inversely found in much higher amounts than in other cultivars. The Sunwon cultivar showed that variations of PPT-type ginsenosides were significantly different between samples. However, the median values of PPT-type ginsenosides of Sunwon showed similar levels to those of Kumpoong. The difference in primary metabolites used for metabolism for survival was found to be small in our results. Our data demonstrated the characteristics of each cultivar using profiling data of the primary and secondary metabolites, especially for Gopoong, Kumpoong, and Sunwon. These profiling data provided important information for further research and commercial use.
机译:人参浆果的商业用途正在增加,因为已知人参浆果含有大量的人参皂苷,并且已经报道了各种人参皂苷的许多药理活性。为了正确使用人参浆果,有必要研究有效而准确的质量控制以及每种栽培品种的总体组成概况。使用超高效液相色谱-四极杆飞行时间质谱(UPLC-QTOF / MS)分析了七个品种(大韩民国忠北省延城)的人参浆果样品,并对人参皂苷进行了分析,高分辨率魔角旋转核磁共振(HR-MAS NMR)光谱用于主要代谢产物的分析。比较了变体代表之间和紫茎变种Kumpoong和Sunwon之间的26种人参皂苷谱。在主要代谢物的情况下,对品种Kumpoong和Gopoong进行了分类。对初级和次级代谢产物进行相关分析的结果,在高浦品种中,发现代谢倾向于能量代谢,而不是人参皂苷的合成,并且渗透质的积累很低。 Gopoong品种的大多数氨基酸(例如精氨酸,苯丙氨酸,异亮氨酸,苏氨酸和缬氨酸)的含量较高,并且胆碱含量最高,肌醇含量最低。除此之外,主要代谢物没有显着差异。在Kumpoong品种中,原托那沙三醇(PPT)型人参皂苷,人参皂苷Re和人参皂苷Rg2均比其他品种低得多,而其他PPT型人参皂苷的含量却比其他品种高得多。 Sunwon品种显示,PPT型人参皂甙的样品之间存在显着差异。然而,Sunwon的PPT型人参皂甙的中值显示出与Kumpoong相似的水平。在我们的研究结果中发现,用于生存的新陈代谢的主要代谢物的差异很小。我们的数据使用主要和次要代谢物的分析数据证明了每个品种的特征,尤其是对于高邦,古邦和新元。这些分析数据为进一步研究和商业使用提供了重要信息。

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