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首页> 外文期刊>Molecules >Discriminative Analysis of Different Grades of Gaharu (Aquilaria malaccensis Lamk.) via H-1-NMR-Based Metabolomics Using PLS-DA and Random Forests Classification Models
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Discriminative Analysis of Different Grades of Gaharu (Aquilaria malaccensis Lamk.) via H-1-NMR-Based Metabolomics Using PLS-DA and Random Forests Classification Models

机译:使用PLS-DA和随机林分类模型对基于H-1-NMR的代谢组织不同等级的Gaharu(Aquilaria malAccensis LAMK。)的判别分析

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摘要

Gaharu (agarwood, Aquilaria malaccensis Lamk.) is a valuable tropical rainforest product traded internationally for its distinctive fragrance. It is not only popular as incense and in perfumery, but also favored in traditional medicine due to its sedative, carminative, cardioprotective and analgesic effects. The current study addresses the chemical differences and similarities between gaharu samples of different grades, obtained commercially, using H-1-NMR-based metabolomics. Two classification models: partial least squares-discriminant analysis (PLS-DA) and Random Forests were developed to classify the gaharu samples on the basis of their chemical constituents. The gaharu samples could be reclassified into a 'high grade' group (samples A, B and D), characterized by high contents of kusunol, jinkohol, and 10-epi-gamma-eudesmol; an 'intermediate grade' group (samples C, F and G), dominated by fatty acid and vanillic acid; and a 'low grade' group (sample E and H), which had higher contents of aquilarone derivatives and phenylethyl chromones. The results showed that H-1-NMR-based metabolomics can be a potential method to grade the quality of gaharu samples on the basis of their chemical constituents.
机译:Gaharu(Agarwood,Aquilaria malAccensis Lamk。)是一个有价值的热带雨林产品,以其独特的香味交易。它不仅是香火和香水,而且由于其镇静剂,肉豆蔻,心脏保护和镇痛作用,在传统医学中也受到青睐。目前的研究通过基于H-1-NMR基的代谢组学,解决了商业上获得的不同等级的Gaharu样品之间的化学差异和相似性。两种分类模型:开发了部分最小二乘歧视分析(PLS-DA)和随机森林,以基于其化学成分对Gaharu样品进行分类。可以将Gaharu样品重新分类为“高级”组(样品A,B和D),其特征在于Kusunol,Jinkohol和10-Epi-Gamma-Eudesmol的高含量;一个“中间级”组(样品C,F和G),由脂肪酸和香草酸主导;和“低等级”(样品E和H),其含量含量高,含量衍生物和苯乙基铬酮。结果表明,基于H-1-NMR的代谢物可以是在其化学成分基于其化学成分级级级样品的潜在方法。

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