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Discrimination and chemical phylogenetic study of seven species of Dendrobium using infrared spectroscopy combined with cluster analysis

机译:红外光谱结合聚类分析对7种石end的鉴别和化学系统发育研究

摘要

Dendrobium is a commonly used and precious herb in Traditional Chinese Medicine. The high biodiversity of Dendrobium and the therapeutic needs require tools for the correct and fast discrimination of different Dendrobium species. This study investigates Fourier transform infrared spectroscopy followed by cluster analysis for discrimination and chemical phylogenetic study of seven Dendrobium species. Despite the general pattern of the IR spectra, different intensities, shapes, peak positions were found in the IR spectra of these samples, especially in the range of 1800-800 cm(-1). The second derivative transformation and alcoholic extracting procedure obviously enlarged the tiny spectral differences among these samples. The results indicated each Dendrobium species had a characteristic IR spectra profile, which could be used to discriminate them. The similarity coefficients among the samples were analyzed based on their second derivative IR spectra, which ranged from 0.7632 to 0.9700, among the seven Dendrobium species, and from 0.5163 to 0.9615, among the ethanol extracts. A dendrogram was constructed based on cluster analysis the IR spectra for studying the chemical phylogenetic relationships among the samples. The results indicated that D. denneanum and D. crepidatum could be the alternative resources to substitute D. chiysotoxum, D. officinale and D. nobile which were officially recorded in Chinese Pharmacopoeia. In conclusion, with the advantages of high resolution, speediness and convenience, the experimental approach can successfully discriminate and construct the chemical phylogenetic relationships of the seven Dendrobium species. (C) 2012 Elsevier B.V. All rights reserved.
机译:石end是中药中常用的珍贵草药。石D的高度生物多样性和治疗需求需要工具来正确,快速地区分不同的石D。这项研究调查了傅立叶变换红外光谱,然后进行聚类分析,以区分和对七个石species物种进行化学系统发育研究。尽管红外光谱的模式一般,但在这些样品的红外光谱中发现了不同的强度,形状,峰位置,尤其是在1800-800 cm(-1)的范围内。二阶导数变换和酒精提取程序明显扩大了这些样品之间的微小光谱差异。结果表明,每一个石species物种都有一个特征性的红外光谱图,可以用来区分它们。根据样品的二阶导数红外光谱分析样品之间的相似性系数,在七种石species属植物中,光谱范围从0.7632至0.9700,在乙醇提取物中,光谱范围从0.5163至0.9615。基于聚类分析红外光谱构建树状图,以研究样品之间的化学系统发生关系。结果表明,中国药典中正式记载的D. nea和D. crepidatum可能是替代D. chiysotoxum,D。officinale和D. nobile的替代资源。综上所述,该实验方法具有高分辨率,快速,方便的优点,可以成功地区分和构建七个铁​​皮石species的化学系统发育关系。 (C)2012 Elsevier B.V.保留所有权利。

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    Luo Congpei; He Tao; Chun Ze;

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  • 年度 2013
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