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Principal Component Analysis-Based Strategy to Identify the Presence of Tissue-Cultured and Wild-Type Dendrobium officinale and Dendrobium moniliforme in a Commercial Preparation

机译:基于主成分分析的策略,以鉴定商业制备中组织培养和野生型石斛的存在和石斛兰

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摘要

A principal component analysis-based two-dimensional correlation infrared spectroscopy technique combined with tri-step infrared macro-fingerprinting was explored to discriminate 1-4 years of tissue-cultured from wild-type Dendrobium officinale and Dendrobium moniliforme. The results showed that although speciation and origins of the Dendrobium samples could be differentiated by Fourier-transform infrared spectroscopy and second derivative infrared spectroscopy spectra, it is quite difficult to identify the age of Dendrobiums. In the further principal component analysis-based two-dimensional correlation infrared analysis, the range 1390-1230 cm(-1) and 1180-1020 cm(-1), in which the auto-peaks attributed a major variance ratio, were chosen to discriminate different cultivated years of Dendrobiums. Different ages of D. officinale and D. moniliforme showed their characteristic auto-peaks and cross-peaks with different peak positions and intensity in these two range. Our research indicated that principal component analysis-based strategy combined with tri-step infrared macro-fingerprint is suitable to rapidly discriminate the different ages of Dendrobiums with species and origins.
机译:探讨了基于基于组分分析的二维相关红外光谱技术,与三步红外宏观指纹进行鉴别,以区分1-4岁的组织培养从野生型石斛Officinale和石斛兰氏菌。结果表明,虽然石斛样品的形状和起源可以通过傅里叶变换红外光谱和第二衍生红外光谱光谱来分化,但是识别石斛的年龄很难。在基于主要的主成分分析的二维相关红外分析中,选择了1390-1230cm(-1)和1180-1020cm(-1)的范围,其中自动峰值归因于主要方差比,歧视不同栽培多年的石斛。 D. Officinale和D. Moniliforme的不同年龄段显示它们的特征自动峰和具有不同峰值位置和强度的交叉峰值在这两个范围内。我们的研究表明,基于组分分析的策略与三步红外宏观指纹相结合,适合于用物种和起源迅速区分不同年龄的石斛年龄。

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