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Discrimination of Fennel Chemotypes Applying IR and Raman Spectroscopy: Discovery of a New γ-Asarone Chemotype

机译:区分使用红外和拉曼光谱法的茴香化学型:一种新的γ-Asarone化学型的发现。

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Various vibrational spectroscopy methods have been applied to classify different fennel chemotypes according to their individual profile of volatile substances. Intact fennel fruits of different chemotypes could be successfully discriminated by attenuated total reflectance Fourier transform infrared (ATR-FTIR) and near infrared (NIR) spectroscopy. Solvent extracts (CCl4) of the considered fennel fruits showed characteristic fingerprints with marker bands related to the individual volatile components (trans-anethole, fenchone, estragole, piperitenone oxide, γ-asarone, limonene) for ATR-FTIR and FT-Raman spectroscopy. Especially v_(C=C) and v_(C=O) absorption bands contribute to the different spectral profiles. On the basis of hierarchical cluster analysis, the considered fennel accessions were classified according to gas chromatographic (GC) and vibrational spectroscopic data. Furthermore, even a discrimination of "sweet" and "bitter" fennel fruits, both belonging to the trans-anefhole chemotype, could be successfully performed. All vibrational spectroscopical techniques used in this study are rapid and easy to apply. Hence, they allow different fennel chemotypes to be reliably distinguished and can also be used for on-site measurement in free nature.
机译:各种振动光谱法已被用来根据不同的挥发性物质的个人特征对不同的茴香化学型进行分类。通过衰减全反射傅里叶变换红外光谱(ATR-FTIR)和近红外光谱(NIR)可以成功地区分不同化学类型的完整茴香果实。所考虑的茴香果实的溶剂提取物(CCl4)在ATR-FTIR和FT-Raman光谱学中表现出特征性的指纹图谱,其标记带与各个挥发性成分(反式茴香脑,fenchone,雌草酮,氧化哌啶酮,γ-紫杉醇,柠檬烯)有关。特别是v_(C = C)和v_(C = O)吸收带有助于形成不同的光谱轮廓。在层次聚类分析的基础上,根据气相色谱(GC)和振动光谱数据对考虑的茴香种进行分类。此外,甚至可以成功地对属于反流子孔化学型的“甜”和“苦”茴香果实进行区分。本研究中使用的所有振动光谱技术都是快速且易于应用的。因此,它们可以可靠地区分不同的茴香化学型,也可以用于自由自然现场测量。

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