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Assessment of hyperspectral indicators related to the content of phenolic compounds and multispectral fluorescence records in chicory leaves exposed to various light environments

机译:与各种光环境暴露于各种光环境的苦苣生叶中酚类化合物和多光谱荧光记录相关的高光谱指标

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Hyperspectral analysis represents a powerful technique for diagnostics of morphological and chemical information from aboveground parts of the plants, but the real potential of the method in pre-screening of phenolics in leaves is still insufficiently explored. In this study, assessment of the sensitivity and reliability of non-invasive methods of various phenolic compounds, also analyzed by HPLC in chicory plants (Cichorium intybus L.) exposed to various color light pretreatments was done. The hyperspectral records in visible and near infrared (VNIR) spectra were recorded using a handheld spectrometer and relationships between the specific hyperspectral parameters and the contents of tested phenolic compounds in chicory leaves were analyzed. Moreover, the correlations between the hyperspectral parameters and related parameters derived from the multispectral fluorescence records were assessed to compare the sensitivity of both techniques. The results indicated a relatively high correlation of anthocyanin-related parameters (ARI, mARI, mACI indices) with the content of some of tested phenolic compounds (quercetin-3-gluconuride, isorhamnetine-3-gluconuride, etc.), as well as with fluorescence ANTH index. Similar trends were observed in flavonoid parameter based on the near infra-red spectral bands (700, 760 nm), which expressed a high correlation with chlorogenic acid. On the other hand, the most frequently used flavonoid (FLAVI) indices based on UV-to-blue band reflectance showed very weak correlations with phenolic compounds, as well as with fluorescence FLAV index. The detailed analysis of the correlation between reflectance and fluorescence flavonoid parameters has shown that the parameters based on spectral reflectance are sensitive to increase of UV-absorbing compounds from low to moderate values, but, unlike the fluorescence parameter, they are not useful to recognize a further increase from middle to high or very high contents. Thus, our results outlined the possibilities, but also the limits of the use of hyperspectral analysis for rapid screening phenolic content, providing a practical evidence towards more efficient production of bioactive compounds for pharmaceutical or nutraceutical use.
机译:Hyperspectral分析代表了来自植物地下部分的形态学和化学信息的诊断技术的强大技术,但是在叶片中酚类酚类药物预筛选方法的实际潜力仍然探索。在该研究中,通过HPLC在暴露于各种颜色浅色预处理的菊苣植物中的HPLC分析了各种酚类化合物的非侵入性方法的敏感性和可靠性的评估。通过手持光谱仪记录可见光和近红外(VNIR)光谱中的高光谱记录,并分析了特定的高光谱参数与菊苣叶中测试酚类化合物的含量之间的关系。此外,评估了从多光谱荧光记录衍生的高光谱参数和相关参数之间的相关性,以比较两种技术的灵敏度。结果表明,与青少年素相关的参数(ARI,MARI,MACI指数)具有一些测试酚类化合物(槲皮素-3-葡聚糖脲,ISORHamnetine-3-葡糖葡萄糖等)的含量相对高的相关参数(ARI,MARI,MACI指数)。以及荧光Anth指数。在基于近红外线 - 红色光谱带(700,760nm)的黄酮类别中观察到类似的趋势,其表达与绿原酸的高相关性。另一方面,基于紫外线带反射的最常使用的类黄酮(Flavi)指数与酚类化合物以及荧光FlaV指数显示出非常弱的相关性。反射率和荧光黄酮参数之间的相关性的详细分析表明,基于光谱反射率的参数对来自低至中等值的UV吸收化合物的增加敏感,但是,与荧光参数不同,它们无法识别a从中部到高或非常高的内容进一步增加。因此,我们的结果概述了使用过光谱分析来快速筛选酚类含量的可能性,提供了一种实际证据,以更有效地生产用于药物或营养制备的生物活性化合物。

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