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Distinguishing vaccinium species by chemical fingerprinting based on NMR spectra, validated with spectra collected in different laboratories

机译:通过基于NMR光谱的化学指纹识别牛痘菌种,并已在不同实验室收集的光谱进行了验证

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摘要

A method was developed to distinguish Vaccinium species based on leaf extracts using nuclear magnetic resonance spectroscopy. Reference spectra were measured on leaf extracts from several species, including lowbush blueberry (Vaccinium angustifolium), oval leaf huckleberry (Vaccinium ovalifolium), and cranberry (Vaccinium macrocarpon). Using principal component analysis, these leaf extracts were resolved in the scores plot. Analysis of variance statistical tests demonstrated that the three groups differ significantly on PC2, establishing that the three species can be distinguished by nuclear magnetic resonance. Soft independent modeling of class analogies models for each species also showed discrimination between species. To demonstrate the robustness of nuclear magnetic resonance spectroscopy for botanical identification, spectra of a sample of lowbush blueberry leaf extract were measured at five different sites, with different field strengths (600 versus 700MHz), different probe types (cryogenic versus room temperature probes), different sample diameters (1.7mm versus 5mm), and different consoles (Avance I versus Avance III). Each laboratory independently demonstrated the linearity of their NMR measurements by acquiring a standard curve for chlorogenic acid (R2=0.9782 to 0.9998). Spectra acquired on different spectrometers at different sites classifed into the expected group for the Vaccinium spp., confirming the utility of the method to distinguish Vaccinium species and demonstrating nuclear magnetic resonance fingerprinting for material validation of a natural health product.
机译:开发了一种使用核磁共振波谱根据叶提取物区分牛痘菌种的方法。测量了几种树种的叶提取物的参考光谱,包括低灌木蓝莓(Vaccinium angustifolium),椭圆形的哈克贝利(Vaccinium卵形叶子)和蔓越莓(Vaccinium macrocarpon)。使用主成分分析,将这些叶提取物解析为分数图。方差统计检验的分析表明,这三类物质在PC2上有显着差异,从而证明可以通过核磁共振来区分这三种物质。每个物种的类比模型的软独立建模也显示了物种之间的区别。为了证明核磁共振波谱技术在植物学鉴定中的稳健性,在五个不同的位置测量了低灌木蓝莓叶提取物的光谱,具有不同的场强(600 vs 700MHz),不同的探头类型(低温探头与室温探头),不同的样品直径(1.7毫米对5毫米)和不同的控制台(Avance I与Avance III)。每个实验室通过获取绿原酸的标准曲线来独立证明其NMR测量的线性(R2 = 0.9782至0.9998)。在不同地点的不同光谱仪上获得的光谱被归类为Vaccinium spp。的预期组,这证实了该方法可用于区分Vaccinium物种并证明了核磁共振指纹图谱可用于天然保健产品的材料验证。

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