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Direct observation of bulk and surface chemical morphologies of Ginkgo biloba leaves by Fourier transform mid- and near-infrared microspectroscopic imaging

机译:通过傅里叶变换中红外和近红外显微成像直接观察银杏叶的体积和表面化学形态

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Fourier transform infrared microspectroscopy is a powerful tool to obtain knowledge about the spatial and/or temporal distributions of the chemical compositions of plants for better understanding of their biological properties. However, the chemical morphologies of plant leaves in the plane of the blade are barely studied, because sections in this plane for mid-infrared transmission measurements are difficult to obtain. Besides, native compositions may be changed by chemical reagents used when plant samples are microtomed. To improve methods for direct infrared microspectroscopic imaging of plant leaves in the plane of the blade, the bulk and surface chemical morphologies of nonmicrotomed Ginkgo biloba leaves were characterized by near-infrared transmission and mid-infrared attenuated total reflection microspectroscopic imaging. A new self-modeling curve resolution procedure was proposed to extract the spectral and concentration information of pure compounds. Primary and secondary metabolites of secretory cavities, veins, and mesophylls of Ginkgo biloba leaf blades were analyzed, and the distributions of cuticle, protein, calcium oxalate, cellulose, and ginkgolic acids on the adaxial surface were determined. By the integration of multiple infrared microspectroscopic imaging and chemometrics methods, it is possible to analyze nonmicrotomed leaves and other plant samples directly to understand their native chemical morphologies in detail.
机译:傅里叶变换红外光谱是一种强大的工具,可获取有关植物化学成分的时空分布的知识,以更好地了解其生物学特性。但是,由于叶片叶片平面中用于中红外透射测量的截面很难获得,因此叶片叶片的化学形态几乎没有得到研究。此外,当对植物样品进行切片时,天然成分可能会因使用的化学试剂而发生变化。为了改进在叶片平面上对植物叶片进行直接红外显微成像的方法,通过近红外透射和中红外衰减全反射显微成像来表征未切片的银杏叶的体积和表面化学形态。提出了一种新的自建模曲线解析程序,以提取纯化合物的光谱和浓度信息。分析了银杏叶片的分泌腔,静脉和叶肉的初级和次级代谢产物,并测定了近轴表面的角质层,蛋白质,草酸钙,纤维素和银杏酸的分布。通过集成多种红外显微成像和化学计量学方法,可以直接分析未切叶的叶子和其他植物样品,以详细了解其天然化学形态。

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