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High-resolution MALDI mass spectrometry imaging of gallotannins and monoterpene glucosides in the root of Paeonia lactiflora

机译:高分辨率的马尔达菌根和单萜葡萄糖苷的高分辨率MARDI质谱成像在Paeonia lactiflora根系中

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High-resolution atmospheric-pressure scanning microprobe matrix-assisted laser desorption/ionization mass spectrometry imaging (AP-SMALDI MSI) at 10?μm pixel size was performed to unravel the spatio-chemical distribution of major secondary metabolites in the root of Paeonia lactiflora. The spatial distributions of two major classes of bioactive components, gallotannins and monoterpene glucosides, were investigated and visualized at the cellular level in tissue sections of P. lactiflora roots. Accordingly, other primary and secondary metabolites were imaged, including amino acids, carbohydrates, lipids and monoterpenes, indicating the capability of untargeted localization of metabolites by using high-resolution MSI platform. The employed AP-SMALDI MSI system provides significant technological advancement in the visualization of individual molecular species at the cellular level. In contrast to previous histochemical studies of tannins using unspecific staining reagents, individual gallotannin species were accurately localized and unequivocally discriminated from other phenolic components in the root tissues. High-quality ion images were obtained, providing significant clues for understanding the biosynthetic pathway of gallotannins and monoterpene glucosides and possibly helping to decipher the role of tannins in xylem cells differentiation and in the defence mechanisms of plants, as well as to investigate the interrelationship between tannins and lignins.
机译:在10μm像素尺寸下进行高分辨率大气压扫描微升光矩阵辅助激光解吸/电离质谱成像(AP-Smaldi MSI),以解开Paeonia Lactiflora根系中主要次生代谢物的时空分布。在P. Lactiflora Roots组织切片的细胞水平下研究了两种主要类生物活性成分,加仑胰岛和单萜葡糖苷的空间分布。因此,成像其他初级和次级代谢物,包括氨基酸,碳水化合物,脂质和单萜,表明通过使用高分辨率MSI平台来表明代谢物的未明确定位的能力。所用的AP-Smaldi MSI系统提供了在细胞水平下单个分子种类的可视化的显着技术进步。与使用非特异性染色试剂的单宁的先前组织化学研究相比,单个加仑胺物种被精确局限地,从根组织中的其他酚类组分中透明地区别。获得了高质量的离子图像,提供了了解GallotAnnins和单萜苷的生物合成途径,并且可能有助于破译单宁在木质细胞分化和植物防御机制中的作用,以及研究之间的相互关系单宁和木质素。

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