State Key Laboratory of Natural Medicines and School of Traditional Chinese Pharmacy, China Pharmaceutical University, Nanjing, China.
New Phytol. 2021 Jul;231(2):892-902. doi: 10.1111/nph.17393. Epub 2021 May 13.
Paeonia suffruticosa (PS) and Paeonia lactiflora (PL) belong to the only genus in the family Paeoniaceae. Comparative analysis of the spatial metabolomes of PS and PL has rarely been performed. In this work, combined with multiple matrixes and dual-polarity detection, high mass resolution matrix-assisted laser desorption/ionization MS imaging (MALDI MSI) and MALDI tandem MSI were performed on the root sections of the two Paeonia species. The spatial distributions of many metabolites including monoterpene and paeonol glycosides, tannins, flavonoids, saccharides and lipids were systematically characterized. The ambiguous tissue distribution of the two isomers paeoniflorin and albiflorin were distinguished by tandem MSI using lithium salt doped 2,5-dihydroxybenzoate matrix. In addition, the major intermediates involved in the biosynthetic pathway of gallotannins were successfully localized and visualized in the root sections. High-mass resolution MALDI full-scan MSI provides comprehensive and accurate spatial distribution of metabolites. The analytical power of the technique was further tested in the tandem MSI of two isomers. The ion images of individual metabolites provide chemical and microscopic characteristics beyond morphological identification, and the detailed spatiochemical information could not only improve our understanding of the biosynthetic pathway of hydrolyzable tannins, but also ensure the safety and effectiveness of their medicinal use.
牡丹(Paeonia suffruticosa,PS)和芍药(Paeonia lactiflora,PL)属于毛茛科芍药属植物,仅有这一个属。对牡丹和芍药的空间代谢组进行比较分析的研究较少。本工作采用多种基质结合双极性检测,对两种芍药属植物的根段进行了高分辨 MALDI 基质辅助激光解吸/电离 MS 成像(MALDI MSI)和 MALDI 串联 MSI 分析。系统表征了包括单萜和丹皮酚糖苷、鞣质、类黄酮、糖和脂类在内的许多代谢物的空间分布。利用锂盐掺杂 2,5-二羟基苯甲酸基质进行串联 MSI 区分了两种异构体芍药苷和白芍苷的模糊组织分布。此外,还成功地对根段中水解鞣质生物合成途径中的主要中间产物进行了定位和可视化。高分辨 MALDI 全扫描 MSI 提供了代谢物的全面和准确的空间分布。该技术的分析能力在两种异构体的串联 MSI 中得到了进一步验证。单个代谢物的离子图像提供了超越形态识别的化学和微观特征,详细的空间化学信息不仅可以提高我们对水解鞣质生物合成途径的理解,还可以确保其药用的安全性和有效性。