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使用基质辅助激光解吸/电离质谱成像(MALDI-MSI)技术可视化连作蒙古黄芪中代谢物的空间分布及变化。

Visualizing the spatial distribution and alteration of metabolites in continuously cropped Bge using MALDI-MSI.

作者信息

Sun Chenglong, Cui Li, Zhou Bingqian, Wang Xiao, Guo Lanping, Liu Wei

机构信息

School of Pharmaceutical Sciences, Qilu University of Technology (Shandong Academy of Sciences), Jinan, 250014, China.

Key Laboratory for Applied Technology of Sophisticated Analytical Instruments of Shandong Province, Shandong Analysis and Test Center, Qilu University of Technology (Shandong Academy of Sciences), Jinan, 250014, China.

出版信息

J Pharm Anal. 2022 Oct;12(5):719-724. doi: 10.1016/j.jpha.2021.09.011. Epub 2021 Sep 20.

Abstract

Bge (SMB) has long been used in traditional Chinese medicine to treat cardiovascular and cerebrovascular diseases. Growing clinical usage has led to a huge demand for artificial planting of SMB. Thus, continuous cropping of SMB is an important challenge that needs to be addressed. Continuous cropping can alter the metabolic profile of plants, resulting in poor growth and low yield. In this study, we tried to image the spatial location and variation of endogenous metabolites in continuously cropped SMB using matrix-assisted laser desorption/ionization mass spectrometry imaging (MALDI-MSI). Spatially resolved expressions of tanshinones, salvianolic acids, polyamines, phenolic acids, amino acids, and oligosaccharides in normal and continuously cropped SMB roots were compared. The expressions of dihydrotanshinone I, tanshinone II A, dehydromiltirone, miltirone, dehydrotanshinone IIA, spermine, salvianolic acid B/E, tetrasaccharide, and pentasaccharide in continuously cropped SMB roots were much lower than those in normal roots. There was little difference in the expressions of caffeic acid and salvianolic acid A in normal and continuously cropped SMB roots. Ferulic acid was more widely distributed in xylem of normal SMB but strongly expressed in xylem, phloem, and cambium of continuously cropped SMB. The spatially resolved metabolite information enhances our understanding of the metabolic signature of continuously cropped SMB and also provides insights into the metabolic effects of continuous cropping in other plants.

摘要

白果紫堇(SMB)长期以来一直被用于传统中药治疗心脑血管疾病。随着临床应用的不断增加,对白果紫堇人工种植的需求巨大。因此,白果紫堇的连作是一个需要解决的重要挑战。连作会改变植物的代谢谱,导致生长不良和产量低下。在本研究中,我们尝试使用基质辅助激光解吸/电离质谱成像(MALDI-MSI)对白果紫堇连作植株内源性代谢物的空间位置和变化进行成像。比较了正常和连作白果紫堇根中丹参酮、丹酚酸、多胺、酚酸、氨基酸和寡糖的空间分辨表达。连作白果紫堇根中二氢丹参酮I、丹参酮II A、去氢紫堇醇灵碱、紫堇醇灵碱、去氢丹参酮IIA、精胺、丹酚酸B/E、四糖和五糖的表达远低于正常根。正常和连作白果紫堇根中咖啡酸和丹酚酸A的表达差异不大。阿魏酸在正常白果紫堇的木质部中分布较广,但在连作白果紫堇的木质部、韧皮部和形成层中强烈表达。空间分辨的代谢物信息增强了我们对白果紫堇连作代谢特征的理解,也为其他植物连作的代谢效应提供了见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2483/9615513/9831b83d293c/ga1.jpg

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