Drug Research Program and Division of Pharmaceutical Chemistry and Technology, Faculty of Pharmacy, University of Helsinki, P.O. Box 56, Helsinki 00014, Finland.
Viikki Metabolomics Unit, Faculty of Biological and Environmental Sciences, University of Helsinki, P.O. Box 56, Helsinki 00014, Finland.
J Am Soc Mass Spectrom. 2021 Dec 1;32(12):2895-2903. doi: 10.1021/jasms.1c00295. Epub 2021 Nov 5.
In this study, we show that infrared laser ablation atmospheric pressure photoionization mass spectrometry (LAAPPI-MS) imaging with 70 μm lateral resolution allows for the analysis of () leaf substructures ranging from single-cell trichomes and the interveinal leaf lamina to primary, secondary, and tertiary veins. The method also showed its potential for depth profiling analysis for the first time by mapping analytes at the different depths of the leaf and spatially resolving the topmost trichomes and cuticular wax layer from the underlying tissues. Negative ion LAAPPI-MS detected many different flavonol glycosides, fatty acids, fatty acid esters, galactolipids, and glycosphingolipids, whose distributions varied significantly between the different substructures of leaves. The results show that LAAPPI-MS provides a highly promising new tool to study the role of metabolites in plants.
在这项研究中,我们表明,具有 70μm 横向分辨率的红外激光烧蚀常压光电离质谱(LAAPPI-MS)成像可分析()叶的亚结构,范围从单细胞毛状体和叶脉间的叶层到初级、次级和三级叶脉。该方法还首次显示了其进行深度剖面分析的潜力,通过在叶片的不同深度绘制分析物并从下面的组织空间分辨出最上面的毛状体和角质层蜡层。负离子 LAAPPI-MS 检测到许多不同的类黄酮糖苷、脂肪酸、脂肪酸酯、半乳糖脂和糖脂,它们在()叶片的不同亚结构之间的分布差异很大。结果表明,LAAPPI-MS 为研究代谢物在植物中的作用提供了一种极有前途的新工具。