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Chemical imaging of trichome specialized metabolites using contact printing and laser desorption/ionization mass spectrometry

机译:接触印刷和激光解吸/电离质谱法对毛状体专用代谢产物进行化学成像

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摘要

Cell transfer by contact printing coupled with carbon-substrate-assisted laser desorption/ionization was used to directly profile and image secondary metabolites in trichomes on leaves of the wild tomato Solanum habrochaites. Major specialized metabolites, including acyl sugars, alkaloids, flavonoids, and terpenoid acids, were successfully detected in positive ion mode or negative ion mode, and in some cases in both modes. This simple solvent-free and matrix-free sample preparation for mass spectrometry imaging avoids tedious sample preparation steps, and high-spatial-resolution images were obtained. Metabolite profiles were generated for individual glandular trichomes from a single Solanum habrochaites leaf at a spatial resolution of around 50 μm. Relative quantitative data from imaging experiments were validated by independent liquid chromatography–mass spectrometry analysis of subsamples from fresh plantmaterial. The spatially resolved metabolite profiles of individual glands provided new information about the complexity of biosynthesis of specialized metabolites at the cellular-resolution scale. In addition, this technique offers a scheme capable of highthroughput profiling of metabolites in trichomes and irregularly shaped tissues and spatially discontinuous cells of a given cell type.
机译:通过接触印刷与碳底物辅助的激光解吸/电离结合的细胞转移被用于直接描绘和成像野番茄茄形茄属叶上的毛状体中次生代谢产物。主要的特殊代谢物,包括酰基糖,生物碱,类黄酮和萜类酸,已在正离子模式或负离子模式中成功检测出,在某些情况下在两种模式下均已成功检测出。这种简单的无溶剂和无基质的质谱成像样品制备方法避免了繁琐的样品制备步骤,并获得了高空间分辨率的图像。从单个茄茄叶中的单个腺毛产生代谢物谱,其空间分辨率约为50μm。成像实验的相对定量数据通过独立的液相色谱-质谱法对新鲜植物材料中的子样品进行了验证。单个腺体的空间分辨代谢产物概况提供了有关细胞分辨率尺度上特殊代谢物生物合成复杂性的新信息。另外,该技术提供了能够对毛状体和不规则形状的组织以及给定细胞类型的空间不连续细胞中的代谢物进行高通量分析的方案。

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