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Single-Cell Metabolite Profiling of Stalk and Glandular Cells of Intact Trichomes with Internal Electrode Capillary Pressure Probe Electrospray Ionization Mass Spectrometry

机译:内电极毛细管压力探针电喷雾电离质谱法测定完整毛滴虫茎和腺细胞的单细胞代谢谱

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In this report, we developed the pressure probe electrospray ionization-mass spectrometry with internal electrode capillary (IEC-PPESI-MS) which enables high spatial-resolution cell sampling, precise postsampling manipulation, and high detection sensitivity. Using this technique, a comparative in situ single-cell metabolite profiling of stalk and glandular cells, the two adjacent cell types comprising a trichome unit in tomato plants (Solanum lycopersicum L.), were performed to clarify the extent of Metabolic differentiation between two cell types as well as among different types of trichomes. Owing to high. sensitivity of the system, less than a picoliter cell sap from a single stalk cell sufficiently yielded a number of peaks of amino acids, organic acids, carbohydrates, and flavonoids. The minimal cell sap removal from a stalk cell without severe disturbance of trichome structure enabled sequential analysis of adjacent glandular cell on the same trichome, which showed the presence of striking differences in metabolite compositions between two adjacent cell types. Comparison among different types of trichome also revealed significant variations in metabolite profiles, particularly in flavonoids and acyl sugars compositions. Some metabolites were found only in specific cell types or particular trichome types. Although extensive metabolomics analysis of glandular cells of tomato trichomes has been previously documented, this is the first report describing cell-to-cell variations in metabolite compositions of stalk and glandular cells as well as in different trichome types. Further application of this technique may provide new insights into distinct metabolism in plant cells displaying variations in shape, size, function and physicochemical properties.
机译:在本报告中,我们开发了带有内部电极毛细管(IEC-PPESI-MS)的压力探针电喷雾电离质谱技术,该技术可实现高空间分辨率的细胞采样,精确的后采样操作和高检测灵敏度。使用此技术,对番茄和植物(Solanum lycopersicum L.)中的两个相邻细胞类型(包括毛状体)进行了茎和腺细胞的原位单细胞代谢产物比较分析,以阐明两个细胞之间的代谢分化程度类型以及毛状体的不同类型。由于高。在系统的灵敏度方面,少于单个茎细胞的皮升细胞液就足以产生许多氨基酸,有机酸,碳水化合物和类黄酮的峰。在不严重破坏毛状体结构的情况下,从茎细胞中去除最小的细胞液汁能够对同一毛状体上相邻腺细胞进行顺序分析,这表明两种相邻细胞类型之间代谢产物组成存在显着差异。在不同类型的毛状体之间的比较还显示出代谢物谱的显着变化,特别是在类黄酮和酰基糖组成中。仅在特定的细胞类型或特定的毛状体类型中发现了一些代谢物。尽管以前已经对番茄毛状体的腺细胞进行了广泛的代谢组学分析,但这是第一个描述茎和腺细胞以及不同毛状体代谢产物中细胞间变化的报道。这项技术的进一步应用可以为植物细胞中不同的代谢提供新的见解,这些新陈代谢显示出形状,大小,功能和理化特性的变化。

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