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首页> 外文期刊>Plant physiology >Spatially Resolved Plant Metabolomics: Some Potentials and Limitations of Laser-Ablation Electrospray Ionization Mass Spectrometry Metabolite Imaging
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Spatially Resolved Plant Metabolomics: Some Potentials and Limitations of Laser-Ablation Electrospray Ionization Mass Spectrometry Metabolite Imaging

机译:空间分辨的植物代谢组学:激光消融电喷雾电离质谱代谢物成像的一些潜力和局限性

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Laser-ablation electrospray ionization (LAESI)-mass spectrometry imaging has been applied to contrasting plant organs to assess its potential as a procedure for performing in vivo metabolomics in plants. In a proof-of-concept experiment, purple/white segmented Phalaenopsis spp. petals were first analyzed using standard liquid chromatography-mass spectrometry analyses of separate extracts made specifically from the purple and white regions. Discriminatory compounds were defined and putatively annotated. LAESI analyses were then performed on living tissues, and these metabolites were then relocalized within the LAESIgenerated data sets of similar tissues. Maps were made to illustrate their locations across the petals. Results revealed that, as expected, anthocyanins always mapped to the purple regions. Certain other (nonvisible) polyphenols were observed to colocalize with the anthocyanins, whereas others were found specifically within the white tissues. In a contrasting example, control and Cladosporium fulvum-infected tomato (Solanum lycopersicum) leaves were subjected to the same procedures, and it could be observed that the alkaloid tomatine has clear heterogeneous distribution across the tomato leaf lamina. Furthermore, LAESI analyses revealed perturbations in alkaloid content following pathogen infection. These results show the clear potential of LAESI-based imaging approaches as a convenient and rapid way to perform metabolomics analyses on living tissues. However, a range of limitations and factors have also been identified that must be taken into consideration when interpreting LAESIderived data. Such aspects deserve further evaluation before this approach can be applied in a routine manner.
机译:激光烧蚀电喷雾电离(LAESI)质谱成像已应用于对比植物器官,以评估其潜力,作为在植物体内进行体内代谢组学的一种方法。在概念验证实验中,紫色/白色分割的蝴蝶兰属植物。首先使用标准液相色谱-质谱分析法对花瓣进行分析,该分离物是专门从紫色和白色区域制成的单独提取物。定义了区分性化合物并进行了注释。然后对活组织进行LAESI分析,然后将这些代谢物重新定位在LAESI生成的相似组织数据集中。绘制地图以说明它们在花瓣上的位置。结果表明,正如预期的那样,花色苷始终位于紫色区域。观察到某些其他(不可见的)多酚与花色苷共定位,而其他一些则特别存在于白色组织中。在一个相反的例子中,对照和经番茄叶黄腐病感染的番茄(Solanum lycopersicum)叶片均进行了相同的操作,并且可以观察到生物碱番茄碱在番茄叶片上具有明显的异质分布。此外,LAESI分析显示病原体感染后生物碱含量受到干扰。这些结果表明,基于LAESI的成像方法具有很明显的潜力,可作为对活体组织进行代谢组学分析的便捷方法。但是,在识别LAES派生数据时,还必须考虑到一系列限制和因素。在可以以常规方式应用此方法之前,应进一步评估这些方面。

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