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Combining intensity correlation analysis and MALDI imaging to study the distribution of flavonols and dihydrochalcones in Golden Delicious apples

机译:结合强度相关分析和MALDI成像研究金冠苹果中黄酮醇和二氢查耳酮的分布

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摘要

Mass spectrometry-based imaging techniques applied to small molecules complement the growing research field of metabolomics and can be used to interpret many important biological processes occurring in plants. In untargeted imaging applications, chemical identification is a critical step since it cannot take advantage of separative techniques applied to neutral molecules (e.g. liquid chromatography). The use of high resolution spectrometers is of great help, but fragmentation experiments are often necessary. In many cases, the information on ion fragmentation is embedded in the data sets, because analytes break up during ionization, but the extraction of this information is not easy considering the complexity of the imaging data files. Here an approach is proposed for applying conventional untargeted MALDI (matrix-assisted laser desorption ionization) profiling and advanced data analysis to perform imaging of metabolites in apple tissues. The pipeline, based on intensity correlation analysis, is used to extract fragmentation information from untargeted, high resolution, wide range mass spectra and to reconstruct compound-specific images which can be used for interpretation purposes. The proposed approach was used to investigate the distribution of glycosylated flavonols and dihydrochalcones in Golden Delicious apples. The results indicate that the method is effective, showing a high potential for ascertaining detailed metabolite localization.
机译:应用于小分子的基于质谱的成像技术补充了代谢组学研究领域的发展,可用于解释植物中发生的许多重要生物学过程。在非目标成像应用中,化学识别是关键的一步,因为它无法利用应用于中性分子的分离技术(例如液相色谱)的优势。使用高分辨率光谱仪有很大帮助,但通常需要进行碎片实验。在许多情况下,由于分析物在电离过程中会分解,因此有关离子碎片的信息会嵌入到数据集中,但是考虑到成像数据文件的复杂性,提取这些信息并不容易。在这里,提出了一种方法,用于应用常规的非靶向MALDI(基质辅助激光解吸电离)配置文件和高级数据分析,以对苹果组织中的代谢物进行成像。基于强度相关性分析的管道用于从无目标的高分辨率宽范围质谱图中提取碎片信息,并重建可用于解释目的的化合物特异性图像。拟议的方法用于调查糖化黄酮醇和二氢查耳酮在金冠苹果中的分布。结果表明该方法是有效的,显示出确定详细代谢物定位的巨大潜力。

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