Leibniz Institute of Plant Genetics and Crop Plant Research (IPK), Gatersleben, Germany.
Proteomics. 2011 May;11(9):1840-50. doi: 10.1002/pmic.201000756. Epub 2011 Apr 4.
Recent advances in instrumentation and sample preparation have facilitated the mass spectrometric (MS) imaging of a large variety of biological molecules from small metabolites to large proteins. The technique can be applied at both the tissue and the single-cell level, and provides information regarding the spatial distribution of specific molecules. Nevertheless, the use of MS imaging in plant science remains far from routine, and there is still a need to adapt protocols to suit specific tissues. We present an overview of MALDI-imaging MS (MSI) technology and its use for the analysis of plant tissue. Recent methodological developments have been summarized, and the major challenges involved in using MALDI-MSI, including sample preparation, the analysis of metabolites and peptides, and strategies for data evaluation are all discussed. Some attention is given to the identification of differentially distributed compounds. To date, the use of MALDI-MSI in plant research has been limited. Examples include leaf surface metabolite maps, the characterization of soluble metabolite translocation in planta, and the profiling of protein/metabolite patterns in cereal grain cross-sections. Improvements to both sample preparation strategies and analytical platforms (aimed at both spectrum acquisition and post-acquisition analysis) will enhance the relevance of MALDI-MSI technology in plant research.
近年来,仪器设备和样品制备方面的进展促进了各种生物分子(从小代谢物到大蛋白质)的质谱成像(MSI)分析。该技术可应用于组织和单细胞水平,提供有关特定分子空间分布的信息。然而,MSI 在植物科学中的应用仍远非常规,仍需要根据特定组织调整方案。我们介绍了 MALDI-成像 MS(MSI)技术及其在植物组织分析中的应用。总结了最近的方法学发展,并讨论了使用 MALDI-MSI 涉及的主要挑战,包括样品制备、代谢物和肽分析以及数据评估策略。还关注了差异分布化合物的鉴定。迄今为止,MALDI-MSI 在植物研究中的应用受到限制。例如,叶表面代谢物图谱、植物体内可溶性代谢物转运的表征以及谷物横截面上蛋白质/代谢物图谱的分析。改进样品制备策略和分析平台(旨在提高光谱采集和采集后分析)将提高 MALDI-MSI 技术在植物研究中的相关性。