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Subcellular-level resolution MALDI-MS imaging of maize leaf metabolites by MALDI-linear ion trap-Orbitrap mass spectrometer

机译:MALDI-线性离子阱-Orbitrap质谱仪对玉米叶片代谢产物的亚细胞水​​平分辨率MALDI-MS成像

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摘要

A significant limiting factor in achieving high spatial resolution for matrix-assisted laser desorption ionization-mass spectrometry (MALDI-MS) imaging is the size of the laser spot at the sample surface. Here, we present modifications to the beam-delivery optics of a commercial MALDI-linear ion trap-Orbitrap instrument, incorporating an external Nd:YAG laser, beam-shaping optics, and an aspheric focusing lens, to reduce the minimum laser spot size from ~50 μm for the commercial configuration down to ~9 μm for the modified configuration. This improved system was applied for MALDI-MS imaging of cross sections of juvenile maize leaves at 5-μm spatial resolution using an oversampling method. A variety of different metabolites including amino acids, glycerolipids, and defense-related compounds were imaged at a spatial resolution well below the size of a single cell. Such images provide unprecedented insights into the metabolism associated with the different tissue types of the maize leaf, which is known to asymmetrically distribute the reactions of C4 photosynthesis among the mesophyll and bundle sheath cell types. The metabolite ion images correlate with the optical images that reveal the structures of the different tissues, and previously known and newly revealed asymmetric metabolic features are observed.
机译:实现基质辅助激光解吸电离质谱(MALDI-MS)成像的高空间分辨率的一个重要限制因素是样品表面激光点的大小。在这里,我们介绍了对商用MALDI线性离子阱Orbitrap仪器的光束传输光学器件的修改,其中集成了外部Nd:YAG激光器,光束成形光学器件和非球面聚焦透镜,以减小商业配置约为50μm,修改配置约为9μm。使用过采样方法,将该改进的系统应用于空间分辨率为5μm的玉米幼叶横截面的MALDI-MS成像。以远低于单个细胞大小的空间分辨率对包括氨基酸,甘油脂和防御相关化合物在内的多种不同代谢产物进行了成像。这样的图像为与玉米叶的不同组织类型相关的代谢提供了空前的见识,已知该代谢在叶肉和束鞘细胞类型之间不对称地分布C4光合作用的反应。代谢物离子图像与揭示不同组织结构的光学图像相关,并且观察到先前已知和新发现的不对称代谢特征。

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