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首页> 外文期刊>Spectrochimica Acta, Part B. Atomic Spectroscopy >MicroX-ray absorption near edge structure tomography reveals cell-specific changes of Zn ligands in leaves of turnip yellow mosaic virus infected plants
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MicroX-ray absorption near edge structure tomography reveals cell-specific changes of Zn ligands in leaves of turnip yellow mosaic virus infected plants

机译:边缘结构断层扫描附近的Microx射线吸收显示萝卜黄色马赛克病毒感染植物叶片中Zn配体的细胞特异性变化

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As many metals are essential for plants, excess or deficiency of them or alteration of their uptake, translocation, sequestration or physiological use can have severe consequences for plant growth and fitness. Therefore, investigating the distribution and speciation of metals in tissues is essential to understand plant physiology. We present a method based on non-destructive Synchrotron X-ray microtomography combined with microspectroscopy for studying metal distribution and speciation in plant tissues. By using the Maia detector system and the high flux of the undulator beam at the P06 beamline of the PETRA III synchrotron (at DESY), it was possible to record micro X-ray Absorption Near Edge Structure (mu XANES) for every voxel of a tomogram. The metal co-ordination in regions of interest within the tissue samples could be determined by comparing the XANES with spectra of relevant reference compounds. Metal distribution and coordination were measured in shock frozen hydrated plant leaves in a cryostream, avoiding sample preparation artefacts like liquid cell content redistribution that occurs with other preparation methods, unequal distribution of stains in staining assays, sample degradation by beam damage and thawing, etc. A spatial resolution of 5 mu m was selected, which is sufficient to resolve all leaf tissues (epidermis, palisade mesophyll, spongy mesophyll, veins), larger cells and biomineralization hotspots.
机译:由于许多金属对于植物,它们的过度或缺乏或改变它们的吸收,易位,螯合或生理用途,可能对植物生长和健身产生严重后果。因此,研究组织中金属的分布和形态对于了解植物生理学是必不可少的。我们介绍了一种基于非破坏性同步调节X射线显微图的方法,所述方法结合微型光谱学,用于研究植物组织的金属分布和物种。通过使用MAIA检测器系统和PETRA III同步(在贫斯特)的P06梁线上的波束线的高通量,可以在边缘结构(MU XANES)附近的每一个体素附近的微X射线吸收断层照片。可以通过将Xanes与相关参考化合物的光谱进行比较来确定组织样品内的感兴趣区域中的金属协调。在休克冷冻水合植物中测量金属分布和协调在冷冻液中,避免样品制备液体细胞含量再分布,如其他制备方法,染色测定中污渍的不等分布,通过梁损伤和解冻的样品降解等。选择了5μm的空间分辨率,这足以解决所有叶组织(表皮,拨肉豆蔻培养蛋白花,海绵状培养基,静脉),较大的细胞和生物矿化热点。

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