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In vivo quantitative imaging of photoassimilate transport dynamics and allocation in large plants using a commercial positron emission tomography (PET) scanner

机译:使用商业正电子发射断层扫描(PET)扫描仪对大型植物中光同化质运输动力学和分配进行体内定量成像

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摘要

BackgroundAlthough important aspects of whole-plant carbon allocation in crop plants (e.g., to grain) occur late in development when the plants are large, techniques to study carbon transport and allocation processes have not been adapted for large plants. Positron emission tomography (PET), developed for dynamic imaging in medicine, has been applied in plant studies to measure the transport and allocation patterns of carbohydrates, nutrients, and phytohormones labeled with positron-emitting radioisotopes. However, the cost of PET and its limitation to smaller plants has restricted its use in plant biology. Here we describe the adaptation and optimization of a commercial clinical PET scanner to measure transport dynamics and allocation patterns of 11C-photoassimilates in large crops.
机译:背景技术虽然作物大时作物植物中整株碳分配的重要方面(例如,分配给谷物)发生在发育后期,但研究碳迁移和分配过程的技术尚未适用于大型植物。用于医学动态成像的正电子发射断层扫描(PET)已用于植物研究中,以测量被正电子发射的放射性同位素标记的碳水化合物,营养素和植物激素的转运和分配模式。但是,PET的成本及其对较小植物的局限性限制了其在植物生物学中的应用。在这里,我们描述了商用临床PET扫描仪的适应性和优化,以测量大作物中 11 C-光同化物的运输动力学和分配模式。

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