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Quantitative imaging of oil storage in developing crop seeds.

机译:作物种子储油中储油量的定量成像。

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摘要

In this article, we present a tool which allows the rapid and non-invasive detection and quantitative visualization of lipid in living seeds at a variety of stages using frequency-selected magnetic resonance imaging. The method provides quantitative lipid maps with a resolution close to the cellular level (in-plane 31 microm x 31 microm). The reliability of the method was demonstrated using two contrasting subjects: the barley grain (monocot, 2% oil, highly compartmentalized) and the soybean grain (dicot, 20% oil, economically important oilseed). Steep gradients in local oil storage were defined at the organ- and tissue-specific scales. These gradients were closely coordinated with tissue differentiation and seed maturation, as revealed by electron microscopy and biochemical and gene expression analysis. The method can be used to elucidate similar oil accumulation processes in different tissues/organs, as well as to follow the fate of storage lipids during deposition and subsequent mobilization.
机译:在本文中,我们提出了一种工具,该工具可以使用频率选择的磁共振成像在各种阶段中的生活种子中的快速和非侵入性检测和定量可视化。该方法提供具有靠近蜂窝水平的分辨率的定量脂质贴图(面内31微米×31 microm)。使用两个对比度对象证明了该方法的可靠性:大麦谷物(单子叶,2%油,高度划分)和大豆(二萝萝卜,20%油,经济上重要的油籽)。在特定于器官和组织特定的尺度上定义了本地储油中的陡梯度。这些梯度与组织分化和种子成熟密切协调,如电子显微镜和生物化学和基因表达分析所揭示的那样。该方法可用于阐明不同组织/器官中的类似的储油过程,以及在沉积期间遵循储存脂质的命运和随后的动员。

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