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High-Resolution Whole-Mount Imaging of Three-Dimensional Tissue Organization and Gene Expression Enables the Study of Phloem Development and Structure in Arabidopsis

机译:三维组织结构和基因表达的高分辨率全安装成像使拟南芥中韧皮部发育和结构的研究成为可能

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Currently, examination of the cellular structure of plant organs and the gene expression therein largely relies on the production of tissue sections. Here, we present a staining technique that can be used to image entire plant organs using confocal laser scanning microscopy. This technique produces high-resolution images that allow three-dimensional reconstruction of the cellular organization of plant organs. Importantly, three-dimensional domains of gene expression can be analyzed with single-cell precision. We used this technique for a detailed examination of phloem cells in the wild type and mutants. We were also able to recognize phloem sieve elements and their differentiation state in any tissue type and visualize the structure of sieve plates. We show that in the altered phloem development mutant, a hybrid cell type with phloem and xylem characteristics develops from initially normally differentiated protophloem cells. The simplicity of sieve element data collection allows for the statistical analysis of structural parameters of sieve plates, essential for the calculation of phloem conductivity. Taken together, this technique significantly improves the speed and accuracy of the investigation of plant growth and development.
机译:目前,检查植物器官的细胞结构及其中的基因表达在很大程度上取决于组织切片的产生。在这里,我们提出了一种染色技术,可以使用共聚焦激光扫描显微镜对整个植物器官成像。该技术产生高分辨率图像,该图像可以对植物器官的细胞组织进行三维重建。重要的是,可以单细胞精度分析基因表达的三维域。我们使用该技术对野生型和突变体中的韧皮部细胞进行了详细检查。我们还能够识别韧皮部筛子元素及其在任何组织类型中的分化状态,并可视化筛子板的结构。我们显示,在改变的韧皮部发育突变体中,具有韧皮部和木质部特征的杂种细胞类型从最初正常分化的原生皮细胞发展。筛元素数据收集的简单性允许对筛板的结构参数进行统计分析,这对于韧皮部电导率的计算至关重要。综上所述,该技术显着提高了植物生长发育研究的速度和准确性。

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