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A Method for Preparing Difficult Plant Tissues for Light and Electron Microscopy

机译:一种用于光和电子显微镜的困难植物组织的制备方法

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摘要

Although the advent of microwave technologies has both improved and accelerated tissue processing for microscopy, there still remain many limitations in conventional chemical fixation, dehydration, embedding, and sectioning, particularly with regard to plant materials. The Proteaceae, a family of plants widely distributed in the Southern Hemisphere and well adapted to harsh climates and nutrient-poor soils, is a perfect example; the complexity of Proteaceae leaves means that almost no ultrastructural data are available as these are notoriously difficult to both infiltrate and section. Here, a step-by-step protocol is described that allows for the successful preparation of Banksia prionotes (Australian Proteaceae) leaves for both light and transmission electron microscopy. The method, which applies a novel combination of vibratome sectioning, microwave processing and vacuum steps, and the utilization of an ultra low viscosity resin, results in highly reproducible, well-preserved, sectionable material from which very high-quality light and electron micrographs can be obtained. With this, cellular ultrastructure from the level of a leaf through to organelle substructure can be studied. This approach will be widely applicable, both within and outside of the plant sciences, and can be readily adapted to meet specific sample requirements and imaging needs.
机译:尽管微波技术的出现既改善了显微镜的组织处理又加快了显微镜的组织处理,但是在常规化学固定,脱水,包埋和切片方面仍然存在许多限制,特别是在植物材料方面。 Proteaceae是一个很好的例子; Proteaceae是在南半球广泛分布的一种植物,非常适合恶劣的气候和营养不良的土壤。 Proteaceae叶片的复杂性意味着几乎没有超微结构数据,因为众所周知,这些超微结构数据很难渗透和切变。在这里,描述了一个分步操作的方案,该方案允许成功制备山龙眼(澳大利亚Proteaceae)叶,用于光镜和透射电镜。该方法结合了振膜切片,微波处理和真空步骤的新颖组合,并利用超低粘度树脂,可产生高度可复制,保存完好的可分段材料,从中可以得到非常高质量的光和电子显微照片获得。由此,可以研究从叶的水平到细胞器亚结构的细胞超微结构。这种方法将在植物科学内部和外部广泛应用,并且可以很容易地进行调整以满足特定的样品要求和成像需求。

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