Laboratoire Dynamique de la Compartimentation Cellulaire, CNRS UPR2355/IFR87, Institut des Sciences du Végétal, Centre de Recherche de Gif (FRC3115), 91198, Gif-sur-Yvette Cedex, France.
J Microsc. 2012 Jul;247(1):94-105. doi: 10.1111/j.1365-2818.2012.03626.x.
Optimizing sample processing, reducing the duration of the preparation of specimen, and adjusting procedures to adhere to new health and safety regulations, are the current challenges of plant electron microscopists. To address these issues, plant processing protocols for TEM, combining the use of polyphenolic compounds as substitute for uranyl acetate with microwave technology are being developed. In the present work, we optimized microwave-assisted processing of different types of plant tissue for ultrastuctural and immunocytochemical studies. We also explored Oolong tea extract as alternative for uranyl acetate for the staining of plant samples. We obtained excellent preservation of cell ultrastructure when samples were embedded in epoxy resin, and of cell antigenicity, when embedded in LR-White resin. Furthermore, Oolong tea extract successfully replaced uranyl acetate as a counterstain on ultrathin sections, and for in block staining. These novel protocols reduce the time spent at the bench, and improve safety conditions for the investigator. The preservation of the cell components when following these approaches is of high quality. Altogether, they offer significant simplification of the procedures required for electron microscopy of plant ultrastructure.
优化样本处理、缩短标本制备时间以及调整程序以遵守新的健康和安全法规,是植物电子显微镜专家目前面临的挑战。为了解决这些问题,正在开发用于 TEM 的植物处理方案,该方案将使用多酚化合物作为取代乙酸双氧铀与微波技术结合使用。在本工作中,我们优化了不同类型植物组织的微波辅助处理,以进行超微结构和免疫细胞化学研究。我们还探索了乌龙茶提取物作为植物样品染色的乙酸双氧铀替代物。当样品包埋在环氧树脂中时,我们获得了极好的细胞超微结构保存,当样品包埋在 LR-White 树脂中时,我们获得了极好的细胞抗原性保存。此外,乌龙茶提取物成功地取代了乙酸双氧铀作为超薄切片的衬染剂,并可用于块内染色。这些新方案缩短了实验台上的时间,并提高了研究人员的安全条件。使用这些方法时,细胞成分的保存质量很高。总的来说,它们显著简化了植物超微结构电子显微镜所需的程序。