Agriculture and Agri-Food Canada, Atlantic Food and Horticulture Research Centre, Kentville, Nova Scotia, Canada B4N 1J5.
J Microsc. 2010 Sep 1;239(3):249-58. doi: 10.1111/j.1365-2818.2010.03373.x.
Preserving the structural arrangement of the components of a bacterial infection process within a plant for microscopy study is a technical challenge because of the different requirements of each component for optimal preservation and visualization. We used low temperature scanning electron microscopy (cryo-SEM), anhydrous fixation at ambient temperature and freeze-substitution for transmission electron microscopy to examine fractured and sectioned strawberry leaves infected with Xanthomonas fragariae. Cryo-SEM images of fractured samples showed the bacterial colonization of mesophyll air spaces in the leaf, limited by the vascular bundles and the orientation and packing of bacteria in extracellular polysaccharide. Transmission electron microscopy of samples fixed using osmium tetroxide dissolved in FC-72 solvent at ambient temperature showed that the entire plant/bacteria/extracellular polysaccharide system was preserved in situ, and showed plasmolysis of mesophyll cells and disruption of organelles. In freeze-substitution samples, osmium tetroxide in FC-72 solvent gave superior preservation of the extracellular polysaccharide as compared to a conventional cocktail. In addition, strands believed to be xanthan were preferentially contrasted to show their density and orientation around the bacterial cells. We conclude that anhydrous fixation using osmium tetroxide in FC-72 at ambient temperature gave the best preservation of the entire system, and freeze-substitution using this same fixative enhanced the visualization of strands in the biofilm.
在植物中为显微镜研究保留细菌感染过程中各组成部分的结构排列是一项技术挑战,因为每个组成部分都有其最佳保存和可视化的要求。我们使用低温扫描电子显微镜(cryo-SEM)、环境温度下的无水固定和用于透射电子显微镜的冷冻置换来检查感染了草莓黄单胞菌的草莓叶片的断裂和切片。断裂样品的 cryo-SEM 图像显示了细菌在叶片中叶肉气腔中的定殖,受维管束以及细菌在细胞外多糖中的取向和排列限制。使用在环境温度下溶解于 FC-72 溶剂中的四氧化锇固定的样品的透射电子显微镜显示,整个植物/细菌/细胞外多糖系统原位保存,并显示出质壁分离和细胞器破裂。在冷冻置换样品中,与传统混合物相比,FC-72 溶剂中的四氧化锇在保存细胞外多糖方面表现出更好的效果。此外,被认为是黄原胶的链被优先对比,以显示它们在细菌细胞周围的密度和取向。我们得出结论,环境温度下使用 FC-72 中的四氧化锇进行无水固定可以实现整个系统的最佳保存,并且使用相同固定剂进行冷冻置换可以增强生物膜中链的可视化效果。