Martinez L B, Wick S M
Department of Plant Biology, University of Minnesota, St. Paul 55108.
J Electron Microsc Tech. 1991 Jul;18(3):305-14. doi: 10.1002/jemt.1060180313.
Pollen grains of Lolium perenne (rye grass) were prepared for transmission electron microscopy by rapid freezing in liquid propane, substitution in acetone, methanol or diethyl ether, and embedment in the acrylic resin London Resin gold. These were compared to pollen chemically fixed (CF) in aldehyde/osmium tetroxide and embedded in the epoxy resin Quetol 651. Ultrastructural preservation was superior in freeze-substituted (FS) pollen, particularly with the use of acetone or methanol. Optimally preserved FS pollen displayed a homogeneous aspect of the cytoplasm and nucleoplasm, and smooth, uninterrupted contour or organelles. A striking difference was also seen in the preservation of inclusions in the intine. Varied forms and sizes of intine inclusions were evident in FS pollen but these were not discernible in the CF image. The FS scheme studied here presents enormous potential for both ultrastructural and immunolabelling studies in rye grass pollen. Problems discussed include artifacts associated with each of the substitution solvents used, and a gradient of freezing damage observed within the pollen grain.
多年生黑麦草的花粉粒通过在液态丙烷中快速冷冻、在丙酮、甲醇或乙醚中置换以及包埋在丙烯酸树脂伦敦树脂金中,制备用于透射电子显微镜观察。将这些与在醛/四氧化锇中化学固定(CF)并包埋在环氧树脂Quetol 651中的花粉进行比较。冷冻置换(FS)花粉的超微结构保存更好,特别是使用丙酮或甲醇时。保存最佳的FS花粉显示出细胞质和核质均匀,细胞器轮廓光滑、不间断。在内壁内含物的保存方面也观察到显著差异。FS花粉中内壁内含物的形态和大小各异,但在CF图像中无法辨别。这里研究的FS方案在黑麦草花粉的超微结构和免疫标记研究方面具有巨大潜力。讨论的问题包括与所用每种置换溶剂相关的伪像,以及在花粉粒内观察到的冷冻损伤梯度。