Vismara R, Barsanti L, Lupetti P, Passarelli V, Mercati D, Dallai R, Gualtieri P
CNR Istituto di Biofisica, Area della Ricerca di Pisa, Via Alfieri 1, San Cataldo, 56010 Ghezzano, Pisa, Italy.
Tissue Cell. 2000 Dec;32(6):451-6. doi: 10.1016/s0040-8166(00)80001-4.
Deep-etching technique was used to investigate the organization of the pellicle complex of Euglena gracilis. The interpretation of the images was further supported by SEM and TEM investigations. Our results mainly validate data obtained by previous freeze-fracture studies on the E and P faces of the outer cortical membrane. At the level of the ridges, the outer E fracture face is highly organized in a regular striated pattern, whereas the P inner face shows a particulate structure. However, our images reveal that this particulate organization of the P face is not limited to the ridges, but it is displayed also by the grooves. Moreover, this face shows two distinct layers, a particulate layer facing the cytoplasm and a striated layer facing the E face; these layers represent different true fracture levels of the same P face.
采用深蚀刻技术研究纤细裸藻表膜复合体的组织结构。扫描电子显微镜(SEM)和透射电子显微镜(TEM)研究进一步支持了对图像的解读。我们的结果主要验证了先前通过冷冻断裂研究在外部皮质膜的E面和P面上获得的数据。在嵴的水平上,外部E断裂面高度有序地呈现出规则的条纹状图案,而P内表面则呈现出颗粒状结构。然而,我们的图像显示,P面的这种颗粒状组织并不局限于嵴,凹槽处也有显示。此外,该面显示出两个不同的层,一个颗粒层面向细胞质,一个条纹层面向E面;这些层代表同一P面的不同真实断裂水平。