Burkholder G D
Can J Genet Cytol. 1977 Mar;19(1):21-9. doi: 10.1139/g77-003.
The nucleolus of Drosophila melanogaster salivary gland cells, examined by whole mount electron microscopy, consists of a fibrillar core region and a peripheral region containing both fibres and granules. These regions appear to correspond to the fibrillar and granular components, respectively, seen in thin sections. Most of the nucleoli were attached to the chromocenter region of the polytene chromosomes, containing the nucleolar organizer. Bundles of relatively straight chromatin fibres, 13 nm in diameter, extended from the chromocenter into the core region of the nucleolus, however it was not possible to trace the path of these chromatin fibres through the nucleolus since they were obscured within the mass of nucleolar fibres. The nucleolar fibres in both the core and peripheral regions were irregular and knobby, with a diameter of about 15 nm. In the core region, the fibres appeared to be of considerable length and were characteristically clustered together to form small interconnected masses. The fibres in the peripheral region were relatively short and some appeared to blend with amorphous, poorly-defined pools of material. Electron dense granules 15-20 nm in diameter were also associated with this amorphous substance. It is hypothesized that the formation and subsequent packaging of the 28s rRNA may be represented by a morphological transition of the peripheral fibres, via an amorphous pool-like intermediate stage, into the nucleolar granules. The results of this study indicate that whole mount electron microscopy may be a useful alternative to thin sectioning in high resolution studies of the nucleolus.
通过整装电子显微镜检查,果蝇唾液腺细胞的核仁由一个纤维状核心区域和一个包含纤维与颗粒的周边区域组成。这些区域似乎分别对应于在薄切片中看到的纤维状和颗粒状成分。大多数核仁附着于多线染色体的染色中心区域,该区域含有核仁组织区。直径为13纳米的相对较直的染色质纤维束从染色中心延伸到核仁的核心区域,然而,由于这些染色质纤维在核仁纤维团中变得模糊不清,因此无法追踪它们在核仁中的路径。核心区域和周边区域的核仁纤维都是不规则且有节的,直径约为15纳米。在核心区域,纤维似乎相当长,并且典型地聚集在一起形成小的相互连接的团块。周边区域的纤维相对较短,一些似乎与无定形的、界限不清的物质池混合在一起。直径为15 - 20纳米的电子致密颗粒也与这种无定形物质相关联。据推测,28s rRNA的形成及随后的包装可能由周边纤维通过无定形池状中间阶段向核仁颗粒的形态转变来表示。这项研究的结果表明,在核仁的高分辨率研究中,整装电子显微镜可能是薄切片的一种有用替代方法。