首页> 美国卫生研究院文献>Journal of Bacteriology >Organization of the nucleoplasm in Escherichia coli visualized by phase-contrast light microscopy freeze fracturing and thin sectioning.
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Organization of the nucleoplasm in Escherichia coli visualized by phase-contrast light microscopy freeze fracturing and thin sectioning.

机译:通过相差光学显微镜冷冻破碎和薄切片可视化大肠杆菌中的核质组织。

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摘要

The organization of the nucleoplasm in Escherichia coli was studied by comparing the results obtained by freeze fracturing and thin sectioning. In addition to exponentially growing cells, we used chloramphenicol-treated cells which show a well-defined nucleoplasm, in the phase-contrast light microscope and can therefore function as a control for treatments necessary for electron microscopy. Two factors were found to determine the visibility of the nucleoplasm in freeze fractures: first, the state of lateral aggregation of deoxyribonucleic and fibrils, which is enhanced by postfixation with OsO4 according to the Ryter-Kellenberger technique; second, the presence of ice crystals. When their formation is prevented by the use of high concentration of freeze-protecting agents, the nucleoplasm appears as a smooth region in cells that have been prefixed. In unfixed cells, however, the freeze-protecting agent causes disappearance of the nucleoplasm by rearrangement of structures within the cell. This observation makes it hard to determine whether the deoxyribonucleic acid in vivo dispersed, as found after glutaraldehyde prefixation, or compact, as after OsO4 prefixation.
机译:通过比较冷冻裂解和薄切片获得的结果,研究了大肠杆菌中的核质组织。除了成倍增长的细胞外,我们在相衬光学显微镜中使用了氯霉素处理的细胞,这些细胞显示出明确的核质,因此可以用作电子显微镜所需治疗的对照。发现两个因素决定了冷冻骨折中核质的可见性:第一,脱氧核糖核酸和原纤维的侧向聚集状态,这是根据Ryter-Kellenberger技术通过用OsO4后固定来增强的。第二,冰晶的存在。当通过使用高浓度的冷冻保护剂阻止其形成时,核质在已被前缀的细胞中显示为平滑区域。然而,在未固定的细胞中,冷冻保护剂通过细胞内结构的重排导致核质的消失。该观察结果使得难以确定脱氧核糖核酸在体内是否分散(如戊二醛加前缀后发现的)还是致密的(如OsO4加前缀后的)。

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