Materman E C, Van Gool A P
J Bacteriol. 1978 Feb;133(2):878-83. doi: 10.1128/jb.133.2.878-883.1978.
The time course of morphological changes during lysis of Escherichia coli cells was examined with respect to an undisturbed release of nucleoids. The addition of detergents to plasmolyzed, osmotic sensitive cells resulted in the immediate reversal of plasmolysis followed by the appearance of rod-shaped ghost cells without any detectable spheroplast formation. Electron microscopic examination of the rod-shaped ghost cells revealed a zonal gap in the cell envelope, allowing the free release of the nucleoid. Due to the high ionic strength, a suitable cell lysis was shown to require higher incubation temperatures. However, in the absence of an appropriate control this may result in the sphering and vesiculation of ghost cell envelopes and even the unfolding of released nucleoids. To avoid this unfavorable consequence of lysis at high temperatures, a microscopic examination on the course of rod-shaped ghost formation is suggested.
针对大肠杆菌细胞裂解过程中类核的无干扰释放,研究了其形态变化的时间进程。向经质壁分离且对渗透压敏感的细胞中添加去污剂,导致质壁分离立即逆转,随后出现杆状空壳细胞,未检测到任何原生质球形成。对杆状空壳细胞的电子显微镜检查显示,细胞膜存在带状间隙,使类核能够自由释放。由于离子强度高,合适的细胞裂解显示需要更高的孵育温度。然而,在缺乏适当对照的情况下,这可能导致空壳细胞膜的球化和囊泡化,甚至释放的类核展开。为避免高温裂解带来的这一不利后果,建议对杆状空壳形成过程进行显微镜检查。