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对大肠杆菌细胞分裂缺陷型热敏突变体的遗传学和生理学研究。

Genetical and physiological studies on a thermosensitive mutant of Escherichia coli defective in cell division.

作者信息

Holland I B, Darby V

出版信息

J Gen Microbiol. 1976 Jan;92(1):156-66. doi: 10.1099/00221287-92-1-156.

Abstract

A new temperature-sensitive mutant of E. coli, defective in cell division, was isolated after selection for tolerance to colicin E2. The mutant strain, ASHI24, growing in either minimal or complex medium, commences filament formation immediately upon shift to high temperature. High densities of bacteria or the presence of 0-44 M-sucrose prevents filament formation at 42 degrees C and division continues. Filament formation in the mutant is reversible and upon return to 29 degrees C the multinucleate filaments divide up into normal-sized bacteria by a series of rapid but sequential divisions. In the presence of chloramphenicol at 29 degrees C, 25% of these division sites are still expressed. A genetic locus designated ftsH, apparently controlling both temperature sensitivity and filament formation, was provisionally mapped at minute 80 on the E. coli K12 map.

摘要

通过筛选对大肠菌素E2具有耐受性,分离出了一种大肠杆菌的新型温度敏感突变体,该突变体在细胞分裂方面存在缺陷。突变菌株ASHI24在基本培养基或复合培养基中生长,转移至高温后立即开始形成丝状体。高密度细菌或存在0 - 44 M - 蔗糖可防止在42℃时形成丝状体,细胞分裂继续进行。突变体中的丝状体形成是可逆的,回到29℃后,多核丝状体通过一系列快速但有序的分裂,分裂成正常大小的细菌。在29℃存在氯霉素的情况下,这些分裂位点中有25%仍能表达。一个名为ftsH的基因位点,显然同时控制温度敏感性和丝状体形成,初步定位在大肠杆菌K12图谱的80分钟处。

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