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肺炎链球菌遗传转化感受态的调控

Modulation of competence for genetic transformation in Streptococcus pneumoniae.

作者信息

Chen J D, Morrison D A

机构信息

Laboratory for Cell, Molecular, and Developmental Biology, University of Illinois, Chicago 60680.

出版信息

J Gen Microbiol. 1987 Jul;133(7):1959-67. doi: 10.1099/00221287-133-7-1959.

Abstract

The spontaneous development of competence by cultures of Streptococcus pneumoniae in casein hydrolysate medium was strongly dependent on the initial pH of the culture medium. Cells growing in cultures beginning with a wide range of initial pH values (6.8 to 8.0) all developed competence, as measured by [3H]DNA uptake, [3H]DNA degradation and genetic transformation; but the initial pH of the medium affected both the timing of the occurrence of competence and the number of times the culture became competent. In cultures grown in media of lower initial pH, competence occurred only once, at high population densities, while in more alkaline media a succession of competence cycles occurred, beginning at lower cell densities. The critical population density required for the initiation of competence varied tenfold over the pH range studied. Successive competence cycles in an alkaline medium were not equivalent: while the percentage of competent cells in the first competence cycle was high (approximately 80%), that in the second competence cycle was lower (approximately 12%). Correspondingly, competence-specific proteins were less prominent in the labelled-protein pattern of the second competence cycle than in that of the first. These features of the physiology of competence control make it possible to adjust the expression of competence to suit various experimental requirements.

摘要

在酪蛋白水解物培养基中,肺炎链球菌培养物中感受态的自发形成强烈依赖于培养基的初始pH值。在初始pH值范围较宽(6.8至8.0)的培养物中生长的细胞,通过[3H]DNA摄取、[3H]DNA降解和遗传转化来衡量,均能形成感受态;但培养基的初始pH值既影响感受态出现的时间,也影响培养物形成感受态的次数。在初始pH值较低的培养基中生长的培养物,感受态仅在高细胞密度时出现一次,而在碱性更强的培养基中,从较低细胞密度开始就会出现一系列感受态循环。在所研究的pH范围内,启动感受态所需的临界细胞密度变化了十倍。碱性培养基中的连续感受态循环并不相同:第一个感受态循环中感受态细胞的百分比很高(约80%),而第二个感受态循环中的百分比则较低(约12%)。相应地,与感受态相关的蛋白质在第二个感受态循环的标记蛋白质图谱中不如在第一个图谱中突出。感受态控制生理学的这些特征使得能够调整感受态的表达以满足各种实验要求。

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