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1型菌毛产生缺陷的大肠杆菌相变变体和突变体的分离与鉴定。

Isolation and characterization of Escherichia coli phase variants and mutants deficient in type 1 pilus production.

作者信息

Swaney L M, Liu Y P, To C M, To C C, Ippen-Ihler K, Brinton C C

出版信息

J Bacteriol. 1977 Apr;130(1):495-505. doi: 10.1128/jb.130.1.495-505.1977.

Abstract

Type 1 pili of Escherichia coli are the prototype of the somatic class of pili found on many strains of bacteria. As a first step in the genetic analysis of type 1 piliation, an extensive series of nonpiliated derivatives of E. coli K-12 strain AW405, was characterized to produce attached or free pili when examined in the antiserum or appeared to produce attached or free pili when examined in the electron microscope. The derivatives fell into two classes; phase variants and mutants. Phase variants that formed colonies of two distinctive types, one associated with a predominantly piliated (P+), and the other associated with a nonpiliated (P-) phase, were obtained. Each phase could give rise to the other at a relatively high rate, which was greater in the P- to P+ direction during culture in unshaken liquid medium. In addition, 77 Pil- mutants were selected on the basis of a subtle difference in colonial morphology. The mutants reverted, if at all, at a much lower rate than that of the P- to P+ change. The stability of Pil- derivatives grown in unshaken liquid medium was used as a criterion for distinguishing between phase variants and mutants, Phase variation also effected colonial morphology and chemotactic swarming. These properties did not directly depend upon piliation since Pil- mutants were only slightly altered in colonial form and unaltered in chemotactic swarming. Piliation of Pil+ bacteria was quantitatively affected by growth conditions.

摘要

大肠杆菌的1型菌毛是在许多细菌菌株中发现的菌体类菌毛的原型。作为对1型菌毛进行遗传分析的第一步,对大肠杆菌K-12菌株AW405的一系列广泛的非菌毛衍生物进行了表征,这些衍生物在抗血清中检测时产生附着或游离的菌毛,或在电子显微镜下检测时似乎产生附着或游离的菌毛。这些衍生物分为两类:相变变体和突变体。获得了形成两种不同类型菌落的相变变体,一种与主要有菌毛(P+)相关,另一种与无菌毛(P-)阶段相关。每个阶段都可以以相对较高的速率转变为另一个阶段,在未振荡的液体培养基中培养时,从P-到P+方向的转变速率更高。此外,根据菌落形态的细微差异选择了77个Pil-突变体。这些突变体即使发生回复突变,其速率也比从P-到P+的变化低得多。将在未振荡的液体培养基中生长的Pil-衍生物的稳定性用作区分相变变体和突变体的标准,相变也影响菌落形态和趋化性群体运动。这些特性并不直接取决于菌毛形成,因为Pil-突变体的菌落形态仅略有改变,趋化性群体运动未改变。Pil+细菌的菌毛形成受到生长条件的定量影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/80a8/235228/96a5d5666918/jbacter00305-0510-a.jpg

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