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导致假单胞菌属PCL1171菌株菌落相变的gacS自发修饰的分子本质。

Molecular nature of spontaneous modifications in gacS which cause colony phase variation in Pseudomonas sp. strain PCL1171.

作者信息

van den Broek Daan, Chin-A-Woeng Thomas F C, Bloemberg Guido V, Lugtenberg Ben J J

机构信息

Institute of Biology, Leiden University, Clusius Laboratory, Wassenaarseweg 64, 2333 AL Leiden, The Netherlands.

出版信息

J Bacteriol. 2005 Jan;187(2):593-600. doi: 10.1128/JB.187.2.593-600.2005.

DOI:10.1128/JB.187.2.593-600.2005
PMID:15629930
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC543552/
Abstract

Pseudomonas sp. strain PCL1171 displays colony phase variation between opaque phase I and translucent phase II colonies, thereby regulating the production of secondary metabolites and exoenzymes. Complementation and sequence analysis of 26 phase II mutants and of 13 wild-type phase II sectors growing out of phase I colonies showed that in all these cases the phase II phenotype is caused by spontaneous mutations in gacA or/and gacS. Mutation of gac reduced both the length of the lag phase and the generation time. Isolation and sequencing of the gacS genes from the phase II bacteria revealed one insertion as well as several random point mutations, deletions, and DNA rearrangements. Most phase II colonies reverted with a high frequency, resulting in wild-type gacA and gacS genes and a phase I phenotype. Some phase II bacteria retained the phase II phenotype but changed genotypically as a result of (re)introduction of mutations in either gacA or gacS. The reversion of gacA or gacS to the wild type was not affected by mutation of recA and recB. We conclude that in Pseudomonas sp. strain PCL1171, mutations in gacA and gacS are the basis for phase variation from phase I to phase II colonies and that, since these mutations are efficiently removed, mutations in gac result in dynamic switches between the "wild-type" population and the subpopulations harboring spontaneous mutations in gacA and or gacS, thereby enabling both populations to be maintained.

摘要

假单胞菌属菌株PCL1171在不透明的I期菌落和半透明的II期菌落之间表现出菌落相变,从而调节次生代谢产物和胞外酶的产生。对26个II期突变体以及从I期菌落中长出的13个野生型II期扇形区域进行互补和序列分析,结果表明在所有这些情况下,II期表型是由gacA或/和gacS中的自发突变引起的。gac的突变缩短了延滞期的长度并缩短了世代时间。对II期细菌的gacS基因进行分离和测序,发现了一个插入以及几个随机点突变、缺失和DNA重排。大多数II期菌落高频回复突变,产生野生型gacA和gacS基因以及I期表型。一些II期细菌保留了II期表型,但由于gacA或gacS中(重新)引入突变而发生了基因型变化。gacA或gacS回复到野生型不受recA和recB突变的影响。我们得出结论,在假单胞菌属菌株PCL1171中,gacA和gacS中的突变是I期菌落到II期菌落相变的基础,并且由于这些突变被有效去除,gac中的突变导致“野生型”群体与在gacA和/或gacS中携带自发突变的亚群体之间的动态转换,从而使两个群体得以维持。

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