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Characterization of spontaneous gacS and gacA regulatory mutants of Pseudomonas fluorescens biocontrol strain CHA0

机译:荧光假单胞菌生物防治菌株CHA0自发性gacS和gacA调控突变体的表征

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摘要

In Pseudomonas fluorescens strain CHA0, the response regulator gene gacA controls expression of extracellular enzymes and antifungal secondary metabolites, which are important for this strain's biocontrol activity in the plant rhizosphere. Two Tn5 insertion mutants of strain CHA0 that had the same pleiotropic phenotype as gacA mutants were complemented by the gacS sensor kinase gene of P. syringae pv. syringae as well as that of P. fluorescens strain Pf-5, indicating that both transposon insertions had occurred in the gacS gene of strain CHA0. This conclusion was supported by Southern hybridisation using a gacS probe from strain Pf-5. Overexpression of the wild-type gacA gene partially compensated for the gacS mutation, however, the overexpressed gacA gene was not stably maintained, suggesting that this is deleterious to the bacterium. Strain CHA0 grown to stationary phase in nutrient-rich liquid media for several days accumulated spontaneous pleiotropic mutants to levels representing 1.25% of the population; all mutants lacked key antifungal metabolites and extracellular protease. Half of 44 spontaneous mutants tested were complemented by gacS, the other half were restored by gacA. Independent point and deletion mutations arose at different sites in the gacA gene. In competition experiments with mixtures of the wild type and a gacA mutant incubated in nutrient-rich broth, the mutant population temporarily increased as the wild type decreased. In conclusion, loss of gacA function can confer a selective advantage on strain CHA0 under laboratory conditions.
机译:在荧光假单胞菌菌株CHA0中,响应调节基因gacA控制细胞外酶和抗真菌次级代谢产物的表达,这对于该菌株在植物根际中的生物防治活性很重要。丁香假单胞菌pv的gacS传感器激酶基因补充了CHA0菌株的两个Tn5插入突变体,它们具有与gacA突变体相同的多效性表型。丁香假单胞菌和荧光假单胞菌菌株Pf-5,表明这两个转座子插入都发生在CHA0菌株的gacS基因中。使用来自菌株Pf-5的gacS探针的Southern杂交支持了该结论。野生型gacA基因的过表达部分地补偿了gacS突变,但是,过表达的gacA基因不能稳定地维持,表明这对细菌是有害的。 CHA0菌株在营养丰富的液体培养基中生长到固定相数天,积累了自发的多效突变体,其水平达到了人口的1.25%;所有突变体均缺乏关键的抗真菌代谢物和细胞外蛋白酶。测试的44个自发突变体中有一半通过gacS进行了补充,另一半通过gacA恢复了。独立的点和缺失突变出现在gacA基因的不同位点。在野生型和gacA突变体在富营养肉汤中孵育的混合物的竞争实验中,突变体种群随着野生型的减少而暂时增加。总之,在实验室条件下,gacA功能的丧失可赋予菌株CHA0选择性的优势。

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  • 来源
    《Antonie van Leeuwenhoek》 |2001年第4期|327-336|共10页
  • 作者单位

    Laboratoire de Biologie Microbienne Université de LausanneLaboratoire de Biologie Microbienne Université de Lausanne;

    Phytomedizin/Pathologie Institut für Pflanzenwissenschaften Eidgenössische Technische HochschulePhytomedizin/Pathologie Institut für Pflanzenwissenschaften Eidgenössische Technische Hochschule;

    Phytomedizin/Pathologie Institut für Pflanzenwissenschaften Eidgenössische Technische HochschulePhytomedizin/Pathologie Institut für Pflanzenwissenschaften Eidgenössische Technische Hochschule;

    Phytomedizin/Pathologie Institut für Pflanzenwissenschaften Eidgenössische Technische Hochschule;

    Laboratoire de Biologie Microbienne Université de Lausanne;

    Laboratoire de Biologie Microbienne Université de Lausanne;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    biological control; Pseudomonas fluorescens; secondary metabolism; spontaneous mutation; two-component regulatory system;

    机译:生物防治荧光假单胞菌二次代谢自发突变两成分调控系统;

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