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首页> 外文期刊>Applied and Environmental Microbiology >Pseudomonas fluorescens F113 Mutant with Enhanced Competitive Colonization Ability and Improved Biocontrol Activity against Fungal Root Pathogens
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Pseudomonas fluorescens F113 Mutant with Enhanced Competitive Colonization Ability and Improved Biocontrol Activity against Fungal Root Pathogens

机译:荧光假单胞菌F113突变体具有增强的竞争定殖能力和对真菌根病原体的改善的生物防治活性。

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摘要

Motility is one of the most important traits for efficient rhizosphere colonization by Pseudomonas fluorescens F113rif (F113). In this bacterium, motility is a polygenic trait that is repressed by at least three independent pathways, including the Gac posttranscriptional system, the Wsp chemotaxis-like pathway, and the SadB pathway. Here we show that the kinB gene, which encodes a signal transduction protein that together with AlgB has been implicated in alginate production, participates in swimming motility repression through the Gac pathway, acting downstream of the GacAS two-component system. Gac mutants are impaired in secondary metabolite production and are unsuitable as biocontrol agents. However, the kinB mutant and a triple mutant affected in kinB, sadB, and wspR (KSW) possess a wild-type phenotype for secondary metabolism. The KSW strain is hypermotile and more competitive for rhizosphere colonization than the wild-type strain. We have compared the biocontrol activity of KSW with those of the wild-type strain and a phenotypic variant (F113v35 [V35]) which is hypermotile and hypercompetitive but is affected in secondary metabolism since it harbors a gacS mutation. Biocontrol experiments in the Fusarium oxysporum f. sp. radicis-lycopersici/Lycopersicum esculentum (tomato) and Phytophthora cactorum/Fragaria vesca (strawberry) pathosystems have shown that the three strains possess biocontrol activity. Biocontrol activity was consistently lower for V35, indicating that the production of secondary metabolites was the most important trait for biocontrol. Strain KSW showed improved biocontrol compared with the wild-type strain, indicating that an increase in competitive colonization ability resulted in improved biocontrol and that the rational design of biocontrol agents by mutation is feasible.
机译:运动性是荧光假单胞菌F113rif(F113)有效地根际定殖的最重要特征之一。在这种细菌中,运动性是一种多基因性状,至少由三个独立的途径抑制,包括Gac转录后系统,Wsp趋化性样途径和SadB途径。在这里我们表明, kinB 基因编码一种信号转导蛋白,与AlgB一起参与藻酸盐的产生,它通过Gac途径参与游泳运动抑制,在GacAS两组分下游起作用系统。 Gac突变体的次级代谢产物产生受到损害,因此不适合用作生物防治剂。但是, kinB 突变体和受 kinB sadB wspR (KSW)影响的三重突变体具有用于次级代谢的野生型表型。 KSW菌株比野生型菌株具有更高的运动能力,并且在根际定植方面更具竞争力。我们已经将KSW的生物防治活性与野生型菌株和表型变体(F113v35 [V35])进行了比较,该变体具有高运动能力和高竞争性,但由于具有 gacS 突变而在次级代谢中受到影响。尖孢镰刀菌f。 sp。 Radicis-lycopersici / Lycopersicum esculentum(tomato)和Phytophthora cactorum / Fragaria vesca(strawberry)病原系统表明,这三株菌株均具有生物防治活性。 V35的生物防治活性始终较低,表明次生代谢产物的产生是生物防治最重要的特征。与野生型菌株相比,KSW菌株显示出改善的生物控制,表明竞争定殖能力的提高导致生物控制的改善,并且通过突变合理设计生物控制剂是可行的。

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