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首页> 外文期刊>Frontiers in Microbiology >The Compound 2-Hexyl, 5-Propyl Resorcinol Has a Key Role in Biofilm Formation by the Biocontrol Rhizobacterium Pseudomonas chlororaphis PCL1606
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The Compound 2-Hexyl, 5-Propyl Resorcinol Has a Key Role in Biofilm Formation by the Biocontrol Rhizobacterium Pseudomonas chlororaphis PCL1606

机译:化合物2-己基,5-丙基间苯二酚在生物控制根瘤菌 Pseudomonas chlororaphis PCL1606的生物膜形成中具有关键作用。

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The production of the compound 2-hexyl-5-propyl resorcinol (HPR) by the biocontrol rhizobacterium Pseudomonas chlororaphis PCL1606 (PcPCL1606) is crucial for fungal antagonism and biocontrol activity that protects plants against the phytopathogenic fungus Rosellinia necatrix . The production of HPR is also involved in avocado root colonization during the biocontrol process. This pleiotrophic response prompted us to study the potential role of HPR production in biofilm formation. The swimming motility of PcPLL1606 is enhanced by the disruption of HPR production. Mutants impaired in HPR production, revealed that adhesion, colony morphology, and typical air–liquid interphase pellicles were all dependent on HPR production. The role of HPR production in biofilm architecture was also analyzed in flow chamber experiments. These experiments revealed that the HPR mutant cells had less tight unions than those producing HPR, suggesting an involvement of HPR in the production of the biofilm matrix.
机译:生物防治绿细菌假单胞菌PCL1606(PcPCL1606)的化合物2-己基-5-丙基间苯二酚(HPR)的生产对于真菌拮抗作用和生物防治活性至关重要,该活性可保护植物免受植物致病性真菌玫瑰茄的侵害。在生物防治过程中,HPR的产生还涉及鳄梨根定植。这种多营养反应促使我们研究HPR产生在生物膜形成中的潜在作用。 HPR产生的中断增强了PcPLL1606的游泳运动能力。突变体损害了HPR的产生,揭示出粘附力,菌落形态和典型的气液间膜均取决于HPR的产生。在流动室实验中还分析了HPR生产在生物膜结构中的作用。这些实验表明,HPR突变细胞比产生HPR的细胞具有更少的紧密结合,表明HPR参与了生物膜基质的生产。

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