首页> 美国卫生研究院文献>Journal of Bacteriology >N-acyl-homoserine lactone-mediated regulation of phenazine gene expression by Pseudomonas aureofaciens 30-84 in the wheat rhizosphere.
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N-acyl-homoserine lactone-mediated regulation of phenazine gene expression by Pseudomonas aureofaciens 30-84 in the wheat rhizosphere.

机译:N-酰基高丝氨酸内酯介导的小麦根际中金黄色假单胞菌30-84对吩嗪基因表达的调节。

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摘要

Pseudomonas aureofaciens 30-84 is a soilborne bacterium that colonizes the wheat rhizosphere. This strain produces three phenazine antibiotics which suppress take-all disease of wheat by inhibition of the causative agent Gaeumannomyces graminis var. tritici. Phenazines also enhance survival of 30-84 within the wheat rhizosphere in competition with other organisms. Expression of the phenazine biosynthetic operon is controlled by the phzR/phzI N-acyl-homoserine lactone (AHL) response system (L. S. Pierson III et al., J. Bacterial 176:3966-3974, 1994; D. W. Wood and L. S. Pierson III, Gene 168:49-53, 1996). By using high-pressure liquid chromatography coupled with high-resolution mass spectrometry, the AHL produced by PhzI has now been identified as N-hexanoyl-homoserine lactone (HHL). In addition, the ability of HHL to serve as an interpopulation signal molecule in the wheat rhizosphere has been examined by using isogenic reporter strains. Disruption of phzI reduced expression of the phenazine biosynthetic operon 1,000-fold in the wheat rhizosphere. Coinoculation of an isogenic strain which produced the endogenous HHL signal restored phenazine gene expression in the phzI mutant to wild-type levels in situ. These results demonstrate that HHL is required for phenazine expression in situ and is an effective interpopulation signal molecule in the wheat rhizosphere.
机译:金黄假单胞菌30-84是一种定植在小麦根际上的土壤传播细菌。该菌株产生三种吩嗪抗生素,它们通过抑制病原体Gaeumannomyces graminis var来抑制小麦的全部病害。小麦。吩嗪还可以在小麦根际中与其他生物竞争,从而提高30-84的存活率。吩嗪生物合成操纵子的表达受phzR / phzI N-酰基高丝氨酸内酯(AHL)响应系统控制(LS Pierson III等,细菌学杂志176:3966-3974,1994; DW Wood和LS Pierson III,基因168:49-53,1996)。通过使用高压液相色谱与高分辨率质谱联用,PhzI产生的AHL现在被鉴定为N-己酸-高丝氨酸内酯(HHL)。另外,已经通过使用等基因报告菌株检验了HHL在小麦根际中作为种群间信号分子的能力。 phzI的破坏使小麦根际中吩嗪生物合成操纵子的表达降低了1000倍。产生内源性HHL信号的同基因菌株的共接种可将phzI突变体中的吩嗪基因表达恢复到原位的野生型水平。这些结果表明,HHL是吩嗪原位表达所必需的,并且是小麦根际中有效的种群间信号分子。

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