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锌限制对 Pf-5 保护菌转录组的影响。

The effect of zinc limitation on the transcriptome of Pseudomonas protegens Pf-5.

机构信息

Department of Chemistry and Biomolecular Sciences, Macquarie University, Sydney, NSW, Australia.

出版信息

Environ Microbiol. 2013 Mar;15(3):702-15. doi: 10.1111/j.1462-2920.2012.02849.x. Epub 2012 Aug 19.

Abstract

Zinc is an important nutrient but can be lacking in some soil environments, influencing the physiology of soil-dwelling bacteria. Hence, we studied the global effect of zinc limitation on the transcriptome of the rhizosphere biocontrol strain Pseudomonas protegens Pf-5 (formerly Pseudomonas fluorescens). We observed that the expression of the putative zinc uptake regulator (Zur) gene was upregulated, and we mapped putative Zur binding sites in the Pf-5 genome using bioinformatic approaches. In line with the need to regulate intracellular zinc concentrations, an array of potential zinc transporter genes was found to be zinc-regulated. To adapt to low-zinc conditions, a gene cluster encoding non-zinc-requiring paralogues of zinc-dependent proteins was also significantly upregulated. Similarly, transcription of genes encoding non-zinc-requiring paralogues of ribosomal proteins L31 and L36 was increased by zinc limitation. A strong transcriptional downregulation of the putative copper chaperone gene (copZ) was also observed, suggesting interplay between zinc and copper homeostasis. Importantly, zinc also affected biocontrol attributes in Pf-5, most notably reducing the expression of the gene cluster responsible for biosynthesis of the antibiotic 2,4-diacetylphloroglucinol (DAPG) under zinc limitation. This study clearly defines changes to the molecular physiology of Pf-5 that enable it to survive under zinc limitation.

摘要

锌是一种重要的营养物质,但在某些土壤环境中可能会缺乏,从而影响土壤中细菌的生理机能。因此,我们研究了锌限制对根际生物防治菌株荧光假单胞菌 Pf-5(原荧光假单胞菌)转录组的全球影响。我们观察到假定的锌摄取调节剂(Zur)基因的表达上调,并通过生物信息学方法在 Pf-5 基因组中定位了假定的 Zur 结合位点。为了调节细胞内锌浓度,发现了一系列潜在的锌转运基因受到锌的调控。为了适应低锌条件,编码锌依赖性蛋白非必需同工基因簇的基因也显著上调。同样,锌限制也增加了编码核糖体蛋白 L31 和 L36 非必需同工基因的转录。还观察到假定铜伴侣基因(copZ)的转录强烈下调,表明锌和铜稳态之间存在相互作用。重要的是,锌还影响 Pf-5 的生物防治特性,在锌限制下,特别是负责合成抗生素 2,4-二乙酰基邻苯二酚(DAPG)的基因簇的表达减少。这项研究清楚地定义了 Pf-5 分子生理学的变化,使其能够在锌限制下存活。

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