首页> 外文期刊>Antonie van Leeuwenhoek: Journal of Microbiology and serology >The Pseudomonas fluorescens secondary metabolite 2,4 diacetylphloroglucinol impairs mitochondrial function in Saccharomyces cerevisiae.
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The Pseudomonas fluorescens secondary metabolite 2,4 diacetylphloroglucinol impairs mitochondrial function in Saccharomyces cerevisiae.

机译:荧光假单胞菌次生代谢物2,4二乙酰基间苯三酚损害啤酒酵母中的线粒体功能。

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摘要

Pseudomonas fluorescens strains are known to produce a wide range of secondary metabolites including phenazines, siderophores, pyoluteorin, and 2,4 diacetylphloroglucinol (DAPG). DAPG is of particular interest because of its antifungal properties and because its production is associated with inhibition of phytopathogenic fungi in natural disease-suppressive soils. This trait has been exploited to develop strains of P. fluorescens that have potential application as biocontrol agents. Although the biochemistry, genetics and regulation of DAPG production have been well-studied, relatively little is known about how DAPG inhibits fungal growth and how fungi respond to DAPG. Employing a yeast model and a combination of phenotypic assays, molecular genetics and molecular physiological probes, we established that inhibition of fungal growth is caused by impairment of mitochondrial function. The effect of DAPG on yeast is largely fungistatic but DAPG also induces the formation of petite cells. Expression of the multidrug export proteins Pdr5p and Snq2p is increased by DAPG-treatment but this appears to be a secondary effect of mitochondrial damage as no role in enhancing DAPG-tolerance was identified for either Pdr5p or Snq2p.
机译:荧光假单胞菌菌株可产生广泛的次级代谢产物,包括吩嗪,铁载体,焦黄体素和2,4二乙酰基间苯三酚(DAPG)。 DAPG特别令人感兴趣,因为它具有抗真菌特性,并且其产生与抑制自然疾病的土壤中的植物病原真菌有关。已经利用该性状开发了荧光假单胞菌菌株,其具有潜在的生物防治作用。尽管已经对DAPG生产的生物化学,遗传学和调控进行了深入研究,但对DAPG如何抑制真菌生长以及真菌如何对DAPG产生反应的了解还很少。利用酵母模型和表型分析,分子遗传学和分子生理探针的组合,我们确定抑制真菌生长是由线粒体功能受损引起的。 DAPG对酵母的作用在很大程度上具有抑真菌作用,但DAPG还可诱导小细胞的形成。通过DAPG处理,多药输出蛋白Pdr5p和Snq2p的表达增加,但这似乎是线粒体损伤的次要作用,因为对于Pdr5p或Snq2p都没有发现增强DAPG耐受性的作用。

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