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Low pH regulates the production of deoxynivalenol by Fusarium graminearum

机译:低pH通过镰刀酸纤维素调节脱氧肾上腺素的生产

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Fusarium graminearum, which causes the globally important head blight disease of wheat, is responsible for the production of the harmful mycotoxin deoxynivalenol (DON) in infected grain. The production of DON by F. graminearum occurs at much higher levels during infection than during axenic growth, and it is therefore important to understand how DON production is regulated in the fungus. Recently, we have identified amines as potent inducers of in vitro DON production in F. graminearum. Although amines strongly induced expression of the key DON biosynthesis gene TRI5 and DON production to levels equivalent to those observed during infection, the timing of this induction suggested that other factors are also likely to be important for the regulation of DON biosynthesis. Here we demonstrate that low extracellular pH both promotes and is required for DON production in F. graminearum. A combination of low pH and amines results in significantly enhanced expression of the TRI5 gene and increased DON production during axenic growth. A better understanding of DON production in F. graminearum would have implications in developing future toxin management strategies.
机译:镰刀·克柳素素,导致全球重要的小麦枯萎病,是对受感染谷物的有害霉菌毒素脱氧酚(Don)的生产。 F. Graminearum在感染期间的含量低于轴酮生长期间的水平的产生,因此重要的是要了解Don生产在真菌中的监管。最近,我们已经确定了胺在F. Graminearum体外唐生产的有效诱导剂。虽然胺强烈诱导关键的唐生物合成基因TRI5和DON生产与感染期间观察到的水平的表达,但这种诱导的时间表明其他因素也可能对唐生物合成的调节很重要。在这里,我们证明了低细胞外pH促进,并且在F. Graminearum中的唐生产需要。低pH和胺的组合导致TRI5基因的显着增强,并在轴轴生长期间增加唐生产。更好地了解F. Graminearum在F. Graminearum的唐制作会对发展未来毒素管理策略有影响。

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