Production of the Fusarium toxin deoxynivalenol(DON)is associated with oxidative stress and has been indicated to be part of an adaptive response to oxidative stress in the important wheat fungus Fusarium graminearum....Production of the Fusarium toxin deoxynivalenol(DON)is associated with oxidative stress and has been indicated to be part of an adaptive response to oxidative stress in the important wheat fungus Fusarium graminearum.In this study,we found that the antioxidant methyl gallate(MG)displays inhibitory effects against mycelial growth,conidial formation and germination,and DON biosynthesis in F.graminearum in a dose-dependent manner.Treatment with 0.05%(w/v)MG resulted in an abnormal swollen conidial morphology.The expression of the TRI genes involved in DON biosynthesis was significantly reduced,and the induction of Tri1-GFP green fluorescence signals in the spherical and crescent-shaped toxisomes was abolished in the MG-treated mycelium.RNA-Seq analysis of MG-treated F.graminearum showed that 0.5%(w/v)MG inhibited DON production by possibly altering membrane functions and oxidoreductase activities.Coupled with the observations that MG treatment decreases catalase,POD and SOD activity in F.graminearum.The results of this study indicated that MG displays antifungal activity against DON production by modulating its oxidative response.Taken together,the current study revealed the potential of MG in inhibiting mycotoxins in F.graminearum.展开更多
基金supported by the National Natural Science Fund of China[31772118,31901936]the Natural Science Fund of Jiangsu Province[BK20181246]the Key R&D Project for Tibet Autonomous Region of China[XZ202001ZY0038N].
文摘Production of the Fusarium toxin deoxynivalenol(DON)is associated with oxidative stress and has been indicated to be part of an adaptive response to oxidative stress in the important wheat fungus Fusarium graminearum.In this study,we found that the antioxidant methyl gallate(MG)displays inhibitory effects against mycelial growth,conidial formation and germination,and DON biosynthesis in F.graminearum in a dose-dependent manner.Treatment with 0.05%(w/v)MG resulted in an abnormal swollen conidial morphology.The expression of the TRI genes involved in DON biosynthesis was significantly reduced,and the induction of Tri1-GFP green fluorescence signals in the spherical and crescent-shaped toxisomes was abolished in the MG-treated mycelium.RNA-Seq analysis of MG-treated F.graminearum showed that 0.5%(w/v)MG inhibited DON production by possibly altering membrane functions and oxidoreductase activities.Coupled with the observations that MG treatment decreases catalase,POD and SOD activity in F.graminearum.The results of this study indicated that MG displays antifungal activity against DON production by modulating its oxidative response.Taken together,the current study revealed the potential of MG in inhibiting mycotoxins in F.graminearum.