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首页> 外文期刊>Toxins >Sinapic Acid Affects Phenolic and Trichothecene Profiles of F. culmorum and F. graminearum Sensu Stricto
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Sinapic Acid Affects Phenolic and Trichothecene Profiles of F. culmorum and F. graminearum Sensu Stricto

机译:芥子酸对F. culmorum和F. graminearum Sensu Stricto的酚和天花粉形态的影响。

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Plant-derived compounds for reducing the mycotoxin load in food and feed have become a rapidly developing research field of importance for plant breeding efforts and in the search for natural fungicides. In this study, toxigenic strains of Fusarium culmorum and F. graminearum sensu stricto were exposed to sinapic acid on solid YES media at levels close to those reported in wheat bran. Fusaria produced phenolic acids, whose accumulation was decreased by exogenous sinapic acid. Strains exposed to the lowest doses of sinapic acid showed more efficient reduction of phenolic acid production than fungi kept at higher concentrations of this compound. Fungi reduced exogenous sinapic acid, leading to the formation of syringic aldehyde. Treatment with sinapic acid led to a dramatic accumulation of its parent compound ferulic acid, presumably due to inhibition of the further conversion of this phenolic compound. Exogenous sinapic acid decreased the production of trichothecenes by fungi. Higher doses of sinapic acid resulted in more efficient reduction of mycotoxin accumulation in the media. Gene expression studies of Tri genes responsible for trichothecene biosynthesis ( Tri4 , Tri5 and Tri10 ) proved that the inhibition of mycotoxin production by sinapic acid occurred at the transcriptional level. Fusaria respond to sinapic acid by stimulation of ergosterol biosynthesis.
机译:降低食物和饲料中霉菌毒素含量的植物来源化合物已成为一个快速发展的研究领域,对植物育种工作和寻找天然杀菌剂具有重要意义。在这项研究中,将镰刀菌和禾谷镰刀菌的产毒菌株在固态YES培养基上暴露于芥子酸,其水平接近于麦麸报道的水平。 Fusaria生产酚酸,其积累因外源芥子酸而减少。暴露于最低剂量的芥子酸的菌株比保持较高浓度的真菌显示出更有效的降低酚酸的产生。真菌减少了外源芥子酸,导致形成丁香醛。用芥子酸处理导致其母体化合物阿魏酸大量积累,大概是由于抑制了该酚类化合物的进一步转化。外源芥子酸可减少真菌产生的毛霉菌素。较高剂量的芥子酸可更有效地减少培养基中霉菌毒素的积累。对负责单端孢菌素生物合成的Tri基因(Tri4,Tri5和Tri10)的基因表达研究证明,芥子酸对霉菌毒素产生的抑制作用发生在转录水平。洋紫藤通过刺激麦角固醇的生物合成来响应芥子酸。

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