首页> 美国卫生研究院文献>Toxins >trans-Cinnamic and Chlorogenic Acids Affect the Secondary Metabolic Profiles and Ergosterol Biosynthesis by Fusarium culmorum and F. graminearum Sensu Stricto
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trans-Cinnamic and Chlorogenic Acids Affect the Secondary Metabolic Profiles and Ergosterol Biosynthesis by Fusarium culmorum and F. graminearum Sensu Stricto

机译:反肉桂酸和绿原酸影响镰孢镰刀菌和禾谷镰刀菌的次生代谢谱和麦角甾醇的生物合成

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摘要

Plant-derived compounds limiting mycotoxin contamination are currently of major interest in food and feed production. However, their potential application requires an evaluation of their effects on fungal secondary metabolism and membrane effects. In this study, different strains of Fusarium culmorum and F. graminearum sensu stricto were exposed to trans-cinnamic and chlorogenic acids on solid YES media. Fusaria produced phenolic acids, whose accumulation was lowered by exogenous phenolic compounds. In addition, fungi reduced exogenous phenolic acids, leading either to their conversion or degradation. trans-Cinnamic acid was converted to caffeic and ferulic acids, while chlorogenic acid was degraded to caffeic acid. The latter underwent further degradation to protocatechuic acid. Fungal-derived trans-cinnamic acid, as the first intermediate of the shikimate pathway, increased after chlorogenic acid treatment, presumably due to the further inhibition of the conversion of trans-cinnamic acid. Exogenous trans-cinnamic and chlorogenic acid displayed the inhibition of mycotoxin production by Fusaria, which appeared to be largely dependent on the phenolic compound and its concentration and the assayed strain. Exogenous phenolic acids showed different effects on ergosterol biosynthesis by fungi. It was found that the production of this membrane sterol was stimulated by trans-cinnamic acid, while chlorogenic acid negatively impacted ergosterol biosynthesis, suggesting that phenolic acids with stronger antifungal activities may upregulate ergosterol biosynthesis by Fusaria. This paper reports on the production of phenolic acids by Fusaria for the first time.
机译:目前,限制霉菌毒素污染的植物来源化合物是食品和饲料生产中的主要关注对象。然而,它们的潜在应用需要评估它们对真菌继发代谢和膜作用的影响。在这项研究中,不同的镰孢镰刀菌和F. graminearum sensu stricto菌株在固态YES培养基上暴露于反式肉桂酸和绿原酸。 Fusaria生产酚酸,其积累被外源酚类化合物降低。另外,真菌还原外源酚酸,导致其转化或降解。反式肉桂酸被转化为咖啡酸和阿魏酸,而绿原酸被降解为咖啡酸。后者进一步降解为原儿茶酸。作为the草酸酯途径的第一中间体的源自真菌的反式肉桂酸在绿原酸处理后增加,大概是由于进一步抑制了反式肉桂酸的转化。外源反式肉桂酸和绿原酸显示出镰孢对霉菌毒素产生的抑制作用,这在很大程度上取决于酚类化合物及其浓度和所测菌株。外源酚酸对真菌的麦角固醇生物合成表现出不同的作用。发现该膜固醇的产生被反式肉桂酸刺激,而绿原酸对麦角固醇的生物合成具有负面影响,这表明具有较强抗真菌活性的酚酸可以上调Fusaria对麦角固醇的生物合成。本文首次报道了Fusaria生产酚酸的方法。

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