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研究羟基肉桂酸抑制 产生恩镰孢菌素的效率及调控恩镰孢菌素生物合成基因表达。

Investigating the Efficiency of Hydroxycinnamic Acids to Inhibit the Production of Enniatins by and Modulate the Expression of Enniatins Biosynthetic Genes.

机构信息

INRAE, Mycology and Food Safety (MycSA), F-33882 Villenave d'Ornon, France.

出版信息

Toxins (Basel). 2020 Nov 24;12(12):735. doi: 10.3390/toxins12120735.

Abstract

Enniatins (ENNs) that belong to the group of emerging mycotoxins are widespread contaminants of agricultural commodities. There is currently insufficient evidence to rule out health concerns associated with long-term exposure to ENNs and efforts must be strengthened to define a control strategy. While the potential of plant compounds to counteract the contamination with legislated mycotoxins has been reported, little remains known regarding ENNs. The present study evidenced for the first time the efficiency of hydroxycinnamic acids to inhibit the fungal growth and ENNs yield by . Notably, 0.5 mM of exogenous ferulic, caffeic, and -coumaric acids led to a drastic reduction of ENNs synthesis in pH4 broths, with ferulic acid being the most potent. The ENNs production inhibitory activity of ferulic acid was shown to be associated with a significant down-regulation of the expression of ENNs biosynthetic genes. To further investigate the bioactivity of ferulic acid, its metabolic fate was characterized in fungal broths and the capacity of to metabolize it through a C2-cleavage type degradation was demonstrated. Overall, our data support the promising use of ferulic acid in ENNs control strategies, either as part of an environmentally friendly plant-care product or as a biomarker of plant resistance.

摘要

恩镰菌素(ENNs)属于新兴霉菌毒素的一类,广泛存在于农产品的污染物中。目前尚无充分证据表明长期接触 ENNs 不会对健康造成影响,因此必须加强努力,制定控制策略。虽然已经有报道称植物化合物具有中和法定霉菌毒素污染的潜力,但对于 ENNs 的了解甚少。本研究首次证明了羟基肉桂酸通过抑制真菌生长和恩镰菌素的产生来抑制真菌生长和恩镰菌素产量的效率。值得注意的是,外源阿魏酸、咖啡酸和 -香豆酸在 pH4 培养液中浓度达到 0.5mM 时,会导致恩镰菌素的合成急剧减少,其中阿魏酸的抑制效果最强。阿魏酸对恩镰菌素产生的抑制活性与恩镰菌素生物合成基因表达的显著下调有关。为了进一步研究阿魏酸的生物活性,研究人员在真菌培养液中对其代谢产物进行了表征,并证明了 通过 C2 裂解型降解来代谢它的能力。总的来说,我们的数据支持阿魏酸在恩镰菌素控制策略中的应用,无论是作为环保型植物保护产品的一部分,还是作为植物抗性的生物标志物。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/91fd/7760901/afa8d2f0ab72/toxins-12-00735-g001.jpg

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