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

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. Whi...

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Autores principales: Gautier, Charlotte, Pinson-Gadais, Laetitia, Verdal-Bonnin, Marie-Noelle, Ducos, Christine, Tremblay, Judith, Chéreau, Sylvain, Atanasova, Vessela, Richard-Forget, Florence
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7760901/
https://www.ncbi.nlm.nih.gov/pubmed/33255199
http://dx.doi.org/10.3390/toxins12120735
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author Gautier, Charlotte
Pinson-Gadais, Laetitia
Verdal-Bonnin, Marie-Noelle
Ducos, Christine
Tremblay, Judith
Chéreau, Sylvain
Atanasova, Vessela
Richard-Forget, Florence
author_facet Gautier, Charlotte
Pinson-Gadais, Laetitia
Verdal-Bonnin, Marie-Noelle
Ducos, Christine
Tremblay, Judith
Chéreau, Sylvain
Atanasova, Vessela
Richard-Forget, Florence
author_sort Gautier, Charlotte
collection PubMed
description 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 Fusarium avenaceum. Notably, 0.5 mM of exogenous ferulic, caffeic, and p-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 F. avenaceum 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.
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spelling pubmed-77609012020-12-26 Investigating the Efficiency of Hydroxycinnamic Acids to Inhibit the Production of Enniatins by Fusarium avenaceum and Modulate the Expression of Enniatins Biosynthetic Genes Gautier, Charlotte Pinson-Gadais, Laetitia Verdal-Bonnin, Marie-Noelle Ducos, Christine Tremblay, Judith Chéreau, Sylvain Atanasova, Vessela Richard-Forget, Florence Toxins (Basel) Article 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 Fusarium avenaceum. Notably, 0.5 mM of exogenous ferulic, caffeic, and p-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 F. avenaceum 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. MDPI 2020-11-24 /pmc/articles/PMC7760901/ /pubmed/33255199 http://dx.doi.org/10.3390/toxins12120735 Text en © 2020 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Gautier, Charlotte
Pinson-Gadais, Laetitia
Verdal-Bonnin, Marie-Noelle
Ducos, Christine
Tremblay, Judith
Chéreau, Sylvain
Atanasova, Vessela
Richard-Forget, Florence
Investigating the Efficiency of Hydroxycinnamic Acids to Inhibit the Production of Enniatins by Fusarium avenaceum and Modulate the Expression of Enniatins Biosynthetic Genes
title Investigating the Efficiency of Hydroxycinnamic Acids to Inhibit the Production of Enniatins by Fusarium avenaceum and Modulate the Expression of Enniatins Biosynthetic Genes
title_full Investigating the Efficiency of Hydroxycinnamic Acids to Inhibit the Production of Enniatins by Fusarium avenaceum and Modulate the Expression of Enniatins Biosynthetic Genes
title_fullStr Investigating the Efficiency of Hydroxycinnamic Acids to Inhibit the Production of Enniatins by Fusarium avenaceum and Modulate the Expression of Enniatins Biosynthetic Genes
title_full_unstemmed Investigating the Efficiency of Hydroxycinnamic Acids to Inhibit the Production of Enniatins by Fusarium avenaceum and Modulate the Expression of Enniatins Biosynthetic Genes
title_short Investigating the Efficiency of Hydroxycinnamic Acids to Inhibit the Production of Enniatins by Fusarium avenaceum and Modulate the Expression of Enniatins Biosynthetic Genes
title_sort investigating the efficiency of hydroxycinnamic acids to inhibit the production of enniatins by fusarium avenaceum and modulate the expression of enniatins biosynthetic genes
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7760901/
https://www.ncbi.nlm.nih.gov/pubmed/33255199
http://dx.doi.org/10.3390/toxins12120735
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