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Importance of the C(12) Carbon Chain in the Biological Activity of Rhamnolipids Conferring Protection in Wheat against Zymoseptoria tritici

The hemibiotrophic fungus Zymoseptoria tritici, responsible for Septoria tritici blotch, is currently the most devastating foliar disease on wheat crops worldwide. Here, we explored, for the first time, the ability of rhamnolipids (RLs) to control this pathogen, using a total of 19 RLs, including a...

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Autores principales: Platel, Rémi, Chaveriat, Ludovic, Le Guenic, Sarah, Pipeleers, Rutger, Magnin-Robert, Maryline, Randoux, Béatrice, Trapet, Pauline, Lequart, Vincent, Joly, Nicolas, Halama, Patrice, Martin, Patrick, Höfte, Monica, Reignault, Philippe, Siah, Ali
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7796335/
https://www.ncbi.nlm.nih.gov/pubmed/33374771
http://dx.doi.org/10.3390/molecules26010040
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author Platel, Rémi
Chaveriat, Ludovic
Le Guenic, Sarah
Pipeleers, Rutger
Magnin-Robert, Maryline
Randoux, Béatrice
Trapet, Pauline
Lequart, Vincent
Joly, Nicolas
Halama, Patrice
Martin, Patrick
Höfte, Monica
Reignault, Philippe
Siah, Ali
author_facet Platel, Rémi
Chaveriat, Ludovic
Le Guenic, Sarah
Pipeleers, Rutger
Magnin-Robert, Maryline
Randoux, Béatrice
Trapet, Pauline
Lequart, Vincent
Joly, Nicolas
Halama, Patrice
Martin, Patrick
Höfte, Monica
Reignault, Philippe
Siah, Ali
author_sort Platel, Rémi
collection PubMed
description The hemibiotrophic fungus Zymoseptoria tritici, responsible for Septoria tritici blotch, is currently the most devastating foliar disease on wheat crops worldwide. Here, we explored, for the first time, the ability of rhamnolipids (RLs) to control this pathogen, using a total of 19 RLs, including a natural RL mixture produced by Pseudomonas aeruginosa and 18 bioinspired RLs synthesized using green chemistry, as well as two related compounds (lauric acid and dodecanol). These compounds were assessed for in vitro antifungal effect, in planta defence elicitation (peroxidase and catalase enzyme activities), and protection efficacy on the wheat-Z. tritici pathosystem. Interestingly, a structure-activity relationship analysis revealed that synthetic RLs with a 12 carbon fatty acid tail were the most effective for all examined biological activities. This highlights the importance of the C12 chain in the bioactivity of RLs, likely by acting on the plasma membranes of both wheat and Z. tritici cells. The efficacy of the most active compound Rh-Est-C12 was 20-fold lower in planta than in vitro; an optimization of the formulation is thus required to increase its effectiveness. No Z. tritici strain-dependent activity was scored for Rh-Est-C12 that exhibited similar antifungal activity levels towards strains differing in their resistance patterns to demethylation inhibitor fungicides, including multi-drug resistance strains. This study reports new insights into the use of bio-inspired RLs to control Z. tritici.
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spelling pubmed-77963352021-01-10 Importance of the C(12) Carbon Chain in the Biological Activity of Rhamnolipids Conferring Protection in Wheat against Zymoseptoria tritici Platel, Rémi Chaveriat, Ludovic Le Guenic, Sarah Pipeleers, Rutger Magnin-Robert, Maryline Randoux, Béatrice Trapet, Pauline Lequart, Vincent Joly, Nicolas Halama, Patrice Martin, Patrick Höfte, Monica Reignault, Philippe Siah, Ali Molecules Article The hemibiotrophic fungus Zymoseptoria tritici, responsible for Septoria tritici blotch, is currently the most devastating foliar disease on wheat crops worldwide. Here, we explored, for the first time, the ability of rhamnolipids (RLs) to control this pathogen, using a total of 19 RLs, including a natural RL mixture produced by Pseudomonas aeruginosa and 18 bioinspired RLs synthesized using green chemistry, as well as two related compounds (lauric acid and dodecanol). These compounds were assessed for in vitro antifungal effect, in planta defence elicitation (peroxidase and catalase enzyme activities), and protection efficacy on the wheat-Z. tritici pathosystem. Interestingly, a structure-activity relationship analysis revealed that synthetic RLs with a 12 carbon fatty acid tail were the most effective for all examined biological activities. This highlights the importance of the C12 chain in the bioactivity of RLs, likely by acting on the plasma membranes of both wheat and Z. tritici cells. The efficacy of the most active compound Rh-Est-C12 was 20-fold lower in planta than in vitro; an optimization of the formulation is thus required to increase its effectiveness. No Z. tritici strain-dependent activity was scored for Rh-Est-C12 that exhibited similar antifungal activity levels towards strains differing in their resistance patterns to demethylation inhibitor fungicides, including multi-drug resistance strains. This study reports new insights into the use of bio-inspired RLs to control Z. tritici. MDPI 2020-12-23 /pmc/articles/PMC7796335/ /pubmed/33374771 http://dx.doi.org/10.3390/molecules26010040 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
Platel, Rémi
Chaveriat, Ludovic
Le Guenic, Sarah
Pipeleers, Rutger
Magnin-Robert, Maryline
Randoux, Béatrice
Trapet, Pauline
Lequart, Vincent
Joly, Nicolas
Halama, Patrice
Martin, Patrick
Höfte, Monica
Reignault, Philippe
Siah, Ali
Importance of the C(12) Carbon Chain in the Biological Activity of Rhamnolipids Conferring Protection in Wheat against Zymoseptoria tritici
title Importance of the C(12) Carbon Chain in the Biological Activity of Rhamnolipids Conferring Protection in Wheat against Zymoseptoria tritici
title_full Importance of the C(12) Carbon Chain in the Biological Activity of Rhamnolipids Conferring Protection in Wheat against Zymoseptoria tritici
title_fullStr Importance of the C(12) Carbon Chain in the Biological Activity of Rhamnolipids Conferring Protection in Wheat against Zymoseptoria tritici
title_full_unstemmed Importance of the C(12) Carbon Chain in the Biological Activity of Rhamnolipids Conferring Protection in Wheat against Zymoseptoria tritici
title_short Importance of the C(12) Carbon Chain in the Biological Activity of Rhamnolipids Conferring Protection in Wheat against Zymoseptoria tritici
title_sort importance of the c(12) carbon chain in the biological activity of rhamnolipids conferring protection in wheat against zymoseptoria tritici
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7796335/
https://www.ncbi.nlm.nih.gov/pubmed/33374771
http://dx.doi.org/10.3390/molecules26010040
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