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Synthesis and Fungicidal Activity of Hydrated Geranylated Phenols against Botrytis cinerea

Botrytis cinerea is a ubiquitous fungus that affects hundreds of plants, resulting in economic losses to the horticulture and fruit industry. The search for new antifungal agents is a matter of current interest. Thus, in this work a series of geranylated phenols in which the side alkyl chain has bee...

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Autores principales: Soto, Mauricio, Estevez-Braun, Ana, Amesty, Ángel, Kluepfel, Julia, Restrepo, Susana, Diaz, Katy, Espinoza, Luis, Olea, Andrés F., Taborga, Lautaro
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8620067/
https://www.ncbi.nlm.nih.gov/pubmed/34833907
http://dx.doi.org/10.3390/molecules26226815
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author Soto, Mauricio
Estevez-Braun, Ana
Amesty, Ángel
Kluepfel, Julia
Restrepo, Susana
Diaz, Katy
Espinoza, Luis
Olea, Andrés F.
Taborga, Lautaro
author_facet Soto, Mauricio
Estevez-Braun, Ana
Amesty, Ángel
Kluepfel, Julia
Restrepo, Susana
Diaz, Katy
Espinoza, Luis
Olea, Andrés F.
Taborga, Lautaro
author_sort Soto, Mauricio
collection PubMed
description Botrytis cinerea is a ubiquitous fungus that affects hundreds of plants, resulting in economic losses to the horticulture and fruit industry. The search for new antifungal agents is a matter of current interest. Thus, in this work a series of geranylated phenols in which the side alkyl chain has been hydrated have been synthesized, and their activity against B. cinerea has been evaluated. The coupling of phenol and geraniol has been accomplished under microwave irradiation obtaining the highest reaction yields in the shortest reaction times. Hydration of the side chain was carried out in dioxane with p-toluenesulfonic acid polymer-bound as the catalyst. All synthesized compounds were tested against B. cinerea using the growth inhibition assay and EC(50) values were determined. The results show that activity depends on the number and nature of functional groups in the phenol ring and hydration degree of the geranyl chain. The most active compound is 1,4-dihydroquinone with one hydroxyl group attached at the end of the alkyl chain. Results from a molecular docking study suggest that hydroxyl groups in the phenol ring and alkyl chain are important in the binding of compounds to the active site, and that the experimental antifungal activity correlates with the number of H-bond that can be formed in the binding site.
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spelling pubmed-86200672021-11-27 Synthesis and Fungicidal Activity of Hydrated Geranylated Phenols against Botrytis cinerea Soto, Mauricio Estevez-Braun, Ana Amesty, Ángel Kluepfel, Julia Restrepo, Susana Diaz, Katy Espinoza, Luis Olea, Andrés F. Taborga, Lautaro Molecules Article Botrytis cinerea is a ubiquitous fungus that affects hundreds of plants, resulting in economic losses to the horticulture and fruit industry. The search for new antifungal agents is a matter of current interest. Thus, in this work a series of geranylated phenols in which the side alkyl chain has been hydrated have been synthesized, and their activity against B. cinerea has been evaluated. The coupling of phenol and geraniol has been accomplished under microwave irradiation obtaining the highest reaction yields in the shortest reaction times. Hydration of the side chain was carried out in dioxane with p-toluenesulfonic acid polymer-bound as the catalyst. All synthesized compounds were tested against B. cinerea using the growth inhibition assay and EC(50) values were determined. The results show that activity depends on the number and nature of functional groups in the phenol ring and hydration degree of the geranyl chain. The most active compound is 1,4-dihydroquinone with one hydroxyl group attached at the end of the alkyl chain. Results from a molecular docking study suggest that hydroxyl groups in the phenol ring and alkyl chain are important in the binding of compounds to the active site, and that the experimental antifungal activity correlates with the number of H-bond that can be formed in the binding site. MDPI 2021-11-11 /pmc/articles/PMC8620067/ /pubmed/34833907 http://dx.doi.org/10.3390/molecules26226815 Text en © 2021 by the authors. https://creativecommons.org/licenses/by/4.0/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 (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Soto, Mauricio
Estevez-Braun, Ana
Amesty, Ángel
Kluepfel, Julia
Restrepo, Susana
Diaz, Katy
Espinoza, Luis
Olea, Andrés F.
Taborga, Lautaro
Synthesis and Fungicidal Activity of Hydrated Geranylated Phenols against Botrytis cinerea
title Synthesis and Fungicidal Activity of Hydrated Geranylated Phenols against Botrytis cinerea
title_full Synthesis and Fungicidal Activity of Hydrated Geranylated Phenols against Botrytis cinerea
title_fullStr Synthesis and Fungicidal Activity of Hydrated Geranylated Phenols against Botrytis cinerea
title_full_unstemmed Synthesis and Fungicidal Activity of Hydrated Geranylated Phenols against Botrytis cinerea
title_short Synthesis and Fungicidal Activity of Hydrated Geranylated Phenols against Botrytis cinerea
title_sort synthesis and fungicidal activity of hydrated geranylated phenols against botrytis cinerea
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8620067/
https://www.ncbi.nlm.nih.gov/pubmed/34833907
http://dx.doi.org/10.3390/molecules26226815
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