Cargando…

Synthesis of Novel Stilbene–Coumarin Derivatives and Antifungal Screening of Monotes kerstingii-Specialized Metabolites Against Fusarium oxysporum

Fusarium is one of the most toxigenic phytopathogens causing diseases and reduced agricultural productivity worldwide. Current chemical fungicides exhibit toxicity against non-target organisms, triggering negative environmental impact, and are a danger to consumers. In order to explore the chemical...

Descripción completa

Detalles Bibliográficos
Autores principales: Fotso, Ghislain Wabo, Ngameni, Bathelemy, Storr, Thomas E., Ngadjui, Bonaventure Tchaleu, Mafu, Sibongile, Stephenson, G. Richard
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7558447/
https://www.ncbi.nlm.nih.gov/pubmed/32854223
http://dx.doi.org/10.3390/antibiotics9090537
_version_ 1783594642274516992
author Fotso, Ghislain Wabo
Ngameni, Bathelemy
Storr, Thomas E.
Ngadjui, Bonaventure Tchaleu
Mafu, Sibongile
Stephenson, G. Richard
author_facet Fotso, Ghislain Wabo
Ngameni, Bathelemy
Storr, Thomas E.
Ngadjui, Bonaventure Tchaleu
Mafu, Sibongile
Stephenson, G. Richard
author_sort Fotso, Ghislain Wabo
collection PubMed
description Fusarium is one of the most toxigenic phytopathogens causing diseases and reduced agricultural productivity worldwide. Current chemical fungicides exhibit toxicity against non-target organisms, triggering negative environmental impact, and are a danger to consumers. In order to explore the chemical diversity of plants for potential antifungal applications, crude extract and fractions from Monotes kerstingii were screened for their activity against two multi-resistant Fusarium oxysporum strains: Fo32931 and Fo4287. Antifungal activity was evaluated by the determination of minimum inhibitory concentration (MIC) by broth dilution of fermentative yeasts using kinetic OD(600 nm) reading by a spectrophotometer. The n-butanol fraction showed the best activity against Fo4287. We screened eleven previously reported natural compounds isolated from different fractions, and a stilbene–coumarin 5-[(1E)-2-(4-hydroxyphenyl)ethenyl]-4,7-dimethoxy-3-methyl-2H-1-benzopyran-2-one (1) was the most active compound against both strains. Compound 1 was employed as a nucleophile with a selection of electrophilic derivatizing agents to synthesize five novel stilbene–coumarin analogues. These semisynthetic derivatives showed moderate activity against Fo32931 with only prenylated derivative exhibiting activity comparable to the natural stilbene–coumarin (1), demonstrating the key role of the phenolic group.
format Online
Article
Text
id pubmed-7558447
institution National Center for Biotechnology Information
language English
publishDate 2020
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-75584472020-10-26 Synthesis of Novel Stilbene–Coumarin Derivatives and Antifungal Screening of Monotes kerstingii-Specialized Metabolites Against Fusarium oxysporum Fotso, Ghislain Wabo Ngameni, Bathelemy Storr, Thomas E. Ngadjui, Bonaventure Tchaleu Mafu, Sibongile Stephenson, G. Richard Antibiotics (Basel) Article Fusarium is one of the most toxigenic phytopathogens causing diseases and reduced agricultural productivity worldwide. Current chemical fungicides exhibit toxicity against non-target organisms, triggering negative environmental impact, and are a danger to consumers. In order to explore the chemical diversity of plants for potential antifungal applications, crude extract and fractions from Monotes kerstingii were screened for their activity against two multi-resistant Fusarium oxysporum strains: Fo32931 and Fo4287. Antifungal activity was evaluated by the determination of minimum inhibitory concentration (MIC) by broth dilution of fermentative yeasts using kinetic OD(600 nm) reading by a spectrophotometer. The n-butanol fraction showed the best activity against Fo4287. We screened eleven previously reported natural compounds isolated from different fractions, and a stilbene–coumarin 5-[(1E)-2-(4-hydroxyphenyl)ethenyl]-4,7-dimethoxy-3-methyl-2H-1-benzopyran-2-one (1) was the most active compound against both strains. Compound 1 was employed as a nucleophile with a selection of electrophilic derivatizing agents to synthesize five novel stilbene–coumarin analogues. These semisynthetic derivatives showed moderate activity against Fo32931 with only prenylated derivative exhibiting activity comparable to the natural stilbene–coumarin (1), demonstrating the key role of the phenolic group. MDPI 2020-08-25 /pmc/articles/PMC7558447/ /pubmed/32854223 http://dx.doi.org/10.3390/antibiotics9090537 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
Fotso, Ghislain Wabo
Ngameni, Bathelemy
Storr, Thomas E.
Ngadjui, Bonaventure Tchaleu
Mafu, Sibongile
Stephenson, G. Richard
Synthesis of Novel Stilbene–Coumarin Derivatives and Antifungal Screening of Monotes kerstingii-Specialized Metabolites Against Fusarium oxysporum
title Synthesis of Novel Stilbene–Coumarin Derivatives and Antifungal Screening of Monotes kerstingii-Specialized Metabolites Against Fusarium oxysporum
title_full Synthesis of Novel Stilbene–Coumarin Derivatives and Antifungal Screening of Monotes kerstingii-Specialized Metabolites Against Fusarium oxysporum
title_fullStr Synthesis of Novel Stilbene–Coumarin Derivatives and Antifungal Screening of Monotes kerstingii-Specialized Metabolites Against Fusarium oxysporum
title_full_unstemmed Synthesis of Novel Stilbene–Coumarin Derivatives and Antifungal Screening of Monotes kerstingii-Specialized Metabolites Against Fusarium oxysporum
title_short Synthesis of Novel Stilbene–Coumarin Derivatives and Antifungal Screening of Monotes kerstingii-Specialized Metabolites Against Fusarium oxysporum
title_sort synthesis of novel stilbene–coumarin derivatives and antifungal screening of monotes kerstingii-specialized metabolites against fusarium oxysporum
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7558447/
https://www.ncbi.nlm.nih.gov/pubmed/32854223
http://dx.doi.org/10.3390/antibiotics9090537
work_keys_str_mv AT fotsoghislainwabo synthesisofnovelstilbenecoumarinderivativesandantifungalscreeningofmonoteskerstingiispecializedmetabolitesagainstfusariumoxysporum
AT ngamenibathelemy synthesisofnovelstilbenecoumarinderivativesandantifungalscreeningofmonoteskerstingiispecializedmetabolitesagainstfusariumoxysporum
AT storrthomase synthesisofnovelstilbenecoumarinderivativesandantifungalscreeningofmonoteskerstingiispecializedmetabolitesagainstfusariumoxysporum
AT ngadjuibonaventuretchaleu synthesisofnovelstilbenecoumarinderivativesandantifungalscreeningofmonoteskerstingiispecializedmetabolitesagainstfusariumoxysporum
AT mafusibongile synthesisofnovelstilbenecoumarinderivativesandantifungalscreeningofmonoteskerstingiispecializedmetabolitesagainstfusariumoxysporum
AT stephensongrichard synthesisofnovelstilbenecoumarinderivativesandantifungalscreeningofmonoteskerstingiispecializedmetabolitesagainstfusariumoxysporum