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First Description of Non-Enzymatic Radical-Generating Mechanisms Adopted by Fomitiporia mediterranea: An Unexplored Pathway of the White Rot Agent of the Esca Complex of Diseases

Fomitiporia mediterranea (Fmed) is the primary Basidiomycota species causing white rot in European vineyards affected by the Esca complex of diseases (ECD). In the last few years, an increasing number of studies have highlighted the importance of reconsidering the role of Fmed in ECD etiology, justi...

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Autores principales: Moretti, Samuele, Goddard, Mary-Lorène, Puca, Alessandro, Lalevée, Jacques, Di Marco, Stefano, Mugnai, Laura, Gelhaye, Eric, Goodell, Barry, Bertsch, Christophe, Farine, Sibylle
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10143301/
https://www.ncbi.nlm.nih.gov/pubmed/37108951
http://dx.doi.org/10.3390/jof9040498
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author Moretti, Samuele
Goddard, Mary-Lorène
Puca, Alessandro
Lalevée, Jacques
Di Marco, Stefano
Mugnai, Laura
Gelhaye, Eric
Goodell, Barry
Bertsch, Christophe
Farine, Sibylle
author_facet Moretti, Samuele
Goddard, Mary-Lorène
Puca, Alessandro
Lalevée, Jacques
Di Marco, Stefano
Mugnai, Laura
Gelhaye, Eric
Goodell, Barry
Bertsch, Christophe
Farine, Sibylle
author_sort Moretti, Samuele
collection PubMed
description Fomitiporia mediterranea (Fmed) is the primary Basidiomycota species causing white rot in European vineyards affected by the Esca complex of diseases (ECD). In the last few years, an increasing number of studies have highlighted the importance of reconsidering the role of Fmed in ECD etiology, justifying an increase in research interest related to Fmed’s biomolecular pathogenetic mechanisms. In the context of the current re-evaluation of the binary distinction (brown vs. white rot) between biomolecular decay pathways induced by Basidiomycota species, our research aims to investigate the potential for non-enzymatic mechanisms adopted by Fmed, which is typically described as a white rot fungus. Our results demonstrate how, in liquid culture reproducing nutrient restriction conditions often found in wood, Fmed can produce low molecular weight compounds, the hallmark of the non-enzymatic “chelator-mediated Fenton” (CMF) reaction, originally described for brown rot fungi. CMF reactions can redox cycle with ferric iron, generating hydrogen peroxide and ferrous iron, necessary reactants leading to hydroxyl radical ((•)OH) production. These observations led to the conclusion that a non-enzymatic radical-generating CMF-like mechanism may be utilized by Fmed, potentially together with an enzymatic pool, to contribute to degrading wood constituents; moreover, indicating significant variability between strains.
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spelling pubmed-101433012023-04-29 First Description of Non-Enzymatic Radical-Generating Mechanisms Adopted by Fomitiporia mediterranea: An Unexplored Pathway of the White Rot Agent of the Esca Complex of Diseases Moretti, Samuele Goddard, Mary-Lorène Puca, Alessandro Lalevée, Jacques Di Marco, Stefano Mugnai, Laura Gelhaye, Eric Goodell, Barry Bertsch, Christophe Farine, Sibylle J Fungi (Basel) Article Fomitiporia mediterranea (Fmed) is the primary Basidiomycota species causing white rot in European vineyards affected by the Esca complex of diseases (ECD). In the last few years, an increasing number of studies have highlighted the importance of reconsidering the role of Fmed in ECD etiology, justifying an increase in research interest related to Fmed’s biomolecular pathogenetic mechanisms. In the context of the current re-evaluation of the binary distinction (brown vs. white rot) between biomolecular decay pathways induced by Basidiomycota species, our research aims to investigate the potential for non-enzymatic mechanisms adopted by Fmed, which is typically described as a white rot fungus. Our results demonstrate how, in liquid culture reproducing nutrient restriction conditions often found in wood, Fmed can produce low molecular weight compounds, the hallmark of the non-enzymatic “chelator-mediated Fenton” (CMF) reaction, originally described for brown rot fungi. CMF reactions can redox cycle with ferric iron, generating hydrogen peroxide and ferrous iron, necessary reactants leading to hydroxyl radical ((•)OH) production. These observations led to the conclusion that a non-enzymatic radical-generating CMF-like mechanism may be utilized by Fmed, potentially together with an enzymatic pool, to contribute to degrading wood constituents; moreover, indicating significant variability between strains. MDPI 2023-04-21 /pmc/articles/PMC10143301/ /pubmed/37108951 http://dx.doi.org/10.3390/jof9040498 Text en © 2023 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
Moretti, Samuele
Goddard, Mary-Lorène
Puca, Alessandro
Lalevée, Jacques
Di Marco, Stefano
Mugnai, Laura
Gelhaye, Eric
Goodell, Barry
Bertsch, Christophe
Farine, Sibylle
First Description of Non-Enzymatic Radical-Generating Mechanisms Adopted by Fomitiporia mediterranea: An Unexplored Pathway of the White Rot Agent of the Esca Complex of Diseases
title First Description of Non-Enzymatic Radical-Generating Mechanisms Adopted by Fomitiporia mediterranea: An Unexplored Pathway of the White Rot Agent of the Esca Complex of Diseases
title_full First Description of Non-Enzymatic Radical-Generating Mechanisms Adopted by Fomitiporia mediterranea: An Unexplored Pathway of the White Rot Agent of the Esca Complex of Diseases
title_fullStr First Description of Non-Enzymatic Radical-Generating Mechanisms Adopted by Fomitiporia mediterranea: An Unexplored Pathway of the White Rot Agent of the Esca Complex of Diseases
title_full_unstemmed First Description of Non-Enzymatic Radical-Generating Mechanisms Adopted by Fomitiporia mediterranea: An Unexplored Pathway of the White Rot Agent of the Esca Complex of Diseases
title_short First Description of Non-Enzymatic Radical-Generating Mechanisms Adopted by Fomitiporia mediterranea: An Unexplored Pathway of the White Rot Agent of the Esca Complex of Diseases
title_sort first description of non-enzymatic radical-generating mechanisms adopted by fomitiporia mediterranea: an unexplored pathway of the white rot agent of the esca complex of diseases
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10143301/
https://www.ncbi.nlm.nih.gov/pubmed/37108951
http://dx.doi.org/10.3390/jof9040498
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