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LDS1-produced oxylipins are negative regulators of growth, conidiation and fumonisin synthesis in the fungal maize pathogen Fusarium verticillioides

Oxylipins are fatty acid-derived signaling compounds produced by all eukaryotes so far investigated; in mycotoxigenic fungi, they modulate toxin production and interactions with the host plants. Among the many enzymes responsible for oxylipin generation, Linoleate Diol Synthase 1 (LDS1) produces mai...

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Autores principales: Scala, Valeria, Giorni, Paola, Cirlini, Martina, Ludovici, Matteo, Visentin, Ivan, Cardinale, Francesca, Fabbri, Anna A., Fanelli, Corrado, Reverberi, Massimo, Battilani, Paola, Galaverna, Gianni, Dall'Asta, Chiara
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4263177/
https://www.ncbi.nlm.nih.gov/pubmed/25566199
http://dx.doi.org/10.3389/fmicb.2014.00669
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author Scala, Valeria
Giorni, Paola
Cirlini, Martina
Ludovici, Matteo
Visentin, Ivan
Cardinale, Francesca
Fabbri, Anna A.
Fanelli, Corrado
Reverberi, Massimo
Battilani, Paola
Galaverna, Gianni
Dall'Asta, Chiara
author_facet Scala, Valeria
Giorni, Paola
Cirlini, Martina
Ludovici, Matteo
Visentin, Ivan
Cardinale, Francesca
Fabbri, Anna A.
Fanelli, Corrado
Reverberi, Massimo
Battilani, Paola
Galaverna, Gianni
Dall'Asta, Chiara
author_sort Scala, Valeria
collection PubMed
description Oxylipins are fatty acid-derived signaling compounds produced by all eukaryotes so far investigated; in mycotoxigenic fungi, they modulate toxin production and interactions with the host plants. Among the many enzymes responsible for oxylipin generation, Linoleate Diol Synthase 1 (LDS1) produces mainly 8-hydroperoxyoctadecenoic acid and subsequently different di-hydroxyoctadecenoic acids. In this study, we inactivated a copy of the putative LDS1 ortholog (acc. N. FVEG_09294.3) of Fusarium verticillioides, with the aim to investigate its influence on the oxylipin profile of the fungus, on its development, secondary metabolism and virulence. LC-MS/MS oxylipin profiling carried out on the selected mutant strain revealed significant quali-quantitative differences for several oxylipins when compared to the WT strain. The Fvlds1-deleted mutant grew better, produced more conidia, synthesized more fumonisins and infected maize cobs faster than the WT strain. We hypothesize that oxylipins may act as regulators of gene expression in the toxigenic plant pathogen F. verticillioides, in turn causing notable changes in its phenotype. These changes could relate to the ability of oxylipins to re-shape the transcriptional profile of F. verticillioides by inducing chromatin modifications and exerting a direct control on the transcription of secondary metabolism in fungi.
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spelling pubmed-42631772015-01-06 LDS1-produced oxylipins are negative regulators of growth, conidiation and fumonisin synthesis in the fungal maize pathogen Fusarium verticillioides Scala, Valeria Giorni, Paola Cirlini, Martina Ludovici, Matteo Visentin, Ivan Cardinale, Francesca Fabbri, Anna A. Fanelli, Corrado Reverberi, Massimo Battilani, Paola Galaverna, Gianni Dall'Asta, Chiara Front Microbiol Microbiology Oxylipins are fatty acid-derived signaling compounds produced by all eukaryotes so far investigated; in mycotoxigenic fungi, they modulate toxin production and interactions with the host plants. Among the many enzymes responsible for oxylipin generation, Linoleate Diol Synthase 1 (LDS1) produces mainly 8-hydroperoxyoctadecenoic acid and subsequently different di-hydroxyoctadecenoic acids. In this study, we inactivated a copy of the putative LDS1 ortholog (acc. N. FVEG_09294.3) of Fusarium verticillioides, with the aim to investigate its influence on the oxylipin profile of the fungus, on its development, secondary metabolism and virulence. LC-MS/MS oxylipin profiling carried out on the selected mutant strain revealed significant quali-quantitative differences for several oxylipins when compared to the WT strain. The Fvlds1-deleted mutant grew better, produced more conidia, synthesized more fumonisins and infected maize cobs faster than the WT strain. We hypothesize that oxylipins may act as regulators of gene expression in the toxigenic plant pathogen F. verticillioides, in turn causing notable changes in its phenotype. These changes could relate to the ability of oxylipins to re-shape the transcriptional profile of F. verticillioides by inducing chromatin modifications and exerting a direct control on the transcription of secondary metabolism in fungi. Frontiers Media S.A. 2014-12-11 /pmc/articles/PMC4263177/ /pubmed/25566199 http://dx.doi.org/10.3389/fmicb.2014.00669 Text en Copyright © 2014 Scala, Giorni, Cirlini, Ludovici, Visentin, Cardinale, Fabbri, Fanelli, Reverberi, Battilani, Galaverna and Dall'Asta. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) or licensor are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Microbiology
Scala, Valeria
Giorni, Paola
Cirlini, Martina
Ludovici, Matteo
Visentin, Ivan
Cardinale, Francesca
Fabbri, Anna A.
Fanelli, Corrado
Reverberi, Massimo
Battilani, Paola
Galaverna, Gianni
Dall'Asta, Chiara
LDS1-produced oxylipins are negative regulators of growth, conidiation and fumonisin synthesis in the fungal maize pathogen Fusarium verticillioides
title LDS1-produced oxylipins are negative regulators of growth, conidiation and fumonisin synthesis in the fungal maize pathogen Fusarium verticillioides
title_full LDS1-produced oxylipins are negative regulators of growth, conidiation and fumonisin synthesis in the fungal maize pathogen Fusarium verticillioides
title_fullStr LDS1-produced oxylipins are negative regulators of growth, conidiation and fumonisin synthesis in the fungal maize pathogen Fusarium verticillioides
title_full_unstemmed LDS1-produced oxylipins are negative regulators of growth, conidiation and fumonisin synthesis in the fungal maize pathogen Fusarium verticillioides
title_short LDS1-produced oxylipins are negative regulators of growth, conidiation and fumonisin synthesis in the fungal maize pathogen Fusarium verticillioides
title_sort lds1-produced oxylipins are negative regulators of growth, conidiation and fumonisin synthesis in the fungal maize pathogen fusarium verticillioides
topic Microbiology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4263177/
https://www.ncbi.nlm.nih.gov/pubmed/25566199
http://dx.doi.org/10.3389/fmicb.2014.00669
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