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The Role of Sugars in the Regulation of the Level of Endogenous Signaling Molecules during Defense Response of Yellow Lupine to Fusarium oxysporum

Soluble sugars such as sucrose, glucose and fructose in plant host cells not only play the role as donors of carbon skeletons, but they may also induce metabolic signals influencing the expression of defense genes. These metabolites function in a complex network with many bioactive molecules, which...

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Autores principales: Formela-Luboińska, Magda, Chadzinikolau, Tamara, Drzewiecka, Kinga, Jeleń, Henryk, Bocianowski, Jan, Kęsy, Jacek, Labudda, Mateusz, Jeandet, Philippe, Morkunas, Iwona
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7312090/
https://www.ncbi.nlm.nih.gov/pubmed/32531938
http://dx.doi.org/10.3390/ijms21114133
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author Formela-Luboińska, Magda
Chadzinikolau, Tamara
Drzewiecka, Kinga
Jeleń, Henryk
Bocianowski, Jan
Kęsy, Jacek
Labudda, Mateusz
Jeandet, Philippe
Morkunas, Iwona
author_facet Formela-Luboińska, Magda
Chadzinikolau, Tamara
Drzewiecka, Kinga
Jeleń, Henryk
Bocianowski, Jan
Kęsy, Jacek
Labudda, Mateusz
Jeandet, Philippe
Morkunas, Iwona
author_sort Formela-Luboińska, Magda
collection PubMed
description Soluble sugars such as sucrose, glucose and fructose in plant host cells not only play the role as donors of carbon skeletons, but they may also induce metabolic signals influencing the expression of defense genes. These metabolites function in a complex network with many bioactive molecules, which independently or in dialogue, induce successive defense mechanisms. The aim of this study was to determine the involvement of sucrose and monosaccharides as signaling molecules in the regulation of the levels of phytohormones and hydrogen peroxide participating in the defense responses of Lupinus luteus L. to a hemibiotrophic fungus Fusarium oxysporum Schlecht f. sp. lupini. A positive correlation between the level of sugars and postinfection accumulation of salicylic acid and its glucoside, as well as abscisic acid, was noted. The stimulatory effect of sugars on the production of ethylene was also reported. The protective role of soluble sugars in embryo axes of yellow lupine was seen in the limited development of infection and fusariosis. These results provide evidence for the enhanced generation of signaling molecules both by sugar alone as well as during the crosstalk between sugars and infection caused by F. oxysporum. However, a considerable postinfection increase in the level of these signaling molecules under the influence of sugars was recorded. The duration of the postinfection generation of these molecules in yellow lupine was also variable.
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spelling pubmed-73120902020-06-25 The Role of Sugars in the Regulation of the Level of Endogenous Signaling Molecules during Defense Response of Yellow Lupine to Fusarium oxysporum Formela-Luboińska, Magda Chadzinikolau, Tamara Drzewiecka, Kinga Jeleń, Henryk Bocianowski, Jan Kęsy, Jacek Labudda, Mateusz Jeandet, Philippe Morkunas, Iwona Int J Mol Sci Article Soluble sugars such as sucrose, glucose and fructose in plant host cells not only play the role as donors of carbon skeletons, but they may also induce metabolic signals influencing the expression of defense genes. These metabolites function in a complex network with many bioactive molecules, which independently or in dialogue, induce successive defense mechanisms. The aim of this study was to determine the involvement of sucrose and monosaccharides as signaling molecules in the regulation of the levels of phytohormones and hydrogen peroxide participating in the defense responses of Lupinus luteus L. to a hemibiotrophic fungus Fusarium oxysporum Schlecht f. sp. lupini. A positive correlation between the level of sugars and postinfection accumulation of salicylic acid and its glucoside, as well as abscisic acid, was noted. The stimulatory effect of sugars on the production of ethylene was also reported. The protective role of soluble sugars in embryo axes of yellow lupine was seen in the limited development of infection and fusariosis. These results provide evidence for the enhanced generation of signaling molecules both by sugar alone as well as during the crosstalk between sugars and infection caused by F. oxysporum. However, a considerable postinfection increase in the level of these signaling molecules under the influence of sugars was recorded. The duration of the postinfection generation of these molecules in yellow lupine was also variable. MDPI 2020-06-10 /pmc/articles/PMC7312090/ /pubmed/32531938 http://dx.doi.org/10.3390/ijms21114133 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
Formela-Luboińska, Magda
Chadzinikolau, Tamara
Drzewiecka, Kinga
Jeleń, Henryk
Bocianowski, Jan
Kęsy, Jacek
Labudda, Mateusz
Jeandet, Philippe
Morkunas, Iwona
The Role of Sugars in the Regulation of the Level of Endogenous Signaling Molecules during Defense Response of Yellow Lupine to Fusarium oxysporum
title The Role of Sugars in the Regulation of the Level of Endogenous Signaling Molecules during Defense Response of Yellow Lupine to Fusarium oxysporum
title_full The Role of Sugars in the Regulation of the Level of Endogenous Signaling Molecules during Defense Response of Yellow Lupine to Fusarium oxysporum
title_fullStr The Role of Sugars in the Regulation of the Level of Endogenous Signaling Molecules during Defense Response of Yellow Lupine to Fusarium oxysporum
title_full_unstemmed The Role of Sugars in the Regulation of the Level of Endogenous Signaling Molecules during Defense Response of Yellow Lupine to Fusarium oxysporum
title_short The Role of Sugars in the Regulation of the Level of Endogenous Signaling Molecules during Defense Response of Yellow Lupine to Fusarium oxysporum
title_sort role of sugars in the regulation of the level of endogenous signaling molecules during defense response of yellow lupine to fusarium oxysporum
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7312090/
https://www.ncbi.nlm.nih.gov/pubmed/32531938
http://dx.doi.org/10.3390/ijms21114133
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