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The isothiocyanate sulforaphane induces respiratory burst oxidase homologue D‐dependent reactive oxygen species production and regulates expression of stress response genes

Sulforaphane (SFN) is an isothiocyanate‐type phytomolecule present in crucifers, which is mainly synthesized in response to biotic stress. In animals, SFN incorporated in the diet has anticancer properties among others. The mechanism of action and signaling are well described in animals; however, li...

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Autores principales: Arruebarrena Di Palma, Andrés, Perk, Enzo A., Carboni, Martín E., García‐Mata, Carlos, Budak, Hikmet, Tör, Mahmut, Laxalt, Ana M.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9448665/
https://www.ncbi.nlm.nih.gov/pubmed/36091879
http://dx.doi.org/10.1002/pld3.437
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author Arruebarrena Di Palma, Andrés
Perk, Enzo A.
Carboni, Martín E.
García‐Mata, Carlos
Budak, Hikmet
Tör, Mahmut
Laxalt, Ana M.
author_facet Arruebarrena Di Palma, Andrés
Perk, Enzo A.
Carboni, Martín E.
García‐Mata, Carlos
Budak, Hikmet
Tör, Mahmut
Laxalt, Ana M.
author_sort Arruebarrena Di Palma, Andrés
collection PubMed
description Sulforaphane (SFN) is an isothiocyanate‐type phytomolecule present in crucifers, which is mainly synthesized in response to biotic stress. In animals, SFN incorporated in the diet has anticancer properties among others. The mechanism of action and signaling are well described in animals; however, little is known in plants. The goal in the present study is to elucidate components of the SFN signaling pathway, particularly the production of reactive oxygen species (ROS), and its effect on the transcriptome. Our results showed that in Arabidopsis, SFN causes ROS production exclusively through the action of the NADPH oxidase RBOH isoform D that requires calcium as a signaling component for the ROS production. To add to this, we also analyzed the effect of SFN on the transcriptome by RNAseq. We observed the highest expression increase for heat shock proteins (HSP) genes and also for genes associated with the response to oxidative stress. The upregulation of several genes linked to the biotic stress response confirms the interplay between SFN and this stress. In addition, SFN increases the levels of transcripts related to the response to abiotic stress, as well as phytohormones. Taken together, these results indicate that SFN induces an oxidative burst leading to signaling events. This oxidative burst may cause the increase of the expression of genes such as heat shock proteins to restore cellular homeostasis and genes that codify possible components of the signaling pathway and putative effectors.
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spelling pubmed-94486652022-09-09 The isothiocyanate sulforaphane induces respiratory burst oxidase homologue D‐dependent reactive oxygen species production and regulates expression of stress response genes Arruebarrena Di Palma, Andrés Perk, Enzo A. Carboni, Martín E. García‐Mata, Carlos Budak, Hikmet Tör, Mahmut Laxalt, Ana M. Plant Direct Original Research Sulforaphane (SFN) is an isothiocyanate‐type phytomolecule present in crucifers, which is mainly synthesized in response to biotic stress. In animals, SFN incorporated in the diet has anticancer properties among others. The mechanism of action and signaling are well described in animals; however, little is known in plants. The goal in the present study is to elucidate components of the SFN signaling pathway, particularly the production of reactive oxygen species (ROS), and its effect on the transcriptome. Our results showed that in Arabidopsis, SFN causes ROS production exclusively through the action of the NADPH oxidase RBOH isoform D that requires calcium as a signaling component for the ROS production. To add to this, we also analyzed the effect of SFN on the transcriptome by RNAseq. We observed the highest expression increase for heat shock proteins (HSP) genes and also for genes associated with the response to oxidative stress. The upregulation of several genes linked to the biotic stress response confirms the interplay between SFN and this stress. In addition, SFN increases the levels of transcripts related to the response to abiotic stress, as well as phytohormones. Taken together, these results indicate that SFN induces an oxidative burst leading to signaling events. This oxidative burst may cause the increase of the expression of genes such as heat shock proteins to restore cellular homeostasis and genes that codify possible components of the signaling pathway and putative effectors. John Wiley and Sons Inc. 2022-09-06 /pmc/articles/PMC9448665/ /pubmed/36091879 http://dx.doi.org/10.1002/pld3.437 Text en © 2022 The Authors. Plant Direct published by American Society of Plant Biologists and the Society for Experimental Biology and John Wiley & Sons Ltd. https://creativecommons.org/licenses/by/4.0/This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Original Research
Arruebarrena Di Palma, Andrés
Perk, Enzo A.
Carboni, Martín E.
García‐Mata, Carlos
Budak, Hikmet
Tör, Mahmut
Laxalt, Ana M.
The isothiocyanate sulforaphane induces respiratory burst oxidase homologue D‐dependent reactive oxygen species production and regulates expression of stress response genes
title The isothiocyanate sulforaphane induces respiratory burst oxidase homologue D‐dependent reactive oxygen species production and regulates expression of stress response genes
title_full The isothiocyanate sulforaphane induces respiratory burst oxidase homologue D‐dependent reactive oxygen species production and regulates expression of stress response genes
title_fullStr The isothiocyanate sulforaphane induces respiratory burst oxidase homologue D‐dependent reactive oxygen species production and regulates expression of stress response genes
title_full_unstemmed The isothiocyanate sulforaphane induces respiratory burst oxidase homologue D‐dependent reactive oxygen species production and regulates expression of stress response genes
title_short The isothiocyanate sulforaphane induces respiratory burst oxidase homologue D‐dependent reactive oxygen species production and regulates expression of stress response genes
title_sort isothiocyanate sulforaphane induces respiratory burst oxidase homologue d‐dependent reactive oxygen species production and regulates expression of stress response genes
topic Original Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9448665/
https://www.ncbi.nlm.nih.gov/pubmed/36091879
http://dx.doi.org/10.1002/pld3.437
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