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Transcriptomics and Functional Genomics of ROS-Induced Cell Death Regulation by RADICAL-INDUCED CELL DEATH1

Plant responses to changes in environmental conditions are mediated by a network of signaling events leading to downstream responses, including changes in gene expression and activation of cell death programs. Arabidopsis thaliana RADICAL-INDUCED CELL DEATH1 (RCD1) has been proposed to regulate plan...

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Autores principales: Brosché, Mikael, Blomster, Tiina, Salojärvi, Jarkko, Cui, Fuqiang, Sipari, Nina, Leppälä, Johanna, Lamminmäki, Airi, Tomai, Gloria, Narayanasamy, Shaman, Reddy, Ramesha A., Keinänen, Markku, Overmyer, Kirk, Kangasjärvi, Jaakko
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3923667/
https://www.ncbi.nlm.nih.gov/pubmed/24550736
http://dx.doi.org/10.1371/journal.pgen.1004112
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author Brosché, Mikael
Blomster, Tiina
Salojärvi, Jarkko
Cui, Fuqiang
Sipari, Nina
Leppälä, Johanna
Lamminmäki, Airi
Tomai, Gloria
Narayanasamy, Shaman
Reddy, Ramesha A.
Keinänen, Markku
Overmyer, Kirk
Kangasjärvi, Jaakko
author_facet Brosché, Mikael
Blomster, Tiina
Salojärvi, Jarkko
Cui, Fuqiang
Sipari, Nina
Leppälä, Johanna
Lamminmäki, Airi
Tomai, Gloria
Narayanasamy, Shaman
Reddy, Ramesha A.
Keinänen, Markku
Overmyer, Kirk
Kangasjärvi, Jaakko
author_sort Brosché, Mikael
collection PubMed
description Plant responses to changes in environmental conditions are mediated by a network of signaling events leading to downstream responses, including changes in gene expression and activation of cell death programs. Arabidopsis thaliana RADICAL-INDUCED CELL DEATH1 (RCD1) has been proposed to regulate plant stress responses by protein-protein interactions with transcription factors. Furthermore, the rcd1 mutant has defective control of cell death in response to apoplastic reactive oxygen species (ROS). Combining transcriptomic and functional genomics approaches we first used microarray analysis in a time series to study changes in gene expression after apoplastic ROS treatment in rcd1. To identify a core set of cell death regulated genes, RCD1-regulated genes were clustered together with other array experiments from plants undergoing cell death or treated with various pathogens, plant hormones or other chemicals. Subsequently, selected rcd1 double mutants were constructed to further define the genetic requirements for the execution of apoplastic ROS induced cell death. Through the genetic analysis we identified WRKY70 and SGT1b as cell death regulators functioning downstream of RCD1 and show that quantitative rather than qualitative differences in gene expression related to cell death appeared to better explain the outcome. Allocation of plant energy to defenses diverts resources from growth. Recently, a plant response termed stress-induced morphogenic response (SIMR) was proposed to regulate the balance between defense and growth. Using a rcd1 double mutant collection we show that SIMR is mostly independent of the classical plant defense signaling pathways and that the redox balance is involved in development of SIMR.
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spelling pubmed-39236672014-02-18 Transcriptomics and Functional Genomics of ROS-Induced Cell Death Regulation by RADICAL-INDUCED CELL DEATH1 Brosché, Mikael Blomster, Tiina Salojärvi, Jarkko Cui, Fuqiang Sipari, Nina Leppälä, Johanna Lamminmäki, Airi Tomai, Gloria Narayanasamy, Shaman Reddy, Ramesha A. Keinänen, Markku Overmyer, Kirk Kangasjärvi, Jaakko PLoS Genet Research Article Plant responses to changes in environmental conditions are mediated by a network of signaling events leading to downstream responses, including changes in gene expression and activation of cell death programs. Arabidopsis thaliana RADICAL-INDUCED CELL DEATH1 (RCD1) has been proposed to regulate plant stress responses by protein-protein interactions with transcription factors. Furthermore, the rcd1 mutant has defective control of cell death in response to apoplastic reactive oxygen species (ROS). Combining transcriptomic and functional genomics approaches we first used microarray analysis in a time series to study changes in gene expression after apoplastic ROS treatment in rcd1. To identify a core set of cell death regulated genes, RCD1-regulated genes were clustered together with other array experiments from plants undergoing cell death or treated with various pathogens, plant hormones or other chemicals. Subsequently, selected rcd1 double mutants were constructed to further define the genetic requirements for the execution of apoplastic ROS induced cell death. Through the genetic analysis we identified WRKY70 and SGT1b as cell death regulators functioning downstream of RCD1 and show that quantitative rather than qualitative differences in gene expression related to cell death appeared to better explain the outcome. Allocation of plant energy to defenses diverts resources from growth. Recently, a plant response termed stress-induced morphogenic response (SIMR) was proposed to regulate the balance between defense and growth. Using a rcd1 double mutant collection we show that SIMR is mostly independent of the classical plant defense signaling pathways and that the redox balance is involved in development of SIMR. Public Library of Science 2014-02-13 /pmc/articles/PMC3923667/ /pubmed/24550736 http://dx.doi.org/10.1371/journal.pgen.1004112 Text en © 2014 Brosché et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Brosché, Mikael
Blomster, Tiina
Salojärvi, Jarkko
Cui, Fuqiang
Sipari, Nina
Leppälä, Johanna
Lamminmäki, Airi
Tomai, Gloria
Narayanasamy, Shaman
Reddy, Ramesha A.
Keinänen, Markku
Overmyer, Kirk
Kangasjärvi, Jaakko
Transcriptomics and Functional Genomics of ROS-Induced Cell Death Regulation by RADICAL-INDUCED CELL DEATH1
title Transcriptomics and Functional Genomics of ROS-Induced Cell Death Regulation by RADICAL-INDUCED CELL DEATH1
title_full Transcriptomics and Functional Genomics of ROS-Induced Cell Death Regulation by RADICAL-INDUCED CELL DEATH1
title_fullStr Transcriptomics and Functional Genomics of ROS-Induced Cell Death Regulation by RADICAL-INDUCED CELL DEATH1
title_full_unstemmed Transcriptomics and Functional Genomics of ROS-Induced Cell Death Regulation by RADICAL-INDUCED CELL DEATH1
title_short Transcriptomics and Functional Genomics of ROS-Induced Cell Death Regulation by RADICAL-INDUCED CELL DEATH1
title_sort transcriptomics and functional genomics of ros-induced cell death regulation by radical-induced cell death1
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3923667/
https://www.ncbi.nlm.nih.gov/pubmed/24550736
http://dx.doi.org/10.1371/journal.pgen.1004112
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