Redox-mediated responses to high temperature in plants
- Author
- Sophie Hendrix, Avilien Dard (UGent) , Andreas J. Meyer and Jean-Philippe Reichheld
- Organization
- Abstract
- As sessile organisms, plants are particularly affected by climate change and will face more frequent and extreme temperature variations in the future. Plants have developed a diverse range of mechanisms allowing them to perceive and respond to these environmental constraints, which requires sophisticated signalling mechanisms. Reactive oxygen species (ROS) are generated in plants exposed to various stress conditions including high temperatures and are presumed to be involved in stress response reactions. The diversity of ROS-generating pathways and the ability of ROS to propagate from cell to cell and to diffuse through cellular compartments and even across membranes between subcellular compartments put them at the centre of signalling pathways. In addition, their capacity to modify the cellular redox status and to modulate functions of target proteins, notably through cysteine oxidation, show their involvement in major stress response transduction pathways. ROS scavenging and thiol reductase systems also participate in the transmission of oxidation-dependent stress signals. In this review, we summarize current knowledge on the functions of ROS and oxidoreductase systems in integrating high temperature signals, towards the activation of stress responses and developmental acclimation mechanisms.
- Keywords
- Antioxidants, Arabidopsis, heat stress, high temperature, redox, ROS, signalling, stress, thiol reductases, SHOCK SIGNAL-TRANSDUCTION, ACTIVATED PROTEIN-KINASES, ABIOTIC STRESS TOLERANCE, ASCORBATE PEROXIDASE 1, HEAT-STRESS, REACTIVE OXYGEN, SUPEROXIDE-DISMUTASE, OXIDATIVE STRESS, ARABIDOPSIS-THALIANA, HYDROGEN-PEROXIDE
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Citation
Please use this url to cite or link to this publication: http://hdl.handle.net/1854/LU-01HF4GNT0Z1JTJFHFXNYS566RZ
- MLA
- Hendrix, Sophie, et al. “Redox-Mediated Responses to High Temperature in Plants.” JOURNAL OF EXPERIMENTAL BOTANY, vol. 74, no. 8, 2023, pp. 2489–507, doi:10.1093/jxb/erad053.
- APA
- Hendrix, S., Dard, A., Meyer, A. J., & Reichheld, J.-P. (2023). Redox-mediated responses to high temperature in plants. JOURNAL OF EXPERIMENTAL BOTANY, 74(8), 2489–2507. https://doi.org/10.1093/jxb/erad053
- Chicago author-date
- Hendrix, Sophie, Avilien Dard, Andreas J. Meyer, and Jean-Philippe Reichheld. 2023. “Redox-Mediated Responses to High Temperature in Plants.” JOURNAL OF EXPERIMENTAL BOTANY 74 (8): 2489–2507. https://doi.org/10.1093/jxb/erad053.
- Chicago author-date (all authors)
- Hendrix, Sophie, Avilien Dard, Andreas J. Meyer, and Jean-Philippe Reichheld. 2023. “Redox-Mediated Responses to High Temperature in Plants.” JOURNAL OF EXPERIMENTAL BOTANY 74 (8): 2489–2507. doi:10.1093/jxb/erad053.
- Vancouver
- 1.Hendrix S, Dard A, Meyer AJ, Reichheld J-P. Redox-mediated responses to high temperature in plants. JOURNAL OF EXPERIMENTAL BOTANY. 2023;74(8):2489–507.
- IEEE
- [1]S. Hendrix, A. Dard, A. J. Meyer, and J.-P. Reichheld, “Redox-mediated responses to high temperature in plants,” JOURNAL OF EXPERIMENTAL BOTANY, vol. 74, no. 8, pp. 2489–2507, 2023.
@article{01HF4GNT0Z1JTJFHFXNYS566RZ,
abstract = {{As sessile organisms, plants are particularly affected by climate change and will face more frequent and extreme temperature variations in the future. Plants have developed a diverse range of mechanisms allowing them to perceive and respond to these environmental constraints, which requires sophisticated signalling mechanisms. Reactive oxygen species (ROS) are generated in plants exposed to various stress conditions including high temperatures and are presumed to be involved in stress response reactions. The diversity of ROS-generating pathways and the ability of ROS to propagate from cell to cell and to diffuse through cellular compartments and even across membranes between subcellular compartments put them at the centre of signalling pathways. In addition, their capacity to modify the cellular redox status and to modulate functions of target proteins, notably through cysteine oxidation, show their involvement in major stress response transduction pathways. ROS scavenging and thiol reductase systems also participate in the transmission of oxidation-dependent stress signals. In this review, we summarize current knowledge on the functions of ROS and oxidoreductase systems in integrating high temperature signals, towards the activation of stress responses and developmental acclimation mechanisms.}},
author = {{Hendrix, Sophie and Dard, Avilien and Meyer, Andreas J. and Reichheld, Jean-Philippe}},
issn = {{0022-0957}},
journal = {{JOURNAL OF EXPERIMENTAL BOTANY}},
keywords = {{Antioxidants,Arabidopsis,heat stress,high temperature,redox,ROS,signalling,stress,thiol reductases,SHOCK SIGNAL-TRANSDUCTION,ACTIVATED PROTEIN-KINASES,ABIOTIC STRESS TOLERANCE,ASCORBATE PEROXIDASE 1,HEAT-STRESS,REACTIVE OXYGEN,SUPEROXIDE-DISMUTASE,OXIDATIVE STRESS,ARABIDOPSIS-THALIANA,HYDROGEN-PEROXIDE}},
language = {{eng}},
number = {{8}},
pages = {{2489--2507}},
title = {{Redox-mediated responses to high temperature in plants}},
url = {{http://doi.org/10.1093/jxb/erad053}},
volume = {{74}},
year = {{2023}},
}
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