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ROS Regulation During Abiotic Stress Responses in Crop Plants

Frontiers in Plant Science · 2015 · Vol. 6 · pp. 1092–1092
Jun YouZhulong Chan

Abstract

Abiotic stresses such as drought, cold, salt and heat cause reduction of plant growth and loss of crop yield worldwide. Reactive oxygen species (ROS) including hydrogen peroxide (H2O2), superoxide anions (O2 (•-)), hydroxyl radical (OH•) and singlet oxygen ((1)O2) are by-products of physiological metabolisms, and are precisely controlled by enzymatic and non-enzymatic antioxidant defense systems. ROS are significantly accumulated under abiotic stress conditions, which cause oxidative damage and eventually resulting in cell death. Recently, ROS have been also recognized as key players in the complex signaling network of plants stress responses. The involvement of ROS in signal transduction implies that there must be coordinated function of regulation networks to maintain ROS at non-toxic levels in a delicate balancing act between ROS production, involving ROS generating enzymes and the unavoidable production of ROS during basic cellular metabolism, and ROS-scavenging pathways. Increasing evidence showed that ROS play crucial roles in abiotic stress responses of crop plants for the activation of stress-response and defense pathways. More importantly, manipulating ROS levels provides an opportunity to enhance stress tolerances of crop plants under a variety of unfavorable environmental conditions. This review presents an overview of current knowledge about homeostasis regulation of ROS in crop plants. In particular, we summarize the essential proteins that are involved in abiotic stress tolerance of crop plants through ROS regulation. Finally, the challenges toward the improvement of abiotic stress tolerance through ROS regulation in crops are discussed.

Plant Stress Responses and TolerancePhotosynthetic Processes and MechanismsPlant responses to elevated CO2Reactive oxygen speciesAbiotic stressAbiotic componentOxidative stressBiotic stressBiologyCell biologySignal transductionChemistryBiochemistry

Funding

  • Chinese Academy of Sciences
Citations
1,170
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Cited by
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References
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Trends in Plant Science · 2010 · 2,709 citations
The WRKY superfamily of plant transcription factors
Trends in Plant Science · 2000 · 3,076 citations
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