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Reactive oxygen species homeostasis and signalling during drought and salinity stresses

Plant Cell & Environment · 2009 · Vol. 33(4) · pp. 453–467
Gad MillerNobuhiro SuzukiSultan Ciftci-YilmazRon Mittler

Abstract

Water deficit and salinity, especially under high light intensity or in combination with other stresses, disrupt photosynthesis and increase photorespiration, altering the normal homeostasis of cells and cause an increased production of reactive oxygen species (ROS). ROS play a dual role in the response of plants to abiotic stresses functioning as toxic by-products of stress metabolism, as well as important signal transduction molecules. In this review, we provide an overview of ROS homeostasis and signalling in response to drought and salt stresses and discuss the current understanding of ROS involvement in stress sensing, stress signalling and regulation of acclimation responses.

Plant Stress Responses and TolerancePhotosynthetic Processes and MechanismsPlant responses to water stressReactive oxygen speciesAbiotic componentHomeostasisCell biologySalinityPhotorespirationAbiotic stressSignal transductionBiologyAcclimatization

MeSH terms

AcclimatizationChloroplastsHomeostasisMitochondriaPhotosynthesisPlant Growth RegulatorsPlantsSodium ChlorideStress, PhysiologicalWaterSignal TransductionReactive Oxygen SpeciesGene Expression Regulation, PlantPeroxisomesDroughts

Funding

  • National Science Foundation
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Reactive oxygen species homeostasis and signalling during drought and salinity stresses · Scinovex