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March 13, 2014SHILAP Revista de lepidopterología1,612 citationsOpen Access

Response of plants to water stress

YOYuriko OsakabeKOKeishi OsakabeKSKazuo Shinozaki

Key Points

  • To review the regulatory networks, molecular pathways, and physiological adaptations that govern plant responses to water stress and explore applications for crop biotechnology.
  • Synthesized scientific literature on plant physiological, biochemical, and molecular responses under water-deficit conditions.
  • Evaluated regulatory networks managing photosynthetic capacity, hormone homeostasis, light-damage prevention, and water-use efficiency.
  • Prolonged water deficit substantially impairs photosynthetic capacity, vegetative growth, and reproductive yield across plant species.
  • Complex regulatory networks coordinate hormonal signaling and photoprotection to enhance stress tolerance and maintain metabolic efficiency.

Abstract

Water stress adversely impacts many aspects of the physiology of plants, especially photosynthetic capacity. If the stress is prolonged, plant growth, and productivity are severely diminished. Plants have evolved complex physiological and biochemical adaptations to adjust and adapt to a variety of environmental stresses. The molecular and physiological mechanisms associated with water-stress tolerance and water-use efficiency have been extensively studied. The systems that regulate plant adaptation to water stress through a sophisticated regulatory network are the subject of the current review. Molecular mechanisms that plants use to increase stress tolerance, maintain appropriate hormone homeostasis and responses and prevent excess light damage, are also discussed. An understanding of how these systems are regulated and ameliorate the impact of water stress on plant productivity will provide the information needed to improve plant stress tolerance using biotechnology, while maintaining the yield and quality of crops.

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Cite This Study

Osakabe et al. (2014) studied this question.

synapsesocial.com/papers/69d7efea319e71454dbede24https://doi.org/10.3389/fpls.2014.00086
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