Abiotic stresses negatively influence the survival, biomass production, and yield of crops. Tolerance to diverse abiotic stresses in plants is regulated by multiple genes responding differently to various stress conditions. Genetic engineering approaches have helped develop transgenic crops with improved abiotic stress tolerance including yields. The dehydration-responsive element binding protein (DREB) is a stress-responsive transcription factor that modulates the expression of downstream stress-inducible genes, which confer simultaneous tolerance to multiple stresses. This review focuses on advances in the development of DREB transgenic crops and their characterization under various abiotic stress conditions. It further discusses the mechanistic aspects of abiotic stress tolerance, yield gain, the fate of transgenic plants under controlled and field conditions and future research directions toward commercialization of DREB transgenic crops.
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ICAR Directorate Groundnut Res, Post Box 1, Junagadh 362001, Gujarat, India
CSRTI, Mysuru 570008, Karnataka, IndiaICAR Directorate Groundnut Res, Post Box 1, Junagadh 362001, Gujarat, India
Sarkar, Tanmoy
Thankappan, Radhakrishnan
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ICAR Directorate Groundnut Res, Post Box 1, Junagadh 362001, Gujarat, IndiaICAR Directorate Groundnut Res, Post Box 1, Junagadh 362001, Gujarat, India
Thankappan, Radhakrishnan
Mishra, Gyan P.
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ICAR Directorate Groundnut Res, Post Box 1, Junagadh 362001, Gujarat, India
ICAR Indian Agr Res Inst, Div Genet, Delhi 110012, IndiaICAR Directorate Groundnut Res, Post Box 1, Junagadh 362001, Gujarat, India
Mishra, Gyan P.
Nawade, Bhagwat D.
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ICAR Directorate Groundnut Res, Post Box 1, Junagadh 362001, Gujarat, IndiaICAR Directorate Groundnut Res, Post Box 1, Junagadh 362001, Gujarat, India