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      Stress-induced synthesis of proline confers tolerance to water deficit in transgenic wheat.

      Journal of Plant Physiology
      Gene Expression Regulation, Plant, Plants, Genetically Modified, Proline, biosynthesis, Time Factors, Triticum, embryology, genetics, metabolism, Water

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          Abstract

          Water deficit is one of the main abiotic factors that affect spring wheat planted in subtropical regions. Accumulation of proline appears to be a promising approach to maintain the productivity of plants under stress condition. However, morphological alterations and growth reduction are observed in transgenic plants carrying genes coding for osmoprotectants controlled by constitutive promoters. We report here the effects of water deficit on wheat plants transformed with the Vigna aconitifolia Delta(1)-pyrroline-5-carboxylate synthetase (P5CS) cDNA that encodes the key regulatory enzyme in proline biosynthesis, under the control of a stress-induced promoter complex-AIPC. Transgenic wheat plants submitted to 15 days of water shortage presented a distinct response. We have found that drought resulted in the accumulation of proline. The tolerance to water deficit observed in transgenic plants was mainly due to protection mechanisms against oxidative stress and not caused by osmotic adjustment.

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          Author and article information

          Journal
          17604875
          10.1016/j.jplph.2007.05.001

          Chemistry
          Gene Expression Regulation, Plant,Plants, Genetically Modified,Proline,biosynthesis,Time Factors,Triticum,embryology,genetics,metabolism,Water

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