Hu C A,Delauney A,Verma D S. A bifunctional enzyme?(Δ1-pyrroline-5-carboxylate synthetase)catalyzes the first?two steps in proline biosynthesis in plants[J]. Proc Natl?Acad Sci,1992,89:9354-9358.
[4]
Khedr A H,Abbas M A,Wahid A A,et al. Abogadallah?GM. Proline induces the expression of salt-stress-responsive proteins and may improve the adaptation of Pancratium maritimum L. to salt stress[J]. Journal of Experiment?Botany,2003,54:2553-2562.
Hong Z,Lakkineni K,Zhang Z,et al. Removal of feedback inhibition of Δ1-pyrroline-5-carboxylate synthetase?results in increased proline accumulation and protection?of plants from osmotic stress[J]. Plant Physiology,?2000,122:1129-1136.
[10]
Armengaud P,Thiery L,Buhot N,et al. Transcriptional?regulation of proline biosynthesis in Medicago truncatula?reveals developmental and environmental specific features[J]. Physiol Plant,2004,120:442-450.
[11]
Aida H S,Radhia G B,Amira B. Over expression of Δ1pyrroline-5-carboxylate synthetase increases proline production and confers salt tolerance in transgenic potato?plants[J]. Plant Science,2005,169(4):74-752.
[12]
?Chen J B,Wang S M,Jing R L,et al. Cloning the?PvP5CS gene from common bean(Phaseolus vulgaris)?and its expression patterns under abiotic stresses[J].?Journal of Plant Physiology,2009,166(1):12-19.
?Zhu B. Overexpression of a Δ1-pyrroline-5-carboxylate?synthetase gene and analysis of tolerance to water and?salt stress in transgenic rice[J]. Plant Science,1998,?139:40-48.
Zhao F Y,Guo S L,Wang Z L,et al. Recent advances in?study on transgenic plants for salt tolerance[J]. Journal of?Plant Physiology and Molecular Biology,2003,29(3):71-78.
[18]
?Mansour M. Physiological attributes associated with early?season against NaCl stress[J]. Plant Physiology and Biochemistry,1998,39(10):1039-1044.
[19]
Kavi Kishor P B,Sangam S,Amrutha R N,et al. Regulation of proline biosynthesis,degradation,uptake and transport in higher plants:Its implications in plant growth and?abiotic stressto lerance[J]. Current Science,2005,88:?424-438.