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Original

Cloning, sequencing and salt induced expression of PEAMT and BADH in oilseed rape (Brassica napus)

FULL LENGTH RESEARCH PAPER

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Pages 364-371 | Received 24 Feb 2005, Published online: 11 Jul 2009

References

  • Alia, Chen THH, Murata N. Transformation with a gene for choline oxidase enhances the cold tolerance of Arabidopsis during germination and early growth. Plant Cell Environ 1998a; 21: 232–239
  • Alia, Hayashi, Sakamoto A, Murata N. Enhancement of the tolerance of Arabidopsis to high temperatures by genetic engineering of the synthesis of glycinebetaine. Plant J 1998b; 16: 155–161
  • Altschul SF, Madden TL, Schaffer AA, Zhang J, Zhang Z, Miller W, Lipman DJ. Gapped BLAST and PSIBLAST: A new generation of protein database search programs. Nucleic Acids Res 1997; 25: 3389–3402
  • Bannai H, Tamada Y, Maruyama O, Nakai K, Miyano S. Extensive feature detection of N-terminal protein sorting signals. Bioinformatics 2002; 18(2)298–305
  • Bohnert HJ, Shen B. Transformation and compatible solutes. Sci Hort 1999; 78: 237–260
  • Chen WP, Li PH, Chen THH. Glycinebetaine increases chilling tolerance and reduces chilling-induced lipid peroxidation in Zea mays. L. Plant Cell Environ 2000; 23: 609–618
  • Diamant S, Eliahu N, Rosenthal D, Goloubino P. Chemical chaperones regulate molecular chaperones in vitro and in cells under combined salt and heat stresses. J Biol Chem 2001; 276: 39586–39591
  • Gary JD, Lin WJ, Yang MC, Herschman HR, Clarke S. The predominant protein-arginine methyltransferase from Saccharomyces cerevisiae. J Biol Chem 1996; 271: 12585–12594
  • Ghassemi F, Jakeman A, Nix H. Salinization of land and water resources: Human causes, extent, management, and case studies. University of New South Wales Press, Sydney 1995
  • Hare PD, Cress WA, Van SJ. Dissecting the roles of osmolyte accumulation during stress. Plant Cell Environ 1998; 21: 535–553
  • Hayashi H, Alia, Sakamoto A, Nonaka H, Chen THH, Murata N. Enhanced germination under high-salt conditions of seeds of transgenic Arabidopsis with a bacterial gene (codA) for choline oxidase. J Plant Res 1998; 111: 357–362
  • Hayashi H, Mustardy L, Deshnium P, Ida M, Murata N. Transformation of Arabidopsis thaliana with the codA gene for choline oxidase: Accumulation of glycine betaine and enhanced tolerance to salt and cold stress. Plant J 1997; 12: 133–142
  • Kagan RM, Clarke S. Widespread occurrence of three sequence motifs in diverse S-adenosylmethionine dependent methyltransferases suggests a common structure for these enzymes. Arch Biochem Biophys 1994; 310: 417–427
  • Lee GJ, Roseman AM, Saibil HR, Vierling E. A small heat shock protein stably binds heat-denatured model substrates and can maintain a substrate in folding-competent state. EMBO J 1997; 3: 659–671
  • Lilius G, Holmberg N, Buw L. Enhanced NaCl stress tolerance in transgenic tobacco expressing bacterial choline dehydrogenase. Biotechnology 1996; 14: 177–180
  • McCue KF, Hanson AD. Drought and salt tolerance: Toward understanding and application. Trends Biotechnol 1990; 8: 358–362
  • McNeil SD, Nuccio ML, Hanson AD. Betaines and related osmoprotectants: Targets for metabolic engineering of stress resistance. Plant Physiol 1999; 120: 945–949
  • Michael L, Nuccio MJ, Ziemak SA, Henry EA, Weretilnyk, Andrew DH. cDNA cloning of phosphoethanolamine N-Methyltransferase from spinach by complementation in Schizosaccharomyces pombe and characterization of the recombinant enzyme. J Biol Chem 2000; 275: 14095–14101
  • Mou ZL, Wang XQ, Fu ZM, Dai Y, Han Ch, Ouyang J, Bao F, Hu YX, Li JY. Silencing of Phosphoethanolamine N-Methyltransferase results in temperature-sensitive male sterility and salt hypersensitivity in Arabidopsis. Plant Cell 2002; 14: 2031–2043
  • Nakai K, Kanehisa M. A knowledge base for predicting protein localization sites in eukaryotic cells. Genomics 1992; 14: 897–911
  • Nuncio ML, Russell BL, Nolte KD, Rathinasabapathi B, Gage DA, Hanson AD. The endogenous choline supply limits glycine betaine synthesis in transgenic tobacco expressing choline monooxygenase. Plant J 1998; 16: 487–498
  • Rhodes D, Hanson AD. Quaternary ammonium and tertiary sulfonium compounds in higher plants. Annu Rev Plant Physiol Plant Mol Biol 1993; 44: 357–384
  • Russell BL, Rathinasabapathi B, Hanson AD. Osmotic stress induces expression of choline monooxygenase in sugar beet and amaranth. Plant Physiol 1998; 116: 859–865
  • Sakamoto A, Murata N. The role of glycine betaine in the protection of plants from stress: Clues from transgenic plants. Plant Cell Environ 2002; 25: 163–171
  • Sakamoto A, Valverde R, Alia, Chen THH, Murata N. Transformation of Arabidopsis with the codA gene for choline oxidase enhances freezing tolerance of plants. Plant J 2000; 22: 449–453
  • Schultz J, Milpetz F, Bork P, Ponting CP. SMART, a simple modular architecture research tool: Identification of signaling domains. Proc Natl Acad Sci USA 1998; 95: 5857–5864
  • Schultz J, Copley RR, Doerks T, Ponting CP, Bork P. SMART: A web-based tool for the study of genetically mobile domains. Nucleic Acids Res 2000; 28: 231–234
  • Scott DM, Michael LN, Michael JZ, Andrew DH. Enhanced synthesis of choline and glycine betaine in transgenic tobacco plants that overexpress phosphoethanolamine N-methyltransferase. Proc Natl Acad Sci 2001; 98: 10001–10005
  • Tony HH, Chenand NM. Enhancement of tolerance of abiotic stress by metabolic engineering of betaines and other compatible solutes. Curr Opin Plant Biol 2002; 5: 250–257
  • Wang WX, Vinocur B, Altman A. Plant responses to drought, salinity and extreme temperatures: Towards genetic engineering for stress tolerance. Planta 2003; 218: 1–14
  • Weretilnyk EA, Hanson AD. Molecular cloning of a plant betaine-aldehyde dehydrogenase, an enzyme implicated in adaptation to salinity and drought. Proc Natl Acad Sci 1990; 87: 2745–2749
  • Zhang HX, Hodson JN, Williams JP, Blumwald E. Engineering salt-tolerant Brassica plants: Characterization of yield and seed oil quality in transgenic plants with increased vacuolar sodium accumulation. Proc Natl Acad Sci 2001; 98: 12832–12836

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