[1] Tosi P, R DcOvidio, Napier J A, et al1 Expression of ep-itope-tagged LMW glutenin subunits in starchy endosperm of transgenic wheat and their incorporation into glutenin polymers [J]. Theor Appl Genet, 2004, 108 (3): 468-476.
[2] Yan L, Loukoianov A, Blechl A, et al1 The wheat VRN2gene is a flowering repressor down-regulated by vernalization [J]. Science, 2004, 303: 1640-1644.
[3] Zhang Y, Ding Z,Wen Z, et al1Betaine accumulation and betaine aldehyde dehydrogenase enzyme activity for transgenic wheat under stress condition[J]. Acta Agriculturae Boreal-i Sinica, 2003, 18 (special issue), 36-391 (in Chinese).
[4] Abebe, Guenzi T A C, Martin B, et al1 Tolerance of manito-laccumulating transgenicwheat to water stress and salinity[J]. Plant Physiol, 2003, 131: 1748-1755.
[5] Kumar S, Dhingra A, Daniell H1 Plastid-expressed betaine aldehyde dehydrogenase gene in carrot cultured cells, roots, and leaves confer enhanced salt tolerance[J]. Plant Physiol,2004, 136(1): 2843-2854.
[6] Guo B, Zhang Y, Li H, et al1 Transformaton of wheat with a gene encoding for betaine aldehyde dehydrogenase (BADH) [J]. Acta Botania Sinica, 2000, 42(3): 279-283.
[7] Vasil V, Castillo A M, Fromm N E, et al1 Herbicide resistant fertile transgenic wheat plants obtained by microprojectile bombardment of regenerable embryogenic callus [J]. BioTechnology, 1992, 10: 667-674.
[8] Christou P1 Strategies for variety-independent genetic transformation of important cereals, legumes and woody species utilizing particle bombardment[J]. Euphytica, 1995, 85: 13-27.
[9] Nehra N S, Chibbar R N, Leung N, et al1 K1 Sel-f fertile transgenic wheat plants regenerated from isolated scutellar tissues following microprojectile bombardment with two distinct gene constructs [J]. Plant Journal, 1994, 5: 285-297.
[10] Rasco Gaunt S, Riley A, CannellM, et al1 Procedures allowingthe transformation of a range of European elite wheat varieties via particle bombardment [J]. J Exp Bot, 2001, 52 (37), 865-874.
[11] Patnaik D, Khurana P1 Genetic transformation of Indian bread (T1 aestivum) and pasta (T1 durum) wheat by particle bombardment of mature embryo derived calli [J]. Bio Med Central, 2003, 3(5).
[12] Miroshnichenko D, Filippov M, Dolgov S1 Genetic transformation of Russian wheat varieties for the biotic and abiotic stress resistance [A]. In: Proceedings of the 4th International Crop Science Congress Brisbane, Australia[C]. 2004.
[13] Finer J J, McMullenM D1 Transformation of cotton (Gossypium hirsutum) via particle bombardment [J]. Plant Cell Rep, 1990, 8: 586-589.
[14] Kim J K, Duan X L, Wu R, et al. Molecular and genetic analysis of transgenic rice plants expressing the maize ribosome-inactivating protein b-32 gene and the herbicide resistance bar gene[J]. Molecular Breeding, 1999, 5: 85-941
[15] Cheng M, Fry J E, Pang S, et al1 Genetic transformation of wheat mediated by Agrobacterium tumefaciens [J]. Plant Physiology, 1997, 115: 971-980.
[16] Wu H, Sparks C, Amoah B, et al1 Factors influencing successful Agrobacterium mediated transformation of wheat[J].Plant Cell Reports, 2003, 21(7): 658-668.
[17] Tingay S, McElroy D, Kalla R, et al1 Agrobacterium tumefaciens-mediated barLey transformation[J].The Plant Journal,1997, 11: 1369-1376.
[18] Ozgen M, Onde S, Birsin M, et al1 Transient expression of beta-glucuronidase (GUS) gene in mature embryos of winter durum wheat via microprojectile bombardment [J]. Wheat Information Service, 1999, 89: 30-32.
[19] Khanna H K, Daggard G E1 Agrobacterium mediated transformation of wheat using a superbinary vector and polyamine supplemented medium[J]. Plant Cell Reports, 2003, 21(5),429-436.
[20] Li Y, Jia G, Chen H, et al1 Genetic modification with BADH gene to improve the salt tolerance of tomato[A]. In: Proceedings of the second international conference on sustainable agriculture for food, energy and industry [C]. 2002, 1: 865-877.
[21] Liang Z, Ma D, Tang L, et al1 Expression of the spinach betaine aldehyde dehydrogenase (BADH) gene in transgenic tobacco plants[J]. China J Biotechnol, 1997, 13 (3): 153-159.
[22] Jia G, Zhu Z, Chang F, et al1 Transformation of tomato with the BADH gene from Atriplex improves salt tolerance [J].Plant Cell Rep, 2002, 21: 141-146.
[23] Zhang G, Lu S, Chen S, et al1 Transformation of triploid Bermuda grass (Cynodon dactylon x C1 transvaalensis, cv1 TifEagle) with BADH gene for drought tolerance [A]. In:Proceedings of the Tenth Anniversary Rutgers Turfgrass Symposium[C]. Rutgers University, 2001.
[24] Mickelbart M V, Ejeta G, Rhodes D, et al1 Assessing the contribution of glycinebetaine to environmental stress tolerance in sorghum[A]. Workshop onMolecular Approaches for the Genetic Improvement of Cereals for Stable Production in Water-Limited Environments (CIMMYT)1999. |