Acta Agron Sin ›› 2014, Vol. 40 ›› Issue (01): 63-71.doi: 10.3724/SP.J.1006.2014.00063
• CROP GENETICS & BREEDING·GERMPLASM RESOURCES·MOLECULAR GENETICS • Previous Articles Next Articles
SU Rui-Bo1,2,CHEN Ming2,*,XU Zhao-Shi,LI Lian-Cheng,MA Qing1,*,MA You-Zhi2
[1]Barro F, Cannell M, Lazzeri P, Barcelo P. The influence of auxins on transformation of wheat and Tritordeum and analysis of transgene integration patterns in transformants. Theor Appl Genet, 1998, 97: 684–695[2]Cannell M, Doherty A, Lazzeri P, Barcelo P. A population of wheat and Tritordeum transformants showing a high degree of marker gene stability and heritability. Theor Appl Genet, 1999, 99: 772–784[3]Linden R M, Winocour E, Berns K I. The recombination signals for adeno-associated virus site-specific integration. Proc Natl Acad Sci USA, 1996, 93: 7966–7972[4]Müller A E, Kamisugi Y, Grüneberg R, Niedenhof I, Hörold R J, Meyer P. Palindromic sequences and A+T-rich DNA elements promote illegitimate recombination in Nicotiana tabacum. J Mol Biol, 1999, 291: 29–46[5]Fu X, Duc L T, Fontana S, Bong B B, Tinjuangjun P, Sudhakar D, Twyman R M, Christou P, Kohli A. Linear transgene constructs lacking vector backbone sequences generate low-copy-number transgenic plants with simple integration patterns. Transgenic Res, 2000, 9: 11–19[6]姚琴, 丛玲, 汪越胜, 陈明洁, 杨广笑, 何光源. 无载体框架序列转基因小麦中外源基因表达框的遗传分析. 遗传, 2006, 28: 695–698Yao Q, Cong L, Wang Y S, Chen M J, Yang G X, He G Y. Inheritance of the foreign gene 1Ax 1 in transgenic wheat (Triticum aestivum L.) with gene cassettes lacking vector backbone sequences. Hereditas (Beijing), 2006, 28: 695–698 (in Chinese with English abstract)[7]王天云, 袁保梅, 薛乐勋. 核基质结合区与转基因沉默. 生物学通报,2004, 39(12): 15–17 (in Chinese)Wang T Y, Yuan B M, Xue L X. Scaffold attachment region and Transgene Silence. Bull Biol, 2004, 39(12): 15–17 (in Chinese)[8]Wang T, Xue L, Hou W, Yang B, Chai Y, Ji X, Wang Y. Increased expression of transgene in stably transformed cells of Dunaliella salina by matrix attachment regions. Appl Microbiol Biotechnol, 2007, 76: 651–657[9]Allen G C, Hall G E, Childs L C, Weissinger A K, Spiker S, Thompson W F. Scaffold attachment regions increase reporter gene expression in stably transformed plant cells. Plant Cell, 1993, 5: 603–613[10]Breyne P, Van Montagu M, Depicker N, Gheysen G. Characterization of a plant scaffold attachment region in a DNA fragment that normalizes transgene expression in tobacco. Plant Cell, 1992, 4: 463–471[11]Weng H, Pan A, Yang L, Zhang C, Liu Z, Zhang D. Estimating number of transgene copies in transgenic rapeseed by real-time PCR assay with HMG I/Y as an endogenous reference gene. Plant Mol Biol Rep, 2004, 22: 289–300[12]Thi Loc N, Tinjuangjun P, Gatehouse A M, Christou P, Gatehouse J A. Linear transgene constructs lacking vector backbone sequences generate transgenic rice plants which accumulate higher levels of proteins conferring insect resistance. Mol Breed, 2002, 9: 231–244[13]Vain P, Worland B, Kohli A, Snape J W, Christou P, Allen G C, Thompson W F. Matrix attachment regions increase transgene expression levels and stability in transgenic rice plants and their progeny. Plant J, 1999, 18: 233–242[14]Spiker S, Thompson W F. Nuclear matrix attachment regions and transgene expression in plants. Plant Physiol, 1996, 110: 15–21[15]Holmes-Davis R, Comai L. Nuclear matrix attachment regions and plant gene expression. Trends Plant Sci, 1998, 3: 91–97[16]van der Geest A H M, Hall G E Jr, Spiker S, Hall T C. The β-phaseolin gene is flanked by matrix attachment regions. Plant J, 1994, 6: 413–423[17]Allen G C, Hall G, Michalowski S, Newman W, Spiker S, Weissinger A K, Thompson W F. High-level transgene expression in plant cells: effects of a strong scaffold attachment region from tobacco. Plant Cell, 1996, 8: 899–913 |
No related articles found! |
|