中国激光, 1997, 24 (4): 381, 网络出版: 2006-10-31  

利用激光微束穿刺法将GUS基因导入百脉根并获得转基因植物的研究

Introduction of Gus Gene into Lotus and Acquisition of Transgenic Plants via Laser Microbeam Puncture
作者单位
中国科学院遗传研究所, 北京 100101
摘要
利用激光微束穿刺法将pBI121质粒DNA导入百脉根。该方法是用高渗缓冲液对百脉根子叶进行预处理,通过激光微束对子叶细胞进行穿刺,然后在卡那霉素培养基上筛选出具抗性的绿色小苗。转化植物在含卡那霉素浓度为100 μg/ml条件下筛选培养三代后,获四株转基因植物,取其中两株进行总DNA PCR扩增分析,皆为阳性。证实GUS基因已导入百脉根中。通过研究建立了激光微束穿刺法转化百脉根的技术体系,从而证明该转化方法操作简便,重复性好,转化频率较高,为高等植物遗传转化提供了一个新途径。
Abstract
In several ways of introduction of foreign gene into plants, laser microbeam puncture is a potential and available method for transformation of foreign genes directly into plant tissue. The purpose of this research is uptaking the laser microbeam puncture technique to introduce pBI121 plasmid DNA containing GUS gene into Lotus. The laser microbeam irradiation source was a third harmonic Nd∶YAG laser. Before irradiation, the cells of cotyledon must be pretreated in high osmotic buffer. Then cultured the punctured tissues on screening media containing kanamycin to select green transgenic plantlets. After the seedings were selected on screening medium (km 100 mg/l) for three generations, we got four transgenic plants. Two of them were tested by PCR with GUS special primer. The results were positive, and proved that the GUS gene had been introduced into Lotus. We have established a laser microbeam puncture transformation system of Lotus, and proved that this system was easy to operate and replicate with relative high transformation frequency, thus providing a new way for high plant genetic transformation.
参考文献

[1] J. Pasowski. Direct gene transfer to plants. EMBO J., 1984, 3∶ 2717~2722

[2] 贾士荣. 植物遗传转化进展. 江苏农业学报, 1990, 6∶ 44~47

[3] M. Tsukakoshi, S. Kurata, Y. Nomiya et al.. A novel method of DNA transfection by laser microbeam cell surgery. Appl. Phys. B, 1984, 35∶ 135~140

[4] W. Tao, J. Wilkinson, E. J. Stanbridge et al.. Direct gene transfer into human cultured cells facilitated by laser micropuncture of the cell membrane. Proc. Natl. Acad. Sci. USA, 1987, 84∶ 1840~1845

[5] G. Weber, S. Monajembashi, K. O. Greulich et al.. Injection of DNA into plant cell with UV-laser microbeam. Naturwissens Chafter, 1988, 75. 35~36

[6] G. Weber, S. Monajembashi, K. O. Greulich et al.. Uptake of DNA in chloroplasts of Brassica napus (L.) facilitated by a UV-laser microbeam. Eurpean Journal of Cell Biology, 1989, 49∶ 73~79

[7] G. Weber, S. Monajembashi, J. Wolfrum et al.. Genetic changes induced in higher plant cell by a laser microbeam. Physiologia Plantarum, 1990, 79∶ 190~193

[8] 周志康,王兰岚,宋桂英 等. JY-1型激光细胞显微照射系统(摘要). 激光生物学, 1992, 1∶ 43

[9] J. Sambrook, E. F. Fritsch, T. Maniatis. Molecular cloning. A Laboratory Manual, 2nd ed., New York: Cold Spring Harbor Laboratory Press, 1989. 672~691

[10] Wang Lanlan, Fu Rongzhao, Song Guiying et al.. Introduction of exogenous genes into wheat using puncture technique of microbeam laser. Chinese Journal of Genetics, 1995, 22(3)∶ 205~211

[11] 王兰岚,宋桂英,周奕华 等. 利用激光微束将外源基因导入高等植物细胞的研究. 激光生物学, 1993, 2∶ 279~281

[12] 王兰岚,宋桂英,张健 等. 利用微束激光将外源基因导入小麦幼胚并获得转基因植株的研究. 激光生物学, 1993, 2∶ 281

周奕华, 韩厉玲, 王兰岚, 宋桂英, 陈正华. 利用激光微束穿刺法将GUS基因导入百脉根并获得转基因植物的研究[J]. 中国激光, 1997, 24(4): 381. 周奕华, 韩厉玲, 王兰岚, 宋桂英, 陈正华. Introduction of Gus Gene into Lotus and Acquisition of Transgenic Plants via Laser Microbeam Puncture[J]. Chinese Journal of Lasers, 1997, 24(4): 381.

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