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普通小麦中抗冻基因KN2和bar除草剂抗性基因转化的生物弹道转化系统的优化

Optimization of a biolistic transformation system for transfer of antifreeze gene KN2 and the bar herbicide resistance gene in common wheat.

作者信息

Cai L, Sun D F, Sun G L

机构信息

College of Plant Science and Technology, Huazhong Agricultural University, Wuhan, China.

College of Plant Science and Technology, Huazhong Agricultural University, Wuhan, China

出版信息

Genet Mol Res. 2014 Apr 30;13(2):3474-85. doi: 10.4238/2014.April.30.8.

Abstract

We studied the effects of different media for callus induction and differentiation, and pre-culture period of immature wheat embryo culture on biolistic transformation efficiency for including antifreeze gene KN2 and bar conferring resistance to the herbicide bialaphos. The percentage of plantlets generated from induction and differentiation media without Cu2+ was lower than those cultured on differentiation media with Cu2+ (71.15%) or induction media with Cu2+ (68.45%) and both induction and differentiation media with Cu2+ (52.17%). The combinations of Nor medium for callus induction and Cu2+ medium for regeneration, and Cu2+ medium for induction and R medium for regeneration were superior for biolistic transformation. The calli induced on Cu2+ medium and pre-cultured for 4 d before biolistic transformation, and cultured on R medium after biolistic transformation produced the highest percentage (65%) of transgenic plantlets with the KN2 gene. Overall, about 50% plantlets regenerated from calli pre-cultured 4d before bombardment carried the KN2 gene; 44.7% of the plantlets carried the bar gene, which was higher than for any other treatment, followed by pre-culture 1d with 31.43% transformation rate for the KN2 gene and 20% transformation rate for the bar gene.

摘要

我们研究了用于愈伤组织诱导和分化的不同培养基,以及未成熟小麦胚培养的预培养时间对包含抗冻基因KN2和赋予对除草剂双丙氨膦抗性的bar基因的生物弹道转化效率的影响。不含Cu2+的诱导和分化培养基产生的植株百分比低于在含Cu2+的分化培养基(71.15%)、含Cu2+的诱导培养基(68.45%)以及含Cu2+的诱导和分化培养基(52.17%)上培养的植株百分比。用于愈伤组织诱导的Nor培养基和用于再生的Cu2+培养基的组合,以及用于诱导的Cu2+培养基和用于再生的R培养基的组合在生物弹道转化方面表现更优。在Cu2+培养基上诱导并在生物弹道转化前预培养4天,然后在生物弹道转化后在R培养基上培养的愈伤组织产生了最高百分比(65%)的携带KN2基因的转基因植株。总体而言,从轰击前预培养4天的愈伤组织再生的植株中约50%携带KN2基因;44.7%的植株携带bar基因,这高于任何其他处理,其次是预培养1天,KN2基因转化率为31.43%,bar基因转化率为20%。

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