KOU Kun,LIU Li-jun,QU Shan-shan,et al.Improvement of Regeneration System in New Soybean Line Heinong 56[J].Soybean Science,2009,28(03):400-402,408.[doi:10.11861/j.issn.1000-9841.2009.03.0400]
大豆新品系黑农56子叶节再生体系的优化
- Title:
- Improvement of Regeneration System in New Soybean Line Heinong 56
- 文章编号:
- 1000-9841(2009)03-0400-03
- Keywords:
- Soybean; Cotyldonary nodes; Regeneration
- 分类号:
- S565.1
- 文献标志码:
- A
- 摘要:
- 为获得高效的大豆再生体系,选用大豆新品系黑农56子叶节进行了组织培养的研究,确定黑农56最适的萌发培养基与芽诱导培养基激素浓度。即萌发培养基为不含6-BA的MS培养基;芽诱导培养基添加6-BA和IBA的浓度分别为2.0 mgL-1,0.2 mgL-1的B5培养基。并确定黑农56的草铵膦选择压力为4 mgL-1?。
- Abstract:
- In order to acquire high efficiency soybean regeneration system,cotyledonry nodes organ of new soybean line Heinong 56 was used as explants.The effect of different concentration of 6-BA and IBA on the ratio of shooting was investigated in the shoot induction medium.The optimum concentration of 6-BA and IBA was 2.0 mgL-1,0.2 mgL-1,respectively.Adopting the model of late selection,the optimal concentration of Glufosinate-ammonium was 4.0 mgL-1in phase of shoots induction.
参考文献/References:
[1]Samoylov V M,Tucker D M,ThibaudNissen F,et al.A liqidmadiumbased protocol for regeneration from embryogenic soybean cultures[J].Plant Cell Reports,1998,18:49-54.[2] Wei Z M,Xu Z H.Plant regeneration from protoplast of soybean(Glycine max L)[J].Plant Cell Reports,1998,7:348-351.[3]肖文言,王连铮.大豆原生质体培养研究进展[J].作物杂志,1994,3:23-25.(Xiao W Y,Wang L Z.Advances in protoplast culture of soybean[J].Crops,1994,3:23-25.)[4]刘海坤,卫志明.大豆遗传转化研究进展[J].植物生理与分子生物学学报,2005,31(2):126-134.(Liu H K,Wei Z M.Recent advances in soybean genetic transformation[J].Acta Phytophysiologica Sinica 2005,31(2):126-134.)
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备注/Memo
基金项目:国家高技术研究发展计划(863计划)资助项目(2006AA10ZF9);国家转基因重大专项(2008ZX08004-002)资助项目。