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农杆菌介导抗储粮害虫转基因小麦(Triticum aestivum L.)的获得及分析
引用本文:毕瑞明,贾海燕,封德顺,王洪刚.农杆菌介导抗储粮害虫转基因小麦(Triticum aestivum L.)的获得及分析[J].生物工程学报,2006,22(3):431-437.
作者姓名:毕瑞明  贾海燕  封德顺  王洪刚
作者单位:1. 国家小麦改良中心泰安分中心,山东省作物生物学重点实验室,山东农业大学农学院,泰安,271018;菏泽学院生命科学系,菏泽,274015
2. 国家小麦改良中心泰安分中心,山东省作物生物学重点实验室,山东农业大学农学院,泰安,271018
基金项目:农业部农业结构调整技术研究专项基金
摘    要:以本实验室选育的小麦优良品系的胚性愈伤组织为材料,采用农杆菌介导将抗虫基因豇豆胰蛋白酶抑制剂基因CpTI转入小麦培养细胞,经筛选获得抗卡那霉素的愈伤组织并再生植株。经PCR和实时PCR检测、PCR-Southern和Southernblot验证,确定了3株独立再生植株为含有CpTI的转基因植株。农杆菌菌浓度、侵染时间及转化处理方式对小麦转化率均有明显影响。3株转基因植株正常可育并结籽,形成转基因株系。外源基因在转基因植株T1代中的分离呈多样性,部分株系(转基因株系T-Ⅰ、T-Ⅲ)表现出孟德尔遗传规律。抗虫试验表明,3株转基因植株T2代籽粒对储粮害虫麦蛾具有一定的抗性,转基因株系T-Ⅰ、T-Ⅱ、T-Ⅲ及非转基因植株的T2代籽粒虫蛀率分别为19·8%、21·9%、32·9%和58·3%。转基因植株T1代群体农艺性状调查显示,3个株系具有良好的农艺性状,为小麦的遗传改良提供了新的种质抗虫材料。

关 键 词:根癌农杆菌  CpTI基因  储粮害虫  转基因小麦
文章编号:1000-3061(2006)03-0431-07
修稿时间:2005年10月31

Transgenic Wheat (Triticum aestivum L.) with Increased Resistance to the Storage Pest Obtained by Agrobacterium tumefaciens - mediated
BI Rui-Ming,JIA Hai-Yan,FENG De-Shun,WANG Hong-Gang.Transgenic Wheat (Triticum aestivum L.) with Increased Resistance to the Storage Pest Obtained by Agrobacterium tumefaciens - mediated[J].Chinese Journal of Biotechnology,2006,22(3):431-437.
Authors:BI Rui-Ming  JIA Hai-Yan  FENG De-Shun  WANG Hong-Gang
Institution:Subcenter of National Wheat Improvement Center, The Key Laboratory of Crop Biology of Shandong, Agronomy College of Shandong Agricultural University, Tainan 271018, China.
Abstract:The transgenic wheat of improved resistance to the storage pest was production. We have introduced the cowpea trypsin inhibitor gene (CpTI) into cultured embryonic callus cells of immature embryos of wheat elite line by Agrobacterium-mediated method. Independent plantlets were obtained from the kanamycin-resistant calli after screening. PCR and real time PCR analysis, PCR-Southern and Southern blot hybridization indicated that there were 3 transgenic plants viz. transformed- I, II and III (T- I, T-II and T-III). The transformation frequencies were obviously affected by Agrobacterium concentration, the infection duration and transformation treatment. The segregations of CpTI in the transgenic wheat progenies were not easily to be elucidated, and some transgenic wheat lines (T- I and T-III) showed Mendelian segregations. The determinations of insect resistance to the stored grain insect of wheat viz. the grain moth (Sitotroga cerealella Olivier) indicated that the 3 transgenic wheat progeny seeds moth-resistance was improved significantly. The seed moth-eaten ratio of T- I, T-II, T-III and nontransformed control was 19.8%, 21.9%, 32.9% and 58.3% respectively. 3 transgenic wheat T1 PCR-positive plants revealed that the 3 transgenic lines had excellent agronomic traits. They supplied good germplasm resource of insect-resistance for wheat genetic improvement.
Keywords:Agrobacterium tumefaciens  cowpea trypsin inhibitor gene  storage pest  transgenic wheat  
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