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作 者:石春林[1] 朱祯[1] 徐鸿林[1] 肖桂芳[1] 冯平章[2]
机构地区:[1]中国科学院遗传研究所,北京100101 [2]中国农业科学院植物保护研究所,北京100094
出 处:《Acta Botanica Sinica》2000年第3期269-273,共5页Acta Botanica Sinica(植物学报:英文版)
基 金:国家"8 63"计划资助项目 !K17_0 1_0 1;国家自然科学基金!3 95 80 12
摘 要:构建了高效植物表达载体pBinMoBc ,该载体携带超强表达复合启动子OM及Ω因子控制下的CryIA(c)基因。采用根癌土壤杆菌 (Agrobacteriumtumefaciens (SmithetTownsend)Conn)介导的方法转化烟草 (NicotianatabacumL .) ,ELISA检测表明 ,大多数转基因烟草中CryIA(c)基因表达量均超过 0 .1% ,最高可达 0 .2 5 5 % ;转基因烟草中CryIA(c)基因表达水平与植株发育的时间和空间有关。抗虫检测结果表明 ,转基因烟草具有很强的抗棉铃虫 (He liothisarmigevaHubner)效果。上述结果表明 ,pBinMoBc是一个高效抗虫植物表达载体。Bt toxin genes were the insecticidal genes most widely used in genetic engineering of pest resistant plant, were of important significance to study their expression behavior in transgenic plants. In this work, a plant expression vector, pBinMoBc, was constructed. It contained the Cry IA(c) gene under control of chimeric OM promoter and the Ω factor. The vector was transferred into tobacco (Nicotiana tabacum L.) plant via Agrobacterium _mediated transformation. ELISA assay showed that the expression levels of the Cry IA(c) gene in transgenic tobacco plants were significantly higher than that in wild_type tobacco plants. The highest could be up to 0.255% of total soluble proteins; the expression level of Cry IA(c) gene in transgenic tobacco plant was changeable during the development stages of tobacco plant. Bioassay showed that pBinMoBc transgenic tobacco plants had more notable insecticidal activity than the wild_type tobacco plants. The above results indicated that pBinMoBc was an effective pest_resistent plant expression vector. This study would be very helpful in screening transgenic cotton with high resistance to cotton bollworm (Heliothis armigeva Hubner).
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