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分子改造Cry蛋白基因的转基因玉米创制及其抗虫功能评价
引用本文:王阳,杨朔,尹悦佳,刘洋,李楠,柳青,于志晶,刘相国,冯树丹,郝东云.分子改造Cry蛋白基因的转基因玉米创制及其抗虫功能评价[J].玉米科学,2015,23(6):27-34.
作者姓名:王阳  杨朔  尹悦佳  刘洋  李楠  柳青  于志晶  刘相国  冯树丹  郝东云
作者单位:哈尔滨师范大学生命科学与技术学院, 哈尔滨 150025,吉林大学/分子酶学工程教育部重点实验室, 长春 130012,吉林省农业科学院, 长春 130033,吉林省农业科学院, 长春 130033,吉林省农业科学院, 长春 130033,吉林省农业科学院, 长春 130033,吉林省农业科学院, 长春 130033,吉林省农业科学院, 长春 130033,哈尔滨师范大学生命科学与技术学院, 哈尔滨 150025,吉林省农业科学院, 长春 130033
基金项目:黑龙江省自然基金项目“转MAD1 基因球孢白僵菌工程菌株防治玉米螟配套技术研究”(C201307)
摘    要:利用结构域交换和密码子优化方法对苏云金芽孢杆菌(Bt)杀虫晶体蛋白Cry1Ab进行合理化设计改造,获得新型Bt蛋白编码基因cry FLIa。利用农杆菌介导法将该基因转入玉米Hi II中,对转基因后代开展分子鉴定和抗性评价等相关工作。结果表明,cryFLIa基因已整合进玉米基因组中,连续3代自交材料检测显示,转基因玉米目标基因正常表达并稳定遗传;蛋白在植株叶片中发育各时期的表达各异,在灌浆期蛋白表达量较高(471.883 ng/g)。室内生测和田间人工接虫试验表明,转cryFLIa基因玉米具有抗亚洲玉米螟的能力。

关 键 词:玉米  苏云金芽孢杆菌(Bt)  分子改造  亚洲玉米螟
收稿时间:2015/10/21 0:00:00

Rational Mutation of Cry Protein and the Insect Resistance Assessment in the Transgenic Maize
WANG Yang,YANG Shuo,YIN Yue-ji,LIU Yang,LI Nan,LIU Qing,YU Zhi-jing,LIU Xiang-guo,FENG Shu-dan and HAO Dong-yun.Rational Mutation of Cry Protein and the Insect Resistance Assessment in the Transgenic Maize[J].Journal of Maize Sciences,2015,23(6):27-34.
Authors:WANG Yang  YANG Shuo  YIN Yue-ji  LIU Yang  LI Nan  LIU Qing  YU Zhi-jing  LIU Xiang-guo  FENG Shu-dan and HAO Dong-yun
Institution:College of Life Sciences and Technology, Harbin Normal University, Harbin 150025,Key Laboratory for Molecular Enzymology and Engineering, Ministry of Education, Jilin University, Changchun 130012,Jilin Academy of Agricultural Sciences, Changchun 130033, China,Jilin Academy of Agricultural Sciences, Changchun 130033, China,Jilin Academy of Agricultural Sciences, Changchun 130033, China,Jilin Academy of Agricultural Sciences, Changchun 130033, China,Jilin Academy of Agricultural Sciences, Changchun 130033, China,Jilin Academy of Agricultural Sciences, Changchun 130033, China,College of Life Sciences and Technology, Harbin Normal University, Harbin 150025 and Jilin Academy of Agricultural Sciences, Changchun 130033, China
Abstract:Cry1 proteins were mutated from Bacillus thuringiensis by protein rational design, a mutant CryFLIa was gained that contains the selected domains from different Cry1s. The maize gene codon-optimized cryFLIa was induced into maize with the agrobacterium-mediated transformation. PCR and RT-PCR assessment were performed to 3 self-generations, exhibiting that the cryFLIa was integrated into the maize genome with stable expression. The cryFLIa expressed in various parts of the transgenic maize throughout life cycle leaves with the highest occurring during grain filling stage. Insect resistance assessment in both laboratory and the field showed that the cryFLIa trans-genic maize resisted to the Asian corn borer Ostrinia furnacalis. The results suggested that rational protein engineer-ing produced Cry protein of expected functionality, and the mutant cryFLIa possesses potential in insect-resistant maize biotech breeding.
Keywords:Maize  Bacillus thuringiensis  Rational protein engineering  Asian corn borer
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