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特异性杀虫基因Bt cry3A在桑粒肩天牛幼虫两种肠道常驻内生菌中的转化和表达
引用本文:王中康,何伟,彭国雄,夏玉先,李强,殷幼平.特异性杀虫基因Bt cry3A在桑粒肩天牛幼虫两种肠道常驻内生菌中的转化和表达[J].微生物学报,2008,48(9):1168-1174.
作者姓名:王中康  何伟  彭国雄  夏玉先  李强  殷幼平
作者单位:重庆大学生物工程学院,重庆市杀虫真菌生物农药工程技术中心,重庆市功能基因及调控技术重点实验室,重庆,400030
基金项目:重庆市自然科学基金,重庆市科学技术委员会重点攻关项目
摘    要:目的]将特异性杀虫毒蛋白基因Bt cry3A转入桑粒肩天牛(Apriona germari Hope,Ag)幼虫肠道常驻内生菌中,构建能在天牛幼虫肠道中定殖并表达特异性杀虫基因Bt cry3A的工程菌.方法]以传统方法和16S rDNA分子生物学分析等方法分离、鉴定Ag幼虫肠道优势的常驻内生菌,从中筛选出适合转化的候选菌株.利用电转化技术将含有对鞘翅目昆虫具专一性毒力Bt cry3A基因的Escherichia coli-Bacillus thuringiensis穿梭表达质粒pHT305a和pHT7911分别转入Ag幼虫肠道常驻内生菌短短芽孢杆菌(Brevibacillus brevis Ag12,Ag12)和苏云金芽孢杆菌(Bacillus thuringiensis Ag13,Ag13)中.结果]从Ag幼虫肠道共分离获得18个不同种的可培养细菌菌株,并从中选取菌株Ag12和Ag13作为出发菌株转入Bt cry3A基因.经质粒稳定性试验、转化子生长特性测试、伴胞晶体电镜检测、毒蛋白SDS-PAGE分析、工程菌定殖性分析以及生物毒力测试,结果显示cry3A基因已经成功转入Ag幼虫的常驻内生菌短短芽孢杆菌和苏云金芽孢杆菌中,并且工程菌Ag12-305a、Ag13-305a、Ag 12-7911和Ag13-7911都能在天牛幼虫肠道内稳定生长、繁殖并表达分子量约65kDa的伴孢晶体杀虫蛋白Cry3A.结论]Bt cry3A基因已成功转入桑粒肩天牛幼虫肠道优势常驻内生菌中,获得了四株能在桑粒肩天牛幼虫肠道内定殖,并能表达目的杀虫基因Btcry3A的转基因工程菌.

关 键 词:桑粒肩天牛  肠道常驻内生菌  工程菌  表达

Transformation and expression of specific insecticide gene Bt cry3A in resident endogenetic bacteria isolated fromApriona germari (Hope) larvae intestines
Zhongkang Wang,Wei He,Guoxiong Peng,Yuxian Xi,Qiang Li and Youping Yin.Transformation and expression of specific insecticide gene Bt cry3A in resident endogenetic bacteria isolated fromApriona germari (Hope) larvae intestines[J].Acta Microbiologica Sinica,2008,48(9):1168-1174.
Authors:Zhongkang Wang  Wei He  Guoxiong Peng  Yuxian Xi  Qiang Li and Youping Yin
Institution:Bioengineering College of Chongqing University, Chongqing Engineering and Technology Center for Fungal Insecticides, Key Lab of Genetic Function and Regulation, Chongqing 400030, China;Bioengineering College of Chongqing University, Chongqing Engineering and Technology Center for Fungal Insecticides, Key Lab of Genetic Function and Regulation, Chongqing 400030, China;Bioengineering College of Chongqing University, Chongqing Engineering and Technology Center for Fungal Insecticides, Key Lab of Genetic Function and Regulation, Chongqing 400030, China;Bioengineering College of Chongqing University, Chongqing Engineering and Technology Center for Fungal Insecticides, Key Lab of Genetic Function and Regulation, Chongqing 400030, China;Bioengineering College of Chongqing University, Chongqing Engineering and Technology Center for Fungal Insecticides, Key Lab of Genetic Function and Regulation, Chongqing 400030, China;Bioengineering College of Chongqing University, Chongqing Engineering and Technology Center for Fungal Insecticides, Key Lab of Genetic Function and Regulation, Chongqing 400030, China
Abstract:Objective] Transforming the specific insecticidal gene Bt cry3A into the dominant resident endogenetic bacteria in intestines of Apriona germari (Hope) larvae to construct transgenic bacteria that can colonize and express the insecticidal gene Bt cry3A perfectly in intestines of Apriona germari (Hope) larvae. Method] We isolated and identified the dominant resident endogenetic bacteria by traditional methods and molecular method based of 16S rDNA analysis. Two Escherichia coli - Bacillus thuringiensis shuttle plasmid pHT305a and pHT7911 which contained specific insecticidal gene Bt cry3A were transformed into two resident endogenetic bacteria Brevibacillus brevis Ag12 and Bacillus thuringiensis Ag13 isolated from A. germari larvae intestines respectively by electro-transformation. Results] Eighteen species of bacteria have isolated and identified from Apriona germari larvae intestines and two of them (Brevibacillus brevis Ag12 and Bacillus thuringiensis Ag13) were selected as starting bacteria to recieve the Bt cry3A. The 4 transgenic engineering strains Ag12-7911, Ag12-305a, Ag13-7911 and Ag13-305a were obtained successfully and validated by testing the plasmid stability in recombinants, transformants vegetal properties, crystal poisonous protein observation, expressional protein SDS-PAGE. The Bt cry3A gene had been transformed into Brevibacillus brevis and Bacillus thuringiensis. Both bioassay and examination of the engineering strains in intestines after feeding them to larvae showed that all these trans-formant strains (Brevibacillus brevis Ag12-305a, Bacillus thurigiensis Ag13-305a, Brevibacillus brevis Ag12-7911 and Bacillus thurigiensis Ag13-7911) could colonize and express 65 kDa protoxin in intestines of A. germari larvae and had insecticidal activity. Conclusion] We obtained four transgenic bacteria that can colonize and express the target insecti-cide gene Bt cry3A in A. germari larvae. They may be developed as a new insecticide.
Keywords:Btcry3A
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