期刊文献+
共找到2篇文章
< 1 >
每页显示 20 50 100
A Stably Transgenic INA Enterobacter cloacae for Control of Insect Pests
1
作者 ZHANGXin-jian SUNFu-zai +2 位作者 ZHAOTing-chang DINGAi-yun TANGChao-rong 《Agricultural Sciences in China》 CAS CSCD 2003年第12期1357-1362,共6页
Using the minitransposon pMini-Tn5 and the ice-nucleation active (INA) gene of iceA, a suicide recombinant plasmid pTnice1 was constructed, which has the ability of broad-host-range conjugal mobilization and integrati... Using the minitransposon pMini-Tn5 and the ice-nucleation active (INA) gene of iceA, a suicide recombinant plasmid pTnice1 was constructed, which has the ability of broad-host-range conjugal mobilization and integration of iceA into chromosomal DNA of many gram-negative bacteria by Tn5 transposition. We used this plasmid to integrate the iceA into chromosomal DNA of Ent. cloacae and obtained the transgentic strain Enc1.2022 ina. In this transgenic Ent. cloacae, iceA would never be transferred elsewhere through transposition, and constantly expressed high ice nucleation activity even in the absence of antibiotic pressure. The transgenic strain was ingested by corn borer larvae. Over the 7 d after ingestion, the mean supercooling points (SCPs) of the larvae was about 10℃ higher than those of larvae treated with distilled water (control). The maintenance of these high SCPs was related to the stable gut colonization of transgenic strain. At 6th day post ingestion, the larva was exposed at 5 or 7℃ for 12 h, the percentages of larvae frozen to death were 85 and 100%, respectively. In contrast, none or a small proportion of control larvae was frozen to death under the same conditions. Further studies demonstrated that this transgenic strain bore weak epiphytic ability. Therefore, this genetically engineered strain may be a promising candidate for control of insect pests in agricultural fields. 展开更多
关键词 ina gene Genetically engineered plasmid killing insect pests through induced freezing Transgenic INA Ent. cloacae
下载PDF
促冻杀虫基因工程菌的构建 被引量:7
2
作者 张新建 孙福在 +2 位作者 赵廷昌 丁爱云 唐朝荣 《中国农业科学》 CAS CSCD 北大核心 2004年第2期227-232,共6页
利用转座酶基因位于转座单位以外的微转座子载体,将冰核基因iceA置于转座单位里,构建了携带iceA的自杀性工程质粒pTnice1, 并进一步利用该质粒的接合转移特性和Tn5转座功能,将iceA整合到阴沟肠杆菌染色体DNA上,成功地构建了在无选择压... 利用转座酶基因位于转座单位以外的微转座子载体,将冰核基因iceA置于转座单位里,构建了携带iceA的自杀性工程质粒pTnice1, 并进一步利用该质粒的接合转移特性和Tn5转座功能,将iceA整合到阴沟肠杆菌染色体DNA上,成功地构建了在无选择压力下冰核基因仍稳定存在并有效表达冰核活性的促冻杀虫基因工程菌Enc1.2022ina。经应用试验证明,用该工程菌饲喂玉米螟幼虫,在饲菌后9 d内,虫体的过冷却点比不饲菌的对照提高10℃左右;在饲菌后第6天,于-5℃和-7℃低温下处理12 h,工程菌处理过的幼虫冻死率分别为85%和100%,而对照虫体的冻死率分别为0和5%。试验还证明,该工程菌可以在昆虫体内稳定定殖增生,在植物上附生定殖能力明显比野生型冰核细菌弱。因此,解决了阻碍冰核细菌促冻杀虫应用中的难题,为防治我国北方地区重要农林果树和仓储主要越冬害虫探索出了一条生防新途径。 展开更多
关键词 促冻杀虫基因工程菌 微转座子载体 冰核基因 生物防治 农业害虫 仓储害虫 越冬害虫 转基因
下载PDF
上一页 1 下一页 到第
使用帮助 返回顶部