Voeĭkova T A
State Research Institute of Genetics and Selection of Industrial Microorganisms, Moscow, Russia.
Genetika. 1999 Dec;35(12):1626-33.
The conjugal transfer of autonomous and integrative plasmids from the donor strain Escherichia coli S17-1 to strains of genera Actinomadura, Arthrobacter, Kitasatoa, Micromonospora, Nocardia, Rhodococcus, Saccharopolyspora, and to 16 strains of the genus Streptomyces was demonstrated. The status of plasmids in recipient strains and the stability of their inheritance were analyzed. Plasmids constructed for strains of the genus Streptomyces were shown to function in a large number of strains belonging to the order Actinomycetales. The well-developed system of Streptomyces vector molecules and cloned genes of antibiotic biosynthesis allows their transfer to those microorganisms for which conventional techniques of plasmid transfer by regenerated protoplast transformation or electroporation have not been developed or are inefficient.
已证实自主和整合质粒可从供体菌株大肠杆菌S17-1通过接合转移至马杜拉放线菌属、节杆菌属、北里孢菌属、小单孢菌属、诺卡氏菌属、红球菌属、糖多孢菌属的菌株,以及16株链霉菌属菌株。分析了受体菌株中质粒的状态及其遗传稳定性。构建的用于链霉菌属菌株的质粒在大量属于放线菌目的菌株中具有功能。链霉菌载体分子和抗生素生物合成克隆基因的完善系统使得它们能够转移至那些尚未开发或常规通过原生质体再生转化或电穿孔进行质粒转移技术效率低下的微生物。