Cannon F C, Dixon R A, Postgate J R
J Gen Microbiol. 1976 Mar;93(1):111-25. doi: 10.1099/00221287-93-1-111.
A His+ Nif+ Escherichia coli K12, Hfr strain (UNF43) was constructed by an intergeneric mating between a Klebsiella pneumoniae donor strain (HF3) and a his-HFR E. coli strain (SBI824) which transfers his as an early marker. An F-prime nif plasmid, FN39, carrying genes which correspond to the E. coli chromosomal region, metG gnd his shiA, but excluding purF and aroD, was isolated from UNF43. Translocation of carbenicillin resistance genes from a P-type R-factor, R68, to FN39 increased the stability of his and nif on the derivative F-prime, FN68. Sedimentation analysis of both F-primes in sucrose gradients revealed our covalently closed circular(CCC) DNA species of molecular weights 279 +/- 9, 136 +/- 3, 90 +/- 1 and 44 +/- 1 megadaltons. It is suggested that the two smallest CCC-DNA species are component replicons of the composite F-primes of molecular weight 136 +/- 3 megadaltons, and that the molecules of 279 +/- 9 megadaltons are CCC-dimers. FN68 was transferable in intergeneric matings to Klebsiella aerogenes, K. pneumoniae and Salmonella typhimurium but not to Proteus mirabilis; only carbenicillin resistance and sex factor activity were transferred to Erwinia herbicola. nif genes on FN68 were expressed in a Nif- mutant of K. pneumoniae and also in S. typhimurium, which in conventional tests is naturally non-nitrogen-fixing; expression of the his determinant of FN68 became temperature-sensitive in S. typhimurium.
通过肺炎克雷伯氏菌供体菌株(HF3)与作为早期标记转移his的his - HFR大肠杆菌菌株(SBI824)之间的属间交配构建了一株His + Nif + 大肠杆菌K12 Hfr菌株(UNF43)。从UNF43中分离出一个携带与大肠杆菌染色体区域metG、gnd、his、shiA相对应基因,但不包括purF和aroD的F - 致育因子nif质粒FN39。将来自P型R因子R68的羧苄青霉素抗性基因易位到FN39上,增加了his和nif在衍生的F - 致育因子FN68上的稳定性。在蔗糖梯度中对两种F - 致育因子进行沉降分析,揭示了分子量分别为279±9、136±3、90±1和44±1兆道尔顿的共价闭合环状(CCC)DNA种类。有人提出,两个最小的CCC - DNA种类是分子量为136±3兆道尔顿的复合F - 致育因子的组成复制子,而279±9兆道尔顿的分子是CCC - 二聚体。FN68在属间交配中可转移到产气克雷伯氏菌、肺炎克雷伯氏菌和鼠伤寒沙门氏菌,但不能转移到奇异变形杆菌;只有羧苄青霉素抗性和性因子活性转移到了草生欧文氏菌。FN68上的nif基因在肺炎克雷伯氏菌的Nif - 突变体中以及在常规测试中天然不固氮的鼠伤寒沙门氏菌中都有表达;FN68的his决定簇在鼠伤寒沙门氏菌中的表达变得对温度敏感。