Meyer R J, Shapiro J A
J Bacteriol. 1980 Sep;143(3):1362-73. doi: 10.1128/jb.143.3.1362-1373.1980.
We have identified regions encoding conjugal transfer, plasmid maintenance, and trimethoprim resistance on the IncP-1 plasmid R751 by complementation tests with cloned deoxyribonucleic acid fragments and self-replicating derivatives constructed in vitro. The genes for replication and transfer show a scattered organization similar to that previously determined for RK2, another IncP-1 plasmid. Derivatives of RK2 are able to complement R751 derivatives defective in these functions. Restriction enzyme cleavage sites in R751 deoxyribonucleic acid are clustered in regions of the plasmid physical map. Neither region is required for plasmid maintenance or transfer, although one determines resistance to trimethoprim. A similar clustering of cleavage sites is seen with RK2, which nevertheless has a very different restriction map.
我们通过与克隆的脱氧核糖核酸片段进行互补试验以及体外构建的自我复制衍生物,在IncP - 1质粒R751上鉴定出了编码接合转移、质粒维持和甲氧苄啶抗性的区域。复制和转移基因呈现出一种分散的组织形式,类似于先前为另一个IncP - 1质粒RK2所确定的形式。RK2的衍生物能够互补在这些功能上有缺陷的R751衍生物。R751脱氧核糖核酸中的限制性内切酶切割位点聚集在质粒物理图谱的区域中。尽管其中一个区域决定了对甲氧苄啶的抗性,但这两个区域对于质粒的维持或转移都不是必需的。在RK2中也观察到了类似的切割位点聚集现象,不过它的限制性图谱却大不相同。