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使用pAS8杂种(RP4 - ColE1)的缺失突变体对RP4质粒进行定位

Mapping of RP4 plasmid using deletion mutants of pAS8 hybrid (RP4--ColE1).

作者信息

Sakanyan V A, Yakubov L Z, Alikhanian S I, Stepanov A I

出版信息

Mol Gen Genet. 1978 Oct 24;165(3):331-41. doi: 10.1007/BF00332534.

Abstract

We used the hybrid plasmid pAS8 in order to conduct the genetic analysis of RP4 plasmid. The presence of two replicons in the hybrid plasmid permitted to expand the spectrum of deletion mutants of RP4 isolated, which are capable to autonomous replication. The shortening of the hybrid plasmid was achieved by P22 transduction, by induction of deletion mutants using mitomycin C, as well as by seletion of Tra- mutants on the basis of resistance of cells to P-specific phages. These techniques have lead to isolation of clones possessing different combinations of plasmid resistance determinants. Comparison of phenotypic characteristics of deletion plasmids pAS9, pAS10, pAS11, pAS12 and pAS10-2 permitted to propose the map for pAS8 plasmid with the following sequence of markers: tra--kam--ColE1--amp--tet... Heteroduplex analysis of deletion mutants of pAS8 permitted to construct a physical map and to elaborate in greater detail the functional map of RP4 plasmid. The correlation between the ability of mutants to replicate in polA(TS) strain at nonpermissive conditions and the length of the deleted segment permitted to map rep genes of RP4 on a region with coordinates 9.8--17.3 kb. A relationship between the manifestation of incompatibility of mutants with Inc P-1 plasmids and the length of deletions points out that inc genes are located on DNA region with coordinates 2.1--9.8 kb. The analysis of replication of deletion mutants and the manifestation of incompatibility just as of the data about the size of appropriate deletions permitted to make the conclusion about the functional and genetic independence of the replication control and incompatibility control in RP4 plasmid.

摘要

为了对RP4质粒进行遗传分析,我们使用了杂交质粒pAS8。杂交质粒中两个复制子的存在使得能够扩大所分离的RP4缺失突变体的范围,这些突变体能够自主复制。通过P22转导、使用丝裂霉素C诱导缺失突变体以及基于细胞对P特异性噬菌体的抗性筛选Tra-突变体来实现杂交质粒的缩短。这些技术已导致分离出具有不同质粒抗性决定簇组合的克隆。对缺失质粒pAS9、pAS10、pAS11、pAS12和pAS10 - 2的表型特征进行比较,从而提出了pAS8质粒的图谱,其标记顺序如下:tra--kam--ColE1--amp--tet... 对pAS8缺失突变体的异源双链分析使得能够构建物理图谱并更详细地阐述RP4质粒的功能图谱。突变体在非允许条件下在polA(TS)菌株中复制的能力与缺失片段长度之间的相关性使得能够将RP4的rep基因定位在坐标为9.8 - 17.3 kb的区域。突变体与Inc P - 1质粒不亲和性表现与缺失长度之间的关系表明,inc基因位于坐标为2.1 - 9.8 kb的DNA区域。对缺失突变体复制的分析以及不亲和性的表现,正如关于适当缺失大小的数据一样,使得能够得出关于RP4质粒中复制控制和不亲和性控制在功能和遗传上独立性的结论。

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