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对在不相容群FI的R质粒与HfrH的性因子F之间形成的重组质粒进行的遗传学和物理研究。

Genetic and physical studies of recombinant plasmids formed between an R plasmid of compatibility group FI and sex factor F of HfrH.

作者信息

Horodniceanu T, Bouanchaud D H

出版信息

J Bacteriol. 1976 Jan;125(1):58-67. doi: 10.1128/jb.125.1.58-67.1976.

Abstract

Recombinant plasmids between an R plasmid of the FI group (R162/3) and the sex factor F or HfrH were produced after the conjugal transfer of this R plasmid into HfrH. Three types of recombinant plasmids were identified after the mating of HfrH (R162/3) with recA and rec+ recipients. One specimen of each type (pIP218, pIP222, pIP226) was studied in this report. All three recombinant plasmids carry the same genetic information for resistance to antibiotics (CSSuT) retained from R162/3. pIP218 retained all the other properties from F of HfrH: derepression for pilus synthesis, mobilization of the chromosome for the proximally transferred HfrH genes (thr, leu, proA), interference with T7 propagation, and ability to be cured by acridine orange. pIP222 retained from F of HfrH the derepression for pilus synthesis and the same polarity of chromosome transfer (thr, leu, proA), while pIP226 retained the interference with T7 propagation and acridine orange curing. Physical studies revealed that replication control and/or recovery of F and pIP218 as covalent circles of deoxyribonucleic acid are similar, and are different from R162/3. The new plasmids are more likely the result of a substitutive recombination event than a fusion. We propose genetic maps of these recombinant plasmids, showing the unequal participation of the parental plasmids in their formation.

摘要

在将FI组的R质粒(R162/3)通过接合转移至HfrH后,产生了该R质粒与性别因子F或HfrH之间的重组质粒。在HfrH(R162/3)与recA和rec⁺受体菌进行交配后,鉴定出了三种类型的重组质粒。本报告研究了每种类型的一个样本(pIP218、pIP222、pIP226)。所有三种重组质粒都携带了从R162/3保留下来的相同抗生素抗性遗传信息(CSSuT)。pIP218保留了HfrH的F因子的所有其他特性:菌毛合成的去阻遏、对近端转移的HfrH基因(thr、leu、proA)的染色体动员、对T7繁殖的干扰以及被吖啶橙治愈的能力。pIP222保留了HfrH的F因子的菌毛合成去阻遏和相同的染色体转移极性(thr、leu、proA),而pIP226保留了对T7繁殖的干扰和吖啶橙治愈能力。物理研究表明,F和pIP218作为脱氧核糖核酸共价环的复制控制和/或回收是相似的,且与R162/3不同。这些新质粒更可能是替代重组事件而非融合的结果。我们提出了这些重组质粒的遗传图谱,显示了亲本质粒在其形成过程中的不平等参与。

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