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Model for the enchancement of lambde-gal integration into partially induced Mu-1 lysogens.

机译:用于增强λ-半乳糖整合入部分诱导的Mu-1溶原菌的模型。

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摘要

Temperate phage Mu-1, which is able to integrate at random in its host chromosome, is also able to mediate integration of other circular deoxyribonucleic acid, as a lambda-gal mutant unable to integrate by itself. After mixed infection with lambda-gal and Mucplus, galplus transductants are recovered that have the lambda-gal integrated in any circular permutation, sandwiched between two complete Mu genomes in the same orientation, the whole Mu-lambda-gal-Mu structure being found at any location in the bacterial chromosome. Here we show that such a lambda-gal can integrate in an induced Mu lysogen. In this case the lambda-gal is again in any circular permutation, between two Mu in the same orientation, but it is always located at the site of the original Mu prophage, and the two surrounding Mu have always the same genotype as the original Mu prophage. Active Mu replication functions are not essential for that process to occur. This suggests that bacterial replication may generate two Mu copies that in some way can regenerate a Mu attachment site that recombines with the lambda-gal. A model is presented that accounts for these observations, may be helpful for understanding some complex features of Mu development, and may possibly offer a basis for explaining spontaneous duplications.
机译:温带噬菌体Mu-1,能够在其宿主染色体中随机整合,也能够介导其他环状脱氧核糖核酸的整合,因为λ-gal突变体无法自行整合。在用lambda-gal和Mucplus混合感染后,回收了galplus转导子,这些lamplus-gal在任何圆形排列中都整合了,并以相同的方向夹在两个完整的Mu基因组之间,整个Mu-lambda-gal-Mu结构位于细菌染色体上的任何位置。在这里,我们证明了这种lambda-gal可以整合到诱导的Mu溶原菌中。在这种情况下,lambda-gal再次处于两个方向相同的两个Mu之间的任何圆形排列中,但它始终位于原始Mu噬菌体的位点,并且周围的两个Mu始终具有与原始Mu相同的基因型前言。主动Mu复制功能对于该过程的发生不是必需的。这表明细菌复制可以产生两个Mu拷贝,其可以某种方式再生与λ-gal重组的Mu附着位点。提出了一个模型,解释了这些观察结果,可能有助于理解Mu发展的某些复杂特征,并可能为解释自发重复提供基础。

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