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Analysis of the Role of Recombination and Repair in Mutagenesis of ESCHERICHIA COLI by Uv Irradiation

机译:紫外辐射下重组和修复在大肠杆菌突变中的作用分析

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摘要

Multiple mutant strains have been tested for their mimicry of the UV-mutagenesis deficiency of a recA single mutant. Revertants to histidine prototrophy and clear plaque mutants of lambda were scored to determine capacity for UV-mutagenesis. Nearly normal capacity was shown by a uvr+ recB- recF - strain, which shows almost no recA-dependent recombination, by uvr- recB+ recF - strains, which show almost no recA-dependent repair and by a uvrA- recB- recF- strain, which shows neither recA-dependent recombination nor repair. Since the uvr mutants can be assumed to show additionally no excision repair, these results may mean that UV-mutagenesis occurs during processes other than recombination and repair. Alternative hypotheses are discussed. The slight difference in mutagenic capacity was traced to the recF single mutation, which blocks the production of unmixed bursts of clear-plaque lambda mutants. Since this accounts for only about 10% of the mutations leading to clear-plaque mutants, it is suggested that there is more than one UV-mutagenic process.
机译:已经测试了多个突变体菌株对recA单个突变体的UV诱变缺陷的模仿。对组氨酸原养型的回复体和λ的透明噬菌斑突变体进行评分,以确定紫外线诱变的能力。 uvr + recB - recF -菌株显示出几乎正常的容量,而uvr 却几乎没有显示出与recA相关的重组- recB + recF -菌株,几乎不显示recA依赖的修复作用,并且通过uvrA - recB - recF -菌株,它既不显示recA依赖的重组,也不显示修复。由于可以假定uvr突变体没有额外的切除修复,因此这些结果可能意味着UV诱变发生在重组和修复以外的过程中。讨论了其他假设。诱变能力的细微差异可追溯到recF单突变,它阻止了透明斑λ突变体未混合爆发的产生。由于这仅占导致透明菌斑突变的突变的约10%,因此建议存在一个以上的紫外线诱变过程。

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