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Plasmid Recombination in a Rad52 Mutant of Saccharomyces Cerevisiae

机译:酿酒酵母Rad52突变体中的质粒重组。

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摘要

Using plasmids capable of undergoing intramolecular recombination, we have compared the rates and the molecular outcomes of recombination events in a wild-type and a rad52 strain of Saccharomyces cerevisiae. The plasmids contain his3 heteroalleles oriented in either an inverted or a direct repeat. Inverted repeat plasmids recombine approximately 20-fold less frequently in the mutant than in the wild-type strain. Most events from both cell types have continuous coconversion tracts extending along one of the homologous segments. Reciprocal exchange occurs in fewer than 30% of events. Direct repeat plasmids recombine at rates comparable to those of inverted repeat plasmids in wild-type cells. Direct repeat conversion tracts are similar to inverted repeat conversion tracts in their continuity and length. Inverted and direct repeat plasmid recombination differ in two respects. First, rad52 does not affect the rate of direct repeat recombination as drastically as the rate of inverted repeat recombination. Second, direct repeat plasmids undergo crossing over more frequently than inverted repeat plasmids. In addition, crossovers constitute a larger fraction of mutant than wild-type direct repeat events. Many crossover events from both cell types are unusual in that the crossover HIS3 allele is within a plasmid containing the parental his3 heteroalleles.
机译:使用能够进行分子内重组的质粒,我们比较了酿酒酵母的野生型和rad52菌株中重组事件的速率和分子结果。质粒包含以反向或直接重复定向的his3杂等位基因。与野生型菌株相比,突变体中的反向重复质粒重组的频率降低约20倍。来自两种细胞类型的大多数事件具有沿着同源片段之一延伸的连续的共转化束。相互交换发生在少于30%的事件中。直接重复质粒以与野生型细胞中反向重复质粒相当的速率重组。直接重复转化道的连续性和长度类似于反向重复转化道。反向和直接重复质粒重组在两个方面有所不同。首先,rad52不会像反向重复重组的速率那样显着地影响直接重复重组的速率。第二,直接重复质粒比反向重复质粒经历更频繁的交换。另外,与野生型直接重复事件相比,交叉构成突变体的比例更大。来自两种细胞类型的许多交换事件是不寻常的,因为交换HIS3等位基因位于含有亲本his3杂等位基因的质粒内。

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