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Spontaneous Mutagenesis in Escherichia coli and Saccharomyces cerevisiae

机译:大肠杆菌和酿酒酵母中的自发诱变

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References(54) In this article, we described the spontaneously occurring mutation specificities of defects that are involved in translesion polymerase, mutS mismatch correction and polA mismatch correction in Escherichia coli. We argue that 1) there is no contribution of translesion polymerase to E. coli chromosomal mutation, 2) mutS system recognizes and corrects transition and frameshift mismatches and 3) polA system recognizes and corrects deletion, frameshift and transition mismatches. We also characterized the genetic alterations that inactivate either the CAN1 gene of Saccharomyces cerevisiae haploid cells or heterozygously situated in diploid cells. The characteristics of mutation in haploid yeast are essentially consistent with those in E. coli, suggesting that similar mechanisms are operating to form spontaneous mutation. CAN1+/can1- (CanS) to can1-/can1- (CanR) mutations in diploid cells could occur through recombination, mainly allelic crossover and gene conversion.
机译:参考文献(54)在本文中,我们描述了大肠杆菌中跨病变聚合酶,mutS错配校正和polA错配校正涉及的缺陷的自发突变特异性。我们认为1)病变聚合酶对大肠杆菌染色体突变没有贡献; 2)mutS系统识别并纠正过渡和移码不匹配; 3)polA系统识别并纠正缺失,移码和过渡不匹配。我们还表征了使酿酒酵母单倍体细胞或杂合地位于二倍体细胞中的CAN1基因失活的遗传改变。单倍体酵母中突变的特征与大肠杆菌中的突变特征基本一致,表明相似的机制正在起作用以形成自发突变。二倍体细胞中的CAN1 + / can1-(CanS)至can1- / can1-(CanR)突变可通过重组发生,主要是等位基因交换和基因转换。

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