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酿酒酵母DNA合成缺陷的细胞周期突变体产生小菌落。

Production of petites by cell cycle mutants of Saccharomyces cerevisiae defective in DNA synthesis.

作者信息

Newlon C S, Ludescher R D, Walter S K

出版信息

Mol Gen Genet. 1979 Jan 31;169(2):189-94. doi: 10.1007/BF00271670.

Abstract

Mutations in two genes (cdc8 and cdc21) required for nuclear and mitochondrial DNA synthesis in Saccharomyces cerevisiae result in a 6- to 11-fold increase in the rate of mitotic segregation of petites at the permissive temperature. The defect in DNA replication and the increased rate of petite production result from the same mutation since the two phenotypes cosegregate and corevert. Most of the petites isolated from strains carrying mutations in cdc8 and cdc21 contain mtDNA. Therefore, the petites do not result simply from an underreplication of mitochondrial DNA. The mutation rates for nuclear and mitochondrial genes are the same in cdc8, cdc21 and their wild-type parent. Therefore the petites are unlikely to result from an increase in the rate of base pair substitution.

摘要

酿酒酵母中核DNA和线粒体DNA合成所需的两个基因(cdc8和cdc21)发生突变,会导致在允许温度下小菌落有丝分裂分离速率提高6至11倍。DNA复制缺陷和小菌落产生速率增加是由同一突变引起的,因为这两种表型会共分离和共回复。从携带cdc8和cdc21突变的菌株中分离出的大多数小菌落都含有线粒体DNA。因此,小菌落并非仅仅由线粒体DNA复制不足导致。在cdc8、cdc21及其野生型亲本中,核基因和线粒体基因的突变率是相同的。因此,小菌落不太可能是由碱基对替换速率增加导致的。

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