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[酿酒酵母中导致核与线粒体遗传结构维持协同变化的新型核srm基因突变的分离与鉴定]

[Isolation and characterization of new nuclear srm gene mutation causing coordinated changes in the maintenance of nuclear and mitochondrial genetic structures in the yeast Saccharomyces].

作者信息

Devin A B, Koltovaia N A, Gavrilov B V, Arman I P

出版信息

Genetika. 1994 Sep;30(9):1194-201.

PMID:8001802
Abstract

From grown cultures of UV-irradiated Saccharomyces cerevisiae cells with disomy at chromosome IV, clones with nuclear gene mutations were isolated, each of which was suggested to change both mitochondrial spontaneous rho- mutability and the mitotic stability of extra natural chromosomes. Four such nonallelic mutations (srm8, srm12, srm15, and srm17) were isolated, and their phenotypic expression characterized. All four mutations are associated with decreased spontaneous rho- mutability and virtually block sporulation in homozygous mutant diploids. Mutation srm8 is temperature-sensitive and, most probably, involves an essential gene. Double mutants of genotypes srm8 cdc28-srm and srm8 srm12 are nonviable. Mutation srm12 increases the rate of spontaneous loss of extra chromosome XIV by disomics by a factor of about 30. Mutation srm15 induces a small (about twofold) but statistically significant decrease of this rate. Mutations srm8 and srm17 drastically decelerate reproduction of cells with disomy, which prevents quantitative estimations of rates of loss of extra chromosomes.

摘要

从经紫外线照射的具有第四条染色体双体的酿酒酵母细胞的生长培养物中,分离出了具有核基因突变的克隆,其中每一个都被认为会改变线粒体自发的rho-突变性以及额外天然染色体的有丝分裂稳定性。分离出了四个这样的非等位基因突变(srm8、srm12、srm15和srm17),并对它们的表型表达进行了表征。所有这四个突变都与自发rho-突变性降低有关,并且在纯合突变二倍体中几乎阻断了孢子形成。突变srm8是温度敏感型的,很可能涉及一个必需基因。基因型为srm8 cdc28-srm和srm8 srm12的双突变体无法存活。突变srm12使双体中额外的第十四条染色体的自发丢失率增加了约30倍。突变srm15使该速率有小幅(约两倍)但具有统计学意义的降低。突变srm8和srm17极大地减缓了双体细胞的繁殖,这使得对额外染色体丢失率的定量估计变得困难。

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