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酿酒酵母中多重药物交叉抗性的遗传分析:核-线粒体基因相互作用

Genetic analysis of multiple drug cross resistance in Saccharomyces cerevisiae: a nuclear-mitochondrial gene interaction.

作者信息

Cohen J D, Eaton N R

出版信息

Genetics. 1979 Jan;91(1):19-33. doi: 10.1093/genetics/91.1.19.

Abstract

A mutant of the yeast Saccharomyces cerevisiae, cross resistant to several antibiotics, was isolated in our laboratory and subjected to genetic analysis. Tetrad analysis of diploids obtained from crosses between the resistant mutant and a sensitive wild-type strain suggest that the multiple resistance to the five agents, oligomycin (OLI), rhodamine 6G (RHG), tetracycline (TCN), chloramphenicol (CAP) and cycloheximide (CHX) is determined by a single nuclear gene, ant1, and requires several cytoplasmic genes for expression of resistance to oligomycin, rhodamine 6G and tetracycline. --Vegetatively growing diploid clones derived from the cross ant1 [RHO+] X +[RHO+] show mitotic segregation of two phenotypic classes for the drugs OLI, RHG TCN. Diploids derived from the two reciprocal crosses, ant1 [RHO+] X +[RHO-] and ant1 [RHO-] X +[RHO+], fail to exhibit mitotic segregation. These results are consistent with our hypothesis concerning the involvement of cytoplasmic loci. They suggest, in addition, that these loci are associated with mitochondrial DNA (mtDNA). --Evidence for this association is provided by the demonstration of genetic linkage between the cytoplasmic loci involved in the interaction, RHG-1, TCN-1 and OLI-5, and two well-characterized mitochondrial loci, ERY and CAP. --We have mapped the nuclear ant1 locus 3.3 cM from the centromere-linked gene, leu1, on the same side of the centromere of chromosome VII as leu1. --In the light of these findings, we discuss the claims made by several authors of the episomal nature of mutations similar to the one described here, as well as of the possible involvement of yeast 2 mu DNA in such mutations.

摘要

我们实验室分离出了一株对多种抗生素具有交叉抗性的酿酒酵母突变体,并对其进行了遗传分析。从抗性突变体与敏感野生型菌株杂交获得的二倍体进行四分体分析表明,对寡霉素(OLI)、罗丹明6G(RHG)、四环素(TCN)、氯霉素(CAP)和环己酰亚胺(CHX)这五种药物的多重抗性由单个核基因ant1决定,并且对寡霉素、罗丹明6G和四环素的抗性表达需要几个细胞质基因。——从杂交组合ant1 [RHO+] X +[RHO+]获得的营养生长二倍体克隆,对于OLI、RHG、TCN这几种药物显示出两种表型类别的有丝分裂分离。来自两个正反交组合ant1 [RHO+] X +[RHO-]和ant1 [RHO-] X +[RHO+]的二倍体未能表现出有丝分裂分离。这些结果与我们关于细胞质基因座参与的假设一致。此外,它们表明这些基因座与线粒体DNA(mtDNA)相关。——通过证明参与相互作用的细胞质基因座RHG-1、TCN-1和OLI-5与两个特征明确的线粒体基因座ERY和CAP之间的遗传连锁,为这种关联提供了证据。——我们已将核ant1基因座定位在与着丝粒连锁基因leu1相距3.3 cM处,位于染色体VII着丝粒的与leu1相同的一侧。——鉴于这些发现,我们讨论了几位作者关于与本文所述类似突变的附加体性质的主张,以及酵母2μm DNA在此类突变中可能的参与情况。

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