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酿酒酵母的REC46基因控制有丝分裂染色体稳定性、重组和孢子形成:rec46 - 1突变的细胞类型和生命周期阶段特异性表达。

The REC46 gene of Saccharomyces cerevisiae controls mitotic chromosomal stability, recombination and sporulation: cell-type and life cycle stage-specific expression of the rec46-1 mutation.

作者信息

Esposito M S, Maleas D T, Bjornstad K A, Holbrook L L

机构信息

Biology and Medicine Division, Lawrence Berkeley Laboratory, University of California, Berkeley 94720.

出版信息

Curr Genet. 1986;10(6):425-33. doi: 10.1007/BF00419869.

Abstract

The recessive hyperrecombination mutation rec46-1, isolated by ultraviolet light mutagenesis of the MAT alpha n+1 chromosome VII disomic strain LBL1 (Esposito et al. 1982), enhances the mitotic rates of spontaneous gene conversion, intergenic recombination and restitution of haploidy (due to chromosomal loss or mitotic nondisjunction) in MAT alpha n+1 chromosome VII disomic strains. The rec46-1 mutation does not prevent HO directed homothallic interconversion of mating types. MATa/MaT alpha rec46-1/rec46-1 diploids exhibit the same degree of hyperrecombinational activity as MAT alpha rec46-1 n+1 chromosome VII disomics with respect to gene conversion and intragenic recombination resulting in prototrophy. When compared to MAT alpha rec46-1 n+1 disomics however, MATa/MAT alpha rec46-1/rec46-1 diploids exhibit a ten fold reduced level of hyperrecombinational activity with respect to intergenic recombination and present no evidence of chromosomal loss or nondisjunction resulting in 2n-1 monosomic segregants. MATa/MAT alpha rec46-1/rec46-1 diploids are sporulation-deficient. The results obtained demonstrate that the REC46 gene product modulates mitotic chromosomal stability and recombination and is essential for sporulation (meiosis and ascospore formation).

摘要

通过对 MATα n + 1 染色体 VII 二体菌株 LBL1(Esposito 等人,1982 年)进行紫外线诱变分离得到的隐性高重组突变体 rec46 - 1,可提高 MATα n + 1 染色体 VII 二体菌株中自发基因转换、基因间重组以及单倍体恢复(由于染色体丢失或有丝分裂不分离)的有丝分裂速率。rec46 - 1 突变并不阻止 HO 介导的交配型同宗互变。MATa/MaTα rec46 - 1/rec46 - 1 二倍体在导致原养型的基因转换和基因内重组方面,表现出与 MATα rec46 - 1 n + 1 染色体 VII 二体菌株相同程度的高重组活性。然而,与 MATα rec46 - 1 n + 1 二体菌株相比,MATa/MATα rec46 - 1/rec46 - 1 二倍体在基因间重组方面的高重组活性水平降低了十倍,并且没有证据表明存在导致 2n - 1 单体分离株的染色体丢失或不分离现象。MATa/MATα rec46 - 1/rec46 - 1 二倍体存在孢子形成缺陷。所得结果表明 REC46 基因产物调节有丝分裂染色体稳定性和重组,并且对于孢子形成(减数分裂和子囊孢子形成)至关重要。

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