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酿酒酵母中的无重组减数分裂。

Recombinationless meiosis in Saccharomyces cerevisiae.

作者信息

Malone R E, Esposito R E

出版信息

Mol Cell Biol. 1981 Oct;1(10):891-901. doi: 10.1128/mcb.1.10.891-901.1981.

Abstract

We have utilized the single equational meiotic division conferred by the spo13-1 mutation of Saccharomyces cerevisiae (S. Klapholtz and R. E. Esposito, Genetics 96:589-611, 1980) as a technique to study the genetic control of meiotic recombination and to analyze the meiotic effects of several radiation-sensitive mutations (rad6-1, rad50-1, and rad52-1) which have been reported to reduce meiotic recombination (Game et al., Genetics 94:51-68, 1980); Prakash et al., Genetics 94:31-50, 1980). The spo13-1 mutation eliminates the meiosis I reductional segregation, but does not significantly affect other meiotic events (including recombination). Because of the unique meiosis it confers, the spo13-1 mutation provides an opportunity to recover viable meiotic products in a Rec- background. In contrast to the single rad50-1 mutant, we found that the double rad50-1 spo13-1 mutant produced viable ascospores after meiosis and sporulation. These spores were nonrecombinant: meiotic crossing-over was reduced at least 150-fold, and no increase in meiotic gene conversion was observed over mitotic background levels. The rad50-1 mutation did not, however, confer a Rec- phenotype in mitosis; rather, it increased both spontaneous crossing-over and gene conversion. The spore inviability conferred by the single rad6-1 and rad52-1 mutations was not eliminated by the presence of the spo13-1 mutation. Thus, only the rad50 gene has been unambiguously identified by analysis of viable meiotic ascospores as a component of the meiotic recombination system.

摘要

我们利用了酿酒酵母spo13 - 1突变所赋予的单等式减数分裂(S. Klapholtz和R. E. Esposito,《遗传学》96:589 - 611,1980年)作为一种技术,来研究减数分裂重组的遗传控制,并分析几种辐射敏感突变(rad6 - 1、rad50 - 1和rad52 - 1)的减数分裂效应,这些突变据报道会减少减数分裂重组(Game等人,《遗传学》94:51 - 68,1980年;Prakash等人,《遗传学》94:31 - 50,1980年)。spo13 - 1突变消除了减数分裂I的减数分离,但对其他减数分裂事件(包括重组)没有显著影响。由于它所赋予的独特减数分裂,spo13 - 1突变提供了一个在Rec - 背景下回收有活力减数分裂产物的机会。与单rad50 - 1突变体不同,我们发现双rad50 - 1 spo13 - 1突变体在减数分裂和孢子形成后产生了有活力的子囊孢子。这些孢子是非重组的:减数分裂交换至少减少了150倍,并且在减数分裂基因转换方面没有观察到相对于有丝分裂背景水平的增加。然而,rad50 - 1突变在有丝分裂中并没有赋予Rec - 表型;相反,它增加了自发交换和基因转换。单rad6 - 1和rad52 - 1突变所赋予的孢子无活力并没有因spo13 - 1突变的存在而消除。因此,通过对有活力的减数分裂子囊孢子的分析,只有rad50基因已被明确鉴定为减数分裂重组系统的一个组成部分。

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Recombinationless meiosis in Saccharomyces cerevisiae.酿酒酵母中的无重组减数分裂。
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