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酵母中错配特异性减数分裂后分离频率表明存在异源双链体重组中间体。

Mismatch-specific post-meiotic segregation frequency in yeast suggests a heteroduplex recombination intermediate.

作者信息

White J H, Lusnak K, Fogel S

出版信息

Nature. 1985;315(6017):350-2. doi: 10.1038/315350a0.

Abstract

Post-meiotic segregation of alleles, which is seen, for example, in the 5:3 distribution of alleles in the products of a single meiosis in fungi, has been thought to be due to the non-repair of heteroduplex regions formed during genetic recombination. In current models of genetic recombination, heteroduplex DNA is formed either as the primary intermediate generated by two interacting non-sister chromatids or as a short region flanking a double-stranded gap. The frequency of post-meiotic segregation differs for different alleles, and this is presumed to reflect the varying efficiencies with which different types of mismatches in the heteroduplex are repaired. To gain some insight into this process, we have now determined the nucleotide sequences of various yeast alleles with different post-meiotic segregation frequencies and compared the mismatches predicted to occur in heteroduplexes of these alleles with wild-type DNA with those repaired with varying efficiency in bacterial systems. A striking correlation is observed, with the mismatches predicted for high post-meiotic segregation frequency alleles being similar to mismatches repaired with low efficiency in bacteria. These results support the view that postmeiotic segregation frequency reflects heteroduplex repair efficiency and the contention that meiotic gene conversion is the result of the successful repair of heteroduplex mismatches.

摘要

等位基因的减数分裂后分离,例如在真菌单个减数分裂产物中等位基因5:3的分布中可见,被认为是由于遗传重组过程中形成的异源双链区域未得到修复。在当前的遗传重组模型中,异源双链DNA要么作为由两条相互作用的非姐妹染色单体产生的主要中间体形成,要么作为双链缺口侧翼的短区域形成。减数分裂后分离的频率因不同等位基因而异,这被推测反映了异源双链中不同类型错配被修复的效率差异。为了深入了解这一过程,我们现在确定了具有不同减数分裂后分离频率的各种酵母等位基因的核苷酸序列,并将这些等位基因与野生型DNA形成的异源双链中预测会出现的错配,与在细菌系统中以不同效率修复的错配进行了比较。我们观察到一个显著的相关性,即预测减数分裂后分离频率高的等位基因中的错配,与在细菌中修复效率低的错配相似。这些结果支持了减数分裂后分离频率反映异源双链修复效率的观点,以及减数分裂基因转换是异源双链错配成功修复结果的论点。

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