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Multiple branches of the meiotic recombination pathway contribute independently to homolog pairing and stable juxtaposition during meiosis in budding yeast

机译:减数分裂重组途径的多个分支独立地对萌芽酵母减数分裂期间的同系物配对和稳定的并置作出贡献

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摘要

A unique aspect of meiosis is the segregation of homologous chromosomes at the meiosis I division. Homologs are physically connected prior to segregation by crossing over between nonsister chromatids. Crossovers arise from the repair of induced double-strand breaks (DSBs). In many organisms, more DSBs are formed than crossovers in a given nucleus. It has been previously suggested that repair of DSBs to noncrossover recombination products aids homolog alignment. Here we explore how two modes of the meiotic recombination pathway (crossover and noncrossover) and meiotic telomere reorganization contribute to the pairing and close juxtaposition of homologous chromosomes in budding yeast. We found that intermediates in the DSB repair pathway leading to both crossover and noncrossover recombination products contribute independently to close, stable homolog juxtaposition (CSHJ), a measurable state of homolog pairing. Analysis of the ndj1Δ mutant indicates that the effect of meiotic telomere reorganization on CSHJ is exerted through recombination intermediates at interstitial chromosomal loci, perhaps through the noncrossover branch of the DSB repair pathway. We suggest that transient, early DSB-initiated interactions, including those that give rise to noncrossovers, are important for homolog recognition and juxtaposition.
机译:减数分裂的一个独特方面是在减数分裂I分裂时同源染色体的分离。同源物在分离前通过非姐妹染色单体之间的交叉而物理连接。交叉产生于诱导双链断裂(DSB)的修复。在许多生物中,形成的DSB比给定原子核中的交换更多。先前已经提出,将DSB修复为非交叉重组产物有助于同源物比对。在这里,我们探讨减数分裂重组途径(交叉和非交叉)和减数分裂端粒重组的两种模式如何促进发芽酵母中同源染色体的配对和紧密并置。我们发现DSB修复途径中的中间体导致交叉和非交叉重组产物均独立地促成紧密,稳定的同源并列(CSHJ),这是一种可测量的同源配对状态。对ndj1Δ突变体的分析表明,减数分裂端粒重组对CSHJ的作用是通过间质染色体基因座上的重组中间体,也许是通过DSB修复途径的非交叉分支来实现的。我们建议,短暂的,早期DSB引发的相互作用(包括引起非交叉的相互作用)对于同源物识别和并置至关重要。

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