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Coordinating cohesion co-orientation and congression during meiosis: lessons from holocentric chromosomes

机译:减数分裂过程中的内聚共向和融合:来自全中心染色体的课程

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摘要

Organisms that reproduce sexually must reduce their chromosome number by half during meiosis to generate haploid gametes. To achieve this reduction in ploidy, organisms must devise strategies to couple sister chromatids so that they stay together during the first meiotic division (when homologous chromosomes separate) and then segregate away from one another during the second division. Here we review recent findings that shed light on how Caenorhabditis elegans, an organism with holocentric chromosomes, deals with these challenges of meiosis by differentiating distinct chromosomal subdomains and remodeling chromosome structure during prophase. Furthermore, we discuss how features of chromosome organization established during prophase affect later chromosome behavior during the meiotic divisions. Finally, we illustrate how analysis of holocentric meiosis can inform our thinking about mechanisms that operate on monocentric chromosomes.
机译:在减数分裂过程中,有性繁殖的生物必须将其染色体数目减少一半才能产生单倍体配子。为了实现这种倍数减少,生物体必须设计出将姐妹染色单体偶联的策略,以使它们在第一次减数分裂期间(当同源染色体分开时)保持在一起,然后在第二次分裂期间彼此分离。在这里,我们回顾了最近的发现,这些发现揭示了秀丽隐杆线虫(一种具全中心染色体的生物)如何通过区分不同的染色体子结构域和在前期染色体结构重塑来应对减数分裂的这些挑战。此外,我们讨论了前期建立的染色体组织特征如何影响减数分裂分裂过程中后期的染色体行为。最后,我们说明了对全中心性减数分裂的分析如何可以帮助我们思考对单中心染色体起作用的机制。

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