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From equator to pole: splitting chromosomes in mitosis and meiosis

机译:从赤道到极点:分裂有丝分裂和减数分裂的染色体

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摘要

During eukaryotic cell division, chromosomes must be precisely partitioned to daughter cells. This relies on a mechanism to move chromosomes in defined directions within the parental cell. While sister chromatids are segregated from one another in mitosis and meiosis II, specific adaptations enable the segregation of homologous chromosomes during meiosis I to reduce ploidy for gamete production. Many of the factors that drive these directed chromosome movements are known, and their molecular mechanism has started to be uncovered. Here we review the mechanisms of eukaryotic chromosome segregation, with a particular emphasis on the modifications that ensure the segregation of homologous chromosomes during meiosis I.
机译:在真核细胞分裂过程中,染色体必须精确地分配给子细胞。这依赖于在亲代细胞内沿确定的方向移动染色体的机制。尽管姐妹染色单体在有丝分裂和减数分裂II中彼此分离,但特定的适应性使减数分裂I期间同源染色体的分离减少了配子产生的倍性。驱动这些定向染色体运动的许多因素是已知的,并且它们的分子机制已经开始被发现。在这里,我们审查了真核染色体分离的机制,特别着重于确保在减数分裂I期间同源染色体分离的修饰。

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