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Three-dimensional Ultrastructure of Saccharomyces cerevisiae Meiotic Spindles

机译:酿酒酵母减数分裂纺锤体的三维超微结构

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Meiotic chromosome segregation leads to the production of haploid germ cells. During meiosis I (MI), the paired homologous chromosomes are separated. Meiosis II (MII) segregation leads to the separation of paired sister chromatids. In the budding yeast Saccharomyces cerevisiae , both of these divisions take place in a single nucleus, giving rise to the four-spored ascus. We have modeled the microtubules in 20 MI and 15 MII spindles by using reconstruction from electron micrographs of serially sectioned meiotic cells. Meiotic spindles contain more microtubules than their mitotic counterparts, with the highest number in MI spindles. It is possible to differentiate between MI versus MII spindles based on microtubule numbers and organization. Similar to mitotic spindles, kinetochores in either MI or MII are attached by a single microtubule. The models indicate that the kinetochores of paired homologous chromosomes in MI or sister chromatids in MII are separated at metaphase, similar to mitotic cells. Examination of both MI and MII spindles reveals that anaphase A likely occurs in addition to anaphase B and that these movements are concurrent. This analysis offers a structural basis for considering meiotic segregation in yeast and for the analysis of mutants defective in this process.
机译:减数分裂染色体分离导致单倍体生殖细胞的产生。在减数分裂I(MI)期间,成对的同源染色体被分离。减数分裂II(MII)分离导致配对的姐妹染色单体分离。在萌芽的酿酒酵母中,这两个部分都发生在单个核中,从而产生了四孢子的Ascus。我们通过使用连续切片的减数分裂细胞的电子显微照片的重建,对20 MI和15 MII纺锤体中的微管进行了建模。减数分裂纺锤体比有丝分裂纺锤体包含更多的微管,在MI纺锤体中数量最多。可以根据微管数量和组织来区分MI和MII纺锤。类似于有丝分裂纺锤体,MI或MII中的动植物通过单个微管附着。该模型表明,与有丝分裂细胞相似,MI中成对的同源染色体或MII中的姊妹染色单体的动植物体在中期分离。对MI和MII主轴的检查都表明,除了后期B之外,后期A可能还会发生,并且这些运动是同时发生的。该分析为考虑酵母中的减数分裂分离和该过程中缺陷突变体的分析提供了结构基础。

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