Chan A, Cande W Z
341 LSA, Department of Molecular and Cell Biology, University of California, Berkeley, CA 94720-3200, USA.
J Cell Sci. 1998 Dec;111 ( Pt 23):3507-15. doi: 10.1242/jcs.111.23.3507.
To understand how the meiotic spindle is formed and maintained in higher plants, we studied the organization of microtubule arrays in wild-type maize meiocytes and three maize meiotic mutants, desynaptic1 (dsy1), desynaptic2 (dsy2), and absence of first division (afd). All three meiotic mutations have abnormal chromosome pairing and produce univalents by diakinesis. Using these three mutants, we investigated how the absence of paired homologous chromosomes affects the assembly and maintenance of the meiotic spindle. Before nuclear envelope breakdown, in wild-type meiocytes, there were no bipolar microtubule arrays. Instead, these structures formed after nuclear envelope breakdown and were associated with the chromosomes. The presence of univalent chromosomes in dsy1, dsy2, and afd meiocytes and of unpaired sister chromatids in the afd meiocytes did not affect the formation of bipolar spindles. However, alignment of chromosomes on the metaphase plate and subsequent anaphase chromosome segregation were perturbed. We propose a model for spindle formation in maize meiocytes in which microtubules initially appear around the chromosomes during prometaphase and then the microtubules self-organize. However, this process does not require paired kinetochores to establish spindle bipolarity.
为了解减数分裂纺锤体在高等植物中是如何形成和维持的,我们研究了野生型玉米减数分裂细胞以及三个玉米减数分裂突变体(去联会1(dsy1)、去联会2(dsy2)和第一次分裂缺失(afd))中微管阵列的组织情况。所有这三个减数分裂突变体都有异常的染色体配对,并在终变期产生单价体。利用这三个突变体,我们研究了配对同源染色体的缺失如何影响减数分裂纺锤体的组装和维持。在核膜破裂之前,野生型减数分裂细胞中没有双极微管阵列。相反,这些结构在核膜破裂后形成,并与染色体相关联。dsy1、dsy2和afd减数分裂细胞中的单价染色体以及afd减数分裂细胞中未配对的姐妹染色单体的存在并不影响双极纺锤体的形成。然而,染色体在中期板上的排列以及随后后期染色体的分离受到了干扰。我们提出了一个玉米减数分裂细胞中纺锤体形成的模型,其中微管在前期围绕染色体最初出现,然后微管自我组织。然而,这个过程不需要配对的动粒来建立纺锤体的双极性。