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Heterochromatic Threads Connect Oscillating Chromosomes during Prometaphase I in Drosophila Oocytes

机译:果蝇卵母细胞前中期I期间异色线程连接振荡的染色体。

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摘要

In Drosophila oocytes achiasmate homologs are faithfully segregated to opposite poles at meiosis I via a process referred to as achiasmate homologous segregation. We observed that achiasmate homologs display dynamic movements on the meiotic spindle during mid-prometaphase. An analysis of living prometaphase oocytes revealed both the rejoining of achiasmate X chromosomes initially located on opposite half-spindles and the separation toward opposite poles of two X chromosomes that were initially located on the same half spindle. When the two achiasmate X chromosomes were positioned on opposite halves of the spindle their kinetochores appeared to display proper co-orientation. However, when both Xs were located on the same half spindle their kinetochores appeared to be oriented in the same direction. Thus, the prometaphase movement of achiasmate chromosomes is a congression-like process in which the two homologs undergo both separation and rejoining events that result in the either loss or establishment of proper kinetochore co-orientation. During this period of dynamic chromosome movement, the achiasmate homologs were connected by heterochromatic threads that can span large distances relative to the length of the developing spindle. Additionally, the passenger complex proteins Incenp and Aurora B appeared to localize to these heterochromatic threads. We propose that these threads assist in the rejoining of homologs and the congression of the migrating achiasmate homologs back to the main chromosomal mass prior to metaphase arrest.
机译:在果蝇卵母细胞中,通过称为花生四烯酸同源分离的过程,花生四烯酸同源物在减数分裂I处忠实地分离到相反的两极。我们观察到,花生四烯酸同源物在中期前中期在减数分裂纺锤体上显示动态运动。对存活的中期前卵母细胞的分析显示,最初位于相对半轴上的花生四烯酸X染色体重新结合,以及最初位于同一半轴上的两个X染色体向相反极的分离。当两个achiasmate X染色体位于纺锤的相对两半时,它们的动粒体似乎显示出适当的共取向。但是,当两个X都位于同一半轴上时,它们的动粒体似乎朝着相同的方向。因此,achiasmate染色体的前中期运动是类似于国会的过程,其中两个同源物都经历分离和重新结合的事件,从而导致失去或建立适当的线粒体共取向。在动态染色体运动的这段时间内,八面体同系物通过异色螺纹连接,该异色螺纹相对于发育中的纺锤的长度可以跨越较大的距离。此外,客运复合蛋白Incenp和Aurora B似乎定位于这些异色线。我们建议这些线程有助于同系物的重新结合,以及在中期停滞之前将迁移的顺式同系物转换回主要染色体团。

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