Cortes Daniel B, McNally Karen L, Mains Paul E, McNally Francis J
Department of Molecular and Cellular Biology, University of California, Davis, Davis, United States.
Department of Biochemistry and Molecular Biology, University of Calgary, Calgary, Canada.
Elife. 2015 Apr 7;4:e06056. doi: 10.7554/eLife.06056.
Trisomy, the presence of a third copy of one chromosome, is deleterious and results in inviable or defective progeny if passed through the germ line. Random segregation of an extra chromosome is predicted to result in a high frequency of trisomic offspring from a trisomic parent. Caenorhabditis elegans with trisomy of the X chromosome, however, have far fewer trisomic offspring than expected. We found that the extra X chromosome was preferentially eliminated during anaphase I of female meiosis. We utilized a mutant with a specific defect in pairing of the X chromosome as a model to investigate the apparent bias against univalent inheritance. First, univalents lagged during anaphase I and their movement was biased toward the cortex and future polar body. Second, late-lagging univalents were frequently captured by the ingressing polar body contractile ring. The asymmetry of female meiosis can thus partially correct pre-existing trisomy.
三体性,即一条染色体出现三条拷贝的情况,是有害的,如果通过生殖系传递,会导致后代无法存活或出现缺陷。额外染色体的随机分离预计会导致三体亲本产生高频率的三体后代。然而,秀丽隐杆线虫X染色体三体的三体后代比预期的要少得多。我们发现,额外的X染色体在雌性减数分裂的后期I被优先消除。我们利用一个在X染色体配对方面存在特定缺陷的突变体作为模型,来研究对单价遗传的明显偏向。首先,单价染色体在后期I滞后,其移动偏向皮层和未来的极体。其次,后期滞后的单价染色体经常被进入的极体收缩环捕获。因此,雌性减数分裂的不对称性可以部分纠正预先存在的三体性。