首页> 美国卫生研究院文献>Genetics >The Genetic Analysis of Distributive Segregation in Drosophila Melanogaster. I. Isolation and Characterization of Aberrant X Segregation (Axs) a Mutation Defective in Chromosome Partner Choice
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The Genetic Analysis of Distributive Segregation in Drosophila Melanogaster. I. Isolation and Characterization of Aberrant X Segregation (Axs) a Mutation Defective in Chromosome Partner Choice

机译:果蝇分布隔离的遗传分析。 I.异常X分离(Axs)(在染色体伴侣选择中有缺陷的突变)的分离和表征

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摘要

We describe the isolation and characterization of Aberrant X segregation (Axs), a dominant female-specific meiotic mutation. Although Axs has little or no effect on the frequency or distribution of exchange, or on the disjunction of exchange bivalents, nonexchange X chromosomes undergo nondisjunction at high frequencies in Axs/+ and Axs/Axs females. This increased X chromosome nondisjunction is shown to be a consequence of an Axs-induced defect in distributive segregation. In Axs-bearing females, fourth chromosome nondisjunction is observed only in the presence of nonexchange X chromosomes and is argued to be the result of improper X and fourth chromosome associations within the distributive system. In XX females bearing a compound fourth chromosome, the frequency of nonhomologous disjunction of the X chromosomes from the compound fourth chromosome is shown to account for at least 80% of the total X nondisjunction observed. In addition, Axs diminishes or ablates the capacity of nonexchange X chromosomes to form trivalents in females bearing either a Y chromosome or a small free duplication for the X. Axs also impairs compound X from Y segregation. The effect of Axs on these segregations parallels the defects observed for homologous nonexchange X chromosome disjunction in Axs females. In addition to its dramatic effects on the X chromosome, Axs exerts a similar effect on the segregation of a major autosome. We conclude that Axs defines a locus required for proper homolog disjunction within the distributive system.
机译:我们描述了异常X分离(Axs)(一种占主导地位的女性特异性减数分裂突变)的分离和特征。尽管Axs对交换的频率或分布或交换二价的分离几乎没有影响,但在Axs / +和Axs / Axs雌性中,非交换X染色体在高频率下不分离。 X染色体不分离的增加表明是Axs诱导的分布分离缺陷的结果。在携带斧头的雌性中,只有在非交换X染色体存在的情况下才观察到第四染色体不分离,并且认为这是分布系统内X和第四染色体关联不正确的结果。在具有复合第四染色体的XX雌性中,显示X染色体与复合第四染色体的非同源分离的频率至少占观察到的全部X非分离的80%。另外,Axs减少或消除了非交换X染色体在带有Y染色体或X的少量自由重复的雌性中形成三价的能力。Axs还损害了化合物X的Y分离。 Axs对这些分离的作用与Axs雌性中观察到的同源非交换X染色体分离的缺陷相似。除了对X染色体的显着影响外,Axs对主要常染色体的分离也具有类似的作用。我们得出的结论是,Axs定义了分布系统内适当同源分离的所需基因座。

著录项

  • 期刊名称 Genetics
  • 作者

    A. E. Zitron; R. S. Hawley;

  • 作者单位
  • 年(卷),期 1989(122),4
  • 年度 1989
  • 页码 801–821
  • 总页数 21
  • 原文格式 PDF
  • 正文语种
  • 中图分类 遗传学;
  • 关键词

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