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首页> 外文期刊>Genetics: A Periodical Record of Investigations Bearing on Heredity and Variation >Genetic instability in Drosophila melanogaster mediated by hobo transposable elements.
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Genetic instability in Drosophila melanogaster mediated by hobo transposable elements.

机译:由果蝇转座因子介导的果蝇的遗传不稳定性。

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Eight independent recessive lethal mutations that occurred on derivatives of an unstable X chromosome (Uc) in Drosophila melanogaster were analyzed by a combination of genetic and molecular techniques. Seven of the mutations were localized to complementation groups in polytene chromosome bands 6E; 7A. In situ hybridization and genomic Southern analysis established that hobo transposable elements were associated with all seven of the mutations. Six mutations involved deletions of DNA, some of which were large enough to be seen cytologically, and in each case, a hobo element was inserted at the junction of the deletion's breakpoints. A seventh mutation was associated with a small inversion between 6F and 7A-B and a hobo element was inserted at one of its breakpoints. One of the mutant chromosomes had an active hobo-mediated instability, manifested by the recurrent production of mutations of the carmine (cm) locus in bands 6E5-6. This instability persisted for many generations in several sublines of an inbred stock. Two levels of instability, high and basal, were distinguished. Sublines with high instability had two hobo elements in the 6E-F region and produced cm mutations by deleting the segment between the two hobos; a single hobo element remained at the junction of the deletion breakpoints. Sublines with low instability had only one hobo element in the 6E-F region, but they also produced deletion mutations of cm. Both types of sublines also acquired hobo-mediated inversions on the X chromosome. Collectively, these results suggest that interactions between hobo elements are responsible for the instability of Uc. It is proposed that interactions between widely separated elements produce gross rearrangements that restructure the chromosome and that interactions between nearby elements cause regional instabilities manifested by the recurrence of specific mutations. These regional instabilities may arise when a copy of hobo transposes a short distance, creating a pair of hobos that can interact to produce small rearrangements.
机译:结合遗传和分子技术,分析了果蝇中不稳定X染色体(Uc)的衍生物上发生的八个独立的隐性致死突变。其中的七个突变位于多染色体染色体6E的互补组中。 7A。原位杂交和基因组Southern分析确定,hobo转座因子与所有七个突变相关。六个突变涉及DNA的缺失,其中一些突变足够大,可以从细胞学上观察到,并且在每种情况下,hobo元件都插入了缺失断点的交界处。第七个突变与6F和7A-B之间的小反转有关,并且在其断点之一处插入了流浪汉元素。突变的染色体之一具有活性的hobo介导的不稳定性,表现为在6E5-6条带中胭脂红(cm)基因座的突变反复产生。这种不稳定性在自交系的几个子系中持续了好几代。区分了两个级别的不稳定性,即高度不稳定性和基础性。高度不稳定的亚系在6E-F区有两个Hobo元件,并通过删除两个Hobo之间的片段而产生了cm突变。单个hobo元件保留在删除断点的交界处。不稳定度较低的亚系在6E-F区只有一个hobo元件,但它们也会产生cm的缺失突变。两种亚型都在X染色体上获得了hobo介导的倒位。总的来说,这些结果表明流浪汉元素之间的相互作用是造成Uc不稳定的原因。建议广泛分离的元件之间的相互作用产生重新排列染色体的总体重排,并且邻近元件之间的相互作用引起由特定突变的复发表现出的区域不稳定性。当流浪汉的副本移置一小段距离时,就会产生这些区域不稳定性,从而形成一对可以相互作用以产生较小重排的流浪汉。

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