首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >An intragenic tandem duplication of genomic DNA is responsible for the f3N mutation of Drosophila melanogaster.
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An intragenic tandem duplication of genomic DNA is responsible for the f3N mutation of Drosophila melanogaster.

机译:基因组DNA的基因内串联重复是果蝇果蝇的f3N突变的原因。

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摘要

Among the numerous X chromosome-linked forked bristle (f) mutations described in Drosophila melanogaster, one designated f3N exhibits the unusual property of reverting spontaneously to wild type at an inordinate frequency, a frequency that can be increased with x-ray irradiation. In contrast to the f mutants described thus far, all of which are associated with the insertion of mobile DNA elements, f3N is associated with an intragenic duplication of 2.8 kb of genomic DNA that resolves to the normal sequence when reversions occur. Consideration is given to intrachromosomal recombination as the mechanism of reversion and truncation of the forked protein as a cause for the mutant phenotype.
机译:在果蝇中描述的众多X染色体连锁的叉状刚毛(f)突变中,一个命名为f3N表现出不寻常的特性,该特性以过高的频率自发恢复为野生型,该频率可以通过X射线照射而增加。与迄今为止描述的所有f突变体(与移动DNA元件的插入相关)相反,f3N与2.8 kb基因组DNA的基因内复制相关,当发生回复时,该基因组复制解析为正常序列。考虑将染色体内重组作为叉状蛋白的回复和截短的机制,该机制是突变表型的原因。

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