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首页> 外文期刊>Mutation Research: International Journal on Mutagenesis, Chromosome Breakage and Related Subjects >Oncoviral DNAs induce transposition of endogenous mobile elements in the genome of Drosophila melanogaster.
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Oncoviral DNAs induce transposition of endogenous mobile elements in the genome of Drosophila melanogaster.

机译:癌病毒DNA诱导果蝇果蝇基因组中内源性移动元件的转座。

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Previously, we have shown that particles of Rous sarcoma virus or cloned fragments of RSV cDNA as well as DNA of oncogenic simian adenovirus Sa7, injected into the polar plasm of early Drosophila melanogaster embryos, were able to induce, with high frequency, unstable visible mutations in different groups of genetic loci. The genetic instability of the recovered mutations, i.e., their ability to revert to normal state or to generate new mutant alleles at the affected locus, was manifest in mutant lines through several generations. The molecular analysis undertaken in this study of the yellow-scute loci region which is highly sensitive to the microinjected Sa7 DNA, and of the white locus, that frequently mutates under the influence of RSV cDNA, clearly shows that the induced mutations and reversions are accompanied by insertion/excision of endogenous mobile elements. This conclusion is confirmed by in situ hybridization experiments which demonstrate that the adenovirus DNA is able to change, though with different efficiency, the chromosomal localization of certain Drosophila retrotransposons. These results partially elucidate the molecular mechanism of the genetic instability in D. melanogaster induced by microinjection of oncoviruses into early embryos, implying that is results from mobilization of endogenous transposons which play the role of insertional elements directly causing unstable mutations.
机译:以前,我们已经证明,注射到黑腹果蝇早期胚胎的极性质中的劳斯肉瘤病毒颗粒或RSV cDNA克隆片段以及致癌猿猴腺病毒Sa7的DNA能够高频诱导不稳定的可见突变。在不同的遗传基因座组中。恢复的突变的遗传不稳定性,即它们恢复正常状态或在受影响的位点产生新的突变等位基因的能力,在几代的突变系中都得到体现。在这项研究中,对显微注射的Sa7 DNA高度敏感的黄皮座位区和白色基因座(在RSV cDNA的影响下经常发生突变)进行了分子分析,清楚地表明,诱导的突变和回复是伴随着的通过插入/切除内源性移动元件。通过原位杂交实验证实了这一结论,该实验表明腺病毒DNA能够改变某些果蝇逆转录转座子的染色体定位,尽管效率不同。这些结果部分阐明了通过将癌病毒微注射到早期胚胎中而引起的黑腹果蝇遗传不稳定性的分子机制,这暗示是由内源转座子的动员引起的,内源转座子起着直接引起不稳定突变的插入元件的作用。

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