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涉及黑腹果蝇中反胸突变的“转座效应”的遗传分析。

Genetic analysis of "transvection" effects involving contrabithorax mutations in Drosophila melanogaster.

作者信息

Micol J L, García-Bellido A

机构信息

Centro de Biología Molecular, Universidad Autónoma de Madrid, Spain.

出版信息

Proc Natl Acad Sci U S A. 1988 Feb;85(4):1146-50. doi: 10.1073/pnas.85.4.1146.

Abstract

Contrabithorax (Cbx) alleles are dominant mutations in the Ultrabithorax (Ubx) gene of Drosophila that cause its ectopic expression in the mesothorax. We have studied the role of the homologous chromosome in the mesothoracic phenotype in several Cbx heterozygotes. None of the Cbx alleles studied shows variations in phenotype with extra doses of the Ubx gene. Only Cbx2 and CbxIRM (a revertant of Cbx1) show synapsis-dependent gene expression ("transvection"). The mesothoracic phenotypes of CbxIRM and Cbx2 heterozygotes are strongly modified when the homologous chromosome carries breakpoints proximal to or at the Ubx locus or null alleles of this gene. These lesions in the homologous chromosome enhance the Cbx2 mutant phenotype and reduce that of CbxIRM one. The genetic analysis of these transvection effects suggests that the transcription of the CbxIRM and Cbx2 alleles depends on RNAs of short radius of action from the homologous Ubx gene.

摘要

反胸复合体(Cbx)等位基因是果蝇超双胸基因(Ubx)中的显性突变,可导致其在中胸异位表达。我们研究了同源染色体在几种Cbx杂合子中胸表型中的作用。所研究的Cbx等位基因均未显示出随着Ubx基因额外剂量而出现表型变化。只有Cbx2和CbxIRM(Cbx1的回复突变体)表现出依赖联会的基因表达(“转座效应”)。当同源染色体携带靠近Ubx基因座或该基因的无效等位基因的断点时,CbxIRM和Cbx2杂合子的中胸表型会发生强烈改变。同源染色体中的这些损伤增强了Cbx2突变体表型,并降低了CbxIRM的表型。对这些转座效应的遗传分析表明,CbxIRM和Cbx2等位基因的转录依赖于来自同源Ubx基因的短作用半径的RNA。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/73e5/279723/8194a5206497/pnas00256-0186-a.jpg

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