首页> 外文期刊>Molecular and Cellular Biology >Electron microscopic heteroduplex mapping identifies regions of the engrailed locus that are conserved between Drosophila melanogaster and Drosophila virilis.
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Electron microscopic heteroduplex mapping identifies regions of the engrailed locus that are conserved between Drosophila melanogaster and Drosophila virilis.

机译:电子显微异源双链作图可鉴定出黑果蝇和果蝇之间保守的基因位点区域。

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Physical localization of mutations in the engrailed (en) gene suggested that at least 70 kilobases (kb) of genomic sequences contribute to the normal function of this gene. Molecular characterization has suggested that en function is encoded in a small, 4.5-kb primary transcript. To identify functional regions within the 70 kb of the en locus of D. melanogaster, we identified sequences conserved in the D. virilis genome (estimated divergence time, 60 million years). Based on homology to D. melanogaster, we isolated en DNA from a D. virilis genomic library. Electron microscopic heteroduplex analysis indicated that in 70 kb there is 20 kb of conserved DNA in 33 different regions dispersed throughout the en locus, including two which encode parts of the major embryonic transcript. The conserved regions are in the same linear order and are spaced by similar lengths of nonconserved sequences in the D. virilis and D. melanogaster DNAs. What functional constraints have enforced conservation of sequences throughout the entire 70 kb and protected the region from divergence of size and arrangement? Our working hypothesis is that sequences necessary for the complex spatial and temporal pattern of en expression are dispersed throughout the 70-kb en locus and that selection for proper regulation restricts evolutionary divergence.
机译:突变基因(en)基因的物理定位表明,至少有70 KB的基因组序列有助于该基因的正常功能。分子表征表明功能是在一个小的4.5kb初级转录物中编码的。为了鉴定D. melanogaster基因的70 kb内的功能区,我们鉴定了D. virilis基因组中保守的序列(估计发散时间为6000万年)。基于与D. melanogaster的同源性,我们从D. virilis基因组文库中分离了en DNA。电子显微镜异源双链分析表明,在70 kb的区域中,分布在整个基因座的33个不同区域中有20 kb的保守DNA,其中两个区域编码主要的胚胎转录本。保守区以相同的线性顺序排列,并在维氏梭菌和黑腹果蝇DNA中以相似长度的非保守序列隔开。哪些功能上的约束条件迫使整个70 kb的序列保持保守,并保护该区域免受大小和排列的差异?我们的工作假设是,复杂的en表达时空模式所必需的序列分散在整个70 kb的基因座中,并且选择适当的调控限制了进化的差异。

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