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黑腹果蝇rRNA基因的完整序列。

Complete sequences of the rRNA genes of Drosophila melanogaster.

作者信息

Tautz D, Hancock J M, Webb D A, Tautz C, Dover G A

机构信息

Department of Genetics, University of Cambridge, United Kingdom.

出版信息

Mol Biol Evol. 1988 Jul;5(4):366-76. doi: 10.1093/oxfordjournals.molbev.a040500.

Abstract

In this, the first of three papers, we present the sequence of the ribosomal RNA (rRNA) genes of Drosophila melanogaster. The gene regions of D. melanogaster rDNA encode four individual rRNAs: 18S (1,995 nt), 5.8S (123 nt), 2S (30 nt), and 28S (3,945 nt). The ribosomal DNA (rDNA) repeat of D. melanogaster is AT rich (65.9% overall), with the spacers being particularly AT rich. Analysis of DNA simplicity reveals that, in contrast to the intergenic spacer (IGS) and the external transcribed spacer (ETS), most of the rRNA gene regions have been refractory to the action of slippage-like events, with the exception of the 28S rRNA gene expansion segments. It would seem that the 28S rRNA can accommodate the products of slippage-like events without loss of activity. In the following two papers we analyze the effects of sequence divergence on the evolution of (1) the 28S gene "expansion segments" and (2) the 28S and 18S rRNA secondary structures among eukaryotic species, respectively. Our detailed analyses reveal, in addition to unequal crossing-over, (1) the involvement of slippage and biased mutation in the evolution of the rDNA multigene family and (2) the molecular coevolution of both expansion segments and the nucleotides involved with compensatory changes required to maintain secondary structures of RNA.

摘要

在这篇(三篇论文中的第一篇)论文中,我们展示了黑腹果蝇核糖体RNA(rRNA)基因的序列。黑腹果蝇rDNA的基因区域编码四种独立的rRNA:18S(1995个核苷酸)、5.8S(123个核苷酸)、2S(30个核苷酸)和28S(3945个核苷酸)。黑腹果蝇的核糖体DNA(rDNA)重复序列富含AT(总体上为65.9%),间隔区尤其富含AT。对DNA简单性的分析表明,与基因间隔区(IGS)和外部转录间隔区(ETS)不同,除了28S rRNA基因扩展段外,大多数rRNA基因区域对类似滑动事件的作用具有抗性。似乎28S rRNA能够容纳类似滑动事件的产物而不丧失活性。在接下来的两篇论文中,我们分别分析了序列分歧对真核生物物种中(1)28S基因“扩展段”的进化以及(2)28S和18S rRNA二级结构进化的影响。我们的详细分析表明,除了不等交换外,(1)滑动和偏向性突变参与了rDNA多基因家族的进化,(2)扩展段和与维持RNA二级结构所需的补偿性变化相关的核苷酸都存在分子协同进化。

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