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Conservation patterns in different functional sequence categories of divergent Drosophila species.

机译:果蝇物种不同功能序列类别的保护模式。

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We have explored the distributions of fully conserved ungapped blocks in genome-wide pair-wise alignments of recently completed species of Drosophila: D. melanogaster, D. yakuba, D. ananassae, D. pseudoobscura, D. virilis, and D. mojavensis. Based on these distributions we have found that nearly every functional sequence category possesses its own distinctive conservation pattern, sometimes independent of the overall sequence conservation level. In the coding and regulatory regions, the ungapped blocks were longer than in introns, UTRs, and nonfunctional sequences. At the same time, the blocks in the coding regions carried a 3N + 2 signature characteristic of synonymous substitutions in the third-codon position. Larger block sizes in transcription regulatory regions can be explained by the presence of conserved arrays of binding sites for transcription factors. We also have shown that the longest ungapped blocks, or "ultraconserved" sequences, are associated with specific gene groups, including those encoding ion channels and components of the cytoskeleton. We discuss how restraining conservation patterns may help in mapping functional sequence categories and improve genome annotation.
机译:我们已经研究了果蝇最近完成的物种的全基因组成对比对中完全保守的无缺口区块的分布:D。melanogaster,D。yakuba,D。ananassae,D。pseudoobscura,D。virilis和D. mojavensis。基于这些分布,我们发现几乎每个功能序列类别都具有其自己独特的保守性模式,有时与整体序列保守性水平无关。在编码和调控区,无内含子的区块比内含子,UTR和非功能性序列更长。同时,编码区中的块在第三个密码子位置带有同义替换的3N + 2签名特征。转录调节区中较大的嵌段大小可以通过转录因子结合位点的保守阵列的存在来解释。我们还表明,最长的无缺口的块或“超保守”序列与特定的基因组有关,包括编码离子通道和细胞骨架成分的基因组。我们讨论了限制保守性模式如何有助于定位功能序列类别并改善基因组注释。

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