首页> 美国卫生研究院文献>DNA Research: An International Journal for Rapid Publication of Reports on Genes and Genomes >Editors choice: AnABlast: a new in silico strategy for the genome-wide search of novel genes and fossil regions
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Editors choice: AnABlast: a new in silico strategy for the genome-wide search of novel genes and fossil regions

机译:编辑推荐:AnABlast:一种新的计算机模拟策略可在全基因组范围内搜索新基因和化石区域

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摘要

Genome annotation, assisted by computer programs, is one of the great advances in modern biology. Nevertheless, the in silico identification of small and complex coding sequences is still challenging. We observed that amino acid sequences inferred from coding—but rarely from non-coding—DNA sequences accumulated alignments in low-stringency BLAST searches, suggesting that this alignments accumulation could be used to highlight coding regions in sequenced DNA. To investigate this possibility, we developed a computer program (AnABlast) that generates profiles of accumulated alignments in query amino acid sequences using a low-stringency BLAST strategy. To validate this approach, all six-frame translations of DNA sequences between every two annotated exons of the fission yeast genome were analysed with AnABlast. AnABlast-generated profiles identified three new copies of known genes, and four new genes supported by experimental evidence. New pseudogenes, ancestral carboxyl- and amino-terminal subtractions, complex gene rearrangements, and ancient fragments of mitDNA and of bacterial origin, were also inferred. Thus, this novel in silico approach provides a powerful tool to uncover new genes, as well as fossil-coding sequences, thus providing insight into the evolutionary history of annotated genomes.
机译:在计算机程序的辅助下,基因组注释是现代生物学的一大进步。然而,对小的和复杂的编码序列进行计算机识别仍然是挑战。我们观察到,从编码(但很少从非编码)DNA序列推断出的氨基酸序列在低严格性BLAST搜索中积累了比对,这表明该比对积累可用于突出显示已测序DNA中的编码区。为了研究这种可能性,我们开发了一种计算机程序(AnABlast),该程序使用低严格性BLAST策略生成查询氨基酸序列中累积比对的图谱。为了验证该方法,使用AnABlast分析了裂变酵母基因组每两个带注释的外显子之间DNA序列的所有六帧翻译。 AnABlast生成的谱图鉴定了已知基因的三个新副本,以及实验证据支持的四个新基因。还推断出新的假基因,祖先的羧基和氨基末端扣除,复杂的基因重排以及mitDNA和细菌起源的古老片段。因此,这种新颖的计算机方法提供了一种强大的工具,可揭示新基因以及化石编码序列,从而提供对带注释基因组进化史的深入了解。

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