首页> 外文期刊>Nucleic acids research >Novel sequencing strategy for repetitive DNA in a Drosophila BAC clone reveals that the centromeric region of the Y chromosome evolved from a telomere
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Novel sequencing strategy for repetitive DNA in a Drosophila BAC clone reveals that the centromeric region of the Y chromosome evolved from a telomere

机译:果蝇BAC克隆中重复DNA的新型测序策略揭示了Y染色体着丝粒区是从端粒进化来的。

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The centromeric and telomeric heterochromatin of eukaryotic chromosomes is mainly composed of middle-repetitive elements, such as transposable elements and tandemly repeated DNA sequences. Because of this repetitive nature, Whole Genome Shotgun Projects have failed in sequencing these regions. We describe a novel kind of transposon-based approach for sequencing highly repetitive DNA sequences in BAC clones. The key to this strategy relies on physical mapping the precise position of the transposon insertion, which enables the correct assembly of the repeated DNA. We have applied this strategy to a clone from the centromeric region of the Y chromosome of Drosophila melanogaster. The analysis of the complete sequence of this clone has allowed us to prove that this centromeric region evolved from a telomere, possibly after a pericentric inversion of an ancestral telocentric chromosome. Our results confirm that the use of transposon-mediated sequencing, including positional mapping information, improves current finishing strategies. The strategy we describe could be a universal approach to resolving the heterochromatic regions of eukaryotic genomes.
机译:真核染色体的着丝粒和端粒异染色质主要由中间重复元件组成,例如转座元件和串联重复的DNA序列。由于这种重复性,全基因组Shot弹枪计划未能对这些区域进行测序。我们描述了一种新型的基于转座子的方法,用于对BAC克隆中的高度重复性DNA序列进行测序。该策略的关键在于对转座子插入的精确位置进行物理定位,从而能够正确组装重复的DNA。我们已将此策略应用于果蝇Y染色体着丝粒区域的克隆。对这个克隆的完整序列的分析使我们能够证明该着丝粒区域是从端粒进化而来的,可能是在祖先的端中心染色体的周中心反转之后。我们的结果证实使用转座子介导的测序,包括位置作图信息,可以改善当前的育种策略。我们描述的策略可能是解决真核生物基因组异色区域的通用方法。

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