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Comparative and functional genomic analysis of human and chimpanzee retrotransposon sequences.

机译:人类和黑猩猩逆转录转座子序列的比较和功能基因组分析。

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摘要

Transposable elements (TEs) are mobile DNA sequences that can move from one location to another in the genome. These elements encode regulatory features including transcriptional promotion and termination signals facilitating the production of new transcripts (or elements). The elements thus produced are inserted back into the genome. Due to their insertional capacity and encoded regulatory features, TEs have, in recent years, been recognized as significant contributors to regulatory variation both within and between species. In comparing the human and chimpanzee genomes it has been hypothesized that the genetic basis of the phenotypic differences that distinguish them may be the result of regulatory differences existing between the two species. Since TEs inserted in proximity to genes can significantly alter gene expression patterns, this research aims at exploring the influence of TE sequences and retrotransposons in particular in the evolution of gene regulation between humans and chimpanzees.High-throughput genome processing, microarray analysis, programming, statistical analysis, information management and experimental evidence were used to achieve two major advances in the comparative genomics of human and chimpanzee genomes.Research Advance 1. A first systematic search of one particular class of retrotransposons---endogenous retroviruses (ERVs) was carried out in the chimpanzee genome. Forty two families of ERVs were identified in the chimpanzee genome including the discovery of 9 previously unknown families in humans. The vast majority of these families were found to have orthologs in the human genome except for two (CERV 1/PTERV1 and CERV 2) families. The two CERV families without orthologs in the human genome display a patchy distribution among primates. Nine families of chimpanzee ERVs have been transpositionally active since the human-chimpanzee divergence, while only two families have been active in the human lineage.Research Advance 2. The genomic differences [INDEL variation (80--12,000 bp in length)] between humans and chimpanzees are laid out. The INDEL variation located in or near genes is categorized in detail and is correlated with differences in gene expression patterns in a variety of organs and tissues. Results indicate that the majority of the INDEL variation between the two species is associated with retrotransposon sequences and that this variation is significantly correlated with differences in gene expression most notably in brain and testes. These findings are consistent with the hypothesis that retrotransposon mediated regulatory variation may have been a significant factor in human/chimpanzee evolution.
机译:转座因子(TEs)是可移动的DNA序列,可以从基因组中的一个位置移动到另一位置。这些元件编码调节功能,包括促进和产生新转录本(或元件)的转录促进和终止信号。由此产生的元件被插入到基因组中。由于其插入能力和编码的调控特征,近年来,TE被认为是物种内和物种间调控差异的重要贡献者。在比较人类和黑猩猩的基因组时,已经假设区分它们的表型差异的遗传基础可能是两个物种之间存在调节差异的结果。由于插入基因附近的TE可以显着改变基因表达模式,因此本研究旨在探索TE序列和逆转座子的影响,尤其是在人类和黑猩猩之间基因调控的进化中。高通量基因组处理,微阵列分析,编程,统计分析,信息管理和实验证据被用于实现人类和黑猩猩基因组比较基因组学的两个主要进展。研究进展1.首次系统搜索了一类特定的逆转录转座子-内源性逆转录病毒(ERV)在黑猩猩的基因组中。在黑猩猩基因组中鉴定出42个ERV家族,包括在人类中发现9个以前未知的家族。除了两个家族(CERV 1 / PTERV1和CERV 2)外,这些家族中的绝大多数都在人类基因组中具有直系同源物。在人类基因组中没有直系同源物的两个CERV家族在灵长类动物中显示出斑片状分布。自从人类黑猩猩发散以来,黑猩猩ERV的9个家族一直处于易位活性,而人类谱系中只有两个家族活跃。研究进展2.人类之间的基因组差异[INDEL变异(长度80--12,000 bp)]。和黑猩猩被放置。对位于基因内或基因附近的INDEL变异进行了详细分类,并与各种器官和组织中基因表达模式的差异相关。结果表明,两个物种之间的大多数INDEL变异与反转录转座子序列相关,并且该变异与基因表达的差异显着相关,最明显的是在大脑和睾丸中。这些发现与反转录转座子介导的调节变异可能是人类/黑猩猩进化的重要因素的假设相符。

著录项

  • 作者

    Polavarapu, Nalini.;

  • 作者单位

    Georgia Institute of Technology.;

  • 授予单位 Georgia Institute of Technology.;
  • 学科 Biology Genetics.Biology Bioinformatics.
  • 学位 Ph.D.
  • 年度 2007
  • 页码 160 p.
  • 总页数 160
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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