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Arrangement of gene pairs, retrotransposon insertions, and regulation of gene expression in plants.

机译:植物中基因对的排列,反转录转座子的插入和基因表达的调节。

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摘要

Plant genomes are extremely complex. Myriad factors contribute to their evolution and organization, as well as to the expression and regulation of individual genes. Here we present investigations into several such factors and their influence on genome structure and gene expression: the arrangement of pairs of physically adjacent genes, retrotransposons closely associated with genes, and the effect of retrotransposons on gene pair evolution.;All sequenced plant genomes contain a significant fraction of retrotransposons, including that of rice. We investigated the effects of retrotransposons within rice genes and within a 1 kb putative promoter region upstream of each gene. We found that approximately one-sixth of all rice genes are closely associated with retrotransposons. Insertions within a gene's promoter region tend to block gene expression, while retrotransposons within genes promote the existence of alternative splicing forms. We also identified several other trends in retrotransposon insertion and its effects on gene expression.;Several studies have previously noted a connection among genes between physical proximity and correlated expression profiles. To determine the degree to which this correlation depends on an exact physical arrangement, we studied the expression and interspecies conservation of convergent and divergent gene pairs in rice, Arabidopsis, and Populus trichocarpa . Correlated expression among gene pairs was quite common in all three species, yet conserved arrangement was rare. However, conservation of gene pair arrangement was significantly more common among pairs with strongly correlated expression levels.;In order to uncover additional properties of gene pair conservation and rearrangement, we performed a comparative analysis of convergent, divergent, and tandem gene pairs in rice, sorghum, maize, and Brachypodium. We noted considerable differences between gene pair types and species. We also constructed a putative evolutionary history for each pair, which led to several interesting discoveries.;To further elucidate the causes of gene pair conservation and rearrangement, we identified retrotransposon insertions in and near rice gene pairs. Retrotransposon-associated pairs are less likely to be conserved, although there are significant differences in the possible effect of different types and locations of retrotransposon insertions. The three types of gene pair also varied in their susceptibility to retrotransposon-associated evolutionary changes.
机译:植物基因组非常复杂。无数的因素有助于它们的进化和组织,以及单个基因的表达和调控。在这里,我们对几种这样的因素及其对基因组结构和基因表达的影响进行了调查:物理上相邻基因对的排列,与基因紧密相关的逆转座子以及逆转座子对基因对进化的影响。;所有测序的植物基因组均包含一个逆转座子的大部分,包括大米。我们调查了反转录转座子在水稻基因内以及每个基因上游1 kb推定启动子区域内的作用。我们发现所有水稻基因中大约有六分之一与逆转录转座子密切相关。基因启动子区域内的插入倾向于阻断基因表达,而基因内的逆转座子则促进其他剪接形式的存在。我们还确定了反转录转座子插入及其对基因表达的影响的其他趋势。先前的几项研究已注意到物理接近度和相关表达谱之间基因之间的联系。为了确定这种相关性取决于精确的物理排列的程度,我们研究了水稻,拟南芥和毛果杨中趋同和趋异基因对的表达和种间保守性。基因对之间的相关表达在这三个物种中都很普遍,但是保守的排列却很少。然而,在表达水平高度相关的基因对中,基因对排列的保守性更为普遍。为了揭示基因对保守性和重排的其他特性,我们对水稻的趋同,发散和串联基因对进行了比较分析,高粱,玉米和短梗。我们注意到基因对类型和物种之间的巨大差异。我们还为每对构建了推定的进化史,这导致了一些有趣的发现。为了进一步阐明基因对保守和重排的原因,我们鉴定了水稻基因对中及其附近的反转录转座子插入。逆转录转座子相关的对不太可能被保存,尽管在不同类型和位置的逆转座子插入的可能影响方面存在显着差异。这三种基因对逆转录转座子相关的进化变化的敏感性也各不相同。

著录项

  • 作者

    Krom, Nicholas D.;

  • 作者单位

    Michigan Technological University.;

  • 授予单位 Michigan Technological University.;
  • 学科 Biology Bioinformatics.
  • 学位 Ph.D.
  • 年度 2009
  • 页码 133 p.
  • 总页数 133
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:37:54

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