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Computational characterization of prokaryotic genomic islands.

机译:原核基因组岛的计算表征。

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摘要

Genomic islands, including pathogenicity islands, are commonly defined as clusters of genes in prokaryotic genomes that have probable horizontal origins. These genetic elements have been associated with rapid adaptations in prokaryotes that are of medical, economical or environmental importance, such as pathogen virulence, antibiotic resistance, symbiotic interactions with plants, and notable secondary metabolic capabilities. As the number of genomic sequences increases, the impact of genomic islands in prokaryotic evolution has become more apparent and detecting these regions using bioinformatics approaches has become an integral part of studying microbial evolution and function. I therefore constructed and analyzed a set of previously reported genomic islands, most of which are pathogenicity islands, to quantify features associated with islands as a prelude to improving their identification and characterization, integrated some of the features associated with islands into a bioinformatics tool, named IslandPath, which aids visual detection and analysis of genomic islands. Features incorporated included %G+C of genes, dinucleotide bias of gene-clusters, occurrence of mobility genes, and presence of tRNA genes. Using IslandPath, and our knowledge of features of islands, I constructed sets of computationally predicted genomic islands and characterized the classes and functions of the gene products in these regions, conducted the first large-scale analysis of genomic islands from over 60 prokaryotic genomes and showed that the distribution of genes in the islands versus the rest of a given genome is non-random for a wide range of phyla. Certain protein functional categories, including many virulence factors and novel hypothetical proteins, are significantly more prevalent in genomic islands. This study also led to the proposal that the horizontally-inherited gene pool is characteristically distinct from, and may be larger than, the vertically-inherited prokaryotic gene pool. I also carried out detailed analyses of genomic islands in the Rhodococcus sp. RHA1 genome to shed light on its evolutionary history. The results suggest that RHA1's unusually large genome is not due to recent horizontal gene transfer, but rather formed through more ancient evolutionary processes. Overall, my studies offer new insights into the features associated with genomic islands and the significance of these regions in prokaryotic evolution.;Keywords: Bioinformatics; prokaryotes; genomics; horizontal gene transfer; genomic islands; evolution; bacteria; archaea.
机译:基因岛,包括致病岛,通常被定义为原核基因组中可能具有水平起源的基因簇。这些遗传因素与原核生物的快速适应具有医学,经济或环境重要性,例如病原体毒力,抗生素抗性,与植物的共生相互作用以及显着的次级代谢能力。随着基因组序列数目的增加,基因组岛对原核进化的影响变得更加明显,并且使用生物信息学方法检测这些区域已成为研究微生物进化和功能的组成部分。因此,我构建并分析了一组先前报道的基因组岛,其中大多数是致病岛,以量化与岛有关的特征,以此作为改进对岛的识别和表征的序幕,并将与岛有关的某些特征整合到了生物信息学工具中,该工具名为IslandPath,有助于视觉检测和分析基因组岛。纳入的功能包括基因的%G + C,基因簇的二核苷酸偏倚,迁移性基因的出现和tRNA基因的存在。利用IslandPath,以及我们对岛屿特征的了解,我构建了计算预测的基因组岛集,并对这些区域中的基因产物的种类和功能进行了表征,对来自60多个原核基因组的基因组岛进行了首次大规模分析,并展示了岛上基因的分布与给定基因组其余部分的分布对于很大范围的门都是非随机的。某些蛋白质功能类别,包括许多毒力因子和新颖的假设蛋白质,在基因组岛中明显更为普遍。这项研究还提出了这样一个建议,即水平继承的基因库在特征上不同于垂直继承的原核基因库,并且可能大于垂直继承的原核基因库。我还对红球菌属中的基因岛进行了详细分析。 RHA1基因组阐明了其进化历史。结果表明,RHA1异常大的基因组不是由于最近的水平基因转移,而是通过更古老的进化过程形成的。总的来说,我的研究为与基因组岛相关的特征以及这些区域在原核进化中的意义提供了新的见解。原核生物基因组学水平基因转移;基因岛演化;菌;古细菌。

著录项

  • 作者

    Hsiao, William Wei-Liang.;

  • 作者单位

    Simon Fraser University (Canada).;

  • 授予单位 Simon Fraser University (Canada).;
  • 学科 Bioinformatics.
  • 学位 Ph.D.
  • 年度 2007
  • 页码 223 p.
  • 总页数 223
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 能源与动力工程;
  • 关键词

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