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Haloarchaeal comparative genomics and the local context model of genomic evolution.

机译:Haloarchaeal比较基因组学和基因组进化的局部环境模型。

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摘要

Genomics is a rapidly expanding field of research that seeks to study the structure, function and evolution of an organism's genome. Genomic investigations were conducted on three species of haloarchaea, a monophyletic group of prokaryotes belonging to the kingdom Euryarchaeota of the domain Archaea that are adapted to high-salt environments. A physical and genetic map of the genome of Halobacterium salinarum GRB is described. This map and the previously published map of the genome of Haloferax volcanii DS2 were compared with the object of detecting any conservation in the order or spacing of homologous loci between the two genomes. A computer program--COMPAGEN--was developed to aid in the analysis of the data generated by this comparison. No map order conservation could be detected at the 15 kbp average resolution of this comparison between genomes estimated to have diverged 600 million years ago. A second comparison was performed between the chromosomes of Haloferax volcanii DS2 and Haloferax mediterranei ATCC 33500 (R-4). Extensive conservation was found between these two genomes which diverged approximately 80 million years ago showing only three rearrangements: two inversions and a transposition. Conclusions drawn from an analysis of the comparisons include: (1) that higher resolution is required to deal with distantly related genomes, likely making use of sequence data, and (2) that it is important to compare genomes that have diverged at different times if one wishes to investigate the dynamics of genomic evolution within a phylogenetic group. The local context model was developed in an effort to explain the pattern of conservation and divergence seen in these and other prokaryotic genome comparisons. This model states that since the expression of genes is affected by flanking genetic elements, genes will resist changing their position relative to one another so long as this change is likely to alter gene expression in a way deleterious to the cell. The local context model thus provides a force promoting the conservation of genomic map order. The implications of this model for the evolution of the haloarchaea is discussed and future directions of prokaryotic genomics in general is explored.
机译:基因组学是一个快速扩展的研究领域,旨在研究生物体基因组的结构,功能和进化。基因组研究是针对三种盐生古生物进行的,这是一种原核生物的单系原核生物,属于古细菌领域的Euryarchaeota王国,适合高盐环境。描述了盐沼盐杆菌GRB基因组的物理和遗传图谱。将该图谱和Volhalii volcanii DS2基因组的先前发布的图谱进行比较,以检测两个基因组之间同源基因座的顺序或间隔的任何保守性。开发了计算机程序COMPAGEN,以帮助分析此比较生成的数据。在估计6亿年前发生分歧的基因组之间的比较中,平均分辨率为15 kbp,无法检测到图谱保守性。在Haloferax volcanii DS2和Metalterranei ATCC 33500(R-4)的染色体之间进行了第二次比较。在这两个基因组之间发现了广泛的保守性,这两个基因组在大约8000万年前发生了分歧,仅显示了三个重排:两个倒置和一个换位。从比较分析中得出的结论包括:(1)需要更高分辨率来处理遥远相关的基因组,可能利用序列数据;(2)比较在不同时间发生差异的基因组非常重要。一个人希望调查系统发育组内基因组进化的动力学。开发本地上下文模型是为了解释在这些和其他原核基因组比较中看到的保守和差异模式。该模型表明,由于基因的表达受侧翼遗传因素的影响,因此基因将抵抗相对于彼此的位置改变,只要这种改变可能以对细胞有害的方式改变基因表达即可。因此,局部上下文模型提供了促进基因组图谱顺序守恒的力量。讨论了该模型对盐生古细菌进化的意义,并探讨了原核基因组学的一般方向。

著录项

  • 作者

    St. Jean, Andrew Louis.;

  • 作者单位

    University of Ottawa (Canada).;

  • 授予单位 University of Ottawa (Canada).;
  • 学科 Biology Molecular.;Biology Microbiology.;Biology Genetics.
  • 学位 Ph.D.
  • 年度 1996
  • 页码 201 p.
  • 总页数 201
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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