从系统发育比较中检测水平基因转移。

International journal of evolutionary biology Pub Date : 2012-01-01 Epub Date: 2012-05-23 DOI:10.1155/2012/813015
Victor Satler Pylro, Luciano de Souza Vespoli, Gabriela Frois Duarte, Karla Suemy Clemente Yotoko
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引用次数: 0

摘要

细菌系统发育已成为微生物生态学最重要的挑战之一。这一领域始于 20 世纪 70 年代中期,目的是利用小亚基核糖体 RNA(16S)工具的序列来推断细菌的系统发育。基于其他序列的系统发育假说通常给出相互矛盾的拓扑结构,揭示了不同的进化历史,在某些情况下可能是水平基因转移事件的结果。目前,分子生物学的主要目标之一是了解水平基因转移在物种适应和进化中的作用。在这项工作中,我们比较了基于 16S 的系统发生树和基于dszC 的系统发生树,dszC 是一种参与碳硫键裂解的基因。当生活在缺乏游离矿物硫的环境中时,一些属的细菌会执行这一生存任务。脱硫过程的生化途径因其经济重要性而受到广泛研究,因为这一步骤成本高昂,而且在燃料生产中不可或缺。我们的研究结果清楚地表明,利用从公共序列数据库中获得的基因序列,采用常见的系统发生学方法可以检测到横向基因转移事件。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Detection of horizontal gene transfers from phylogenetic comparisons.

Detection of horizontal gene transfers from phylogenetic comparisons.

Detection of horizontal gene transfers from phylogenetic comparisons.

Detection of horizontal gene transfers from phylogenetic comparisons.

Bacterial phylogenies have become one of the most important challenges for microbial ecology. This field started in the mid-1970s with the aim of using the sequence of the small subunit ribosomal RNA (16S) tool to infer bacterial phylogenies. Phylogenetic hypotheses based on other sequences usually give conflicting topologies that reveal different evolutionary histories, which in some cases may be the result of horizontal gene transfer events. Currently, one of the major goals of molecular biology is to understand the role that horizontal gene transfer plays in species adaptation and evolution. In this work, we compared the phylogenetic tree based on 16S with the tree based on dszC, a gene involved in the cleavage of carbon-sulfur bonds. Bacteria of several genera perform this survival task when living in environments lacking free mineral sulfur. The biochemical pathway of the desulphurization process was extensively studied due to its economic importance, since this step is expensive and indispensable in fuel production. Our results clearly show that horizontal gene transfer events could be detected using common phylogenetic methods with gene sequences obtained from public sequence databases.

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