基于系统发育的细菌和古菌基因组百科全书。
A phylogeny-driven genomic encyclopaedia of Bacteria and Archaea.
机构信息
DOE Joint Genome Institute, Walnut Creek, California 94598, USA.
出版信息
Nature. 2009 Dec 24;462(7276):1056-60. doi: 10.1038/nature08656.
Sequencing of bacterial and archaeal genomes has revolutionized our understanding of the many roles played by microorganisms. There are now nearly 1,000 completed bacterial and archaeal genomes available, most of which were chosen for sequencing on the basis of their physiology. As a result, the perspective provided by the currently available genomes is limited by a highly biased phylogenetic distribution. To explore the value added by choosing microbial genomes for sequencing on the basis of their evolutionary relationships, we have sequenced and analysed the genomes of 56 culturable species of Bacteria and Archaea selected to maximize phylogenetic coverage. Analysis of these genomes demonstrated pronounced benefits (compared to an equivalent set of genomes randomly selected from the existing database) in diverse areas including the reconstruction of phylogenetic history, the discovery of new protein families and biological properties, and the prediction of functions for known genes from other organisms. Our results strongly support the need for systematic 'phylogenomic' efforts to compile a phylogeny-driven 'Genomic Encyclopedia of Bacteria and Archaea' in order to derive maximum knowledge from existing microbial genome data as well as from genome sequences to come.
细菌和古菌基因组测序极大地改变了我们对微生物所扮演的众多角色的理解。现在已经有近 1000 个完成的细菌和古菌基因组可供使用,其中大多数是根据它们的生理学选择进行测序的。因此,目前可用基因组提供的观点受到高度偏向的系统发育分布的限制。为了探索根据进化关系选择微生物基因组进行测序所带来的附加值,我们已经测序和分析了 56 个可培养的细菌和古菌物种的基因组,这些物种的选择旨在最大限度地提高系统发育覆盖率。对这些基因组的分析表明,在重建系统发育历史、发现新的蛋白质家族和生物特性以及预测其他生物的已知基因的功能等多个领域都有显著的益处(与从现有数据库中随机选择的等效基因组集相比)。我们的研究结果强烈支持需要进行系统的“系统发育基因组学”研究,以编制一个基于系统发育的“细菌和古菌基因组百科全书”,以便从现有微生物基因组数据以及未来的基因组序列中获取最大的知识。
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