State Key Laboratory of Microbial Metabolism, Shanghai Jiao Tong University, Shanghai 200240, P,R, China.
BMC Genomics. 2013 Dec 27;14:924. doi: 10.1186/1471-2164-14-924.
With genomic sequences of many closely related bacterial strains made available by deep sequencing, it is now possible to investigate trends in prokaryotic microevolution. Positive selection is a sub-process of microevolution, in which a particular mutation is favored, causing the allele frequency to continuously shift in one direction. Wide scanning of prokaryotic genomes has shown that positive selection at the molecular level is much more frequent than expected. Genes with significant positive selection may play key roles in bacterial adaption to different environmental pressures. However, selection pressure analyses are computationally intensive and awkward to configure.
Here we describe an open access web server, which is designated as PSP (Positive Selection analysis for Prokaryotic genomes) for performing evolutionary analysis on orthologous coding genes, specially designed for rapid comparison of dozens of closely related prokaryotic genomes. Remarkably, PSP facilitates functional exploration at the multiple levels by assignments and enrichments of KO, GO or COG terms. To illustrate this user-friendly tool, we analyzed Escherichia coli and Bacillus cereus genomes and found that several genes, which play key roles in human infection and antibiotic resistance, show significant evidence of positive selection. PSP is freely available to all users without any login requirement at: http://db-mml.sjtu.edu.cn/PSP/.
PSP ultimately allows researchers to do genome-scale analysis for evolutionary selection across multiple prokaryotic genomes rapidly and easily, and identify the genes undergoing positive selection, which may play key roles in the interactions of host-pathogen and/or environmental adaptation.
随着深度测序提供了许多密切相关的细菌菌株的基因组序列,现在可以研究原核微生物进化的趋势。正选择是微进化的一个子过程,在这个过程中,一个特定的突变受到青睐,导致等位基因频率持续向一个方向转移。对原核基因组的广泛扫描表明,分子水平上的正选择比预期的要频繁得多。具有显著正选择的基因可能在细菌适应不同环境压力方面发挥关键作用。然而,选择压力分析计算密集且难以配置。
我们在这里描述了一个开放访问的网络服务器,称为 PSP(用于原核基因组的正选择分析),用于对直系同源编码基因进行进化分析,专门设计用于快速比较数十个密切相关的原核基因组。值得注意的是,PSP 通过 KO、GO 或 COG 术语的分配和丰富,促进了在多个层次上的功能探索。为了说明这个用户友好的工具,我们分析了大肠杆菌和蜡状芽孢杆菌的基因组,发现了几个在人类感染和抗生素耐药性中起关键作用的基因,显示出明显的正选择证据。PSP 可免费供所有用户使用,无需登录,网址为:http://db-mml.sjtu.edu.cn/PSP/。
PSP 最终允许研究人员快速轻松地对多个原核基因组进行大规模的进化选择分析,并识别出正在经历正选择的基因,这些基因可能在宿主-病原体相互作用和/或环境适应中发挥关键作用。