Interdisciplinary Program in Bioinformatics, Seoul National University, Seoul, 00826, Republic of Korea.
Institute of Molecular Biology & Genetics, Seoul National University, Seoul, 00826, Republic of Korea.
J Microbiol. 2018 Apr;56(4):280-285. doi: 10.1007/s12275-018-8014-6. Epub 2018 Feb 28.
Genome-based phylogeny plays a central role in the future taxonomy and phylogenetics of Bacteria and Archaea by replacing 16S rRNA gene phylogeny. The concatenated core gene alignments are frequently used for such a purpose. The bacterial core genes are defined as single-copy, homologous genes that are present in most of the known bacterial species. There have been several studies describing such a gene set, but the number of species considered was rather small. Here we present the up-to-date bacterial core gene set, named UBCG, and software suites to accommodate necessary steps to generate and evaluate phylogenetic trees. The method was successfully used to infer phylogenomic relationship of Escherichia and related taxa and can be used for the set of genomes at any taxonomic ranks of Bacteria. The UBCG pipeline and file viewer are freely available at https://www.ezbiocloud.net/tools/ubcg and https://www.ezbiocloud.net/tools/ubcg_viewer , respectively.
基于基因组的系统发育在未来的细菌和古菌分类学和系统发生学中起着核心作用,它取代了 16S rRNA 基因系统发育。经常使用串联核心基因比对来实现这一目的。细菌核心基因被定义为单拷贝、同源基因,存在于大多数已知的细菌物种中。已经有几项研究描述了这样的基因集,但考虑的物种数量相当少。在这里,我们展示了最新的细菌核心基因集,命名为 UBCG,以及软件套件,以适应生成和评估系统发育树的必要步骤。该方法成功地用于推断大肠杆菌和相关分类群的系统发育关系,并且可以用于任何细菌分类等级的基因组集。UBCG 管道和文件查看器可分别在 https://www.ezbiocloud.net/tools/ubcg 和 https://www.ezbiocloud.net/tools/ubcg_viewer 上免费获得。