Zhaxybayeva Olga, Gogarten J Peter, Charlebois Robert L, Doolittle W Ford, Papke R Thane
Genome Atlantic and Department of Biochemistry and Molecular Biology, Dalhousie University, Halifax, Nova Scotia B3H 1X5, Canada.
Genome Res. 2006 Sep;16(9):1099-108. doi: 10.1101/gr.5322306. Epub 2006 Aug 9.
Using 1128 protein-coding gene families from 11 completely sequenced cyanobacterial genomes, we attempt to quantify horizontal gene transfer events within cyanobacteria, as well as between cyanobacteria and other phyla. A novel method of detecting and enumerating potential horizontal gene transfer events within a group of organisms based on analyses of "embedded quartets" allows us to identify phylogenetic signal consistent with a plurality of gene families, as well as to delineate cases of conflict to the plurality signal, which include horizontally transferred genes. To infer horizontal gene transfer events between cyanobacteria and other phyla, we added homologs from 168 available genomes. We screened phylogenetic trees reconstructed for each of these extended gene families for highly supported monophyly of cyanobacteria (or lack of it). Cyanobacterial genomes reveal a complex evolutionary history, which cannot be represented by a single strictly bifurcating tree for all genes or even most genes, although a single completely resolved phylogeny was recovered from the quartets' plurality signals. We find more conflicts within cyanobacteria than between cyanobacteria and other phyla. We also find that genes from all functional categories are subject to transfer. However, in interphylum as compared to intraphylum transfers, the proportion of metabolic (operational) gene transfers increases, while the proportion of informational gene transfers decreases.
利用来自11个完全测序的蓝藻基因组的1128个蛋白质编码基因家族,我们试图量化蓝藻内部以及蓝藻与其他门类之间的水平基因转移事件。一种基于“嵌入式四重奏”分析来检测和枚举一组生物体内潜在水平基因转移事件的新方法,使我们能够识别与多个基因家族一致的系统发育信号,以及描绘与多个信号冲突的情况,其中包括水平转移的基因。为了推断蓝藻与其他门类之间的水平基因转移事件,我们添加了来自168个可用基因组的同源物。我们针对这些扩展基因家族中的每一个重建的系统发育树,筛选蓝藻的高度支持的单系性(或缺乏单系性)情况。蓝藻基因组揭示了一个复杂的进化历史,尽管从四重奏的多个信号中恢复了一个完全解析的系统发育,但所有基因甚至大多数基因都不能用单一严格的二叉树来表示。我们发现蓝藻内部的冲突比蓝藻与其他门类之间的冲突更多。我们还发现所有功能类别的基因都可能发生转移。然而,与门内转移相比,在门间转移中,代谢(操作)基因转移的比例增加,而信息基因转移的比例下降。