Institute for Bioinformatics and Evolutionary Studies (IBEST), University of Idaho, ID, USA.
Mol Biol Evol. 2013 Jan;30(1):154-66. doi: 10.1093/molbev/mss210. Epub 2012 Aug 30.
Plasmids of the incompatibility group IncP-1 can transfer and replicate in many genera of the Proteobacteria. They are composed of backbone genes that encode a variety of essential functions and accessory genes that have implications for human health and environmental remediation. Although it is well understood that the accessory genes are transferred horizontally between plasmids, recent studies have also provided examples of recombination in the backbone genes of IncP-1 plasmids. As a consequence, phylogeny estimation based on backbone genes is expected to produce conflicting gene tree topologies. The main goal of this study was therefore to infer the evolutionary history of IncP-1 plasmids in the presence of both vertical and horizontal gene transfer. This was achieved by quantifying the incongruence among gene trees and attributing it to known causes such as 1) phylogenetic uncertainty, 2) coalescent stochasticity, and 3) horizontal inheritance. Topologies of gene trees exhibited more incongruence than could be attributed to phylogenetic uncertainty alone. Species-tree estimation using a Bayesian framework that takes coalescent stochasticity into account was well supported, but it differed slightly from the maximum-likelihood tree estimated by concatenation of backbone genes. After removal of the gene that demonstrated a signal of intergroup recombination, the concatenated tree was congruent with the species-tree estimate, which itself was robust to inclusion/exclusion of the recombinant gene. Thus, in spite of horizontal gene exchange both within and among IncP-1 subgroups, the backbone genome of these IncP-1 plasmids retains a detectable vertical evolutionary history.
不相容群 IncP-1 的质粒可以在变形菌门的许多属中转移和复制。它们由编码各种必需功能的骨架基因和对人类健康和环境修复有影响的辅助基因组成。尽管人们已经很清楚辅助基因是在质粒之间水平转移的,但最近的研究也提供了 IncP-1 质粒骨架基因重组的例子。因此,基于骨架基因的系统发育估计预计会产生冲突的基因树拓扑结构。因此,本研究的主要目的是在存在垂直和水平基因转移的情况下推断 IncP-1 质粒的进化历史。这是通过量化基因树之间的不和谐程度并将其归因于已知原因来实现的,例如 1)系统发育不确定性,2)合并随机性,和 3)水平遗传。基因树的拓扑结构显示出比仅归因于系统发育不确定性更多的不和谐。考虑到合并随机性的贝叶斯框架中的种系发生估计得到了很好的支持,但与通过骨架基因串联估计的最大似然树略有不同。在去除显示分组间重组信号的基因后,串联树与种系发生估计一致,而种系发生估计本身对包含/排除重组基因具有鲁棒性。因此,尽管 IncP-1 亚群内部和之间存在水平基因交换,但这些 IncP-1 质粒的骨架基因组保留了可检测的垂直进化历史。