Department of Molecular Biology, School of Biological Sciences, Madurai Kamaraj University, Madurai, India.
Department of Plant Sciences, School of Biological Sciences, Madurai Kamaraj University, Madurai, India.
Genes Cells. 2021 Jul;26(7):541-550. doi: 10.1111/gtc.12869. Epub 2021 Jun 9.
The tmRNA (transfer messenger RNA), encoded by ssrA gene, is involved in rescuing of stalled ribosomes by a process called trans-translation. Additionally, regions of the ssrA gene (coding for tmRNA) were reported to serve as integration sites for various bacteriophages. Though variations in ssrA genes were reported, their functional relevance is less studied. In this study, we investigated the horizontal gene transfer (HGT) of ssrA among the members of Enterobacteriaceae. This was done by predicting recombination signals in ssrA gene (belonging to Enterobacteriaceae) using RDP5 (Recombination Detection Program 5). Our results revealed 7 recombination signals in ssrA gene belonging to different species. We further showed that the recombination signals were more in the domains present in the 3' end than 5' end of tmRNA. Of note, the mRNA region was reported in many recombination signals. Further, members belonging to genera Yersinia, Erwinia, Dickeya and Enterobacter were highly represented in the recombination signals. Sequence analysis revealed the presence of integration sites for different class of bacteriophages in ssrA gene. The locations of phage recognition sites are comparable with recombination signals. Taken together, our results revealed a diverse nature of HGT and recombination which possibly due to transduction mediated by phages.
tmRNA(转移信使 RNA)由 ssrA 基因编码,参与通过称为转译的过程来挽救停滞的核糖体。此外,ssrA 基因的区域(编码 tmRNA)被报道可作为各种噬菌体的整合位点。尽管报道了 ssrA 基因的变异,但它们的功能相关性研究较少。在这项研究中,我们研究了肠杆菌科成员之间的 ssrA 水平基因转移 (HGT)。这是通过使用 RDP5(重组检测程序 5)预测 ssrA 基因(属于肠杆菌科)中的重组信号来完成的。我们的结果显示,属于不同物种的 ssrA 基因中有 7 个重组信号。我们进一步表明,与 tmRNA 的 5'端相比,重组信号更多地存在于 3'端的结构域中。值得注意的是,许多重组信号报告了 mRNA 区域。此外,重组信号中高度代表了属于耶尔森氏菌属、欧文氏菌属、迪基氏菌属和肠杆菌属的成员。序列分析显示 ssrA 基因中存在不同类别的噬菌体整合位点。噬菌体识别位点的位置与重组信号相当。总之,我们的结果揭示了 HGT 和重组的多样性,这可能是由于噬菌体介导的转导所致。