Matsumoto Akiko, Sekoguchi Ayuka, Imai Junko, Kondo Kumiko, Shibata Yuka, Maeda Sumio
Graduate School of Humanities and Sciences, Nara Women's University, 630-8506 Kitauoya-nishimachi, Nara, Japan.
Faculty of Human Life and Environment, Nara Women's University, 630-8506 Kitauoya-nishimachi, Nara, Japan.
Biochem Biophys Res Commun. 2016 Dec 2;481(1-2):59-62. doi: 10.1016/j.bbrc.2016.11.018. Epub 2016 Nov 8.
Horizontal gene transfer is a strong tool that allows bacteria to adapt to various environments. Although three conventional mechanisms of horizontal gene transfer (transformation, transduction, and conjugation) are well known, new variations of these mechanisms have also been observed. We recently reported that DNase-sensitive cell-to-cell transfer of nonconjugative plasmids occurs between laboratory strains of Escherichia coli in co-culture. We termed this phenomenon "cell-to-cell transformation." In this report, we found that several combinations of Escherichia coli collection of reference (ECOR) strains, which were co-cultured in liquid media, resulted in DNase-sensitive cell-to-cell transfer of antibiotic resistance genes. Plasmid isolation of these new transformants demonstrated cell-to-cell plasmid transfer between the ECOR strains. Natural transformation experiments, using a combination of purified plasmid DNA and the same ECOR strains, revealed that cell-to-cell transformation occurs much more frequently than natural transformation under the same culture conditions. Thus, cell-to-cell transformation is both unique and effective. In conclusion, this study is the first to demonstrate cell-to-cell plasmid transformation in natural E. coli strains.
水平基因转移是一种强大的工具,它使细菌能够适应各种环境。尽管水平基因转移的三种传统机制(转化、转导和接合)广为人知,但这些机制的新变体也已被观察到。我们最近报道,在共培养的大肠杆菌实验室菌株之间会发生非接合性质粒的DNase敏感型细胞间转移。我们将这种现象称为“细胞间转化”。在本报告中,我们发现,在液体培养基中共同培养的几种大肠杆菌参考菌株(ECOR)组合,导致了抗生素抗性基因的DNase敏感型细胞间转移。对这些新转化体进行质粒分离,证明了ECOR菌株之间存在细胞间质粒转移。使用纯化的质粒DNA和相同的ECOR菌株进行的自然转化实验表明,在相同培养条件下,细胞间转化比自然转化发生得更为频繁。因此,细胞间转化既独特又有效。总之,本研究首次证明了天然大肠杆菌菌株中的细胞间质粒转化。