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首页> 外文期刊>American Journal of Life Sciences >Genome-wide screen for Escherichia coli genes involved in repressing cell-to-cell transfer of a nonconjugative pSC101-derived plasmid
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Genome-wide screen for Escherichia coli genes involved in repressing cell-to-cell transfer of a nonconjugative pSC101-derived plasmid

机译:全基因组筛选涉及抑制非结合性pSC101衍生质粒的细胞间转移的大肠杆菌基因

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Acquiring new genetic traits by lateral gene transfer is a bacterial strategy for environmental adaptations. We previously showed that Escherichia coli laterally transmits nonconjugative plasmids in cocultures that contain strains with or without the plasmid. Using a pMB1-derived plasmid and the Keio collection, a comprehensive library of E. coli knockout mutants for nonessential genes, we recently screened for genes responsible for promoting or repressing cell-to-cell plasmid transfer in recipient cells. In this study, we used a pSC101-derived plasmid, instead of a pMB1-derived plasmid, to screen for repressing genes and identified 29 "transfer-up" mutants. Among these, four mutants are common to those previously screened using a pMB1-derived plasmid. Although the roles of the 29 gene products in plasmid transfer mechanism remain uncertain, it is interesting that 28 of the 29 screened genes map to two limited regions on the E. coli chromosome: 18 genes at 34.25-35.31 min and 10 genes at 12.62-13.35 min. Because these two regions commonly contain termination (Ter) sites for DNA replication (TerC: 34.64 min and TerH: 12.91 min), it is possible that chromosomal mutations around specific Ter sites may affect plasmid acquisition in the recipient cells.
机译:通过横向基因转移获得新的遗传特征是适应环境的细菌策略。先前我们显示,大肠杆菌在包含有或没有质粒的菌株的共培养物中侧向传递非结合质粒。使用pMB1衍生的质粒和Keio集合(用于非必需基因的大肠杆菌敲除突变体的完整库),我们最近筛选了负责促进或抑制受体细胞中细胞间质粒转移的基因。在这项研究中,我们使用pSC101衍生的质粒,而不是pMB1衍生的质粒,筛选阻遏基因,并鉴定出29个“转移”突变体。其中,四个突变体是以前使用pMB1衍生质粒筛选的突变体所共有。尽管29种基因产物在质粒转移机制中的作用仍不确定,有趣的是29种筛选基因中的28种映射到大肠杆菌染色体上的两个有限区域:34.25-35.31分钟的18个基因和12.62- 13.35分钟因为这两个区域通常包含用于DNA复制的终止(Ter)位点(TerC:34.64分钟和TerH:12.91分钟),所以特定Ter位点周围的染色体突变可能会影响受体细胞中的质粒捕获。

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