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Characterization of genetic transformation in Streptococcus mutans by using a novel high-efficiency plasmid marker rescue system.

机译:通过使用新型高效质粒标记拯救系统表征变形链球菌的遗传转化。

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摘要

We developed a marker rescue system for study of competence development and genetic transformation in Streptococcus mutans. The system involved the recombinational rescue of a tetracycline resistance (Tcr) determinant by a homologous, inactive locus (Tcs because of a small deletion). Streptococcal cells harboring this in vitro-prepared Tcs construct (pVA1208) were restored to Tcr when plasmid (pVA981) DNA was used as donor material. pVA981 contained the intact streptococcal Tcr locus and was unable to autonomously replicate in streptococci. Marker rescue with this system followed first-order kinetics and occurred at a frequency 8- or 160-fold higher than did transformation with homologous chromosomal or plasmid DNA, respectively. By using the rescue system, we were able to confirm that competence of S. mutans appeared to be inducible. This was indicated by a sequential increase and then decrease in Tcr transformation frequencies during growth in complex medium. Also, donor DNA binding was not sequence specific, since the recovery of Tcr transformants was reduced by increasing the concentrations of heterologous DNA. We investigated the fate of donor DNA and the kinetics of plasmid establishment in the transformation of S. mutans with plasmid DNA. Monomeric plasmid molecules transformed S. mutans as a second-order process, whereas multimeric plasmid DNA and chromosomal markers were recovered as a first-order process. Approximately 50% of the initially bound donor plasmid DNA was found to remain in a trichloroacetic acid-insoluble form. Our results suggested that molecular cloning in S. mutans would be conducted most efficiently by using helper plasmid systems or shuttle vectors and that gene transfer by transformation of S. mutans occurred in a manner similar to that observed in Streptococcus sanguis.
机译:我们开发了一种标记拯救系统,用于研究变形链球菌的能力发展和遗传转化。该系统涉及通过同源的,无活性的基因座(Tcs由于缺失很小)重组拯救四环素抗性(Tcr)决定簇。当使用质粒(pVA981)DNA作为供体材料时,将携带这种体外制备的Tcs构建体(pVA1208)的链球菌细胞恢复为Tcr。 pVA981含有完整的链球菌Tcr基因座,无法在链球菌中自主复制。用该系统进行的标志物抢救遵循一级动力学,其发生频率分别比用同源染色体或质粒DNA的转化率高8倍或160倍。通过使用救援系统,我们能够确认变形链球菌的能力似乎是可诱导的。在复杂培养基中生长期间,Tcr转化频率依次升高然后降低,这表明了这一点。而且,供体DNA的结合不是序列特异性的,因为通过增加异源DNA的浓度降低了Tcr转化体的回收。我们调查了供体DNA的命运以及在用质粒DNA转化变形链球菌过程中质粒建立的动力学。单体质粒分子以二级过程转化变形链球菌,而多聚质粒DNA和染色体标记则以一级过程回收。发现约50%的最初结合的供体质粒DNA以三氯乙酸不溶形式保留。我们的结果表明,通过使用辅助质粒系统或穿梭载体将最有效地进行变形链球菌的分子克隆,并且通过变形链球菌的转化进行基因转移的方式类似于在血链球菌中观察到的方式。

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  • 作者

    Lindler, L E; Macrina, F L;

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  • 年度 1986
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  • 正文语种 en
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