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pyrF as a Counterselectable Marker for Unmarked Genetic Manipulations in Treponema denticola

机译:pyrF作为树突密螺旋体未标记遗传操作的可逆选择标记

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摘要

The pathophysiology of Treponema denticola, an oral pathogen associated with both periodontal and endodontic infections, is poorly understood due to its fastidious growth and recalcitrance to genetic manipulations. Counterselectable markers are instrumental in constructing clean and unmarked mutations in bacteria. Here, we demonstrate that pyrF, a gene encoding orotidine-5′-monophosphate decarboxylase, can be used as a counterselectable marker in T. denticola to construct marker-free mutants. T. denticola is susceptible to 5-fluoroorotic acid (5-FOA). To establish a pyrF-based counterselectable knockout system in T. denticola, the pyrF gene was deleted. The deletion conferred resistance to 5-FOA in T. denticola. Next, a single-crossover mutant was constructed by reintroducing pyrF along with a gentamicin resistance gene (aacC1) back into the chromosome of the pyrF mutant at the locus of choice. In this study, we chose flgE, a flagellar hook gene that is located within a large polycistronic motility gene operon, as our target gene. The obtained single-crossover mutant (named FlgEin) regained the susceptibility to 5-FOA. Finally, FlgEin was plated on solid agar containing 5-FOA. Numerous colonies of the 5-FOA-resistant mutant (named FlgEout) were obtained and characterized by PCR and Southern blotting analyses. The results showed that the flgE gene was deleted and FlgEout was free of selection markers (i.e., pyrF and aacC1). Compared to previously constructed flgE mutants that contain an antibiotic selection marker, the deletion of flgE in FlgEout has no polar effect on its downstream gene expression. The system developed here will provide us with a new tool for investigating the genetics and pathogenicity of T. denticola.
机译:密螺旋体是一种与牙周和牙髓感染均相关的口腔病原体,其病理生理学因其生长快且对基因操作的顽固性而知之甚少。可逆选择的标记物有助于在细菌中构建干净且未标记的突变。在这里,我们证明了pyrF,一种编码orotidine-5'-单磷酸脱羧酶的基因,可以用作T. denticola中的反选择标记,以构建无标记突变体。 T. denticola对5-氟乳清酸(5-FOA)敏感。为了在T. denticola中建立基于pyrF的可逆选择敲除系统,删除了pyrF基因。缺失赋予了T. denticola对5-FOA的抗性。接下来,通过将pyrF和庆大霉素抗性基因(aacC1)重新引入到所选位点的pyrF突变体的染色体中,构建了单交换突变体。在这项研究中,我们选择了位于大型多顺反子能动基因操纵子内的鞭毛钩基因flgE作为我们的目标基因。获得的单交换突变体(命名为FlgE in )恢复了对5-FOA的敏感性。最后,将FlgE in 铺在含有5-FOA的固体琼脂上。获得了5-FOA耐药突变体的许多菌落(命名为FlgE out ),并通过PCR和Southern印迹分析对其进行了表征。结果表明,flgE基因被删除,FlgE out 没有选择标记(即pyrF和aacC1)。与先前构建的含有抗生素选择标记的flgE突变体相比,FlgE out flgE 的缺失对其下游基因表达没有极性影响。这里开发的系统将为我们提供一个调查 T的遗传学和致病性的新工具。齿

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