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首页> 外文期刊>Journal of bacteriology >Complementation of a Nonmotile flaB Mutant ofBorrelia burgdorferi by Chromosomal Integration of a Plasmid Containing a Wild-Type flaB Allele
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Complementation of a Nonmotile flaB Mutant ofBorrelia burgdorferi by Chromosomal Integration of a Plasmid Containing a Wild-Type flaB Allele

机译:伯氏疏螺旋体的非运动flaB突变体的互补,包含野生型flaB等位基因的质粒的染色体整合

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With the recent identification of antibiotic resistance phenotypes, the use of reporter genes, the isolation of null mutants by insertional inactivation, and the development of extrachromosomal cloning vectors, genetic analysis of Borrelia burgdorferi is becoming a reality. A previously described nonmotile, rod-shaped, kanamycin-resistant B. burgdorferi flaB::Km null mutant was complemented by electroporation with the erythromycin resistance plasmid pED3 (a pGK12 derivative) containing the wild-typeflaB sequence and 366 bp upstream from its initiation codon. The resulting MS17 clone possessed erythromycin and kanamycin resistance, flat-wave morphology, and microscopic and macroscopic motility. Several other electroporations with plasmids containing wild-type flaB and various lengths (198, 366, or 762 bp) of sequence upstream from the flaB gene starting codon did not lead to functional restoration of the nonmotileflaB null mutant. DNA hybridization, PCR analysis, and sequencing indicated that the wild-type flaB gene in nonmotile clones was present in the introduced extrachromosomal plasmids, while the motile MS17 clone was a merodiploid containing single tandem chromosomal copies of mutatedflaB::Km and wild-type flaBwith a 366-bp sequence upstream from its starting codon. Complementation was thus achieved only when wild-typeflaB was inserted into the borrelial chromosome. Several possible mechanisms for the failure of complementation for extrachromosomally located flaB are discussed.
机译:随着最近对抗生素抗性表型的鉴定,报告基因的使用,通过插入失活分离无效突变体以及染色体外克隆载体的发展, Borrelia burgdorferi 的遗传分析已成为现实。先前描述的不运动的杆状卡那霉素抗性B。 burgdorferi flaB :: Km null突变体通过电穿孔与红霉素抗性质粒pED3(pGK12衍生物)互补,该质粒包含野生型 flaB 序列和其起始密码子上游366 bp。所得的MS17克隆具有红霉素和卡那霉素抗性,平波形态以及微观和宏观运动性。使用含有野生型 flaB flaB 基因起始密码子上游的各种长度(198、366或762 bp)序列的质粒进行的其他数次电穿孔均未导致功能性恢复非活动性 flaB null突变体。 DNA杂交,PCR分析和测序表明,导入的染色体外质粒中存在非运动型克隆中的野生型 flaB 基因,而运动型MS17克隆是含有单个串联突变体拷贝的染色体拷贝的甲倍体。 em> flaB :: Km和野生型 flaB ,其起始密码子位于上游366 bp。因此,仅当将野生型 flaB 插入到硼染色体上时才能实现互补。讨论了位于染色体外的 flaB 互补失败的几种可能机制。

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