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Homozygous Triplicate Mutations in Three 16S rRNA Genes Responsible for High-Level Aminoglycoside Resistance in Nocardia farcinica Clinical Isolates from a Canada-Wide Bovine Mastitis Epizootic

机译:纯合三重复突变的三个16S rRNA基因负责诺卡氏菌farcinica临床分离株从加拿大全牛乳腺炎流行的高水平氨基糖苷抗性。

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摘要

Nocardia farcinica strains showing high-level resistance to amikacin were isolated from clinical cases in a Canada-wide bovine mastitis epizootic. Shotgun cloning of the resistance genes in the amikacin-resistant mastitis isolate N. farcinica IFM 10580 (W6220 [Centers for Disease Control and Prevention]) using a multicopy vector system revealed that the 16S rRNA gene with an A-to-G single-point mutation at position 1408 (in Escherichia coli numbering) conferred “moderate” cross-resistance to amikacin and other aminoglycosides to an originally susceptible N. farcinica strain IFM 10152. Subsequent DNA sequence analyses revealed that, in contrast to the susceptible strain, all three chromosomal 16S rRNA genes of IFM 10580, the epizootic clinical strain, contained the same A1408G point mutations. Mutant colonies showing high-level aminoglycoside resistance were obtained when the susceptible strain N. farcinica IFM 10152 was transformed with a multicopy plasmid carrying the A1408G mutant 16S rRNA gene and was cultured in the presence of aminoglycosides for 3 to 5 days. Of these transformants, at least two of the three chromosomal 16S rRNA genes contained A1408G mutations. A triple mutant was easily obtained from a strain carrying the two chromosomal A1408G mutant genes and one wild-type gene, even in the absence of the plasmid. The triple mutant showed the highest level of resistance to aminoglycosides, even in the absence of the plasmid carrying the mutant 16S rRNA gene. These results suggest that the homozygous mutations in the three 16S rRNA genes are responsible for the high-level aminoglycoside resistance found in N. farcinica isolates of the bovine mastitis epizootic.
机译:在加拿大范围内的牛乳腺炎流行病的临床病例中,分离出对阿米卡星具有高水平耐药性的诺卡氏菌。用多拷贝载体系统克隆耐阿米卡星抗性乳腺炎分离株farcinica IFM 10580(W6220 [疾病控制和预防中心])中的抗性基因的弹枪克隆表明,具有A至G单点的16S rRNA基因1408位点的突变(在大肠杆菌中编号)赋予了对最初易感的法氏梭菌NFM 10152的丁胺卡那霉素和其他氨基糖苷“中度”交叉耐药性。随后的DNA序列分析表明,与易感菌株相比,所有三种染色体流行病临床菌株IFM 10580的16S rRNA基因含有相同的A1408G点突变。当用携带A1408G突变体16S rRNA基因的多拷贝质粒转化敏感菌株N. farcinica IFM 10152并在氨基糖苷类存在下培养3至5天时,就获得了显示出高水平氨基糖苷抗性的突变菌落。在这些转化子中,三个染色体16S rRNA基因中至少有两个包含A1408G突变。即使没有质粒,也容易从携带两个染色体A1408G突变基因和一个野生型基因的菌株中获得三重突变体。即使没有携带突变体16S rRNA基因的质粒,三重突变体也表现出对氨基糖苷类的最高抗性。这些结果表明,三个16S rRNA基因的纯合突变是造成牛乳腺炎流行的N. farcinica分离株中发现的高水平氨基糖苷抗性的原因。

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