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淋病奈瑟菌rpsE基因新突变介导高水平大观霉素耐药及其对细菌生物适应度的影响

A Novel rpsE Mutation Mediates High-Level Spectinomycin Resistance in Neisseria gonorrhoeae and Influences Their Biological Fitness

  • 摘要:
    目的 探究淋病奈瑟菌rpsE基因新突变介导高水平大观霉素耐药及其对细菌生物适应度的影响。
    方法 采用大观霉素培养基,筛选出自发突变的大观霉素耐药的淋球菌株,并进行最低抑菌浓度(minimum inhibitory concentrations, MIC)测定和rpsE基因测序鉴定。采用滴板法和绘制生长曲线,探究耐大观霉素淋球菌的生长速率变化。采用体外竞争实验,探究在不同质量浓度大观霉素条件下,耐大观霉素淋球菌的生物适应度变化。
    结果 成功筛选到由rpsE基因新突变(88_90delGTT)介导的高水平耐大观霉素淋球菌株,命名为NG-SPTR。相对于野生菌株,NG-SPTR的生长速率降低(OD值比较,P<0.05)。在不含抗生素及低质量浓度大观霉素(≤16 μg/mL)条件下,突变株在竞争实验中竞争指数(competitive index, CI)<1。在32 μg/mL大观霉素条件下,突变株在竞争实验前期CI<1,在后期(18 h后)逐渐升至>1。在≥64 μg/mL大观霉素条件下,突变株CI>1。
    结论 淋球菌rpsE基因发生88_90delGTT突变能介导高水平大观霉素耐药,该突变会导致细菌出现适应度代价;突变株的生物适应度受不同质量浓度大观霉素的影响。

     

    Abstract:
    Objective  To investigate the role of a novel rpsE gene mutation in mediating high-level spectinomycin resistance in Neisseria gonorrhoeae and to evaluate its effect on the biological fitness of the bacteria.
    Methods Spectinomycin-containing medium was used to screen for Neisseria gonorrhoeae strains with spontaneous mutations that conferred spectinomycin resistance. Minimum inhibitory concentrations (MIC) were determined, and the rpsE gene was sequenced. Changes in the growth rates of spectinomycin-resistant strain were assessed using the drop plate method and growth curves. Additionally, in vitro competition experiments were conducted with spectinomycin at different concentrations to assess changes in the biological fitness of the spectinomycin-resistant strain.
    Results A Neisseria gonorrhoeae strain with high-level spectinomycin resistance mediated by a novel rpsE gene mutation (88_90delGTT) was successfully identified and designated NG-SPTR. Compare with the wild-type strain, the NG-SPTR exhibited reduced growth rate (optical density OD comparison, P < 0.05). In addition, in vitro competition experiments showed a competitive index (CI) < 1 in gonococcal base liquid (GCBL) without or with low-concentration spectinomycin (≤ 16 μg/mL). In the GCBL with 32 μg/mL spectinomycin, the CI value gradually increased from < 1 before 18 h to > 1 after 18 h. The mutant strain showed CI > 1 in GCBL with spectinomycin concentrations ≥ 64 μg/mL.
    Conclusion  The rpsE gene mutation (88_90delGTT) mediates high-level spectinomycin resistance in Neisseria gonorrhoeae, and imposes a fitness cost on the bacteria. The biological fitness of the mutant strain is influenced by the concentration of spectinomycin.

     

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