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January 25, 2026Journal of Applied Microbiology0 citations

RecO : A Potential target for Overcoming Fluoroquinolone Resistance in Pasteurella multocida

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XLXin-yu LiXLXuanyu LiJHJie He

Key Points

  • The central aim is to investigate how the recO gene influences fluoroquinolone resistance in Pasteurella multocida.
  • Utilized pathogenic strains of Pasteurella multocida, both sensitive and resistant to fluoroquinolones.
  • Conducted RNA sequencing to identify differentially expressed genes related to the SOS response.
  • Verified the function of recO and assessed its impact on resistance through minimum inhibitory concentration (MIC) and minimum bactericidal concentration (MBC) testing.
  • Deletion of the recO gene led to a 10–100-fold reduction in bacterial tolerance to enrofloxacin after 4 hours (p < 0.05).
  • The MBC value decreased by 2-fold following recO deletion.
  • The time taken for developing resistance to fluoroquinolones was significantly prolonged.

Abstract

Abstract Aims Pasteurella multocida (Pm) is one of the main pathogens causing bovine respiratory disease in China. The prevention and control measures against Pm are traditionally based on the use of broad-spectrum antibiotics. Previous studies have found that Pm is prone to developing antibiotic resistance and tolerance-related mutations when exposed to low concentrations of antibiotics, ultimately leading to challenges in the prevention and control of Pm. This study aimed to explore the role of the recO gene in Pm in mediating resistance and tolerance to fluoroquinolones. Methods and Results Highly pathogenic Pm strains (fluoroquinolone-sensitive P3; enrofloxacin-induced resistant P32) were used. RNA-seq screened SOS response-related differentially expressed genes, with recO functionally verified. Its role in Pm’s fluoroquinolone resistance/tolerance was clarified via MIC, MBC.The results showed that recO deletion reduced the bacterial tolerance by approximately 10–100-fold after 4 h of exposure to enrofloxacin (ENR) (p 0.05), decreased the MBC value by 2-fold, and significantly prolonged the time required for resistance development. Conclusions In conclusion, inhibiting the expression of the recO gene in Pm not only reduces its resistance to fluoroquinolones but also delays the development of fluoroquinolone resistance. It is hypothesized that the recO gene could serve as a potential target for enhancing the efficacy of fluoroquinolones, thereby improving their antibacterial activity against Pm.

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Cite This Study

Li et al. (2026) studied this question.

synapsesocial.com/papers/6975b26ffeba4585c2d6ddachttps://doi.org/10.1093/jambio/lxag027
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