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May 7, 2026Food Microbiology1 citationsOpen Access

Evolution of Salmonella Typhimurium under antibiotics from distinct classes reveals variant-dependent cross-protection against food preservation treatments

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IGIvo García-PenasRCRaúl CampilloDBDaniel Berdejo

Key Points

  • The study investigates how antimicrobial resistance influences the tolerance of Salmonella Typhimurium to food preservation stresses.
  • Isolated nine resistant variants of Salmonella Typhimurium via adaptive evolution with antibiotics.
  • Analyzed minimum inhibitory concentrations and survival rates under food preservation stressors like heat and acid.
  • Performed whole genome sequencing to identify mutations associated with resistance.
  • RVs of Salmonella Typhimurium showed up to a 16-fold increase in minimum inhibitory concentrations.
  • Certain variants had a 10-fold increase in survival under heat treatment and 1,000-fold increase in resistance to carvacrol.
  • Genome sequencing revealed key mutations in metabolic genes linked to cross-protection.

Abstract

The growing concern surrounding antimicrobial resistance (AMR) in human bacterial infections has prompted increased investigation into the role of the agri-food sector in AMR transmission and control. While contaminated food is a recognized route of transmission for AMR bacteria, the potential for AMR mechanisms to confer cross-protection and enhance bacterial tolerance to food-relevant preservation stressors such as heat, acidification, or antimicrobial compounds remains poorly understood. In this study, nine resistant variants (RVs) of Salmonella enterica subsp. enterica serovar Typhimurium LT2 were isolated via adaptive laboratory evolution with increasing concentrations of antibiotics from distinct classes, including colistin (COL), amoxicillin (AMX), and erythromycin (ERY). These RVs displayed up to a 16-fold increase in minimum inhibitory concentrations relative to the parental strain. RVs frequently exhibited diverse cross-protection profiles against unrelated antibiotic families. Importantly, certain RVs also showed altered tolerance to food preservation stresses. One COL- and one ERY-RV showed a 10-fold increase in survival under heat treatment (54 °C, 30 min). All ERY-RVs exhibited marked cross-protection to carvacrol (200 μL/L, 30 min), with up to a 1,000-fold increase in survival. One COL-RV showed a 100-fold increased tolerance to lactic acid (1% w/v, 40 min). Whole genome sequencing revealed mutations primarily in genes associated with several functional categories, including metabolism and signal processing. Among them, mutations in the efflux regulator ramR and in rfbH , involved in O-antigen synthesis, were identified as candidate determinants potentially linked to cross-protection. The findings suggest that AMR-related mutations in foodborne pathogens such as S. Typhimurium can modify responses to food preservation stresses, highlighting the need to better understand how antibiotic adaptation may influence bacterial persistence under food-related control conditions. • Salmonella RVs isolated after exposure to colistin, amoxicillin, and erythromycin • Most mutations in the RVs were found within metabolic genes • AMR can yield an increased tolerance against heat treatments • Erythromycin RVs were 1,000-fold more resistant to carvacrol treatments • Colistin RV was 100-fold more resistant to lactic acid than the parental strain

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Cite This Study

García-Penas et al. (2026) studied this question.

synapsesocial.com/papers/69fbe382164b5133a91a2b0bhttps://doi.org/10.1016/j.fm.2026.105138
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