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Incubation with a Complex Orange Essential Oil Leads to Evolved Mutants with Increased Resistance and Tolerance
Daniel Berdejo1, Elisa Pagán1, Natalia Merino1
1Departamento de Producción Animal y Ciencia de los Alimentos, Facultad de Veterinaria, Instituto Agroalimentario de Aragón-IA2 (Universidad de Zaragoza-CITA), C/ Miguel Servet, 177, 50013 Zaragoza, Spain.
Abstract:
Emergence of strains with increased resistance/tolerance to natural antimicrobials was evidenced after cyclic exposure to carvacrol, citral, and (+)-limonene oxide. However, no previous studies have reported the development of resistance and tolerance to complex essential oils (EOs). This study seeks to evaluate the occurrence of Staphylococcus aureus strains resistant and tolerant to a complex orange essential oil (OEO) after prolonged cyclic treatments at low concentrations. Phenotypic characterization of evolved strains revealed an increase of minimum inhibitory and bactericidal concentration for OEO, a better growth fitness in presence of OEO, and an enhanced survival to lethal treatments, compared to wild-type strain. However, no significant differences (p > 0.05) in cross-resistance to antibiotics were observed. Mutations in hepT and accA in evolved strains highlight the important role of oxidative stress in the cell response to OEO, as well as the relevance of the cell membrane in the cell response to these natural antimicrobials. This study demonstrates the emergence of S. aureus strains that are resistant and tolerant to EO (Citrus sinensis). This phenomenon should be taken into account to assure the efficacy of natural antimicrobials in the design of food preservation strategies, in cleaning and disinfection protocols, and in clinical applications against resistant bacteria.
Insights
Staphylococcus aureus developed resistance and tolerance to orange essential oil (OEO) after repeated low-dose exposure. This impacts the effectiveness of natural antimicrobials in food, cleaning, and medicine.
Area of Science:
- Microbiology
- Natural Products Chemistry
- Food Science
Background:
- Previous studies showed resistance to specific antimicrobial compounds.
- No research had investigated resistance to complex essential oils (EOs).
- Essential oils are explored for food preservation, disinfection, and clinical applications.
Purpose of the Study:
- To investigate the development of resistance and tolerance in Staphylococcus aureus to a complex orange essential oil (OEO).
- To assess phenotypic and genetic changes in S. aureus strains exposed to OEO.
Main Methods:
- Cyclic exposure of S. aureus to low concentrations of OEO.
- Phenotypic characterization including minimum inhibitory concentration (MIC) and minimum bactericidal concentration (MBC) determination.
- Genetic analysis to identify mutations in evolved strains.
Main Results:
- Evolved S. aureus strains showed increased resistance and tolerance to OEO.
- Improved growth fitness and survival in the presence of OEO were observed.
- No cross-resistance to antibiotics was detected.
- Mutations in hepT and accA genes were identified, suggesting roles for oxidative stress and cell membrane.
Conclusions:
- S. aureus can develop resistance and tolerance to complex essential oils like OEO.
- These findings are crucial for optimizing the use of natural antimicrobials.
- Consideration of resistance development is necessary for food preservation, disinfection, and clinical strategies.
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