This Is Auburn

Show simple item record

Growth and Survival of Salmonella serovar Typhimurium on Chicken Wings, Following Stress Abiotic Adaptation


Metadata FieldValueLanguage
dc.contributor.advisorJia, Zhen
dc.contributor.authorJovel, Brenda
dc.date.accessioned2026-08-04T21:47:48Z
dc.date.available2026-08-04T21:47:48Z
dc.date.issued2026-08-04
dc.identifier.urihttps://etd.auburn.edu/handle/10415/10553
dc.description.abstractSalmonella Typhimurium (ST) remains one of the most important foodborne pathogens associated with poultry products and can be exposed to multiple environmental stresses during poultry processing, storage, and distribution. Exposure to acid, cold, and heat stress may alter the subsequent growth, survival, and response of ST to antimicrobial treatments. In addition, the growth of native microbiota during storage contributes to product spoilage and shelf-life reduction. This study evaluated the impact of acid-, cold-, and heat-stress on the growth and survival kinetics of ST in chicken wings under refrigerated and temperature abuse conditions. Native microbiota growth was also investigated to assess microbial spoilage and shelf-life implications. Furthermore, the influence of prior stress exposure on the efficacy of antimicrobial treatments with itaconic acid (IA) and peracetic acid (PAA) was determined. Heat-, cold-, and acid-stressed ST cells were generated under laboratory conditions and compared with unstressed cells. Mathematical models were used to describe bacterial growth, survival, and inactivation kinetics. The results demonstrated that temperature abuse accelerated the growth of native microbiota, reducing the microbiological shelf life of chicken wings. Prior stress exposure influenced the behavior of ST during storage, with cold-stressed cells exhibiting enhanced survival under refrigerated conditions and heatstressed cells showing improved persistence under moderate temperature abuse conditions. In antimicrobial studies, PAA exhibited the greatest inactivation capacity, whereas IA showed a concentration-dependent effect, with 4% IA producing greater reductions than 2% IA. The response to both antimicrobial treatments differed among acid-stressed, cold-stressed, heat-stressed, and unstressed cells. These findings demonstrate that prior stress exposure influences the behavior of ST during storage and antimicrobial treatment and highlight the importance of considering bacterial stress history and native microbiota dynamics when evaluating poultry product safety and shelf life.en_US
dc.rightsEMBARGO_GLOBALen_US
dc.subjectPoultry Scienceen_US
dc.titleGrowth and Survival of Salmonella serovar Typhimurium on Chicken Wings, Following Stress Abiotic Adaptationen_US
dc.typeMaster's Thesisen_US
dc.embargo.lengthMONTHS_WITHHELD:36en_US
dc.embargo.statusEMBARGOEDen_US
dc.embargo.enddate2029-08-04en_US
dc.contributor.committeeMorey, Amit
dc.contributor.committeeSrikumar, Shabarinath
dc.contributor.committeeWhite, Stephen

Files in this item

Show simple item record