Litcius/Paper detail

Research progress on antibiotic resistance of <i>Salmonella</i>

Yizhe Wang, Hengwei Ge, Xinyue Wei, Xihong Zhao

2022Food Quality and Safety16 citationsDOIOpen Access PDF

Abstract

Abstract Antibiotic abuse results in various antibiotic resistance among a number of foodborne bacteria, posing a severe threat to food safety. Antibiotic resistance genes are commonly detected in foodborne pathogens, which has sparked much interest in finding solutions to these issues. Various strategies against these drug-resistant pathogens have been studied, including new antibiotics and phages. Recently, a powerful tool has been introduced in the fight against drug-resistant pathogens, namely, clustered regularly interspaced short palindromic repeats-CRISPR associated (CRISPR-Cas) system aggregated by a prokaryotic defense mechanism. This review summarizes the mechanism of antibiotic resistance in Salmonella and resistance to common antibiotics, analyzes the relationship between Salmonella CRISPR-Cas and antibiotic resistance, discusses the changes in antibiotic resistance on the structure and function of CRISPR-Cas, and finally predicts the mechanism of CRISPR-Cas intervention in Salmonella antibiotic resistance. In the future, CRISPR-Cas is expected to become an important tool to reduce the threat of antibiotic-resistant pathogens in food safety.

Topics & Concepts

CRISPRAntibioticsAntibiotic resistanceSalmonellaBiologyMicrobiologyDrug resistanceBacteriaGeneticsGeneCRISPR and Genetic EngineeringBacteriophages and microbial interactionsVibrio bacteria research studies