Application of a novel phage vB_SalS-LPSTLL for the biological control of Salmonella in foods

溶解循环 沙门氏菌 肠沙门氏菌 生物 微生物学 血清型 毒力 抗菌剂 食品安全 食品科学 细菌 噬菌体 大肠杆菌 基因 病毒学 病毒 遗传学
作者
Yating Guo,Jie Li,Md. Sharifull Islam,Ting Yan,Yang Zhou,Lu Liang,Ian F. Connerton,Kai Deng,Jinquan Li
出处
期刊:Food Research International [Elsevier BV]
卷期号:147: 110492-110492 被引量:94
标识
DOI:10.1016/j.foodres.2021.110492
摘要

Salmonella is one of the most common foodborne pathogens around the world. Phages are envisioned as a new strategy to control foodborne pathogenic bacteria and food safety. A Salmonella specific lytic phage vB_SalS-LPSTLL (LPSTLL) was selected for food applications on the basis of lytic range, lytic efficiency, functional stability and characteristics. Phage LPSTLL was able to lyse 11 Salmonella serotypes, which represents the broadest range reported Salmonella phages, and was able to suppress the growth of Salmonella enterica in liquid culture over nine hours. LPSTLL exhibited rapid reproductive activity with a short latent period and a large burst size in one-step growth experiment. LPSTLL remained active over a pH range of 3.0 to 12.0, and at incubation temperatures up to 60 °C for 60 min, indicating wide applicability for food processing and storage. Significant reductions of viable Salmonella were observed in diverse foods (milk, apple juice, chicken and lettuce) with reductions up to 2.8 log CFU/mL recorded for milk. Sensory evaluation indicated that treatment with phage LPSTLL did not alter the visual or tactile quality of food matrices. Genome analysis of LPSTLL indicated the absence of any virulence or antimicrobial resistance genes. Genomic comparisons suggest phage LPSTLL constitutes a novel member of a new genus, the LPSTLLvirus with the potential for Salmonella biocontrol in the food industry.
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