School of Food Science and Engineering, Wuhan Polytechnic University, Wuhan, China.
Hubei Key Laboratory for Processing and Transformation of Agricultural Products, Wuhan, China.
Foodborne Pathog Dis. 2024 Aug;21(8):467-477. doi: 10.1089/fpd.2023.0133. Epub 2024 May 17.
is a common foodborne pathogenic bacterium. With the overuse of antibiotics, an increasing proportion of drug-resistant strains are emerging, which puts enormous pressure on public health. In this study, a -specific phage, VP41s3, was isolated. The head length, width, and tail length of the phage were 77.7 nm, 72.2 nm, and 17.5 nm, respectively. It remained active in the temperature range of 30-50°C and pH range of 4-11. The lytic curve of phage VP41s3 showed that the host bacteria did not grow until 11 h under phage treatment at MOI of 1000, indicating that the phage had good bacteriostatic ability. When it was added to shellfish contaminated with (15°C, 48 h), the number of bacteria in the experimental group was 2.11 log CFU/mL lower than that in the control group at 24 h. Furthermore, genomic characterization and phylogenetic analysis indicated that phage VP41s3 was a new member of the family. The genome contained 50 open reading frames (ORFs), in which the ORF19 (thymidine kinase) was an enzyme involved in the pyrimidine salvage pathway, which might lead to the accelerated DNA synthesis efficiency after phage entered into host cells. This study not only contributed to the improvement of phage database and the development of beneficial phage resources but also revealed the potential application of phage VP41s3 in food hygiene and safety.
是一种常见的食源性致病菌。随着抗生素的过度使用,越来越多的耐药菌株出现,这给公共卫生带来了巨大的压力。在本研究中,分离到了一株 - 特异性噬菌体 VP41s3。噬菌体的头部长度、宽度和尾部长度分别为 77.7nm、72.2nm 和 17.5nm。它在 30-50°C 的温度范围和 4-11 的 pH 范围保持活性。噬菌体 VP41s3 的裂解曲线表明,在 MOI 为 1000 时噬菌体处理下,宿主菌直到 11 小时才开始生长,表明噬菌体具有良好的抑菌能力。当它被添加到受污染的贝类中(15°C,48 h)时,实验组中细菌的数量在 24 小时时比对照组低 2.11log CFU/mL。此外,基因组特征和系统发育分析表明,噬菌体 VP41s3 是 科的一个新成员。基因组包含 50 个开放阅读框(ORFs),其中 ORF19(胸苷激酶)是参与嘧啶补救途径的酶,这可能导致噬菌体进入宿主细胞后加速 DNA 合成效率。本研究不仅有助于提高噬菌体数据库和有益噬菌体资源的开发,还揭示了噬菌体 VP41s3 在食品卫生和安全方面的潜在应用。