Key Laboratory of Industrial Microbiology of the Ministry of Education, Tianjin Key Laboratory of Industrial Microbiology, College of Biotechnology, Tianjin University of Science and Technology, Tianjin 300457, China.
State Key Laboratory of Medicinal Chemical Biology, Key Laboratory of Molecular Microbiology and Technology of the Ministry of Education, Department of Microbiology, College of Life Sciences, Nankai University, Tianjin 300071, China.
Food Res Int. 2022 Dec;162(Pt B):112197. doi: 10.1016/j.foodres.2022.112197. Epub 2022 Nov 19.
Many Pseudomonas phages recognize lipopolysaccharides (LPS) as the receptor for infection. LPS defective mutants are often recovered from phage treatments, possibly causing the failure of phage applications. In this work, we isolated a lytic Pseudomonas phage, phiZ98, that can specifically lyse LPS defective strains of the genus Pseudomonas. Transmission electron microscopy (TEM) showed that phiZ98 particles were enveloped in a layer of membrane-like structure. Genomic analysis revealed that the phage has a genome of tri-segmented double-stranded RNA molecules of 6627 bp, 3769 bp, and 3075 bp, respectively. The results indicated that phage phiZ98 was the nineth member of the genus Cystovirus. The phiZ98 genome encoded 12 putative proteins with predicted functions and 15 hypothetical proteins. Mass spectrum analysis further identified 11 proteins present in the virions. Antibacterial activity assays showed that phage phiZ98 significantly inhibited cell growth, reduced biofilm formation, and removed mature biofilm. Moreover, phage phiZ98 can significantly control the growth of the host bacterial cells in sterilized milk or canned corned beef. In combination with phage K8 which used LPS as the receptor, phiZ98 can significantly reduce the phage-resistant mutants generated from the K8 treatment in milk. Taken together, the dsRNA phage phiZ98 could be an effective scavenger in removing phage-resistant mutants with defective LPS in cocktail applications.
许多假单胞菌噬菌体将脂多糖 (LPS) 识别为感染的受体。LPS 缺陷突变体通常在噬菌体处理后恢复,这可能导致噬菌体应用失败。在这项工作中,我们分离到一种裂解性假单胞菌噬菌体 phiZ98,它可以特异性裂解假单胞菌属的 LPS 缺陷株。透射电子显微镜 (TEM) 显示 phiZ98 颗粒被一层膜状结构包裹。基因组分析表明,噬菌体的基因组由三个分段的双链 RNA 分子组成,分别为 6627 bp、3769 bp 和 3075 bp。结果表明,噬菌体 phiZ98 是囊病毒属的第九个成员。phiZ98 基因组编码了 12 个具有预测功能的假定蛋白和 15 个假定蛋白。质谱分析进一步鉴定了 11 种存在于病毒粒子中的蛋白质。抗菌活性测定表明,噬菌体 phiZ98 能显著抑制细胞生长,减少生物膜形成,并去除成熟生物膜。此外,噬菌体 phiZ98 能显著控制无菌牛奶或罐装咸牛肉中宿主细菌细胞的生长。与以 LPS 为受体的噬菌体 K8 结合使用时,phiZ98 能显著减少牛奶中 K8 处理产生的噬菌体抗性突变体。综上所述,dsRNA 噬菌体 phiZ98 可作为鸡尾酒应用中去除 LPS 缺陷噬菌体抗性突变体的有效清除剂。