Jiangsu Institute of Marine Resources Development, Jiangsu Ocean University, Lianyungang, 222005, China.
State Key Laboratory of Marine Environmental Science, College of Ocean and Earth Sciences, Xiamen University (Xiang'an), Xiamen, 361005, Fujian, China.
Curr Microbiol. 2024 Jul 29;81(9):285. doi: 10.1007/s00284-024-03736-3.
Vibrio phages have emerged as a potential alternative to antibiotic therapy for treating Vibrio infections. In this study, a lytic Vibrio phage, vB_ValA_R15Z against Vibrio alginolyticus ATCC 17749, was isolated from an aquatic water sample collected in Xiamen, China. The phage had an icosahedral head (diameter 69 ± 2 nm) and a short, non-contractile tail measuring 16 ± 2 nm. The genome of vB_ValA_R15Z was found to be a double-stranded DNA consisting of 43, 552 bp, containing 54 coding sequences (CDSs) associated with phage packaging, structure, DNA metabolism, lysis and additional functions. The BLASTN results indicated that vB_ValA_R15Z shared less than 90.18% similarity with known phages recorded in the NCBI GenBank database, suggesting that vB_ValA_R15Z was a novel Vibrio phage. Furthermore, phylogenetic analysis revealed that vB_ValA_R15Z belongs to the genus Kaohsiungvirus. In addition, a typical lytic mechanism (holin-endolysim) was found in the genome of vB_ValA_R15Z, while no antibiotic resistance- or virulence factor-related gene was detected. Overall, the study provides valuable insights into the isolation and characterization of vB_ValA_R15Z, highlighting its potential as an effective phage therapy option for combating Vibrio alginolyticus infections.
噬弧菌已成为治疗弧菌感染的抗生素治疗的潜在替代方法。在这项研究中,从中国厦门采集的水生水样中分离出一种溶藻弧菌噬菌体 vB_ValA_R15Z 对抗噬菌藻弧菌 ATCC 17749。噬菌体具有二十面体头部(直径 69±2nm)和短的非收缩尾部,长 16±2nm。vB_ValA_R15Z 的基因组是双链 DNA,由 43552bp 组成,包含 54 个与噬菌体包装、结构、DNA 代谢、裂解和其他功能相关的编码序列(CDS)。BLASTN 结果表明,vB_ValA_R15Z 与 NCBI GenBank 数据库中记录的已知噬菌体的相似度小于 90.18%,表明 vB_ValA_R15Z 是一种新型噬弧菌。此外,系统发育分析表明 vB_ValA_R15Z 属于高雄病毒属。此外,在 vB_ValA_R15Z 的基因组中发现了一种典型的裂解机制(溶菌素-内溶素),而未检测到抗生素耐药性或毒力因子相关基因。总体而言,该研究提供了有关 vB_ValA_R15Z 的分离和表征的有价值的见解,强调了其作为治疗溶藻弧菌感染的有效噬菌体治疗选择的潜力。