Isolation and characterization of two homolog phages infecting Pseudomonas aeruginosa

开放式参考框架 蝗虫科 生物 肌病毒科 基因组 噬菌体 微生物学 长尾病毒科 细菌 噬菌体疗法 铜绿假单胞菌 病毒学 基因组大小 打开阅读框 分子生物学 基因 遗传学 大肠杆菌 肽序列
作者
Yuanyuan Niu,Yang Xiaobo,Shang Wang,Yutong Yang,Zhou Hongrui,Chenyu Li,Bin Xue,Xi Zhang,Zhao Chen,Shen Zhiqiang,Jingfeng Wang,Yun Ling,Yu Pingfeng,Zhigang Qiu
出处
期刊:Frontiers in Microbiology [Frontiers Media]
卷期号:13 被引量:3
标识
DOI:10.3389/fmicb.2022.946251
摘要

Bacteriophages (phages) are capable of infecting specific bacteria, and therefore can be used as a biological control agent to control bacteria-induced animal, plant, and human diseases. In this study, two homolog phages (named PPAY and PPAT) that infect Pseudomonas aeruginosa PAO1 were isolated and characterized. The results of the phage plaque assay showed that PPAT plaques were transparent dots, while the PPAY plaques were translucent dots with a halo. Transmission electron microscopy results showed that PPAT (65 nm) and PPAY (60 nm) strains are similar in size and have an icosahedral head and a short tail. Therefore, these belong to the short-tailed phage family Podoviridae. One-step growth curves revealed the latent period of 20 min and burst time of 30 min for PPAT and PPAY. The burst size of PPAT (953 PFUs/infected cell) was higher than that of PPAY (457 PFUs/infected cell). Also, the adsorption rate constant of PPAT (5.97 × 10-7 ml/min) was higher than that of PPAY (1.32 × 10-7 ml/min) at 5 min. Whole-genome sequencing of phages was carried out using the Illumina HiSeq platform. The genomes of PPAT and PPAY have 54,888 and 50,154 bp, respectively. Only 17 of the 352 predicted ORFs of PPAT could be matched to homologous genes of known function. Likewise, among the 351 predicted ORFs of PPAY, only 18 ORFs could be matched to genes of established functions. Homology and evolutionary analysis indicated that PPAT and PPAY are closely related to PA11. The presence of tail fiber proteins in PPAY but not in PPAT may have contributed to the halo effect of its plaque spots. In all, PPAT and PPAY, newly discovered P. aeruginosa phages, showed growth inhibitory effects on bacteria and can be used for research and clinical purposes.
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