Department of Physiology, Anatomy & Microbiology, La Trobe University, Melbourne, VIC 3086, Australia.
Department of Defence Science and Technology, Port Melbourne, VIC 3207, Australia.
Viruses. 2021 Aug 6;13(8):1557. doi: 10.3390/v13081557.
is a highly diverse genus containing over 200 species that can be problematic in both industrial and medical settings. This is mainly attributed to sp. being intrinsically resistant to an array of antimicrobial compounds, hence alternative treatment options are needed. In this study, two bacteriophages, PumA1 and PumA2 were isolated and characterized. Genome nucleotide analysis identified the two phages as novel at the DNA sequence level but contained proteins similar to phi29 and other related phages. Whole genome phylogenetic investigation of 34 phi29-like phages resulted in the formation of seven clusters that aligned with recent ICTV classifications. PumA1 and PumA2 share high genetic mosaicism and form a genus with another phage named WhyPhy, more recently isolated from the United States of America. The three phages within this cluster are the only candidates to infect . Sequence analysis of phage resistant mutants revealed that PumA1 and PumA2 require polymerized and peptidoglycan bound wall teichoic acid (WTA) for their infection. Bacteriophage classification is continuously evolving with the increasing phages' sequences in public databases. Understanding phage evolution by utilizing a combination of phylogenetic approaches provides invaluable information as phages become legitimate alternatives in both human health and industrial processes.
是一个高度多样化的属,包含超过 200 种物种,这些物种在工业和医疗环境中都可能成为问题。这主要归因于 sp. 对一系列抗菌化合物具有内在抗性,因此需要替代治疗方案。在这项研究中,分离并鉴定了两种噬菌体,PumA1 和 PumA2。基因组核苷酸分析表明,这两种噬菌体在 DNA 序列水平上是全新的,但含有与 phi29 和其他相关噬菌体相似的蛋白质。对 34 种类似 phi29 的噬菌体进行全基因组系统发育研究,结果形成了七个聚类,与最近的 ICTV 分类一致。PumA1 和 PumA2 具有高度的遗传镶嵌性,并与另一种最近从美国分离出来的噬菌体 WhyPhy 形成一个属。该聚类中的三种噬菌体是唯一能够感染 的候选噬菌体。噬菌体抗性突变体的序列分析表明,PumA1 和 PumA2 需要聚合和肽聚糖结合壁磷壁酸 (WTA) 才能感染。噬菌体分类随着公共数据库中噬菌体序列的增加而不断发展。通过利用系统发育方法的组合来了解噬菌体的进化,可以提供宝贵的信息,因为噬菌体在人类健康和工业过程中已经成为合法的替代品。