Hoang A Hoang, Tran T T Xuan, LE P Nga, Dang T H Oanh
Department of Biotechnology, Faculty of Chemical Engineering, Ho Chi Minh City University of Technology, Vietnam National University.
Department of Microbiology, Faculty of Biology and Biotechnology, Ho Chi Minh City University of Science, Vietnam National University.
Biocontrol Sci. 2019;24(1):23-28. doi: 10.4265/bio.24.23.
Striped catfish (Pangasianodon hypophthalmus) farming in the Mekong Delta Vietnam (MKDVN) importantly contributes to national aquaculture export. Currently, however, diseases occur more frequently across the entire MKDVN region. One of the most common types is hemorrhagic septicemia caused by Aeromonas hydrophila. In this study, isolation and selection of the phages for control in vitro Aeromonas hydrophila were conducted. 24 phages were isolated from 100 striped catfish pond water samples. Next, lytic activity of these phages was clarified. Four phages with short latent period (about 25 to 40 min) and/or high burst size (about 67 to 94 PFU/ cell) were selected to evaluate their infection activity to different phage-resistant A. hydrophila strains. Two phages termed as TG25P and CT45P were subjected to the phage cocktail to inactivate A. hydrophila. Re-growth of the host bacteria appeared about eight hours after treatment. Usage of the phage cocktail that attach different host bacterial receptors is not always much effective than usage of single phage. This is the first report about phage therapy to control A. hydrophila isolated from striped catfish. Some challenges in the phage cocktail were shown to achieve strategies in prospective studies in the context of high antibiotic resistance of A. hydrophila.
越南湄公河三角洲地区的条纹鲶鱼(Pangasianodon hypophthalmus)养殖对该国水产养殖出口做出了重要贡献。然而,目前整个湄公河三角洲地区疾病频发。最常见的疾病类型之一是由嗜水气单胞菌引起的出血性败血症。在本研究中,开展了用于体外控制嗜水气单胞菌的噬菌体的分离和筛选工作。从100份条纹鲶鱼池塘水样中分离出24种噬菌体。接下来,明确了这些噬菌体的裂解活性。选择了4种潜伏期短(约25至40分钟)和/或裂解量高(约67至94噬菌斑形成单位/细胞)的噬菌体,以评估它们对不同噬菌体抗性嗜水气单胞菌菌株的感染活性。将两种名为TG25P和CT45P的噬菌体制成噬菌体混合物以灭活嗜水气单胞菌。处理后约8小时宿主细菌重新生长。使用附着不同宿主细菌受体的噬菌体混合物并不总是比使用单一噬菌体更有效。这是关于噬菌体疗法控制从条纹鲶鱼中分离出的嗜水气单胞菌的首次报道。在嗜水气单胞菌具有高抗生素抗性的背景下,噬菌体混合物在前瞻性研究中实现策略方面存在一些挑战。