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新型溶菌噬菌体 AhFM11 可有效对抗高毒力嗜水气单胞菌。

Novel lytic bacteriophage AhFM11 as an effective therapy against hypervirulent Aeromonas hydrophila.

机构信息

Department of Aquatic Animal Health Management, College of Fisheries, Karnataka Veterinary, Animal and Fisheries Sciences University, Matsyanagar, Mangaluru, Karnataka, 575002, India.

ARS Research Participation Program, Oak Ridge Institute for Science and Education (ORISE), Oak Ridge, TN, 37830, USA.

出版信息

Sci Rep. 2024 Jul 23;14(1):16882. doi: 10.1038/s41598-024-67768-2.

Abstract

Several farmed fish species, including carps, tilapia, salmon, and catfish, have experienced significant economic losses in aquaculture due to motile Aeromonas septicemia caused by Aeromonas hydrophila. In the present study, a novel lytic bacteriophage infecting hypervirulent Aeromonas hydrophila (vAh) was isolated and characterized. This is the first report of a phage against vAh. Phage AhFM11 demonstrated lytic activity against both vAh strains and the A. hydrophila reference strain ATCC 35654. The AhFM11 genome was sequenced and assembled, comprising 168,243 bp with an average G + C content of 41.5%. The genome did not harbor any antibiotic resistance genes. Genomic information along with transmission electron microscopy revealed that phage AhFM11 belongs to the Straboviridae family. Therapeutic application of monophage AhFM11 in fish showed 100% survival in injection, 95% in immersion and 93% in oral feeding of phage top-coated feed. Fish and chicken meat spiked with A. hydrophila and phage showed significant reduction of A. hydrophila. These findings support that phage AhFM11 can be used as a biocontrol agent against vAh as an alternative to antibiotics.

摘要

几种养殖鱼类,包括鲤鱼、罗非鱼、三文鱼和鲶鱼,由于嗜水气单胞菌引起的游动性气单胞菌败血症,在水产养殖中遭受了重大的经济损失。在本研究中,分离并鉴定了一种新型溶菌噬菌体能感染高毒力的嗜水气单胞菌(vAh)。这是首次报道针对 vAh 的噬菌体。噬菌体 AhFM11 对 vAh 株和嗜水气单胞菌参考株 ATCC 35654 均具有溶菌活性。AhFM11 的基因组测序和组装,大小为 168243bp,平均 G+C 含量为 41.5%。基因组中不含有任何抗生素抗性基因。基因组信息和透射电子显微镜显示,噬菌体 AhFM11 属于长尾病毒科。单噬菌体 AhFM11 在鱼类中的治疗应用表明,注射、浸泡和口服噬菌体顶层饲料的存活率分别为 100%、95%和 93%。用噬菌体处理的鱼类和鸡肉中的气单胞菌数量明显减少。这些发现支持噬菌体 AhFM11 可以作为替代抗生素的生物控制剂,用于对抗 vAh。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f3a1/11266544/cd1f82144b8e/41598_2024_67768_Fig1_HTML.jpg

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