Isolating pathogenic multidrug-resistant Aeromonas hydrophila from diseased fish and assessing the effectiveness of a novel lytic Aeromonas veronii bacteriophage (AVP3) for biocontrol

IF 3.3 3区 医学 Q3 IMMUNOLOGY Microbial pathogenesis Pub Date : 2024-09-05 DOI:10.1016/j.micpath.2024.106914
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Abstract

The increasing trend of antimicrobial resistance (AMR) pathogens in aquaculture makes it is imperative to find control measures for AMR pathogens causing high economic losses in aquaculture. In the present study, a multidrug resistance (MDR) Aeromonas hydrophila bacterium was isolated from kidney samples of diseased carp originating from a fish farm in Awankot, Rupnagar, Punjab, India. Moribund-infected fish exhibited large irregular hemorrhages on the external body surfaces, exophthalmia and fin-rot-like lesions. Phenotypic characterization using Rimler-Shotts (RS) media showed characteristic yellow color colonies and beta hemolysis on sheep blood agar. Genotyping using species-specific primers for the rpoB and gyrB genes characterized the isolate as A. hydrophila.

The Multiple Antibiotic Resistance (MAR) index analysis showed that the isolated A. hydrophila had an MAR score of 0.29 signifying its resistance to more than three antibiotics, which underscores the need of finding treatment methods for MDR A. hydrophila isolates causing disease in aquaculture. Bacteriophages are considered a better eco-friendly alternative to antibiotics because of their inherent properties of not causing drug residues and resistance. Of the 13 phages tested, the Aeromonas veronii phage designated as AVP3, initially isolated against Aeromonas veronii, showed lytic activity against the MDR A. hydrophila isolated from diseased carp in this study. In addition, it also showed the lytic activity against Aeromonas spp. And A. caviae indicating that it had lytic properties against a wide host range within the Aeromonas species. This finding points to the potential efficacy of bacteriophages in mitigating pathogenic infections in aquaculture.

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从病鱼体内分离出致病性耐多药嗜水气单胞菌,并评估新型溶解性嗜水气单胞菌噬菌体(AVP3)的生物防治效果。
水产养殖业中抗菌药耐药性(AMR)病原体呈上升趋势,因此必须找到控制措施,以应对造成水产养殖业高经济损失的 AMR 病原体。在本研究中,从印度旁遮普省鲁普纳加尔阿万科特一个养鱼场的患病鲤鱼肾脏样本中分离出了一种具有多重耐药性(MDR)的嗜水气单胞菌。受到感染的病鱼体表出现大面积不规则出血、眼球外翻和鳍rot样病变。使用 Rimler-Shotts (RS)培养基进行表型鉴定,结果显示菌落呈特征性黄色,并在羊血琼脂上出现β溶血。使用 rpoB 和 gyrB 基因的物种特异性引物进行基因分型,确定该分离物为嗜水蝇。多重抗生素耐药性(MAR)指数分析表明,分离出的嗜水杆藻的 MAR 得分为 0.29,表明其对三种以上的抗生素具有耐药性。噬菌体因其不产生药物残留和抗药性的固有特性,被认为是抗生素更好的环保替代品。在测试的 13 个噬菌体中,最初分离出的针对朱砂疽气单胞菌的噬菌体(命名为 AVP3)对本研究中从患病鲤鱼中分离出的 MDR 鯷鱼表现出了溶菌活性。此外,它还对气单胞菌属(Aeromonas spp.这一发现表明,噬菌体在减轻水产养殖中的病原体感染方面具有潜在的功效。
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来源期刊
Microbial pathogenesis
Microbial pathogenesis 医学-免疫学
CiteScore
7.40
自引率
2.60%
发文量
472
审稿时长
56 days
期刊介绍: Microbial Pathogenesis publishes original contributions and reviews about the molecular and cellular mechanisms of infectious diseases. It covers microbiology, host-pathogen interaction and immunology related to infectious agents, including bacteria, fungi, viruses and protozoa. It also accepts papers in the field of clinical microbiology, with the exception of case reports. Research Areas Include: -Pathogenesis -Virulence factors -Host susceptibility or resistance -Immune mechanisms -Identification, cloning and sequencing of relevant genes -Genetic studies -Viruses, prokaryotic organisms and protozoa -Microbiota -Systems biology related to infectious diseases -Targets for vaccine design (pre-clinical studies)
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