Occurrence of Aeromonas spp. Resistant to Some Selected Antibiotics Isolated from Farmed Clarias gariepinus

D. Adah, L. Sa'idu, S. J. Oniye, M. Raji, A. Adah
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引用次数: 1

Abstract

Background: One of the major causes of disease in Clarias gariepinus is Aeromonas spp. which has been linked to significant economic losses and poses a risk to public health. Purpose: The prevalence and heterogeneity of Aeromonas species isolated from Clarias gariepinus cultured in concrete tanks, as well as the antibiogram and multiple antibiotic resistance index, were examined. Methods: In this study, using culture, biochemical characterization, and Microbact 24E kit, Aeromonas species isolates were confirmed. The Kirby Bauer disc diffusion method assessed the antibiotic susceptibility to 10 different antibiotics. Results: Four different species of Aeromonas were identified, with an overall prevalence of 55 (28.6%). Aeromonas hydrophila had the highest prevalence of 35 (18.6%), followed by 10 (5.2%) for Aeromonas caviae, then 5 (2.6 %) for Aeromonas veronii biovar sobria, and Aeromonas veronii biovar veronii, respectively. The Aeromonas species exhibited high resistance to amoxicillin, ampicillin, colistin sulphate, oxytetracycline, trimethoprim/sulphamethoxazole, and penicillin, with varied patterns of resistance, and the multiple antibiotic resistance (MAR) index values ranged between 0.10 and 0.80. Conclusion: Several antibiotic-resistant Aeromonas species were linked to the widespread emergence of antimicrobial resistance. As a result, it is crucial to regulate the use of antibiotics in fish farms and to ensure that biosecurity and preventive management strategies are applied effectively.
养殖加里亚鸡气单胞菌对部分抗生素耐药的发生
背景:引起鸡肠炎的主要原因之一是气单胞菌,它已造成重大经济损失并对公众健康构成威胁。目的:对混凝土罐中培养的加里平Clarias gariepinus气单胞菌的流行率、异质性、抗生素谱和多重耐药指数进行检测。方法:采用培养、生化鉴定和microbact24e试剂盒对气单胞菌进行菌种鉴定。Kirby Bauer圆盘扩散法评估了患者对10种不同抗生素的敏感性。结果:共检出气单胞菌4种,总流行55种(28.6%)。其中,嗜水气单胞菌感染率最高,为35例(18.6%),其次为洞穴气单胞菌10例(5.2%),其次为温和型维氏气单胞菌5例(2.6%),维氏生物变种维氏气单胞菌5例(2.6%)。气单胞菌对阿莫西林、氨苄西林、硫酸粘菌素、土霉素、甲氧苄啶/磺胺甲氧恶唑和青霉素均表现出较高的耐药水平,且耐药模式多样,多重抗生素耐药指数(MAR)在0.10 ~ 0.80之间。结论:几种耐药气单胞菌与抗生素耐药性的广泛出现有关。因此,必须规范养鱼场抗生素的使用,并确保有效实施生物安全和预防性管理策略。
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