西班牙León省鳟鱼皮肤分离细菌的抗生素耐药性

J. Fregeneda-Grandes, M. El sayed, H. Sayed
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引用次数: 0

摘要

鱼类病原体的抗生素耐药性已成为一个主要问题。整合子在抗生素耐药基因在不同菌种间的传播中起着重要作用。本研究从西班牙León省河流和养鱼场采集的褐鳟(Salmo trutta)和虹鳟鱼(Oncorhynchus mykiss)皮肤中分离出20株细菌,对其进行抗生素敏感性检测,并采用PCR方法检测1类和2类整合子,探讨这些整合子在抗生素耐药性中的作用。调查的分离株包括荧光假单胞菌(P. fluorescens) (n=5)、黑色气单胞菌(A. sobria) (n=3)、聚集泛胞菌(P. agglomerans) (n=3)、约氏不动杆菌(A. johnsonii) (n=2)、fonticola沙雷菌(S. fonticola) (n=1)、equorum葡萄球菌(S. equorum) (n=3)、kristensenii耶尔森菌(Y. kristensenii) (n=2)和retroxanthomonas (X. retroflexus) (n=1)。对恩诺沙星(100%)和庆大霉素(95%)敏感,对氨苄西林(90%)和四环素(80%)耐药。PCR结果显示,所有分离株均不含1类或2类整合子。因此,必须限制抗生素的滥用,并重视水产养殖中的生物安全措施。此外,还需要进一步研究整合子和其他遗传元件在水产养殖抗菌素耐药性中的作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Antibiotic resistance in bacteria isolated from the skin of trout in León Province, Spain
Antibiotic resistance among fish pathogens has become a major concern. Integrons play an important role in dissemination of antibiotics resistance genes among the different species of bacteria. This study was designed to determine the antibiotic susceptibility of 20 bacterial isolates were isolated from the skin of brown trout (Salmo trutta) and rainbow trout (Oncorhynchus mykiss) collected from the rivers and fish farms in León Province, Spain and to detect class 1 and 2 integrons in these isolates by PCR to explore the role of these integrons in the antibiotic resistance. The investigated isolates included Pseudomonas fluorescens (P. fluorescens) (n=5), Aeromonas sobria (A. sobria) (n=3), Pantoea agglomerans (P. agglomerans) (n=3), Acinetobacter johnsonii (A. johnsonii) (n=2), Serratia fonticola (S. fonticola) (n=1), Staphylococcus equorum (S. equorum) (n=3), Yersinia kristensenii (Y. kristensenii) (n=2) and Xanthomonas retroflexus (X. retroflexus) (n=1). Antimicrobial susceptibility testing for the isolates revealed that they were sensitive to enrofloxacin (100%) and gentamicin (95%) while resistant to ampicillin (90%) and tetracycline (80%). PCR revealed that all the isolates didn’t harbor class 1 or 2 integrons. Therefore, the indiscriminate use of antibiotics must be restricted and more attention should be paid to biosecurity measures in aquaculture. Also, further studies are needed to assess role of integrons and other genetic elements in antimicrobial resistance in aquaculture.
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