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与淡水观赏鱼养殖系统相关的运动性气单胞菌的毒力潜力和抗生素药敏模式:对公共健康的潜在威胁。

Virulence potential and antibiotic susceptibility pattern of motile aeromonads associated with freshwater ornamental fish culture systems: a possible threat to public health.

机构信息

National Centre for Aquatic Animal Health, Cochin University of Science and Technology, Fine Arts Avenue , Cochin-682 016, Kerala , India.

出版信息

Braz J Microbiol. 2012 Apr;43(2):754-65. doi: 10.1590/S1517-83822012000200040. Epub 2012 Jun 1.

Abstract

Aeromonas spp. are ubiquitous aquatic organisms, associated with multitude of diseases in several species of animals, including fishes and humans. In the present study, water samples from two ornamental fish culture systems were analyzed for the presence of Aeromonas. Nutrient agar was used for Aeromonas isolation, and colonies (60 No) were identified through biochemical characterization. Seven clusters could be generated based on phenotypic characters, analyzed by the programme NTSYSpc, Version 2.02i, and identified as: Aeromonas caviae (33.3%), A. jandaei (38.3%) and A. veronii biovar sobria (28.3%). The strains isolated produced highly active hydrolytic enzymes, haemolytic activity and slime formation in varying proportions. The isolates were also tested for the enterotoxin genes (act, alt and ast), haemolytic toxins (hlyA and aerA), involved in type 3 secretion system (TTSS: ascV, aexT, aopP, aopO, ascF-ascG, and aopH), and glycerophospholipid-cholesterol acyltransferase (gcat). All isolates were found to be associated with at least one virulent gene. Moreover, they were resistant to frequently used antibiotics for human infections. The study demonstrates the pathogenic potential of Aeromonas, associated with ornamental fish culture systems suggesting the emerging threat to public health.

摘要

气单胞菌属是普遍存在的水生生物,与多种动物疾病有关,包括鱼类和人类。在本研究中,分析了两种观赏鱼养殖系统的水样,以检测气单胞菌的存在。营养琼脂用于气单胞菌的分离,通过生化特性鉴定出 60 个菌落。根据表型特征,通过 NTSYSpc 程序(版本 2.02i)可生成 7 个聚类,并鉴定为:豚鼠气单胞菌(33.3%)、简奈气单胞菌(38.3%)和温和气单胞菌维罗纳亚种(28.3%)。分离出的菌株产生高度活跃的水解酶、溶血活性和不同比例的粘液形成。还测试了这些分离株的肠毒素基因(act、alt 和 ast)、溶血毒素(hlyA 和 aerA)、涉及 III 型分泌系统(TTSS:ascV、aexT、aopP、aopO、ascF-ascG 和 aopH)和甘油磷脂胆固醇酰基转移酶(gcat)。所有分离株都至少与一种毒力基因相关。此外,它们对常用于人类感染的抗生素具有耐药性。该研究表明,与观赏鱼养殖系统相关的气单胞菌具有致病性潜力,对公共健康构成新的威胁。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ee4e/3768817/77af3b28b662/bjm-43-754-g001.jpg

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