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水产养殖海产品中对人类致病的抗菌抗性弧菌及其他菌种的关联

Association of antimicrobial resistant Vibrio and species pathogenic to humans with aquacultured seafood.

作者信息

Bloomfield Samuel J, Palau Raphaёlle, Janecko Nicol, Baker-Austin Craig, Mather Alison E

机构信息

Quadram Institute Bioscience, Rosalind Franklin Road, Norwich Research Park, Norwich, NR4 7UQ, United Kingdom; Centre for Microbial Interactions, Norwich Research Park, Norwich, NR4 7UG, United Kingdom.

Centre for Environment, Fisheries and Aquaculture Science, Weymouth, DT4 8UB, United Kingdom.

出版信息

Food Microbiol. 2025 Dec;132:104819. doi: 10.1016/j.fm.2025.104819. Epub 2025 May 30.

Abstract

Vibrio is a genus of bacteria commonly found on seafood products and includes many important human pathogens. Most seafood is produced using aquaculture systems, which frequently use antimicrobial agents. Here we aimed to determine if method of seafood production was associated with Vibrio pathogenic to humans and/or antimicrobial resistant (AMR) Vibrio. Retail prawn and salmon samples that were produced using aquaculture or were wild-caught were cultured for Vibrio spp. Isolates were sequenced to identify the species and AMR genes (ARGs) present, followed by long-read sequencing of a subset of genomes to identify mobile genetic elements (MGEs). Vibrio was cultured from 136/279 of prawn and 4/157 of salmon samples, and ARG-containing Vibrio and Vibrio pathogenic to humans were associated with aquacultured prawn samples. A quarter of ARGs were found on plasmids, mostly in close vicinity to the insertion sequence type IS6/IS26. Most intrinsic chromosomal ARGs were not associated with an MGE, but most acquired chromosome ARGs were associated with a MGE, most commonly IS91. Vibrio isolates belonging to different species contained ARGs associated with similar MGEs. Vibrio has an arsenal of MGEs that can facilitate the spread of ARGs. Aquaculture practices may need to be adjusted in order to prevent the spread of AMR Vibrio and Vibrio pathogenic to humans.

摘要

弧菌是一类常见于海产品的细菌属,其中包括许多重要的人类病原体。大多数海产品是通过水产养殖系统生产的,而水产养殖系统经常使用抗菌剂。在此,我们旨在确定海产品的生产方式是否与对人类致病的弧菌和/或具有抗微生物耐药性(AMR)的弧菌有关。对使用水产养殖方式生产或野生捕捞的零售对虾和三文鱼样本进行弧菌培养。对分离菌株进行测序以鉴定其存在的菌种和AMR基因(ARGs),随后对一部分基因组进行长读测序以鉴定移动遗传元件(MGEs)。在279份对虾样本中的136份以及157份三文鱼样本中的4份培养出了弧菌,含有ARGs的弧菌和对人类致病的弧菌与水产养殖的对虾样本有关。四分之一的ARGs存在于质粒上,大多紧邻插入序列类型IS6/IS26。大多数内在染色体ARGs与MGE无关,但大多数获得性染色体ARGs与MGE有关,最常见的是IS91。属于不同菌种的弧菌分离株含有与相似MGE相关的ARGs。弧菌拥有一系列可促进ARGs传播的MGE。可能需要调整水产养殖做法,以防止AMR弧菌和对人类致病的弧菌传播。

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