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用于检测挪威水产养殖中嗜冷黄杆菌和鲁氏耶尔森菌的多重液滴数字PCR检测法

Multiplex droplet digital PCR assay for detection of Flavobacterium psychrophilum and Yersinia ruckeri in Norwegian aquaculture.

作者信息

Lewin Anna S, Haugen Tone, Netzer Roman, Tøndervik Anne, Dahle Stine W, Hageskal Gunhild

机构信息

SINTEF Industry, Department of Biotechnology and Nanomedicine, Norway.

SINTEF Ocean AS, Department of Environment and New Resources, Norway.

出版信息

J Microbiol Methods. 2020 Oct;177:106044. doi: 10.1016/j.mimet.2020.106044. Epub 2020 Sep 5.

Abstract

We report the development of ddPCR assays for single and simultaneous detection of the bacterial pathogens Flavobacterium psychrophilum and Yersinia ruckeri in water from land-based recirculation aquaculture systems (RAS), producing Atlantic salmon (Salmo salar) smolt. The method was tested and verified for use in water analyses from RAS production sites, and proved to be specific and with sensitivity 0.0011 ng DNA for F. psychrophilum and 1.24 ng for Y. ruckeri. These bacteria are important fish pathogens that have caused reoccurring salmonid infection disease in RAS. Monitoring pathogen levels in water samples could be a useful alternative surveillance strategy to evaluate operational risk assessment connected to stress factors. Water quality is essential for fish health and growth in RAS production in general, and high or increasing levels of these pathogens in the RAS water may generate an early indication of unfavourable conditions in the RAS environment, and give directions to operational actions. This approach may reduce fish mortality, reduce production loss, and offer more effective and targeted preventive measures within RAS production.

摘要

我们报告了用于在养殖大西洋鲑(Salmo salar)稚鱼的陆基循环水养殖系统(RAS)的水中单独和同时检测细菌病原体嗜冷黄杆菌(Flavobacterium psychrophilum)和鲁氏耶尔森菌(Yersinia ruckeri)的数字滴度PCR(ddPCR)检测方法的开发情况。该方法经过测试和验证,可用于RAS生产场所的水质分析,结果表明该方法具有特异性,对嗜冷黄杆菌的灵敏度为0.0011 ng DNA,对鲁氏耶尔森菌的灵敏度为1.24 ng。这些细菌是重要的鱼类病原体,已在RAS中多次引发鲑科鱼类感染疾病。监测水样中的病原体水平可能是一种有用的替代监测策略,用于评估与应激因素相关的运营风险评估。总体而言,水质对于RAS生产中鱼类的健康和生长至关重要,RAS水中这些病原体的高含量或不断增加的含量可能是RAS环境中不利条件的早期迹象,并为运营行动提供指导。这种方法可以降低鱼类死亡率,减少生产损失,并在RAS生产中提供更有效和有针对性的预防措施。

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