Net cleaning impacts Atlantic salmon gill health through microbiome dysbiosis

A. Elsheshtawy, B. G. J. Clokie, A. Albalat, A. Nylund, T. Isaksen, Elisabeth Napsøy Indrebø, L. Andersen, L. Moore, S. Mackenzie
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Abstract

Introduction Net biofouling has a significant impact for the global salmon industry in the seawater grow-out stage in terms of its management. Current mitigation strategies occur primarily through the regular removal of biofouling using in situ cleaning. While in situ net cleaning is effective there is uncertainty as to whether the equipment or dispersed material has an impact upon the fish in the cages. Through direct contact with the environment, the significant surface area of the gill including its microbiome is directly exposed to the acute environmental changes generated by net cleaning. This study aimed to provide a detailed understanding of the impact of in situ net cleaning on Atlantic salmon (Salmo salar) and rainbow trout (Oncorhynchus mykiss) gill health. Methods Three field trials were conducted on commercial fish farms in western Norway. Fouling organisms on net pens and flushed particles during in situ cleaning were identified and screened for major fish pathogens. Hydrographic profile measurements were performed to measure the impact on water quality. Gill samples were examined for histopathological changes, immune gene expression, and the prevalence of major pathogens. 16S rRNA amplicon sequencing was employed to explore the impact of net cleaning on gill microbiome. Results and discussion Data obtained from these trials identified a diversity of fouling species including hydroids, algae, skeleton shrimps, and filter feeders on net pens, a direct impact on measured water quality indicators, a moderate change in gill inflammatory and antigen presentation activity at the level of mRNA, and a large significant change in gill microbiome. Observed changes in gill microbial community involved a decrease in bacterial richness coupled to an increase in identified bacterial genera related to negative health consequences. Parallel analyses for pathogens load in biofouling organisms and flushed particles highlighted the presence of several fish bacteria and parasites. However, minor changes were detected in salmon gill pathogen diversity and loading. Our results suggest that biofouling organisms may act as transient reservoirs for some fish pathogens but not viruses and that gill microbial dysbiosis could be related to the host stress response during and post net cleaning.
净清洗通过微生物群失调影响大西洋鲑鱼鳃健康
在海水生长阶段,净生物污染对全球鲑鱼产业的管理产生了重大影响。目前的缓解战略主要是通过就地清洁定期清除生物污垢。虽然现场渔网清洗是有效的,但不确定设备或分散的物质是否对网箱中的鱼有影响。通过与环境的直接接触,鳃的显着表面积包括其微生物群直接暴露于净清洁产生的急性环境变化中。本研究旨在详细了解原位渔网清理对大西洋鲑鱼(Salmo salar)和虹鳟鱼(Oncorhynchus mykiss)鳃健康的影响。方法在挪威西部的商业养鱼场进行了3次现场试验。在现场清洗过程中,对网栏上的污垢生物和冲洗颗粒进行了鉴定和筛选,以确定主要的鱼类病原体。进行了水文剖面测量,以测量对水质的影响。检查鳃标本的组织病理学变化、免疫基因表达和主要病原体的流行情况。采用16S rRNA扩增子测序,探讨净清洗对鳃微生物组的影响。结果和讨论从这些试验中获得的数据确定了各种污染物种,包括水螅、藻类、骨架虾和滤食性动物,对测量的水质指标有直接影响,在mRNA水平上适度改变了鳃炎症和抗原呈递活性,并且鳃微生物组发生了重大变化。观察到的鳃微生物群落变化涉及细菌丰富度的减少,以及与负面健康后果相关的已确定细菌属的增加。对生物污垢生物和冲洗颗粒中病原体负荷的平行分析强调了几种鱼类细菌和寄生虫的存在。然而,在鲑鱼鳃病原体的多样性和负荷中检测到微小的变化。我们的研究结果表明,生物清洗生物可能是某些鱼类病原体的暂存宿主,而不是病毒,鳃微生物的生态失调可能与宿主在清洗渔网期间和之后的应激反应有关。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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