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首页> 外文期刊>Applied Microbiology >Influence of Fishmeal-Free Diets on Microbial Communities in Atlantic Salmon (Salmo salar) Recirculation Aquaculture Systems
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Influence of Fishmeal-Free Diets on Microbial Communities in Atlantic Salmon (Salmo salar) Recirculation Aquaculture Systems

机译:无鱼粉饮食对大西洋鲑鱼(Salmo salar)循环水产养殖系统中微生物群落的影响

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Reliance on fishmeal as a primary protein source is among the chief economic and environmental concerns in aquaculture today. Fishmeal-based feeds often require harvest from wild fish stocks, placing pressure on natural ecosystems and causing price instability. Alternative diet formulations without the use of fishmeal provide a potential solution to this challenge. Although the impact of alternative diets on fish performance, intestinal inflammation, palatability, and gut microbiota has been a topic of recent interest, less is known about how alternative feeds impact the aquaculture environment as a whole. The recent focus on recirculating aquaculture systems (RAS) and the closed-containment approach to raising food fish highlights the need to maintain stable environmental and microbiological conditions within a farm environment. Microbial stability in RAS biofilters is particularly important, given its role in nutrient processing and water quality in these closed systems. If and how the impacts of alternative feeds on microbial communities in fish translate into changes to the biofilters are not known. We tested the influence of a fishmeal-free diet on the microbial communities in RAS water, biofilters, and salmon microbiomes using high-throughput 16S rRNA gene V6 hypervariable region amplicon sequencing. We grew Atlantic salmon ( Salmo salar ) to market size in six replicate RAS tanks, three with traditional fishmeal diets and three with alternative-protein, fishmeal-free diets. We sampled intestines and gills from market-ready adult fish, water, and biofilter medium in each corresponding RAS unit. Our results provide data on how fish diet influences the RAS environment and corroborate previous findings that diet has a clear influence on the microbiome structure of the salmon intestine, particularly within the order Lactobacillales (lactic acid bacteria). We conclude that the strong stability of taxa likely involved in water quality processing regardless of diet (e.g., Nitrospira ) may further alleviate concerns regarding the use of alternative feeds in RAS operations.IMPORTANCE The growth of the aquaculture industry has outpaced terrestrial livestock production and wild-capture fisheries for over 2 decades, currently producing nearly 50% of all seafood consumed globally. As wild-capture fisheries continue to decline, aquaculture's role in food production will grow, and it will produce an estimated 62% of all seafood consumed in 2020. A significant environmental concern of the industry is the reliance on fishmeal as a primary feed ingredient, as its production still requires harvest from wild fisheries. Our study adds to the growing body of literature on the feasibility of alternative, fishmeal-free diets. Specifically, we asked how fishmeal-free diets influence microbial communities in recirculating salmon farms. Unlike previous studies, we extended our investigation beyond the microbiome of the fish itself and asked how alterative diets influence microbial communities in water and critical biofilter habitats. We found no evidence for adverse effects of alternative diets on any microbial habitat within the farm.
机译:依赖鱼粉作为主要蛋白质来源已成为当今水产养殖的主要经济和环境问题。基于鱼粉的饲料通常需要从野生鱼类资源中捕捞,这给自然生态系统带来压力,并导致价格不稳定。不使用鱼粉的替代饮食配方为应对这一挑战提供了潜在的解决方案。尽管替代饮食对鱼类生长,肠道炎症,适口性和肠道菌群的影响已成为近期关注的话题,但人们对替代饲料如何影响整个水产养殖环境知之甚少。最近对循环水产养殖系统(RAS)的关注和封闭养育食用鱼的方法突出表明,需要在农场环境中保持稳定的环境和微生物条件。鉴于RAS生物滤池在这些封闭系统中对养分加工和水质的作用,它的微生物稳定性尤其重要。替代饲料对鱼类中微生物群落的影响是否以及如何将其转化为生物滤池的变化尚不清楚。我们使用高通量16S rRNA基因V6高变区扩增子序列测试了无鱼粉饮食对RAS水,生物滤池和鲑鱼微生物群中微生物群落的影响。我们在六个重复的RAS储罐中养殖了大西洋鲑鱼(Salmo salar),使其达到市场规模,其中三个使用传统鱼粉饮食,三个使用非蛋白质,无鱼粉饮食。我们从每个相应的RAS单位中,从准备上市的成年鱼,水和生物滤池中抽取肠和g。我们的结果提供了有关鱼类饮食如何影响RAS环境的数据,并证实了先前的发现,即饮食对鲑鱼肠的微生物组结构有明显的影响,尤其是在乳酸杆菌(乳酸菌)中。我们得出的结论是,不论饮食如何(例如硝化螺菌),可能参与水质处理的生物分类群的强大稳定性可能会进一步缓解有关在RAS操作中使用替代饲料的担忧。捕捞渔业已有超过20年的时间,目前在全球消费的所有海鲜中占近50%。随着野生渔业的持续减少,水产养殖在粮食生产中的作用将日益增强,到2020年,它将占所有海产品消费量的62%。该行业对环境的重大关注是对鱼粉作为主要饲料原料的依赖,因为其产量仍然需要从野生渔业中收获。我们的研究增加了关于替代性无鱼粉饮食可行性的文献资料。具体而言,我们询问无鱼粉饮食如何影响循环鲑鱼养殖场中的微生物群落。与以前的研究不同,我们将研究范围扩展到鱼类本身的微生物组之外,并询问替代饮食如何影响水和关键生物过滤器栖息地中的微生物群落。我们没有发现替代饮食对农场内任何微生物栖息地产生不利影响的证据。

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