Growth and Depuration of Off-Flavors in Rainbow Trout Oncorhynchus Mykiss in a Partial Recirculating Aquaculture System (PRAS)

IF 1.1 Q3 FISHERIES Aquaculture, Fish and Fisheries Pub Date : 2024-10-04 DOI:10.1002/aff2.70004
Petra Camilla Lindholm-Lehto, Tapio Kiuru
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Abstract

In recirculating aquaculture systems (RAS), off-flavours accumulated in fish muscle tissue can be problematic in terms of consumer acceptance and the reputation of farmed fish products. Off-flavours often give fish earthy, muddy, or other undesirable flavours. Typically, off-flavours are removed during a depuration period in which fish are fasted and held in clean water. Unfortunately, this causes additional costs and delayed sales, while fish lose weight and show a decrease in lipid content. First, we studied fish growth in a partial RAS (PRAS) where the conditions are very similar to those in depuration with a water exchange rate of 4000 L kg−1 feed, compared to RAS with a 650-L water kg−1 feed. Rainbow trout (Oncorhynchus mykiss) was reared in both systems. Our aim was to combine the benefits of a higher water exchange rate: the lack of need for biofilters and a lower accumulation of off-flavours while obtaining stable rearing conditions. Additionally, we studied the effects of moderate feeding and H2O2 addition during depuration. The fish grew faster in a PRAS than in a RAS when fed ad libitum. Thirteen off-flavour compounds were found in the fish flesh and 11 in the circulating water. The H2O2 addition led to decreased levels of off-flavours in the tank water and in fish muscle. The results showed no significant differences in off-flavours between the fed and not-fed systems, showing that moderate feeding did not prevent a good depuration result. However, the lipid content and the overall fish weight were higher in the fed systems, which suggests more effective depuration. Increased depuration efficiency can be an important tool when considering ways to improve the profitability of production.

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部分再循环水养殖系统 (PRAS) 中虹鳟鱼的生长和异味消解
在循环水养殖系统(RAS)中,鱼类肌肉组织中积累的异味会影响消费者的接受程度和养殖鱼类产品的声誉。异味通常会给鱼肉带来泥土味、浑浊味或其他不良味道。通常情况下,异味会在脱腥期去除,在脱腥期,鱼会被禁食,并在干净的水中保存。遗憾的是,这样做会增加成本,推迟销售,同时鱼的体重会减轻,脂质含量也会下降。首先,我们研究了鱼类在部分 RAS(PRAS)中的生长情况,在这种情况下,水交换率为 4000 升/千克饲料,与水交换率为 650 升/千克饲料的 RAS 相比,鱼类的生长条件与去势期非常相似。虹鳟鱼(Oncorhynchus mykiss)在这两个系统中都得到了饲养。我们的目标是结合较高换水率的好处:不需要生物过滤器和较低的异味积累,同时获得稳定的饲养条件。此外,我们还研究了去势期间适度投喂和添加 H2O2 的效果。在自由摄食的情况下,PRAS 比 RAS 中的鱼生长得更快。在鱼肉中发现了 13 种异味化合物,在循环水中发现了 11 种异味化合物。添加 H2O2 后,鱼缸水和鱼肉中的异味水平下降。结果显示,喂食和不喂食系统中的异味没有明显差异,这表明适度喂食并不会妨碍良好的去腥效果。不过,喂食系统中的脂质含量和鱼的总重量更高,这表明去腥更有效。在考虑如何提高生产利润时,提高净化效率是一个重要工具。
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