Kokkali Marialena, Sveen Lene, Larsson Thomas, Krasnov Aleksei, Giakovakis Alexandros, Sweetman John, Lyons Philip, Kousoulaki Katerina
Department of Nutrition and Feed Technology, Nofima, Bergen, Norway.
Department of Fish Health, Nofima, Ås, Norway.
Front Physiol. 2023 Aug 17;14:1214987. doi: 10.3389/fphys.2023.1214987. eCollection 2023.
The aquafeed ingredient inventory is ever changing, from marine to plant based, and recently evolving to incorporate increasing amounts of low trophic, side stream and circular economy based raw materials, each one contributing with variable amounts and qualities of macro- and micronutrients. Meeting the micronutrient requirement of farmed fish for healthy and efficient growth under normal and challenging conditions is of paramount importance. In this study we run a trial based on a 2 × 4 factorial design with three replications for each dietary treatment, where smolt were fed one of 8 experimental diets supplemented with either organic or inorganic mineral premixes (copper, iron, manganese, selenium, and zinc) at four dietary inclusion levels. We saw a trend for higher growth rate in the organic mineral groups irrespective of the dietary mineral levels. Mineral digestibility was negatively correlated with increasing mineral supplementation levels for all tested minerals but Se which increased with the increasing supplementation in the inorganic and up to the 2nd inclusion level in the organic mineral groups. Increasing mineral supplementation affected retention efficiency of Zn, Mn, Cu and Fe while mineral source affected only the retention of Se which was higher in the organic mineral groups. Moreover, fish obtained higher EPA and DHA in their body and increased slaughter yield in the organic as compared to the inorganic mineral groups and corroborated that trace mineral inclusion levels play a key role on salmon fillet's technical quality. More effects from different origin and dietary inclusion levels of trace minerals were seen on fillet yield, fillet technical and nutritional quality, bone strength, skin morphology, organ mineralization and midgut transcriptome.
水产饲料成分清单一直在变化,从海洋来源到植物来源,最近还逐渐纳入了越来越多基于低营养级、副产物流和循环经济的原材料,每种原材料所含的大量和微量营养素的数量和质量各不相同。在正常和具有挑战性的条件下,满足养殖鱼类对微量营养素的需求以实现健康高效生长至关重要。在本研究中,我们进行了一项基于2×4析因设计的试验,每个日粮处理设置三个重复,用8种试验日粮之一喂养鲑鱼苗,这些日粮在四个日粮添加水平下补充了有机或无机矿物质预混料(铜、铁、锰、硒和锌)。我们发现,无论日粮矿物质水平如何,有机矿物质组的生长速度都有更高的趋势。除硒外,所有测试矿物质的消化率均与矿物质添加水平的增加呈负相关,而在无机矿物质组和有机矿物质组中直至第二个添加水平,硒的消化率随添加量的增加而增加。增加矿物质添加量会影响锌、锰、铜和铁的保留效率,而矿物质来源仅影响硒的保留,硒在有机矿物质组中的保留率更高。此外,与无机矿物质组相比,有机矿物质组的鱼体内获得了更高的二十碳五烯酸(EPA)和二十二碳六烯酸(DHA),屠宰产量也有所提高,这证实了微量矿物质添加水平对鲑鱼片技术质量起着关键作用。在鱼片产量、鱼片技术和营养质量、骨强度、皮肤形态、器官矿化和中肠转录组方面,观察到不同来源和日粮添加水平的微量矿物质有更多影响。