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首页> 外文期刊>Aquaculture >Regulation of feed intake, growth, nutrient and energy utilisation in European sea bass (Dicentrarchus labrax) fed high fat diets
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Regulation of feed intake, growth, nutrient and energy utilisation in European sea bass (Dicentrarchus labrax) fed high fat diets

机译:欧洲海鲈(Dicentrarchus labrax)饲喂高脂饮食的饲料摄入,生长,营养和能量利用的规定

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Three practical isoproteic (54% protein) diets were formulated to contain graded levels of crude fat (diet L: 10%, diet M: 20% and diet H: 30%). Each diet was assigned unrestrictedly to three and restrictedly to two replicate groups of fish (IBW 243 g). In unrestricted groups, increasing the dietary lipid level led to a significant decrease in voluntary feed intake without affecting growth rate. In the feed-restricted groups, daily growth rates increased with increasing dietary fat levels. There was a significant and inverse effect of the dietary fat content on whole body moisture and fat levels, with highest lipid (ca. 20%) and lowest moisture (ca. 58%) contents in sea bass fed diet containing the highest lipid level; muscle lipid concentration was however not affected. Nitrogen retention was significantly increased by an increase in lipid concentration in the diets, with better efficiencies observed in unrestricted (ca. 31%) than in restricted groups (ca. 27%). Nitrogen loss was significantly affected by both the feeding level and the diet composition, with lowest values (ca. 60 g kg(-1)) in groups fed diet H unrestrictedly and highest values (ca. 90 g kg(-1)) in groups fed diet L at a restricted level. Soluble phosphorus excretion in H groups was less than half that in L groups, regardless of the feeding level
机译:配制了三种实际的等蛋白饮食(蛋白质含量为54%)以包含分级的粗脂肪水平(饮食L:10%,饮食M:20%和饮食H:30%)。将每种饮食无限制地分配给三组鱼,并严格地将其分为两组重复鱼(IBW 243 g)。在不受限制的人群中,增加饮食中的脂质水平会导致自愿采食量显着下降,而不会影响生长速度。在限制饮食的人群中,日增长率随着饮食中脂肪含量的增加而增加。日粮脂肪含量对全身水分和脂肪水平具有显着的反作用,在鲈鱼饲粮中,脂肪含量最高的脂质最高(约20%),水分最低(约58%)。然而,肌肉脂质浓度不受影响。日粮中脂质浓度的增加会显着增加氮的保留,在非限制组(约31%)中观察到的效率要高于限制组(约27%)。氮的流失受饲喂水平和日粮组成的显着影响,无限制饲喂日粮H的组最低值(约60 g kg(-1)),而饲喂H组的最高值(约90 g kg(-1))。各组在有限的水平下饮食L。无论进食水平如何,H组的可溶性磷排泄量均少于L组的一半。

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