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首页> 外文期刊>Aquaculture Nutrition >Effect of fishmeal replacement by poultry by-product meal on growth performance, proximate composition, digestive enzyme activity, haematological parameters and gene expression of gilthead seabream (Sparus aurata)
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Effect of fishmeal replacement by poultry by-product meal on growth performance, proximate composition, digestive enzyme activity, haematological parameters and gene expression of gilthead seabream (Sparus aurata)

机译:家禽替代食肉素替代对Gilthead海泡(Sparus aurata)的生长性能,近似组成,消化酶活性,血液学参数和基因表达的影响

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摘要

Two feeding trials examined the replacement of fishmeal (FM) with poultry by-product meal (PBM) in the diet of juvenile Sparus aurata. In Feeding trial I (100 days), three diets were formulated, where FM protein was replaced by 50% (PBM50) and 100% (PBM100) PBM, while in Feeding trial II (110 days), four diets were formulated using the same FM control diet, but FM was replaced at lower levels: 25% (PBM25), and 25% (PBM25 + ) and 50% (PBM50 + ) with the supplementation of lysine and methionine amino acids. PBM protein can successfully replace 50% of FM protein in the diet of S. aurata without adverse effects on survival, feed intake, growth performance and feed utilization, given that the diet is balanced with lysine and methionine. The proximate composition of body and muscle was unaffected by the diet, but the total FM replacement resulted in reduced lipid and energy contents in fish. A fifty per cent FM replacement by PBM did not affect haematological parameters indicating a good fish health. Similarities in trypsin and chymotrypsin activities with FM-fed fish suggest a high digestibility of PBM. High dietary levels of PBM reduced the liver gene expression of GH/IGF axis and of cathepsin D suppressing fish growth and modulating the protein turnover.
机译:两种饲养试验检查了在少年烟草拍摄的饮食中用家禽副产品(PBM)替换鱼粉(FM)。在喂养试验I(100天)时,配制了三种饮食,其中FM蛋白被50%(PBM50)和100%(PBM100)PBM取代,而在喂养试验II(110天)中,使用相同的四种饮食FM控制饮食,但FM以较低水平替换:25%(PBM25)和25%(PBM25 +)和50%(PBM50 +),补充赖氨酸和蛋氨酸氨基酸。鉴于饮食与赖氨酸和甲硫氨酸平衡,PBM蛋白可以成功地替代50%的S. aurata的FM蛋白质的饮食,而不会对存活,进料摄入,生长性能和饲料利用产生不利影响。身体和肌肉的近似组成不受饮食的影响,但总FM替代导致鱼类中的脂质和能量含量降低。 PBM的50%的FM替代物不影响血液学参数,表明良好的鱼类健康。胰蛋白酶和Chymotrypsin的相似性与FM-Fed鱼类的活动表明PBM的高消化率。 PBM的高膳食水平降低了GH / IGF轴的肝脏基因表达和组织蛋白酶D抑制鱼类生长并调节蛋白质转换。

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