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

机译:水解羽膳食对生长性能,近似组成,消化酶活性,血凝虫(Sparus Aurata)的生长性能,近似组成,消化酶活性,血液学参数和生长相关基因表达的影响

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摘要

Two feeding trials were conducted to examine the replacement of fishmeal (FM) by hydrolyzed feather meal (HFM) in the diet of juvenile gilthead sea bream (Sparus aurata). In trial I (100 days), three isonitrogenous (500 g kg(-1) crude protein) and isoenergetic (21 kJ kg(-1)) diets were formulated, where FM protein was replaced by HFM at 50% (HFM50) and 100% (HFM100), while in trial II (110 days) four diets were formulated using the same FM control diet but FM was replaced at lower levels: 25% (HFM25), and 25% (HFM25+) and 50% (HFM50+) supplemented with lysine and methionine. Juveniles were allocated in quadruplicate and triplicate groups, respectively for trial I and II and fed to satiation 2 times day(-1). HFM can successfully replace FM protein at 25% without compromising the feed intake, growth performance, feed utilization and proximate composition of juvenile gilthead seabream. Higher FM replacement levels down-regulated the liver gene expression of the GH/IGF axis and thus reduced the growth performance and nutrient metabolism, although the digestive protease activities and several haematological parameters were unaffected.
机译:进行了两次饲养试验,以通过在少年吉尔韦鲷海鲷(Sparus Aurata)的饮食中,通过水解的羽粉(HFM)替换鱼粉(FM)。在试验I(100天)中,配制了三种等纯度(500g kg(-1)粗蛋白)和异液(21kJ kg(-1))饮食,其中Fm蛋白被Hfm以50%(HFM50)更换100%(HFM100),而在试验II(110天)使用相同的FM控制饮食中配制四种饮食,但FM在较低水平下被替换:25%(HFM25)和25%(HFM25 +)和50%(HFM50 +)补充有赖氨酸和蛋氨酸。幼年物分别分别分配四份和三份组,分别用于试验I和II,并喂食2次(-1)。 HFM可以以25%成功替代FM蛋白,而不会影响少年吉伐河流的进料摄入,生长性能,饲料利用和近似组成。较高的FM替代水平下调GH / IGF轴的肝脏基因表达,从而降低了生长性能和营养代谢,尽管消化蛋白酶活性和几个血液学参数未受影响。

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