首页> 外文期刊>动物营养:英文版 >Effects of dietary arginine levels on growth performance,body composition, serum biochemical indices and resistance ability against ammonia-nitrogen stress in juvenile yellow catfish(Pelteobagrus fulvidraco)
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Effects of dietary arginine levels on growth performance,body composition, serum biochemical indices and resistance ability against ammonia-nitrogen stress in juvenile yellow catfish(Pelteobagrus fulvidraco)

机译:日粮精氨酸水平对黄yellow鱼生长性能,体成分,血清生化指标和抗氨氮胁迫能力的影响

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摘要

This experiment was conducted to investigate the effects of dietary arginine levels on growth performance, body composition, serum biochemical indices and resistance ability against ammonia-nitrogen stress in juvenile yellow catfish(Pelteobagrus fulvidraco). Five isonitrogenous and isolipidic diets(42%protein and 9% lipid) were formulated to contain graded levels of arginine(2.44%, 2.64%, 2.81%, 3.01% and3.23% of diet), by supplementing L-Arginine HCI. Seven hundred juvenile yellow catfish with an initial average body weight of 1.13 ± 0.02 g were randomly divided into 5 groups with 4 replicates of 35 fish each and each group was fed one of the diets. After 56 d feeding, fish were exposed to 100 mg/L of ammonia-nitrogen for 72 h. The results showed that weight gain(WG) and specific growth rate(SGR) in2.64% and 2.81% groups were significantly higher than those in 3.23% group(P < 0.05). The feed conversation ratio(FCR) in 2,64%, 2,81% and 3.01% groups was significantly decreased when compared with3,23% group. The protein efficiency ratio(PER) in 2.64% group was significantly higher than that in 2.44%and 3.23% groups(P < 0.05). The condition factor(CF) of fish was significantly higher in 2.81% group than that in 2,44% group(P < 0.05). Dietary arginine levels had no significant effect on hepatosomatic index(HSI), viscerosomatic index(VSI), and whole-body dry matter, crude protein, crude lipid, ash contents, as well as serum total protein(TP), triglyceride(TG), glucose(GLU), urea nitrogen(UN) contents and aspartate aminotransferase(AST), alanine aminotransferase(ALT) activities(P> 0.05). After the fish were challenged to ammonia-nitrogen for 72 h, their cumulative mortality rate in 2.81% group was significantly lower than that in 2.44% group(P < 0.05). The results suggested that dietary arginine level at 2.81%could optimize anti-ammonia-nitrogen stress ability of juvenile yellow catfish and a level of 3.23%arginine seemed to depress the growth performance of fish and decreased their tolerance to the ammonia-nitrogen stress under current study. A quadratic regression analysis based on WG indicated that the optimal dietary arginine requirement of juvenile yellow catfish was estimated to be 2.74% of the diet(6.45% of dietary protein) under current culture conditions.
机译:本实验旨在研究日粮精氨酸水平对黄yellow鱼(Pelteobagrus fulvidraco)的生长性能,身体成分,血清生化指标以及对氨氮胁迫的抵抗能力的影响。通过补充L-精氨酸盐酸盐,配制了五种等氮和异脂饮食(42%蛋白质和9%脂质)以包含分级水平的精氨酸(分别占饮食的2.44%,2.64%,2.81%,3.01%和3.23%)。将700只初始平均体重为1.13±0.02 g的幼年黄cat鱼随机分为5组,每组35个鱼,每组4次重复,每组饲喂一种日粮。喂食56天后,将鱼暴露于100 mg / L的氨氮中72小时。结果表明:2.64%和2.81%组的体重增加(WG)和比生长率(SGR)显着高于3.23%组(P <0.05)。 2,64%,2,81%和3.01%组的饲料转化率(FCR)较3,23%组显着降低。 2.64%组的蛋白质效率比(PER)显着高于2.44%和3.23%组(P <0.05)。鱼的条件因子(CF)在2.81%组中明显高于在2.44%组中(P <0.05)。饮食中精氨酸水平对肝体指数,内脏指数,全身干物质,粗蛋白,粗脂,灰分,血清总蛋白,甘油三酯无明显影响,葡萄糖(GLU),尿素氮(UN)含量和天冬氨酸转氨酶(AST),丙氨酸转氨酶(ALT)活性(P> 0.05)。鱼类接受氨氮攻击72 h后,其累积死亡率在2.81%组明显低于2.44%组(P <0.05)。结果表明,日粮精氨酸水平为2.81%可以优化黄色yellow鱼的抗氨氮胁迫能力,而3.23%的精氨酸水平可能会降低鱼类的生长性能并降低其对氨氮胁迫的耐受性。研究。基于WG的二次回归分析表明,在目前的养殖条件下,幼鱼的最佳日粮精氨酸需求量估计为日粮的2.74%(日粮蛋白的6.45%)。

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  • 来源
    《动物营养:英文版》 |2016年第3期|P.204-210|共7页
  • 作者单位

    Institute of Animal Science, Guangdong Academy of Agricultural Sciences;

    College of Animal Science, South China Agricultural University;

    Guangdong Public Laboratory of Animal Breeding and Nutrition;

    Guangdong Key Laboratory of Animal Breeding and Nutrition;

    Institute of Animal Science, Guangdong Academy of Agricultural Sciences;

    College of Animal Science, South China Agricultural University;

    Guangdong Public Laboratory of Animal Breeding and Nutrition;

    Guangdong Key Laboratory of Animal Breeding and Nutrition;

    Institute of Animal Science, Guangdong Academy of Agricultural Sciences;

    College of Animal Science, South China Agricultural University;

    Guangdong Public Laboratory of Animal Breeding and Nutrition;

    Guangdong Key Laboratory of Animal Breeding and Nutrition;

    Institute of Animal Science, Guangdong Academy of Agricultural Sciences;

    College of Animal Science, South China Agricultural University;

    Guangdong Public Laboratory of Animal Breeding and Nutrition;

    Guangdong Key Laboratory of Animal Breeding and Nutrition;

    Institute of Animal Science, Guangdong Academy of Agricultural Sciences;

    College of Animal Science, South China Agricultural University;

    Guangdong Public Laboratory of Animal Breeding and Nutrition;

    Guangdong Key Laboratory of Animal Breeding and Nutrition;

    Institute of Animal Science, Guangdong Academy of Agricultural Sciences;

    College of Animal Science, South China Agricultural University;

    Guangdong Public Laboratory of Animal Breeding and Nutrition;

    Guangdong Key Laboratory of Animal Breeding and Nutrition;

    Institute of Animal Science, Guangdong Academy of Agricultural Sciences;

    College of Animal Science, South China Agricultural University;

    Guangdong Public Laboratory of Animal Breeding and Nutrition;

    Guangdong Key Laboratory of Animal Breeding and Nutrition;

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  • 原文格式 PDF
  • 正文语种 CHI
  • 中图分类 水产动物学;
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