首页> 外文期刊>Aquaculture >Phosphorous (P) deficiency due to low P availability in fishmeal produced from blue whiting (Micromesistius poutassou) in feed for under-yearling Atlantic salmon (Salmo salar) smolt
【24h】

Phosphorous (P) deficiency due to low P availability in fishmeal produced from blue whiting (Micromesistius poutassou) in feed for under-yearling Atlantic salmon (Salmo salar) smolt

机译:由于一岁以下大西洋鲑鱼(Salmo salar)蓝鳍鲑的饲料中蓝鳕鱼(Micromesistius poutassou)产生的鱼粉中磷含量低而导致磷(P)缺乏

获取原文
获取原文并翻译 | 示例
获取外文期刊封面目录资料

摘要

Seawater transferred under-yearling Atlantic salmon (120g) were fed a practical fishmeal formulated diet containing 57.4% blue whiting fishmeal and providing 15gkg super(-) super(1) total phosphorous (P) in the diet. The basal diet was supplemented with graded dietary levels of inorganic P (0, 3, 6, 9, 12 and 15gkg super(-) super(1)) to total P levels of 15, 18, 21, 24, 27 and 30gkg super(-) super(1). Within a feeding period of 12weeks, classical signs of P deficiency developed in Atlantic salmon fed the P un-supplemented diet containing 15gkg super(-) super(1) total P of natural origin. Deficiency signs included reduced growth and feed efficiency, reduced tissue mineral concentration (P, Ca, Mg, Zn), increased P:Ca ratio in the body, increased condition factor, metabolic disorder as indicated by lipid accumulation and impaired protein utilization, as well as reduced lipid, energy and Zn digestibility. Supplementation of inorganic P-salts in the diet at 3gkg super(-) super(1) (18gkg super(-) super(1) total P) significantly improved the production results with respect to growth and feed efficiency, and restored all other signs of P deficiency in fish. A higher supplementation level of 6gkg super(-) super(1) inorganic P (21gkg super(-) super(1) total P) was required for optimal mineralization in whole body and vertebrae. The highest supplementation levels of 15gkg super(-) super(1) added inorganic P (30gkg super(-) super(1) total P) seemed to increase P excretion and to have slightly negative impacts on growth and bone mineralization. Results suggest that P availability from blue whiting fishmeal is very low (3.2gkg super(-) super(1)) and inadequate to meet dietary P requirement in rapidly growing under-yearling salmon immediately following seawater transfer, despite high natural P content in the blue whiting fishmeal.
机译:将海水转移到未成年的大西洋鲑(120g)中,饲喂一种实用的鱼粉配方日粮,其中包含57.4%的蓝鳕鱼粉,并在日粮中提供15gkg的super(-)super(1)总磷(P)。基础饮食中补充了按日粮水平计算的无机P(0、3、6、9、12和15gkg super(-)super(1)),总磷水平为15、18、21、24、27和30gkg super (-)超级(1)。在12周的喂养期内,大西洋鲑鱼出现了典型的P缺乏症迹象,他们饲喂的P补充饲料中含15gkg super(-)super(1)天然来源的总P。缺乏体征包括生长和饲料效率下降,组织矿物质浓度(P,Ca,Mg,Zn降低),体内P:Ca比例增加,病因因子增加,脂质堆积和蛋白质利用受损等代谢异常,以及降低脂质,能量和锌的消化率。日粮中添加3gkg super(-)super(1)(18gkg super(-)super(1)总磷)中的无机P盐可显着提高生产性,改善生长和饲料效率,并恢复所有其他体征鱼中的磷缺乏症。需要更高的补充水平的6gkg super(-)super(1)无机磷(21gkg super(-)super(1)总P)才能在全身和椎骨中实现最佳矿化。添加15gkg super(-)super(1)的无机P的最高补充水平(30gkg super(-)super(1)的总P)似乎增加了P的排泄,并对生长和骨骼矿化有轻微的负面影响。结果表明,蓝鳕鱼粉中磷的利用率非常低(3.2gkg super(-)super(1)),并且尽管海水中的天然P含量很高,但是在海水转移后立即迅速生长的一岁以下鲑鱼中磷的含量不足以满足其需求。蓝鳕鱼粉。

著录项

相似文献

  • 外文文献
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号