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首页> 外文期刊>Biological trace element research >Effects of Methionine Chelate- or Yeast Proteinate-Based Supplement of Copper, Iron, Manganese and Zinc on Broiler Growth Performance, Their Distribution in the Tibia and Excretion into the Environment
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Effects of Methionine Chelate- or Yeast Proteinate-Based Supplement of Copper, Iron, Manganese and Zinc on Broiler Growth Performance, Their Distribution in the Tibia and Excretion into the Environment

机译:基于蛋氨酸螯合或酵母蛋白质的铜,铁,锰和锌补充剂对肉鸡生长性能,其在胫骨中的分布和向环境排泄的影响

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摘要

A straight-run flock of 1-day-old Cobb 400 chicks (n = 432) was distributed into four treatment groups (9 replicate pens in each group, 12 birds in a pen) for a 38-day feeding trial evaluating the effects of a methionine chelate (Met-TM)- or a yeast proteinate (Yeast-TM)-based supplement of copper (Cu), iron (Fe), manganese (Mn) and zinc (Zn) on growth performance, bone criteria and some metabolic indices in commercial broiler chickens. The diets were either not supplemented with any trace elements at all (negative control, NC) or supplemented with an inorganic (sulphate) trace element premix (inorganic TM (ITM), 1 g/kg feed), the Met-TM (1 g/kg feed) and the Yeast-TM (0.5 g/kg feed). Body weight, feed conversion ratio and dressed meat yield at 38 days were better in the Yeast-TM-supplemented group as compared with the NC, ITM and Met-TM groups (p < 0.01). The birds supplemented with Met-TM and Yeast-TM consumed less feed than the NC and ITM-supplemented group (p < 0.001). Supplementation of trace elements irrespective of source increased the total ash content in the tibia (p < 0.001). However, concentration of Cu was lower in the Met-TM and Yeast-TM groups compared with the NC and the ITM groups (p < 0.05) although that of Fe, Mn and Zn was not affected at all by the dietary treatments. Total protein concentration in serum increased when either Met-TM or Yeast-TM was supplemented (p < 0.05) to the birds. Serum alkaline phosphatase activity, however, increased when the trace elements from either inorganic or organic sources were supplemented (p < 0.05). Compared with the ITM-supplemented group, excretion of Cu, Fe, Mn and Zn was lower in the birds supplemented with Met-TM or Yeast-TM, especially in the latter group (p < 0.05). The present experiment revealed that supplementation of broilers with methionine chelates or yeast proteinate forms of Cu, Fe, Mn and Zn improved body weight and feed conversion ratio (FCR) and markedly reduced excretion of the said trace elements. The study revealed that it may be possible to improve broiler performance and reduce excretion of critical trace elements into the environment by complete replacement of inorganic trace minerals from their dietary regime and replacing the same with methionine chelate or yeast proteinate forms.
机译:将1天大的Cobb 400只小鸡(n = 432)的直群鸡分为四个处理组(每组9只重复笔,每只笔12只鸡),进行38天的饲养试验,评估肉鸡的效果。蛋氨酸螯合物(Met-TM)或基于酵母蛋白质盐(Yeast-TM)的铜(Cu),铁(Fe),锰(Mn)和锌(Zn)补充品,可改善生长性能,骨骼指标和某些代谢商品肉鸡的指数。日粮要么根本不添加任何微量元素(阴性对照,NC),要么不添加无机(硫酸盐)微量元素预混物(无机TM(ITM),1 g / kg饲料),Met-TM(1 g / kg饲料)和Yeast-TM(0.5 g / kg饲料)。与NC,ITM和Met-TM组相比,补充酵母的组38天的体重,饲料转化率和生肉产量更好(p <0.01)。补充了Met-TM和Yeast-TM的家禽的饲料消耗要少于补充NC和ITM的家禽的饲料(p <0.001)。无论来源如何,补充微量元素都会增加胫骨中的总灰分含量(p <0.001)。然而,尽管Fe,Mn和Zn的饮食完全不受饮食处理的影响,但Met-TM和Yeast-TM组的Cu浓度低于NC和ITM组(p <0.05)。当Met-TM或Yeast-TM补充到禽类时,血清总蛋白浓度增加(p <0.05)。然而,当补充来自无机或有机来源的微量元素时,血清碱性磷酸酶活性增加(p <0.05)。与补充ITM的组相比,补充Met-TM或Yeast-TM的家禽中Cu,Fe,Mn和Zn的排泄量较低,特别是在后者组中(p <0.05)。本实验表明,向肉鸡补充蛋氨酸螯合物或酵母蛋白形式的铜,铁,锰和锌可改善体重和饲料转化率(FCR),并显着减少所述微量元素的排泄。该研究表明,通过从饮食中完全替代无机微量矿物质并用蛋氨酸螯合或酵母蛋白形式替代无机微量矿物质,有可能改善肉鸡的生产性能并减少关键微量元素向环境中的排泄。

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