首页> 外文期刊>Biological trace element research >Effect of Supplementing Organic Forms of Zinc, Selenium and Chromium on Performance, Anti-Oxidant and Immune Responses in Broiler Chicken Reared in Tropical Summer
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Effect of Supplementing Organic Forms of Zinc, Selenium and Chromium on Performance, Anti-Oxidant and Immune Responses in Broiler Chicken Reared in Tropical Summer

机译:补充锌,硒和铬有机形态对热带夏季饲养肉鸡生产性能,抗氧化和免疫反应的影响

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摘要

Two experiments were conducted to study the effect of supplementing organic forms of zinc (Zn), selenium (Se) and chromium (Cr) on performance, anti-oxidant activities and immune responses in broiler chickens from 1 to 21 days of age, which were reared in cyclic heat-stressed condition under tropical summer in open-sided poultry house. A total of 200 (experiment I) and 450-day-old (experiment II) broiler male chicks (Cobb 400) were randomly distributed in stainless steel battery brooders (610 mmx762 mmx475 mm) at the rate of five birds per pen. A maize-soybean meal-based control diet (CD) containing recommended (Vencobb 400, Broiler Management Guide) concentrations of inorganic trace minerals and other nutrients was prepared. The CD was supplemented individually with organic form of selenium (Se, 0.30 mg/kg), chromium (Cr, 2 mg/kg) and zinc (Zn, 40 mg/kg) in experiment I. In experiment II, two concentrations of each Zn (20 and 40 mg/kg), Se (0.15 and 0.30 mg/kg) and Cr (1 and 2 mg/kg) were supplemented to the basal diet in 2x2x2 factorial design. A group without supplementing inorganic trace minerals was maintained as control group in both experiments. Each diet was allotted randomly to ten replicates in both experiments and fed ad libitum from 1 to 21 days of age. At 19th day of age, blood samples were collected for estimation of anti-oxidant and immune responses. Supplementation of Se, Cr and Zn increased (P < 0.05) body mass gain (BMG) and feed intake compared to those fed the CD in experiment I. The feed efficiency (FE) in Cr-fed group was higher (P < 0.05) compared to the CD-fed group. Se or Cr supplementation reduced lipid peroxidation (LP) compared to broilers fed the CD. In experiment II, BMG was not affected (P > 0.05) by the interaction between levels of Zn, Se and Cr in broiler diet. The FE improved (P < 0.05) with supplementation of the trace minerals tested at both concentrations except in group fed 40 mg Zn, 0.5 mg Se and 1 mg Cr/kg. Reduction in lipid peroxidation (LP, P < 0.05) and increased (P < 0.05) activity of superoxide dismutase were observed in broiler fed organic Zn, Se and Cr compared to the CD-fed group. The dietary concentrations of Zn, Se and Cr did not influence (P> 0.05) the immune responses (Newcastle disease titre and cell-mediated immune response to phytohaemagglutinin-P) in both the experiments. Based on the results, it is concluded that supplementation of organic form of Se, Cr and Zn (0.30, 2 and 40 mg/kg, respectively) either alone or in combination significantly improved performance and anti-oxidant responses (reduced LP and increased superoxide dismutase) in commercial broiler chicks (21 days of age) reared in cyclic heat stress conditions in open-sided poultry house during summer.
机译:进行了两个实验,研究了补充有机形式的锌(Zn),硒(Se)和铬(Cr)对1至21天大的肉鸡生产性能,抗氧化活性和免疫反应的影响,分别为在热带夏季,在开放式禽舍中以周期性热应激条件饲养。将总共​​200只(实验I)和450天大(实验II)的肉鸡雄鸡(Cobb 400)随机分布在不锈钢电池育雏器(610 mmx762 mmx475 mm)中,每只鸡只饲养五只鸡。制备了包含推荐浓度(Vencobb 400,《肉鸡管理指南》)的无机痕量矿物质和其他营养成分的玉米-豆粕型对照饮食(CD)。在实验I中,向CD分别添加有机形式的硒(Se,0.30 mg / kg),铬(Cr,2 mg / kg)和锌(Zn,40 mg / kg)。在实验II中,每种浓度两种以2x2x2析因设计向基础饮食中补充锌(20和40 mg / kg),硒(0.15和0.30 mg / kg)和铬(1和2 mg / kg)。在两个实验中均维持不添加无机痕量矿物质的组作为对照组。在两个实验中,每种饮食均随机分配十次重复,并在1至21天的年龄随意进食。在19日龄时,收集血液样本以评估抗氧化和免疫反应。硒,铬和锌的添加与实验一中的饲喂相比增加了(P <0.05)体重增加(BMG)和采食量。铬喂养组的饲料效率(FE)更高(P <0.05)与以CD喂养的小组相比。与饲喂CD的肉鸡相比,添加Se或Cr可以减少脂质过氧化(LP)。在实验II中,肉鸡日粮中Zn,Se和Cr水平之间的相互作用不影响BMG(P> 0.05)。补充了两种浓度的痕量矿物质后,FE改善(P <0.05),但饲喂40 mg Zn,0.5 mg Se和1 mg Cr / kg的组除外。与CD饲喂组相比,饲喂有机Zn,Se和Cr的肉鸡观察到脂质过氧化作用的降低(LP,P <0.05)和超氧化物歧化酶活性的增加(P <0.05)。在两个实验中,日粮中锌,硒和铬的浓度均不影响免疫应答(新城疫滴度和细胞介导的对植物血凝素-P的免疫应答)(P> 0.05)。根据结果​​得出结论,单独或组合添加有机形式的Se,Cr和Zn(分别为0.30、2和40 mg / kg)可显着改善性能和抗氧化反应(LP降低和超氧化物增加)夏季,在循环热应激条件下在开放式家禽舍中饲养的商品肉鸡(21日龄)中的歧化酶)。

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