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首页> 外文期刊>Journal of Thermal Biology >Comparative study on the responses of broiler chicken to hot and humid environment supplemented with different dietary levels and sources of selenium
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Comparative study on the responses of broiler chicken to hot and humid environment supplemented with different dietary levels and sources of selenium

机译:肉鸡鸡对不同膳食水平和硒来源的热湿润环境的对比研究

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摘要

Present study was carried out with the objective of investigating the role of green synthesized nano Se (GNS) in growth performance, digestibility of minerals, immunity, stress alleviation, antioxidant status, and body Se content of broiler thicken raised under hot and humid environment with respect to market nano Se (MNS) and inorganic Se. The experimental design was 3 x 3 factorial, in which three levels (0.15, 0.20, and 0.25 ppm) and three sources (inorganic, green nano, and market nano) of Se resulted in nine treatments viz. IS-0.15, GNS-0.15, MNS-0.15, IZ-0.20, GNS-0.20, MNS-0.20, IS-0.25, GNS-0.25, and MNS-0.25 (IS: inorganic Se, GNS: green nano Se, MNS: market nano Se). A total of 432 broiler chicken were divided among nine treatments with six replicates of birds per treatment (8 birds/replicate). Results of present study revealed significantly better growth performance of birds supplemented with 0.25 ppm nano Se. The supplementation of 0.25 ppm nano Se improved the immune response and lymphoid organ development of birds. Significantly higher Se and nitrogen digestibility coefficients, serum antioxidant activity and decline of Heterophil: Lymphocyte ratio and expression of HSP70 gene were observed in birds supplemented with 0.25 ppm Se and nano source of Se compared to inorganic Se. Significantly higher Se concentration in liver and breast muscle and higher serum Se concentration were observed in birds fed 0.25 ppm nano Se. The liver Se concentration was much higher than that of breast muscle. However, the nano Se synthesized by green method in this study did not differ significantly from the chemically synthesized nano Se. It was concluded that 0.25 ppm Se and nano form of Se are superior to lower levels and inorganic form of Se, respectively, in improving the immunity, growth, antioxidant status, and in stress alleviation of broiler chicken. However, GNS is equally efficient as chemically synthesized MNS.
机译:目前的研究是通过调查绿色合成纳米SE(GNS)在生长性能下的作用,矿物质,免疫力,胁迫缓解,抗氧化剂状态和肉鸡的体内含量的作用进行研究,并在热和潮湿环境下提高尊重市场纳米SE(MNS)和无机SE。实验设计是3 x 3因子,其中三种水平(0.15,0.20和0.25ppm)和三种来源(无机,绿色纳米和市场纳米),导致九个治疗致Ziz。 IS-0.15,GNS-0.15,MNS-0.15,IZ-0.20,GNS-0.20,MNS-0.20,IS-0.25,GNS-0.25和MNS-0.25(是:无机SE,GNS:GRES:Green Nano Se,MNS:市场纳米SE)。共有432个肉鸡分为九个治疗方法,每次治疗六只鸟重复(8只鸟/复制)。目前研究的结果显示出补充0.25ppm纳米SE的鸟类的显着增长性能。补充0.25ppm纳米Se改善了鸟类的免疫应答和淋巴室发育。在与无机硒相比,在补充0.25ppm Se和纳米源的鸟类中,观察到含有0.25ppm se和纳米源的鸟类血清抗氧化活性和handophil的衰减活性和hyplophil的衰减和Hsp70基因的表达。在饲喂0.25ppm纳米Se的鸟类中观察到肝脏和乳房肌肉中的SE浓度明显较高,并且在鸟类中观察到更高的血清SE浓度。肝SE浓度远高于乳房肌肉。然而,通过该研究中的绿色方法合成的纳米Se与化学合成的纳米SE没有显着差异。结论是,0.25ppm Se和纳米形式的Se分别优于较低的水平和无机形式,即改善抗扰度,生长,抗氧化状态以及肉鸡的压力缓解。然而,GNS同等为化学合成的MNS。

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