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日粮添加有机铬和维生素C对高饲养密度蛋鸡生产性能、免疫反应、血液代谢产物及应激状态的影响

Effects of dietary organic chromium and vitamin C supplementation on performance, immune responses, blood metabolites, and stress status of laying hens subjected to high stocking density.

作者信息

Mirfendereski E, Jahanian R

机构信息

Department of Animal Sciences, College of Agriculture, Isfahan University of Technology, Isfahan 84156-83111, Iran.

Department of Animal Sciences, College of Agriculture, Isfahan University of Technology, Isfahan 84156-83111, Iran

出版信息

Poult Sci. 2015 Feb;94(2):281-8. doi: 10.3382/ps/peu074. Epub 2015 Feb 2.

Abstract

The present study was carried out to investigate the effects of dietary supplementation of chromium-methionine (CrMet) and vitamin C (VC) on performance, immune response, and stress status of laying hens subjected to high stocking density. A total of 360 Hy-Line W-36 leghorn hens (at 26 wk old) were used in a 2×3×2 factorial arrangement that had 2 cage densities (5 and 7 hens per cage), 3 Cr levels (0, 500, and 1,000 ppb as CrMet), and 2 dietary VC levels (0 and 500 ppm as L-ascorbic acid). The trial lasted for 12 wk. The first 2 wk were for adaptation (26 to 28 wk of age), and the remaining 10 wk served as the main recording period. In addition to performance, immune response to Newcastle disease virus (NDV) was assessed at d 7 and 14 postvaccination. Also, the birds' stress status was evaluated by analyzing appropriate plasma metabolites. The results showed that hens in cages with higher stocking density had lower hen-day egg production, egg mass, and feed intake compared with those in normal density cages (P<0.05). Dietary CrMet supplementation caused significant increases in egg production and egg mass (P<0.01). There were significant Cr × VC interactions related to egg production and feed conversion efficiency (P<0.01); dietary CrMet supplementation was more effective in improving egg production and feed conversion ratio in VC-unsupplemented diets. Although plasma concentrations of triglycerides and high-density lipoproteins were not influenced by dietary treatments, supplemental CrMet decreased plasma cholesterol levels (P<0.05). Plasma insulin and glucose levels of hens kept at a density of 7 hens/cage were significantly higher than those of hens in normal cage density (P<0.01), and dietary CrMet supplementation decreased plasma concentrations of insulin (P<0.001) and glucose (P<0.01), with higher impacts in high stocking density-challenged hens. While high stocking density caused a marked increase in plasma corticosterone (P<0.01), both supplemental CrMet and VC decreased it to near normal levels. There were significant stocking density×Cr interactions related to plasma insulin and corticosterone concentrations (P<0.01); supplemental CrMet was more effective in lowering these hormones in high stocking density-challenged hens. The high stocking density challenge suppressed NDV antibody response (P<0.001), while dietary supplementation of CrMet improved antibody titers against NDV at d 14 post vaccination particularly in hens kept at a density of 7 hens/cage (P<0.01). From the present observations, it can be concluded that CrMet can improve laying performance largely because it alleviates harmful responses to stressful conditions.

摘要

本研究旨在探讨日粮中添加蛋氨酸铬(CrMet)和维生素C(VC)对处于高饲养密度下蛋鸡生产性能、免疫反应和应激状态的影响。总共360只海兰W - 36白来航蛋鸡(26周龄)采用2×3×2析因设计,有2种笼养密度(每笼5只和7只母鸡)、3个铬水平(以CrMet计为0、500和1000 ppb)以及2个日粮VC水平(以L - 抗坏血酸计为0和500 ppm)。试验持续12周。前2周用于适应期(26至28周龄),其余10周作为主要记录期。除生产性能外,在接种新城疫病毒(NDV)疫苗后第7天和第14天评估对其的免疫反应。此外,通过分析合适的血浆代谢物来评估鸡的应激状态。结果表明,与正常密度笼养的母鸡相比,饲养密度较高的笼中母鸡的日产蛋量、蛋重和采食量较低(P<0.05)。日粮添加CrMet使产蛋量和蛋重显著增加(P<0.01)。在产蛋量和饲料转化效率方面存在显著的铬×VC互作(P<0.01);在未添加VC的日粮中添加CrMet对提高产蛋量和饲料转化率更有效。虽然日粮处理对甘油三酯和高密度脂蛋白的血浆浓度没有影响,但添加CrMet可降低血浆胆固醇水平(P<0.05)。每笼饲养7只母鸡的血浆胰岛素和葡萄糖水平显著高于正常笼养密度的母鸡(P<0.01),日粮添加CrMet可降低血浆胰岛素(P<0.001)和葡萄糖(P<0.01)浓度,对高饲养密度应激的母鸡影响更大。虽然高饲养密度导致血浆皮质酮显著增加(P<0.01),但添加CrMet和VC均可将其降至接近正常水平。在血浆胰岛素和皮质酮浓度方面存在显著的饲养密度×铬互作(P<0.01);添加CrMet对降低高饲养密度应激母鸡的这些激素水平更有效。高饲养密度应激抑制了NDV抗体反应(P<0.001),而日粮添加CrMet可提高接种疫苗后第14天针对NDV的抗体滴度,特别是在每笼饲养7只母鸡的情况下(P<0.01)。从目前的观察结果可以得出结论,CrMet可以显著提高产蛋性能,主要是因为它减轻了对应激条件的有害反应。

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