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日粮添加生物或化学合成纳米硒对热应激生长兔的影响

Effects of Dietary Biological or Chemical-Synthesized Nano-Selenium Supplementation on Growing Rabbits Exposed to Thermal Stress.

作者信息

Sheiha Asmaa M, Abdelnour Sameh A, Abd El-Hack Mohamed E, Khafaga Asmaa F, Metwally Khaled A, Ajarem Jamaan S, Maodaa Saleh N, Allam Ahmed A, El-Saadony Mohamed T

机构信息

Department of Animal Production, Faculty of Agriculture, Zagazig University, Zagazig 44511, Egypt.

Department of Poultry, Faculty of Agriculture, Zagazig University, Zagazig 44511, Egypt.

出版信息

Animals (Basel). 2020 Mar 4;10(3):430. doi: 10.3390/ani10030430.

Abstract

The adverse influences of elevated ambient temperatures during the summer season on the rabbit industry have received increased global attention. Therefore, this study intended to compare the potential effects of nano-selenium (nano-Se) synthesized by biological (BIO) and chemical (CH) methods on growth performance, carcass variables, serum metabolites, and inflammatory cytokines responses of growing rabbits in the summer season. Two hundred and fifty weaned rabbits (males, 35 days of age) were randomly divided into five treatment groups of 50 rabbits each (each group had five replicates with ten male rabbits). Treatment groups were fed a control diet and four controlled diets supplemented with nano-Se synthesized by biological method (BIO25 and BIO50, with a 25 and 50 mg of nano-Se/kg diet, respectively) and chemical method (CH25 and CH50, with a 25 and 50 mg of nano-Se/kg diet, respectively) for eight weeks. During 11 to 13 weeks of age, a gradual enhancement in live body weight (LBW), feed intake (FI) and feed conversion ratio (FCR) was noticed with BIO25 and BIO50 treatments compared to those in the other groups. The carcass percentage was significantly higher ( < 0.01) for animals fed with BIO25 than the other groups. The other organ functions were significantly higher ( < 0.01) in heat-stressed groups compared to that of nano-Se groups. Increasing the level of only BIO from a 25 to a 50 mg/kg diet gave more improvement in the studied parameters. Additionally, the concentrations of serum urea, triglycerides (TG), and glutamyl transferase (GGT) were lower ( < 0.01) in both treated and untreated groups. Likewise, the supplementation with nano-Se (BIO25, BIO50, or CH25) significantly improved the antioxidant indices and inflammatory cytokines responses as indicated from serum metabolites. Based on the study results, nano-Se especially synthesized by the biological method at diet levels of 25 or 50 mg/kg improved the growth performance, kidney and liver functions, carcass traits, antioxidants indices, and inflammatory cytokines of growing rabbits during thermal stress.

摘要

夏季环境温度升高对养兔业的不利影响已受到全球越来越多的关注。因此,本研究旨在比较生物法(BIO)和化学法(CH)合成的纳米硒(nano-Se)对夏季生长兔的生长性能、胴体变量、血清代谢物和炎性细胞因子反应的潜在影响。将250只断奶兔(雄性,35日龄)随机分为五个处理组,每组50只兔(每组有五个重复,每个重复十只雄性兔)。处理组分别饲喂对照日粮和四种添加了生物法合成纳米硒(BIO25和BIO50,日粮中纳米硒含量分别为25和50 mg/kg)和化学法合成纳米硒(CH25和CH50,日粮中纳米硒含量分别为25和50 mg/kg)的对照日粮,为期八周。在11至13周龄期间,与其他组相比,BIO25和BIO50处理组的活体体重(LBW)、采食量(FI)和饲料转化率(FCR)逐渐增加。饲喂BIO25的动物胴体百分比显著高于其他组(<0.01)。与纳米硒组相比,热应激组的其他器官功能显著更高(<0.01)。日粮中仅将BIO的水平从25 mg/kg提高到50 mg/kg,在所研究的参数方面有更大改善。此外,处理组和未处理组的血清尿素、甘油三酯(TG)和谷氨酰转移酶(GGT)浓度均较低(<0.01)。同样,如血清代谢物所示,添加纳米硒(BIO25、BIO50或CH25)显著改善了抗氧化指标和炎性细胞因子反应。基于研究结果,纳米硒,尤其是通过生物法在日粮水平为25或50 mg/kg时合成的纳米硒,改善了热应激期间生长兔的生长性能、肾脏和肝脏功能、胴体性状、抗氧化指标和炎性细胞因子。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/70ac/7142898/6cd8e0310b50/animals-10-00430-g001.jpg

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