氧化硅纳米颗粒对肉鸡的生物学效应

V. N. Nikulin, Никулин Владимир Николаевич, A. Mustafina, Мустафина Александра Сергеевна
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引用次数: 1

摘要

本试验旨在通过在饲粮中添加超细氧化硅来提高肉鸡的生产品质。在试验中,建立了超细氧化硅对肉鸡的生物学效应。饲粮中添加超细SiO2颗粒,可提高家禽红细胞数量、总蛋白和白蛋白含量。实验结束时,与对照组相比,第一实验组鸟类血液中红细胞数量增加了17.43% (P≤0.001),第二实验组鸟类血液中红细胞数量增加了16.51% (P≤0.01),第三实验组鸟类血液中红细胞数量增加了20.80% (P≤0.001),第四实验组鸟类血液中红细胞数量增加了21.71% (P≤0.001)。1、2试验组鸡血清总蛋白含量提高了1.36% ~ 1.39%,3、4试验组分别显著提高了5.45%和3.05% (P≤0.05)。试验组鸡的血糖含量比对照组高8.04 ~ 23.65%。试验期间,与对照组相比,第1试验组每千克活重增重的采食量下降了3.00%,第2试验组下降了- 0.50%,第3试验组下降了- 6.00%,第4试验组下降了4.50%。与对照组相比,第1、2、3、4组鸡活力分别提高了4.77%、6.20%、19.25%和11.59%。因此,在将饲料能量转化为肉仔鸡体能时,试验组的能量转换系数比对照组高7.16 ~ 21.76%。从而确定了进一步研究的最佳剂量。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
BIOLOGICAL EFFECTS OF SILICON OXIDE NANOPARTICLES ON BROILER CHICKEN
The aim of the study is to increase the productive qualities of broiler chickens by including ultrafine silicon oxide into main diet. During the experiment, the biological effect of ultrafine silicon oxide on broiler chickens was estab-lished. Use of ultrafine SiO2 particles for poultry feeding contributed to an increase in the number of red blood cells and content of total protein and albumins. By the end of the experiment, the number of red blood cells in birds in-creased by 17.43% (P≤0.001) – in the blood of birds of the first experimental group, 16.51% (P≤0.01) – the second one, 20.80% (P≤0.001) – the third experimental and 21.71% (P≤0.001) – the fourth experimental group, compared with the indicator of the control group. The amount of total protein in blood serum of chickens of the first and the second experimental groups increased by 1.36-1.39 %, in the third and fourth ones there was a significant (P≤0.05) increase by 5.45 and 3.05%, respectively. The blood glucose content of chickens in the experimental groups is higher by 8.04-23.65% compared to this indicator with ones in the control group. During the experiment feed con-sumption per 1 kg gain of live weight decreased: in the first experimental group by 3.00 % in the second by – 0.50 %, the third – 6.00 % the fourth– by 4.50 %, compared to this with the control group. The chicken’s vibrancy of the first the experimental group was higher by 4.77 %, the second – by 6.20 %, the third – by 19.25 % and the fourth– by 11.59% than in the control one. Consequently, when converting the feed energy into the body energy of a broiler chicken, the energy conversion coefficient of the experimental group of poultry is higher than that of the control one by 7.16-21.76 %. Thus, the most optimal dose for further research was determined.
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