中国乳业 ›› 2024, Vol. 0 ›› Issue (1): 32-36.doi: 10.12377/1671-4393.24.01.06

• 饲草饲料 • 上一篇    下一篇

夏季高温条件下在饲粮中添加酵母培养物对奶牛生产性能和抗氧化能力的影响

曹守玉   

  1. 临沭县动物疫病预防控制中心,山东临沂 276700
  • 出版日期:2024-01-25 发布日期:2024-02-29
  • 作者简介:曹守玉(1967-),男,山东临沂人,本科,高级兽医师,研究方向为兽医。

Effects of Adding Yeast Culture to Diet on Production Performance and Antioxidant Capacity of Dairy Cows under High Temperature in Summer

CAO Shouyu   

  1. Linshu Animal Disease Prevention and Control Center, Linyi Shandong 276700
  • Online:2024-01-25 Published:2024-02-29

摘要: [目的]为探究夏季高温条件下在饲粮中添加酵母培养物对奶牛生产性能和抗氧化能力的影响。[方法]选用60 头体况接近、健康无病的荷斯坦牛,随机分为4 组,每组3 个重复,每个重复5 头奶牛,对照组饲喂基础饲粮,试验Ⅰ、Ⅱ和Ⅲ组分别在饲喂基础饲粮基础上添加10 g/头·d、15 g/头·d和20 g/头·d的酵母培养物。预试验期7 d,正式试验期21 d。[结果]与对照组相比,试验Ⅱ组和试验Ⅲ组奶牛的平均日采食量显著升高(P<0.05);试验Ⅰ、Ⅱ和Ⅲ组奶牛的产奶量和4%标准乳产量显著升高(P<0.05),牛奶中的体细胞个数显著降低(P<0.05);试验Ⅰ、Ⅱ和Ⅲ组奶牛血浆中的葡萄糖含量显著升高(P<0.05),β-羟丁酸含量显著降低(P<0.05);试验Ⅰ、Ⅱ和Ⅲ组奶牛的总抗氧化能力、过氧化氢酶、超氧化物歧化酶和谷胱甘肽过氧化物酶含量显著升高(P<0.05)。[结论]夏季高温条件下,在饲粮中添加酵母培养物,可有效提高奶牛生产性能,增强抗氧化能力,且在本试验条件下,酵母培养物的最佳添加剂量为20 g/头·d。

关键词: 夏季高温条件, 酵母培养物, 奶牛, 生产性能, 抗氧化能力

Abstract: [Objective] In order to explore the effect of adding yeast culture to the diet on the production performance and antioxidant capacity of dairy cows under high temperature in summer. [Method] Sixty healthy Holstein cows with similar physical condition were randomly divided into four groups, with 3 replicates in each group and 5 cows in each replicate. The control group was fed with basic diet, and groups I, II and III were fed with 10, 15 and 20 per day per head yeast culture respectively. The pre-test period is 7 days, and the formal test period is 21 days. [Result] Compared with the control group, the average daily feed intake of dairy cows in experimental group II and experimental group III increased significantly (P<0.05). The milk yield and 4% standard milk yield of dairy cows in groups I, II and III increased significantly (P<0.05), and the number of somatic cells in milk decreased significantly (P<0.05). The content of glucose in plasma of dairy cows in groups I, II and III increased significantly (P<0.05), while the content of β-hydroxybutyric acid decreased significantly (P<0.05). The total antioxidant capacity, the contents of catalase, superoxide dismutase and glutathione peroxidase of dairy cows in groups I, II and III were significantly increased (P<0.05). [Conclusion] Adding yeast culture to the diet at high temperature in summer can effectively improve the performance of dairy cows and enhance their antioxidant capacity, and the optimal dosage of yeast culture is 20 g/ head per day under this experimental condition.

Key words: high temperature conditions in summer, yeast culture, cow, production performance, oxidation resistance

[1] Bagath M,Krishnan G,Devaraj C,et al.The impact of heat stress on the immune system in dairy cattle:A review[J]. Research in Veterinary Science,2019,126:94-102.
[2] Sammad A,Umer S,Shi R,et al.Dairy cow reproduction under the influence of heat stress[J]. Journal of Animal Physiology and Animal Nutrition,2020,104(4):978-986.
[3] 李洪涛,庄佳荣,王宗伟,等. 酵母类饲料添加剂在奶牛营养中的研究进展[J]. 中国饲料,2023(15):65-68.
[4] 田雨,张国礼,葛继文,等. 酶制剂和酵母培养物对泌乳前期奶牛产奶性能和消化率的影响[J]. 中国奶牛,2023(12):1-4.
[5] 刘庆,王光磊,那仁图雅. 日粮添加酵母培养物对奶牛泌乳性能和血清炎症指标的影响[J]. 中国饲料,2023(18):65-68.
[6] NY/T34-2004,奶牛饲养标准[S]. 2004.
[7] 高君平,岳春旺,郭文伟,等. 复合酵母培养物对奶牛的产奶性能的影响[J]. 现代畜牧兽医,2022(12):36-39.
[8] 谢景龙,李晨杨,赵燕慧,等. 不同真菌培养物对热应激期间泌乳奶牛生产性能的影响[J]. 饲料研究,2023(16):18-21.
[9] 王勇,申晨,杨宏伟. 日粮添加酵母培养物对热应激期间奶牛生产性能和血液生化指标的影响[J]. 饲料研究,2023,46(8):19-23.
[10] 肖鑫焕,许楚楚,王博,等. 奶牛酮病早期预警指标的确立与评估[J]. 中国畜牧杂志,2015,51(15):61-65,82.
[11] 张志伟,王克功. 奶牛酮病的风险评估、诊断及治疗[J]. 现代畜牧科技,2017(12):89.
[12] 姚凯勇,王迪铭. 夏季高温条件下添加酵母培养物对奶牛生产性能和酮病风险的影响[J]. 中国奶牛,2023(7):39-43.
[13] 王卫正,刘青,张香云,等. 酵母培养物对奶牛生产性能及抗氧化功能的影响[J]. 中国畜牧杂志,2016,52(19):61-66.
[14] 杨启晟,王自豪,黄春花,等. 酵母培养物在奶牛生产中的应用及发展前景[J]. 畜牧兽医科学,2019(11):36-37.
[15] 王晓芳,王亚男,邵丽玮,等. 酿酒酵母培养物对热应激下泌乳奶牛生产性能、血清生化指标和抗氧化指标的影响[J]. 饲料研究,2022,45(24):8-11.
[16] 祝铁钢,庞清刚,王飒爽,等. 酵母培养物对奶牛干物质采食量、产奶量及血清指标的影响[J]. 饲料研究,2021,44(2):27-29.
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