Xiong Zhanbo, Li Yanjun, Zhang Xiaoyin, Zhang Shiqi, Li Kexin, Zheng Nan, Zhao Shengguo, Wang Jiaqi
State Key Laboratory of Animal Nutrition, Institute of Animal Sciences, Chinese Academy of Agricultural Sciences, Beijing 100193, China.
Anim Nutr. 2024 Jul 6;18:441-449. doi: 10.1016/j.aninu.2024.05.004. eCollection 2024 Sep.
Optimizing nitrogen utilization efficiency and mitigating nitrogen losses in cows plays a pivotal role in fostering economic sustainability within contemporary agricultural systems. Biochanin A (BCA), a natural component in red clover, has the potential to improve nitrogen metabolism in dairy cows. The primary objective of this study was to probe the impact of biochanin A supplementation on lactational performance, nitrogen metabolism, and blood metabolites in dairy cows. A complete randomized block design experiment was conducted over 28 d, involving 36 multiparous Holstein cows (comparable milk yield = 37.1 ± 2.90 kg, BW = 642 ± 70.0 kg, days in milk = 92 ± 8.0 d, and parity = 2.4 ± 0.50), which were allocated to three treatment groups: the Control group (with 0 g/d BCA), the Low group (with 10 g/d per cow BCA), and the High group (with 40 g/d per cow BCA). Biochanin A supplementation improved the lactational performance of cows by increasing milk yield by 6.3% ( = 0.007) and feed efficiency by 12.7% ( = 0.009). Total intestinal apparent digestibility was unaffected by BCA supplementation ( > 0.05), but microbial nitrogen was increased by 30.0% ( = 0.002) for promoting nitrogen utilization efficiency by 20.7% ( = 0.004). Milk competent yields (protein, lactose, and non-fat milk solid) were increased with increasing BCA supplementation ( < 0.05). Urea nitrogen levels in plasma and milk were both decreased by BCA supplementation ( < 0.05). Blood routine parameters and plasma biochemical parameters both received no effect by BCA supplementation ( > 0.05). BCA did not affect body health of dairy cows. Additionally, none of the plasma endocrine hormones were affected ( > 0.05). A total of 95 significantly different metabolites were screened from the plasma metabolites of cows in the BCA-added and non-added groups. After performing an enrichment analysis of the metabolic pathways associated with the different metabolites, six specific pathways were identified: bile acid biosynthesis, aspartate metabolism, pyrimidine metabolism, arginine and proline metabolism, the urea cycle, and ammonia recycling. The inclusion of BCA is suggested to enhance milk yield and modulate nitrogen metabolism by influencing relevant metabolites within the metabolic pathways.
优化奶牛氮利用效率并减少氮损失,对促进当代农业系统的经济可持续性起着关键作用。生物chanin A(BCA)是红三叶草中的一种天然成分,具有改善奶牛氮代谢的潜力。本研究的主要目的是探究补充生物chanin A对奶牛泌乳性能、氮代谢和血液代谢物的影响。进行了一项为期28天的完全随机区组设计实验,涉及36头经产荷斯坦奶牛(平均产奶量 = 37.1 ± 2.90千克,体重 = 642 ± 70.0千克,泌乳天数 = 92 ± 8.0天,胎次 = 2.4 ± 0.50),将其分为三个处理组:对照组(0克/天BCA)、低剂量组(每头奶牛10克/天BCA)和高剂量组(每头奶牛40克/天BCA)。补充生物chanin A可提高奶牛的泌乳性能,产奶量提高6.3%(P = 0.007),饲料效率提高12.7%(P = 0.009)。补充BCA对总肠道表观消化率无影响(P > 0.05),但微生物氮增加了30.0%(P = 0.002),氮利用效率提高了20.7%(P = 0.004)。随着BCA添加量的增加,牛奶成分产量(蛋白质、乳糖和非脂乳固体)增加(P < 0.05)。补充BCA可降低血浆和牛奶中的尿素氮水平(P < 0.05)。补充BCA对血常规参数和血浆生化参数均无影响(P > 0.05)。BCA不影响奶牛的身体健康。此外,血浆内分泌激素均未受影响(P > 0.05)。从添加和未添加BCA的奶牛血浆代谢物中总共筛选出95种显著不同的代谢物。在对与不同代谢物相关的代谢途径进行富集分析后,确定了六个特定途径:胆汁酸生物合成、天冬氨酸代谢、嘧啶代谢、精氨酸和脯氨酸代谢、尿素循环和氨循环。建议添加BCA通过影响代谢途径中的相关代谢物来提高产奶量并调节氮代谢。