Suppr超能文献

奶牛泌乳性能对补充 N-乙酰-L-蛋氨酸作为保护性蛋氨酸来源的反应。

Lactational performance of dairy cows in response to supplementing N-acetyl-l-methionine as source of rumen-protected methionine.

机构信息

Department of Animal Sciences, University of Florida, Gainesville 32611.

Department of Animal Sciences, University of Florida, Gainesville 32611; Universidade Federal do Parana, Curitiba, PR, 80060, Brazil.

出版信息

J Dairy Sci. 2022 Mar;105(3):2301-2314. doi: 10.3168/jds.2021-21068. Epub 2021 Dec 23.

Abstract

The objective of this experiment was to evaluate the effects of supplementing a rumen-protected source of Met, N-acetyl-l-methionine (NALM), on lactational performance and nitrogen metabolism in early- to mid-lactation dairy cows. Sixty multiparous Holstein dairy cows in early lactation (27 ± 4.3 d in milk, SD) were assigned to 4 treatments in a randomized complete block design. Cows were blocked by actual milk yield. Treatments were as follows: (1) no NALM (control); (2) 15 g/d of NALM (NALM15); (3) 30 g/d of NALM (NALM30); and (4) 45 g/d of NALM (NALM45). Diets were formulated using a Cornell Net Carbohydrate and Protein System (CNCPS) v.6.5 model software to meet or exceed nutritional requirements of lactating dairy cows producing 42 kg/d of milk and to undersupply metabolizable Met (control) or supply incremental amounts of NALM. The digestible Met (dMet) supply for control, NALM15, NALM30, and NALM45 were 54.7, 59.8, 64.7, and 72.2 g/d, respectively. The supply of dMet was 88, 94, 104, and 115% of dMet requirement for control, NALM15, NALM30, and NALM45, respectively. Milk yield data were collected, dry matter intake (DMI) was measured daily, and milk samples were collected twice per week for 22 wk. Blood, ruminal fluid, urine, and fecal samples were collected during the covariate period and during wk 4, 8, and 16. Data were analyzed using the GLIMMIX procedure of SAS (SAS Institute) using covariates in the model for all variables except body weight. Linear, quadratic, and cubic contrasts were also tested. Treatments did not affect DMI, milk yield, and milk component concentration and yield; however, feed efficiency expressed as milk yield per DMI and 3.5% fat-corrected milk per DMI were quadratically affected, with greater response observed for NALM15 and NALM30 compared with control. Acetate proportion linearly increased, whereas propionate proportion linearly decreased with NALM supplementation. Blood urea nitrogen linearly decreased with NALM supplementation. Total plasma essential AA concentrations were quadratically affected, as greater values were observed for control and NALM45 than other treatments. Plasma Met concentration was quadratically affected as lower levels were observed with NALM15, whereas Met concentrations increased with NALM45 compared with control. Nitrogen utilization efficiency and apparent total-tract nutrient digestibility were not affected by treatment. Supplementation of NALM at 15 or 30 g/head per day resulted in the greatest improvements in feed efficiency without affecting N metabolism of early- to mid-lactation dairy cows.

摘要

本实验旨在评估在泌乳早期和中期奶牛中补充瘤胃保护性蛋氨酸来源,N-乙酰-L-蛋氨酸(NALM)对泌乳性能和氮代谢的影响。60 头处于泌乳早期的荷斯坦奶牛(泌乳天数 27±4.3,SD)按随机完全区组设计分为 4 个处理。奶牛按实际产奶量进行分组。处理如下:(1)不添加 NALM(对照);(2)添加 15 g/d 的 NALM(NALM15);(3)添加 30 g/d 的 NALM(NALM30);(4)添加 45 g/d 的 NALM(NALM45)。日粮使用康奈尔净碳水化合物和蛋白质系统(CNCPS)v.6.5 模型软件进行配制,以满足或超过产奶量为 42kg/d 的泌乳奶牛的营养需求,并提供可代谢蛋氨酸(Met)(对照)或额外的 NALM。对照、NALM15、NALM30 和 NALM45 的可消化 Met(dMet)供应量分别为 54.7、59.8、64.7 和 72.2g/d。dMet 的供应量分别为对照、NALM15、NALM30 和 NALM45 的可代谢 Met(dMet)需求的 88、94、104 和 115%。收集产奶量数据,每天测量干物质采食量(DMI),并在 22 周内每周采集两次牛奶样品。在协变量期间和第 4、8 和 16 周采集血液、瘤胃液、尿液和粪便样本。除体重外,所有变量的模型中均使用协变量对数据进行分析。还测试了线性、二次和三次对比。处理对 DMI、产奶量和牛奶成分浓度和产量没有影响;然而,以 DMI 表示的饲料效率和以 DMI 表示的 3.5%校正乳脂产量受到二次影响,与对照相比,NALM15 和 NALM30 的反应更大。乙酸比例线性增加,丙酸比例线性降低,随着 NALM 的补充。血尿素氮线性降低。总血浆必需氨基酸浓度受到二次影响,对照和 NALM45 的值高于其他处理。血浆 Met 浓度受到二次影响,NALM15 的水平较低,而 NALM45 的水平较高,与对照相比,Met 浓度增加。氮利用效率和表观全肠道养分消化率不受处理影响。每天每头补充 15 或 30g NALM 可最大程度地提高饲料效率,而不会影响泌乳早期和中期奶牛的氮代谢。

文献检索

告别复杂PubMed语法,用中文像聊天一样搜索,搜遍4000万医学文献。AI智能推荐,让科研检索更轻松。

立即免费搜索

文件翻译

保留排版,准确专业,支持PDF/Word/PPT等文件格式,支持 12+语言互译。

免费翻译文档

深度研究

AI帮你快速写综述,25分钟生成高质量综述,智能提取关键信息,辅助科研写作。

立即免费体验