饲喂以副产品为基础的浓缩物代替人类食用饲料成分可提高高产荷斯坦奶牛的净食物产量和生产性能。

Nima Naderi, Gholam Reza Ghorbani, Hamid Erfani, Luiz Felipe Ferraretto
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引用次数: 1

摘要

研究了饲喂大量副产物(BP)替代人食饲料(HE)对高产荷斯坦奶牛营养摄入量、咀嚼活性、瘤胃发酵、生产性能、人食饲料转化效率(HeFCE)和净食物产量(NFP)的影响。12头产荷斯坦奶牛(BW = 673±44,DIM = 112±8 d);48±2.25 kg/d奶;采用3 × 3拉丁方设计,周期28 d,平均±SE)。每期21 d为适应期,7 d为数据收集期。处理日粮为(DM):(1)副产物(BP26)含量为26%的精料;控制);(2)含60%副产物的浓缩物(BP60);(3)含有95%副产物(BP95)的浓缩物。饲粮中分别添加苜蓿干草(饲粮DM的20%)和玉米青贮(饲粮DM的20%)。饲粮中性洗涤纤维(NDF)、非纤维碳水化合物(NFC)、淀粉和粗脂肪(EE)浓度分别为32.1、41.0、26.14和3.4% (BP 26);35.3、36.0、22.05、4.7% (BP60);分别为38.2、32.0、17.96和6.1% (BP95)。干物质(22.07 kg/d)和NEL (35.16 Mcal/d)采食量在处理间无显著差异。然而,随着BP原料逐渐取代HE饲料原料,粗脂肪和NDF采食量增加,淀粉采食量呈线性下降。进食时间不受饮食处理的影响,但反刍和总咀嚼时间倾向于随着BP量的增加而增加。饲粮中BP成分比例增加,瘤胃中丙酸盐、异丁酸盐、异戊酸盐和戊酸盐浓度呈线性降低,乙酸浓度和乙酸丙酸比呈线性升高。用BP代替HE对产奶量没有影响。3.5% FCM处理的产量(BP26、BP60和BP95分别为39.12、40.14和41.33 kg/d)和脂肪含量(BP26、BP60和BP95分别为2.95、2.99和3.13%)线性增加。用BP原料替代HE饲料原料增加了不饱和脂肪酸、单不饱和脂肪酸、多不饱和脂肪酸、硬脂酸、油酸和预成型脂肪酸,减少了饱和脂肪酸、棕榈酸、新生脂肪酸和混合脂肪酸。用BP饲料原料替代HE提高了粗蛋白质(BP26、BP60和BP95分别为1.06、1.66和4.14 kg/kg可食性)和能量(BP26、BP60和BP95分别为2.27、3.62和9.22 MJ/ kg可食性)的人体食用效率(HeFCE),以及粗蛋白质(BP26、BP60和BP95分别为0.064、0.52和1.00 kg/d)和能量(BP26、BP60和BP95分别为62.8、83.0和104.7 MJ/d)的净食物产量(NFP)。饲用副产物精料代替人食用饲料成分,可提高高产荷斯坦奶牛的人食用饲料转化效率(HeFCE)和净饲料产量(NFP),提高生产性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Feeding Byproduct-Based Concentrates Instead of Human-Edible Feed Ingredients Increases Net Food Production and Improves Performance of High-Producing Holstein Cows.

The effect of feeding greater amounts of byproducts (BP) as a replacement for human-edible (HE) feed ingredients on nutrient intake, chewing activity, rumen fermentation, production performance, human-edible feed conversion efficiency (HeFCE) and net food production (NFP) of high-producing Holstein cows was evaluated. Twelve multiparous Holstein cows (BW = 673 ± 44, DIM = 112 ± 8 d; 48 ± 2.25 kg/d of milk; mean ± SE) were used in a replicated 3 × 3 Latin square design with 28-d periods. Each period consisted of 21 d of adaptation followed by 7 d of data collection. Treatments diets were (DM basis): (1) concentrate containing 26% byproducts (BP26; control); (2) concentrate containing 60% byproducts (BP60); and (3) concentrate containing 95% byproducts (BP95). Alfalfa hay (20% dietary DM) and corn silage (20% dietary DM) were included in all diets. Dietary concentrations of neutral detergent fiber (NDF), non-fiber carbohydrates (NFC), starch and ether extract (EE) were 32.1, 41.0, 26.14 and 3.4% (BP 26); 35.3, 36.0, 22.05 and 4.7% (BP60); and 38.2, 32.0, 17.96 and 6.1% (BP95), respectively (DM basis). Dry matter (22.07 kg/d) and NEL (35.16 Mcal/d) intakes did not differ among treatments. However, ether extract and NDF intakes increased, whereas starch intake decreased linearly as BP ingredients increasingly replaced HE feed ingredients. Eating time was not affected by dietary treatment, but ruminating and total chewing time tended to increase with increasing amounts of BP. Replacing HE with BP ingredients did not affect rumen pH. An increased proportion of BP ingredients in the diet linearly decreased propionate, isobutyrate, isovalerate and valerate concentrations in the rumen and increased acetate concentration and the acetate to propionate ratio. Replacing HE with BP ingredients did not affect milk yield. The yield of 3.5% FCM (39.12, 40.14 and 41.33 kg/d for BP26, BP60 and BP95, respectively) and fat content (2.95, 2.99 and 3.13 % for BP26, BP60 and BP95, respectively) linearly increased. Substituting BP ingredients for HE feed ingredients increased unsaturated fatty acids, monounsaturated fatty acids, polyunsaturated fatty acids, stearic acid, oleic acid and preformed fatty acids but decreased saturated fatty acids, palmitic acid, de novo and mixed fatty acids. Replacing HE with BP feed ingredients increased human-edible efficiency (HeFCE) for crude protein (1.06, 1.66 and 4.14 kg/kg edible for BP26, BP60 and BP95, respectively) and for energy (2.27, 3.62 and 9.22 MJ/MJ edible for BP26, BP60 and BP95, respectively) and also net food production (NFP) for crude protein (0.064, 0.52, and 1.00 kg/d for BP26, BP60, and BP95, respectively) and energy (62.8, 83.0 and 104.7 MJ/d for BP26, BP60 and BP95, respectively). Feeding byproduct-based concentrates instead of human-edible feed ingredients increase human-edible feed conversion efficiency (HeFCE), net food production (NFP) and improved the performance of high-producing Holstein cows.

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