Performance of dairy cows offered silages produced from grass swards harvested on either three or five occasions during the growing season.

IF 3.7 1区 农林科学 Q1 AGRICULTURE, DAIRY & ANIMAL SCIENCE Journal of Dairy Science Pub Date : 2024-07-19 DOI:10.3168/jds.2024-24931
A Craig, A W Gordon, A White, C P Ferris
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Abstract

The nutritive value of grass silage can be improved by harvesting herbage at a less mature growth stage, which in practice usually involves more frequent harvests. This study examined the performance of dairy cows offered grass silages produced from perennial ryegrass (Lolium perenne) based swards harvested at 2 different frequencies during the growing season (3-harvest (3H) vs. 5-harvest (5H)). Thirty-four mid-lactation (av. 147 d in milk) dairy cows (30 multiparous, 4 primiparous) were offered either 3H or 5H silages in a continuous design (21 wk) experiment. Within each treatment cows were offered silage from each harvest (in harvest number order) for a pre-determined number of days in proportion to herbage DM yield at each harvest. Silages were offered ad libitum while a common concentrate was offered to all cows at 12.0 kg per cow/d over the first 15 wk of the study, 8.0 kg per cow/d during wk 16 -19 and 6.0 kg cow/d during wk 20 - 21. Total yield of herbage harvested over the season from within 3H and 5H were 12.6 and 11.2 t DM/ha, respectively. Across all harvests the mean ME and CP concentration of silages were 10.9 MJ/kg DM and 131 g/kg DM for 3H, and 11.5 MJ/kg DM and 152 g/kg DM for 5H. Silage DMI was greater for cows offered 5H silages compared with 3H silages (14.1 vs. 11.7 kg/d, respectively). Cows offered 5H silages had a greater daily milk yield (33.5 vs. 31.9 kg) and ECM yield (37.4 vs. 35.6 kg) compared with cows offered 3H silages. Treatment had no effect on milk fat or protein concentration. Cows offered 5H silages produced milk with greater concentrations of CLA and n-3 fatty acids. Treatment had no effect on mean BW or BCS, or on efficiency metrics such as milk yield or ECM yield per kg of DMI. Molar proportions of VFA in ruminal fluid differed between the treatments, with cows offered 3H silages having higher proportion of total butyrate (15.9 vs. 14.4% of total VFA) and lower total valerate (3.2 vs. 3.7% of total VFA) compared with those offered 5H. The acetate: propionate and acetate plus butyrate: propionate ratios were unaffected by treatment. In conclusion, increasing herbage harvesting frequency from 3 to 5 times per year improved the nutritional value of the resulting silages, and this led to higher silage DMI, milk yield and ECM yield. However, overall production efficiency (ECM/DMI) was unaffected by treatment.

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奶牛在生长季节三次或五次采收草场生产的青贮饲料中的表现。
在生长不那么成熟的阶段收割牧草可以提高青贮草的营养价值,而在实践中通常需要更频繁地收割。本研究考察了奶牛在生长季节以两种不同频率(3-收获期(3H)与5-收获期(5H))收割多年生黑麦草(Lolium perenne)牧草生产的青贮饲料中的表现。在一项连续设计(21 周)实验中,34 头泌乳中期(平均产奶 147 天)的奶牛(30 头多胎奶牛,4 头初产奶牛)分别食用 3H 或 5H 青贮饲料。在每种处理中,按照每次收获时草料 DM 产量的比例,向奶牛提供每次收获的青贮饲料(按收获编号顺序),天数预先确定。青贮由奶牛自由采食,同时向所有奶牛提供普通精料,在研究的前 15 周,每头奶牛每天 12.0 千克;在第 16 - 19 周,每头奶牛每天 8.0 千克;在第 20 - 21 周,每头奶牛每天 6.0 千克。整个季节从3H和5H范围内收割的草料总产量分别为12.6吨DM/公顷和11.2吨DM/公顷。在所有收获中,3H青贮饲料的平均ME和CP浓度分别为10.9兆焦/千克DM和131克/千克DM,5H青贮饲料的平均ME和CP浓度分别为11.5兆焦/千克DM和152克/千克DM。与3H青贮相比,5H青贮的奶牛青贮DMI更高(分别为14.1 kg/d和11.7 kg/d)。与饲喂 3H 青贮饲料的奶牛相比,饲喂 5H 青贮饲料的奶牛日产奶量(33.5 千克对 31.9 千克)和 ECM 产量(37.4 千克对 35.6 千克)更高。处理方法对乳脂或蛋白质浓度没有影响。提供 5H 青贮饲料的奶牛所产牛奶中的 CLA 和 n-3 脂肪酸含量更高。青贮饲料对平均体重或体重指数(BCS)以及每公斤 DMI 的产奶量或 ECM 产量等效率指标没有影响。与提供 5H 青贮饲料的奶牛相比,提供 3H 青贮饲料的奶牛瘤胃液中 VFA 的摩尔比例较高(占 VFA 总量的 15.9% 对 14.4%),而提供 5H 青贮饲料的奶牛 VFA 总量较低(占 VFA 总量的 3.2% 对 3.7%)。乙酸盐:丙酸盐和乙酸盐加丁酸盐:丙酸盐的比率不受处理的影响。总之,将牧草收割次数从每年 3 次增加到 5 次可提高青贮饲料的营养价值,从而提高青贮饲料的DMI、产奶量和ECM产量。然而,总体生产效率(ECM/DMI)并没有受到处理方法的影响。
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来源期刊
Journal of Dairy Science
Journal of Dairy Science 农林科学-奶制品与动物科学
CiteScore
7.90
自引率
17.10%
发文量
784
审稿时长
4.2 months
期刊介绍: The official journal of the American Dairy Science Association®, Journal of Dairy Science® (JDS) is the leading peer-reviewed general dairy research journal in the world. JDS readers represent education, industry, and government agencies in more than 70 countries with interests in biochemistry, breeding, economics, engineering, environment, food science, genetics, microbiology, nutrition, pathology, physiology, processing, public health, quality assurance, and sanitation.
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