Effect of beef heifer development systems utilizing corn residue and late summer planted cover crops on growth, reproductive performance, and economics.

IF 1.3 Q3 AGRICULTURE, DAIRY & ANIMAL SCIENCE
Translational Animal Science Pub Date : 2024-07-24 eCollection Date: 2024-01-01 DOI:10.1093/tas/txae111
Hannah F Speer, Robert A Cushman, Harvey C Freetly, Jay Parsons, Jessica Windh, Mary E Drewnoski
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引用次数: 0

Abstract

The objective of this study was to evaluate growth and reproductive performance of heifers developed using 3 different winter systems in the midwestern U.S. Spring-born heifers (n = 1,156; 214 d of age; SD ± 17 d) were used in a 3-yr study to evaluate performance in winter development systems, which utilized cover crop (CC) and corn residue grazing. Heifers were assigned to 1 of 3 treatments: grazing corn residue with 0.77 kg/d dried distillers grains (CD) or 1.69 kg/d wheat midds (CW) supplementation followed by a grower ration in the drylot, or grazing late summer planted oat-brassica CC followed by corn residue grazing with 0.35 kg/d dried distillers grains supplementation (CC). Supplementation during the corn residue phase was targeted to result in a common body weight (BW) (276 kg; ~45% of mature BW) by the end of the winter development period. Grazing of corn residue (CD and CW) and CC began in early November. After 63 d, heifers assigned to CC were moved to corn residue; on day 77 heifers assigned to CD and CW began receiving a grower ration in the drylot. In mid-February (day 98), heifers were comingled and managed in a single group. Breeding season began in June and lasted for 29 d. The ADG of heifers assigned to CC when grazing CC (days 1 to 63) was greater (0.76 kg/d; P < 0.01) than those assigned to CD or CW (0.58 kg/d and 0.49 kg/d, respectively). Gain during the last 35 d of the winter period for heifers assigned to CC (0.36 kg/d) was less (P < 0.01) than those assigned to CW (0.49 kg/d) but not different from CD heifers (0.41 kg/d). Overall (days 1 to 98), winter ADG was greater (P < 0.05) for heifers assigned to CC (0.62 kg/d) than CD (0.53 kg/d) or CW (0.50 kg/d), which did not differ (P = 0.42). Percent of mature BW in May (27 d pre-breeding) was greater (P < 0.01) for heifers assigned to CC (52%) than for those on CD and CW (50%), which did not differ (P = 0.64). Pregnancy rates were affected by treatment (P < 0.03), with heifers assigned to CC (76%) being greater than CW (64%) and CD heifers being intermediate (70%). When accounting for the differences in cost and the value of open and bred heifers, the economic return tended to differ (P = 0.07) among treatments, with CC and CW not differing (P ≥ 0.20) from CD but return for CC being $73 greater than CW (P = 0.02). Utilizing oat-brassica CCs early in the winter followed by a slower rate of gain while grazing corn residue with distillers supplementation appears to be as effective for developing beef heifers in the midwestern U.S. as supplementing distillers grains.

利用玉米秸秆和夏末种植的覆盖作物的肉用小母牛生长发育系统对生长、繁殖性能和经济效益的影响。
这项研究的目的是评估美国中西部地区使用 3 种不同的冬季培育系统培育的小母牛的生长和繁殖性能。在一项为期 3 年的研究中,使用春季出生的小母牛(n = 1,156 头;214 d 龄;SD ± 17 d)来评估冬季培育系统的性能,该系统使用覆盖作物(CC)和玉米残茬放牧。小母牛被分配到 3 个处理中的 1 个:放牧玉米残茬,同时补充 0.77 kg/d 的干酒糟(CD)或 1.69 kg/d 的小麦中子(CW),然后在干牧场饲喂种植者日粮;或放牧夏末种植的燕麦-巴西粟(CC),然后放牧玉米残茬,同时补充 0.35 kg/d 的干酒糟(CC)。玉米秸秆阶段的补饲目标是在冬季发育期结束时达到普通体重(276 千克;约为成熟体重的 45%)。11 月初开始放牧玉米残茬(CD 和 CW)和 CC。63 天后,分配到 CC 的小母牛被转移到玉米秸秆上;第 77 天,分配到 CD 和 CW 的小母牛开始在干牧场接受种植者日粮。2 月中旬(第 98 天),小母牛被集中到一个组进行管理。分配到CC组的母牛在放牧CC时(第1天至第63天)的ADG更大(0.76 kg/d;P P P P = 0.42)。5月份(配种前27天)的成熟体重百分比更高(P P = 0.64)。妊娠率受不同处理的影响(P P = 0.07),CC 和 CW 与 CD 无差异(P ≥ 0.20),但 CC 的收益比 CW 高 73 美元(P = 0.02)。在美国中西部地区,在冬季早期使用燕麦-黑麦CC,然后放慢增重速度,同时放牧玉米秸秆并补充蒸馏谷物,似乎与补充蒸馏谷物一样有效。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Translational Animal Science
Translational Animal Science Veterinary-Veterinary (all)
CiteScore
2.80
自引率
15.40%
发文量
149
审稿时长
8 weeks
期刊介绍: Translational Animal Science (TAS) is the first open access-open review animal science journal, encompassing a broad scope of research topics in animal science. TAS focuses on translating basic science to innovation, and validation of these innovations by various segments of the allied animal industry. Readers of TAS will typically represent education, industry, and government, including research, teaching, administration, extension, management, quality assurance, product development, and technical services. Those interested in TAS typically include animal breeders, economists, embryologists, engineers, food scientists, geneticists, microbiologists, nutritionists, veterinarians, physiologists, processors, public health professionals, and others with an interest in animal production and applied aspects of animal sciences.
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