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商业奶牛场全混合日粮的准确性和精确性。

Accuracy and precision of total mixed rations fed on commercial dairy farms.

作者信息

Sova A D, LeBlanc S J, McBride B W, DeVries T J

机构信息

Department of Animal and Poultry Science, University of Guelph, Kemptville Campus, 830 Prescott Street, Kemptville, ON, K0G 1J0, Canada.

Department of Population Medicine, and.

出版信息

J Dairy Sci. 2014;97(1):562-71. doi: 10.3168/jds.2013-6951. Epub 2013 Nov 7.

Abstract

Despite the significant time and effort spent formulating total mixed rations (TMR), it is evident that the ration delivered by the producer and that consumed by the cow may not accurately reflect that originally formulated. The objectives of this study were to (1) determine how TMR fed agrees with or differs from TMR formulation (accuracy), (2) determine daily variability in physical and chemical characteristics of TMR delivered (precision), and (3) investigate the relationship between daily variability in ration characteristics and group-average measures of productivity [dry matter intake (DMI), milk yield, milk components, efficiency, and feed sorting] on commercial dairy farms. Twenty-two commercial freestall herds were visited for 7 consecutive days in both summer and winter months. Fresh and refusal feed samples were collected daily to assess particle size distribution, dry matter, and chemical composition. Milk test data, including yield, fat, and protein were collected from a coinciding Dairy Herd Improvement test. Multivariable mixed-effect regression models were used to analyze associations between productivity measures and daily ration variability, measured as coefficient of variation (CV) over 7d. The average TMR [crude protein=16.5%, net energy for lactation (NEL) = 1.7 Mcal/kg, nonfiber carbohydrates = 41.3%, total digestible nutrients = 73.3%, neutral detergent fiber=31.3%, acid detergent fiber=20.5%, Ca = 0.92%, p=0.42%, Mg = 0.35%, K = 1.45%, Na = 0.41%] delivered exceeded TMR formulation for NEL (+0.05 Mcal/kg), nonfiber carbohydrates (+1.2%), acid detergent fiber (+0.7%), Ca (+0.08%), P (+0.02%), Mg (+0.02%), and K (+0.04%) and underfed crude protein (-0.4%), neutral detergent fiber (-0.6%), and Na (-0.1%). Dietary measures with high day-to-day CV were average feed refusal rate (CV = 74%), percent long particles (CV = 16%), percent medium particles (CV = 7.7%), percent short particles (CV = 6.1%), percent fine particles (CV = 13%), Ca (CV = 7.7%), Mg (CV = 5.2%), and Na (CV = 10%). Every 0.5-percentage-point decrease in daily NEL (CV = 1.2 ± 0.4%) was associated with 3.2 kg/d greater milk yield, 1.0 kg/d greater DMI, and 4.3% greater efficiency of production. Every 5-percentage-point decrease in variability in percent long particles (average percent long = 19.8 ± 6.5; CV = 16.1 ± 6.9%) in the TMR was associated with 1.2 kg/d greater milk yield and a 2.6% increase in efficiency of milk production. These results demonstrate the importance of ensuring TMR consistency to maximize DMI, production, and efficiency.

摘要

尽管在配制全混合日粮(TMR)时花费了大量时间和精力,但很明显,生产者提供的日粮与奶牛采食的日粮可能无法准确反映最初配制的日粮。本研究的目的是:(1)确定饲喂的TMR与TMR配方的符合程度或差异(准确性);(2)确定所提供的TMR的物理和化学特性的每日变异性(精确性);(3)研究商业奶牛场日粮特性的每日变异性与群体平均生产性能指标[干物质采食量(DMI)、产奶量、乳成分、效率和饲料分选]之间的关系。在夏季和冬季月份,连续7天走访了22个商业散栏牛群。每天采集新鲜和剩余饲料样本,以评估粒度分布、干物质和化学成分。从同期的奶牛群改良测试中收集产奶量、脂肪和蛋白质等牛奶检测数据。使用多变量混合效应回归模型分析生产性能指标与日粮每日变异性之间的关联,日粮每日变异性以7天内的变异系数(CV)衡量。所提供的平均TMR[粗蛋白=16.5%,泌乳净能(NEL)=1.7兆卡/千克,非纤维碳水化合物=41.3%,总可消化养分=73.3%,中性洗涤纤维=31.3%,酸性洗涤纤维=20.5%,钙=0.92%,磷=0.42%,镁=0.35%,钾=1.45%,钠=0.41%]在NEL(+0.05兆卡/千克)、非纤维碳水化合物(+1.2%)、酸性洗涤纤维(+0.7%)、钙(+0.08%)、磷(+0.02%)、镁(+0.02%)和钾(+0.04%)方面超过了TMR配方,而粗蛋白(-0.4%)、中性洗涤纤维(-0.6%)和钠(-0.1%)供应不足。日粮措施中每日CV较高的有平均饲料剩余率(CV = 74%)、长颗粒百分比(CV = 16%)、中颗粒百分比(CV = 7.7%)、短颗粒百分比(CV = 6.1%)、细颗粒百分比(CV = 13%)、钙(CV = 7.7%)、镁(CV = 5.2%)和钠(CV = 10%)。日粮中每日NEL每降低0.5个百分点(CV = 1.2±0.4%),产奶量增加3.2千克/天,DMI增加1.0千克/天,生产效率提高4.

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