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精准饲喂:肉鸡种鸡采食量与群体均匀度的创新性管理。

Precision feeding: Innovative management of broiler breeder feed intake and flock uniformity.

机构信息

Department of Agricultural, Food and Nutritional Science, University of Alberta, Edmonton, AB, Canada T6G 2P5.

Xanantec Technologies Inc., 6135-80 Street NW, Edmonton, AB T6E 2W8.

出版信息

Poult Sci. 2017 Jul 1;96(7):2254-2263. doi: 10.3382/ps/pex013.

Abstract

Achieving high lifetime productivity with broiler breeder flocks is challenging because feed restriction intensity continues to increase due to selection for efficient, fast growing, and high yielding broilers. Flock uniformity is compromised by intense competition for limited feed. Equitable feed allocation and stable metabolic rates are likely to increase reproductive efficiency. A prototype precision feeding (PF) station was developed to sequentially feed birds according to their individual needs. If pullets were under target BW, the station provided small amounts of feed during short feeding bouts. The objectives of the current study were to determine whether a sequential PF system could control BW of individual group-housed pullets by matching real-time BW to BW targets, and to quantify fluctuations in metabolic rate using continuous or stepwise increases in target BW. Two treatments were used in a completely randomized design: CON, the Ross 708 target BW curve interpolated hourly; and STEP, the Ross 708 BW curve updated every 21 days. Twenty Ross 708 broiler breeder pullets were assigned to the treatments (n = 10 per treatment). All pullets were fed by one PF station in a single pen from 35 to 140 d of age. Feed intake and BW records were used to evaluate BW and BW variation to estimate maintenance ME requirements, and to evaluate feeding patterns. Differences were reported as significant where P < 0.05. Precision feeding allowed different feeding programs to be evaluated in the same pen. In both treatments, BW CV decreased to less than 2% by wk 20. Complex temporal differences in feed intake and BW reflected treatment-specific target growth trajectories. Metabolic rate in the STEP treatment increased 70 to 100% during wk in which rapid growth was permitted, compared with wk in which BW targets were held constant. Precision feeding shows promise both as a data acquisition system for poultry researchers and breeders, and as a means of increasing broiler breeder flock uniformity.

摘要

实现肉鸡种鸡群的高终身生产力具有挑战性,因为由于对高效、快速生长和高产量肉鸡的选择,饲料限制强度继续增加。由于对有限饲料的激烈竞争,鸡群的均匀性受到损害。公平的饲料分配和稳定的代谢率可能会提高繁殖效率。开发了一种原型精确饲喂(PF)站,根据鸡只的个体需求顺序给鸡只喂料。如果育成鸡的体重低于目标体重,该站会在短时间的喂料期间提供少量饲料。本研究的目的是确定顺序 PF 系统是否可以通过将实时体重与目标体重匹配来控制群体饲养育成鸡的体重,以及通过逐步增加目标体重来量化代谢率的波动。本研究采用完全随机设计,使用两种处理方法:CON,Ross 708 目标体重曲线每小时插值;STEP,Ross 708 体重曲线每 21 天更新一次。20 只 Ross 708 肉鸡种鸡被分配到处理组(每个处理组 10 只)。所有育成鸡从 35 日龄到 140 日龄在一个单栏的一个 PF 站中进行饲喂。使用饲料摄入量和体重记录来评估体重和体重变化,以估计维持 ME 需要量,并评估饲喂模式。当 P < 0.05 时,报告差异具有统计学意义。精确饲喂允许在同一个栏中评估不同的饲喂方案。在两种处理方法中,体重变异系数(CV)在第 20 周降至 2%以下。反映特定处理目标生长轨迹的复杂时间差异在采食量和体重上表现出来。在允许快速生长的周内,STEP 处理的代谢率比保持体重目标不变的周增加 70%至 100%。精确饲喂既为家禽研究人员和饲养者提供了一种数据采集系统,也为提高肉鸡种鸡群的均匀性提供了一种方法。

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