Moss Amy F, Chrystal Peter V, Cadogan David J, Wilkinson Stuart J, Crowley Tamsyn M, Choct Mingan
School of Environmental and Rural Science, University of New England, Armidale, 2350, NSW, Australia.
Baiada Poultry Pty Limited, Pendle Hill, 2145, NSW, Australia.
Anim Biosci. 2021 Mar;34(3):354-362. doi: 10.5713/ab.21.0034. Epub 2021 Feb 14.
Broiler chickens grow rapidly, and their nutrient requirements change daily. However, broilers are fed three to five diet phases, meaning nutrients are under or oversupplied throughout production. Increasing diet phases improves production efficiency as there is less time in the production cycle that nutrients are in under or over-supply. Nevertheless, the process of administering four or more diets is costly and often impractical. New technologies are now available to blend feed to match the daily nutrient requirements of broilers. Thus, the aim of this review is to evaluate previous studies measuring the impact of increasing feed phases on nutrient utilisation and growth performance, and review recent studies taking this concept to the extreme; precision nutrition - feeding a new diet for each day of the production cycle. This review will also discuss how modern precision feeding technologies have been utilised and the potential that new technologies may bring to the poultry industry. The development of a precision nutrition regime which targets daily requirements by blending dietary components on farm is anticipated to improve the efficiency of production, reduce production cost and therefore improve sustainability of the industry. There is also potential for precision feeding technology along with precision nutrition strategies to deliver a plethora of other management and economic benefits. These include increased fluidity to cope with sudden environmental or market changes, and the ability to alter diets on a farm by farm level in a large, integrated operation. Thus, the future possibilities and practical implications for such technologies to generate a paradigm shift in feed formulation within the poultry industry to meet the rising demand for animal protein is also discussed.
肉鸡生长迅速,其营养需求每天都在变化。然而,肉鸡在三到五个日粮阶段进行饲喂,这意味着在整个生产过程中营养物质存在供应不足或过量的情况。增加日粮阶段可提高生产效率,因为在生产周期中营养物质供应不足或过量的时间会减少。然而,投喂四种或更多日粮的过程成本高昂且通常不切实际。现在有新技术可用于调配饲料,以满足肉鸡的每日营养需求。因此,本综述的目的是评估以往测量增加饲料阶段对营养物质利用和生长性能影响的研究,并回顾最近将这一概念推向极致的研究;精准营养——在生产周期的每一天投喂新的日粮。本综述还将讨论现代精准投喂技术是如何被利用的,以及新技术可能给家禽业带来的潜力。通过在农场混合日粮成分来满足每日需求的精准营养方案的开发,有望提高生产效率、降低生产成本,从而提高该行业的可持续性。精准投喂技术与精准营养策略还有可能带来大量其他管理和经济效益。这些包括增强应对突发环境或市场变化的灵活性,以及在大型综合运营中在农场层面改变日粮的能力。因此,还将讨论此类技术在满足动物蛋白不断增长的需求方面在家禽业饲料配方中引发范式转变的未来可能性和实际意义。