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通过营养同步性提高草料喂养反刍动物的生产性能和效率的机会。

Opportunities to enhance performance and efficiency through nutrient synchrony in forage-fed ruminants.

作者信息

Hersom M J

机构信息

Department of Animal Sciences, University of Florida, Gainesville, Florida 32611-0910, USA.

出版信息

J Anim Sci. 2008 Apr;86(14 Suppl):E306-17. doi: 10.2527/jas.2007-0463. Epub 2007 Oct 16.

Abstract

Increasingly, the need for optimized nutrient utilization to address increasing production costs and environmental considerations will necessitate opportunities to improve nutrient synchrony. Historically, attempts at synchronizing nutrient supply in ruminants, particularly in cattle consuming high-forage diets, have met with variable results. The success of nutrient synchrony has been measured primarily in ruminants by increases in microbial yield, microbial efficiency, nutrient utilization, and to a lesser extent, animal performance. Successful synchrony of nutrient supply to cattle consuming forage-based diets faces several challenges. From a feed supply aspect, the challenges to nutrient synchrony include accurately measuring forage intake and consumed forage chemical composition. The issue of forage intake and chemical composition is perhaps the most daunting for producers grazing cattle. Indeed, for forage-fed cattle, the availability of forage protein and carbohydrate can be the most asynchronous aspect of the diet. In most grazed forages, digestion rates of the carbohydrate fractions are much slower than that of the corresponding protein fractions. Additionally, the forage-supplement interaction exerts a large impact on the synchrony of nutrients. The supplemental feedstuffs compose the component of the nutrient synchrony scenario that is most often manipulated to influence synchrony. The supplement type (e.g., starch vs. fiber, dry vs. liquid), nutrient profile, and degradation rates are often prime considerations associated with nutrient synchrony on high forage diets. Other considerations that warrant attention include temporal intake patterns of the forage and supplement, increased use and types of coproduct supplements, and an assessment of the success of nutrient synchrony. Synchronization of nutrient utilization by forage-fed ruminants has and will continue to encounter challenges for successful outcomes. Ultimately it is the improvement in animal performance and optimization of nutrient utilization efficiency that dictates whether nutrient synchrony is a successful strategy.

摘要

为应对不断增加的生产成本和环境因素,优化养分利用的需求日益增长,这将需要有机会改善养分同步性。从历史上看,在反刍动物,尤其是采食高粗饲料日粮的牛中,同步养分供应的尝试取得了不同的结果。在反刍动物中,养分同步性的成功主要通过微生物产量、微生物效率、养分利用率的提高来衡量,在较小程度上也通过动物生产性能来衡量。对于采食以粗饲料为基础日粮的牛,成功实现养分同步面临几个挑战。从饲料供应方面来看,养分同步面临的挑战包括准确测量粗饲料摄入量和所采食粗饲料的化学成分。粗饲料摄入量和化学成分问题可能是放牧牛的生产者面临的最艰巨的问题。事实上,对于采食粗饲料的牛来说,粗饲料蛋白质和碳水化合物的可利用性可能是日粮中最不同步的方面。在大多数放牧粗饲料中,碳水化合物部分的消化速度比相应蛋白质部分的消化速度慢得多。此外,粗饲料与补充料的相互作用对养分同步性有很大影响。补充饲料构成了养分同步方案中最常被操纵以影响同步性的组成部分。补充料类型(例如,淀粉与纤维、干料与液体料)、养分组成和降解率通常是与高粗饲料日粮养分同步相关的主要考虑因素。其他值得关注的考虑因素包括粗饲料和补充料的采食时间模式、副产品补充料的更多使用和类型,以及对养分同步成功与否的评估。采食粗饲料的反刍动物实现养分利用同步过去一直面临挑战,未来也将继续面临挑战,以取得成功的结果。最终,动物生产性能的提高和养分利用效率的优化决定了养分同步是否是一项成功的策略。

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