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FORAGES AND PASTURES SYMPOSIUM: Improving efficiency of production in pasture- and range-based beef and dairy systems

机译:饲料和牧场研讨会:提高基于牧场和范围的牛肉和乳制品的生产效率

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Despite overall increased production in the last century, it is critical that grazing production systems focus on improving beef and dairy efficiency to meet current and future global food demands. For livestock producers, production efficiency is essential to maintain long-term profitability and sustainability. This continued viability of production systems using pasture-and range-based grazing systems requires more rapid adoption of innovative management practices and selection tools that increase profitability by optimizing grazing management and increasing reproductive performance. Understanding the genetic variation in cow herds will provide the ability to select cows that require less energy for maintenance, which can potentially reduce total energy utilization or energy required for production, consequently improving production efficiency and profitability. In the United States, pasture-and range-based grazing systems vary tremendously across various unique environments that differ in climate, topography, and forage production. This variation in environmental conditions contributes to the challenges of developing or targeting specific genetic components and grazing systems that lead to increased production efficiency. However, across these various environments and grazing management systems, grazable forage remains the least expensive nutrient source to maintain productivity of the cow herd. Beef and dairy cattle can capitalize on their ability to utilize these feed resources that are not usable for other production industries. Therefore, lower-cost alternatives to feeding harvested and stored feedstuffs have the opportunity to provide to livestock producers a sustainable and efficient forage production system. However, increasing production efficiency within a given production environment would vary according to genetic potential (i.e., growth and milk potential), how that genetic potential fits the respective production environment, and how the grazing management fits within those genetic parameters. Therefore, matching cow type or genetic potential to the production environment is and will be more important as cost of production increases.
机译:尽管总体上有所提高产量在上个世纪,这是至关重要的放牧生产系统注重提高肉牛和奶牛效率,以满足当前和未来全球粮食需求。对于畜牧生产者,生产效率是必不可少的,以保持长期的盈利能力和可持续发展。使用牧场和基于范围的放牧系统的生产系统的这种持续经营能力,需要更迅速地采用创新的管理方法和选择工具,增加盈利能力,通过优化放牧管理,提高繁殖性能。了解在牛畜群遗传变异将提供以选择需要更少的能量进行维护奶牛的能力,这可潜在地减少了生产所需,因此提高了生产效率和收益总能量利用或能量。在美国,牧场和范围为基础的放牧制度跨越,在气候,地形和饲料生产不同的各种独特的环境千差万别。这种变化的环境条件下有利于发展中国家或针对特定的遗传成分和放牧系统上,导致生产效率提高的挑战。然而,在这些不同的环境和放牧管理系统,grazable饲料仍然是最便宜的营养源,以维持牛群的生产力。肉牛,奶牛可以利用他们的利用是不是等生产行业使用这些饲料资源的能力。因此,成本较低的替代品喂养收获和储存饲料有机会提供给畜牧业生产可持续和高效的饲料生产体系。然而,在给定的生产环境中提高生产效率会根据遗传潜力(即,生长和牛奶电位),即遗传潜力如何适合各自的生产环境而变化,并且这些遗传参数内的放牧管理配合如何。因此,牛型或遗传潜力匹配到生产环境中和会像的产量增加成本更重要。

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