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不同集约化水平的热带肉牛生产系统的可食用人类蛋白质贡献。

Human-edible protein contribution of tropical beef cattle production systems at different levels of intensification.

机构信息

Department of Animal Science, Sao Paulo State University, UNESP, Campus Jaboticabal, Via de Acesso Prof. Paulo Donato Castellane, Sao Paulo, Brazil.

Department of Animal Science, Sao Paulo State University, UNESP, Campus Jaboticabal, Via de Acesso Prof. Paulo Donato Castellane, Sao Paulo, Brazil.

出版信息

Animal. 2022 Aug;16 Suppl 3:100538. doi: 10.1016/j.animal.2022.100538. Epub 2022 May 27.

Abstract

Sustainable intensification of tropical grasslands has been identified by researchers and stakeholders as a solution to decrease greenhouse gas emissions and deforestation. However, there are concerns about food security and the role of livestock in feed-food competition between animals and humans involving land and other resources. We aimed to determine the net protein contribution (NPC), a feed-food competitiveness index, of tropical beef cattle raised on extensive systems or finished in pastures or conventional feedlots, under different levels of intensification. We modelled five scenarios, from cow-calf to slaughter, based on common beef cattle practices in Brazil, whose main production system is grazing. Scenario 1 represented the lowest level of intensification and the most extensive system. Scenario 2 represented a moderately extensive system. Scenarios 3, 4, and 5 represented different degrees and practices of intensification, with animals in cow-calf and stocker phases raised solely on well-managed permanent pastures. In Scenario 3, the animals were finished in a feedlot. In Scenarios 4 and 5, all animals in the stocker phase received a protein-energy supplement, but in Scenario 4, animals were finished in a permanent pasture with high-concentrate intake. In Scenario 5, animals were finished in a feedlot. The human-edible protein (heP) conversion efficiency (hePCE) was calculated as the ratio of heP produced (meat) to heP consumed as feed, and the NPC was the product of hePCE using the protein quality ratio, accounting for the digestible indispensable amino acid score content. An hePCE > 1 indicated that meat production did not compete with humans for food, and an NPC > 1 indicated that it contributed positively to meet human requirements. Meat production and heP intake consistently increased with intensification. The greatest hePCE values were from Scenarios 1 (9.2), 2 (2.2), and 3 (1.2), which were essentially pasture-fed systems, compared to Scenarios 4 and 5 (average of 1.0). The NPC varied from 24.1 (Scenario 1) to 2.6 (Scenario 5). The area required to produce 1 kg of carcass decreased from 147 to 45 m, and the slaughter age decreased from 36 to 21 months from the most extensive to intensive systems. Brazilian beef cattle production contributes positively to the protein requirements of humans without limiting human food supplies. The intensification of tropical grazing beef systems is a key strategy to save land and produce more meat without limiting food for humans, playing an important role in the food security agenda.

摘要

可持续地提高热带草原的生产力已被研究人员和利益相关者确定为减少温室气体排放和森林砍伐的解决方案。然而,人们对粮食安全以及牲畜在人与动物之间争夺土地和其他资源的饲料-食物竞争中的作用表示担忧。我们的目的是确定在不同集约化水平下,在粗放系统中饲养或在牧场或传统饲养场育肥的热带肉牛的净蛋白贡献(NPC),这是一种饲料-食物竞争力指数。我们根据巴西常见的肉牛养殖实践,建立了五个从育肥牛到屠宰的方案,其主要生产系统是放牧。方案 1 代表了最低的集约化水平和最粗放的系统。方案 2 代表了一个适度的粗放系统。方案 3、4 和 5 代表了不同程度和集约化实践,在牛犊和育肥阶段,动物仅在管理良好的永久性牧场上饲养。在方案 3 中,动物在饲养场育肥。在方案 4 和 5 中,育肥阶段的所有动物都接受了蛋白质-能量补充剂,但在方案 4 中,动物在高浓缩物摄入的永久性牧场上育肥。在方案 5 中,动物在饲养场育肥。人类可食用蛋白(heP)转化率(hePCE)被定义为生产的 heP(肉)与作为饲料消耗的 heP 之间的比值,而 NPC 是使用蛋白质质量比计算的 hePCE 的产物,考虑到可消化必需氨基酸评分含量。hePCE>1 表明肉类生产不会与人争夺食物,而 NPC>1 表明它对满足人类需求有积极贡献。随着集约化程度的提高,肉类生产和 heP 摄入量持续增加。最大的 hePCE 值来自方案 1(9.2)、方案 2(2.2)和方案 3(1.2),这些方案基本上是放牧系统,而方案 4 和方案 5 的值为平均 1.0。NPC 从方案 1(24.1)到方案 5(2.6)不等。从最粗放系统到集约系统,生产 1kg 胴体所需的面积从 147 平方米减少到 45 平方米,屠宰年龄从 36 个月减少到 21 个月。巴西牛肉生产对人类的蛋白质需求有积极贡献,而不会限制人类的食物供应。热带放牧肉牛系统的集约化是节约土地和生产更多肉类而不限制人类食物供应的关键策略,在粮食安全议程中发挥着重要作用。

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