Sustainable intensification of livestock systems using forage legumes in the Anthropocene

IF 2.7 3区 农林科学 Q1 AGRONOMY
Jose C. B. Dubeux Jr, David M. Jaramillo, Erick R. S. Santos, Liza Garcia, Luana M. D. Queiroz, Igor L. Bretas, Cleber H. L. de Souza, Kevin R. Trumpp
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引用次数: 0

Abstract

Sustainable intensification of livestock systems implies greater efficiency in resource utilization resulting in greater output of products and other ecosystem services per unit of resource input. Integrating forage legumes into livestock systems is a viable way to reduce the input of industrial N fertilizer, reducing the use of fossil fuels and helping to mitigate global warming, a major problem during the Anthropocene. Some forage legumes have greater concentrations of secondary compounds, such as condensed tannins, that might reduce the emission of greenhouse gases (GHG) from ruminant eructation and excreta. Furthermore, forage legumes might enhance cattle performance because of greater nutritive value, resulting in greater production per unit of GHG released. Shortening the production cycle and improving cattle reproductive efficiency could have a major impact on reducing the overall carbon footprint of the system. Grazing systems with more diversified plant species are typically more resistant and resilient, adapting to current climate changes during the Anthropocene. Novel technologies might accelerate the development of future grazing systems using forage legumes as a key component. Breeding efforts for the next-generation legumes must focus on adaptation and potential use for mitigation of negative environmental impacts. There are examples of successful integration of forage legumes into livestock systems in different regions of the world, with a major reduction in off-farm inputs and maintaining the system productive. These successful examples could be used to increase adoption and improve the efficiency of current livestock systems.

在 "人类世 "利用饲用豆科植物可持续地强化畜牧系统
牲畜系统的可持续集约化意味着提高资源利用效率,从而提高每单位资源投入的产品产出和其他生态系统服务。将草料豆科植物整合到牲畜系统中是减少工业氮肥投入、减少化石燃料使用和帮助缓解全球变暖的可行方法。全球变暖是人类世的一个主要问题。一些草料豆科植物含有较高浓度的二次化合物,如缩合单宁,这可能会减少反刍动物分泌物和排泄物产生的温室气体(GHG)的排放。此外,草料豆科植物因其更大的营养价值而可能提高牛的生产性能,从而提高单位温室气体排放的产量。缩短生产周期和提高牛的繁殖效率可能对减少该系统的总体碳足迹产生重大影响。拥有更多样化植物物种的放牧系统通常更具抵抗力和复原力,能够适应人类世期间当前的气候变化。新技术可能会加速以豆科牧草为关键组成部分的未来放牧系统的发展。下一代豆科植物的育种工作必须侧重于适应和潜在的利用,以减轻对环境的负面影响。在世界不同地区,有一些将草料豆科作物成功地纳入牲畜系统的例子,大大减少了非农投入,并保持了该系统的生产力。这些成功的例子可用于提高现有牲畜系统的采用率和效率。
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来源期刊
Grass and Forage Science
Grass and Forage Science 农林科学-农艺学
CiteScore
5.10
自引率
8.30%
发文量
37
审稿时长
12 months
期刊介绍: Grass and Forage Science is a major English language journal that publishes the results of research and development in all aspects of grass and forage production, management and utilization; reviews of the state of knowledge on relevant topics; and book reviews. Authors are also invited to submit papers on non-agricultural aspects of grassland management such as recreational and amenity use and the environmental implications of all grassland systems. The Journal considers papers from all climatic zones.
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