首页> 美国卫生研究院文献>Animals : an Open Access Journal from MDPI >The Reduction of Methane Production in the In Vitro Ruminal Fermentation of Different Substrates is Linked with the Chemical Composition of the Essential Oil
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The Reduction of Methane Production in the In Vitro Ruminal Fermentation of Different Substrates is Linked with the Chemical Composition of the Essential Oil

机译:不同底物体外瘤胃发酵中甲烷产量的减少与精油的化学成分有关

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摘要

There is growing concern about how animal-derived foods are produced. Methane production in ruminants has received much attention in relation to its contribution to greenhouse gases and its effect on global warming. Another aspect of livestock production that is questioned by consumers is related to in-feed antibiotics added to improve feed efficiency, and due to health safety issues, their use has been banned or under revision in some parts of the world. Hence, there is the need to find new solutions to mitigate methane production in the rumen in a way that is considered safe and environmental-friendly by consumers and feasible, and without a negative impact on the farmers. Among the alternatives, the use of essential oils to modify rumen fermentation has attracted attention. This paper explores the effectiveness of essential oils obtained from two plants, and , to reduce methane production during the in vitro fermentation of substrates that are representative of different livestock production systems. The main conclusion to which we arrived is that the extent of the reduction in methane production depends on the interaction between the fermentation conditions that are generated by different substrates and the chemical profile of the essential oil, especially regarding its proportion of oxygenated compounds.
机译:人们越来越关注如何生产动物源性食品。反刍动物中的甲烷生产对温室气体的贡献及其对全球变暖的影响已引起广泛关注。消费者质疑的畜牧生产的另一个方面与为提高饲料效率而添加的饲料中抗生素有关,由于健康安全问题,世界某些地区禁止使用或修订其使用。因此,有必要寻找一种新的解决方案,以一种被消费者认为是安全和环境友好的,可行的,并且不会对农民造成负面影响的方式来减少瘤胃中甲烷的产生。在替代方案中,使用精油改变瘤胃发酵引起了人们的注意。本文探讨了从两种植物中提取的精油的有效性,以及在代表不同牲畜生产系统的底物的体外发酵过程中减少甲烷生成的有效性。我们得出的主要结论是,甲烷产量减少的程度取决于不同底物产生的发酵条件与精油的化学性质之间的相互作用,尤其是其含氧化合物的比例。

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