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Dietary manipulation: a sustainable way to mitigate methane emissions from ruminants

机译:饮食控制:减轻反刍动物甲烷排放的可持续方法

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Methane emission from the enteric fermentation of ruminant livestock is a main source of greenhouse gas (GHG) emission and a major concern for global warming. Methane emission is also associated with dietary energy lose; hence, reduce feed efficiency. Due to the negative environmental impacts, methane mitigation has come forward in last few decades. To date numerous efforts were made in order to reduce methane emission from ruminants. No table mitigation approaches are rumen manipulation, alteration of rumen fermentation, modification of rumen microbial biodiversity by different means and rarely by animal manipulations. However, a comprehensive exploration for a sustainable methane mitigation approach is still lacking. Dietary modification is directly linked to changes in the rumen fermentation pattern and types of end products. Studies showed that changing fermentation pattern is one of the most effective ways of methane abatement. Desirable dietary changes provide two fold benefits i.e. improve production and reduce GHG emissions. Therefore, the aim of this review is to discuss biology of methane emission from ruminants and its mitigation through dietary manipulation.
机译:反刍动物肠道发酵产生的甲烷是温室气体(GHG)排放的主要来源,也是全球变暖的主要问题。甲烷排放也与饮食能量损失有关。因此,降低饲料效率。由于不利的环境影响,在过去的几十年中,甲烷的减排已经取得了进展。迄今为止,为了减少反刍动物的甲烷排放做出了许多努力。没有餐桌上的缓解方法是瘤胃处理,瘤胃发酵的改变,瘤胃微生物多样性的改变(通过不同的方式),而很少通过动物来进行。但是,仍然缺乏对可持续的甲烷减缓方法的全面探索。饮食调节与瘤胃发酵模式和最终产品类型的变化直接相关。研究表明,改变发酵模式是减少甲烷排放的最有效方法之一。理想的饮食变化具有两方面的好处,即提高产量并减少温室气体排放。因此,本综述的目的是讨论反刍动物甲烷排放的生物学及其通过饮食控制缓解甲烷的方法。

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