首页> 外文期刊>The British Journal of Nutrition >Severe below-maintenance feed intake increases methane yield from enteric fermentation in cattle
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Severe below-maintenance feed intake increases methane yield from enteric fermentation in cattle

机译:严重的低于维护进料摄入量增加了牛的肠溶发酵甲烷产量

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The relationship between feed intake at production levels and enteric CH4 production in ruminants consuming forage-based diets is well described and considered to be strongly linear. Unlike temperate grazing systems, the intake of ruminants in rain-fed tropical systems is typically below maintenance requirements for part of the year (dry seasons). The relationship between CH4 production and feed intake in animals fed well below maintenance is unexplored, but changes in key digestive parameters in animals fed at low levels suggest that this relationship may be altered. We conducted a study using Boran yearling steers (n 12; live weight: 162 center dot 3 kg) in a 4 x 4 Latin square design to assess the effect of moderate to severe undernutrition on apparent digestibility, rumen turnover and enteric CH4 production of cattle consuming a tropical forage diet. We concluded that while production of CH4 decreased (1133 center dot 3-65 center dot 0 g CH4/d; P < 0 center dot 0001), over the range of feeding from about 1 center dot 0 to 0 center dot 4 maintenance energy requirement, both CH4 yield (29 center dot 0-31 center dot 2 g CH4/kg DM intake; P < 0 center dot 001) and CH4 conversion factor (Y-m 9 center dot 1-10 center dot 1 MJ CH4/MJ gross energy intake; P < 0 center dot 01) increased as intake fell and postulate that this may be attributable to changes in nutrient partitioning. We suggest there is a case for revising emission factors of ruminants where there are seasonal nutritional deficits and both environmental and financial benefits for improved feeding of animals under nutritional stress.
机译:在消耗饲料基于饲料的反刍动物的生产水平和肠溶CH4生产中的饲料摄入和肠溶CH4的关系得到良好的描述,并被认为是强烈线性的。与温带放牧系统不同,雨水热带系统中的反刍动物的摄入通常低于一年中的部分维护要求(干季节)。 CH4生产和饲养良好维护饲养的进饲摄取的关系是未探索的,但在低水平喂养的动物中的关键消化参数的变化表明这种关系可能会改变。我们在4 x 4拉丁方形设计中使用Boran Vironling Steers(N 12;活重:162中心点3千克)进行了一项研究,以评估中度至严重缺失性对表观消化率,瘤胃周转和肠道CH4生产的影响。消耗热带牧草饮食。我们得出结论,虽然CH4的生产减少(1133中心点3-65中心点0 G CH4 / D; P <0中心DOT 0001),在约1中心点0到0中心点4维护能量要求的饲养范围内,CH4屈服(29中心点0-31中心点2 G CH4 / kg DM摄入; P <0中心点001)和CH4转换因子(YM 9中心点1-10中心点1 MJ CH4 / MJ总能量摄入量; P <0中心点01)随着摄入落下并假设这可能是营养分配的变化可能是归因于营养分配的。我们建议有一种修改反刍动物排放因子的案例,其中有季节性营养赤字以及对营养压力饲养的改善动物的饲养。

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