首页> 外文期刊>Journal of Animal Science and Biotechnology >Effects of fumaric acid supplementation on methane production and rumen fermentation in goats fed diets varying in forage and concentrate particle size
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Effects of fumaric acid supplementation on methane production and rumen fermentation in goats fed diets varying in forage and concentrate particle size

机译:补充富马酸对饲喂日粮中草料和精料粒径不同的山羊甲烷生产和瘤胃发酵的影响

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In rumen fermentation, fumaric acid (FA) could competitively utilize hydrogen with methanogenesis to enhance propionate production and suppress methane emission, but both effects were diet-dependent. This study aimed to explore the effects of FA supplementation on methanogenesis and rumen fermentation in goats fed diets varying in forage and concentrate particle size. Four rumen-cannulated goats were used in a 4?×?4 Latin square design with a 2?×?2 factorial arrangement of treatments: low or high ratio of forage particle size: concentrate particle size (Fps:Cps), without or with FA supplementation (24?g/d). Fps:Cps was higher in the diet with chopped alfalfa hay plus ground corn than in that with ground alfalfa hay plus crushed corn. Both increasing dietary Fps:Cps and FA supplementation shifted ruminal volatile fatty acid (VFA) patterns toward more propionate and less acetate in goats. An interaction between dietary Fps:Cps and FA supplementation was observed for the ratio of acetate to propionate (A:P), which was more predominant when FA was supplemented in the low-Fps:Cps diet. Methane production was reduced by FA, and the reduction was larger in the low-Fps:Cps diet (31.72%) than in the high-Fps:Cps diet (17.91%). Fumaric acid decreased ruminal total VFA concentration and increased ruminal pH. No difference was found in ruminal DM degradation of concentrate or alfalfa hay by dietary Fps:Cps or FA. Goats presented a lower ruminal methanogen abundance with FA supplementation and a higher B. fibrisolvens abundance with high dietary Fps:Cps. Adjusting dietary Fps:Cps is an alternative dietary model for studying diet-dependent effects without changing dietary chemical composition. Fumaric acid supplementation in the low-Fps:Cps diet showed greater responses in methane mitigation and propionate increase.
机译:在瘤胃发酵中,富马酸(FA)可以竞争性地利用具有甲烷生成作用的氢来提高丙酸的产生并抑制甲烷的排放,但是这两种作用均取决于饮食。这项研究旨在探讨在饲喂饲草和精料粒径不同的山羊中,添加脂肪酸对山羊产甲烷和瘤胃发酵的影响。在4××4拉丁方形设计中使用4个瘤胃空心山羊,采用2××2因子分解处理:低或高饲草颗粒比:精矿颗粒大小(Fps:Cps),无或有脂肪酸补充(24微克/天)。 Fps:苜蓿干草切碎加玉米粉的日粮中的Cps高于苜蓿干草切碎加玉米粉的日粮中的Cps。日粮中增加的Fps:Cps和FA都使山羊的瘤胃挥发性脂肪酸(VFA)模式向丙酸含量更高和乙酸含量更低的方向转变。饮食中Fps:Cps和FA添加之间的相互作用被观察到,乙酸盐与丙酸酯之比(A:P)当在低Fps:Cps饮食中添加FA时,这一比例更为明显。 FA降低了甲烷产量,低Fps:Cps日粮中的甲烷减少量(31.72%)比高Fps:Cps日粮中的减少量(17.91%)更大。富马酸降低瘤胃总VFA浓度并提高瘤胃pH。饮食中Fps:Cps或FA对瘤胃DM浓缩物或苜蓿干草的降解没有发现差异。山羊在补充FA的情况下,瘤胃产甲烷菌的丰度较低,而在饮食中Fps:Cps较高的情况下,纤维状芽孢杆菌的丰度较高。调整饮食中的Fps:Cps是一种替代性饮食模型,用于研究饮食依赖性效应而无需改变饮食化学成分。在低Fps:Cps饮食中补充富马酸在缓解甲烷和增加丙酸方面显示出更大的反应。

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