Metabolomic Profiling, Volatile Fatty Acids, and Greenhouse Gas Emissions of Beef Cattle Infused with Different Essential Oil Blends

Ruminants Pub Date : 2024-07-23 DOI:10.3390/ruminants4030024
Deborah O. Okedoyin, Joel O. Alabi, Chika C. Anotaenwere, Michael Wuaku, DeAndrea Gray, Oludotun O. Adelusi, K. Ike, P. Dele, O. Oderinwale, M. Idowu, I. Ogunade, U. Anele
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Abstract

Essential oils are natural feed additives that improve animal health and enhance their performance. This study investigated the effects of the rumen infusion of five essential oil blends (EOBs) on greenhouse gas (GHG) emissions, rumen fermentation parameters, and rumen metabolome and metabolic pathways in Black Angus cows. Using a 6 × 6 Latin Square experimental design, a 90-day study was conducted with six cattle. A daily dosage of 4 mL of EOBs was administered during each infusion. Volcano plot analyses between the control (CON) and each of the EOBs (EOB1, EOB2, EOB3, EOB4, and EOB5) revealed several differentially abundant (p ≤ 0.05; absolute fold change ≥1.5) metabolites. The EOB5 treatment exhibited the most significant impact, with 26 differentially abundant metabolites, including elevated valine and reduced gallic acid. Volatile fatty acids (VFAs), including valerate, isobutyrate, and isovalerate, were significantly increased (p < 0.05). GHG emissions were not significantly affected, but a numerical decrease was observed in the animals infused with the EOB5 treatment. Ammonia nitrogen concentrations remained within the suitable range for rumen microbes’ growth, indicating a normal internal environment for microbial crude protein synthesis. In conclusion, the study has demonstrated that the direct infusion of EOBs significantly improved the generation of VFAs and impacted the energy production, protein synthesis, and microbial activity of the animals.
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不同精油混合物浸泡肉牛的代谢组学分析、挥发性脂肪酸和温室气体排放
精油是一种天然饲料添加剂,可改善动物健康并提高其生产性能。本研究调查了在黑安格斯奶牛瘤胃中注入五种混合精油(EOB)对温室气体(GHG)排放、瘤胃发酵参数、瘤胃代谢组和代谢途径的影响。采用 6 × 6 拉丁方实验设计,对 6 头牛进行了为期 90 天的研究。在每次输注过程中,每天输注 4 毫升 EOBs。对照组(CON)和每种 EOBs(EOB1、EOB2、EOB3、EOB4 和 EOB5)之间的火山图分析表明了几种含量不同(p ≤ 0.05;绝对折叠变化≥1.5)的代谢物。EOB5 处理的影响最为显著,有 26 种代谢物含量不同,包括缬氨酸增加和没食子酸减少。包括戊酸、异丁酸和异戊酸在内的挥发性脂肪酸(VFAs)显著增加(p < 0.05)。温室气体排放未受到明显影响,但在输注 EOB5 处理剂的动物中观察到数值下降。氨氮浓度保持在适合瘤胃微生物生长的范围内,表明微生物粗蛋白合成的内部环境正常。总之,该研究表明,直接灌注 EOB 能显著改善 VFAs 的产生,并影响动物的能量生产、蛋白质合成和微生物活性。
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