Taylor S Sidney, G. Taiwo, M. Idowu, I. Amusan, A. P. Pech Cervantes, I. Ogunade
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引用次数: 1
摘要
分析肉牛瘤胃液的胺/酚代谢组,以确定与低或高残采食量(RFI)表型选择相关的氨基酸代谢相关生物标志物。14头肉牛(饲料效率最高);RFI = - 1.89 kg/d, n = 7)和最低饲料效率(LFE;RFI = +2.05 kg/d, n = 7),选取平均体重261±18.5 kg的杂交生长肉牛56头,在两个GrowSafe采食节点的干地饲喂49 d。在饲养第56、63和70天后4 h采集高fe和低fe肉牛的瘤胃液样本。采用化学同位素标记/液相色谱-质谱联用技术对瘤胃液进行代谢组学分析,确定所有含有胺/酚化学基团的代谢物,其中大部分为氨基酸代谢物。在瘤胃液中共检测鉴定出493种代谢物。偏最小二乘判别分数图显示两组肉牛之间存在轻微差异,共有8种代谢物存在差异丰富(FDR≤0.05)。在8种差异丰富的代谢物中,4种代谢物(尸胺、baeocystin、6-甲基腺苷和N(6)-甲基赖氨酸的同分异构体1)基于曲线下面积≥0.70,符合RFI分化表型的候选生物标志物。本研究结果表明,不同的RFI表型与牛瘤胃胺/酚代谢组的改变有关。
Rumen Fluid Amine/Phenol-Metabolome of Beef Steers with Divergent Residual Feed Intake Phenotype
The amine/phenol-metabolome of rumen fluid was analyzed to identify amino acid metabolism-related biomarkers associated with phenotypic selection for low or high residual feed intake (RFI) in beef cattle. Fourteen beef steers (most feed-efficient (HFE; RFI = −1.89 kg/d, n = 7) and least feed-efficient (LFE; RFI = +2.05 kg/d, n = 7)) were selected from a total of 56 crossbred growing beef steers (average BW = 261 ± 18.5 kg) after a 49-d feeding period in a dry lot equipped with two GrowSafe intake nodes. Rumen fluid samples were collected 4 h after feeding on d 56, 63, and 70 from the HFE and LFE beef steers. Metabolome analysis of the rumen fluid was performed using chemical isotope labeling/liquid chromatography-mass spectrometry to identify all metabolites containing amine/phenol chemical groups, which are mostly amino acid metabolites. A total of 493 metabolites were detected and identified in the rumen fluid. The partial least squares discriminant scores plot showed a slight separation between the two groups of steers, and a total of eight metabolites were found to be differentially abundant (FDR ≤ 0.05). Out of the eight differentially abundant metabolites, four metabolites (isomer 1 of cadaverine, baeocystin, 6-methyladenine, and N(6)-methyllysine) qualified as candidate biomarkers of divergent RFI phenotype based on area under the curve ≥ 0.70. The results of this study revealed that divergent RFI phenotype is associated with alteration in rumen amine/phenol-metabolome of beef steers.