Embrapa Pecuária Sudeste, São Carlos, SP, Brazil.
Division of Animal Sciences, University of Missouri Columbia, Columbia, MO, USA.
Sci Rep. 2016 Dec 22;6:39493. doi: 10.1038/srep39493.
Residual feed intake (RFI), a measure of feed efficiency (FE), is defined as the difference between the observed and the predictable feed intake considering size and growth of the animal. It is extremely important to beef production systems due to its impact on the allocation of land areas to alternative agricultural production, animal methane emissions, food demand and cost of production. Global differential gene expression analysis between high and low RFI groups (HRFI and LRFI: less and more efficient, respectively) revealed 73 differentially expressed (DE) annotated genes in Longissimus thoracis (LT) muscle of Nelore steers. These genes are involved in the overrepresented pathways Metabolism of Xenobiotics by Cytochrome P450 and Butanoate and Tryptophan Metabolism. Among the DE transcripts were several proteins related to mitochondrial function and the metabolism of lipids. Our findings indicate that observed gene expression differences are primarily related to metabolic processes underlying oxidative stress. Genes involved in the metabolism of xenobiotics and antioxidant mechanisms were primarily down-regulated, while genes responsible for lipid oxidation and ketogenesis were up-regulated in HRFI group. By using LT muscle, this study reinforces our previous findings using liver tissue and reveals new genes and likely tissue-specific regulators playing key-roles in these processes.
残余采食量(RFI)是衡量饲料效率(FE)的一个指标,定义为考虑动物大小和生长时观察到的和可预测的饲料摄入量之间的差异。由于其对替代农业生产、动物甲烷排放、粮食需求和生产成本的土地面积分配的影响,它对牛肉生产系统非常重要。高和低 RFI 组(HRFI 和 LRFI:分别为效率更高和更低)之间的全球差异基因表达分析显示,在 Nelore 阉牛的背最长肌(LT)肌肉中,有 73 个差异表达(DE)注释基因。这些基因参与了细胞色素 P450 和丁酸及色氨酸代谢等过度表达的途径。在 DE 转录本中,有几个与线粒体功能和脂质代谢有关的蛋白质。我们的研究结果表明,观察到的基因表达差异主要与氧化应激下的代谢过程有关。参与代谢外源物质和抗氧化机制的基因主要下调,而负责脂质氧化和酮生成的基因在 HRFI 组中上调。本研究使用 LT 肌肉,加强了我们之前使用肝组织的研究结果,并揭示了新的基因和可能的组织特异性调节剂,这些基因和调节剂在外源物质代谢和抗氧化机制中发挥着关键作用。