Taiwo Godstime A, Idowu Modoluwamu, Denvir James, Cervantes Andres Pech, Ogunade Ibukun M
Division of Animal and Nutritional Science, West Virginia University, Morgantown, WV, United States.
Department of Medicine, Surgery, and Biomedical Sciences, Joan C. Edwards School of Medicine, Marshall University, Huntington, WV, United States.
Front Vet Sci. 2022 Apr 18;9:848027. doi: 10.3389/fvets.2022.848027. eCollection 2022.
We applied whole blood transcriptome analysis and gene set enrichment analysis to identify pathways associated with divergent selection for low or high RFI in beef cattle. A group of 56 crossbred beef steers (average BW = 261 ± 18.5 kg) were adapted to a high-forage total mixed ration in a confinement dry lot equipped with GrowSafe intake nodes for period of 49 d to determine their residual feed intake (RFI). After RFI determination, whole blood samples were collected from beef steers with the lowest RFI (most efficient; low-RFI; = 8) and highest RFI (least efficient; high-RFI; = 8). Prior to RNA extraction, whole blood samples collected were composited for each steer. Sequencing was performed on an Illumina NextSeq2000 equipped with a P3 flow. Gene set enrichment analysis (GSEA) was used to analyze differentially expressed gene sets and pathways between the two groups of steers. Results of GSEA revealed pathways associated with metabolism of proteins, cellular responses to external stimuli, stress, and heat stress were differentially inhibited (false discovery rate (FDR) < 0.05) in high-RFI compared to low-RFI beef cattle, while pathways associated with binding and uptake of ligands by scavenger receptors, scavenging of heme from plasma, and erythrocytes release/take up oxygen were differentially enriched (FDR < 0.05) in high-RFI, relative to low-RFI beef cattle. Taken together, our results revealed that beef steers divergently selected for low or high RFI revealed differential expressions of genes related to protein metabolism and stress responsiveness.
我们应用全血转录组分析和基因集富集分析来确定与肉牛低或高剩余采食量(RFI)的差异选择相关的途径。一组56头杂交肉牛阉牛(平均体重=261±18.5千克)在配备GrowSafe采食节点的圈养干栏中适应高粗饲料全混合日粮49天,以确定它们的剩余采食量(RFI)。在确定RFI后,从RFI最低(效率最高;低RFI;n=8)和RFI最高(效率最低;高RFI;n=8)的肉牛阉牛采集全血样本。在RNA提取之前,将为每头阉牛采集的全血样本进行混合。在配备P3流动槽的Illumina NextSeq2000上进行测序。基因集富集分析(GSEA)用于分析两组阉牛之间差异表达的基因集和途径。GSEA结果显示,与低RFI肉牛相比,高RFI肉牛中与蛋白质代谢、细胞对外部刺激的反应、应激和热应激相关的途径受到差异抑制(错误发现率(FDR)<0.05),而与清道夫受体结合和摄取配体、从血浆中清除血红素以及红细胞释放/摄取氧气相关的途径在高RFI肉牛中相对于低RFI肉牛有差异富集(FDR<0.05)。综上所述,我们的结果表明,针对低或高RFI进行差异选择的肉牛阉牛显示出与蛋白质代谢和应激反应相关的基因的差异表达。