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A Transcriptome Analysis Identifies Biological Pathways and Candidate Genes for Feed Efficiency in DLY Pigs

机译:转录组分析确定了DLY猪的生物途径和候选基因的饲料效率

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摘要

Feed cost accounts for approximately 65–75% of overall commercial pork production costs. Therefore, improving the feed efficiency of pig production is important. In this study, 12 individuals with either extremely high (HE) or low (LE) feed efficiency were selected from 225 Duroc × (Landrace × Yorkshire) (DLY) pigs. After the pigs were slaughtered, we collected small intestine mucosal tissue. Next, RNA sequencing (RNA-seq) analysis was used to reveal the presence and quantity of genes expressed between these extremely HE- and LE-groups. We found 433 significantly differentially expressed genes (DEGs) between the HE- and LE-groups. Of these, 389 and 44 DEGs were upregulated and downregulated in the HE-group, respectively. An enrichment analysis showed that the DEGs were mainly enriched in functions related to apical plasma membrane composition, transporter activity, transport process and hormone regulation of digestion and absorption. Protein network interaction and gene function analyses revealed that SLC2A2 was an important candidate gene for FE in pigs, which may give us a deeper understanding of the mechanism of feed efficiency. Furthermore, some significant DEGs identified in the current study could be incorporated into artificial selection programs for increased feeding efficiency in pigs.
机译:饲料成本约占猪肉商业生产总成本的65%至75%。因此,提高养猪生产的饲料效率很重要。在这项研究中,从225头Duroc×(Landrace×Yorkshire)(DLY)猪中选择了12头饲料具有极高(HE)或极低(LE)的个体。屠宰猪后,我们收集了小肠粘膜组织。接下来,使用RNA测序(RNA-seq)分析来揭示这些极端HE和LE组之间表达的基因的存在和数量。我们发现HE和LE组之间的433个显着差异表达的基因(DEG)。其中,HE组分别上调和下调了389和44个DEG。富集分析表明,DEG主要富集与顶质膜组成,转运蛋白活性,转运过程以及激素调节消化吸收有关的功能。蛋白质网络相互作用和基因功能分析表明,SLC2A2是猪FE的重要候选基因,这可能使我们对饲料效率的机理有更深入的了解。此外,当前研究中确定的一些重要DEG可以纳入人工选择程序中,以提高猪的饲喂效率。

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