Animal Breeding and Genomics Centre, Wageningen UR Livestock Research, Lelystad, The Netherlands.
J Anim Breed Genet. 2013 Feb;130(1):72-8. doi: 10.1111/j.1439-0388.2012.00993.x. Epub 2012 Mar 15.
Selection of pigs for increased meat production or improved meat quality changes muscle mass and muscle composition. This will be related to transcriptome expression profile changes in muscle tissue, generating inter-individual differences. This study investigated the differentially expressed genes in the transcriptome profiles of the longissimus muscle of 75 Large White-Duroc cross sows and castrates. The use of a common reference design enabled to investigate the inter-individual transcriptome expression profile differences between the animals as compared with the means of all animals. The aim of the study was to identify the biological processes related to these inter-individual differences. It was expected that these processes underlie the selection effects. In total, 908 transcripts were differentially expressed. Among them, 762 were mainly downregulated and 146 were mainly upregulated. Gene Ontology and Pathways analyses indicated that the differentially expressed genes belong to three groups of processes involved in protein synthesis and amino acid-protein metabolism, energy metabolism and muscle-specific structure and activity processes. Comparing the functional biological analysis results with previously reported data suggested that the protein synthesis, energy metabolism and muscle-specific structure would contribute to meat production and the meat quality.
为了提高猪肉产量或改善肉质,人们会选择具有特定特征的猪。这种选择会改变肌肉的质量和组成,进而导致肌肉组织中转录组表达谱发生变化,产生个体间差异。本研究调查了 75 头大白杜洛克杂交母猪和阉猪背最长肌转录组图谱中的差异表达基因。采用通用参考设计,可以比较动物个体之间的转录组表达谱差异,以及所有动物的平均值。本研究的目的是确定与这些个体间差异相关的生物学过程。预期这些过程是选择效应的基础。总共鉴定到 908 个差异表达的转录本。其中,762 个主要下调,146 个主要上调。基因本体论和通路分析表明,差异表达的基因属于三个与蛋白质合成和氨基酸-蛋白质代谢、能量代谢以及肌肉特异性结构和功能过程相关的过程组。将功能生物学分析结果与先前的报告数据进行比较表明,蛋白质合成、能量代谢和肌肉特异性结构可能有助于提高猪肉产量和改善肉质。