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Differential proteome and transcriptome analysis of porcine skeletal muscle during development

机译:发育过程中猪骨骼肌的差异蛋白质组和转录组分析

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To gain further insight into the molecular mechanism of porcine skeletal muscle development, we combined MS characterization of proteins with high-throughput screening of differential mRNAs obtained from purebred Meishan longissimus dorsi muscle (LM) at four stages of 65. days post conception, 3, 60 and 120. days after birth. Strikingly, the dramatic differences were observed in embryo and newborn pigs, whereas 60 and 120. days pigs exhibited similar patterns in protein and mRNA expression. At the protein level, 66 differentially expressed proteins were identified. The development-dependent alterations in protein abundance indicated dramatic changes in metabolism, myofibrillar filaments, cytoskeleton, contractile activity and stress response, and signal transduction. At the transcript level, gene expression was measured with the Affymetrix Porcine Genechip, and 338 genes, representing approximately 1.7% of the chromosome, differed by two fold or more between the neighboring growth phases. Analysis of one such comparison, the expression patterns of most differential proteins showed a positive correlation with their gene expression at the transcript level during skeletal muscle development. Overall, many proteins or genes were previously unrecognized as differentially expressed during growth stages, and they represented novel starting points for understanding the developmental characteristics of biochemical and physiological properties in porcine skeletal muscle.
机译:为了进一步了解猪骨骼肌发育的分子机制,我们将蛋白质的MS表征与从纯种眉山背最长肌(LM)获得的差异mRNA的高通量筛选相结合,在受孕后65天的四个阶段进行,3,出生后60和120。令人惊讶的是,在胚胎和新生猪中观察到了巨大的差异,而60和120天的猪在蛋白质和mRNA表达上表现出相似的模式。在蛋白质水平上,鉴定出66种差异表达的蛋白质。蛋白质丰度的发育依赖性变化表明新陈代谢,肌原纤维细丝,细胞骨架,收缩活性和应激反应以及信号转导发生了显着变化。在转录本水平,用Affymetrix Porcine基因芯片测量了基因表达,其中338个基因(约占染色体的1.7%)在相邻生长期之间相差两倍以上。一项这样的比较分析表明,在骨骼肌发育过程中,大多数差异蛋白的表达模式与其转录水平上的基因表达呈正相关。总体而言,以前尚未认识到许多蛋白质或基因在生长阶段会差异表达,它们代表了了解猪骨骼肌生化和生理特性的发育特征的新起点。

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