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Gene expression studies of developing bovine longissimus muscle from two different beef cattle breeds

机译:两种不同肉牛品种的牛背最长肌发育的基因表达研究

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Background The muscle fiber number and fiber composition of muscle is largely determined during prenatal development. In order to discover genes that are involved in determining adult muscle phenotypes, we studied the gene expression profile of developing fetal bovine longissimus muscle from animals with two different genetic backgrounds using a bovine cDNA microarray. Fetal longissimus muscle was sampled at 4 stages of myogenesis and muscle maturation: primary myogenesis (d 60), secondary myogenesis (d 135), as well as beginning (d 195) and final stages (birth) of functional differentiation of muscle fibers. All fetuses and newborns (total n = 24) were from Hereford dams and crossed with either Wagyu (high intramuscular fat) or Piedmontese (GDF8 mutant) sires, genotypes that vary markedly in muscle and compositional characteristics later in postnatal life. Results We obtained expression profiles of three individuals for each time point and genotype to allow comparisons across time and between sire breeds. Quantitative reverse transcription-PCR analysis of RNA from developing longissimus muscle was able to validate the differential expression patterns observed for a selection of differentially expressed genes, with one exception. We detected large-scale changes in temporal gene expression between the four developmental stages in genes coding for extracellular matrix and for muscle fiber structural and metabolic proteins. FSTL1 and IGFBP5 were two genes implicated in growth and differentiation that showed developmentally regulated expression levels in fetal muscle. An abundantly expressed gene with no functional annotation was found to be developmentally regulated in the same manner as muscle structural proteins. We also observed differences in gene expression profiles between the two different sire breeds. Wagyu-sired calves showed higher expression of fatty acid binding protein 5 (FABP5) RNA at birth. The developing longissimus muscle of fetuses carrying the Piedmontese mutation shows an emphasis on glycolytic muscle biochemistry and a large-scale up-regulation of the translational machinery at birth. We also document evidence for timing differences in differentiation events between the two breeds. Conclusion Taken together, these findings provide a detailed description of molecular events accompanying skeletal muscle differentiation in the bovine, as well as gene expression differences that may underpin the phenotype differences between the two breeds. In addition, this study has highlighted a non-coding RNA, which is abundantly expressed and developmentally regulated in bovine fetal muscle.
机译:背景技术在产前发育过程中,很大程度上决定了肌肉的肌纤维数量和纤维组成。为了发现与确定成年肌肉表型有关的基因,我们使用牛cDNA微阵列芯片研究了具有两种不同遗传背景的动物的发育中胎牛longissimus肌肉的基因表达谱。在肌形成和肌肉成熟的四个阶段对胎儿最长肌进行采样:初生肌形成(d 60),次生肌形成(d 135)以及肌纤维功能分化的开始(d 195)和最后阶段(出生)。所有胎儿和新生儿(总共n = 24)均来自赫里福德水坝,并与Wagyu(高肌内脂肪)或Piedmontese(GDF8突变体)父系杂交,这些基因型在产后后期的肌肉和组成特征上明显不同。结果我们获得了每个时间点和基因型的三个个体的表达谱,以进行跨时间和父系品种之间的比较。定量反转录-PCR分析来自发育中的最长肌的RNA能够验证观察到的差异表达模式,该差异表达模式用于选择差异表达基因,只有一个例外。我们在编码细胞外基质以及肌肉纤维结构和代谢蛋白的基因的四个发育阶段之间检测到时间基因表达的大规模变化。 FSTL1和IGFBP5是两个与生长和分化有关的基因,它们在胎儿肌肉中具有发育调控的表达水平。发现没有功能注释的大量表达基因以与肌肉结构蛋白相同的方式受到发育调控。我们还观察到了两个不同父亲品种之间基因表达谱的差异。和牛产犊的犊牛出生时脂肪酸结合蛋白5(FABP5)RNA的表达更高。带有皮埃蒙特突变的胎儿正在发育的最长肌,显示出对糖酵解肌肉生物化学的重视以及出生时翻译机制的大规模上调。我们还记录了两个品种之间分化事件时间差异的证据。结论综上所述,这些发现详细描述了伴随牛骨骼肌分化的分子事件,以及可能支持两个品种之间表型差异的基因表达差异。此外,这项研究突出了非编码RNA,它在牛胎儿肌肉中大量表达和发育调控。

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