Vuocolo Tony, Byrne Keren, White Jason, McWilliam Sean, Reverter Antonio, Cockett Noelle E, Tellam Ross L
Commonwealth Scientific and Industrial Research Organisation Livestock Industries, Queensland Bioscience Precinct, St. Lucia, Queensland, Australia.
Physiol Genomics. 2007 Feb 12;28(3):253-72. doi: 10.1152/physiolgenomics.00121.2006. Epub 2006 Oct 31.
The callipyge mutation in sheep results in postnatal skeletal muscle hypertrophy in the pelvic limbs and loins with little or no effect on anterior skeletal muscles. Associated with the phenotype are changes in the expression of a number of imprinted genes flanking the site of the mutation, which lies in an intergenic region at the telomeric end of ovine chromosome 18. The manner in which these local changes in gene expression are translated into muscle hypertrophy is not known. Microarray-based transcriptional profiling was used to identify differentially expressed genes in longissimus dorsi skeletal muscle samples taken at birth and 12 wk of age from callipyge and wild-type sheep. The phenotype was only expressed at the latter developmental time and associated with decreased type 1 fibers (slow oxidative) and a shift toward type IIx and IIb fibers (fast-twitch glycolytic). We have identified 131 genes in the samples taken at 12 wk of age that were differentially expressed as a function of genotype but not due to the fiber type changes. The gene expression changes occurring as a function of genotype in the samples taken at birth indicated that the transcriptional framework underpinning the phenotype was emerging prior to expression of the phenotype. Eight genes were differentially expressed as a function of genotype at both developmental times. A model is proposed describing a core network of genes and histone epigenetic modifications that is likely to underpin the fiber type changes and muscle hypertrophy characteristic of callipyge sheep.
绵羊中的双肌臀突变导致出生后盆腔肢体和腰部的骨骼肌肥大,而对前肢骨骼肌几乎没有影响。与该表型相关的是位于绵羊18号染色体端粒末端基因间区域的突变位点两侧的一些印记基因表达发生变化。这些基因表达的局部变化如何转化为肌肉肥大尚不清楚。基于微阵列的转录谱分析用于鉴定出生时和12周龄时取自双肌臀绵羊和野生型绵羊的背最长肌骨骼肌样本中差异表达的基因。该表型仅在发育后期表达,并与1型纤维(慢氧化型)减少以及向IIx和IIb型纤维(快收缩糖酵解型)转变有关。我们在12周龄时采集的样本中鉴定出131个基因,这些基因因基因型而异表达,但不是由于纤维类型变化所致。出生时采集的样本中因基因型而异表达的基因表明,在表型表达之前,支持该表型的转录框架就已出现。有8个基因在两个发育阶段均因基因型而异表达。本文提出了一个模型,描述了一个基因和组蛋白表观遗传修饰的核心网络,该网络可能是双肌臀绵羊纤维类型变化和肌肉肥大特征的基础。