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Identification and mapping of differentially expressed genes in fetal and postnatal pig skeletal muscle.

机译:胎儿和出生后猪骨骼肌中差异表达基因的鉴定和作图。

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摘要

Fetal myogenesis and postnatal skeletal muscle hypertrophy in growing pigs are critical yet poorly understood processes. Global gene expression analyses can identify key genes and pathways controlling these processes. In addition, integration of gene expression data with genome map information will facilitate identification of genes controlling economically important trait phenotypes. This study was designed to identify differentially expressed genes in developing pig skeletal muscle and locate them on the pig genome map. The specific objectives were: (1) Identify differentially expressed genes in hind limb skeletal muscle of pigs at 60 days of gestation and 7 weeks of age; and (2) Determine the map locations for differentially expressed genes. A combination of differential display RT-PCR, cDNA microarray analysis and oligonucleotide microarray analysis were used to identify differentially expressed genes. In total, over 200 differentially expressed genes were revealed and expression patterns for eight genes were evaluated by relative real time RT-PCR, confirming differential expression for seven of them. Twenty-four genes were mapped to 13 different pig chromosomes using the INRA-University of Minnesota (IMpRH) 7,000 rad radiation hybrid panel. This study represents a first step toward characterizing the transcriptional profile of developing pig skeletal muscle and it improves the porcine-human comparative map.
机译:生长猪的胎儿肌发生和产后骨骼肌肥大是至关重要的,但人们对此知之甚少。全局基因表达分析可以识别关键基因和控制这些过程的途径。另外,基因表达数据与基因组图谱信息的整合将有助于鉴定控制经济上重要的性状表型的基因。本研究旨在鉴定发育中的猪骨骼肌中差异表达的基因,并将其定位在猪基因组图上。具体目标是:(1)鉴定妊娠60天和7周龄时猪后肢骨骼肌中差异表达的基因; (2)确定差异表达基因的图谱位置。差异显示RT-PCR,cDNA微阵列分析和寡核苷酸微阵列分析的组合用于鉴定差异表达的基因。总共揭示了200多个差异表达的基因,并通过相对实时RT-PCR评估了八个基因的表达模式,从而确认了其中七个的差异表达。使用明尼苏达州INRA大学(IMpRH)7,000 rad辐射杂交小组,将24个基因定位到13个不同的猪染色体。这项研究代表了朝着发育中的猪骨骼肌的转录特征进行表征的第一步,并改善了猪与人的比较图谱。

著录项

  • 作者单位

    Michigan State University.;

  • 授予单位 Michigan State University.;
  • 学科 Biology Genetics.; Biology Animal Physiology.
  • 学位 M.S.
  • 年度 2005
  • 页码 88 p.
  • 总页数 88
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 遗传学;生理学;
  • 关键词

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