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The development of a bovine interspecies model for the analysis of genomic imprinting in normal and nuclear transfer derived fetuses.

机译:牛种间模型的开发,用于分析正常和核移植胎儿的基因组印迹。

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摘要

The advent of somatic cell nuclear transfer in cattle has provided the opportunity for researchers to generate genetically identical animals as well as animals that possess precise genetic modifications for agriculture and biomedical purposes. However, in spite of the revolutionary impact this technology presents, problems remain which hinder the production of healthy animals on a consistent basis. Research on cloned mice implicates improper reprogramming of epigenetic modifications and genomic imprinting for the low pregnancy rates and high incidence of abnormalities that are manifested in cloned animals; however, a systematic and comprehensive analysis of nuclear reprogramming in cloned cattle remains undone.; The purpose of this research is to assess and characterize the patterns of genomic imprinting in normal and nuclear transfer derived bovine fetuses. To facilitate the identification of imprinted genes in the bovine, a Bos gaurus/Bos taurus interspecies model has been incorporated to maximize the genetic heterozygosity that exists between the alleles of putative imprinted genes for allelic discrimination and parental inheritance.; The sequence of twenty-six genes, previously reported as imprinted in mice and humans, was analyzed in Bos gaurus (Gaur) and Bos taurus (Angus) cattle for the presence of single nucleotide polymorphisms (SNP). SNPs were detected in the Gene trap locus 2 (GTL2), Insulin like growth factor 2 (IGF2), Wilms tumor 1 ( WT1) and the X chromosome inactivation specific transcript ( XIST). Allelic expression analysis in interspecies hybrids indicated maternal genomic imprinting at the IGF2 and XIST loci, paternal genomic imprinting at the GTL2 locus and no imprinting at the WT1 locus. Analysis in cloned hybrids indicated fidelity of allelic expression at the IGF2 and GTL2 loci, however disruption of imprinting was observed at the XIST locus in the placenta of clones. These results are the largest identification of imprinted genes in the bovine and the first identification of the disruption of an imprinted gene in an animal derived from somatic cell nuclear transfer.
机译:牛体细胞核转移的出现为研究人员提供了机会,使他们能够产生遗传上相同的动物以及具有精确基因修饰的动物,以用于农业和生物医学目的。然而,尽管该技术带来了革命性的影响,但仍然存在一些问题,这些问题阻碍了一致地生产健康的动物。对克隆小鼠的研究表明,表观遗传修饰和基因组印迹的编程不正确,原因是克隆动物表现出的低妊娠率和高异常率;但是,尚未对克隆牛的核重编程进行系统和全面的分析。这项研究的目的是评估和表征正常和核转移来源的牛胎儿中的基因组印迹模式。为了促进牛中印记基因的鉴定,已经建立了Bos gaurus / Bos taurus种间模型,以最大化存在于推定印记基因的等位基因之间的遗传杂合性,以进行等位基因识别和父母遗传。在Bos gaurus(Gaur)和Bos taurus(Angus)牛中分析了先前在小鼠和人类中印记的26个基因的序列,发现其存在单核苷酸多态性(SNP)。在基因陷阱基因座2(GTL2),胰岛素样生长因子2(IGF2),威尔姆斯肿瘤1(WT1)和X染色体失活特异性转录本(XIST)中检测到SNP。种间杂种的等位基因表达分析表明,在IGF2和XIST基因座上有母本基因组印记,在GTL2基因座上有母本基因组印记,在WT1基因座上无印记。在克隆的杂种中的分析表明在IGF2和GTL2基因座处的等位基因表达是保真的,但是在克隆的胎盘的XIST基因座上观察到印迹的破坏。这些结果是对牛中印迹基因的最大鉴定,也是对源自体细胞核转移的动物中印迹基因破坏的首次鉴定。

著录项

  • 作者

    Dindot, Scott Victor.;

  • 作者单位

    Texas A&M University.;

  • 授予单位 Texas A&M University.;
  • 学科 Biology Genetics.
  • 学位 Ph.D.
  • 年度 2003
  • 页码 129 p.
  • 总页数 129
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 遗传学;
  • 关键词

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