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Haploid embryonic stem cells: an ideal tool for mammalian genetic analyses

机译:单倍体胚胎干细胞:进行哺乳动物遗传分析的理想工具

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摘要

Identification of the function of all genes in the mammalian genome is critical in understanding basic mechanisms of biology. However, the diploidy of mammalian somatic cells has greatly hindered efforts to elucidate the gene function in numerous biological processes by mutagenesis-based genetic approaches. Recently, mouse haploid embryonic stem (haES) cells have been successfully isolated from parthenogenetic and androgenetic embryos, providing an ideal tool for genetic analyses. In these studies, mouse haES cells have already shown that they could be used in cell-based forward or reverse genetic screenings and in generating gene-targeting via homologous recombination. In particular, haES cells from androgenetic embryos can be employed as novel, renewable form of fertilization agent for yielding live-born mice via injection into oocytes, thus showing the possibility that genetic analysis can be extended from cellular level to organism level.
机译:鉴定哺乳动物基因组中所有基因的功能对于理解生物学的基本机制至关重要。但是,哺乳动物体细胞的二倍体极大地阻碍了通过基于诱变的遗传方法阐明基因功能在众多生物学过程中的努力。最近,已从单性生殖和雄激素性胚胎中成功分离出小鼠单倍体胚胎干(haES)细胞,为遗传分析提供了理想的工具。在这些研究中,小鼠haES细胞已显示它们可用于基于细胞的正向或反向遗传筛选,以及可通过同源重组产生基因靶向。特别是,来自雄激素胚胎的haES细胞可以用作新型可再生形式的受精剂,通过注入卵母细胞来生产活体小鼠,因此显示出遗传分析可以从细胞水平扩展到生物水平的可能性。

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