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Modeling Chromosomes in Mouse to Explore the Function of Genes, Genomic Disorders, and Chromosomal Organization

机译:在小鼠中建模染色体以探索基因,基因组疾病和染色体组织的功能

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摘要

One of the challenges of genomic research after the completion of the human genome project is to assign a function to all the genes and to understand their interactions and organizations. Among the various techniques, the emergence of chromosome engineering tools with the aim to manipulate large genomic regions in the mouse model offers a powerful way to accelerate the discovery of gene functions and provides more mouse models to study normal and pathological developmental processes associated with aneuploidy. The combination of gene targeting in ES cells, recombinase technology, and other techniques makes it possible to generate new chromosomes carrying specific and defined deletions, duplications, inversions, and translocations that are accelerating functional analysis. This review presents the current status of chromosome engineering techniques and discusses the different applications as well as the implication of these new techniques in future research to better understand the function of chromosomal organization and structures.
机译:完成人类基因组计划后,基因组研究面临的挑战之一是为所有基因分配功能,并了解其相互作用和组织。在各种技术中,旨在操纵小鼠模型中大基因组区域的染色体工程工具的出现为加速发现基因功能提供了一种有力的方法,并提供了更多的小鼠模型来研究与非整倍性相关的正常和病理发育过程。 ES细胞中靶向基因,重组酶技术和其他技术的结合,可以产生带有特定和定义的缺失,重复,倒位和易位的新染色体,从而加速功能分析。这篇综述介绍了染色体工程技术的现状,并讨论了这些新技术的不同应用以及它们在未来研究中的含义,以更好地了解染色体组织和结构的功能。

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