Balling R
German Research Centre for Biotechnology, D-38124 Braunschweig, Germany.
Annu Rev Genomics Hum Genet. 2001;2:463-92. doi: 10.1146/annurev.genom.2.1.463.
With the completion of the human genome, sequence analysis of gene function will move into the center of future genome research. One of the key strategies for studying gene function involves the genetic dissection of biological processes in animal models. Mouse mutants are of particular importance for the analysis of disease pathogenesis and transgenic techniques, and gene targeting have become routine tools. Recently, phenotype-driven strategies using chemical mutagenesis have been the target of increasing interest. In this review, the current state of ENU mutagenesis and its application as a systematic tool of genome analysis are examined.
随着人类基因组测序工作的完成,基因功能的序列分析将成为未来基因组研究的核心。研究基因功能的关键策略之一是在动物模型中对生物过程进行遗传学剖析。小鼠突变体对于疾病发病机制分析以及转基因技术而言尤为重要,基因打靶已成为常规工具。近来,利用化学诱变的表型驱动策略越来越受到关注。在这篇综述中,我们探讨了ENU诱变的现状及其作为基因组分析系统工具的应用。