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小鼠中的功能基因组学:基于表型的诱变筛选。

Functional genomics in the mouse: phenotype-based mutagenesis screens.

作者信息

Schimenti J, Bucan M

机构信息

The Jackson Laboratory, Bar Harbor, Maine 04609 USA.

出版信息

Genome Res. 1998 Jul;8(7):698-710. doi: 10.1101/gr.8.7.698.

Abstract

Significant progress has been made in sequencing the genomes of several model organisms, and efforts are now underway to complete the sequencing of the human genome. In parallel with this effort, new approaches are being developed for the elucidation of the functional content of the human genome. The mouse will have an important role in this phase of the genome project as a model system. In this review we discuss and compare classical genetic approaches to gene function-phenotype-based mutagenesis screens aimed at the establishment of a large collection of single gene mutations affecting a wide range of phenotypic traits in the mouse. Whereas large scale genome-wide screens that are directed at the identification of all loci contributing to a specific phenotype may be impractical, region-specific saturation screens that provide mutations within a delimited chromosomal region are a feasible alternative. Region-specific screens in the mouse can be performed in only two generations by combining high-efficiency chemical mutagenesis with deletion complexes generated using embryonic stem (ES) cells. The ability to create and analyze deletion complexes rapidly, as well as to map novel chemically-induced mutations within these complexes, will facilitate systematic functional analysis of the mouse genome and corresponding gene sequences in humans. Furthermore, as the extent of the mouse genome sequencing effort is still uncertain, we underscore a necessity to direct sequencing efforts to those chromosomal regions that are targets for extensive mutagenesis screens.

摘要

在对几种模式生物的基因组进行测序方面已经取得了重大进展,目前正在努力完成人类基因组的测序工作。与此项工作并行,正在开发新方法以阐明人类基因组的功能内容。小鼠作为一种模式系统,将在基因组计划的这一阶段发挥重要作用。在这篇综述中,我们讨论并比较了基于基因功能-表型的诱变筛选的经典遗传方法,这些筛选旨在建立大量影响小鼠广泛表型特征的单基因突变集合。虽然旨在鉴定所有影响特定表型的基因座的大规模全基因组筛选可能不切实际,但在限定的染色体区域内提供突变的区域特异性饱和筛选是一种可行的替代方法。通过将高效化学诱变与使用胚胎干细胞(ES细胞)产生的缺失复合体相结合,小鼠中的区域特异性筛选仅需两代即可完成。快速创建和分析缺失复合体以及在这些复合体内定位新的化学诱导突变的能力,将有助于对小鼠基因组和人类相应基因序列进行系统的功能分析。此外,由于小鼠基因组测序工作的范围仍不确定,我们强调有必要将测序工作指向那些是广泛诱变筛选目标的染色体区域。

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