The mouse genome.

Genome dynamics Pub Date : 2006-01-01 DOI:10.1159/000095091
S D M Brown, J M Hancock
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引用次数: 18

Abstract

The mouse is a key model organism for the study of mammalian genetics, development, physiology and biochemistry. The determination of the mouse genome sequence was therefore an early priority in the genome project. A draft sequence became available in 2002 and many chromosomes are now close to being finished. Comparative analysis of the mouse genome sequence with that of the human and other genomes has revealed a wealth of information on genome evolution in the mammalian lineage and assisted in the annotation of both genomes. With the availability of a well-annotated mouse genome sequence, mouse geneticists are now poised to undertake the challenge of generating mutations at every gene in the mouse genome. Systematic mutagenesis of the mouse genome will be an important step towards the first comprehensive functional annotation of a mammalian genome and the identification and characterisation of models for the study of human genetic disease.

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老鼠基因组。
小鼠是哺乳动物遗传学、发育、生理和生物化学研究的重要模式生物。因此,确定小鼠基因组序列是基因组计划的早期优先事项。2002年有了一个序列草图,许多染色体现在已经接近完成。小鼠基因组序列与人类和其他动物基因组序列的比较分析揭示了哺乳动物谱系中基因组进化的丰富信息,并有助于两种基因组的注释。随着小鼠基因组序列注释的完善,小鼠遗传学家现在已经准备好迎接在小鼠基因组中产生每个基因突变的挑战。小鼠基因组的系统诱变将是迈向哺乳动物基因组的第一个全面功能注释和人类遗传疾病研究模型的鉴定和表征的重要一步。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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The evolutionary dynamics of transposable elements in eukaryote genomes. SINEs as driving forces in genome evolution. Unstable microsatellite repeats facilitate rapid evolution of coding and regulatory sequences. Satellite DNA evolution. Satellite DNA-mediated effects on genome regulation.
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