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Mapping the mouse genome: current status and future prospects.

机译:绘制小鼠基因组图谱:现状和未来前景。

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摘要

The mouse is the best model system for the study of mammalian genetics and physiology. Because of the feasibility and importance of studying genetic crosses, the mouse genetic map has received tremendous attention in recent years. It currently contains over 14,000 genetically mapped markers, including 700 mutant loci, 3500 genes, and 6500 simple sequence length polymorphisms (SSLPs). The mutant loci and genes allow insights and correlations concerning physiology and development. The SSLPs provide highly polymorphic anchor points that allow inheritance to be traced in any cross and provide a scaffold for assembling physical maps. Adequate physical mapping resources--notably large-insert yeast artificial chromosome (YAC) libraries--are available to support positional cloning projects based on the genetic map, but a comprehensive physical map is still a few years away. Large-scale sequencing efforts have not yet begun in mouse, but comparative sequence analysis between mouse and human is likely to provide tremendous information about gene structure and regulation.
机译:小鼠是研究哺乳动物遗传学和生理学的最佳模型系统。由于研究遗传杂交的可行性和重要性,因此小鼠遗传图谱近年来受到了极大的关注。目前,它包含超过14,000个基因定位的标记,包括700个突变基因座,3500个基因和6500个简单序列长度多态性(SSLP)。突变基因座和基因允许有关生理和发育的见解和相关性。 SSLP提供了高度多态的锚点,这些锚点允许在任何十字架上追踪遗传,并提供了一个组装物理图的支架。足够的物理图谱资源(尤其是大插入酵母人工染色体(YAC)库)可用于支持基于遗传图谱的位置克隆项目,但全面的物理图谱仍需要数年的时间。小鼠的大规模测序工作尚未开始,但是小鼠和人之间的比较序列分析可能会提供有关基因结构和调控的大量信息。

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