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包含超过24000个单链长度多态性标记(SSLP)、基因和表达序列标签(EST)的高密度大鼠辐射杂种图谱为大鼠基因组序列提供了直接联系。

High-density rat radiation hybrid maps containing over 24,000 SSLPs, genes, and ESTs provide a direct link to the rat genome sequence.

作者信息

Kwitek Anne E, Gullings-Handley Jo, Yu Jiaming, Carlos Danilo C, Orlebeke Kimberly, Nie Jeff, Eckert Jeffrey, Lemke Angela, Andrae Jaime Wendt, Bromberg Susan, Pasko Dean, Chen Dan, Scheetz Todd E, Casavant Thomas L, Soares M Bento, Sheffield Val C, Tonellato Peter J, Jacob Howard J

机构信息

Human & Molecular Genetics Center and Department of Physiology, Medical College of Wisconsin, Milwaukee, Wisconsin 53226, USA.

出版信息

Genome Res. 2004 Apr;14(4):750-7. doi: 10.1101/gr.1968704.

Abstract

The laboratory rat is a major model organism for systems biology. To complement the cornucopia of physiological and pharmacological data generated in the rat, a large genomic toolset has been developed, culminating in the release of the rat draft genome sequence. The rat draft sequence used a variety of assembly packages, as well as data from the Radiation Hybrid (RH) map of the rat as part of their validation. As part of the Rat Genome Project, we have been building a high-density RH map to facilitate data integration from multiple maps and now to help validate the genome assembly. By incorporating vectors from our lab and several other labs, we have doubled the number of simple sequence length polymorphisms (SSLPs), genes, expressed sequence tags (ESTs), and sequence-tagged sites (STSs) compared to any other genome-wide rat map, a total of 24,437 elements. During the process, we also identified a novel approach for integrating the RH placement results from multiple maps. This new integrated RH map contains approximately 10 RH-mapped elements per Mb on the genome assembly, enabling the RH maps to serve as a scaffold for a variety of data visualization tools.

摘要

实验大鼠是系统生物学的主要模式生物。为补充在大鼠中产生的大量生理和药理学数据,已开发出一套庞大的基因组工具集,最终发布了大鼠基因组草图序列。大鼠基因组草图序列使用了多种组装软件包,以及来自大鼠辐射杂种(RH)图谱的数据作为其验证的一部分。作为大鼠基因组计划的一部分,我们一直在构建高密度RH图谱,以促进来自多个图谱的数据整合,现在则是为了帮助验证基因组组装。通过纳入我们实验室和其他几个实验室的载体,与任何其他全基因组大鼠图谱相比,我们已将简单序列长度多态性(SSLPs)、基因、表达序列标签(ESTs)和序列标签位点(STSs)的数量增加了一倍,共有24437个元件。在此过程中,我们还确定了一种整合来自多个图谱的RH定位结果的新方法。这个新的整合RH图谱在基因组组装上每兆碱基大约包含10个RH定位元件,使RH图谱能够作为各种数据可视化工具的支架。

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