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小鼠复杂疾病相关性状的计算机模拟定位

In silico mapping of complex disease-related traits in mice.

作者信息

Grupe A, Germer S, Usuka J, Aud D, Belknap J K, Klein R F, Ahluwalia M K, Higuchi R, Peltz G

机构信息

Department of Genetics and Genomics, Roche Bioscience, Palo Alto, CA 94303, USA.

出版信息

Science. 2001 Jun 8;292(5523):1915-8. doi: 10.1126/science.1058889.

Abstract

Experimental murine genetic models of complex human disease show great potential for understanding human disease pathogenesis. To reduce the time required for analysis of such models from many months down to milliseconds, a computational method for predicting chromosomal regions regulating phenotypic traits and a murine database of single nucleotide polymorphisms were developed. After entry of phenotypic information obtained from inbred mouse strains, the phenotypic and genotypic information is analyzed in silico to predict the chromosomal regions regulating the phenotypic trait.

摘要

复杂人类疾病的实验性小鼠遗传模型在理解人类疾病发病机制方面显示出巨大潜力。为了将分析此类模型所需的时间从数月缩短至毫秒级,开发了一种预测调控表型性状的染色体区域的计算方法以及一个小鼠单核苷酸多态性数据库。输入从近交系小鼠品系获得的表型信息后,在计算机上对表型和基因型信息进行分析,以预测调控该表型性状的染色体区域。

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