The Jackson Laboratory, Box 24, 600 Main Street, Bar Harbor, ME 04605, USA.
Wiley Interdiscip Rev Syst Biol Med. 2009 Nov-Dec;1(3):390-399. doi: 10.1002/wsbm.44.
The mouse has long been an important model for the study of human genetic disease. Through the application of genetic engineering and mutagenesis techniques, the number of unique mutant mouse models and the amount of phenotypic data describing them are growing exponentially. Describing phenotypes of mutant mice in a computationally useful manner that will facilitate data mining is a major challenge for bioinformatics. Here we describe a tool, the Mammalian Phenotype Ontology (MP), for classifying and organizing phenotypic information related to the mouse and other mammalian species. The MP Ontology has been applied to mouse phenotype descriptions in the Mouse Genome Informatics Database (MGI, http://www.informatics.jax.org/), the Rat Genome Database (RGD, http://rgd.mcw.edu), the Online Mendelian Inheritance in Animals (OMIA, http://omia.angis.org.au/) and elsewhere. Use of this ontology allows comparisons of data from diverse sources, can facilitate comparisons across mammalian species, assists in identifying appropriate experimental disease models, and aids in the discovery of candidate disease genes and molecular signaling pathways.
老鼠长期以来一直是研究人类遗传疾病的重要模型。通过应用遗传工程和诱变技术,独特的突变老鼠模型的数量和描述它们的表型数据正在呈指数级增长。以一种便于数据挖掘的计算方式描述突变老鼠的表型是生物信息学的一个主要挑战。在这里,我们描述了一种工具,即哺乳动物表型本体(MP),用于分类和组织与老鼠和其他哺乳动物物种相关的表型信息。该 MP 本体已应用于 Mouse Genome Informatics Database(MGI,http://www.informatics.jax.org/)、Rat Genome Database(RGD,http://rgd.mcw.edu)、Online Mendelian Inheritance in Animals(OMIA,http://omia.angis.org.au/)和其他地方的老鼠表型描述。该本体的使用允许来自不同来源的数据进行比较,可以促进哺乳动物物种之间的比较,有助于识别合适的实验疾病模型,并有助于发现候选疾病基因和分子信号通路。