Using Multiple Ontologies to Integrate Complex Biological Data

Author:

Shimoyama Mary12,Petri Victoria1,Pasko Dean1,Bromberg Susan1,Wu Wenhua1,Chen Jiali1,Nenasheva Nataliya1,Kwitek Anne1,Twigger Simon1,Jacob Howard1

Affiliation:

1. Human and Molecular Genetics Center, Medical College of Wisconsin, Milwaukee 53226, WI, USA

2. Medical College of Wisconsin, 8701 Watertown Plank Road, Milwaukee 53226, WI, USA

Abstract

The strength of the rat as a model organism lies in its utility in pharmacology, biochemistry and physiology research. Data resulting from such studies is difficult to represent in databases and the creation of user-friendly data mining tools has proved difficult. The Rat Genome Database has developed a comprehensive ontology-based data structure and annotation system to integrate physiological data along with environmental and experimental factors, as well as genetic and genomic information. RGD uses multiple ontologies to integrate complex biological information from the molecular level to the whole organism, and to develop data mining and presentation tools. This approach allows RGD to indicate not only the phenotypes seen in a strain but also the specific values under each diet and atmospheric condition, as well as gender differences. Harnessing the power of ontologies in this way allows the user to gather and filter data in a customized fashion, so that a researcher can retrieve all phenotype readings for which a high hypoxia is a factor. Utilizing the same data structure for expression data, pathways and biological processes, RGD will provide a comprehensive research platform which allows users to investigate the conditions under which biological processes are altered and to elucidate the mechanisms of disease.

Publisher

Hindawi Limited

Subject

Genetics,Molecular Biology,Biotechnology

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