Borisjuk Ljudmilla, Hajirezaei Mohammad-Reza, Klukas Christian, Rolletschek Hardy, Schreiber Falk
Institute of Plant Genetics and Crop Plant Research, Corrensstr. 3, D-06466 Gatersleben, Germany.
In Silico Biol. 2005;5(2):93-102.
Modern 'omics'-technologies result in huge amounts of data about life processes. For analysis and data mining purposes this data has to be considered in the context of the underlying biological networks. This work presents an approach for integrating data from biological experiments into metabolic networks by mapping the data onto network elements and visualising the data enriched networks automatically. This methodology is implemented in DBE, an information system that supports the analysis and visualisation of experimental data in the context of metabolic networks. It consists of five parts: (1) the DBE-Database for consistent data storage, (2) the Excel-Importer application for the data import, (3) the DBE-Website as the interface for the system, (4) the DBE-Pictures application for the up- and download of binary (e. g. image) files, and (5) DBE-Gravisto, a network analysis and graph visualisation system. The usability of this approach is demonstrated in two examples.
现代“组学”技术产生了关于生命过程的大量数据。出于分析和数据挖掘的目的,这些数据必须在基础生物网络的背景下加以考虑。这项工作提出了一种通过将数据映射到网络元素并自动可视化数据丰富的网络,把生物实验数据整合到代谢网络中的方法。这种方法在DBE中得以实现,DBE是一个支持在代谢网络背景下分析和可视化实验数据的信息系统。它由五个部分组成:(1)用于一致数据存储的DBE数据库,(2)用于数据导入的Excel导入器应用程序,(3)作为系统接口的DBE网站,(4)用于二进制(如图像)文件上传和下载的DBE图片应用程序,以及(5)DBE-Gravisto,一个网络分析和图形可视化系统。通过两个示例展示了这种方法的可用性。