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A dedicated database system for handling multi-level data in systems biology

机译:专用数据库系统,用于处理系统生物学中的多级数据

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Background Advances in high-throughput technologies have enabled extensive generation of multi-level omics data. These data are crucial for systems biology research, though they are complex, heterogeneous, highly dynamic, incomplete and distributed among public databases. This leads to difficulties in data accessibility and often results in errors when data are merged and integrated from varied resources. Therefore, integration and management of systems biological data remain very challenging. Methods To overcome this, we designed and developed a dedicated database system that can serve and solve the vital issues in data management and hereby facilitate data integration, modeling and analysis in systems biology within a sole database. In addition, a yeast data repository was implemented as an integrated database environment which is operated by the database system. Two applications were implemented to demonstrate extensibility and utilization of the system. Both illustrate how the user can access the database via the web query function and implemented scripts. These scripts are specific for two sample cases: 1) Detecting the pheromone pathway in protein interaction networks; and 2) Finding metabolic reactions regulated by Snf1 kinase. Results and conclusion In this study we present the design of database system which offers an extensible environment to efficiently capture the majority of biological entities and relations encountered in systems biology. Critical functions and control processes were designed and implemented to ensure consistent, efficient, secure and reliable transactions. The two sample cases on the yeast integrated data clearly demonstrate the value of a sole database environment for systems biology research.
机译:背景技术高通量技术的进步使得广泛生成多层组学数据成为可能。这些数据虽然复杂,异构,高度动态,不完整且在公共数据库之间分布,但它们对于系统生物学研究至关重要。这导致数据可访问性方面的困难,并且在从各种资源合并和集成数据时,经常会导致错误。因此,系统生物学数据的集成和管理仍然非常具有挑战性。方法为了克服这个问题,我们设计和开发了一个专用的数据库系统,该系统可以服务和解决数据管理中的重要问题,从而可以在单个数据库内促进系统生物学中的数据集成,建模和分析。另外,酵母数据库被实现为由数据库系统操作的集成数据库环境。实施了两个应用程序来演示系统的可扩展性和利用率。两者都说明了用户如何通过Web查询功能和已实现的脚本访问数据库。这些脚本特定于两个示例情况:1)在蛋白质相互作用网络中检测信息素途径; 2)寻找由Snf1激酶调节的代谢反应。结果与结论在本研究中,我们介绍了数据库系统的设计,该数据库系统提供了可扩展的环境,可以有效地捕获系统生物学中遇到的大多数生物实体和关系。设计和实施了关键功能和控制流程,以确保一致,高效,安全和可靠的交易。酵母综合数据上的两个样本案例清楚地证明了唯一的数据库环境对于系统生物学研究的价值。

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