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Using multiple grid resources for bioinformatics applications in GADU

机译:在GADU中将多个网格资源用于生物信息学应用

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During the past decade, the scientific community has witnessed the rapid accumulation of gene sequence data and data related to physiology and biochemistry of organisms. Bioinformatics tools used for efficient and computationally intensive analysis of genetic sequences require large-scale computational resources to accommodate the growing data. Grid computational resources such as the Open Science Grid and TeraGrid have proved useful for scientific discovery. GADU is a high-throughput computational system developed to automate the steps involved in accessing the Grid resources for running bioinformatics applications. This paper describes the requirements for building an automated scalable system such as GADU that can run a job simultaneously on different grids. The paper describes the resource-independent configuration of GADU using the Pegasus-based virtual data system that helps in using heterogeneous grid resources. The paper also highlights the features implemented to make GADU a gateway to computationally intensive bioinformatics applications on the Grid
机译:在过去的十年中,科学界见证了基因序列数据以及与生物体生理学和生物化学有关的数据的迅速积累。用于对基因序列进行高效且计算密集的分析的生物信息学工具需要大规模的计算资源来适应不断增长的数据。事实证明,诸如Open Science Grid和TeraGrid之类的网格计算资源对于科学发现很有用。 GADU是一种高通量计算系统,旨在自动执行访问网格资源以运行生物信息学应用程序所涉及的步骤。本文介绍了构建可在不同网格上同时运行作业的自动化可伸缩系统(例如GADU)的要求。本文介绍了基于Pegasus的虚拟数据系统的GADU资源独立配置,该系统可帮助使用异构网格资源。本文还重点介绍了为使GADU成为网格上计算密集型生物信息学应用程序的网关而实现的功能。

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