...
首页> 外文期刊>BMC Bioinformatics >Tavaxy: Integrating Taverna and Galaxy workflows with cloud computing support
【24h】

Tavaxy: Integrating Taverna and Galaxy workflows with cloud computing support

机译:Tavaxy:与云计算支持集成Taverna和Galaxy工作流程

获取原文
   

获取外文期刊封面封底 >>

       

摘要

Background Over the past decade the workflow system paradigm has evolved as an efficient and user-friendly approach for developing complex bioinformatics applications. Two popular workflow systems that have gained acceptance by the bioinformatics community are Taverna and Galaxy. Each system has a large user-base and supports an ever-growing repository of application workflows. However, workflows developed for one system cannot be imported and executed easily on the other. The lack of interoperability is due to differences in the models of computation, workflow languages, and architectures of both systems. This lack of interoperability limits sharing of workflows between the user communities and leads to duplication of development efforts. Results In this paper, we present Tavaxy, a stand-alone system for creating and executing workflows based on using an extensible set of re-usable workflow patterns. Tavaxy offers a set of new features that simplify and enhance the development of sequence analysis applications: It allows the integration of existing Taverna and Galaxy workflows in a single environment, and supports the use of cloud computing capabilities. The integration of existing Taverna and Galaxy workflows is supported seamlessly at both run-time and design-time levels, based on the concepts of hierarchical workflows and workflow patterns. The use of cloud computing in Tavaxy is flexible, where the users can either instantiate the whole system on the cloud, or delegate the execution of certain sub-workflows to the cloud infrastructure. Conclusions Tavaxy reduces the workflow development cycle by introducing the use of workflow patterns to simplify workflow creation. It enables the re-use and integration of existing (sub-) workflows from Taverna and Galaxy, and allows the creation of hybrid workflows. Its additional features exploit recent advances in high performance cloud computing to cope with the increasing data size and complexity of analysis. The system can be accessed either through a cloud-enabled web-interface or downloaded and installed to run within the user's local environment. All resources related to Tavaxy are available at http://www.tavaxy.org webcite .
机译:背景技术在过去十年中,工作流程系统范例已经发展成为一种高效和用户友好的方法,用于开发复杂的生物信息学应用。两种流行的工作流系统获得了生物信息学社区的接受,是Taverna和Galaxy。每个系统都有一个大的用户库,支持越来越多的应用程序工作流程库。但是,为一个系统开发的工作流程无法轻松地导入和执行。缺乏互操作性是由于两个系统的计算,工作流语言和架构模型的差异。这种缺乏互操作性限制了用户社区之间的工作流程并导致开发工作的重复。结果在本文中,我们呈现Tavaxy,一个独立的系统,用于基于使用可扩展的可重新使用工作流模式创建和执行工作流程。 Tavaxy提供了一组新功能,简化和增强了序列分析应用的开发:它允许在一个环境中集成现有的Taverna和Galaxy工作流,​​并支持使用云计算功能。基于分层工作流程和工作流模式的概念,在运行时和设计时级别无缝地支持现有Taverna和Galaxy工作流程的集成。在Tavaxy中使用云计算是灵活的,用户可以在云上实例化整个系统,或者将某些子工作流的执行委托到云基础架构。结论Tavaxy通过引入使用工作流模式来简化工作流程创建来减少工作流程开发周期。它可以从Taverna和Galaxy重复使用和集成现有(子)工作流程,并允许创建混合工作流程。其附加功能利用高性能云计算最近的进步,以应对增加的数据大小和分析复杂性。可以通过启用云的Web接口或下载并安装以在用户的​​本地环境中运行来访问系统。与Tavaxy相关的所有资源都可在http://www.tavaxy.org webcite提供。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号