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Modelling biological processes using workflow and Petri Net models.

机译:使用工作流和Petri Net模型对生物过程进行建模。

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Motivation: Biological processes can be considered at many levels of detail, ranging from atomic mechanism to general processes such as cell division, cell adhesion or cell invasion. The experimental study of protein function and gene regulation typically provides information at many levels. The representation of hierarchical process knowledge in biology is therefore a major challenge for bioinformatics. To represent high-level processes in the context of their component functions, we have developed a graphical knowledge model for biological processes that supports methods for qualitative reasoning. Results: We assessed eleven diverse models that were developed in the fields of software engineering, business, and biology, to evaluate their suitability for representing and simulating biological processes. Based on this assessment, we combined the best aspects of two models: Workflow/Petri Net and a biological concept model. The Workflow model can represent nesting and ordering of processes, the structural components that participate in the processes, and the roles that they play. It also maps to Petri Nets, which allow verification of formal properties and qualitative simulation. The biological concept model, TAMBIS, provides a framework for describing biological entities that can be mapped to the workflow model. We tested our model by representing malaria parasites invading host erythrocytes, and composed queries, in five general classes, to discover relationships among processes and structural components. We used reachability analysis to answer queries about the dynamic aspects of the model. Availability: The model is available at http://smi.stanford.edu/projects/helix/pubs/process-model/ Contact: peleg
机译:动机:可以从许多细节层面考虑生物过程,从原子机理到一般过程,例如细胞分裂,细胞粘附或细胞侵袭。蛋白质功能和基因调控的实验研究通常提供许多级别的信息。因此,生物学中分层过程知识的表示是生物信息学的主要挑战。为了在其组件功能的上下文中表示高级过程,我们为生物过程开发了图形知识模型,该模型支持定性推理方法。结果:我们评估了在软件工程,商业和生物学领域开发的11种不同模型,以评估它们在表示和模拟生物过程中的适用性。基于此评估,我们结合了两种模型的最佳方面:工作流/ Petri网和生物学概念模型。工作流模型可以表示流程的嵌套和排序,参与流程的结构组件以及它们所扮演的角色。它还映射到Petri Nets,后者允许验证形式属性和定性模拟。生物学概念模型TAMBIS提供了一个框架,用于描述可以映射到工作流模型的生物学实体。我们通过代表入侵宿主红细胞的疟原虫来测试我们的模型,并在五个一般类别中组成查询,以发现过程与结构成分之间的关​​系。我们使用可达性分析来回答有关模型动态方面的查询。可用性:该模型可从以下网站获得:http://smi.stanford.edu/projects/helix/pubs/process-model/联系人:peleg

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