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Towards refactoring the Molecular Function Ontology with a UML profile for function modeling

机译:通过UML配置文件来重构分子函数本体,用于功能建模

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摘要

Abstract Background Gene Ontology (GO) is the largest resource for cataloging gene products. This resource grows steadily and, naturally, this growth raises issues regarding the structure of the ontology. Moreover, modeling and refactoring large ontologies such as GO is generally far from being simple, as a whole as well as when focusing on certain aspects or fragments. It seems that human-friendly graphical modeling languages such as the Unified Modeling Language (UML) could be helpful in connection with these tasks. Results We investigate the use of UML for making the structural organization of the Molecular Function Ontology (MFO), a sub-ontology of GO, more explicit. More precisely, we present a UML dialect, called the Function Modeling Language (FueL), which is suited for capturing functions in an ontologically founded way. FueL is equipped, among other features, with language elements that arise from studying patterns of subsumption between functions. We show how to use this UML dialect for capturing the structure of molecular functions. Furthermore, we propose and discuss some refactoring options concerning fragments of MFO. Conclusions FueL enables the systematic, graphical representation of functions and their interrelations, including making information explicit that is currently either implicit in MFO or is mainly captured in textual descriptions. Moreover, the considered subsumption patterns lend themselves to the methodical analysis of refactoring options with respect to MFO. On this basis we argue that the approach can increase the comprehensibility of the structure of MFO for humans and can support communication, for example, during revision and further development.
机译:摘要背景基因本体(GO)是目录基因产品的最大资源。这种资源稳步增长,并且自然地,这种增长提出了关于本体结构的问题。此外,诸如Go的大型本体的建模和重构通常远远远非简单,整体以及关注某些方面或片段时。似乎统一建模语言(UML)等人友好的图形建模语言可以与这些任务有用。结果我们调查了UML对制作分子函数本体(MFO)的结构组织的使用,更明确的分子函数本体(MFO),更明确。更确切地说,我们介绍了一个称为函数建模语言(燃料)的UML方言,这适用于捕获在本体学上成熟的方式的函数。燃料在其他特征中,具有从函数之间的研究模式中出现的语言元素。我们展示了如何使用此UML方言来捕获分子函数的结构。此外,我们提出并讨论了关于MFO片段的一些重构选项。结论燃料使功能的系统,图形表示和它们的相互关系,包括制作目前隐含在MFO中的信息的信息,或者主要捕获在文本描述中。此外,所考虑的归档模式赋予了关于MFO重构选项的方法分析。在此基础上,我们认为该方法可以增加人类的MFO结构的可理解性,并且可以在修改和进一步发展期间支持沟通。

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