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Comparison, alignment, and synchronization of cell line information between CLO and EFO

机译:CLO和EFO之间的细胞系信息的比较,对齐和同步

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The Experimental Factor Ontology (EFO) is an application ontology driven by experimental variables including cell lines to organize and describe the diverse experimental variables and data resided in the EMBL-EBI resources. The Cell Line Ontology (CLO) is an OBO community-based ontology that contains information of immortalized cell lines and relevant experimental components. EFO integrates and extends ontologies from the bio-ontology community to drive a number of practical applications. It is desirable that the community shares design patterns and therefore that EFO reuses the cell line representation from the Cell Line Ontology (CLO). There are, however, challenges to be addressed when developing a common ontology design pattern for representing cell lines in both EFO and CLO. In this study, we developed a strategy to compare and map cell line terms between EFO and CLO. We examined Cellosaurus resources for EFO-CLO cross-references. Text labels of cell lines from both ontologies were verified by biological information axiomatized in each source. The study resulted?in the identification 873 EFO-CLO aligned and 344 EFO unique immortalized permanent cell lines. All of these cell lines were?updated to CLO and the cell line related information was?merged. A design pattern that integrates EFO and CLO was also developed. Our study compared, aligned, and synchronized the cell line information between CLO and EFO.?The final updated CLO will be examined as the candidate ontology to import and replace eligible EFO cell line classes thereby supporting the interoperability in the bio-ontology domain. Our mapping pipeline illustrates the use of ontology in aiding biological data standardization and integration through the biological and semantics content of cell lines.
机译:实验因素本体论(EFO)是由实验变量(包括细胞系)驱动的应用程序本体,用于组织和描述EMBL-EBI资源中的各种实验变量和数据。细胞系本体论(CLO)是基于OBO社区的本体,其中包含永生化细胞系和相关实验成分的信息。 EFO集成并扩展了生物本体论社区中的本体论,以推动许多实际应用。希望社区共享设计模式,因此EFO会重用来自Cell Line Ontology(CLO)的Cell Line表示形式。但是,在开发用于表示EFO和CLO中的细胞系的通用本体设计模式时,需要解决的挑战。在这项研究中,我们开发了一种策略来比较和映射EFO和CLO之间的细胞系术语。我们检查了Cellosaurus资源中的EFO-CLO交叉引用。来自两种本体的细胞系的文本标签通过在每个来源中公理化的生物学信息进行验证。该研究的结果是鉴定了873个EFO-CLO对齐的和344个EFO独特的永生化永久细胞系。将所有这些细胞系更新为CLO,并合并与细胞系相关的信息。还开发了将EFO和CLO集成在一起的设计模式。我们的研究比较,对齐和同步了CLO和EFO之间的细胞系信息。最终更新的CLO将作为候选本体来进行检查,以导入和替换合格的EFO细胞系类别,从而支持生物本体领域的互操作性。我们的映射流程说明了本体在通过细胞系的生物学和语义内容帮助生物数据标准化和整合中的用途。

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