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首页> 外文期刊>Journal of Biomedical Semantics >Enhanced XAO: the ontology of Xenopus anatomy and development underpins more accurate annotation of gene expression and queries on Xenbase
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Enhanced XAO: the ontology of Xenopus anatomy and development underpins more accurate annotation of gene expression and queries on Xenbase

机译:增强的XAO:Xenopus解剖学和开发的本体论支持Xenbase上基因表达和查询的更准确注释

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Background The African clawed frogs Xenopus laevis and Xenopus tropicalis are prominent animal model organisms. Xenopus research contributes to the understanding of genetic, developmental and molecular mechanisms underlying human disease. The Xenopus Anatomy Ontology (XAO) reflects the anatomy and embryological development of Xenopus. The XAO provides consistent terminology that can be applied to anatomical feature descriptions along with a set of relationships that indicate how each anatomical entity is related to others in the embryo, tadpole, or adult frog. The XAO is integral to the functionality of Xenbase (http://www.xenbase.org webcite), the Xenopus model organism database. Results We significantly expanded the XAO in the last five years by adding 612 anatomical terms, 2934 relationships between them, 640 synonyms, and 547 ontology cross-references. Each term now has a definition, so database users and curators can be certain they are selecting the correct term when specifying an anatomical entity. With developmental timing information now asserted for every anatomical term, the ontology provides internal checks that ensure high-quality gene expression and phenotype data annotation. The XAO, now with 1313 defined anatomical and developmental stage terms, has been integrated with Xenbase expression and anatomy term searches and it enables links between various data types including images, clones, and publications. Improvements to the XAO structure and anatomical definitions have also enhanced cross-references to anatomy ontologies of other model organisms and humans, providing a bridge between Xenopus data and other vertebrates. The ontology is free and open to all users. Conclusions The expanded and improved XAO allows enhanced capture of Xenopus research data and aids mechanisms for performing complex retrieval and analysis of gene expression, phenotypes, and antibodies through text-matching and manual curation. Its comprehensive references to ontologies across taxa help integrate these data for human disease modeling.
机译:背景技术非洲爪蛙非洲爪蟾和热带爪蟾是著名的动物模型生物。爪蟾的研究有助于理解人类疾病的遗传,发育和分子机制。爪蟾解剖本体论(XAO)反映了爪蟾的解剖学和胚胎学发展。 XAO提供了可用于解剖特征描述的一致术语,以及一组关系,这些关系指示了每个解剖实体如何与胚胎,t或成年青蛙中的其他实体相关。 XAO是Xenpus模型生物数据库Xenbase(http://www.xenbase.org webcite)的功能的组成部分。结果在过去的五年中,我们通过添加612个解剖术语,它们之间的2934个关系,640个同义词和547个本体交叉引用大大扩展了XAO。现在,每个术语都有一个定义,因此数据库用户和策展人可以确定在指定解剖实体时他们正在选择正确的术语。现在,对于每个解剖学术语都断言了发育时机信息,该本体提供了内部检查,以确保高质量的基因表达和表型数据注释。 XAO,现在具有1313个定义的解剖学和发育阶段术语,已与Xenbase表达和解剖学术语搜索集成在一起,它使包括图像,克隆和出版物在内的各种数据类型之间可以建立链接。 XAO结构和解剖学定义的改进也增强了对其他模型生物和人类的解剖本体的交叉引用,为非洲爪蟾的数据和其他脊椎动物之间的桥梁提供了桥梁。本体是免费的,并向所有用户开放。结论扩展和改进的XAO可以增强对非洲爪蟾研究数据的捕获,并有助于通过文本匹配和手动管理对基因表达,表型和抗体进行复杂检索和分析的机制。它对整个分类单元中的本体的全面引用有助于将这些数据集成到人类疾病建模中。

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