Post-composing ontology terms for efficient phenotyping in plant breeding.

IF 3.4 4区 生物学 Q1 MATHEMATICAL & COMPUTATIONAL BIOLOGY
Naama Menda, Bryan J Ellerbrock, Christiano C Simoes, Srikanth Kumar Karaikal, Christine Nyaga, Mirella Flores-Gonzalez, Isaak Y Tecle, David Lyon, Afolabi Agbona, Paterne A Agre, Prasad Peteti, Violet Akech, Amos Asiimwe, Eglantine Fauvelle, Karima Meghar, Thierry Tran, Dominique Dufour, Laurel Cooper, Marie-Angélique Laporte, Elizabeth Arnaud, Lukas A Mueller
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引用次数: 0

Abstract

Ontologies are widely used in databases to standardize data, improving data quality, integration, and ease of comparison. Within ontologies tailored to diverse use cases, post-composing user-defined terms reconciles the demands for standardization on the one hand and flexibility on the other. In many instances of Breedbase, a digital ecosystem for plant breeding designed for genomic selection, the goal is to capture phenotypic data using highly curated and rigorous crop ontologies, while adapting to the specific requirements of plant breeders to record data quickly and efficiently. For example, post-composing enables users to tailor ontology terms to suit specific and granular use cases such as repeated measurements on different plant parts and special sample preparation techniques. To achieve this, we have implemented a post-composing tool based on orthogonal ontologies providing users with the ability to introduce additional levels of phenotyping granularity tailored to unique experimental designs. Post-composed terms are designed to be reused by all breeding programs within a Breedbase instance but are not exported to the crop reference ontologies. Breedbase users can post-compose terms across various categories, such as plant anatomy, treatments, temporal events, and breeding cycles, and, as a result, generate highly specific terms for more accurate phenotyping.

后期合成本体术语,实现植物育种中的高效表型。
本体论被广泛应用于数据库中,以实现数据标准化,提高数据质量、集成度和比较便利性。在为不同用例量身定制的本体中,后期合成用户定义的术语可以兼顾标准化需求和灵活性需求。Breedbase 是一个为基因组选育而设计的植物育种数字生态系统,在许多情况下,其目标是使用经过高度整理和严格定义的作物本体来捕获表型数据,同时适应植物育种者快速高效记录数据的具体要求。例如,通过后期合成,用户可以定制本体术语,以适应特定的细粒度使用情况,如对不同植物部位的重复测量和特殊的样品制备技术。为此,我们在正交本体论的基础上开发了一种后期合成工具,使用户能够根据独特的实验设计引入额外的表型粒度。后期合成的术语可被Breedbase实例中的所有育种计划重复使用,但不会导出到作物参考本体中。Breedbase 用户可在植物解剖学、处理、时间事件和育种周期等不同类别中后组合术语,从而生成高度具体的术语,实现更准确的表型分析。
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来源期刊
Database: The Journal of Biological Databases and Curation
Database: The Journal of Biological Databases and Curation MATHEMATICAL & COMPUTATIONAL BIOLOGY-
CiteScore
9.00
自引率
3.40%
发文量
100
审稿时长
>12 weeks
期刊介绍: Huge volumes of primary data are archived in numerous open-access databases, and with new generation technologies becoming more common in laboratories, large datasets will become even more prevalent. The archiving, curation, analysis and interpretation of all of these data are a challenge. Database development and biocuration are at the forefront of the endeavor to make sense of this mounting deluge of data. Database: The Journal of Biological Databases and Curation provides an open access platform for the presentation of novel ideas in database research and biocuration, and aims to help strengthen the bridge between database developers, curators, and users.
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