Department of Plant Biology, University of Minnesota, St. Paul, Minnesota 55108 USA.
Am J Bot. 2011 Sep;98(9):1504-10. doi: 10.3732/ajb.1100047. Epub 2011 Aug 29.
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The Fungal Subcellular Ontology used in the Assembling the Fungal Tree of Life project is a taxon-wide ontology (controlled vocabulary for attributes) designed to clarify and integrate the broad range of subcellular characters and character states used in higher-level fungal systematics. As in the algae, cellular characters are important phylogenetic markers in kingdom Fungi. The Fungal Subcellular Ontology has been developed primarily to help researchers, especially systematists, in their search for information on subcellular characters across the Fungi, and it complements existing biological ontologies, including the Gene Ontology. •
The character and character state data set used in the Assembling the Fungal Tree of Life Structural and Biochemical Database (http://aftol.umn.edu) is the source of terms for generating the ontology. After the terms were accessioned and defined, they were combined in OBO-Edit file format, and the ontology was edited using OBO-Edit, an open source Java tool supported by the Gene Ontology project. •
The Fungal Subcellular Ontology covers both model and nonmodel fungi in great detail and is downloadable in OBO-Edit format at website http://aftol.umn.edu/ontology/fungal_subcellular.obo. •
The ontology provides a controlled vocabulary of fungal subcellular terms and functions as an operating framework for the Assembling the Fungal Tree of Life Structural and Biochemical Database. An ontology-based design enhances reuse of data deposited in the Structural and Biochemical Database from other independent biological and genetic databases. Data integration approaches that advance access to data from the diversity of biological databases are imperative as interdisciplinary research gains importance. In this sense, the Fungal Subcellular Ontology becomes highly relevant to mycologists as well as nonmycologists because fungi interact actively as symbionts and parasites or passively with many other life forms.
在组装真菌生命树项目中使用的真菌亚细胞本体是一个分类群范围的本体(用于属性的控制词汇),旨在澄清和整合在高级真菌系统学中使用的广泛的亚细胞特征和特征状态。与藻类一样,细胞特征是真菌王国中重要的系统发育标记。真菌亚细胞本体主要是为了帮助研究人员,特别是系统学家,在整个真菌界搜索有关亚细胞特征的信息,它补充了现有的生物本体,包括基因本体。
用于组装真菌生命树结构和生化数据库(http://aftol.umn.edu)的特征和特征状态数据集是生成本体的术语来源。在术语被收录和定义之后,它们被组合在 OBO-Edit 文件格式中,并使用 OBO-Edit 编辑本体,OBO-Edit 是一个由基因本体项目支持的开源 Java 工具。
真菌亚细胞本体非常详细地涵盖了模型和非模型真菌,并可在网站 http://aftol.umn.edu/ontology/fungal_subcellular.obo 以 OBO-Edit 格式下载。
本体提供了真菌亚细胞术语的受控词汇,并作为组装真菌生命树结构和生化数据库的操作框架。基于本体的设计增强了从其他独立的生物和遗传数据库中重用在结构和生化数据库中存储的数据的能力。随着跨学科研究变得越来越重要,推进从各种生物数据库访问数据的数据集成方法势在必行。从这个意义上说,真菌亚细胞本体不仅与真菌学家而且与非真菌学家密切相关,因为真菌作为共生体和寄生虫积极相互作用,或者与许多其他生命形式被动地相互作用。