Department of Genetics, University of Cambridge, Cambridge, UK.
Bioinformatics. 2012 May 1;28(9):1262-9. doi: 10.1093/bioinformatics/bts113. Epub 2012 Mar 7.
Advancing our understanding of how nervous systems work will require the ability to store and annotate 3D anatomical datasets, recording morphology, partonomy and connectivity at multiple levels of granularity from subcellular to gross anatomy. It will also require the ability to integrate this data with other data-types including functional, genetic and electrophysiological data. The web ontology language OWL2 provides the means to solve many of these problems. Using it, one can rigorously define and relate classes of anatomical structure using multiple criteria. The resulting classes can be used to annotate datasets recording, for example, gene expression or electrophysiology. Reasoning software can be used to automate classification and error checking and to construct and answer sophisticated combinatorial queries. But for such queries to give consistent and biologically meaningful results, it is important that both classes and the terms (relations) used to relate them are carefully defined.
We formally define a set of relations for recording the spatial and connectivity relationships of neuron classes and brain regions in a broad range of species, from vertebrates to arthropods. We illustrate the utility of our approach via its application in the ontology that drives the Virtual Fly Brain web resource.
The relations we define are available from http://purl.obolibrary.org/obo/ro.owl. They are used in the Drosophila anatomy ontology (http://purl.obolibrary.org/obo/fbbt/2011-09-06/), which drives the web resource http://www.virtualflybrain.org
为了深入了解神经系统的工作原理,我们需要能够存储和注释 3D 解剖数据集,记录从亚细胞到大体解剖的多个粒度级别的形态、部分分类和连接性。它还需要能够将这些数据与其他数据类型(包括功能、遗传和电生理数据)集成。Web 本体语言 OWL2 提供了解决许多这些问题的方法。使用它,人们可以使用多种标准严格定义和关联解剖结构的类。由此产生的类可用于注释记录例如基因表达或电生理学的数据的数据集。推理软件可用于自动化分类和错误检查,以及构建和回答复杂的组合查询。但是,为了使这些查询能够给出一致且具有生物学意义的结果,重要的是仔细定义类和用于关联它们的术语(关系)。
我们正式定义了一组关系,用于记录从脊椎动物到节肢动物等广泛物种中神经元类和脑区的空间和连接关系。我们通过在驱动虚拟蝇脑网络资源的本体中的应用来说明我们方法的实用性。
我们定义的关系可从 http://purl.obolibrary.org/obo/ro.owl 获得。它们用于驱动网络资源 http://www.virtualflybrain.org 的果蝇解剖本体(http://purl.obolibrary.org/obo/fbbt/2011-09-06/)。