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DATA-DRIVEN ONTOLOGIES

机译:数据驱动的本体

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摘要

Gene networks are important tools in studying gene-gene relationships and gene function. Understanding the relationships within these networks is an important challenge. Ontologies are a critical tool in helping deal with these data. The use of the Gene Ontology, for example, has become routine in methods for validation, discovery, etc. Here we present a novel algorithm that synthesizes an ontology by considering both extant annotation terms and also the connections between genes in gene networks. The process is efficient and produces easily inspectable ontologies. Because the relationships drawn between terms are heavily influenced by data, we call these "Data-Driven" Ontologies. We apply this algorithm to both discover new relationships between biological processes and as a tool to compare sets of genes across microrarray experiments.
机译:基因网络是研究基因与基因的关系和基因功能的重要工具。了解这些网络之间的关系是一项重要的挑战。本体是帮助处理这些数据的关键工具。例如,在验证,发现等方法中,基因本体的使用已成为常规方法。在这里,我们提出一种新颖的算法,该算法通过考虑现有注释术语以及基因网络中基因之间的联系来合成本体。该过程高效并且产生易于检查的本体。由于术语之间绘制的关系受数据的影响很大,因此我们将其称为“数据驱动”本体。我们应用此算法来发现生物学过程之间的新关系,并将其作为在微阵列实验中比较基因集的工具。

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