首页> 外文会议>Eighth Pacific Symposium on Biocomputing (PSB), Jan 3-7, 2003, Kauai, Hawaii >FUNCTIONAL DISCRIMINATION OF GENE EXPRESSION PATTERNS IN TERMS OF THE GENE ONTOLOGY
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FUNCTIONAL DISCRIMINATION OF GENE EXPRESSION PATTERNS IN TERMS OF THE GENE ONTOLOGY

机译:基因本体论术语中基因表达模式的功能判别

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摘要

The ever-growing amount of experimental data in molecular biology and genetics requires its automated analysis, by employing sophisticated knowledge discovery tools. We use an Inductive Logic Programming (ILP) learner to induce functional discrimination rules between genes studied using microarrays and found to be differentially expressed in three recently discovered subtypes of adenocarcinoma of the lung. The discrimination rules involve functional annotations from the Proteome HumanPSD database in terms of the Gene Ontology, whose hierarchical structure is essential for this task. While most of the lower levels of gene expression data (pre)processing have been automated, our work can be seen as a step toward automating the higher level functional analysis of the data. We view our application not just as a prototypical example of applying more sophisticated machine learning techniques to the functional analysis of genes, but also as an incentive for developing increasingly more sophisticated functional annotations and ontologies, that can be automatically processed by such learning algorithms.
机译:分子生物学和遗传学中不断增长的实验数据要求通过使用复杂的知识发现工具来进行自动分析。我们使用归纳逻辑编程(ILP)学习器来诱导使用微阵列研究的基因之间的功能区分规则,并发现在最近发现的三种肺腺癌亚型中差异表达。区分规则涉及蛋白质组HumanPSD数据库中基于基因本体的功能注释,其层次结构对于此任务至关重要。尽管大多数较低级别的基因表达数据(预处理)已实现自动化,但我们的工作可以看作是朝着自动化数据的高层功能分析迈出的一步。我们认为我们的应用不仅是将更复杂的机器学习技术应用于基因功能分析的典型示例,而且还被视为开发越来越复杂的功能注释和本体的诱因,这些注释和本体可以由此类学习算法自动处理。

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