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Towards a Phenotypic Semantic Web

机译:走向表型语义网

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The impact of the internet in Biology is undeniable. The next stage in the evolution of the Internet for biological and molecular resource discovery must be towards what has been described as a semantic Web, where not only humans but machines can make "biologically intelligent" decisions based on collections of authenticable assertions about biology and molecular sciences. This vision requires agreed common representations of data and metadata shared and processed by automated tools as well as by people. Ontologies have become an integral part of achieving this and transformed biological resource management.nnIn this review, we describe the necessary transition steps from the initial conception of the internet to the realisation of the semantic web using as an example its application in phenotypic information construction and delivery. We review the different parts of the Semantic web, such as XML, metadata, RDF, OWL, digital signatures, ontologies and grids whilst concentrating on how ontology is applied in Biology and more specifically in phenotype annotation. Finally, we discuss how the semantic web will transform biological information management, retrieval and visualisation whilst ensuring the availability of high quality data of the correct type and format for the determination of model structures and biological systems.
机译:互联网对生物学的影响是不可否认的。用于生物学和分子资源发现的互联网发展的下一阶段必须朝着被称为语义网的方向发展,在语义网中,不仅人类而且机器都可以基于对生物学和分子的可证实断言的集合做出“生物学智能”的决策。科学。这种愿景要求由自动化工具以及由人共享和处理的数据和元数据的公认通用表示形式。本体已成为实现这一目标并转变生物资源管理的不可或缺的一部分。在这篇综述中,我们以互联网在表型信息构建和应用中的应用为例,描述了从互联网最初的构想到语义网的实现的必要过渡步骤。交货。我们重点介绍语义网的不同部分,例如XML,元数据,RDF,OWL,数字签名,本体和网格,同时重点介绍如何将本体应用于生物学,尤其是表型注释。最后,我们讨论了语义网如何在确保模型结构和生物系统确定的正确类型和格式的高质量数据可用性的同时,转变生物信息管理,检索和可视化。

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