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Overview of biological database mapping services for interoperation between different 'omics' datasets

机译:用于不同“组学”数据集之间互操作的生物数据库映射服务概述

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Many primary biological databases are dedicated to providing annotation for a specific type of biological molecule such as a clone, transcript, gene or protein, but often with limited cross-references. Therefore, enhanced mapping is required between these databases to facilitate the correlation of independent experimental datasets. For example, molecular biology experiments conducted on samples (DNA, mRNA or protein) often yield more than one type of 'omics' dataset as an object for analysis (eg a sample can have a genomics as well as proteomics expression dataset available for analysis). Thus, in order to map the two datasets, the identifier type from one dataset is required to be linked to another dataset, so preventing loss of critical information in downstream analysis. This identifier mapping can be performed using identifier converter software relevant to the query and target identifier databases. This review presents the publicly available web-based biological database identifier converters, with comparison of their usage, input and output formats, and the types of available query and target database identifier types.
机译:许多主要的生物学数据库专用于为特定类型的生物学分子(例如克隆,转录本,基因或蛋白质)提供注释,但通常具有有限的交叉引用。因此,这些数据库之间需要增强的映射关系,以促进独立实验数据集的相关性。例如,对样品(DNA,mRNA或蛋白质)进行的分子生物学实验通常会产生不止一种类型的“组学”数据集作为分析对象(例如,样品可以具有可用于分析的基因组学和蛋白质组学表达数据集) 。因此,为了映射两个数据集,需要将一个数据集的标识符类型链接到另一个数据集,从而防止在下游分析中丢失关键信息。可以使用与查询和目标标识符数据库相关的标识符转换器软件来执行此标识符映射。这篇评论介绍了可公开使用的基于Web的生物数据库标识符转换器,并对其用法,输入和输出格式以及可用的查询类型和目标数据库标识符类型进行了比较。

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