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Algal Functional Annotation Tool: a web-based analysis suite to functionally interpret large gene lists using integrated annotation and expression data

机译:藻类功能注释工具:基于网络的分析套件可使用集成的注释和表达数据功能性解释大型基因列表

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摘要

BackgroundProgress in genome sequencing is proceeding at an exponential pace, and several new algal genomes are becoming available every year. One of the challenges facing the community is the association of protein sequences encoded in the genomes with biological function. While most genome assembly projects generate annotations for predicted protein sequences, they are usually limited and integrate functional terms from a limited number of databases. Another challenge is the use of annotations to interpret large lists of 'interesting' genes generated by genome-scale datasets. Previously, these gene lists had to be analyzed across several independent biological databases, often on a gene-by-gene basis. In contrast, several annotation databases, such as DAVID, integrate data from multiple functional databases and reveal underlying biological themes of large gene lists. While several such databases have been constructed for animals, none is currently available for the study of algae. Due to renewed interest in algae as potential sources of biofuels and the emergence of multiple algal genome sequences, a significant need has arisen for such a database to process the growing compendiums of algal genomic data.
机译:背景技术基因组测序的进展正以指数级速度进行,并且每年都有几个新的藻类基因组可供使用。社区面临的挑战之一是基因组中编码的蛋白质序列与生物学功能的关联。尽管大多数基因组组装项目会生成预测蛋白质序列的注释,但它们通常受到限制,并且会整合有限数量的数据库中的功能性术语。另一个挑战是使用注释来解释由基因组规模的数据集生成的大量“有趣”基因。以前,通常必须逐个基因地在几个独立的生物学数据库中分析这些基因清单。相反,一些注释数据库(例如DAVID)整合了来自多个功能数据库的数据,并揭示了大型基因列表的潜在生物学主题。虽然已经为动物建立了几个这样的数据库,但是目前尚无用于藻类研究的数据库。由于人们对藻类作为生物燃料的潜在来源重新产生了兴趣,并且出现了多个藻类基因组序列,因此迫切需要这种数据库来处理藻类基因组数据的不断增长的汇编。

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