Functional analysis of metagenomes and metatranscriptomes using SEED and KEGG

基因组 上传 小桶 计算机科学 范围(计算机科学) 计算生物学 生物 数据科学 万维网 基因 基因本体论 遗传学 基因表达 程序设计语言
作者
Suparna Mitra,Paul Rupek,Daniel Richter,Tim Urich,Jack A. Gilbert,Folker Meyer,Andreas Wilke,Daniel H. Huson
出处
期刊:BMC Bioinformatics [BioMed Central]
卷期号:12 (S1) 被引量:144
标识
DOI:10.1186/1471-2105-12-s1-s21
摘要

Metagenomics is the study of microbial organisms using sequencing applied directly to environmental samples. Technological advances in next-generation sequencing methods are fueling a rapid increase in the number and scope of metagenome projects. While metagenomics provides information on the gene content, metatranscriptomics aims at understanding gene expression patterns in microbial communities. The initial computational analysis of a metagenome or metatranscriptome addresses three questions: (1) Who is out there? (2) What are they doing? and (3) How do different datasets compare? There is a need for new computational tools to answer these questions. In 2007, the program MEGAN (MEtaGenome ANalyzer) was released, as a standalone interactive tool for analyzing the taxonomic content of a single metagenome dataset. The program has subsequently been extended to support comparative analyses of multiple datasets. The focus of this paper is to report on new features of MEGAN that allow the functional analysis of multiple metagenomes (and metatranscriptomes) based on the SEED hierarchy and KEGG pathways. We have compared our results with the MG-RAST service for different datasets. The MEGAN program now allows the interactive analysis and comparison of the taxonomical and functional content of multiple datasets. As a stand-alone tool, MEGAN provides an alternative to web portals for scientists that have concerns about uploading their unpublished data to a website.

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