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生物信息学工具用于微生物定量和功能宏基因组和宏转录组数据分析。

Bioinformatics tools for quantitative and functional metagenome and metatranscriptome data analysis in microbes.

机构信息

Department of Biochemical Science and Technology, National Taiwan University, Taiwan.

Department of Mathematics and Statistics at South Dakota State University, Brookings, SD, USA.

出版信息

Brief Bioinform. 2018 Nov 27;19(6):1415-1429. doi: 10.1093/bib/bbx051.

Abstract

Metagenomic and metatranscriptomic sequencing approaches are more frequently being used to link microbiota to important diseases and ecological changes. Many analyses have been used to compare the taxonomic and functional profiles of microbiota across habitats or individuals. While a large portion of metagenomic analyses focus on species-level profiling, some studies use strain-level metagenomic analyses to investigate the relationship between specific strains and certain circumstances. Metatranscriptomic analysis provides another important insight into activities of genes by examining gene expression levels of microbiota. Hence, combining metagenomic and metatranscriptomic analyses will help understand the activity or enrichment of a given gene set, such as drug-resistant genes among microbiome samples. Here, we summarize existing bioinformatics tools of metagenomic and metatranscriptomic data analysis, the purpose of which is to assist researchers in deciding the appropriate tools for their microbiome studies. Additionally, we propose an Integrated Meta-Function mapping pipeline to incorporate various reference databases and accelerate functional gene mapping procedures for both metagenomic and metatranscriptomic analyses.

摘要

宏基因组学和宏转录组学测序方法越来越多地被用于将微生物组与重要疾病和生态变化联系起来。许多分析方法被用于比较不同生境或个体的微生物组的分类和功能特征。虽然很大一部分宏基因组分析侧重于物种水平的分析,但一些研究使用菌株水平的宏基因组分析来研究特定菌株与某些情况之间的关系。宏转录组分析通过检查微生物组的基因表达水平,为基因的活性提供了另一个重要的见解。因此,结合宏基因组学和宏转录组学分析将有助于了解特定基因集(例如微生物组样本中的耐药基因)的活性或富集。在这里,我们总结了现有的宏基因组学和宏转录组学数据分析的生物信息学工具,其目的是帮助研究人员为他们的微生物组研究选择合适的工具。此外,我们提出了一个集成的元功能映射管道,以整合各种参考数据库,并加速宏基因组学和宏转录组学分析的功能基因映射过程。

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