Measuring metagenome diversity and similarity with Hill numbers
Zhanshan (Sam) Ma1,2; Lianwei Li1
刊名Molecular Ecology Resources
2018
期号*页码:1–17
关键词Hill Numbers Medical Ecology Metagenome Diversity Metagenome Functional Gene Cluster Diversity Metagenome Similarity Metagenomic Gene Diversity
DOI10.1111/1755-0998.12923
英文摘要

The first step of any metagenome sequencing project is to get the inventory ofOTU abundances (operational taxonomic units) and/or metagenomic gene abun-dances. The former is generated with 16SrRNAtagged amplicon sequencing tech-nology, and the latter can be generated from either genetargeted or wholesample shotgun metagenomics technologies. With 16SrRNA data sets, measuringcommunity diversity with diversity indexes such as species richness and Shannon'sindex has been a de facto standard analysis; nevertheless, similarly comprehensiveapproaches to metagenomic gene abundances are still largely missing, despite thatboth OTU and gene abundances are DNA reads. Here, we adapt the Hill numbers,which were reintroduced to macrocommunity ecology recently and are nowwidely regarded as a most appropriate measure system for ecological diversity,for measuring metagenome alpha, beta and gammadiversities, and similarity. Ourproposal includes the following: (a) Metagenomic gene (MG) diversity measures thesinglegenelevel metagenome diversity; (b) TypeI metagenome functional gene clus-ter (MFGC) diversity measures the diversity of functional gene clusters but ignor-ing withincluster gene abundance information; (c) TypeII MFGC diversityconsiders withincluster gene abundances information and integrates geneclusterlevel metagenome diversity and functional gene redundancy information; and (d)Four classes of Hillnumbersbased similarity metrics, including local gene overlap,regional gene overlap, gene homogeneity measure and gene turnover complement,were introduced in terms of MG and MFGC, respectively. We demonstrate theproposal with the gut metagenomes from healthy and IBD (inflammatory boweldisease) cohorts. The Hill numbers offer a unified approach to cohesively andcomprehensively measuring the ecological and metagenome diversities ofmicrobiomes.

语种英语
内容类型期刊论文
源URL[http://159.226.149.26:8080/handle/152453/12314]  
专题昆明动物研究所_计算生物与生物信息学
通讯作者Zhanshan (Sam) Ma
作者单位1.Computational Biology and Medical Ecology Lab, State Key Laboratory of Genetic Resources and Evolution, Kunming Institute of Zoology, Chinese Academy of Sciences, Kunming, China
2.Center for Excellence in Animal Evolution and Genetics, Chinese Academy of Sciences, Kunming, China
推荐引用方式
GB/T 7714
Zhanshan ,Lianwei Li. Measuring metagenome diversity and similarity with Hill numbers[J]. Molecular Ecology Resources,2018(*):1–17.
APA Zhanshan ,&Lianwei Li.(2018).Measuring metagenome diversity and similarity with Hill numbers.Molecular Ecology Resources(*),1–17.
MLA Zhanshan ,et al."Measuring metagenome diversity and similarity with Hill numbers".Molecular Ecology Resources .*(2018):1–17.
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