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A human gut microbial gene catalogue established by metagenomic sequencing

Nature · 2010 · Vol. 464(7285) · pp. 59–65
Junjie QinRuiqiang LiJeroen RaesManimozhiyan ArumugamKristoffer Sølvsten BurgdorfChaysavanh ManichanhTrine NielsenNicolas PonsFlorence LevenezTakuji YamadaDaniel R. MendeJunhua LiJunming XuShaochuan LiDongfang LiJianjun CaoBo WangHuiqing LiangHuisong ZhengYinlong XieJulien TapPatricia LepageMarcelo BertalanJean-Michel BattoTorben HansenDenis Le PaslierAllan LinnebergHenrik Bjørn NielsenÉric PelletierPierre RenaultThomas Sicheritz‐PonténA. Keith TurnerHongmei ZhuChang YuShengting LiMin JianYan ZhouRui LiXiuqing ZhangSonggang LiNan QinHuanming YangJian WangSøren BrunakJoël DoréFrancisco GuarnerKarsten KristiansenOluf PedersenJulian ParkhillJean WeissenbachPeer BorkS. Dusko EhrlichJun Wang

Abstract

To understand the impact of gut microbes on human health and well-being it is crucial to assess their genetic potential. Here we describe the Illumina-based metagenomic sequencing, assembly and characterization of 3.3 million non-redundant microbial genes, derived from 576.7 gigabases of sequence, from faecal samples of 124 European individuals. The gene set, approximately 150 times larger than the human gene complement, contains an overwhelming majority of the prevalent (more frequent) microbial genes of the cohort and probably includes a large proportion of the prevalent human intestinal microbial genes. The genes are largely shared among individuals of the cohort. Over 99% of the genes are bacterial, indicating that the entire cohort harbours between 1,000 and 1,150 prevalent bacterial species and each individual at least 160 such species, which are also largely shared. We define and describe the minimal gut metagenome and the minimal gut bacterial genome in terms of functions present in all individuals and most bacteria, respectively.

Gut microbiota and healthEpigenetics and DNA MethylationNutrition, Genetics, and DiseaseMetagenomicsMicrobiomeBiologyGeneHuman Microbiome ProjectHuman microbiomeGut floraHuman gastrointestinal tractGeneticsGenome

MeSH terms

AdultBacteriaDenmarkFecesGenes, BacterialHealthHumansObesitySpainInflammatory Bowel DiseasesCohort StudiesOpen Reading FramesGenome, BacterialSequence Analysis, DNAGenes, Essential

Funding

  • National Natural Science Foundation of China
  • Government of Jiangxi Province
  • Lundbeckfonden
  • South China University of Technology
  • H. Lundbeck A/S
  • Instituto de Salud Carlos III
  • Strategic Research Council
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