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Integrating taxonomic, functional, and strain-level profiling of diverse microbial communities with bioBakery 3

eLife · 2021 · Vol. 10
Francesco BeghiniLauren J. McIverAitor Blanco‐MíguezLéonard DuboisFrancesco AsnicarSagun MaharjanAna MailyanPaolo ManghiMatthias ScholzAndrew Maltez ThomasMireia Valles‐ColomerGeorge WeingartYancong ZhangMoreno ZolfoCurtis HuttenhowerEric A. FranzosaNicola Segata

Abstract

Culture-independent analyses of microbial communities have progressed dramatically in the last decade, particularly due to advances in methods for biological profiling via shotgun metagenomics. Opportunities for improvement continue to accelerate, with greater access to multi-omics, microbial reference genomes, and strain-level diversity. To leverage these, we present bioBakery 3, a set of integrated, improved methods for taxonomic, strain-level, functional, and phylogenetic profiling of metagenomes newly developed to build on the largest set of reference sequences now available. Compared to current alternatives, MetaPhlAn 3 increases the accuracy of taxonomic profiling, and HUMAnN 3 improves that of functional potential and activity. These methods detected novel disease-microbiome links in applications to CRC (1262 metagenomes) and IBD (1635 metagenomes and 817 metatranscriptomes). Strain-level profiling of an additional 4077 metagenomes with StrainPhlAn 3 and PanPhlAn 3 unraveled the phylogenetic and functional structure of the common gut microbe <i>Ruminococcus bromii</i>, previously described by only 15 isolate genomes. With open-source implementations and cloud-deployable reproducible workflows, the bioBakery 3 platform can help researchers deepen the resolution, scale, and accuracy of multi-omic profiling for microbial community studies.

Genomics and Phylogenetic StudiesGut microbiota and healthMicrobial Community Ecology and PhysiologyMetagenomicsBiologyMicrobiomeProfiling (computer programming)Computational biologyHuman Microbiome ProjectHuman microbiomeGenomePhylogenetic treeBacterial taxonomy

MeSH terms

BacteriaHumansPhylogenyResearch PersonnelComputational BiologyRuminococcusMetagenomeMetagenomicsWorkflowMicrobiota

Funding

  • Juvenile Diabetes Research Foundation United States of America
  • Cancer Research UK
  • Ministero dell’Istruzione, dell’Università e della Ricerca
  • National Institutes of Health
  • National Human Genome Research Institute
  • National Institute of Diabetes and Digestive and Kidney Diseases
  • H2020 European Research Council
  • H2020 Health
  • H2020 Food
Citations
2,128
FWCI
125.69
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References
140
Percentile
100%
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