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May 3, 2016Nature1,349 citationsOpen Access

Culturing of ‘unculturable’ human microbiota reveals novel taxa and extensive sporulation

HBHilary P. BrowneSFSamuel C. ForsterBABlessing O. Anonye

Key Points

  • To overcome the culturing bottleneck of human intestinal microbiota and characterize previously uncultured bacterial phenotypes, including spore-formation capabilities.
  • Targeted phenotypic culturing applied to fecal samples from healthy individuals to isolate pure bacterial cultures.
  • Integrated large-scale whole-genome sequencing, metagenomic analysis, phylogenetic profiling, and computational modeling to characterize isolates and evaluate sporulation capacity.
  • Isolated and archived 137 bacterial species as pure cultures, capturing novel candidate families, genera, and species alongside known taxa.
  • Identified that at least 50% to 60% of bacterial genera from the intestinal microbiota of healthy individuals produce resilient spores specialized for host-to-host transmission.

Abstract

Our intestinal microbiota harbours a diverse bacterial community required for our health, sustenance and wellbeing. Intestinal colonization begins at birth and climaxes with the acquisition of two dominant groups of strict anaerobic bacteria belonging to the Firmicutes and Bacteroidetes phyla. Culture-independent, genomic approaches have transformed our understanding of the role of the human microbiome in health and many diseases. However, owing to the prevailing perception that our indigenous bacteria are largely recalcitrant to culture, many of their functions and phenotypes remain unknown. Here we describe a novel workflow based on targeted phenotypic culturing linked to large-scale whole-genome sequencing, phylogenetic analysis and computational modelling that demonstrates that a substantial proportion of the intestinal bacteria are culturable. Applying this approach to healthy individuals, we isolated 137 bacterial species from characterized and candidate novel families, genera and species that were archived as pure cultures. Whole-genome and metagenomic sequencing, combined with computational and phenotypic analysis, suggests that at least 50-60% of the bacterial genera from the intestinal microbiota of a healthy individual produce resilient spores, specialized for host-to-host transmission. Our approach unlocks the human intestinal microbiota for phenotypic analysis and reveals how a marked proportion of oxygen-sensitive intestinal bacteria can be transmitted between individuals, affecting microbiota heritability.

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Cite This Study

Browne et al. (2016) studied this question.

synapsesocial.com/papers/69d78af4447a5ff6a2b8aa74https://doi.org/10.1038/nature17645
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