Biogeography of a human oral microbiome at the micron scale

Биогеография микробиоты полости рта человека на микронном уровне
Gary G. Borisy, Floyd E. Dewhirst, Jessica L. Mark Welch, Blair J. Rossetti, Christopher W. Rieken
2016-01-25

micron-scale spatial organizationmultigenus consortiumoral microbiome biogeographyspectral imaging fluorescence in situ hybridizationsupragingival dental plaque
The spatial organization of complex natural microbiomes is critical to understanding the interactions of the individual taxa that comprise a community. Although the revolution in DNA sequencing has provided an abundance of genomic-level information, the biogeography of microbiomes is almost entirely uncharted at the micron scale. Using spectral imaging fluorescence in situ hybridization as guided by metagenomic sequence analysis, we have discovered a distinctive, multigenus consortium in the microbiome of supragingival dental plaque. The consortium consists of a radially arranged, nine-taxon structure organized around cells of filamentous corynebacteria. The consortium ranges in size from a few tens to a few hundreds of microns in radius and is spatially differentiated. Within the structure, individual taxa are localized at the micron scale in ways suggestive of their functional niche in the consortium. For example, anaerobic taxa tend to be in the interior, whereas facultative or obligate aerobes tend to be at the periphery of the consortium. Consumers and producers of certain metabolites, such as lactate, tend to be near each other. Based on our observations and the literature, we propose a model for plaque microbiome development and maintenance consistent with known metabolic, adherence, and environmental considerations. The consortium illustrates how complex structural organization can emerge from the micron-scale interactions of its constituent organisms. The understanding that plaque community organization is an emergent phenomenon offers a perspective that is general in nature and applicable to other microbiomes.
1
A distinctive, multigenus consortium in supragingival dental plaque was discovered using spectral imaging FISH guided by metagenomic analysis.
2
Anaerobic taxa are predominantly located in the interior while facultative or obligate aerobes are predominantly at the periphery of the consortium.
3
Metabolic partners (e.g., lactate producers and consumers) are localized near each other, supporting a model of plaque development and maintenance driven by metabolic, adherence, and environmental interactions.
4
The consortium has a radially arranged, nine-taxon structure organized around filamentous corynebacteria, ranging from tens to hundreds of microns in radius.
5
The consortium is spatially differentiated at the micron scale, with individual taxa localized in ways suggesting functional niches.

Multigenus microbial consortium in human supragingival dental plaque (radially arranged nine-taxon structure organized around filamentous corynebacteria)

Micron-scale spatial organization and biogeography of taxa within the consortium, including radial taxon localization, spatial differentiation (interior anaerobes vs peripheral aerobes), metabolite-related associations, and implications for community development and maintenance

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2016-01-25
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Gary G. Borisy
Floyd E. Dewhirst
Jessica L. Mark Welch
Blair J. Rossetti
Christopher W. Rieken
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