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Application of Ecological Network Theory to the Human Microbiome
Author(s) -
James A. Foster,
Stephen M. Krone,
Larry J. Forney
Publication year - 2008
Publication title -
interdisciplinary perspectives on infectious diseases
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.593
H-Index - 28
eISSN - 1687-7098
pISSN - 1687-708X
DOI - 10.1155/2008/839501
Subject(s) - bacterial vaginosis , microbiome , human microbiome , metagenomics , ecology , ecosystem , computer science , network theory , biology , data science , bioinformatics , mathematics , microbiology and biotechnology , biochemistry , statistics , gene
In healthy humans, many microbial consortia constitute rich ecosystems with dozens to hundreds of species, finely tuned to functions relevant to human health. Medical interventions, lifestyle changes, and the normal rhythms of life sometimes upset the balance in microbial ecosystems, facilitating pathogen invasions or causing other clinically relevant problems. Some diseases, such as bacterial vaginosis, have exactly this sort of community etiology. Mathematical network theory is ideal for studying the ecological networks of interacting species that comprise the human microbiome. Theoretical networks require little consortia specific data to provide insight into both normal and disturbed microbial community functions, but it is easy to incorporate additional empirical data as it becomes available. We argue that understanding some diseases, such as bacterial vaginosis, requires a shift of focus from individual bacteria to (mathematical) networks of interacting populations, and that known emergent properties of these networks will provide insights that would be otherwise elusive.

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