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Microbiome Networks: A Systems Framework for Identifying Candidate Microbial Assemblages for Disease Management

Phytopathology · 2016 · Vol. 106(10) · pp. 1083–1096
Ravin PoudelAri JumpponenDan SchlatterTimothy C. PaulitzBrian B. McSpadden GardenerLinda L. KinkelKaren A. Garrett

Abstract

Network models of soil and plant microbiomes provide new opportunities for enhancing disease management, but also challenges for interpretation. We present a framework for interpreting microbiome networks, illustrating how observed network structures can be used to generate testable hypotheses about candidate microbes affecting plant health. The framework includes four types of network analyses. "General network analysis" identifies candidate taxa for maintaining an existing microbial community. "Host-focused analysis" includes a node representing a plant response such as yield, identifying taxa with direct or indirect associations with that node. "Pathogen-focused analysis" identifies taxa with direct or indirect associations with taxa known a priori as pathogens. "Disease-focused analysis" identifies taxa associated with disease. Positive direct or indirect associations with desirable outcomes, or negative associations with undesirable outcomes, indicate candidate taxa. Network analysis provides characterization not only of taxa with direct associations with important outcomes such as disease suppression, biofertilization, or expression of plant host resistance, but also taxa with indirect associations via their association with other key taxa. We illustrate the interpretation of network structure with analyses of microbiomes in the oak phyllosphere, and in wheat rhizosphere and bulk soil associated with the presence or absence of infection by Rhizoctonia solani.

Plant-Microbe Interactions and ImmunityPlant Pathogens and ResistanceNematode management and characterization studiesBiologyMicrobiomeTaxonPhyllosphereRhizoctonia solaniDiseaseRhizosphereRhizoctoniaEcologyBioinformatics

MeSH terms

Plant DiseasesRhizoctoniaSoilSoil MicrobiologyTriticumQuercusHost-Pathogen InteractionsRhizosphereBiological Control AgentsMicrobiota

Funding

  • National Science Foundation
  • U.S. Department of Agriculture
  • University of Florida
  • National Institute for Mathematical and Biological Synthesis
  • Ceres Trust
  • University of Tennessee, Knoxville
  • Consortium of International Agricultural Research Centers
  • National Institutes of Health
  • National Institute of Food and Agriculture
Citations
364
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75
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References
Sparse and Compositionally Robust Inference of Microbial Ecological Networks
PLoS Computational Biology · 2015 · 1,814 citations
Microbial Co-occurrence Relationships in the Human Microbiome
PLoS Computational Biology · 2012 · 1,565 citations
Fundamentals of Microbial Community Resistance and Resilience
Frontiers in Microbiology · 2012 · 1,653 citations
Microbial interactions: from networks to models
Nature Reviews Microbiology · 2012 · 3,912 citations
The rhizosphere microbiome and plant health
Trends in Plant Science · 2012 · 5,163 citations
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