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Within-plant coexistence of viruses across nitrogen and phosphorus supply rates
Amy E. Kendig
, Eric W. Seabloom
, Bruce Pell
,
Yang Kuang
, Elizabeth T. Borer
Mathematical and Statistical Sciences, School of (SoMSS)
Research output
:
Contribution to journal
›
Article
›
peer-review
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Keyphrases
Virus
100%
Supply Rate
100%
Nitrogen Supply
100%
Phosphorus Supply
100%
Plant Coexistence
100%
Resource Sharing
50%
Nutrient Supply
50%
P Concentration
33%
P Supply
33%
BYDV-PAV
33%
Free-living
16%
Viral
16%
Growth Rate
16%
Dynamical Model
16%
Living Organisms
16%
Nitrogen N
16%
N Concentration
16%
Host Immunity
16%
Model Simulation
16%
Multiple Pathogens
16%
Community Theory
16%
Phosphorus P
16%
Viral Pathogens
16%
Host Immune Response
16%
Plant Nitrogen Concentration
16%
Nitrogen Phosphorus
16%
N Supply
16%
Nutrient Use
16%
Plant Pathogen
16%
Pathogen Interaction
16%
Field Population
16%
Resource Competition
16%
Plant Virus
16%
Apparent Competition
16%
Invasion Criterion
16%
Growth Chamber Experiment
16%
Nutrient Supply Rate
16%
Avena Sativa
16%
Host nutrition
16%
Mutual Invasibility
16%
Immunology and Microbiology
Virus
100%
Infectious Agent
83%
Plant Virus
16%
Avena
16%
Immune System
16%