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The New Phytologist|July 23, 2008
Analogous effects of arbuscular mycorrhizal fungi in the laboratory and a North Carolina fieldAnne Pringle, James D BeverEcology and Evolution|June 26, 2018
Carbon allocation and competition maintain variation in plant root mutualismsNatalie Christian, James D BeverMicroorganisms|August 26, 2023
Crop Productivity Boosters: Native Mycorrhizal Fungi from an Old-Growth Grassland Benefits Tomato (Solanum lycopersicum) and Pepper (Capsicum annuum) Varieties in Organically Farmed SoilsLiz Koziol, James D BeverAmerican Journal of Botany|June 14, 2011
Divergent phenologies may facilitate the coexistence of arbuscular mycorrhizal fungi in a North Carolina grasslandAnne Pringle, James D BeverEcology|September 18, 2015
Mycorrhizal response trades off with plant growth rate and increases with plant successional statusLiz Koziol, James D BeverProceedings. Biological Sciences|December 24, 2002
A novel theory to explain species diversity in landscapes: positive frequency dependence and habitat suitabilityJane Molofsky, James D BeverPlants (Basel, Switzerland)|November 27, 2021
Enriched CO2 and Root-Associated Fungi (Mycorrhizae) Yield Inverse Effects on Plant Mass and Root Morphology in Six Asclepias SpeciesRondy J Malik, James D BeverMycorrhiza|September 18, 2024
Arbuscular mycorrhizal fungal spore communities and co-occurrence networks demonstrate host-specific variation throughout the growing seasonJacob R Hopkins, James D BeverEcology and Evolution|July 18, 2022
Evidence for the evolution of native plant response to mycorrhizal fungi in post-agricultural grasslandsCamille S Delavaux, James D BeverEcological Applications : a Publication of the Ecological Society of America|January 10, 2018
Disturbance reduces the differentiation of mycorrhizal fungal communities in grasslands along a precipitation gradientGeoffrey L House, James D BeverPageof 14