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Nature Communications|June 11, 2014
A single evolutionary innovation drives the deep evolution of symbiotic N2-fixation in angiospermsGijsbert D A Werner, William K Cornwell, Janet I Sprent, et al.Ecology Letters|October 20, 2010
Mutualisms in a changing world: an evolutionary perspectiveE Toby Kiers, Todd M Palmer, Anthony R Ives, et al.Nature Microbiology|August 2, 2024
Host-imposed control mechanisms in legume-rhizobia symbiosisStephanie S Porter, Simon E Dupin, R Ford Denison, et al.Nature Communications|July 5, 2017
The evolution of host-symbiont dependenceRoberta M Fisher, Lee M Henry, Charlie K Cornwallis, et al.Mycorrhiza|February 25, 2015
High functional diversity within species of arbuscular mycorrhizal fungi is associated with differences in phosphate and nitrogen uptake and fungal phosphate metabolismJerry A Mensah, Alexander M Koch, Pedro M Antunes, et al.The ISME Journal|November 15, 2017
Build your own soil: exploring microfluidics to create microbial habitat structuresKristin Aleklett, E Toby Kiers, Pelle Ohlsson, et al.Oecologia|March 30, 2018
Herbivore removal reduces influence of arbuscular mycorrhizal fungi on plant growth and tolerance in an East African savannaJonathan B González, Renee H Petipas, Oscar Franken, et al.The American Naturalist|April 17, 2012
Spatial structure and interspecific cooperation: theory and an empirical test using the mycorrhizal mutualismErik Verbruggen, Claire El Mouden, Jan Jansa, et al.The ISME Journal|September 29, 2020
Temporal tracking of quantum-dot apatite across in vitro mycorrhizal networks shows how host demand can influence fungal nutrient transfer strategiesAnouk Van't Padje, Loreto Oyarte Galvez, Malin Klein, et al.Trends in Ecology & Evolution|August 14, 2025
Mycorrhizal allies: synergizing forest carbon and multifunctional restorationTengteng Li, Richard P Phillips, Matthias C Rillig, et al.Pageof 10