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Mycorrhiza|August 9, 2011
Mycorrhizal networks affect ectomycorrhizal fungal community similarity between conspecific trees and seedlingsMarcus A Bingham, Suzanne W SimardThe New Phytologist|July 30, 2011
Below-ground carbon transfer among Betula nana may increase with warming in Arctic tundraJulie R Deslippe, Suzanne W SimardOecologia|September 11, 2008
Mycorrhizal networks and distance from mature trees alter patterns of competition and facilitation in dry Douglas-fir forestsFrançois P Teste, Suzanne W SimardEcology and Evolution|March 7, 2012
Do mycorrhizal network benefits to survival and growth of interior Douglas-fir seedlings increase with soil moisture stress?Marcus A Bingham, Suzanne W SimardScientific Reports|November 10, 2025
The arbuscular mycorrhizal fungal communities associated with Taxus brevifolia (western yew) are sensitive to soil pH and neighborhood forest compositionEva Snyder, Suzanne W Simard, Shannon GuichonThe New Phytologist|September 25, 2007
Ectomycorrhizal fungal succession in mixed temperate forestsBrendan D Twieg, Daniel M Durall, Suzanne W SimardMycorrhiza|June 20, 2020
Resilience of Rhizopogon-Douglas-fir mycorrhizal networks 25 years after selective loggingCarrie H Van Dorp, Suzanne W Simard, Daniel M DurallMycorrhiza|July 3, 2009
Effects of growth medium, nutrients, water, and aeration on mycorrhization and biomass allocation of greenhouse-grown interior Douglas-fir seedlingsOlga Kazantseva, Marcus Bingham, Suzanne W Simard, et al.Trends in Ecology & Evolution|July 18, 2006
Mycorrhizal networks: des liaisons dangereuses?Marc-André Selosse, Franck Richard, Xinhua He, et al.Molecular Ecology|October 26, 2012
Vertical partitioning between sister species of Rhizopogon fungi on mesic and xeric sites in an interior Douglas-fir forestKevin J Beiler, Suzanne W Simard, Valerie Lemay, et al.Pageof 4