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Scientific Reports|February 17, 2015
Defoliation of interior Douglas-fir elicits carbon transfer and stress signalling to ponderosa pine neighbors through ectomycorrhizal networksYuan Yuan Song, Suzanne W Simard, Allan Carroll, et al.The New Phytologist|March 11, 2015
Local adaptation in migrated interior Douglas-fir seedlings is mediated by ectomycorrhizas and other soil factorsBrian J Pickles, Brendan D Twieg, Gregory A O'Neill, et al.Plos One|February 25, 2017
Twenty years of ecosystem response after clearcutting and slashburning in conifer forests of central British Columbia, CanadaJulia R Chandler, Sybille Haeussler, Evelyn H Hamilton, et al.The New Phytologist|November 3, 2009
Architecture of the wood-wide web: Rhizopogon spp. genets link multiple Douglas-fir cohortsKevin J Beiler, Daniel M Durall, Suzanne W Simard, et al.Oecologia|October 19, 2019
Density-dependent processes fluctuate over 50 years in an ecotone forestJoseph D Birch, James A Lutz, Suzanne W Simard, et al.Plants (Basel, Switzerland)|July 3, 2019
Intraspecific Fine-Root Trait-Environment Relationships across Interior Douglas-Fir Forests of Western CanadaCamille E Defrenne, M Luke McCormack, W Jean Roach, et al.The New Phytologist|April 17, 2021
Reciprocal transfer of carbon isotopes between ectomycorrhizal Betula papyrifera and Pseudotsuga menziesiiSuzanne W Simard, Melanie D Jones, Daniel M Durall, et al.The New Phytologist|November 22, 2016
Transfer of 13 C between paired Douglas-fir seedlings reveals plant kinship effects and uptake of exudates by ectomycorrhizasBrian J Pickles, Roland Wilhelm, Amanda K Asay, et al.The New Phytologist|June 20, 2020
Changes in soil fungal community composition depend on functional group and forest disturbance typeJean C Rodriguez-Ramos, Jonathan A Cale, James F Cahill, et al.The New Phytologist|June 3, 2015
Ectomycorrhizal fungi mediate indirect effects of a bark beetle outbreak on secondary chemistry and establishment of pine seedlingsJustine Karst, Nadir Erbilgin, Gregory J Pec, et al.Pageof 4