Faculty profile
Suzanne Simard
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Research
Latest papers
Stump removal and tree species composition promote a bacterial microbiome that may be beneficial in the suppression of root disease.
FEMS microbiology ecology · 2020
Long-term effects of stump removal and tree species composition on the diversity and structure of soil fungal communities.
FEMS microbiology ecology · 2020
MycoDB, a global database of plant response to mycorrhizal fungi.
Scientific data · 2016
Latest funding
- $120,000
Novel forestry practices for mitigating global change: investigating effects of legacy trees on plant-soil microbial networks, carbon cycling and forest recovery
NSERC · 2022 · Principal investigator
- $312,000
Plant-mycorrhizal fungal interaction networks: understanding their role in the resilience and adaptation of forests to climate change
NSERC · 2016 · Principal investigator
- $483,511
Using the functional traits of soil fungi to improve post-disturbance pine regeneration
NSERC · 2015 · Co-investigator
3 publications.
Stump removal and tree species composition promote a bacterial microbiome that may be beneficial in the suppression of root disease.
Modi D, Simard S, Lavkulich L, Hamelin RC, Grayston SJ
Long-term effects of stump removal and tree species composition on the diversity and structure of soil fungal communities.
Modi D, Simard S, Bérubé J, Lavkulich L, Hamelin R, Grayston SJ
MycoDB, a global database of plant response to mycorrhizal fungi.
Chaudhary VB, Rúa MA, Antoninka A, Bever JD, Cannon J, Craig A, Duchicela J, Frame A, Gardes M, Gehring C, Ha M, Hart M, Hopkins J, Ji B, Johnson NC, Kaonongbua W, Karst J, Koide RT, Lamit LJ, Meadow J, Milligan BG, Moore JC, Pendergast TH, Piculell B, Ramsby B, Simard S, Shrestha S, Umbanhowar J, Viechtbauer W, Walters L, Wilson GW, Zee PC, Hoeksema JD
Novel forestry practices for mitigating global change: investigating effects of legacy trees on plant-soil microbial networks, carbon cycling and forest recovery
Principal investigators: Simard, Suzanne
Keywords: climate change; partial cutting; clearcutting; biodiversity; carbon cycling; nitrogen cycling; regeneration; mycorrhizal networks; community assembly; complex adaptive systems
Plant-mycorrhizal fungal interaction networks: understanding their role in the resilience and adaptation of forests to climate change
Principal investigators: Simard, Suzanne
Using the functional traits of soil fungi to improve post-disturbance pine regeneration
Principal investigators: Erbilgin, Nadir
Designing successful forest renewal practices for our changing climate
Principal investigators: Simard, Suzanne
Designing forest reclamation techniques for the tailings deposit at Mount Polley
Principal investigators: Simard, Suzanne
NSERC CREATE TerreWEB: Terrestrial Research on Ecosystems & World-wide Education & Broadcast
Principal investigators: Simard, Suzanne
Pine regeneration following mountain pine beetle attack: facilitation by mycorrhizal fungi
Principal investigators: Cahill, James
Carbon cycling by forest soil microbial communities in a time of climate change
Principal investigators: Mohn, William
The role of mycorrhizae and mycorrhizal networks in tree species range shifts with climate change nad disturbance
Principal investigators: Simard, Suzanne
Carbon-flux and plant-microbial community dynamics in low-arctic tundra
Principal investigators: Simard, Suzanne
From CIHR, NSERC and SSHRC funding decisions: CIHR since 2008, NSERC since 1991 and SSHRC since 1998, including their latest published competition results.
Frequent collaborators
- Suzanne Simard and Justine Karst: 1 shared paper
- Suzanne Simard and Miranda Hart: 1 shared paper
- Suzanne Simard and Richard Hamelin: 1 shared paper
- Justine Karst and Miranda Hart: 1 shared paper
- Department of Forest and Conservation Sciences
- Department of Renewable Resources
- Biology Okanagan
- Forest and Conservation Sciences
Co-authors at University of British Columbia, colored by department. Thicker lines mean more shared papers; select anyone to open their profile and their own map.
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