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Nature Communications|August 10, 2019
Microbial carbon use efficiency predicted from genome-scale metabolic modelsMustafa Saifuddin, Jennifer M Bhatnagar, Daniel Segrè, et al.Oecologia|June 25, 2021
Ectomycorrhizal fungi are associated with reduced nitrogen cycling rates in temperate forest soils without corresponding trends in bacterial functional groupsMustafa Saifuddin, Jennifer M Bhatnagar, Richard P Phillips, et al.Biorxiv : the Preprint Server for Biology|August 14, 2023
Metabolic complexity drives divergence in microbial communitiesMichael Silverstein, Jennifer M Bhatnagar, Daniel SegrèGlobal Change Biology|January 20, 2023
Environmental microbiome engineering for the mitigation of climate changeMichael R Silverstein, Daniel Segrè, Jennifer M BhatnagarNature Ecology & Evolution|July 2, 2024
Metabolic complexity drives divergence in microbial communitiesMichael R Silverstein, Jennifer M Bhatnagar, Daniel SegrèEcological Applications : a Publication of the Ecological Society of America|November 3, 2007
Atmospheric deposition may affect northern hardwood forest composition by altering soil nutrient supplyMeredith T Zaccherio, Adrien C FinziEcology|June 14, 2011
Substrate supply, fine roots, and temperature control proteolytic enzyme activity in temperate forest soilsEdward R Brzostek, Adrien C FinziEcology Letters|October 21, 2016
Belowground carbon flux links biogeochemical cycles and resource-use efficiency at the global scaleAllison L Gill, Adrien C FinziOecologia|January 23, 2008
Differential effects of sugar maple, red oak, and hemlock tannins on carbon and nitrogen cycling in temperate forest soilsJennifer M Talbot, Adrien C FinziThe New Phytologist|March 3, 2015
Are above- and below-ground phenology in sync?Rose Z Abramoff, Adrien C FinziPageof 16