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The New Phytologist|December 28, 2017
Stored root carbohydrates can maintain root respiration for extended periodsDoug P Aubrey, Robert O TeskeyGlobal Change Biology|April 1, 2021
Xylem transport of root-derived CO2 caused a substantial underestimation of belowground respiration during a growing seasonDoug P Aubrey, Robert O TeskeyTree Physiology|February 2, 2024
Season of drought affects growth, but not nonstructural carbohydrates dynamics, in Pinus taeda saplingsScott W Oswald, Doug P AubreyTree Physiology|April 17, 2018
Stand development and other intrinsic factors largely control fine-root dynamics with only subtle modifications from resource availabilityMark D Coleman, Doug P AubreyTree Physiology|January 28, 2023
Modeling starch dynamics from seasonal variations of photosynthesis, growth, and respirationScott W Oswald, Doug P AubreyThe New Phytologist|August 14, 2009
Root-derived CO(2) efflux via xylem stream rivals soil CO(2) effluxDoug P Aubrey, Robert O TeskeyGlobal Change Biology|December 16, 2015
Global patterns and predictors of stem CO2 efflux in forest ecosystemsJinyan Yang, Yujie He, Doug P Aubrey, et al.Carbohydrate Research|June 30, 2017
A quantitative method for analyzing glycome profiles of plant cell wallsSivakumar Pattathil, Miles W Ingwers, Doug P Aubrey, et al.Plant Signaling & Behavior|January 9, 2014
Internal recycling of respired CO 2 may be important for plant functioning under changing climate regimesJasper Bloemen, Mary Anne McGuire, Doug P Aubrey, et al.Journal of Experimental Botany|April 13, 2013
Assimilation of xylem-transported CO2 is dependent on transpiration rate but is small relative to atmospheric fixationJasper Bloemen, Mary Anne McGuire, Doug P Aubrey, et al.Pageof 2