Transpiration and Assimilation of Xylem-transported CO2 Are Closely Linked
Doug P. Aubrey
Part of the Life Sciences Commons
Works by Robert O. Teskey in Life Sciences
2014
Internal Recycling of Respired CO2 May Be Important for Plant Functioning under Changing Climate Regimes
Doug P. Aubrey
Transport of Root-derived CO2 via the Transpiration Stream Affects Aboveground Carbon Assimilation and CO2 Efflux in Trees
Doug P. Aubrey
Stored Carbon in Longleaf Pine Ecosystems: The Intersection of Evolutionary History, Physiological Function, and Ecological Process
Doug P. Aubrey
2013
Assimilation of Xylem-transported CO2: Effects of Xylem CO2 Concentration and Transpiration Rate
Doug P. Aubrey
A Simple Calibration Improved the Accuracy of the Thermal Dissipation Technique for Sap Flow Measurements in Juvenile Trees of Six Species
Doug P. Aubrey
2012
The Use of Xylem-transported Respiratory CO2 as Substrate for Carbon Assimilation in Trees
Doug P. Aubrey
Transport of Derived CO2 via the Transpiration Stream Affects Aboveground Tree Physiology
Doug P. Aubrey
2011
Stored Carbon Decouples the Linkage between Recent Photosynthate and Soil CO2 Efflux in Frequently Disturbed Ecosystems
Doug P. Aubrey
Xylem Transport of Root-derived CO2: An Alternative Flux Pathway of Substantial Importance for Understanding the Components of Ecosystem Respiration
Doug P. Aubrey
Transport of Dissolved CO2 in Xylem Sap and Subsequent Assimilation in Populus Trees in the Field
Doug P. Aubrey
Spatial and Temporal Patterns of Xylem Sap pH Derived from Stems and Twigs of Populus deltoides L.
Doug P. Aubrey
Xylem Transport of CO2 Derived from Root Respiration Indicates that Tree Root Respiration Has Been Substantially Underestimated
Doug P. Aubrey
2010
Xylem Transport of Root-derived CO2: Is This Pathway of Respired CO2 Important throughout the Growing Season?
Doug P. Aubrey
Evaluation of the Accuracy of the Thermal Dissipation Technique for Sap Flow Measurements in Six Tree Species
Doug P. Aubrey