Inside out: Measuring the effect of wood anatomy on the efflux and assimilation of xylem‐transported CO 2
Author:
Affiliation:
1. Institute for Genomic Biology University of Illinois at Urbana‐Champaign Urbana Illinois USA
2. Department of Environmental and Climate Sciences Brookhaven National Laboratory Upton New York USA
Funder
Brookhaven National Laboratory
U.S. Department of Energy
Publisher
Wiley
Subject
Plant Science,Physiology
Link
https://onlinelibrary.wiley.com/doi/pdf/10.1111/pce.14172
Reference18 articles.
1. Transport of root‐respired CO 2 via the transpiration stream affects aboveground carbon assimilation and CO 2 efflux in trees
2. Root xylem CO2 flux: an important but unaccounted-for component of root respiration
3. The benefits of recycling: how photosynthetic bark can increase drought tolerance
4. Woody tissue photosynthesis delays drought stress in Populus tremula trees and maintains starch reserves in branch xylem tissues
5. Woody tissue photosynthesis reduces stem CO 2 efflux by half and remains unaffected by drought stress in young Populus tremula trees
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1. The quandary of sources and sinks of CO2 efflux in tree stems—new insights and future directions;Tree Physiology;2024-01
2. Root-Derived Inorganic Carbon Assimilation by Plants in Karst Environments;Root-Derived Bicarbonate Assimilation in Plants;2023
3. Variability in Stem Methane Emissions and Wood Methane Production of Different Tree Species in a Cold Temperate Mountain Forest;Ecosystems;2022-10-11
4. Stem Carbon Dioxide Efflux of Lignophytes Exceeds That of Cycads and Arborescent Monocots;Agronomy;2022-01-10
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