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John S King

Showing results (11-20 of 21) with videos related to

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The New Phytologist|April 9, 2013
Hemlock woolly adelgid (Adelges tsugae) infestation affects water and carbon relations of eastern hemlock (Tsuga canadensis) and Carolina hemlock (Tsuga caroliniana)Jean-Christophe Domec, Laura N Rivera, John S King, et al.
Tree Physiology|June 9, 2020
An improved method for quantifying total fine root decomposition in plantation forests combining measurements of soil coring and minirhizotrons with a mass balance modelXuefeng Li, Kevan J Minick, Tonghua Li, et al.
The New Phytologist|April 22, 2010
Hydraulic redistribution of soil water by roots affects whole-stand evapotranspiration and net ecosystem carbon exchangeJean-Christophe Domec, John S King, Asko Noormets, et al.
Ecological Applications : a Publication of the Ecological Society of America|May 14, 2022
Beyond carbon flux partitioning: Carbon allocation and nonstructural carbon dynamics inferred from continuous fluxesGuofang Miao, Asko Noormets, Michael Gavazzi, et al.
Tree Physiology|April 3, 2012
Interactive effects of nocturnal transpiration and climate change on the root hydraulic redistribution and carbon and water budgets of southern United States pine plantationsJean-Christophe Domec, Jérôme Ogée, Asko Noormets, et al.
Plant, Cell & Environment|April 7, 2009
Decoupling the influence of leaf and root hydraulic conductances on stomatal conductance and its sensitivity to vapour pressure deficit as soil dries in a drained loblolly pine plantationJean-Christophe Domec, Asko Noormets, John S King, et al.
Journal of Experimental Botany|March 7, 2021
Aquaporins, and not changes in root structure, provide new insights into physiological responses to drought, flooding, and salinityJean-Christophe Domec, John S King, Mary J Carmichael, et al.
The New Phytologist|November 30, 2005
Tropospheric O(3) compromises net primary production in young stands of trembling aspen, paper birch and sugar maple in response to elevated atmospheric CO(2)John S King, Mark E Kubiske, Kurt S Pregitzer, et al.
Tree Physiology|November 22, 2019
Using δ13C and δ18O to analyze loblolly pine (Pinus taeda L.) response to experimental drought and fertilizationWen Lin, Jean-Christophe Domec, Eric J Ward, et al.
Tree Physiology|October 7, 2021
Spatial variability in tree-ring carbon isotope discrimination in response to local drought across the entire loblolly pine natural rangeWen Lin, Asko Noormets, John S King, et al.
Pageof 3

Showing results (11-20 of 21) with videos related to

Sort By:
Pageof 3
The New Phytologist|April 9, 2013
Hemlock woolly adelgid (Adelges tsugae) infestation affects water and carbon relations of eastern hemlock (Tsuga canadensis) and Carolina hemlock (Tsuga caroliniana)Jean-Christophe Domec, Laura N Rivera, John S King, et al.
Tree Physiology|June 9, 2020
An improved method for quantifying total fine root decomposition in plantation forests combining measurements of soil coring and minirhizotrons with a mass balance modelXuefeng Li, Kevan J Minick, Tonghua Li, et al.
The New Phytologist|April 22, 2010
Hydraulic redistribution of soil water by roots affects whole-stand evapotranspiration and net ecosystem carbon exchangeJean-Christophe Domec, John S King, Asko Noormets, et al.
Ecological Applications : a Publication of the Ecological Society of America|May 14, 2022
Beyond carbon flux partitioning: Carbon allocation and nonstructural carbon dynamics inferred from continuous fluxesGuofang Miao, Asko Noormets, Michael Gavazzi, et al.
Tree Physiology|April 3, 2012
Interactive effects of nocturnal transpiration and climate change on the root hydraulic redistribution and carbon and water budgets of southern United States pine plantationsJean-Christophe Domec, Jérôme Ogée, Asko Noormets, et al.
Plant, Cell & Environment|April 7, 2009
Decoupling the influence of leaf and root hydraulic conductances on stomatal conductance and its sensitivity to vapour pressure deficit as soil dries in a drained loblolly pine plantationJean-Christophe Domec, Asko Noormets, John S King, et al.
Journal of Experimental Botany|March 7, 2021
Aquaporins, and not changes in root structure, provide new insights into physiological responses to drought, flooding, and salinityJean-Christophe Domec, John S King, Mary J Carmichael, et al.
The New Phytologist|November 30, 2005
Tropospheric O(3) compromises net primary production in young stands of trembling aspen, paper birch and sugar maple in response to elevated atmospheric CO(2)John S King, Mark E Kubiske, Kurt S Pregitzer, et al.
Tree Physiology|November 22, 2019
Using δ13C and δ18O to analyze loblolly pine (Pinus taeda L.) response to experimental drought and fertilizationWen Lin, Jean-Christophe Domec, Eric J Ward, et al.
Tree Physiology|October 7, 2021
Spatial variability in tree-ring carbon isotope discrimination in response to local drought across the entire loblolly pine natural rangeWen Lin, Asko Noormets, John S King, et al.
Pageof 3