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Global Change Biology
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July 13, 2018
Disentangling seasonal and interannual legacies from inferred patterns of forest water and carbon cycling using tree-ring stable isotopes
Paul Szejner, William E Wright, Soumaya Belmecheri, et al.
Plant, Cell & Environment
|
June 29, 2016
Interactions between temperature and intercellular CO<sub>2</sub> concentration in controlling leaf isoprene emission rates
Russell K Monson, Amberly A Neice, Nicole A Trahan, et al.
Ecological Applications : a Publication of the Ecological Society of America
|
September 5, 2008
The contribution of advective fluxes to net ecosystem exchange in a high-elevation, subalpine forest
Chuixiang Yi, Dean E Anderson, Andrew A Turnipseed, et al.
The New Phytologist
|
July 5, 2013
Increasing atmospheric CO2 reduces metabolic and physiological differences between isoprene- and non-isoprene-emitting poplars
Danielle A Way, Andrea Ghirardo, Basem Kanawati, et al.
Nature
|
February 10, 2006
Winter forest soil respiration controlled by climate and microbial community composition
Russell K Monson, David L Lipson, Sean P Burns, et al.
Oecologia
|
September 29, 2009
Tree species effects on ecosystem water-use efficiency in a high-elevation, subalpine forest
Russell K Monson, Margaret R Prater, Jia Hu, et al.
Plos One
|
March 3, 2012
Contribution of various carbon sources toward isoprene biosynthesis in poplar leaves mediated by altered atmospheric CO2 concentrations
Amy M Trowbridge, Dolores Asensio, Allyson S D Eller, et al.
Ecology Letters
|
March 19, 2013
Persistent reduced ecosystem respiration after insect disturbance in high elevation forests
David J P Moore, Nicole A Trahan, Phil Wilkes, et al.
Tree Physiology
|
March 26, 2003
Kinetics of leaf temperature fluctuation affect isoprene emission from red oak (Quercus rubra) leaves
Eric L. Singsaas, Marianne M. Laporte, Jain-Zhong Shi, et al.
Oecologia
|
March 7, 2021
Vapor pressure deficit helps explain biogenic volatile organic compound fluxes from the forest floor and canopy of a temperate deciduous forest
Paul C Stoy, Amy M Trowbridge, Mario B Siqueira, et al.
Page
of 7
Search research articles
Search
Showing results (51-60 of 69) with videos related to
Sort By:
Page
of 7
Global Change Biology
|
July 13, 2018
Disentangling seasonal and interannual legacies from inferred patterns of forest water and carbon cycling using tree-ring stable isotopes
Paul Szejner, William E Wright, Soumaya Belmecheri, et al.
Plant, Cell & Environment
|
June 29, 2016
Interactions between temperature and intercellular CO<sub>2</sub> concentration in controlling leaf isoprene emission rates
Russell K Monson, Amberly A Neice, Nicole A Trahan, et al.
Ecological Applications : a Publication of the Ecological Society of America
|
September 5, 2008
The contribution of advective fluxes to net ecosystem exchange in a high-elevation, subalpine forest
Chuixiang Yi, Dean E Anderson, Andrew A Turnipseed, et al.
The New Phytologist
|
July 5, 2013
Increasing atmospheric CO2 reduces metabolic and physiological differences between isoprene- and non-isoprene-emitting poplars
Danielle A Way, Andrea Ghirardo, Basem Kanawati, et al.
Nature
|
February 10, 2006
Winter forest soil respiration controlled by climate and microbial community composition
Russell K Monson, David L Lipson, Sean P Burns, et al.
Oecologia
|
September 29, 2009
Tree species effects on ecosystem water-use efficiency in a high-elevation, subalpine forest
Russell K Monson, Margaret R Prater, Jia Hu, et al.
Plos One
|
March 3, 2012
Contribution of various carbon sources toward isoprene biosynthesis in poplar leaves mediated by altered atmospheric CO2 concentrations
Amy M Trowbridge, Dolores Asensio, Allyson S D Eller, et al.
Ecology Letters
|
March 19, 2013
Persistent reduced ecosystem respiration after insect disturbance in high elevation forests
David J P Moore, Nicole A Trahan, Phil Wilkes, et al.
Tree Physiology
|
March 26, 2003
Kinetics of leaf temperature fluctuation affect isoprene emission from red oak (Quercus rubra) leaves
Eric L. Singsaas, Marianne M. Laporte, Jain-Zhong Shi, et al.
Oecologia
|
March 7, 2021
Vapor pressure deficit helps explain biogenic volatile organic compound fluxes from the forest floor and canopy of a temperate deciduous forest
Paul C Stoy, Amy M Trowbridge, Mario B Siqueira, et al.
Page
of 7