Bert Drake
Bert Drake
Smithsonian Environmental Research Center
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Cited by
Cited by
MORE EFFICIENT PLANTS: A Consequence of Rising Atmospheric CO2?
BG Drake, MA GonzÓlez-Meler, SP Long
Annual review of plant biology 48 (1), 609-639, 1997
Observed increase in local cooling effect of deforestation at higher latitudes
X Lee, ML Goulden, DY Hollinger, A Barr, TA Black, G Bohrer, R Bracho, ...
Nature 479 (7373), 384-387, 2011
Altered soil microbial community at elevated CO2 leads to loss of soil carbon
KM Carney, BA Hungate, BG Drake, JP Megonigal
Proceedings of the National Academy of Sciences 104 (12), 4990-4995, 2007
Predicting ecosystem responses to elevated CO 2 concentrations
HA Mooney, BG Drake, RJ Luxmoore, WC Oechel, LF Pitelka
BioScience 41 (2), 96-104, 1991
Growth and senescence in plant communities exposed to elevated CO2 concentrations on an estuarine marsh
PS Curtis, BG Drake, PW Leadley, WJ Arp, DF Whigham
Oecologia 78, 20-26, 1989
Estimation of net ecosystem carbon exchange for the conterminous United States by combining MODIS and AmeriFlux data
J Xiao, Q Zhuang, DD Baldocchi, BE Law, AD Richardson, J Chen, ...
Agricultural and Forest Meteorology 148 (11), 1827-1847, 2008
Effect of the Long-Term Elevation of CO2 Concentration in the Field on the Quantum Yield of Photosynthesis of the C3 Sedge, Scirpus olneyi
SP Long, BG Drake
Plant physiology 96 (1), 221-226, 1991
Photosynthetic CO_2 assimilation and rising atmospheric CO_2 concentrations
Crop photosynthesis: spatial and temporal determinants, 69-107, 1992
A continuous measure of gross primary production for the conterminous United States derived from MODIS and AmeriFlux data
J Xiao, Q Zhuang, BE Law, J Chen, DD Baldocchi, DR Cook, R Oren, ...
Remote sensing of environment 114 (3), 576-591, 2010
Growth and photosynthetic response of nine tropical species with long-term exposure to elevated carbon dioxide
LH Ziska, KP Hogan, AP Smith, BG Drake
Oecologia 86, 383-389, 1991
Canopy photosynthesis of crops and native plant communities exposed to long‐term elevated CO2
BG Drake, PW Leadley
Plant, Cell & Environment 14 (8), 853-860, 1991
Nitrogen and carbon dynamics in C3 and C4 estuarine marsh plants grown under elevated CO2 in situ
PS Curtis, BG Drake, DF Whigham
Oecologia 78, 297-301, 1989
Does elevated atmospheric CO2 concentration inhibit mitochondrial respiration in green plants?
BG Drake, J Azcon‐Bieto, J Berry, J Bunce, P Dijkstra, J Farrar, RM Gifford, ...
Plant, Cell & Environment 22 (6), 649-657, 1999
Open top chambers for exposing plant canopies to elevated CO2 concentration and for measuring net gas exchange
PW Leadley, BG Drake
CO 2 and biosphere, 3-16, 1993
Elevated CO2 increases nitrogen fixation and decreases soil nitrogen mineralization in Florida scrub oak
BA Hungate, PL Dijkstra, DEW Johnson, CRS Hinkle, BTG Drake
Global Change Biology 5 (7), 781-789, 1999
Elevated atmospheric CO2 effects on belowground processes in C3 and C4 estuarine marsh communities
PS Curtis, LM Balduman, BG Drake, DF Whigham
Ecology 71 (5), 2001-2006, 1990
Direct inhibition of plant mitochondrial respiration by elevated CO2
MA GonzÓlez-Meler, M Ribas-CarbË, JN Siedow, BG Drake
Plant Physiology 112 (3), 1349-1355, 1996
An Open Top Chamber for Field Studies of Elevated Atmospheric CO2 Concentration on Saltmarsh Vegetation
BG Drake, PW Leadley, WJ Arp, D Nassiry, PS Curtis
Functional Ecology, 363-371, 1989
Temperature and Transpiration Resistances of Xanthium Leaves as Affected by Air Temperature, Humidity, and Wind Speed
BG Drake, K Raschke, FB Salisbury
Plant Physiology 46 (2), 324-330, 1970
CO2 Elicits Long-Term Decline in Nitrogen Fixation
BA Hungate, PD Stiling, P Dijkstra, DW Johnson, ME Ketterer, GJ Hymus, ...
Science 304 (5675), 1291-1291, 2004
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