Plant Cell & Environment · 1995 · 238 citations · 16 references
Crop ProductionEngineeringHigher Conversion EfficiencyBotanyPerennial C 4High EfficienciesPlant ProductionAgricultural EconomicsRadiant Energy ConversionC 4Plant EcologyCrop PhysiologyEnergy CropCool ClimatesPhotosynthesisPlant PhysiologyClimate Change
ABSTRACT Although C 4 plants are considered to have higher conversion efficiency and productivity than C 3 , plants, this advantage may not be realized under sub‐optimal conditions. Two perennial C 4 rhizomatous grasses of cool temperate origin, Miscanthus × giganteus and Spartina cyno‐suroides, have been suggested as potential fuel crops for north‐western Europe. The conversion efficiencies of these species were examined for 2 years in fertilized, irrigated, replicated plots in south‐eastern England. In the second year, the energy conversion efficiencies for shoot and total biomass production were 0.040 and 0.051, respectively, for S. cynosuroides , with significantly higher values of 0.060 and 0.078, respectively, for M. × giganteus. The M. × giganteus crop attained shoot productivity of 2.87 kg m −2 between April and September, exceeding the highest values typically obtained with intensively managed C 3 , crops. Canopy development was early, and high interception and conversion efficiencies were maintained over most of the growing season. This study provides the evidence that the superior potential light conversion efficiencies associated with C 4 photosynthesis can be realized under cool temperate conditions and that such climatic conditions do not Inherently impair the C 4 process.
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Principles of environmental physics
Plant Growth Regulation · 1991 · 1.9K citations
Ecological Processes in Coastal Environments
Jeffrey B. Harborne · Phytochemistry · 1980 · 471 citations
C<sub>4</sub> photosynthesis at low temperatures
Stephen P. Long · Plant Cell & Environment · 1983 · 312 citations