The response of photosynthesis and stomatal conductance to rising [CO2]: mechanisms and environmental interactions.
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Summary
Improved understanding of the molecular and biochemical mechanisms by which plants respond to elevated [CO2], and the feedback of environmental factors upon them, will improve the ability to predict ecosystem responses to rising [ CO2] and increase the potential to adapt crops and managed ecosystems to future atmospheric [CO 2].
- Type
- review
- Published
- 2007-03-01
- Cited by
- 2,242
- References
- 117
- OpenAlex
- https://openalex.org/W2101707536
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:25598075
Keywords
Photosynthesis, RuBisCO, Stomatal conductance, Carbon dioxide, Ribulose
References
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- Increased C availability at elevated carbon dioxide concentration improves N assimilation in a legume.
- Plant development: Signals from mature to new leaves
- Elevated atmospheric CO2 improved Sorghum plant water status by ameliorating the adverse effects of drought
- The interaction between elevated carbon dioxide and nitrogen nutrition: the physiological and molecular background
- Photosynthetic acclimation to elevated CO2 is modified by source:sink balance in three component species of chalk grassland swards grown in a free air carbon dioxide enrichment (FACE) experiment
- An integrated biosphere model of land surface processes
- Decreased ribulose-1,5-bisphosphate carboxylase-oxygenase in transgenic tobacco transformed with ‘antisense’ rbcS
- The Nitrogen Use Efficiency of C(3) and C(4) Plants : III. Leaf Nitrogen Effects on the Activity of Carboxylating Enzymes in Chenopodium album (L.) and Amaranthus retroflexus (L.).
Cited by
- Carbon and water relations in Pinus taeda: Bridging the gap across plant physiology, genomics, and global climate change
- Interactive effects of drought, elevated CO2 and warming on photosynthetic capacity and photosystem performance in temperate heath plants.
- Heat-tolerant rice cultivars retain grain appearance quality under free-air CO2 enrichment
- Yield responses of wild C3 and C4 crop progenitors to subambient CO2: a test for the role of CO2 limitation in the origin of agriculture
- Stomatal Function across Temporal and Spatial Scales: Deep-Time Trends, Land-Atmosphere Coupling and Global Models1[OPEN]
- Cosmopolitan Species As Models for Ecophysiological Responses to Global Change: The Common Reed Phragmites australis
- Observed and modelled historical trends in the water‐use efficiency of plants and ecosystems
- Ecophysiological performance of eight Jatropha curcas L. provenances cultivated in Tunisia.
- Estudio del impacto de las concentraciones altas y bajas de CO2 sobre el cultivo de trigo
- Semi-arid Crop Responses to Atmospheric Elevated CO2
- TRANSPIRATION INFLUENCES CADMIUM UPTAKE BY BABY LEAF SPINACH ( SPINACIA OLERACEA L.)
- Bases théoriques et approches expérimentales de la modélisation des effets de la contrainte hydrique sur les échanges gazeux foliaires du manguier et du litchi
- Plasticity in Photosynthetic Performance and Energy Utilization Efficiency in Triticum aestivum L., Secale cereale L. and Brassica napus L. in Response to Low Temperature and Hig CO2
- Variations altitudinales de traits fonctionnels foliaires chez les arbres : déterminismes environnemental et génétique
- Nitrogen Availability Alters Species Photosynthetic Responses to Elevated Atmospheric CO2.
- Photosynthetic acclimation to temperature of four Eucalyptus species and Sequoia sempervirens
- Biogeochemical Modeling of the Response of Forest Watersheds in the Northeastern U.S. to Future Climate Change
- Climate change impacts on crop growth in the central High Plains
- Global Change and the Function and Distribution of Wetlands
- Growth, morphological and photosynthetic characteristics, antioxidant capacity, biomass yield and water use efficiency of Gynura bicolor DC exposed to super-elevated CO2
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