Development of a photosynthesis model with an emphasis on ecological applications
- 1 September 1977
- journal article
- research article
- Published by Springer Nature in Oecologia
- Vol. 30 (3) , 189-207
- https://doi.org/10.1007/bf01833627
Abstract
A theoretical description of the simultaneous processes of photosynthesis and photorespiration in a single leaf is developed, based on the hypothesis that carbon dioxide and oxygen compete for the active site of ribulose diphosphate carboxylase. Michaelis-Menten kinetics and competitive inhibition at the end of a diffusion path provide the basic structure of the model. Data of Ludwig (1972) from sunflower are analyzed according to the formulation. This description is part of a more general physiological-ecological model of photosynthesis presented previously (Tenhunen et al., 1976a, b) and continues to elaborate sub-processes in terms of physiologically meaningful parameters. The description is considered a working hypothesis. Data on photorespiration from the literature are reviewed as they relate to this working hypothesis. Several lines of investigation are thereby suggested that will help clarify the role of photorespiration in whole leaf photosynthesis and determine the over-all utility of this modeling approach.This publication has 27 references indexed in Scilit:
- Mathematical formulation of the relationship between photosynthesis and light for phytoplanktonLimnology and Oceanography, 1976
- Photosynthetic ModelPublished by Springer Nature ,1975
- Control of Photorespiration in Soybean and MaizePublished by Springer Nature ,1975
- Relationships Between Carbon Dioxide Transfer Resistances and Some Physiological and Anatomical FeaturesPublished by Springer Nature ,1975
- Ribulose Diphosphate Carboxylase regulates Soybean PhotorespirationNature New Biology, 1971
- A model describing photosynthesis in terms of gas diffusion and enzyme kineticsPlanta, 1971
- Respiration of Leaves During Photosynthesis III. Respiration Rate and Mesophyll Resistance in Turgid Cotton Leaves, with Stomatal Control EliminatedAustralian Journal of Biological Sciences, 1970
- Effect of oxygen concentration on leaf photosynthesis and resistances to carbon dioxide diffusionPlanta, 1970
- Respiration of Leaves During Photosynthesis II. Effects on the Estimation of Mesophyll ResistanceAustralian Journal of Biological Sciences, 1967
- Respiration of Leaves During Photosynthesis I. Estimates from an Electrical AnalogueAustralian Journal of Biological Sciences, 1967