On the relationship between the quantum yield of Photosystem II electron transport, as determined by chlorophyll fluorescence and the quantum yield of CO2-dependent O2 evolution
- 1 July 1992
- journal article
- research article
- Published by Springer Nature in Photosynthesis Research
- Vol. 33 (1) , 51-62
- https://doi.org/10.1007/bf00032982
Abstract
We tested the two empirical models of the relationship between chlorophyll fluorescence and photosynthesis, previously published by Weis E and Berry JA 1987 (Biochim Biophys Acta 894: 198–208) and Genty B et al. 1989 (Biochim Biophys Acta 990: 87–92). These were applied to data from different species representing different states of light acclimation, to species with C3 or C4 photosynthesis, and to wild-type and a chlorophyll b-less chlorina mutant of barley. Photosynthesis measured as CO2-saturated O2 evolution and modulated fluorescence were simultaneously monitored over a range of photon flux densities. The quantum yields of O2 evolution (ØO2) were based on absorbed photons, and the fluorescence parameters for photochemical (qp) and non-photochemical (qN) quenching, as well as the ratio of variable fluorescence to maximum fluorescence during steady-state illumination (F'v/F'm), were determined. In accordance with the Weis and Berry model, most plants studied exhibited an approximately linear relationship between ØO2/qp (i.e., the yield of O2 evolution by open Photosystem II reaction centres) and qN, except for wild-type barley that showed a non-linear relationship. In contrast to the linear relationship reported by Genty et al. for qp×F'v/F'm (i.e., the quantum yield of Photosystem II electron transport) and ØCO2, we found a non-linear relationship between qp×F'v/F'm and ØO2 for all plants, except for the chlorina mutant of barley, which showed a largely linear relationship. The curvilinearity of wild-type barley deviated somewhat from that of other species tested. The non-linear part of the relationship was confined to low, limiting photon flux densities, whereas at higher light levels the relationship was linear. Photoinhibition did not change the overall shape of the relationship between qp×F'v/F'm and ØO2 except that the maximum values of the quantum yields of Photosystem II electron transport and photosynthetic O2 evolution decreased in proportion to the degree of photoinhibition. This implies that the quantum yield of Photosystem II electron transport under high light conditions may be similar for photoinhibited and non-inhibited plants. Based on our experimental results and theoretical analyses of photochemical and non-photochemical fluoresce quenching processes, we conclude that both models, although not universal for all plants, provide useful means for the prediction of photosynthesis from fluorescence parameters. However, we also discuss that conditions which alter one or more of the rate constants that determine the various fluorescence parameters, as well as differential light penetration in assays for oxygen evolution and fluorescence emission, may have direct effect on the relationships of the two models.Keywords
This publication has 33 references indexed in Scilit:
- Further Studies on Quantifying Photosystem II in vivo by Flash-Induced Oxygen Yield From Leaf DiscsFunctional Plant Biology, 1991
- The mechanisms of changes in Photosystem II efficiency in spinach thylakoidsBiochimica et Biophysica Acta (BBA) - Bioenergetics, 1990
- Determination of accurate extinction coefficients and simultaneous equations for assaying chlorophylls a and b extracted with four different solvents: verification of the concentration of chlorophyll standards by atomic absorption spectroscopyBiochimica et Biophysica Acta (BBA) - Bioenergetics, 1989
- Oxygen per flash from leaf disks quantifies Photosystem IIBiochimica et Biophysica Acta (BBA) - Bioenergetics, 1989
- A study of the regulation and function of energy-dependent quenching in pea chloroplastsBiochimica et Biophysica Acta (BBA) - Bioenergetics, 1988
- Quantum yields of photosynthesis at temperatures between −;2°C and 35°C in a cold‐tolerant C3 plant (Pinus sylvestris) during the course of one yearPlant, Cell & Environment, 1987
- Photoinhibition of photosynthesis in Lemna gibba as induced by the interaction between light and temperature. III. Chlorophyll fluorescence at 77 KPhysiologia Plantarum, 1984
- Simultaneous Measurement of Oscillations in Oxygen Evolution and Chlorophyll a Fluorescence in Leaf PiecesPlant Physiology, 1983
- Studies on the Mechanism of Photoinhibition in Higher PlantsPlant Physiology, 1981
- Studies on a barley mutant lacking chlorophyl b. I. Photochemical activity of isolated chloroplastsBiochimica et Biophysica Acta (BBA) - Biophysics including Photosynthesis, 1966