Adaptation of the thylakoid membranes of pea chloroplasts to light intensities. I. Study on the distribution of chlorophyll-protein complexes - Photosynthesis Research
- ️Anderson, Jan M.
- ️Fri Jun 01 1984
Abstract
The effect of light intensity (16 h white light and 8 h dark) during growth of pea plants at 20°C on the chlorophyll composition and on the relative distribution of chlorophyll amongst the various chlorophyll-protein of pea thylakoids was studied. The chl a/chl b ratios increased from 2.1 to 3.2 as light intensity during growth varied from 10 to 840 μEm-2 s-1. This function can be described by two straight lines intersecting at a transition point of approximately 200 μEm-2 s-1. Similar discontinuities in the responses were observed in the changes in the relative distribution of chlorophyll amongst the various chlorophyll-protein complexes. This demonstrates that the chl a/chl b ratio of the various thylakoids is a good indicator of changes in the relative distribution of chlorophyll. As the chl a/chl b ratio decreased, the amount of chlorophyll associated with photosystem I complexes decreased, that with photosystem II core reaction centre complex was halved, and that with the main chl a/b-proteins of the light-harvesting complex was markedly increased.
Access this article
Subscribe and save
- Get 10 units per month
- Download Article/Chapter or eBook
- 1 Unit = 1 Article or 1 Chapter
- Cancel anytime
Buy Now
Price excludes VAT (USA)
Tax calculation will be finalised during checkout.
Instant access to the full article PDF.
Similar content being viewed by others
Abbreviations
- chl:
-
chlorophyll
PS: -
photosystem
SDS: -
sodium dodecyl sulphate
Tricine: -
N-tris (hydroxymethyl) methylglycine
References
Anderson JM, Waldron JC and Thorne SW (1978) Chlorophyll-protein complexes of spinach and barley thylakoids. Spectral characterization of six complexes resolved by an improved electrophoretic procedure. FEBS Lett 92: 227–233
Anderson JM (1980) P-700 content and polypeptide profile of chlorophyll-protein complexes of spinach and barly thylakoids. Biochim Biophys Acta 591: 113–126
Anderson JM (1980) Chlorophyll-protein complex of higher plant thylakoids: Distribution, stoichiometry and organization in the photosynthesis unit. FEBS Lett 117: 327–331
Anderson JM (1982) The role of chlorophyll-protein complexes in the function and structure of chloroplast thylakoids. Mol Cell Biochem 46: 161–172
Anderson JM, Barrett J and Thorne SW (1981) Chlorophyll-protein complexes of photosynthetic eukaryotes and prokaryotes: properties and functional organization. In Akoyunoglou G, ed. Photosynthesis III. Structure and molecular organization of the photosynthetic apparatus. pp 301–315. Philadelphia. Balaban International Science Services
Anderson JM, Brown JS, Lam E and Malkin R (1983) Chlorophyll b: an integral component of photosystem I of higher plant chloroplasts. Photochem Photobiol: 38: 205–210
Andersson B and Anderson JM (1980) Lateral heterogeneity in the distribution of chlorophyll-protein complexes of the thylakoid membranes of spinach chloroplasts. Biochim Biophys Acta 593: 427–440
Arnon DI (1949) Copper enzymes in isolated chloroplasts. Polyphenoloxidase in Beta Vulgaris. Plant Physiol 24: 1–15
Bennett J (1983) Regulation of photosynthesis by reversible phosphorylation of the light harvesting chlorophyll a/b-protein. Biochem J 212: 1–13
Björkman O (1973) Comparative studies on photosynthesis in higher plants. In Giese A, ed. Current topics in photobiology, photochemistry and photophysiology, Vol 8: pp 1–63. New York: Academic Press
Björkmann O (1981) Responses to different quantum flux densities. In Lange OK, Nobel PS, Osmond CB and Ziegler H eds. Encyclopaedia of Plant Physiology Vol 12A: Physiological Plant Ecology, pp 57–107. Berlin: Springer-Verlag
Boardman NK (1977) Comparative photosynthesis of sun and shade plants. Annu Rev Plant Physiol 28: 355–377
Brown JS, Alberte RS and Thornber JP (1974) Comparative studies on the occurence and spectral composition of chlorophyll-protein complexes in a wide variety of plant material. In Avron M, ed. Proc 3rd Int Congr on Photosynthesis, pp 1951–1962. Amsterdam: Elsevier
Henriques F and Park RB (1978) Characterization of the three new chlorophyll-protein complexes. Biochem Biophys Res Comm 81: 1113–1118
Leong T-Y and Anderson JM (1983) Changes in composition and function of thylakoid membranes as a result of photosynthetic adaptation of chloroplasts from pea plants grown under different light conditions. Biochim Biophys Acta 723: 391–399
Leong T-Y and Anderson JM (1984) Adaptation of the thylakoid membranes of pea chloroplasts to light intensities II. Study on electron transport capacities, coupling factor (CF1) activity and rates of photosynthesis. Photosynthesis Research. This issue, 105–116
Lichtenthaler HK (1981) Adaptation of leaves and chloroplasts to high quanta fluence rates. In Akoyunoglou G, ed. Photosynthesis VI, Photosynthesis and productivity, photosynthesis and environment, pp 273–287. Philadelphia, Pa.: Balaban International Science Services
Lichtenthaler HK, Buschmann C, Döll M, Fietz H-J, Bach T, Kozel U, Meier D and Rahmsdorf U (1981) Photosynthetic activity, chloroplast ultrastructure, and leaf characteristics of high-light and low-light plants and of sun and shade leaves. Photosynthesis Res 2: 115–141
Lichtenthaler HK, Kuhn G, Prenzel U, Buschmann C and Meier D (1982) Adaptation of chloroplast-ultrastructure and of chlorophyll-protein levels to high-light and low-light growth conditions. Z Naturforsch 37C: 464–475
Lichtenthaler HK, Kuhn G, Prenzel U and Meier D (1982) Chlorophyll-protein levels and degree of thylakoid stacking in radish chloroplasts from high-light, low-light and bentazon treated plants. Physiol Plant 56: 183–188
Melis A and Anderson JM (1983) Structural and functional organization of the photosystems in spinach chloroplasts: antenna size, relative electron transport capacity and chlorophyll composition. Biochim Biophys Acta 724: 473–484
Melis A and Harvey GW (1981) Regulation of photosystem stoichiometry, chlorophyll a and chlorophyll b content and relation to chloroplast ultrastructure. Biochim Biophys Acta 637: 138–145
Nurmi A and Vapaavuori E (1982) Chlorophyll-protein complexes in Salix sp. ‘Aquatica gigantea’ under strong and weak light. I. Spectral characterization of the chlorophyll protein complexes. Plant and Cell Physiol 23: 785–790
Remy R and Hoarau J (1978) New form of chlorophyll-protein complexes from thylakoids of different photosynthesizing organisms. In Akoyunoglou G and Argyroudi-Akoyunoglou JH eds. Chloroplast Development, pp 235–240. Amsterdam: Elsevier
Senger H and Fleischhacker PH (1978) Adaptation of the photosynthetic apparatus of Scenedesmus obliquus to strong and weak light conditions. I. Differences in pigments, photosynthetic capacity, quantum yield and dark reactions. Physiol Plant 43: 35–42
Ish-Shalom D and Ohad I (1983) Organization of chlorophyll-protein complexes of photosystem I in Chlamydomonas reinhardii. Biochim Biophys Acta 722: 498–507
Thornber JP, Markwell JP and Reinman S (1979) Plant chlorophyll-protein complexes: Recent advances. Photochem Photobiol 29: 1205–1216
Wild A (1979) Physiology of photosynthesis in higher plants. The adaptation of photosynthesis to light intensity and light quality in higher plants. Ber Deutsch Bot Ges 92: 341–364
Wollman FA and Bennoun P (1982) A new chlorophyll-protein complex related to photosystem I in Chlamydomonas reinhardii. Biochim Biophys Acta 680: 352–360
Author information
Authors and Affiliations
Division of Plant Industry, CSIRO, GPO Box 1600, 2601, Canberra, ACT, Australia
Ta-Yan Leong & Jan M. Anderson
Authors
- Ta-Yan Leong
You can also search for this author inPubMed Google Scholar
- Jan M. Anderson
You can also search for this author inPubMed Google Scholar
Rights and permissions
About this article
Cite this article
Leong, TY., Anderson, J.M. Adaptation of the thylakoid membranes of pea chloroplasts to light intensities. I. Study on the distribution of chlorophyll-protein complexes. Photosynth Res 5, 105–115 (1984). https://doi.org/10.1007/BF00028524
Received: 17 August 1983
Revised: 08 December 1983
Issue Date: June 1984
DOI: https://doi.org/10.1007/BF00028524