Photosynthetica 2023, 61(4):398-404 | DOI: 10.32615/ps.2023.044
EDITORIAL
- 1 HUN-REN Biological Research Center, Institute of Plant Biology, Temesvári körút 62, H-6726 Szeged, Hungary
- 2 Department of Plant Physiology and Metabolomics, Agricultural Institute, Centre for Agricultural Research, Brunszvik u. 2., H-2462 Martonvásár, Hungary
Received: December 11, 2023; Accepted: December 12, 2023; Published: December 19, 2023 Show citation
References
- Akhtar P., Lindorfer D., Lingvay M. et al.: Anisotropic circular dichroism of light-harvesting complex II in oriented lipid bilayers: theory meets experiment. - J. Phys. Chem. B 123: 1090-1098, 2019.
Go to original source... - Barzda V., Istokovics A., Simidjiev I., Garab G.: Structural flexibility of chiral macroaggregates of light-harvesting chlorophyll a/b pigment-protein complexes. Light-induced reversible structural changes associated with energy dissipation. - Biochemistry 35: 8981-8985, 1996.
Go to original source... - Cseh Z., Vianelli A., Rajagopal S. et al.: Thermo-optically induced reorganizations in the main light harvesting antenna of plants. I. Non-Arrhenius type of temperature dependence and linear light-intensity dependencies. - Photosynth. Res. 86: 263-273, 2005.
Go to original source... - Damkjær J.T., Kereïche S., Johnson M.P. et al.: The photosystem II light-harvesting protein Lhcb3 affects the macrostructure of photosystem II and the rate of state transitions in Arabidopsis. - Plant Cell 21: 3245-3256, 2009.
Go to original source... - Dlouhý O., Karlický V., Javornik U. et al.: Structural entities associated with different lipid phases of plant thylakoid membranes - selective susceptibilities to different lipases and proteases. - Cells 11: 2681, 2022a.
Go to original source... - Dlouhý O., Karlický V., Javornik U. et al.: Lipid polymorphism of plant thylakoid membranes. Structural and functional units associated with non-bilayer phases. - BBA-Bioenergetics 1863: 148836, 2022b.
Go to original source... - Dlouhý O., Kurasová I., Karlický V. et al.: Modulation of non-bilayer lipid phases and the structure and functions of thylakoid membranes: effects on the water-soluble enzyme violaxanthin de-epoxidase. - Sci. Rep.-UK 10: 11959, 2020.
Go to original source... - Fehér B., Voets I.K., Nagy G.: The impact of physiologically relevant temperatures on physical properties of thylakoid membranes: a molecular dynamics study. - Photosynthetica 61: 441-450, 2023.
Go to original source... - Finzi L., Bustamante C., Garab G., Juang C.B.: Direct observation of large chiral domains in chloroplast thylakoid membranes by differential polarization microscopy. - PNAS 86: 8748-8752, 1989.
Go to original source... - Garab G., Faludi-Daniel A., Sutherland J.C., Hind G.: Macroorganization of chlorophyll a/b light-harvesting complex in thylakoids and aggregates: information from circular differential scattering. - Biochemistry 27: 2425-2430, 1988a.
Go to original source... - Garab G., Kieleczawa J., Sutherland J.C. et al.: Organization of pigment protein complexes into macrodomains in the thylakoid membranes of wild-type and chlorophyll b-less mutant of barley as revealed by circular-dichroism. - Photochem. Photobiol. 54: 273-281, 1991.
Go to original source... - Garab G., Leegood R.C., Walker D.A. et al.: Reversible changes in macroorganization of the light-harvesting chlorophyll a/b pigment-protein complex detected by circular dichroism. - Biochemistry 27: 2430-2434, 1988c.
Go to original source... - Garab G., Lohner K., Laggner P., Farkas T.: Self-regulation of the lipid content of membranes by non-bilayer lipids: a hypothesis. - Trends Plant Sci. 5: 489-494, 2000.
Go to original source... - Garab G., Magyar M., Sipka G., Lambrev P.H.: New foundations for the physical mechanism of variable chlorophyll a fluorescence. Quantum efficiency versus the light-adapted state of photosystem II. - J. Exp. Bot. 74: 5458-5471, 2023.
Go to original source... - Garab G., Mustárdy L.: Role of LHCII-containing macrodomains in the structure, function and dynamics of grana. - Aust. J. Plant Physiol. 26: 649-658, 1999.
Go to original source... - Garab G., Ughy B., de Waard P. et al.: Lipid polymorphism in chloroplast thylakoid membranes - as revealed by 31P-NMR and time-resolved merocyanine fluorescence spectroscopy. - Sci. Rep.-UK 7: 13343, 2017.
Go to original source... - Garab G., Ughy B., Goss R.: Role of MGDG and non-bilayer lipid phases in the structure and dynamics of chloroplast thylakoid membranes. - In: Nakamura Y., Li-Beisson Y. (ed.): Lipids in Plant and Algae Development. Pp. 127-157. Springer, Cham 2016.
Go to original source... - Garab G., van Amerongen H.: Linear dichroism and circular dichroism in photosynthesis research. - Photosynth. Res. 101: 135-146, 2009.
Go to original source... - Garab G., Wells S., Finzi L., Bustamante C.: Helically organized macroaggregates of pigment protein complexes in chloroplasts - evidence from circular intensity differential scattering. - Biochemistry 27: 5839-5843, 1988b.
Go to original source... - Garab G., Yaguzhinsky L.S., Dlouhý O. et al.: Structural and functional roles of non-bilayer lipid phases of chloroplast thylakoid membranes and mitochondrial inner membranes. - Prog. Lipid Res. 86: 101163, 2022.
Go to original source... - Gasanoff E.S., Yaguzhinsky L.S., Garab G.: Cardiolipin, non-bilayer structures and mitochondrial bioenergetics: relevance to cardiovascular disease. - Cells 10: 1721, 2021.
Go to original source... - Gholizadeh F., Darkó É., Benczúr K. et al.: Growth light substantially affects both primary and secondary metabolic processes in Catharanthus roseus plants. - Photosynthetica 61: 451-460, 2023.
Go to original source... - Govindjee G.: In appreciation of an ingenious scientist and a great friend: Győző Garab. - Photosynthetica 61: 461-464, 2023.
Go to original source... - Hind G., Wall J.S., Várkonyi Z. et al.: Membrane crystals of plant light-harvesting complex II disassemble reversibly in light. - Plant Cell Physiol. 55: 1296-1303, 2014.
Go to original source... - Holm J.K., Várkonyi Z., Kovács L. et al.: Thermo-optically induced reorganizations in the main light harvesting antenna of plants. II. Indications for the role of LHCII-only macrodomains in thylakoids. - Photosynth. Res. 86: 275-282, 2005.
Go to original source... - Istokovics A., Simidjiev I., Lajko F., Garab G.: Characterization of the light induced reversible changes in the chiral macroorganization of the chromophores in chloroplast thylakoid membranes. Temperature dependence and effect of inhibitors. - Photosynth. Res. 54: 45-53, 1997.
Go to original source... - Janik-Zabrotowicz E., Gruszecki W.I.: LHCII - a protein like a 'Swiss Army knife' with many mechanisms and functions. - Photosynthetica 61: 405-416, 2023.
Go to original source... - Kaňa R., ©edivá B., Práąil O.: Microdomains heterogeneity in the thylakoid membrane proteins visualized by super-resolution microscopy. - Photosynthetica 61: 483-491, 2023.
Go to original source... - Kotakis C., Akhtar P., Zsiros O. et al.: Increased thermal stability of photosystem II and the macro-organization of thylakoid membranes, induced by co-solutes, associated with changes in the lipid-phase behaviour of thylakoid membranes. - Photosynthetica 56: 254-264, 2018.
Go to original source... - Kovács L., Damkjaer J., Kereïche S. et al.: Lack of the light-harvesting complex CP24 affects the structure and function of the grana membranes of higher plant chloroplasts. - Plant Cell 18: 3106-3120, 2006.
Go to original source... - Krumova S.B., Dijkema C., de Waard P. et al.: Phase behavior of phosphatidylglycerol in spinach thylakoid membranes as revealed by 31P-NMR. - BBA-Biomembranes 1778: 997-1003, 2008.
Go to original source... - Krumova S., Petrova A., Koleva D. et al.: Priming of Pisum sativum seeds with stabilized Pluronic P85 nanomicelles: effects on seedling development and photosynthetic function. -Photosynthetica 61: 432-440, 2023.
Go to original source... - Liebisch T., Başoglu M., Jäger S., Büchel C.: Influence of reduced amounts of sulfoquinovosyl diacylglycerol on the thylakoid membranes of the diatom Thalassiosira pseudonana. - Photosynthetica 61: 425-431, 2023.
Go to original source... - Magyar M., Akhtar P., Sipka G. et al.: Dependence of the rate-limiting steps in the dark-to-light transition of photosystem II on the lipidic environment of the reaction center. - Photosynthetica 60: 147-156, 2022.
Go to original source... - Magyar M., Sipka G., Han W. et al.: Characterization of the rate-limiting steps in the dark-to-light transitions of closed photosystem II: Temperature dependence and invariance of waiting times during multiple light reactions. - Int. J. Mol. Sci. 24: 94, 2023.
Go to original source... - Magyar M., Sipka G., Kovács L. et al.: Rate-limiting steps in the dark-to-light transition of Photosystem II - revealed by chlorophyll-a fluorescence induction. - Sci. Rep.-UK 8: 2755, 2018.
Go to original source... - Miloslavina Y., Lambrev P.H., Jávorfi T. et al.: Anisotropic circular dichroism signatures of oriented thylakoid membranes and lamellar aggregates of LHCII. - Photosynth. Res. 111: 29-39, 2012.
Go to original source... - Nagy G., Garab G.: Neutron scattering in photosynthesis research: recent advances and perspectives for testing crop plants. - Photosynth. Res. 150: 41-49, 2021.
Go to original source... - Nagy G., Posselt D., Kovács L. et al.: Reversible membrane reorganizations during photosynthesis in vivo: revealed by small-angle neutron scattering. - Biochem. J. 436: 225-230, 2011.
Go to original source... - Nagy G., Szabó M., Ünnep R. et al.: Modulation of the multilamellar membrane organization and of the chiral macrodomains in the diatom Phaeodactylum tricornutum revealed by small-angle neutron scattering and circular dichroism spectroscopy. - Photosynth. Res. 111: 71-79, 2012.
Go to original source... - Nielsen J.T., Kulminskaya N.V., Bjerring M. et al.: In situ high-resolution structure of the baseplate antenna complex in Chlorobaculum tepidum. - Nat. Commun. 7: 12454, 2016.
Go to original source... - Páli T., Garab G., Horváth L.I., Kóta Z.: Functional significance of the lipid-protein interface in photosynthetic membranes. - Cell Mol. Life Sci. 60: 1591-1606, 2003.
Go to original source... - Papageorgiou G.C., Govindjee (ed.): Chlorophyll a Fluorescence: A Signature of Photosynthesis. Pp. 818. Springer, Dordrecht 2004.
Go to original source... - Patil P.P., Nagy K., Ábrahám Á. et al.: Monitoring the photosynthetic activity at single cell level in Haematococcus lacustris. - Photosynthetica 61: 473-482, 2023.
Go to original source... - Posselt D., Nagy G., Kirkensgaard J.J.K. et al.: Small-angle neutron scattering study of the ultrastructure of chloroplast thylakoid membranes - periodicity and structural flexibility of the stroma lamellae. - BBA-Bioenergetics 1817: 1220-1228, 2012.
Go to original source... - Schansker G., Tóth S.Z., Holzwarth A.R., Garab G.: Chlorophyll a fluorescence: beyond the limits of the QA model. - Photosynth. Res. 120: 43-58, 2014.
Go to original source... - Simidjiev I., Barzda V., Mustárdy L., Garab G.: Role of thylakoid lipids in the structural flexibility of lamellar aggregates of the isolated light-harvesting chlorophyll a/b complex of photosystem II. - Biochemistry 37: 4169-4173, 1998.
Go to original source... - Simidjiev I., Stoylova S., Amenitsch H. et al.: Self-assembly of large, ordered lamellae from non-bilayer lipids and integral membrane proteins in vitro. - PNAS 97: 1473-1476, 2000.
Go to original source... - Simidjiev I., Várkonyi Z., Lambrev P.H., Garab G.: Isolation and characterization of lamellar aggregates of LHCII and LHCII-lipid macro-assemblies with light-inducible structural transitions. - In: Carpentier R. (ed.): Photosynthesis Research Protocols. Methods in Molecular Biology. Vol. 684. Pp. 127-138. Humana Press, Totowa 2011.
Go to original source... - Sipka G., Magyar M., Mezzetti A. et al.: Light-adapted charge-separated state of photosystem II: structural and functional dynamics of the closed reaction center. - Plant Cell 33: 1286-1302, 2021.
Go to original source... - Sipka G., Müller P., Brettel K. et al.: Redox transients of P680 associated with the incremental chlorophyll-a fluorescence yield rises elicited by a series of saturating flashes in diuron-treated Photosystem II core complex of Thermosynechococcus vulcanus. - Physiol. Plantarum 166: 22-32, 2019.
Go to original source... - Steinbach G., Besson F., Pomozi I., Garab G.: Differential polarization laser scanning microscopy: biological applications. - Proc. SPIE 5969, 2005.
Go to original source... - Steinbach G., Pomozi I., Zsiros O. et al.: Imaging anisotropy using differential polarization laser scanning confocal microscopy. - Acta Histochem. 111: 317-326, 2009.
Go to original source... - Szabó M., Lepetit B., Goss R. et al.: Structurally flexible macro-organization of the pigment-protein complexes of the diatom Phaeodactylum tricornutum. - Photosynth. Res. 95: 237-245, 2008.
Go to original source... - Széles E., Kuntam S., Vidal-Meireles A. et al.: Single-cell microfluidics in combination with chlorophyll a fluorescence measurements to assess the lifetime of the Chlamydomonas PSBO protein. - Photosynthetica 61: 417-424, 2023.
Go to original source... - Ünnep R., Paul S., Zsiros O. et al.: Thylakoid membrane reorganizations revealed by small-angle neutron scattering of Monstera deliciosa leaves associated with non-photochemical quenching. - Open Biol. 10: 200144, 2020.
Go to original source... - Ünnep R., Zsiros O., Hörcsik Z. et al.: Low-pH induced reversible reorganizations of chloroplast thylakoid membranes - As revealed by small-angle neutron scattering. - BBA-Bioenergetics 1858: 360-365, 2017.
Go to original source... - Ünnep R., Zsiros O., Solymosi K. et al.: The ultrastructure and flexibility of thylakoid membranes in leaves and isolated chloroplasts as revealed by small-angle neutron scattering. - BBA-Bioenergetics 1837: 1572-1580, 2014.
Go to original source... - Vujin J., Szabó T., Panajotovic R. et al.: Photosynthetic reaction center/graphene bio-hybrid for low-power optoelectronics. - Photosynthetica 61: 465-472, 2023.
Go to original source...




