Occurrence, biosynthesis and function of isoprenoid quinones B Nowicka, J Kruk Biochimica et Biophysica Acta (BBA)-Bioenergetics 1797 (9), 1587-1605, 2010 | 543 | 2010 |
Physiological and biochemical responses to high light and temperature stress in plants R Szymańska, I Ślesak, A Orzechowska, J Kruk Environmental and Experimental Botany 139, 165-177, 2017 | 321 | 2017 |
Tocopherol as singlet oxygen scavenger in photosystem II J Kruk, H Holländer-Czytko, W Oettmeier, A Trebst Journal of plant physiology 162 (7), 749-757, 2005 | 215 | 2005 |
Evidence for light wavelength-specific photoelectrophysiological signaling and memory of excess light episodes in Arabidopsis M Szechyńska-Hebda, J Kruk, M Górecka, B Karpińska, S Karpiński The Plant Cell 22 (7), 2201-2218, 2010 | 213 | 2010 |
Plastoquinol as a singlet oxygen scavenger in photosystem II J Kruk, A Trebst Biochimica et Biophysica Acta (BBA)-Bioenergetics 1777 (2), 154-162, 2008 | 160 | 2008 |
Improving photosynthesis, plant productivity and abiotic stress tolerance–current trends and future perspectives B Nowicka, J Ciura, R Szymańska, J Kruk Journal of Plant Physiology 231, 415-433, 2018 | 158 | 2018 |
Tocochromanols, plastoquinol, and other biological prenyllipids as singlet oxygen quenchers—determination of singlet oxygen quenching rate constants and oxidation products J Gruszka, A Pawlak, J Kruk Free Radical Biology and Medicine 45 (6), 920-928, 2008 | 129 | 2008 |
Phytohormones as targets for improving plant productivity and stress tolerance J Ciura, J Kruk Journal of plant physiology 229, 32-40, 2018 | 125 | 2018 |
Plastoquinol is the main prenyllipid synthesized during acclimation to high light conditions in Arabidopsis and is converted to plastochromanol by tocopherol cyclase R Szymańska, J Kruk Plant and Cell Physiology 51 (4), 537-545, 2010 | 120 | 2010 |
An HPLC-based method of estimation of the total redox state of plastoquinone in chloroplasts, the size of the photochemically active plastoquinone-pool and its redox state in … J Kruk, S Karpinski Biochimica et Biophysica Acta (BBA)-Bioenergetics 1757 (12), 1669-1675, 2006 | 107 | 2006 |
Redox changes of cytochrome b 559 in the presence of plastoquinones J Kruk, K Strzalka Journal of Biological Chemistry 276 (1), 86-91, 2001 | 107 | 2001 |
Kinetics of violaxanthin de‐epoxidation by violaxanthin de‐epoxidase, a xanthophyll cycle enzyme, is regulated by membrane fluidity in model lipid bilayers D Latowski, J Kruk, K Burda, M Skrzynecka‐Jaskier, A Kostecka‐Gugała, ... European Journal of Biochemistry 269 (18), 4656-4665, 2002 | 106 | 2002 |
Tocopherol content and isomers' composition in selected plant species R Szymańska, J Kruk Plant Physiology and Biochemistry 46 (1), 29-33, 2008 | 104 | 2008 |
RP-LC for determination of plastochromanol, tocotrienols and tocopherols in plant oils J Gruszka, J Kruk Chromatographia 66 (11-12), 909-913, 2007 | 99 | 2007 |
Plastochromanol-8: fifty years of research J Kruk, R Szymańska, J Cela, S Munne-Bosch Phytochemistry 108, 9-16, 2014 | 98 | 2014 |
Dark reoxidation of the plastoquinone-pool is mediated by the low-potential form of cytochrome b-559 in spinach thylakoids J Kruk, K Strzałka Photosynthesis Research 62 (2), 273-279, 1999 | 92 | 1999 |
Riboflavin as a Source of Autofluorescence in Eisenia fetida Coelomocytes B Koziol, M Markowicz, J Kruk, B Plytycz Photochemistry and photobiology 82 (2), 570-573, 2006 | 89 | 2006 |
Powered by light: Phototrophy and photosynthesis in prokaryotes and its evolution B Nowicka, J Kruk Microbiological research 186, 99-118, 2016 | 83 | 2016 |
Plastoquinol and α-tocopherol quinol are more active than ubiquinol and α-tocopherol in inhibition of lipid peroxidation J Kruk, M Jemioła-Rzemińska, K Strzałka Chemistry and physics of lipids 87 (1), 73-80, 1997 | 82 | 1997 |
Physiological characterization of Chlamydomonas reinhardtii acclimated to chronic stress induced by Ag, Cd, Cr, Cu and Hg ions B Nowicka, B Pluciński, P Kuczyńska, J Kruk Ecotoxicology and environmental safety 130, 133-145, 2016 | 75 | 2016 |