DUAL-KLAS-NIR

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P700, Plastocyanin, Ferredoxin & Chlorophyll Fluorescence Measuring System

Scientific Publications using Walz Devices

Source: Google Scholar.
Keywords: (Walz OR Waltz) Effeltrich.
Date: August 22, 2025.

Ʃ = 11227

Per Year

Source: Google Scholar.
Keywords: (Walz OR Waltz) Effeltrich.
Date: August 22, 2025.

Ʃ = 11227

Year

Effect of the insecticide clothianidin on the photosynthetic electron transport chain in pea.

Volgusheva AA, Hao J, He H, Lovyagina ER, Loktyushkin AV, Parshina EY, Luneva OG, Balzhumanov AA, Khruschev SS, Maksimov GV, Rubin AB

Photochemistry and Photobiology

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Redox state of photosynthetic ferredoxin under heat and light stress.

Pshybytko NL

Journal of Applied Spectroscopy 91: 342-348

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Glycogen synthesis prevents metabolic imbalance and disruption of photosynthetic electron transport from photosystem II during transition to photomixotrophy in Synechocystis sp. PCC 6803.

Ortega-Martinez P, Nikkanen L, Wey LT, Florencio FJ, Allahverdiyeva Y, Díaz-Troya S

New Phytologist 243: 162-179

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Dynamics and interplay of the photosynthetic regulatory processes depend on the amplitudes of oscillating light.

Niu Y, Matsubara S, Nedbal L, Lazár D

Plant, Cell & Environment 47: 2240-2257

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A mathematical model of photoinhibition: exploring the impact of quenching processes.

Nies T, Matsubara S, Ebenhöh O

in silico Plants 6: diae001

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Flavonols do not affect aphid load in green or senescing birch leaves but coincide with a decrease in photosystem II functionality.

Mattila H, Khorobrykh S, Tyystjärvi E

Biology Open 13: bio060325

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Strong heterologous electron sink outcompetes alternative electron transport pathways in photosynthesis.

Hubáček M, Wey LT, Kourist R, Malihan-Yap L, Nikkanen L, Allahverdiyeva Y

The Plant Journal 119: 2500-2513

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Manganese deficiency alters photosynthetic electron transport in Marchantia polymorpha.

Hani U, Krieger-Liszkay A

Plant Physiology and Biochemistry 215: 109042

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A mathematical model to simulate the dynamics of photosynthetic light reactions under harmonically oscillating light.

Fuente D, Orlando M, Bailleul B, Jullien L, Lazár D, Nedbal L

Plant Physiology and Biochemistry 217: 109138

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Proton gradient regulation 5 is required to avoid photosynthetic oscillations during light transitions.

Degen GE, Pastorelli F, Johnson MP

Journal of Experimental Botany 75: 947-961

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Flv3A facilitates O2 photoreduction and affects H2 photoproduction independently of Flv1A in diazotrophic Anabaena filaments.

Santana-Sánchez A, Nikkanen L, Werner E, Tóth G, Ermakova M, Kosourov S, Walter J, He M, Aro E-M, Allahverdiyeva Y

New Phytologist 237: 126-139

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Evaluating the oxidation rate of reduced ferredoxin in Arabidopsis thaliana independent of photosynthetic linear electron flow: plausible activity of ferredoxin-dependent cyclic electron flow around photosystem I.

Ohnishi M, Maekawa S, Wada S, Ifuku K, Miyake C

International Journal of Molecular Sciences 24: 12145

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Plants cope with fluctuating light be frequency-dependent nonphotochemical quenching and cyclic electron transport.

Niu Y, Lazár D, Holzwarth AR, Kramer DM, Matsubara S, Fiorani F, Poorter H, Schrey SD, Nedbal L

New Phytologist 239: 1869-1886

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Eukaryote-specific assembly factor DEAP2 mediates an early step of photosystem II assembly in Arabidopsis.

Keller J-M, Frieboes MJ, Jödecke L, Kappel S, Wulff N, Rindfleisch T, Sandoval-Ibanez O, Gerlach I, Thiele W, Bock R, Eirich J, Finkemeier I, Schünemann D, Zoschke R, Schöttler MA, Armbruster U

Plant Physiology, in press

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The photosystem I supercomplex from a primordial green alga Ostreococcus tauri harbors three light-harvesting complex trimers.

Ishii A, Shan J, Sheng X, Kim E, Watanabe A, Yokono M, Noda C, Song C, Murata K, Liu Z, Minagawa J

eLife12: e84488

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Enhanced function of non-photoinhibited photosystem II complexes upon PS II photoinhibition.

Gunell S, Lempiäinen T, Rintamäki, Aro E-M, Tikkanen M

BBA-Bioenergetics 1864: 148978

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Higher reduced state of Fe/S-signals, with the suppressed oxidation of P700, causes PS I inactivation in Arabidopsis thaliana.

Furutani R, Wada S, Ifuku K, Maekawa S, Miyake C

Antioxidants 12: 21

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High cyclic electron transfer via the PGR5 pathway in the absence of photosynthetic control.

Degen GE, Jackson PJ, Proctor MS, Zoulias N, Casson SA, Johnson MP

Plant Physiology 192: 370-386

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Scrutinizing the impact of alternating electromagnetic fields on molecular features of the model plant Arabidopsis thaliana.

Schmidtpott SM, Danho S, Kumar V, Seidel T, Schöllhorn W, Dietz K-J

International Journal of Environmental Research and Public Health 19: 5144

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Determining Photosynthetic Control, a probe for the balance between electron transport and Calvin-Benson cycle activity, with the DUAL-KLAS-NIR.

Schansker G

Photosynthesis Research 153: 191-204

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CP12 fine-tunes the Calvin-Benson cycle and carbohydrate metabolism in cyanobacteria.

Lucius S, Theune M, Arrivault S, Hildebrandt S, Mullineaux CW, Gutekunst K, Hagemann

Frontiers in Plant Science 13: 1028794

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Insight on the regulation of photosynthesis in pea leaves exposed to oscillating light.

Lazár D, Niu Y, Nedbal L

Journal of Experimental Botany 73: 6380-6393

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Plants acclimate to photosystem I photoinhibition by readjusting the photosynthetic machinery.

Lempiäinen T, Rintamäki E, Aro E-M, Tikkanen M

Plant, Cell and Environment 10: 2954-2971

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Synechocystis sp. PCC 6803 requires the bidirectional hydrogenase to metabolize glucose and arginine under oxic conditions.

Burgstaller H, Wang Y, Caliebe J, Hueren V, Appel J, Boehm M, Leitzke S, Theune M, King PW, Gutekunst

Frontiers in Microbiology 13: 896190

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Evidence for electron transfer from the bidirectional hydrogenase to the photosynthetic complex I (NDH-1) in the Cyanobacterium Synechocystis sp. PCC 6803.

Appel J, Craig S, Theune M, Hüren V, Künzel S, Forberich B, Bryan S, Gutekunst K

Microorganisms 10: 1617

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Flv3A facilitates O2 photoreduction and affects H2 photoproduction independently of Flv1A in diazotrophic Anabaena filaments.

Santana-Sanchez A, Nikkanen L, Toth G, Ermakova M, Kosourov S, Walter J, He M, Aro E-M, Allahverdiyeva Y

Pyruvate:ferredoxin oxidoreductase and low abundant ferredoxins support aerobic photomixotrophic growth in cyanobacteria.

Wang Y, Chen X, Spengler K, Terberger K, Boehm M, Appel J, Barske T, Timm S, Battchikova N, Hagemann M, Gutekunst K

Photosynthetic linear electron flow drives CO2 assimilation in maize leaves.

Shimakawa G, Miyake C

International Journal of Molecular Sciences 22: 4894

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PGRL2 triggers degradation of PGR5 in the absence of PGRL1.

Rühle T, Dann M, Reiter B, Schünemann D, Naranjo B, Penzler J-F, Kleine T, Leister D

Nature Communications 12: 3941

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Singlet oxygen, flavonols and photoinhibition in green and senescing silver birch leaves.

Mattila H, Sotoudehnia P, Kuuslampi T, Stracke R, Mishra KB, Tyystjärvi E

Trees 35: 1267–1282

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Dynamic thylakoid stacking and state transitions work synergistically to avoid acceptor-side limitation of photosystem I.

Hepworth C, Wood WHJ, Emrich-Mills TZ, Procter MS, Casson S, Johnson MP

Nature Plants 7: 87-98

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Developmental acclimation of the thylakoid proteome to light intensity in Arabidopsis.

Flannery SE, Hepworth C, Wood WHJ, Pastorelli F, Hunter CN, Dickman MJ, Jackson PJ, Johnson MP

The Plant Journal 105: 223–244

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Differences in ionic, enzymatic, and photosynthetic features characterize distinct salt tolerance in eucalyptus species.

Balti H, Abassi M, Dietz K-J, Kumar V

Plants 10: 1401

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In-vivo quantification of electron transport makes up about 35% in a cyanobacterium.
Theune ML, Hildebrant S, Steffen-Heins A, Bilger W, Gutekunst K, Appel J

Biochimica et Biophysica Acta 1862: 148353

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redundancy and crosstalk between flavodiiron proteins and NDH-1 in Synechocystis sp. PCC 6803.
Nikkanen L, Santana Sánchez A, Ermakova M, Rögner M, Cournac L, Allahverdiyeva Y
Redox regulation by peroxiredoxins is linked to their thioredoxin-dependent oxidase function.
Telman W, Liebthal M, Dietz K-J

Photosynthesis Research 145: 31-41

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Near-infrared in vivo measurements of photosystem I and its luminal electron donors with a recently developed spectrophotometer.
Shimakawa G, Sétif P, Krieger-Liszkay A

Photosynthesis Research 145: 31-41

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Identification of the electron donor tot flavodiiron proteins in Synechocystis sp. PCC 6803 by in vivo spectroscopy.
Sétif P, Shimakawa G, Krieger-Liszkay A, Miyake C

Biochimica et Biophysica Acta 1861: 148256

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Functional redundancy between flavodiiron proteins and NDH-1 in Synechoscystis sp. PCC 6803.
Nikkanen L, Santana Sánchez S, Ermakova M, Rögner M, Cournac L, Allahverdiyeva Y

The Plant Journal 103: 1460-1476

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Intrinsic fluctuations in transpiration induce photorespiration to oxidize P700 in photosystem I.
Furutani R, Makino A, Suzuki Y, Wada S, Shimakawa G, Miyake C

Plants 9: 1761

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A commonly used photosynthetic inhibitor fails to block electron flow to Photosystem I in intact systems.
Fitzpatrick D, Aro E-M, Tiwari A

Frontiers in Plant Science 11: 382

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Interference between arsenic-induced toxicity and hypoxia.
Kumar V, Vogelsang L, Seidel T, Schmidt R, Weber M, Reichelt M, Meyer A, Clemens S, Sharma SS, Dietz K-J

Plant Cell and Environment 42: 574-590

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Oxidation of P700 induces alternative electron flow in photosystem I in wheat leaves.
Kadota K, Furutani R, Makino A, Suzuki Y, Wada S, Miyake C

Plants 8: 152

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Consequences of photosystem-I damage and repair on photosynthesis and carbon use in Arabidopsis thaliana.
Lima-Melo Y, Gollan PJ, Tikkanen M, Silveira JAG, Aro E-M

Plant Journal 97: 1061-1072

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Multilevel regulation of non-photochemical quenching and state transitions by chloroplast NADPH-dependent thioredoxin reductase.
Nikkanen L, Guinea Diaz M, Toivola J, Tiwari A, Rintamäki E

Physiologia Plantarum 166: 211-225

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Near-infrared in vitro measurements of photosystem I cofactors and electron-transfer partners with a recently developed spectrophotometer.
Sétif P, Boussac A, Krieger-Liszkay A

Photosynthesis Research 142: 307-319

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Redox regulation by peroxiredoxins is linked to their thioredoxin-dependent oxidase function
Telman W, Liebthal M, Dietz K-J

Photosynthesis Research, in press

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Regulation of cyclic electron flow by chloroplast NADPH-dependent thioredoxin system.
Nikkanen L, Toivola J, Trotta A, Guinea Diaz M, Tikkanen M, Aro E-M, Rintamäki E

Plant Direct 2: e00093

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Changing frequency of fluctuating light reveals the molecular mechanism for P700 oxidation in plant leaves.
Shimakawa G, Miyake C

Plant Direct 2: e00073

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PROTON GRADIENT REGULATION 5 supports linear electron flow to oxidize photosystem I.
Takagi D, Miyake C

Physiologia Plantarum 164: 337–348

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The chloroplast 2-cysteine peroxiredoxin functions as thioredoxin oxidase in redox regulation of chloroplast metabolism.
Vaseghi M-J, Chibani K, Telman W, Liebthal MF, Gerken M, Schnitzer H, Müller SM, Dietz K-J

eLife 7: e38194

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Redox changes of ferredoxin, P700, and plastocyanin measured simultaneously in intact leaves.
Schreiber U

Photosynthesis Research 134: 343–360

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Deconvolution of ferredoxin, plastocyanin, and P700 transmittance changes in intact leaves with a new type of kinetic LED array spectrophotometer.
Klughammer C, Schreiber U

Photosynthesis Research 128: 195–214

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Analysis of photosystem I donor and acceptor sides with a new type of online-deconvoluting kinetic LED-array spectrophotometer.
Schreiber U, Klughammer C

Plant and Cell Physiology 57: 1454–1467

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