Area of research
Molecular Biology · Plant Science
Research interest
Research interests include Photosynthetic Processes and Mechanisms, Algal biology and biofuel production, Photoreceptor and optogenetics research, and Light effects on plants.
Loss of state transitions in Bryopsidales macroalgae and kleptoplastic sea slugs (Gastropoda, Sacoglossa)
Quince seed mucilage as an alternative for agar in plant tissue culture
Flavonols do not affect aphid load in green or senescing birch leaves but coincide with a decrease in Photosystem II functionality
Transcriptomic and proteomic analyses of distinct Arabidopsis organs reveal high <scp>PSI‐NDH</scp> complex accumulation in stems
Both external and internal factors induce heterogeneity in senescing leaves of deciduous trees
Redesign of the <i>Chlamydomonas reinhardtii</i><scp>Q<sub>B</sub></scp> binding niche reveals photosynthesis works in the absence of a driving force for <scp>Q<sub>A</sub></scp>‐<scp>Q<sub>B</sub></scp> electron transfer
Evolution and theft: loss of state transitions in Bryopsidales macroalgae and photosynthetic sea slugs
Red pigments in autumn leaves of Norway maple do not offer significant photoprotection but coincide with stress symptoms
Biophysical and molecular characteristics of senescing leaves of two Norway maple varieties differing in anthocyanin content
Singlet oxygen production by photosystem <scp>II</scp> is caused by misses of the oxygen evolving complex
Plastoquinone pool redox state and control of state transitions in Chlamydomonas reinhardtii in darkness and under illumination
Single-walled carbon nanotubes protect photosynthetic reactions in Chlamydomonas reinhardtii against photoinhibition.
Light‐induced damage to photosystem <scp>II</scp> at a very low temperature (195 K) depends on singlet oxygen
Evaluation of visible-light wavelengths that reduce or oxidize the plastoquinone pool in green algae with the activated F<sub>0</sub> rise method.
Differences in susceptibility to photoinhibition do not determine growth rate under moderate light in batch or turbidostat - a study with five green algae.
Genetic autonomy and low singlet oxygen yield support kleptoplast functionality in photosynthetic sea slugs
Singlet oxygen, flavonols and photoinhibition in green and senescing silver birch leaves
Ultraviolet screening by slug tissue and tight packing of plastids protect photosynthetic sea slugs from photoinhibition
Root-type ferredoxin-NADP<sup>+</sup> oxidoreductase isoforms in Arabidopsis thaliana: Expression patterns, location and stress responses.
Ultraviolet screening by slug tissue and tight packing of plastids protect photosynthetic sea slugs from photoinhibition
Genetic autonomy and low singlet oxygen yield support kleptoplast functionality in photosynthetic sea slugs
Oxygen and ROS in Photosynthesis.
Action spectrum of the redox state of the plastoquinone pool defines its function in plant acclimation
Effects of low temperature on photoinhibition and singlet oxygen production in four natural accessions of Arabidopsis
Photosynthetic sea slugs induce protective changes to the light reactions of the chloroplasts they steal from algae
Chlorophyll does not reflect green light – how to correct a misconception
Acclimation of Chlamydomonas reinhardtii to extremely strong light
Dissecting the interaction of photosynthetic electron transfer with mitochondrial signalling and hypoxic response in the Arabidopsis <i>rcd1</i> mutant.
Testing the Potential of Regulatory Sigma Factor Mutants for Wastewater Purification or Bioreactor Run in High Light.
Author response: Photosynthetic sea slugs induce protective changes to the light reactions of the chloroplasts they steal from algae