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1. Evolution of photoprotection mechanisms upon land colonization: evidence of PSBS-dependent NPQ in late Streptophyte algae.

2. Biochemical and structural analyses of a higher plant photosystem II supercomplex of a photosystem I-less mutant of barley.

3. The low energy emitting states of the Lhca4 subunit of higher plant photosystem I

4. Mechanistic aspects of the xanthophyll dynamics in higher plant thylakoids.

5. Net O2 exchange rates under dark and light conditions across different stem compartments.

6. Balancing protection and efficiency in the regulation of photosynthetic electron transport across plant evolution.

7. Functional analysis of PsbS transmembrane domains through base editing in Physcomitrium patens.

8. Acclimation of photosynthetic apparatus in the mesophilic red alga Dixoniella giordanoi.

9. A blueprint for gene function analysis through Base Editing in the model plant Physcomitrium (Physcomitrella) patens.

10. Regulation of electron transport is essential for photosystem I stability and plant growth.

11. Role of cyclic and pseudo‐cyclic electron transport in response to dynamic light changes in Physcomitrella patens.

12. The potential of quantitative models to improve microalgae photosynthetic efficiency.

13. Alternative electron transport mediated by flavodiiron proteins is operational in organisms from cyanobacteria up to gymnosperms.

14. Conservation of core complex subunits shaped the structure and function of photosystem I in the secondary endosymbiont alga Nannochloropsis gaditana.

15. Photosynthesis in extreme environments: responses to different light regimes in the Antarctic alga Koliella antarctica.

16. Protein redox regulation in the thylakoid lumen: The importance of disulfide bonds for violaxanthin de-epoxidase.

17. Coexistence of plant and algal energy dissipation mechanisms in the moss Physcomitrella patens.

18. Role of PSBS and LHCSR in Physcomitrella patens acclimation to high light and low temperature.

20. Stoichiometry of LHCI antenna polypeptides and characterization of gap and linker pigments in higher plants Photosystem I.

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