33 results on '"Pinnola, Alberta"'
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2. Light-harvesting complex stress-related proteins play crucial roles in the acclimation of Physcomitrella patens under fluctuating light conditions
3. Algae: A New Biomass Resource
4. Microsecond and millisecond dynamics in the photosynthetic protein LHCSR1 observed by single-molecule correlation spectroscopy
5. LHCSR3 is a nonphotochemical quencher of both photosystems in Chlamydomonas reinhardtii
6. Functional analysis of LHCSR1, a protein catalyzing NPQ in mosses, by heterologous expression in Arabidopsis thaliana
7. The Electronic Structure of Lutein 2 Is Optimized for Light Harvesting in Plants
8. A LHCB9-dependent photosystem I megacomplex induced under low light in Physcomitrella patens
9. Light-Harvesting Complex Stress-Related Proteins Catalyze Excess Energy Dissipation in Both Photosystems of Physcomitrella patens
10. Algae: A New Biomass Resource
11. Identification of Regulatory Molecular "Hot Spots" for LH/PLOD Collagen Glycosyltransferase Activity.
12. Algae: A New Biomass Resource
13. Ultrabroadband two-dimensional electronic spectroscopy reveals energy flow pathways in LHCII across the visible spectrum
14. Zeaxanthin Binds to Light-Harvesting Complex Stress-Related Protein to Enhance Nonphotochemical Quenching in Physcomitrella patens
15. Protein–Protein Interactions Induce pH-Dependent and Zeaxanthin-Independent Photoprotection in the Plant Light-Harvesting Complex, LHCII
16. Light-harvesting complex stress-related proteins play crucial roles in the acclimation of Physcomitrella patens under fluctuating light conditions
17. SARS-CoV-2 Spike Affinity and Dynamics Exclude the Strict Requirement of an Intermediate Host
18. Enhancement of Non-Photochemical Quenching in the Bryophyte Physcomitrella patens During Acclimation to Salt and Osmotic Stress
19. Zeaxanthin independence of photophysics in light-harvesting complex II in a membrane environment
20. Observation of dissipative chlorophyll-to-carotenoid energy transfer in light-harvesting complex II in membrane nanodiscs
21. Carotenoid-Mediated Light Harvesting in Plants Uncovered with Ultrabroadband Two-Dimensional Electronic Spectroscopy
22. Mapping out Photoprotective Dissipation in Green Plants Using Ultrabroadband 2D Electronic Spectroscopy
23. Observation of dissipative chlorophyll-to-carotenoid energy transfer in light-harvesting complex II in membrane nanodiscs
24. Protein–Protein Interactions Induce pH-Dependent and Zeaxanthin-Independent Photoprotection in the Plant Light-Harvesting Complex, LHCII.
25. Photoprotective Excess Energy Dissipation. Chapter11
26. The rise and fall of Light-Harvesting Complex Stress-Related proteins as photoprotection agents during evolution
27. Dissipative Pathways in Light-Harvesting Complex II Are Controlled by the Plant Membrane
28. Molecular mechanisms involved in plant photoprotection
29. Functional modulation of LHCSR1 protein from Physcomitrella patens by zeaxanthin binding and low pH
30. Single-molecule spectroscopy of LHCSR1 protein dynamics identifies two distinct states responsible for multi-timescale photosynthetic photoprotection
31. Electron transfer between carotenoid and chlorophyll contributes to quenching in the LHCSR1 protein from Physcomitrella patens
32. Regulation of Photosynthetic Light use efficiency: A comparative analysis through evolution
33. Heterologous Expression of Moss Light-harvesting Complex Stress-related 1 (LHCSR1), the Chlorophyll a-Xanthophyll Pigment-protein Complex Catalyzing Non-photochemical Quenching, in Nicotiana sp.
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