about
Regulation of photosynthetic light harvesting involves intrathylakoid lumen pH sensing by the PsbS proteinThe effect of Diel temperature and light cycles on the growth of nannochloropsis oculata in a photobioreactor matrixThe site of regulation of light capture in Symbiodinium: does the peridinin-chlorophyll a-protein detach to regulate light capture?Comparing photosynthetic and photovoltaic efficiencies and recognizing the potential for improvement.Plasticity in light reactions of photosynthesis for energy production and photoprotection.Limitations to photosynthesis by proton motive force-induced photosystem II photodamageDetermining the limitations and regulation of photosynthetic energy transduction in leaves.Biology and technology for photochemical fuel production.Modulation of energy-dependent quenching of excitons in antennae of higher plants.The importance of energy balance in improving photosynthetic productivity.Lutein accumulation in the absence of zeaxanthin restores nonphotochemical quenching in the Arabidopsis thaliana npq1 mutant.Depletion of stromal P(i) induces high 'energy-dependent' antenna exciton quenching (q(E)) by decreasing proton conductivity at CF(O)-CF(1) ATP synthase.NPQ(T) : a chlorophyll fluorescence parameter for rapid estimation and imaging of non-photochemical quenching of excitons in photosystem-II-associated antenna complexes.RAF2 is a Rubisco Assembly Factor in Arabidopsis thaliana.Hacking the thylakoid proton motive force for improved photosynthesis: modulating ion flux rates that control proton motive force partitioning into Δψ and ΔpH.Photosynthesis in Arabidopsis Is Unaffected by the Function of the Vacuolar K+ Channel TPK3
P50
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P50
description
researcher ORCID ID = 0000-0003-2181-6888
@en
name
David M Kramer
@ast
David M Kramer
@en
David M Kramer
@es
David M Kramer
@nl
type
label
David M Kramer
@ast
David M Kramer
@en
David M Kramer
@es
David M Kramer
@nl
prefLabel
David M Kramer
@ast
David M Kramer
@en
David M Kramer
@es
David M Kramer
@nl
P1153
26643239600
P21
P31
P496
0000-0003-2181-6888