2D crystals____________________________
abiotic stressacclimation active
oxygen adaptation aggregates algae alternative
electron transport amino acid sequences anion channels anions antennae anthocyanins antibody antioxidants aquatic
ecosystems ascorbate assembly atomic model ATP ATP
synthase auxiliary enzymes auxins ____________________________
bacterial photosynthesisbacterial
reaction center Bchl bicarbonate biogenesis biomass biomedicine bioreactors biosynthesis biotechnology biotic
stress bleaching blue light brown alga bundle
sheath chloroplasts ____________________________
C metabolismsC partitioning C3 C4 calcium Calvin-cycle CAM canopy carbohydrate carbon
isotope carbonic anhydrase carotenoids catalase cation
channels cations cDNA cloning cell cycle cell
evolution cell structure chaperone proteins charge
recombination charge separation charge stabilization charge
transfer chemiluminescence chemiosmosis chilling Chl
fluorescence induction chloride Chl biosynthesis Chl
degradation chloroplast chloroplast development chloroplast
differentiation chloroplast genes chloroplast transformation chlororespiration chlorosis chlorosomes chromatic
adaptation chromatography circadian rythm circular
dichroism CO2 concentrating mechanisms CO2
uptake cold stress complex formation coupling/uncoupling cryo-electron
microscopy crop improvement cross linking crystalization cyanobacteria cytochrome
b-559 cytochrome complexes cytochromes cytokinins cytosolic
enzymes ____________________________
D1 proteinD1 turnover D1/D2-cyt-b-559 D2
protein degradation pathways dehydrogenases dessiccation design
of proteins detergents diatoms dinoflagellates diurnal
changes DNA-binding proteins down regulation drought
stress ____________________________
ecologyecosystem electrochromism electrogenic
reactions electron microscopy electron transfer electron
transport electronic excitation transfer electronic structure electrostatic
interaction elevated CO2 concentration ELIPs ENDOR endosymbiosis energy
dissipation energy transduction environment environmental
stress enzymes epoxidation EPR etioplasts eukaryotes evolution excited
state dynamics excited state lifetime ____________________________
fatty acidsfatty-acid
desaturation femtosecond spectroscopy ferredoxins Fe-S
centers flavonoids fluorescence fluorescence imaging fluorescence
lifetimes FNR free radicals frost tolerance FT
Raman FTIR ____________________________
gas exchangegene expression gene
regulation genetic manipulation genotypes global climate
changes glucose regulation glycerolipids glycolisis green
algae green filamentous bacteria green sulfur bacteria greening ____________________________
H-bondH2 O2 halobacteria heat
shock proteins heat stress heavy metals heliobacteria herbicide
resistance herbicides heterocysts higher plants hole
burning spectroscopy hormones horticulture HPLC hydrogen
production hydrogenase hydroxyl radicals hyperfine
coupling ____________________________
imagingIR spectroscopy inhibitors intercellular
CO2 concentration intermediate electron acceptors ____________________________
J
K
laser spectroscopyleaf
physiology LHC II light acclimation light activation light
distribution light gradient light reflection light
harvesting complexes light interception light penetration light
quality light regulation light sensing light stress line
narrowing linear dichroism lipid desaturation lipid-protein
interactions lipids liquid crystals luminescence ____________________________
macroalgaemagnesium manganese
cluster marine algae mass spectrometry Mehler reaction membrane
fluidity membrane fragments membrane potential membrane
protein membrane structure mesoclimate mesophyll chloroplasts metabolite
transport metalloproteins metabolic processes microalgae microclimate microscopy mitochondria model
systems modelling molecular biology molecular modelling monolayers mutants mutational
analysis ____________________________
N metabolismNADH-dehydrogenase NADP NADPH net
photosynthesis nitrogen fixation NMR non-heme iron non-photochemical
quenching nuclear genes nutrients ____________________________
O2 evolutionOEC
proteins oligomers ontogenesis optical properties osmoregulators osmotic
pressure overexpression oxidative stress ozone ____________________________
P metabolismP680 P700 pathogens Pchl PDT PEPC peroxidases peroxisomes pH-gradients pH-regulation pH-dependence pheophytins phosphatases phosphorescence phosphorylation/dephosphorylation photoacoustic
spectroscopy photochemical quenching photochemistry photoconversion photodegradation photoinactivation photoinhibition photon
echo photooxidation photophosphorylation photoprotection photorespiration photosystem
1 photosystem 2 phototaxis phototransformation phototrophs phycobiliproteins phylloquinones phylogeny phytochromes phytoplankton pigment
binding pigment-protein complexes pigments plastocyanin plastoquinone
pool polarized spectroscopy polyamines polypeptide
composition polyphosphate polysaccharides porphyrin
metabolism porphyrins post-transcription primary events primary
function primary processes procaryote processing enzymes prochlorophytes productivity proteases protein
assembly protein import protein kinase protein repair protein
synthesis protein targeting protein translocation protein
turnover proteoliposomes proteolysis protolytic reactions proton
channel proton transfer proton transport protonatable
residues purple bacteria ____________________________
Q-cycleQa Qb quantum
yield quenching quinones ____________________________
radioactive isotopesRaman
spectroscopy reaction centers recognition signal recombinant
DNA red algae redox potential regulatory processes remote
sensing repair mechanism resistance respiration Rieske
protein rising CO2 concentration RNA RNA
editing RNA polymerase RNA processing Rubisco ____________________________
S metabolismsalt stress salt
tolerance scavengers semiquinones senescence sequence
analysis shading signal transduction single crystals single-particle
averaging singlet O2 site-directed mutagenesis SOD soil source-sink spectroscopy S-states stable
isotopes starch stomata stromal enzymes structural
changes sucrose sucrose transport sugar phosphates sun
and shade leaves sunfleck supramolecular structures ____________________________
temperature acclimationtemperature
dependence temperature stresses terrestrial ecosystems tetrapyrroles thermal
sensitivity thermoluminescence thermophiles thermotolerance thioredoxins thylakoid
membranes time-resolved spectroscopy toxicity transgenic
plants transit polypeptides transit sequence triplet
states ____________________________
ultrafast spectroscopyultrastructure unicellular
algae unsaturated fatty acids UV damage UV-A UV-B UV-C ____________________________
virus diseasesvitamins ____________________________
water bindingwater household water
potential water stress weeds whole leaf whole
plants ____________________________
xanthophyll cycleX-ray
diffraction X-ray spectroscopy ____________________________
Y
Z