Search results for "Green sulfur bacteria"

showing 4 items of 4 documents

Photoferrotrophy: Remains of an Ancient Photosynthesis in Modern Environments

2017

Photoferrotrophy, the process by which inorganic carbon is fixed into organic matter using light as an energy source and reduced iron [Fe(II)] as an electron donor, has been proposed as one of the oldest photoautotrophic metabolisms on Earth. Under the iron-rich (ferruginous) but sulfide poor conditions dominating the Archean ocean, this type of metabolism could have accounted for most of the primary production in the photic zone. Here we review the current knowledge of biogeochemical, microbial and phylogenetic aspects of photoferrotrophy, and evaluate the ecological significance of this process in ancient and modern environments. From the ferruginous conditions that prevailed during most …

0301 basic medicineMicrobiology (medical)Biogeochemical cycle030106 microbiologyReviewChemoclineMicrobiology03 medical and health sciencesferruginous conditionsevolutionPhotic zone14. Life underwaterArchean oceanPrimary producersbiologyphotoferrotrophyEcologyBiosphereBiogeochemistryiron-rich meromictic lakes15. Life on landbiology.organism_classification030104 developmental biology13. Climate actionGreen sulfur bacteriaEnvironmental scienceanoxygenic phototrophsEnergy sourceFrontiers in Microbiology
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Excitation Energy Transfer in Isolated Chlorosomes from Chlorobaculum tepidum and Prosthecochloris aestuarii

2012

Excitation energy transfer in chlorosomes from photosynthetic green sulfur bacteria, Chlorobaculum (Cba.) tepidum and Prosthecochloris (Pst.) aestuarii, have been studied at room temperature by time-resolved femtosecond transient absorption spectroscopy. Bleach rise times from 117 to 270 fs resolved for both chlorosomes reflect extremely efficient intrachlorosomal energy transfer. Bleach relaxation times, from 1 to 3 ps and 25 to 35 ps, probed at 758 nm were tentatively assigned to intrachlorosomal energy transfer based on amplitude changes of the global fits and model calculations. The anisotropy decay constant of about 1 ps resolved at 807 nm probe wavelength for the chlorosomes from Chlo…

biologyChemistryChloroflexus aurantiacusRelaxation (NMR)ChlorosomeGeneral Medicinebiology.organism_classificationPhotochemistryBiochemistryChemical physicsGreen sulfur bacteriaUltrafast laser spectroscopyFemtosecondPhysical and Theoretical ChemistrySpectroscopyExcitationPhotochemistry and Photobiology
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Diversity of freshwater Epsilonproteobacteria and dark inorganic carbon fixation in the sulphidic redoxcline of a meromictic karstic lake.

2015

Sulfidic redoxclines are a suitable niche for the growth and activity of different chemo- and photolithotrophic sulphide-oxidizing microbial groups such as the Epsilonproteobacteria and the green sulfur bacteria (GSB). We have investigated the diversity, abundance and contribution to inorganic carbon uptake of Epsilonproteobacteria in a meromictic basin of Lake Banyoles. CARD-FISH counts revealed that Epsilonproteobacteria were prevalent at the redoxcline in winter (maximum abundance of 2 × 10(6) cells mL(-1), ≈60% of total cells) but they were nearly absent in summer, when GSB bloomed. This seasonal trend was supported by 16S rRNA gene pyrotag datasets, which revealed that the epsilonprote…

Populationchemistry.chemical_elementFresh WaterApplied Microbiology and BiotechnologyMicrobiologyCarbon CycleChlorobiTotal inorganic carbonAbundance (ecology)RNA Ribosomal 16SAutotropheducationIn Situ Hybridization FluorescencePhylogenyArcobactereducation.field_of_studyAutotrophic ProcessesEpsilonproteobacteriaEcologybiologyEcologyCarbon Dioxidebiology.organism_classificationSulfurCarbonLakeschemistryArcobacterGreen sulfur bacteriaFEMS microbiology ecology
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Exciton description of chlorosome to baseplate excitation energy transfer in filamentous anoxygenic phototrophs and green sulfur bacteria.

2013

A description of intra-chlorosome and from chlorosome to baseplate excitation energy transfer in green sulfur bacteria and in filamentous anoxygenic phototrophs is presented. Various shapes and sizes, single and multiwalled tubes, cylindrical spirals and lamellae of the antenna elements mimicking pigment organization in chlorosomes were generated by using molecular mechanics calculations, and the absorption, LD, and CD spectra of these were predicted by using exciton theory. Calculated absorption and LD spectra were similar for all modeled antenna structures; on the contrary, CD spectra turned out to be sensitive to the size and pigment orientations in the antenna. It was observed that, bri…

Physics::Biological PhysicsTime FactorsPhototrophbiologyChemistryExcitonChlorosomeModels Theoreticalbiology.organism_classificationMolecular physicsAnoxygenic photosynthesisSurfaces Coatings and FilmsChlorobiCrystallographyBacterial ProteinsEnergy TransferGreen sulfur bacteriaMaterials ChemistryPhysical and Theoretical ChemistryAntenna (radio)Organic ChemicalsAbsorption (electromagnetic radiation)ta116BacteriochlorophyllsExcitationThe journal of physical chemistry. B
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