Search results for "Phototroph"

showing 10 items of 26 documents

Carbon photoassimilation by sharply stratified phototrophic communities at the chemocline of Lake Arcas (Spain)

1998

Three populations of phototrophic microorganisms were found closely stratified in the chemocline of the holomictic Lake Arcas. Cryptomonas spp. reached a maximum population density in microaerobic waters above dense plates of Oscillatoria cf. ornata and Chromatium weissei, whose maxima were found in the deeper sulfide-rich waters. High photoassimilation rates were found during the stratification period at the chemocline (up to 197.63 mg C m−3 h−1), especially at depths at which maximal densities of prokaryotic phototrophs were located, whereas much lower values were observed in the mixed zone of the lake. Despite these high rates, the contribution of carbon photoassimilation at the chemocli…

CyanobacteriaOscillatoriaEcologybiologyPhototrophChromatiumbiology.organism_classificationPhotosynthesisChemoclineApplied Microbiology and BiotechnologyMicrobiologyCryptomonasOceanographyAlgaeBotanyFEMS Microbiology Ecology
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The Proteome and Lipidome of Synechocystis sp. PCC 6803 Cells Grown under Light-Activated Heterotrophic Conditions*

2015

Cyanobacteria are photoautotrophic prokaryotes with a plant-like photosynthetic machinery. Because of their short generation times, the ease of their genetic manipulation, and the limited size of their genome and proteome, cyanobacteria are popular model organisms for photosynthetic research. Although the principal mechanisms of photosynthesis are well-known, much less is known about the biogenesis of the thylakoid membrane, hosting the components of the photosynthetic, and respiratory electron transport chain in cyanobacteria. Here we present a detailed proteome analysis of the important model and host organism Synechocystis sp. PCC 6803 under light-activated heterotrophic growth condition…

CyanobacteriaProtein FoldingProteomePhotosynthesisThylakoidsBiochemistryMass SpectrometryAnalytical ChemistryRespiratory electron transport chainMembrane LipidsBacterial ProteinsMolecular BiologybiologyResearchSynechocystisLipidomebiology.organism_classificationCarbonOxidative StressPhototrophic ProcessesMembraneBiochemistryThylakoidProteomeBiogenesisChromatography LiquidMolecular & Cellular Proteomics
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Microbial microstratification, inorganic carbon photoassimilation and dark carbon fixation at the chemocline of the meromictic Lake Cadagno (Switzerl…

2001

The microstratification of the microbial community at the chemocline of Lake Cadagno and the associated inorganic carbon fixation activity was studied by fine layer sampling. A deep chlorophyll maximum caused by diatoms overlying Cryptomonas was found at the upper edge of the chemocline. A high population density of phototrophic sulphur bacteria, mainly Amoebobacter cf. purpureus, occurred closely below the oxic-anoxic boundary. Despite the small fraction of total lake volume represented by the chemocline, half of the total carbon photoassimilation of the lake occurred within the chemocline with approximately equal contributions by oxygenic and anoxygenic phototrophs. Rates of dark carbon f…

Deep chlorophyll maximumEcologyPhototrophbiologyEcologyAquatic ScienceChemoclinebiology.organism_classificationAnoxygenic photosynthesisCarbon cycleCryptomonasTotal inorganic carbonEnvironmental chemistryPhytoplanktonEcology Evolution Behavior and SystematicsWater Science and TechnologyAquatic Sciences
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Spatio-temporal distribution and growth dynamics of phototrophic sulfur bacteria populations in the sulfide-rich Lake Arcas

2000

Lake Arcas exhibits a thermal stratification from April to October. A sulfide-rich anoxic hypolimnion is then formed between the deeper part of the thermocline and the lake bottom, and high population densities of phototrophic microorganisms are found at the oxic-anoxic interface. Chromatium weissei, a large rod, 8 × 4 μm in size, was the dominant phototrophic bacterium, reaching densities of up to 1.84 × 106 cells ml-1. Other phototrophic sulfur bacteria, such as Amoebobacter cf. purpureus, Thiocapsa sp., and Pelodictyon clathratiforme were also present in the anoxic hypolimnion, but their cell size and population densities were much lower. Net growth rates (0.125 to —0.123 d-1) and freque…

EcologybiologyPhototrophChromatiumAquatic SciencePhotosynthesisbiology.organism_classificationChemoclineAnoxic watersAnoxygenic photosynthesisPurple sulfur bacteriaBotanyHypolimnionEcology Evolution Behavior and SystematicsWater Science and TechnologyAquatic Sciences
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Phytoplankton communities of polar regions–Diversity depending on environmental conditions and chemical anthropopressure

2015

The polar regions (Arctic and Antarctic) constitute up to 14% of the biosphere and offer some of the coldest and most arid Earth's environments. Nevertheless several oxygenic phototrophs including some higher plants, mosses, lichens, various algal groups and cyanobacteria, survive that harsh climate and create the base of the trophic relationships in fragile ecosystems of polar environments. Ecosystems in polar regions are characterized by low primary productivity and slow growth rates, therefore they are more vulnerable to disturbance, than those in temperate regions. From this reason, chemical contaminants influencing the growth of photoautotrophic producers might induce serious disorders…

Environmental Engineering010504 meteorology & atmospheric sciencesLichensAntarctic RegionsFresh WaterBryophyta010501 environmental sciencesManagement Monitoring Policy and LawCyanobacteria01 natural sciencesPhytoplanktonTemperate climateArctic environment; Cyanobacteria; Persistent organic pollutants (POPs); Phytoplankton communitiesEcosystemLichenWaste Management and DisposalEcosystem0105 earth and related environmental sciencesTrophic levelPhototrophPrimary producersEcologyArctic RegionsfungiGeneral MedicineEutrophicationCold ClimateArcticPhytoplanktonEnvironmental scienceWater Pollutants ChemicalEnvironmental MonitoringJournal of Environmental Management
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Biotransformations of monoterpenes by photoautotrophic micro-organisms.

2014

Summary Monoterpenes are widely used in food technology, cosmetic and pharmaceutical industries and as compounds of agricultural importance. It is known that compounds comprising this class can be transformed by a variety of organisms, namely by: bacteria, fungi, yeasts, plants or isolated enzymes. Biotransformations, as one of the most important tools of green chemistry, allow obtaining new products using whole cells of micro-organisms or isolated enzymes in mild reaction conditions. Therefore, biotransformations of monoterpenes, by different type of reaction such as: epoxidation, oxidation and stereoselective hydroxylation, resulted in the production of so desired, enantiomerically define…

Green chemistryCyanobacteriaFood industryFood technologyCyanobacteriaApplied Microbiology and BiotechnologyHydroxylationchemistry.chemical_compoundBiotransformationBotanyMicroalgaeOrganic chemistryblue-green algaeBiotransformationAutotrophic ProcessesBicyclic moleculebiologybusiness.industryGeneral Medicinebiology.organism_classificationPhototrophic ProcesseschemistryMonoterpenesbusinessBacteriaBiotechnologyJournal of applied microbiology
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Light and Primary Production Shape Bacterial Activity and Community Composition of Aerobic Anoxygenic Phototrophic Bacteria in a Microcosm Experiment

2020

ABSTRACT Phytoplankton is a key component of aquatic microbial communities, and metabolic coupling between phytoplankton and bacteria determines the fate of dissolved organic carbon (DOC). Yet, the impact of primary production on bacterial activity and community composition remains largely unknown, as, for example, in the case of aerobic anoxygenic phototrophic (AAP) bacteria that utilize both phytoplankton-derived DOC and light as energy sources. Here, we studied how reduction of primary production in a natural freshwater community affects the bacterial community composition and its activity, focusing primarily on AAP bacteria. The bacterial respiration rate was the lowest when photosynthe…

Lightphytoplankton-bacteria couplingaerobic anoxygenic phototrophic bacteriabacterial community compositionAAP community compositionlcsh:QR1-502Fresh WaterBacterial growthPhotosynthesisBacterial Physiological Phenomenaphytoplankton-bacteria couplingPhotoheterotrophMicrobiologylcsh:Microbiology03 medical and health sciencesbacterial community compositionVDP::Matematikk og Naturvitenskap: 400::Basale biofag: 470AAP community compositionSeawaterFood sciencePhotosynthesisMolecular BiologyEcosystem030304 developmental biologyaerobic anoxygenic phototrophic bacteria2. Zero hunger0303 health sciencesPhototroph030306 microbiologyChemistryMicrobiotaAnoxygenic photosynthesisQR1-502Bacteria AerobicLight intensityPhototrophic ProcessesInternationalAerobic anoxygenic phototrophic bacteriaPlan_S-Compliant_OAErratumEnergy sourcemSphere
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Isoprenoid biosynthesis in eukaryotic phototrophs: a spotlight on algae.

2011

Isoprenoids are one of the largest groups of natural compounds and have a variety of important functions in the primary metabolism of land plants and algae. In recent years, our understanding of the numerous facets of isoprenoid metabolism in land plants has been rapidly increasing, while knowledge on the metabolic network of isoprenoids in algae still lags behind. Here, current views on the biochemistry and genetics of the core isoprenoid metabolism in land plants and in the major algal phyla are compared and some of the most pressing open questions are highlighted. Based on the different evolutionary histories of the various groups of eukaryotic phototrophs, we discuss the distribution an…

Metabolic networkMevalonic AcidPlant ScienceAlgaePhylogeneticsBotanyGeneticsPlastidPhylogenyPlant ProteinsPhototrophbiologyPhylumTerpenesorganic chemicalsStreptophytafungifood and beveragesGeneral Medicinebiology.organism_classificationDimethylallyltranstransferaseBiological EvolutionErythritollipids (amino acids peptides and proteins)Green algaeSugar PhosphatesGenetic EngineeringStreptophytaAgronomy and Crop ScienceMetabolic Networks and PathwaysPlant science : an international journal of experimental plant biology
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Phototrophic Fe(II)-oxidation in the chemocline of a ferruginous meromictic lake

2014

Precambrian Banded Iron Formation (BIF) deposition was conventionally attributed to the precipitation of iron-oxides resulting from the abiotic reaction of ferrous iron (Fe(II)) with photosynthetically produced oxygen. Earliest traces of oxygen date from 2.7 Ga, thus raising questions as to what may have caused BIF precipitation before oxygenic photosynthesis evolved. The discovery of anoxygenic phototrophic bacteria thriving through the oxidation of Fe(II) has provided support for a biological origin for some BIFs, but despite reports suggesting that anoxygenic phototrophs may oxidize Fe(II) in the environment, a model ecosystem of an ancient ocean where they are demonstrably active was la…

Microbiology (medical)cryptic sulfur cyclingbiologyPhototrophEcologyanoxygenic photosynthesislcsh:QR1-502early life evolutionChlorobiumbiology.organism_classificationChemoclineAnoxygenic photosynthesisAnoxic watersMicrobiologylcsh:MicrobiologyFerrousWater column13. Climate actionEnvironmental chemistrybanded iron formationBanded iron formationOriginal Research ArticlegeomicrobiologyFrontiers in Microbiology
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Possible nitrogen fertilization of the early Earth Ocean by microbial continental ecosystems

2018

While significant efforts have been invested in reconstructing the early evolution of the Earth’s atmosphere–ocean–biosphere biogeochemical nitrogen cycle, the potential role of an early continental contribution by a terrestrial, microbial phototrophic biosphere has been largely overlooked. By transposing to the Archean nitrogen fluxes of modern topsoil communities known as biological soil crusts (terrestrial analogs of microbial mats), whose ancestors might have existed as far back as 3.2 Ga ago, we show that they could have impacted the evolution of the nitrogen cycle early on. We calculate that the net output of inorganic nitrogen reaching the Precambrian hydrogeological system could hav…

Nitrogen IsotopesEarth PlanetNitrogenOceans and SeasScienceMicrobial ConsortiaOrigin of LifeQNitrogen CycleArticleOxygenPhototrophic ProcessesSoilSunlightlcsh:Qlcsh:ScienceOxidation-ReductionEcosystemHistory AncientNature Communications
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