Search results for "Cyan"

showing 10 items of 2427 documents

Mg2+ homeostasis and transport in cyanobacteria – at the crossroads of bacterial and chloroplast Mg2+ import

2018

Abstract Magnesium cation (Mg2+) is the most abundant divalent cation in living cells, where it is required for various intracellular functions. In chloroplasts and cyanobacteria, established photosynthetic model systems, Mg2+ is the central ion in chlorophylls, and Mg2+ flux across the thylakoid membrane is required for counterbalancing the light-induced generation of a ΔpH across the thylakoid membrane. Yet, not much is known about Mg2+ homoeostasis, transport and distribution within cyanobacteria. However, Mg2+ transport across membranes has been studied in non-photosynthetic bacteria, and first observations and findings are reported for chloroplasts. Cyanobacterial cytoplasmic membranes…

0301 basic medicineChloroplastsClinical BiochemistryCyanobacteriaPhotosynthesisBiochemistry03 medical and health sciencesHomeostasisMagnesiumElectrochemical gradientMolecular BiologyIon TransportBacteria030102 biochemistry & molecular biologybiologyChemistrySynechocystisMembrane Transport ProteinsMembrane transportbiology.organism_classificationTransmembrane proteinChloroplast030104 developmental biologyMembraneThylakoidBiophysicsBiological Chemistry
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Proton Leakage Is Sensed by IM30 and Activates IM30-Triggered Membrane Fusion

2020

The inner membrane-associated protein of 30 kDa (IM30) is crucial for the development and maintenance of the thylakoid membrane system in chloroplasts and cyanobacteria. While its exact physiological function still is under debate, it has recently been suggested that IM30 has (at least) a dual function, and the protein is involved in stabilization of the thylakoid membrane as well as in Mg2+-dependent membrane fusion. IM30 binds to negatively charged membrane lipids, preferentially at stressed membrane regions where protons potentially leak out from the thylakoid lumen into the chloroplast stroma or the cyanobacterial cytoplasm, respectively. Here we show in vitro that IM30 membrane binding…

0301 basic medicineChloroplastsMembrane lipidsmembrane fusionMg2+CyanobacteriaThylakoidsCatalysisArticleVipp1Inorganic Chemistrylcsh:Chemistry03 medical and health sciencesMembrane Lipidsquartz crystal microbalanceProtein structureBacterial ProteinsPhysical and Theoretical ChemistryMg<sup>2+</sup>membrane bindingMolecular Biologylcsh:QH301-705.5SpectroscopyMembranes030102 biochemistry & molecular biologyChemistrypHOrganic ChemistrySynechocystisCD spectroscopyLipid bilayer fusionMembrane Proteinsfood and beveragesGeneral Medicinethylakoid membraneComputer Science ApplicationsChloroplastChloroplast stroma030104 developmental biologyMembranelcsh:Biology (General)lcsh:QD1-999CytoplasmThylakoidBiophysicsProtonsIM30Protein BindingInternational Journal of Molecular Sciences
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Comparison of biocides, allelopathic substances and UV-C as treatments for biofilm proliferation on heritage monuments

2018

Abstract UV-C and biocide treatments are frequently used to treat historical monuments contaminated by autotrophic biofilms. In this study, the authors compare for the first time the efficacy of these treatments against microorganisms such as cyanobacteria and algae proliferating in the Vicherey church (Vicherey, Vosges Department, France). To identify the most environmentally friendly and also efficient method, an allelopathic treatment was also tested. Colorimetric and physiological measurements of treated biofilms were thus monitored for 6 months. Fungi growing on necrotic matter from treated biofilms were sampled and sequenced. With biocides, results showed incomplete eradication of bio…

0301 basic medicineCyanobacteriaArcheologyBiocideMaterials Science (miscellaneous)MicroorganismConservation010501 environmental sciencesPhotosynthesis01 natural sciences[ SDE ] Environmental Sciences03 medical and health sciencesAlgaeBotanyAutotrophComputingMilieux_MISCELLANEOUSSpectroscopyAllelopathy0105 earth and related environmental sciencesbiologyChemistryBiofilmbiology.organism_classification030104 developmental biologyChemistry (miscellaneous)[SDE]Environmental SciencesGeneral Economics Econometrics and FinanceJournal of Cultural Heritage
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Highly effective, regiospecific reduction of chalcone by cyanobacteria leads to the formation of dihydrochalcone: two steps towards natural sweetness

2017

Abstract Background Chalcones are the biogenetic precursors of all known flavonoids, which play an essential role in various metabolic processes in photosynthesizing organisms. The use of whole cyanobacteria cells in a two-step, light-catalysed regioselective bio-reduction of chalcone, leading to the formation of the corresponding dihydrochalcone, is reported. The prokaryotic microalgae cyanobacteria are known to produce phenolic compounds, including flavonoids, as natural components of cells. It seems logical that organisms producing such compounds possess a suitable “enzymatic apparatus” to carry out their biotransformation. Therefore, determination of the ability of whole cells of select…

0301 basic medicineCyanobacteriaChalconeLightBioconversionlcsh:QR1-502PhotobioreactorBioengineeringBiologyAphanizomenonCyanobacteria01 natural sciencesApplied Microbiology and BiotechnologyCatalysisGas Chromatography-Mass Spectrometrylcsh:Microbiology03 medical and health scienceschemistry.chemical_compoundChalconesChalconeBiotransformationRegioselective bio-reductionOrganic chemistryBiotransformation010405 organic chemistryResearchDihydrochalconeStereoisomerismbiology.organism_classificationDihydrochalcone0104 chemical sciences030104 developmental biologychemistryBiochemistryBiocatalysisSweetening AgentsBiocatalysisOxidation-ReductionBiotechnologyMicrobial Cell Factories
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2017

Abstract. Endolithic microbial communities are prominent features of intertidal marine habitats, where they colonize a variety of substrates, contributing to their erosion. Almost 2 centuries worth of naturalistic studies focused on a few true-boring (euendolithic) phototrophs, but substrate preference has received little attention. The Isla de Mona (Puerto Rico) intertidal zone offers a unique setting to investigate substrate specificity of endolithic communities since various phosphate rock, limestone and dolostone outcrops occur there. High-throughput 16S rDNA genetic sampling, enhanced by targeted cultivation, revealed that, while euendolithic cyanobacteria were dominant operational tax…

0301 basic medicineCyanobacteriaDolostonebiologyPhototrophPhylogenetic treeEcologyOutcrop030106 microbiologyMarine habitatsIntertidal zoneSubstrate (biology)biology.organism_classification03 medical and health sciences030104 developmental biology14. Life underwaterEcology Evolution Behavior and SystematicsEarth-Surface ProcessesBiogeosciences
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Biofilm biodiversity in French and Swiss show caves using the metabarcoding approach: First data.

2018

International audience; In recent decades, show caves have begun to suffer from microorganism proliferation due to artificial lighting installations for touristic activity. In addition to the aesthetic problem, light encourages microorganisms that are responsible for physical and chemical degradation of limestone walls, speleothems and prehistoric paintings of cultural value. Microorganisms have previously been described by microscopy or culture-dependent methods, but data provided by new generation sequencing are rare. The authors identified, for the first time, microorganisms proliferating in one Swiss and in four French show caves using three different primers. The results showed that bo…

0301 basic medicineCyanobacteriaEnvironmental EngineeringMicroorganism030106 microbiologyConservation010501 environmental sciencesCyanobacteria01 natural sciences[ SDE ] Environmental Sciences03 medical and health sciencesCaveAlgaeAscomycotaChlorophytaBotanyMicroalgaeEnvironmental ChemistryDominance (ecology)14. Life underwaterWaste Management and DisposalIllumina dye sequencingComputingMilieux_MISCELLANEOUS0105 earth and related environmental sciencesDiatomsgeographygeography.geographical_feature_categorybiologyAscomycotaEcologyTrebouxiophyceaeBiodiversitybiology.organism_classificationPollutionMicroorganism communitiesCavesBiofilms[SDE]Environmental SciencesMetabarcodingEnvironmental PollutantsPaintingsFranceSwitzerlandThe Science of the total environment
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Production of High Amounts of Hepatotoxin Nodularin and New Protease Inhibitors Pseudospumigins by the Brazilian Benthic Nostoc sp. CENA543

2017

Nostoc is a cyanobacterial genus, common in soils and a prolific producer of natural products. This research project aimed to explore and characterize Brazilian cyanobacteria for new bioactive compounds. Here we report the production of hepatotoxins and new protease inhibitors from benthic Nostoc sp. CENA543 isolated from a small, shallow, saline-alkaline lake in the Nhecolandia, Pantanal wetland area in Brazil. Nostoc sp. CENA543 produces exceptionally high amounts of nodularin-R. This is the first free-living Nostoc that produces nodularin at comparable levels as the toxic, bloom-forming, Nodularia spumigena. We also characterized pseudospumigins A-F, which are a novel family of linear te…

0301 basic medicineCyanobacteriaMicrobiology (medical)NostocPREDICTIONmedicine.medical_treatmentlcsh:QR1-502DIVERSITYTOXINmedicine.disease_causecyanobacteriaMicrobiologylcsh:MicrobiologyCYANOBACTERIUM NODULARIAMicrobiologybiosynteesi03 medical and health scienceschemistry.chemical_compoundGene clustermedicinesyanobakteeritNostocSPECIFICITY1183 Plant biology microbiology virologyOriginal ResearchSPUMIGENAProteasebiologyTetrapeptideToxinSALINE-ALKALINE LAKESHepatotoxinta1182PEPTIDES15. Life on landspumiginbiology.organism_classificationNodularinEVOLUTION030104 developmental biologychemistrynodularinBALTIC SEAbiosynthesisFrontiers in Microbiology
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Fresh water, marine and terrestrial cyanobacteria display distinct allergen characteristics.

2017

During the last decades, global cyanobacteria biomass increased due to climate change as well as industrial usage for production of biofuels and food supplements. Thus, there is a need for thorough characterization of their potential health risks, including allergenicity. We therefore aimed to identify and characterize similarities in allergenic potential of cyanobacteria originating from the major ecological environments. Different cyanobacterial taxa were tested for immunoreactivity with IgE from allergic donors and non-allergic controls using immunoblot and ELISA. Moreover, mediator release from human FceR1-transfected rat basophilic leukemia (RBL) cells was measured, allowing in situ ex…

0301 basic medicineCyanobacteriaNostocEnvironmental EngineeringClimate ChangeFresh Water010501 environmental sciencesmedicine.disease_causeImmunoglobulin ECyanobacteria01 natural sciencesEpitopeMicrobiology03 medical and health sciencesAllergenCell Line TumorPhycocyaninmedicineEnvironmental ChemistryAnimalsHumansSeawaterFood scienceWaste Management and Disposal0105 earth and related environmental sciencesBiomass (ecology)biologyPhycobiliproteinAllergensImmunoglobulin Ebiology.organism_classificationPollutionRats030104 developmental biologybiology.proteinThe Science of the total environment
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Glyphosate dose modulates the uptake of inorganic phosphate by freshwater cyanobacteria

2017

The usefulness of glyphosate [N-(phosphonomethyl)glycine] as a source of nutritive phosphorus for species of halophilic cyanobacteria has been postulated for years. Our results indicate a stimulating effect of glyphosate on the growth of four out of five examined freshwater species, Anabaena variabilis (CCALA 007), Chroococcus minutus (CCALA 055), Fischerella cf. maior (CCALA 067) and Nostoc cf. muscorum (CCALA 129), in a manner dependent on the applied concentration. The most significant stimulation was observed at a dose of 0.1 mM glyphosate. The decrease in the amount of phosphonate, which correlated with microbial growth, demonstrated that glyphosate may play an important role in cyanob…

0301 basic medicineCyanobacteriaNostocphosphorus bindingchemistry.chemical_elementPlant Science010501 environmental sciencesAquatic Science01 natural sciencesAlgal bloomcyanobacteriaArticle03 medical and health scienceschemistry.chemical_compoundglyphosateBotany0105 earth and related environmental sciencesbiologyPhosphorusbiology.organism_classificationPhosphatePhosphonate030104 developmental biologychemistryGlyphosatephosphonatephosphorus uptakeAnabaena variabilisJournal of Applied Phycology
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2018

Dynamin-like proteins (DLPs) are a family of membrane-active proteins with low sequence identity. The proteins operate in different organelles in eukaryotic cells, where they trigger vesicle formation, membrane fusion, or organelle division. As discussed here, representatives of this protein family have also been identified in chloroplasts and DLPs are very common in cyanobacteria. Since cyanobacteria and chloroplasts, an organelle of bacterial origin, have similar internal membrane systems, we suggest that DLPs are involved in membrane dynamics in cyanobacteria and chloroplasts. Here, we discuss the features and activities of DLPs with a focus on their potential presence and activity in ch…

0301 basic medicineCyanobacteriaProtein familybiologyChemistryVesiclefood and beveragesPlant Sciencebiology.organism_classificationCell biologyChloroplast03 medical and health sciences030104 developmental biologyThylakoidOrganelleMembrane biogenesisbacteriaDynaminFrontiers in Plant Science
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