Search results for "Algues"

showing 10 items of 13 documents

Les microalgues et cyanobactéries des sols : quels apports pour l’écotoxicologie terrestre

2016

Les microorganismes photosynthétiques (cyanobactéries et microalgues) des sols pourraient constituer des bioindicateurs pertinents à l’égard des pressions phytosanitaires, à l’instar des milieux aquatiques. Néanmoins, les connaissances disponibles sur leur écologie dans les sols et leurs réponses aux stress sont limitées. Des développements méthodologiques (biochimiques et moléculaires) ont été réalisés afin d’identifier des marqueurs biochimiques et moléculaires pertinents pour décrire les effets de phytosanitaires sur la biomasse et la diversité des communautés microalgales. Des études en microcosmes contrôlés au laboratoire, complétés par des suivis au champ (systèmes de culture Biologiq…

[SDV] Life Sciences [q-bio]herbicides[ SDV ] Life Sciences [q-bio]microalgues édaphiques[SDV]Life Sciences [q-bio]tolérancesolsdiversité
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Modeling Macroalgal Forest Distribution at Mediterranean Scale: Present Status, Drivers of Changes and Insights for Conservation and Management

2020

Macroalgal forests are one of the most productive and valuable marine ecosystems, but yet strongly exposed to fragmentation and loss. Detailed large-scale information on their distribution is largely lacking, hindering conservation initiatives. In this study, a systematic effort to combine spatial data on Cystoseira C. Agardh canopies (Fucales, Phaeophyta) was carried out to develop a Habitat Suitability Model (HSM) at Mediterranean scale, providing critical tools to improve site prioritization for their management, restoration and protection. A georeferenced database on the occurrence of 20 Cystoseira species was produced collecting all the available information from published and grey lit…

Settore BIO/07 - EcologiaCystoseira canopies; Habitat suitability model; Mediterranean Sea; Random Forest; Species distribution0106 biological scienceslcsh:QH1-199.5Settore BIO/07Distribution (economics)Ocean Engineeringlcsh:General. Including nature conservation geographical distributionAquatic ScienceCystoseira canopieOceanography010603 evolutionary biology01 natural sciencesMediterranean scaleBrown algae -- Mediterranean seeAlgues brunes -- Distribució geogràficaMediterranean seaMarine resources -- Management -- Mediterranean SeaMediterranean Seamedia_common.cataloged_instance14. Life underwaterEuropean unionlcsh:ScienceAlgues brunes -- Mediterrània MarSpecies distributionWater Science and Technologymedia_commonGlobal and Planetary ChangeRandom ForestMarine ecology -- Mediterranean Seabusiness.industrySettore BIO/02 - Botanica Sistematica010604 marine biology & hydrobiologyEnvironmental resource managementMarine habitats -- Mediterranean Sea15. Life on landHabitat suitability model (HSM)Geography13. Climate actionSettore BIO/03 - Botanica Ambientale E Applicatalcsh:QCystoseira canopies habitat suitability model Mediterranean Sea Random Forest species distributionCystoseira canopiesbusinessHabitat suitability modelMarine algae -- Mediterranean SeaBrown algae -- Geographical distributionFrontiers in Marine Science
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The Ectocarpus genome and the independent evolution of multicellularity in brown algae

2010

Brown algae (Phaeophyceae) are complex photosynthetic organisms with a very different evolutionary history to green plants, to which they are only distantly related. These seaweeds are the dominant species in rocky coastal ecosystems and they exhibit many interesting adaptations to these, often harsh, environments. Brown algae are also one of only a small number of eukaryotic lineages that have evolved complex multicellularity (Fig. 1). We report the 214 million base pair (Mbp) genome sequence of the filamentous seaweed Ectocarpus siliculosus (Dillwyn) Lyngbye, a model organism for brown algae, closely related to the kelps (Fig. 1). Genome features such as the presence of an extended set of…

0106 biological sciencesLineage (evolution)Molecular Sequence DataPhaeophyta01 natural sciencesGenomeEvolution Molecular03 medical and health sciencesAlgae[SDV.BDD] Life Sciences [q-bio]/Development BiologyBotanyBIOLOGIE CELLULAIREAnimals14. Life underwater[SDV.BDD]Life Sciences [q-bio]/Development Biologyflore marinePhylogenyOrganismComputingMilieux_MISCELLANEOUSphéophycées030304 developmental biology0303 health sciencesGenomeMultidisciplinarybiologyEctocarpus siliculosusAlgal ProteinsEukaryotaPigments BiologicalEctocarpus15. Life on landbiology.organism_classificationBiological EvolutionBrown algaeMulticellular organismEvolutionary biologyalgues brunesBiologieSignal Transduction010606 plant biology & botany
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Culture Conditions Affect Antioxidant Production, Metabolism and Related Biomarkers of the Microalgae Phaeodactylum tricornutum

2022

Phaeodactylum tricornutum (Bacillariophyta) is a worldwide-distributed diatom with the ability to adapt and survive in different environmental habitats and nutrient-limited conditions. In this research, we investigated the growth performance, the total lipids productivity, the major categories of fatty acids, and the antioxidant content in P. tricornutum subjected for 15 days to nitrogen deprivation (N−) compared to standard culture conditions (N+). Furthermore, genes and pathways related to lipid biosynthesis (i.e., glucose-6-phosphate dehydrogenase, acetyl-coenzyme A carboxylase, citrate synthase, and isocitrate dehydrogenase) and photosynthetic activity (i.e., ribulose-1,5-bisphosp…

2. Zero hungerphotosynthesisPhysiologyClinical Biochemistrylipid biosynthesisantioxidant activityCell Biologynitrogen stresslipid biosynthesiBiochemistryPhaeodactylum tricornutumAntioxidantsphotosynthesiAlguesSettore AGR/20 - Zoocolturenitrogen stregene expressionSettore BIO/06 - Anatomia Comparata E CitologiaMolecular Biology<i>Phaeodactylum tricornutum</i>; nitrogen stress; gene expression; lipid biosynthesis; photosynthesis; antioxidant activity
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Pulsed electric field (PEF) recovery of biomolecules from Chlorella: Extract efficiency, nutrient relative value, and algae morphology analysis

2023

This study investigated the effects of pulsed electric field (PEF) (3 kV/cm, 44 pulses, 99 kJ/kg), solvent (H2O or 50 % DMSO) and time (0, 10, 20, 30, 60, 90, 120 and 180 min) on the extraction of Chlorella antioxidant biomolecules and minerals. The results showed that PEF treatment increased the biomolecules recovery. For the extraction time of 120 min, more proteins and polyphenols were obtained using water, while more chlorophyll a and b, and carotenoids were obtained using 50 % DMSO as the extraction solvent. The extracts mineral concentration (PEF vs control) were analysed including Mg, P, Ca, Fe and Zn, and the Relative Nutrient Values results indicated that Chlorella H2O-extracts cou…

MineralsChlorophyll AChlorellaNutrientsGeneral MedicinePulsed electric fields (PEF)AntioxidantsAnalytical ChemistryAlguesSolventsMicroalgaeAlgues d'aigua dolçaDimethyl SulfoxideNutritive ValueMicrostructureFood ScienceFood Chemistry
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Ceratium furcoides (Levander) Langhans in reservoirs at the Ebro watershed, Spain and Sao Paulo state, Brazil

2022

This study compares the morphological characteristics of the dinoflagellate Ceratium furcoides from three Ebro basin reser¬voirs (Spain) and from six reservoirs at São Paulo state (Brazil) with the aim to identify the distinct morphotypes of Ceratium furcoides in Spain and Brazil. We studied the physical and chemical variables to determine the trophic state of each reservoir. Unlike Ceratium hirundinella, Ceratium furcoides is not a frequent species within the plankton community at Ebro Basin reservoirs, however, this species has been responsible of one monospecific bloom at El Val reservoir. Nevertheless, both Ce-ratium species are considered invasive in South America. Ceratium furcoides h…

Ecologia dels llacsEcologyRESERVATÓRIOSAlguesAquatic ScienceWater Science and Technology
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MAB2.0 project: Integrating algae production into wastewater treatment

2018

Abstract Different species of microalgae are highly efficient in removing nutrients from wastewater streams and are able to grow using flue gas as a CO2 source. These features indicate that application of microalgae has a promising outlook in wastewater treatment. However, practical aspects and process of integration of algae cultivation into an existing wastewater treatment line have not been investigated. The Climate-KIC co-funded Microalgae Biorefinery 2.0 project developed and demonstrated this integration process through a case study. The purpose of this paper is to introduce this process by phases and protocols, as well as report on the challenges and bottlenecks identified in the cas…

0106 biological sciencesFlue gasBio Process EngineeringProcess (engineering)[SDV]Life Sciences [q-bio]Biomedical Engineeringwastewater treatment;microalgae;bioresource010501 environmental sciencesRaw material01 natural sciencesBiotecnologiaLead (geology)bioresourceAlgues010608 biotechnologyGeneticsProduction (economics)Life ScienceMolecular Biologyeaux usées0105 earth and related environmental sciencesmicroalgaeBiorefinery6. Clean watertraitement biologiquewastewater treatmentWastewater13. Climate action[SDE]Environmental SciencesMolecular MedicineSewage treatmentBBP Biorefinery & Sustainable Value ChainsBiochemical engineeringbioressourceAigües residuals Depuració Tractament biològicculture d'algueTP248.13-248.65Food ScienceBiotechnology
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Epizoic Algae Distribution on the Carapace and Plastron of the European Pond Turtle (Emys orbicularis, Linnaeus, 1758): A Study from the Camargue, Fr…

2016

12 pages; International audience; We investigated epizoic algal assemblages on the shell of European pond turtles (Emys orbicularis) during two years (2013–2014). A total of 60 Emys orbicularis were captured in the three shallow Mediterranean wetlands located in Camargue. Epizoic algae on the plastron (below the shell) and carapace (above the shell) were sampled, identified and counted. Seventy-seven epizoic algal species were identified on the carapace and plastron and comprised in 51 Bacillariophyta, 11 Chlorophyta, 7 Cyanophyta, 6 Euglenophyta, 1 Dinophyta and1Xanthophyta taxa. Our findings indicated a distinct distribution of epizoic algae according to taxonomical group density; Chlorop…

0106 biological sciencesEmys orbicularisepibiontesCamarguePlant ScienceChlorophytaAquatic Sciencemarais temporairesEpizoic algae010603 evolutionary biology01 natural scienceslaw.inventionAlgaeGenuslaw[ SDV.EE.IEO ] Life Sciences [q-bio]/Ecology environment/Symbiosis14. Life underwaterCarapaceTurtle (robot)Ecology Evolution Behavior and SystematicsVaucheria[ SDE.BE ] Environmental Sciences/Biodiversity and EcologyAlgues épizoiquesbiologyEmys orbicularisEcology010604 marine biology & hydrobiology15. Life on landbiology.organism_classificationplastronTaxonEpibiontsdossièretemporary wetland[SDE.BE]Environmental Sciences/Biodiversity and Ecologycarapace[SDV.EE.IEO]Life Sciences [q-bio]/Ecology environment/SymbiosisCryptogamie, Algologie
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The impact of liquid-pressurized extracts of Spirulina, Chlorella and Phaedactylum tricornutum on in vitro antioxidant, antiinflammatory and bacteria…

2022

The impact of Spirulina, Chlorella and Phaeodactylum tricornutum (P. tricornutum) microalgal extracts obtained by pressurized liquid extraction (PLE) on antioxidant and anti-inflammatory activities, microbial growth and in vitro gut microbiota composition was evaluated. PLE, compared to conventional extraction, led to a significant (p < 0.05) increase in proteins, carbohydrates, polyphenols, and antioxidant capacities of the three microalgal extracts. Moreover, Spirulina and P. tricornutum extracts significantly (p < 0.05) reduced the in vitro activation of the inflammatory NF-κB pathway. The microalgal extracts had also an inhibitory effect on the pathogenic bacteria while potential benefi…

PolyphenolSCFAsBacteriaPLEProbioticsAnti-bacteriaNF-kappa BAnti-Inflammatory AgentsCarbohydratesGeneral MedicineChlorellaGut microbiotaFatty Acids VolatileAntioxidantsAnalytical ChemistryGastrointestinal MicrobiomeAlguesSpirulinaMicroalgaeHumansMicroalgalFood ScienceAntiinflamatoris
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Pulsed electric fields (PEF), pressurized liquid extraction (PLE) and combined PEF + PLE process evaluation: Effects on Spirulina microstructure, bio…

2022

This study aims at evaluating the impact of different processes-pulsed electric fields (PEF), pressurized liquid extraction (PLE) and a multistep process combining PEF + PLE on the yield of antioxidant compounds (protein, polyphenols, chlorophyll a, chlorophyll b, and carotenoids) from Spirulina. Firstly, the effects of PEF or PLE treatment on the extraction yield of Spirulina biomolecules were evaluated. To further increase the extraction yield, PEF + PLE was used, as an innovative extraction approach. The results showed that PEF + PLE greatly improved the extraction yield compared with the PEF or PLE treatments alone. Compared with Folch extraction (conventional control technique), PEF + …

BiomoleculesTriple TOF-LC-MS-MSPhenolic profileGeneral Chemistryrespiratory systemPulsed electric fields (PEF)Pressurized liquid extraction (PLE)Industrial and Manufacturing EngineeringAntioxidantsrespiratory tract diseasesimmune system diseasesAlguesMicroalgaeCell structureFood Sciencecirculatory and respiratory physiologyInnovative Food Science & Emerging Technologies
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