Search results for "Alga"

showing 10 items of 598 documents

Lake eutrophication and brownification downgrade availability and transfer of essential fatty acids for human consumption

2016

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0106 biological sciencesFISH COMMUNITY STRUCTUREDOCEnvironmental change01 natural sciencesPredatory fishEnvironmental Science(all)EUDIAPTOMUS-GRACILISEnvironmental change; Human nutritionahvenFood sciencePERCH PERCA-FLUVIATILISBiomassfosforilcsh:Environmental sciencesGeneral Environmental ScienceTrophic level2. Zero hungerlcsh:GE1-350PerchBiomass (ecology)FINNISH LAKESBOREAL LAKESbiologyEcologyHuman nutritionFatty AcidsFishesfood and beveragesPhosphorusEutrophicationEicosapentaenoic acid6. Clean waterFood webDHAEicosapentaenoic Acid1181 Ecology evolutionary biologyFatty Acids Unsaturatedlipids (amino acids peptides and proteins)PLANKTONIC ALGAEPerchFood ChainDocosahexaenoic Acidsta1172010603 evolutionary biologyPhytoplanktonAnimalsHumansDISSOLVED ORGANIC-CARBON14. Life underwaterhuman nutritionFatty Acids Essential010604 marine biology & hydrobiologyfungiEUROPEAN LAKESEPA15. Life on landbiology.organism_classificationLakesAquatic food webs13. Climate actionPerchesEURASIAN PERCHPhytoplanktonta1181EutrophicationFRESH-WATER MICROALGAE
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Notulae to the Italian flora of algae, bryophytes, fungi and lichens: 8

2019

In this contribution, new data concerning algae, bryophytes, fungi, and lichens of the Italian flora are presented. It includes new records and confirmations for the algae genusChara, the bryophyte generaHomalia,Mannia, andTortella, the fungal generaCortinarius,Russula, andStereum, and the lichen generaCetrelia,Cladonia,Enterographa,Graphis,Lecanora,Lepraria,Multiclavula,Mycomicrothelia,Parmelia,Peltigera,Pleopsidium,Psora,Scytinium,Umbilicaria, andRhizocarpon.

0106 biological sciencesFloraAscomycota; Basidiomycota; Bryidae; Charophyceae; MarchantiidaeCharophyceaePlant Science010603 evolutionary biology01 natural sciencesBryidaeAlgaeAscomycotaAscomycota Basidiomycota Bryidae Charophyceae Marchantiidaelcsh:BotanyBotanyLichenAscomycota Basidiomycota Bryidae Charophyceae Marchantiidae HowlichensBryidaeEcology Evolution Behavior and SystematicsbiologyAscomycotaBasidiomycotaCharophyceaeBasidiomycotabiology.organism_classificationlcsh:QK1-989GeographyMarchantiidaeMarchantiidae HowMarchantiidae010606 plant biology & botany
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Notulae to the Italian flora of algae, bryophytes, fungi and lichens: 9

2020

In this contribution, new data concerning bryophytes, fungi, and lichens of the Italian flora are presented. It includes new records and confirmations for the bryophyte genera Encalypta, Grimmia, and Riccia, for the fungal genera Hericium, Inocybe, Inocutis, Pluteus, and Russula, and for the lichen genera Bryoria, Farnoldia, Hypocenomyce, Lecania, Paracollema, Peltigera, Sarcogyne, and Teloschistes.

0106 biological sciencesFloraJungermanniidaePlant Science010603 evolutionary biology01 natural sciencesBryidaeAscomycotaAlgaelcsh:BotanyJungermanniidaeBotanyLichenBryidaeEcology Evolution Behavior and SystematicsbiologyAscomycotaBasidiomycotaBasidiomycotabiology.organism_classificationlcsh:QK1-989GeographyMarchantiidaeMarchantiidaeAscomycota Basidiomycota Bryidae Jungermanniidae MarchantiidaeAscomycota; Basidiomycota; Bryidae; Jungermanniidae; Marchantiidae010606 plant biology & botany
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Notulae to the Italian flora of algae, bryophytes, fungi and lichens: 5

2018

In this contribution, new data concerning bryophytes, fungi, and lichens of the Italian flora are presented. It includes new records and confirmations for the bryophyte genera Diplophyllum and Ptychostomum, the fungal genera Arrhenia, Gymnosporangium, and Sporidesmium and the lichen genera Arthonia, Coenogonium, Flavoplaca, Gyalolechia, Parmotrema, Peltigera, Pterygiopsis, Squamarina, Tornabea, and Waynea.

0106 biological sciencesFloraJungermanniidaePlant Science010603 evolutionary biology01 natural sciencesBryidaefloristic dataAlgaeAscomycotalcsh:BotanyJungermanniidaeBotanyLichenAscomycota Basidiomycota Bryidae Jungermanniidae floristic dataBryidaeEcology Evolution Behavior and SystematicsAscomycotabiologyBasidiomycotaAscomycota; Basidiomycota Bryidae; Jungermanniidae; floristic dataBasidiomycotabiology.organism_classificationlcsh:QK1-989GeographyBasidiomycota Bryidae010606 plant biology & botanyItalian Botanist
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Notulae to the Italian flora of algae, bryophytes, fungi and lichens: 6

2018

In this contribution, new data concerning bryophytes, fungi, and lichens of the Italian flora are presented. It includes new records and confirmations for the bryophyte genera Barbula, Fissidens, Gymnostomum, Jungermannia, Riccia, and Scapania, the fungal genera Hyalopsora and Urocystis and the lichen genera Arthothelium, Chaenotheca, Lepraria, Lobaria, Miriquidica, Parmelia, Rinodina, Solenopsora, Thelopsis and Xanthoparmelia.

0106 biological sciencesFloraJungermanniidaePlant Science010603 evolutionary biology01 natural sciencesBryidaefloristic dataAlgaeAscomycotalcsh:BotanyJungermanniidaeBotanyLichenBryidaeEcology Evolution Behavior and SystematicsbiologyAscomycotaBasidiomycotaBasidiomycotabiology.organism_classificationlcsh:QK1-989Ascomycota Basidiomycota Bryidae Jungermanniidae Marchantiidae floristic dataGeographyMarchantiidaeAscomycota; Basidiomycota; Bryidae; Floristic data; Jungermanniidae; MarchantiidaeMarchantiidae010606 plant biology & botany
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Notulae to the Italian flora of algae, bryophytes, fungi and lichens: 1

2016

In this contribution, new data concerning lichens and bryophytes of the Italian flora are presented. It includes new records, exclusions, and confirmations to the Italian administrative regions for taxa in the lichen genera Athallia, Ramonia, Thelotrema, Pertusaria, Bryoplaca and in the bryophyte genera Dicranella, Bryum, and Scorpiurium.

0106 biological sciencesFlorabiologybiology.organism_classification010603 evolutionary biology01 natural sciencesBryopsidaBryopsidalcsh:QK1-989Geographyfloristic dataAlgaelcsh:BotanyBotanylichenized ascomycetesLichen010606 plant biology & botanyBryopsida floristic data lichenized ascomycetes
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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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Element-specific behaviour and sediment properties modulate transfer and bioaccumulation of trace elements in a highly-contaminated area (Augusta Bay…

2017

Abstract High sediment contamination in the coastal area of Priolo Bay, adjacent to the highly-polluted Augusta Harbour, poses serious risks for the benthic communities inhabiting the area. Nevertheless, the transfer of trace elements and consequent bioaccumulation in the biota is an overlooked issue. This study aimed to assess the transfer and bioaccumulation patterns of As, Cd, Ni and Hg to the dominant macroalgae and benthic invertebrates of Priolo Bay. Results revealed different patterns among trace elements (TEs), not driven by sediment contamination but rather by element-specific behaviour coupled with sediment physicochemical properties. Specifically, As accumulated in macroalgae but…

0106 biological sciencesGeologic SedimentsEnvironmental EngineeringBenthoHealth Toxicology and Mutagenesis010501 environmental sciences01 natural sciencesRedoxBenthosMacroalgaeMediterranean SeaEnvironmental ChemistryAnimalsTOC0105 earth and related environmental sciencesInvertebrateTrophic levelMetal010604 marine biology & hydrobiologyPublic Health Environmental and Occupational HealthSedimentBiotaGeneral MedicineGeneral ChemistryMercurySeaweedPollutionBiotaInvertebratesTrace ElementsDietBaysBenthic zoneBioaccumulationEnvironmental chemistryEnvironmental scienceEnvironmental PollutionBayWater Pollutants ChemicalCadmiumEnvironmental Monitoring
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Impact of Pressurized Liquid Extraction and pH on Protein Yield, Changes in Molecular Size Distribution and Antioxidant Compounds Recovery from Spiru…

2021

The research aims to extract nutrients and bioactive compounds from spirulina using a non-toxic, environmentally friendly and efficient method—Pressurized Liquid Extraction (PLE). In this work, Response Surface Methodology (RSM)–Central Composite Design (CCD) was used to evaluate and optimize the extraction time (5–15 min), temperature (20–60 °C) and pH (4–10) during PLE extraction (103.4 bars). The multi-factor optimization results of the RSM-CCD showed that under the pressure of 103.4 bars, the optimal conditions to recover the highest content of bioactive compounds were 10 min, 40 °C and pH 4. Furthermore, the compounds and antioxidant capacity of PLE and non-pressurized extraction extra…

0106 biological sciencesHealth (social science)AntioxidantPLEmedicine.medical_treatmentTP1-1185Plant Science01 natural sciencesHealth Professions (miscellaneous)MicrobiologyArticleCinnamic acidchemistry.chemical_compoundTriple TOF–LC–MS–MS0404 agricultural biotechnology010608 biotechnologymedicineResponse surface methodologySodium dodecyl sulfatePolyacrylamide gel electrophoresisCarotenoidRSM-CCDchemistry.chemical_classificationbioactive compoundsChromatographyChemical technologymicroalgaeExtraction (chemistry)04 agricultural and veterinary sciences040401 food science6. Clean waterchemistryPolyphenolSDS-PAGEFood ScienceFoods
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Involvement of plasma membrane proteins in plant defense responses. Analysis of the cryptogein signal transduction in tobacco

1999

International audience; Cryptogein, a 98 amino acid protein secreted by the fungus Phytophthora cryptogea, induces a hypersensitive response and systemic acquired resistance in tobacco plants (Nicotiana tabacum var Xanthi). The mode of action of cryptogein has been studied using tobacco cell suspensions. The recognition of this elicitor by a plasma membrane receptor leads to a cascade of events including protein phosphorylation, calcium influx, potassium and chloride effluxes, plasma membrane depolarization, activation of a NADPH oxidase responsible for active oxygen species (AOS) production and cytosol acidification, activation of the pentose phosphate pathway, and activation of two mitoge…

0106 biological sciencesHypersensitive responseNicotiana tabacum01 natural sciencesBiochemistryFungal Proteins03 medical and health sciencesTobacco[SDV.BBM] Life Sciences [q-bio]/Biochemistry Molecular BiologyAnimals[SDV.BV]Life Sciences [q-bio]/Vegetal BiologyProtein phosphorylation[SDV.BBM]Life Sciences [q-bio]/Biochemistry Molecular Biology030304 developmental biologyPlant Proteins0303 health sciencesbiologyAlgal ProteinsCell MembraneMembrane Proteinsfood and beveragesGeneral Medicinebiology.organism_classificationElicitorCell biologyCytosolPlants ToxicMembrane proteinBiochemistrySecond messenger systemREPONSE DE LA PLANTESignal transduction010606 plant biology & botanySignal Transduction
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