Search results for "algae"

showing 10 items of 403 documents

Extraction of Antioxidant Compounds and Pigments from Spirulina (Arthrospira platensis) Assisted by Pulsed Electric Fields and the Binary Mixture of …

2021

The application of pulsed electric fields (PEF) is an innovative extraction technology promoting cell membrane electroporation, thus allowing for an efficient recovery, from an energy point of view, of antioxidant compounds (chlorophylls, carotenoids, total phenolic compounds, etc.) from microalgae. Due to its selectivity and high extraction yield, the effects of PEF pre-treatment (3 kV/cm, 100 kJ/kg) combined with supplementary extraction at different times (5–180 min) and with different solvents (ethanol (EtOH)/H2O, 50:50, v/v

TechnologyAntioxidantQH301-705.5QC1-999pigmentsmedicine.medical_treatmentgreen extractionchemistry.chemical_compoundPigmentmedicineGeneral Materials ScienceBiology (General)QD1-999InstrumentationCarotenoidFluid Flow and Transfer Processeschemistry.chemical_classificationChromatographyEthanolDimethyl sulfoxideTPhysicsmicroalgaeProcess Chemistry and TechnologyExtraction (chemistry)General EngineeringEngineering (General). Civil engineering (General)Computer Science ApplicationsChemistryantioxidantspulsed electric fieldschemistryYield (chemistry)visual_artvisual_art.visual_art_mediumTA1-2040SelectivityApplied Sciences
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Unveiling distribution patterns of freshwater phytoplankton by a next generation sequencing based approach.

2012

The recognition and discrimination of phytoplankton species is one of the foundations of freshwater biodiversity research and environmental monitoring. This step is frequently a bottleneck in the analytical chain from sampling to data analysis and subsequent environmental status evaluation. Here we present phytoplankton diversity data from 49 lakes including three seasonal surveys assessed by next generation sequencing (NGS) of 16S ribosomal RNA chloroplast and cyanobacterial gene amplicons and also compare part of these datasets with identification based on morphology. Direct comparison of NGS to microscopic data from three time-series showed that NGS was able to capture the seasonality in…

Time FactorsBiodiversitylcsh:MedicineMarine and Aquatic SciencesFresh WaterPlant Science580 Plants (Botany)10126 Department of Plant and Microbial BiologyPhytoplankton successionRNA Ribosomal 16Ssequence databasesNaturvetenskapEnvironmental monitoringlcsh:ScienceTrophic levelFreshwater EcologyMultidisciplinaryEcologyEcologykloroplastiHigh-Throughput Nucleotide SequencingGenomicsPlantssinibakteeritviherhiukkasetribosomal RNANatural ScienceskasviplanktonResearch ArticleFood ChainAlgaeta11721100 General Agricultural and Biological SciencesBiologyjärvetMicrobiologyDNA sequencingMicrobial EcologysekvenssitietokantaModel Organisms1300 General Biochemistry Genetics and Molecular BiologyPlant and Algal ModelsPhytoplanktonEvolutionary Systematicsribosomaalinen RNAsyanobakteeritBiologyTaxonomy1000 MultidisciplinaryEvolutionary BiologySequence Analysis RNAlcsh:RfungiRibosomal RNAjärviTaxonPhytoplanktonphytoplanktonEarth Scienceslcsh:QEnvironmental ProtectionEcological EnvironmentsPloS one
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Bioaccessibility of inorganic arsenic species in raw and cookedHizikia fusiformeseaweed

2004

Samples of Hizikia fusiforme edible seaweed, a commercially available dried food with high concentrations of total arsenic (t-As) and inorganic arsenic (i-As), both raw and cooked (boiling at 100 °C, 20 min), were selected for the bioaccessibility study. Cooking caused a significant reduction in the concentrations of t-As (30–43%) and i-As (46–50%), despite which the i-As contents in the cooked product were high (42.7–44.6 µg g−1 seaweed). An in vitro gastrointestinal digestion (pepsin, pH 2, and pancreatin–bile extract, pH 7) was applied to the seaweed to estimate arsenic bioaccessibility (maximum soluble concentration in gastrointestinal medium) of t-As, i-As, arsenic(III) and arsenic(V).…

Tolerable daily intakebiologyInorganic arsenicArsenatechemistry.chemical_elementMineralogyGeneral Chemistrybiology.organism_classificationInorganic ChemistryEdible seaweedchemistry.chemical_compoundchemistryPepsinAlgaebiology.proteinFood scienceArsenicArseniteApplied Organometallic Chemistry
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INTERSPECIFIC VARIATION IN TOTAL PHENOLIC CONTENT IN TEMPERATE BROWN ALGAE

2015

The aim of this study was to focus on interspecific variation of total phenolic contents (TPC) in temperate brown algae also considering their relationship with environmental conditions. In particular, we compared the TPC of four species characterized by different thallus morphology, growth cycle and bathymetric level: Cystoseira amentacea (C. Agardh) Bory, Cystoseira compressa (Esper) Gerloff & Nizamuddin, Dictyopteris polypodioides (A.P. De Candolle) J.V. Lamouroux and Padina pavonica (Linnaeus) Thivy, collected in summer 2011 from the north-western coast of Sicily.

Total phenolic content interspecific variation brown algaeSettore BIO/02 - Botanica SistematicaSettore BIO/04 - Fisiologia Vegetale
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Different strategies to achieve Pb-tolerance by the two Trebouxia algae coexisting in the lichen Ramalina farinacea.

2012

Lichen thalli are permeable to airborne substances, including heavy metals, which are harmful to cell metabolism. Ramalina farinacea shows a moderate tolerance to Pb. This lichen comprises two Trebouxia phycobionts, provisionally referred to as TR1 and TR9, with distinct physiological responses to acute oxidative stress. Thus, there is a more severe decay in photosynthesis and photosynthetic pigments in TR1 than in TR9. Similarly, under oxidative stress, antioxidant enzymes and HSP70 protein decrease in TR1 but increase in TR9. Since Pb toxicity is associated with increased ROS formation, we hypothesized greater Pb tolerance in this phycobiont. Accordingly, the aim of the present study was …

TrebouxiaChlorophyllAntioxidantLichensPhysiologymedicine.medical_treatmentBOTANICAGlutathione reductasePlant SciencePhotosynthesisAntioxidantsFluorescenceLichen microalgaeRamalina farinaceaSuperoxide dismutaseElectron TransportAscorbate PeroxidasesSpecies SpecificityChlorophytaStress PhysiologicalBotanymedicineHSP70 Heat-Shock ProteinsPhotosynthesisSymbiosisChlorophyll fluorescencePlant ProteinsBIOLOGIA VEGETALbiologySuperoxide DismutaseStress responsebiology.organism_classificationAPXCatalaseOxidative StressGlutathione ReductaseBiochemistryLeadTrebouxia algaebiology.proteinReactive Oxygen SpeciesHeavy metal toleranceAgronomy and Crop ScienceJournal of plant physiology
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Differences in the cell walls and extracellular polymers of the two Trebouxia microalgae coexisting in the lichen Ramalina farinacea are consistent w…

2015

Trebouxia TR1 and T. TR9 are the two microalgae that coexist within Ramalina farinacea thalli. In the presence of Pb, TR9 formed extracellular aggregates, while TR1 showed a lower wall lead retention capability. Herein, we studied the cell walls and extracellular polymers (EPS) of TR1 and TR9, and their possible implication in the different Pb retention capacity of these microalgae. The proportion of cell walls on the overall cell biomass was 2.6 times higher in TR9 than in TR1. Glycosyl linkage analysis indicated the presence of hot-water soluble β-galactofuranan(s) in both cell walls, distinct from that previously described in Asterochloris, with increased rhamnose content in TR9 and a hi…

TrebouxiaLichensPolymersRhamnosePlant ScienceUronic acidBiologyRamalina farinaceaCell wallchemistry.chemical_compoundAscomycotaSpecies SpecificityCell WallChlorophytaBotanyMicroalgaeGeneticsExtracellularGlycosylSymbiosisGeneral Medicinebiology.organism_classificationThallusLeadchemistryBiophysicsEnvironmental PollutantsAgronomy and Crop SciencePlant Science
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Chloroplast morphology and pyrenoid ultrastructural analyses reappraise the diversity of the lichen phycobiont genus Trebouxia (Chlorophyta)

2022

Abstract Trebouxiophyceae is a wide class of green algae comprising coccoid and elliptic unicells, filaments, blades and colony-forming species that occur in diverse terrestrial and aquatic environments. Within this class, the genus Trebouxia Puymaly is among the most widespread lichen phycobionts worldwide. However, the 29 formally described species based on the combination of morphological traits and genetic diversity woefully underrepresented the overall species-level diversity recognized in the genus. In Trebouxia, reliable differentiation and characterization of the species-level lineages can be achieved by studying the diversity of key diagnostic features of pyrenoid ultrastructure an…

TrebouxiaMicroscopybiologyTrebouxiophyceaebiology.organism_classificationAxenic culturePyrenoidChloroplastSpecies-level lineageGenusBotanyUltrastructureMicroalgaeGreen algaeAxenic culture; Microalgae; Microscopy; Species-level lineage; SymbiosisLichenSymbiosisAgronomy and Crop Science
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Preliminary assessment of terrestrial microalgae isolated from lichens as testing species for environmental monitoring: Lichen phycobionts present hi…

2013

Bioassays constitute a tool for pollution analysis providing a holistic approach and high-quality indication of the toxicity. Microbioassays allow evaluating the toxicity of many samples, implying lower costs and enabling routine monitoring and pollution control. But tests conducted so far are limited to the use of a small number of taxa. Lichens are excellent bioindicators of pollution with great ecological significance. Studies show that the phycobiont is more sensitive to pollutants than the mycobiont. Phycobiont have features such as adaptation to anhydrobiosis and relatively rapid growth in vitro, making them suitable for microbioassays. Our aim is to determine the sensitivity of phyco…

TrebouxiaPollutionLichensHealth Toxicology and Mutagenesismedia_common.quotation_subjectBiologychemistry.chemical_compoundChlorophytaEnvironmental monitoringBotanyMicroalgaeBioassayLichenmedia_commonPollutantPublic Health Environmental and Occupational HealthGeneral Medicinebiology.organism_classificationPollutionchemistryChlorophyllMedi ambient DegradacióBotànicaBiological AssayEnvironmental PollutantsBioindicatorEnvironmental Monitoring
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Two Trebouxia algae with different physiological performances are ever-present in lichen thalli of Ramalina farinacea. Coexistence versus Competition?

2010

This study was funded by the Spanish Ministry of Education and Science (CGL2006-12917-C02-01/02), the Spanish Ministry of Science and Innovation (CGL2009-13429-C02-01/02), the AECID (PCI_A/024755/09) and the Generalitat Valenciana (PROMETEO 174/2008 GVA). We are grateful to Dr J. Gimeno-Romeu (University of California, Davis, USA) and to Dr P. J. G. de Nova (IREC, Ciudad Real, Spain), who were the first to isolate DNA from Ramalina farinacea thalli in our group. Wendy Ran revised the manuscript in English.

Trebouxiabiologymedia_common.quotation_subjectbiology.organism_classificationMicrobiologyCompetition (biology)Ramalina farinaceaThallusAlgaeBotanyChristian ministryLichenEcology Evolution Behavior and Systematicsmedia_commonEnvironmental Microbiology
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Summer phytoplankton assemblages across trophic gradients in hard-water reservoirs

1998

Summer phytoplankton assemblages are described and characterised according to their prevalence in a series of hard-water reservoirs of eastern Spain that had been classified in trophic categories on OECD criteria. Distribution patterns of phytoplankton species were ordinated statistically by principal components analysis (PCA). The first component was strongly related to trophic gradient and it particularly discriminated the eutrophic and hypertrophic reservoirs. The second component segregated life-forms, so that (1), on the oligo-mesotrophic side, large dinoflagellates were separated from small centric diatoms, unicellular chrysophytes and filamentous ullotrichales and, on the eu-hypertro…

VolvocalesNutrientbiologyAlgaeEcologyPhytoplanktonSpecies diversitySpecies richnessbiology.organism_classificationEutrophicationTrophic level
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