Search results for "sterolit"

showing 7 items of 7 documents

Marine Cryptophytes Are Great Sources of EPA and DHA

2017

Microalgae have the ability to synthetize many compounds, some of which have been recognized as a source of functional ingredients for nutraceuticals with positive health effects. One well-known example is the long-chain polyunsaturated fatty acids (PUFAs), which are essential for human nutrition. Eicosapentaenoic acid (EPA) and docosahexaenoic acid (DHA) are the two most important long-chain omega-3 (-3) PUFAs involved in human physiology, and both industries are almost exclusively based on microalgae. In addition, algae produce phytosterols that reduce serum cholesterol. Here we determined the growth rates, biomass yields, PUFA and sterol content, and daily gain of eight strains of marine…

0106 biological sciences0301 basic medicineTROPICAL AUSTRALIAN MICROALGAELINOLENIC ACIDrasvahapotPharmaceutical Sciencesterols01 natural scienceschemistry.chemical_compoundFunctional FoodDrug DiscoveryFood scienceBiomasslcsh:QH301-705.5Pharmacology Toxicology and Pharmaceutics (miscellaneous)functional foodsPOLYUNSATURATED FATTY-ACIDSchemistry.chemical_classificationnutraceuticalsFRESH-WATERPRODUCTIVITYbiologymicroalgae; polyunsaturated fatty acids; omega-3; omega-6; sterols; functional foods; nutraceuticalsCHOLESTEROLmicroalgaeNANNOCHLOROPSISPhytosterolsfood and beveragesEicosapentaenoic acidEicosapentaenoic AcidDocosahexaenoic acidFatty Acids Unsaturatedlipids (amino acids peptides and proteins)omega-3CryptophytaPolyunsaturated fatty acidpolyunsaturated fatty acidsDocosahexaenoic Acidsomega-6CHEMICAL-COMPOSITIONterveysvaikutteiset elintarvikkeetfatty acidsGas Chromatography-Mass SpectrometryArticleMARICULTURE03 medical and health sciencesNutraceuticalAlgaeFatty Acids Omega-6Fatty Acids Omega-31172 Environmental sciencessterolit010604 marine biology & hydrobiologyomega fatty acidsta1183ta1182GROWTH-RATEmikrolevätbiology.organism_classificationSterolomegarasvahapot030104 developmental biologyHuman nutrition416 Food Sciencelcsh:Biology (General)chemistry13. Climate actionDietary SupplementsStearidonic acidMarine Drugs; Volume 16; Issue 1; Pages: 3
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The Importance of Phytoplankton Biomolecule Availability for Secondary Production

2017

The growth and reproduction of animals is affected by their access to resources. In aquatic ecosystems, the availability of essential biomolecules for filter-feeding zooplankton depends greatly on phytoplankton. Here, we analyzed the biochemical composition, i.e., the fatty acid, sterol and amino acid profiles and concentrations as well as protein, carbon, nitrogen, and phosphorus content of 17 phytoplankton monocultures representing the seven most abundant phytoplankton classes in boreal and sub-arctic lakes. To examine how the differences in the biochemical composition between phytoplankton classes affect their nutritional quality for consumers, we assessed the performance of Daphnia, on …

0106 biological sciencesCyanobacteriafreshwater food webslcsh:Evolutionrasvahapotsterols01 natural sciencesDaphnialcsh:QH359-425ravintoaineetmedia_common2. Zero hungerchemistry.chemical_classificationEcologybiologynutritional ecologyEcologyAquatic ecosystemplanktonvesiekosysteemit1181 Ecology evolutionary biologyReproductionmedia_common.quotation_subjecteducationchemistry.chemical_elementaminohapot010603 evolutionary biologyZooplanktonfatty acidslcsh:QH540-549.5PhytoplanktonBotany14. Life underwatersyanobakteeritEcology Evolution Behavior and Systematicssterolitamino acids010604 marine biology & hydrobiologyPhosphorusfungita1182Fatty acidmikrolevätbiology.organism_classificationchemistryDaphniavesikirputta1181lcsh:EcologycryptophytesravintoverkotFrontiers in Ecology and Evolution
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Trophic upgrading via the microbial food web may link terrestrial dissolved organic matter to Daphnia

2017

Direct consumption of allochthonous resources generally yields poor growth and reproduction in zooplankton, but it is still unclear how trophic upgrading of terrestrial dissolved organic matter (tDOM) via the microbial food web may support zooplankton. We compared survival, somatic growth and reproduction of Daphnia magna fed with the heterotrophic flagellate Paraphysomonas vestita and three algal diets. Paraphysomonas was fed lake bacteria that used tDOM as a substrate to simulate an allochthonous diet that zooplankton encounter in lakes. The highest survival, growth and reproduction was achieved with a diet of Cryptomonas, while Daphnia performance was the worst when fed Microcystis. Para…

0106 biological sciencesallochthonyrasvahapotAquatic Sciencefood quality010603 evolutionary biology01 natural sciencesDaphniasterolPhytoplanktonDissolved organic carbonEcology Evolution Behavior and SystematicsTrophic levelsterolitMicrobial food webEcologybiologyEcology010604 marine biology & hydrobiologyplanktonfungiheterotrophic flagellatebiology.organism_classificationSterolvesikirputphytoplanktonEnvironmental scienceta1181Food qualityravintoverkotPUFA
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Lake restoration influences nutritional quality of algae and consequently Daphnia biomass

2020

AbstractFood quality is one of the key factors influencing zooplankton population dynamics. Eutrophication drives phytoplankton communities toward the dominance of cyanobacteria, which means a decrease in the availability of sterols and long-chain polyunsaturated fatty acids (EPA and DHA). The effects of different restoration measures on the nutritional quality of the phytoplankton community and subsequent impacts on zooplankton biomass have rarely been considered. We analyzed the nutritional quality of phytoplankton in the eutrophic Lake Vesijärvi in southern Finland over a 37-year period, and studied the impacts of two restoration measures, biomanipulation and hypolimnetic aeration, on th…

0106 biological sciencesfreshwater food websTROPHIC TRANSFERDAPHNIArasvahapotsterols01 natural sciencesDaphniaPHYTOPLANKTONlakespopulation dynamicsravintoaineetLake VesijärviFinlandalgaeeducation.field_of_studyBiomanipulationbiologynutritional ecologybiomass (ecology)EcologyrehevöityminenplanktonvesiekosysteemitlaatuCladoceraravitsemuksellinen ekologiaSterolsPHOSPHORUSqualityEUTROPHICATIONNutritional ecology1181 Ecology evolutionary biologyAmino acidsravintoarvodieteticsrasvahappojailmastuskryptofyytitPopulationvesistöjen kunnostusFRESH-WATER HERBIVOREmakean veden ruokaverkotlevätaminohapotAquatic ScienceCyanobacteriajärvet010603 evolutionary biologyZooplanktonfatty acidssterolejaBIOMANIPULATIONAlgaeFISHFATTY-ACID CONTENTPhytoplanktonCryptophytesDominance (ecology)14. Life underwaterbiomassa (ekologia)Fatty acidseducationsyanobakteeritaerationnutritional valuesterolitamino acidsFreshwater food webs010604 marine biology & hydrobiologyfungirestoration of water systemsmikrolevätbiology.organism_classificationpopulaatiodynamiikkaLONGDaphnia13. Climate actionvesikirputEutrophicationravitsemusravintoverkot
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Interacting effects of simulated eutrophication, temperature increase, and microplastic exposure on Daphnia

2020

The effects of multiple stressors are difficult to separate in field studies, and their interactions may be hard to predict if studied in isolation. We studied the effects of decreasing food quality (increase in cyanobacteria from 5 to 95% simulating eutrophication), temperature increase (by 3 °C), and microplastic exposure (1% of the diet) on survival, size, reproduction, and fatty acid composition of the model freshwater cladoceran Daphnia magna. We found that food quality was the major driver of Daphnia responses. When the amount of cyanobacteria increased from 5 to 95% of the diet, there was a drastic decrease in Daphnia survival (from 81 ± 15% to 24 ± 21%), juvenile size (from 1.8 ± 0.…

CyanobacteriaMicroplasticsDaphnia magnarasvahapotlipidit010501 environmental sciences01 natural sciencesBiochemistryDaphniamikromuovit0302 clinical medicineravintoaineet030212 general & internal medicineGeneral Environmental ScienceTrophic levelchemistry.chemical_classificationvesistötbiologyrehevöityminenplanktonTemperaturelaatuEutrophicationEicosapentaenoic acidclimate changelämpötilahenkiinjääminenPlasticsDaphnia magnafood qualityCyanobacteriafatty acidsZooplanktonravinto03 medical and health sciencesAnimal scienceAnimalsHumans0105 earth and related environmental sciencessterolitfungiInfant NewbornFatty acidilmastonmuutoksetbiology.organism_classificationmikroroskatDaphniachemistryvesikirputFood qualityEnvironmental Research
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Eutrophication reduces the nutritional value of phytoplankton in boreal lakes

2019

Eutrophication (as an increase in total phosphorus [TP]) increases harmful algal blooms and reduces the proportion of high-quality phytoplankton in seston and the content of ω-3 long-chain polyunsaturated fatty acids (eicosapentaenoic acid [EPA] and docosahexaenoic acid [DHA]) in fish. However, it is not well-known how eutrophication affects the overall nutritional value of phytoplankton. Therefore, we studied the impact of eutrophication on the production (as concentration; μg L−1) and content (μg mg C−1) of amino acids, EPA, DHA, and sterols, i.e., the nutritional value of phytoplankton in 107 boreal lakes. The lakes were categorized in seven TP concentration categories ranging from ultra…

freshwater food websrasvahapotsterolsaminohapotCHEMICAL-COMPOSITIONfatty acidsjärvetCryptophytesAMINO-ACIDSFatty acidsPRIMARY PRODUCERSTEMPERATUREravintoketjutravinnekiertoPOLYUNSATURATED FATTY-ACIDSsterolitamino acidsFRESH-WATERnutritional ecologyFreshwater food websrehevöityminenfungiplanktonCARBON TRANSFEREutrophicationmikrolevätDAPHNIA-MAGNASterolseutrophicationFOOD QUALITY1181 Ecology evolutionary biologyNutritional ecologyAmino acidsGROWTHlipids (amino acids peptides and proteins)cryptophytes
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Phytoplankton group identification with chemotaxonomic biomarkers: In combination they do better

2023

Chemotaxonomic biomarkers are needed to monitor and evaluate the nutritional quality of phytoplankton communities. The biomolecules produced by different phytoplankton species do not always follow genetic phylogeny. Therefore, we analyzed fatty acids, sterols, and carotenoids from 57 freshwater phytoplankton strains to evaluate the usability of these biomolecules as chemotaxonomic biomarkers. We found 29 fatty acids, 34 sterols, and 26 carotenoids in our samples. The strains were grouped into cryptomonads, cyanobacteria, diatoms, dinoflagellates, golden algae, green algae, and raphidophytes, and the phytoplankton group explained 61%, 54%, and 89% of the variability of fatty acids, sterols, …

kemotaksonomiarasvahapotbiomarkkeritmonitorointiPlant ScienceHorticultureEukaryotic algaeCyanobacteriacyanobacteriaBiochemistrysterolsyanobakteeritMolecular BiologySterolsterolitCarotenoidsystematiikka (biologia)planktoneliöyhteisötGeneral MedicinemikrolevätFatty acid11831 Plant biologycarotenoideukaryotic algaekarotenoiditChemotaxonomychemotaxonomy1182 Biochemistry cell and molecular biologyfatty acid
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