Search results for "omegarasvahapot"

showing 9 items of 9 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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Comparison of Diatoms and Dinoflagellates from Different Habitats as Sources of PUFAs

2019

Recent studies have clearly shown the importance of omega-3 (&omega

0106 biological sciencesALPHA-LINOLENIC ACIDrasvahapotPharmaceutical ScienceFresh Water01 natural sciencesFATTY-ACID-COMPOSITIONchemistry.chemical_compoundDrug DiscoveryFood sciencefreshwaterlcsh:QH301-705.5Pharmacology Toxicology and Pharmaceutics (miscellaneous)chemistry.chemical_classification0303 health sciencespanssarilevätFRESH-WATERalpha-Linolenic acidmicroalgaeFatty AcidsFish oilEicosapentaenoic acid6. Clean waterDHADocosahexaenoic acidEUTROPHICATIONDinoflagellidaGROWTHdinoflagellatesbrackishPolyunsaturated fatty acidpolyunsaturated fatty acidsTOXINBiologyPROFILEArticlediatoms03 medical and health sciencesFish OilsFISHFatty Acids Omega-3PhytoplanktonpiilevätQUALITYSaline WatersEcosystem030304 developmental biologyBrackish water010604 marine biology & hydrobiologyfungita1183ta1182Fatty acidmarineEPAmikrolevätluonnonaineetomegarasvahapotmerivesilcsh:Biology (General)chemistry416 Food Science13. Climate actionmakea vesiMarine Drugs
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Osmotrophic glucose and leucine assimilation and its impact on EPA and DHA content in algae

2020

The uptake of dissolved organic compounds, that is, osmotrophy, has been shown to be an efficient nutritional strategy for algae. However, this mode of nutrition may affect the biochemical composition, for example, the fatty acid (FA) contents, of algal cells. This study focused on the osmotrophic assimilation of glucose and leucine by selected seven algal strains belonging to chlorophytes, chrysophytes, cryptophytes, dinoflagellates and euglenoids. Our laboratory experiments with stable isotope labeling showed that osmotrophy occurred in four of the selected seven strains. However, only three of these produced long chain omega-3 FAs eicosapentaenoic acid (EPA; 20:5ω3) and docosahexaenoic a…

0106 biological scienceslcsh:Medicinestable isotope labeling010501 environmental scienceslevätMETABOLISMFreshwater Biology01 natural sciencesGeneral Biochemistry Genetics and Molecular BiologyCARBONAlgaemixotrophyPHYTOPLANKTONOmega-3 fatty acidsCryptophytesQUALITYFood scienceStable isotope labelingMixotrophy0105 earth and related environmental scienceschemistry.chemical_classificationisotoopitCOMPETITORSEcologybiologyomega-3 fatty acidsFATTY-ACIDChemistry010604 marine biology & hydrobiologyGeneral Neurosciencelcsh:RFatty acidSUCCESSAssimilation (biology)General MedicineMetabolismbiology.organism_classificationEicosapentaenoic acidLAKEomegarasvahapotOsmotrophyDocosahexaenoic acid1181 Ecology evolutionary biologyGROWTHcryptophytesLeucineGeneral Agricultural and Biological Sciences
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Allochthony, fatty acid and mercury trends in muscle of Eurasian perch (Perca fluviatilis) along boreal environmental gradients

2022

Environmental change, including joint effects of increasing dissolved organic carbon (DOC) and total phosphorus (TP) in boreal northern lakes could potentially affects food web energy sources and the biochemical composition of organisms. These environmental stressors are enhanced by anthropogenic land-use and can decrease the quality of polyunsaturated fatty acids (PUFAs) in seston and zooplankton, and therefore, possibly cascading up to fish. In contrast, the content of mercury in fish increases with lake browning potentially amplified by intensive forestry practises. However, there is little evidence on how these environmental stressors simultaneously impact beneficial omega-3 fatty acid …

LAKESTERRESTRIALliuennut orgaaninen hiiliEnvironmental EngineeringPHHYDROGEN ISOTOPESelohopeaAQUATIC FOOD WEBSEnvironmental changeHazard quotientFISHSTABLE-ISOTOPESAnimalsEnvironmental ChemistryDISSOLVED ORGANIC-CARBONahvenWaste Management and Disposal1172 Environmental sciencesFRESH-WATERNUTRITIONAL QUALITYMusclesrehevöityminenFatty AcidsvesiekosysteemitPhosphorusMercuryEutrophicationPollutionomegarasvahapotPerches1181 Ecology evolutionary biologyFatty Acids UnsaturatedAutochthonyBrowningympäristönmuutoksetravintoverkot
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Lowered nutritional quality of prey decrease the growth and biomolecule content of rainbow trout fry

2022

Diet quality is crucial for the development of offspring. Here, we examined how the nutritional quality of prey affects somatic growth and the lipid, carbohydrate, protein, amino acid, and polyunsaturated fatty acid content of rainbow trout (Oncorhynchus mykiss) fry using a three-trophic-level experimental setup. Diets differed especially in their content of eicosapentaenoic acid (EPA) and docosahexaenoic acid (DHA), which are physiologically essential polyunsaturated fatty acids for a fish fry. Trout were fed with an artificial diet (fish feed, DHA-rich), marine zooplankton diet (krill/Mysis, DHA-rich), or freshwater zooplankton diet (Daphnia, Cladocera, DHA-deficient). The Daphnia were gr…

freshwater food websDocosahexaenoic AcidsPhysiologyrasvahapotBiochemistrypoikasetkirjolohiAnimalsravintoaineetMolecular BiologykalatfishArachidonic AcidFatty Acids Essentialrehevöityminenplanktonvesiekosysteemitdaphniadocosahexaenoic acidomegarasvahapotDieteutrophicationEicosapentaenoic AcidOncorhynchus mykissphytoplanktonvesikirputravintoarvoNutritive Valueravintoverkotpolyunsaturated fatty acids
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Increasing temperature and productivity change biomass, trophic pyramids and community‐level omega‐3 fatty acid content in subarctic lake food webs

2021

Climate change in the Arctic is outpacing the global average and land-use is intensifying due to exploitation of previously inaccessible or unprofitable natural resources. A comprehensive understanding of how the joint effects of changing climate and productivity modify lake food web structure, biomass, trophic pyramid shape and abundance of physiologically essential biomolecules (omega-3 fatty acids) in the biotic community is lacking. We conducted a space-for-time study in 20 subarctic lakes spanning a climatic (+3.2 degrees C and precipitation: +30%) and chemical (dissolved organic carbon: +10 mg/L, total phosphorus: +45 mu g/L and total nitrogen: +1,000 mu g/L) gradient to test how temp…

liuennut orgaaninen hiili0106 biological sciences010504 meteorology & atmospheric sciencesland&#8208maankäyttöDOCtrophic level01 natural sciencesravintoaineetBiomassland‐use3 HUFAECOSYSTEM SIZEGeneral Environmental ScienceTrophic levelPOLYUNSATURATED FATTY-ACIDSGlobal and Planetary ChangeEcologyPrimary producersEcologyvesiekosysteemitforestryTemperatureomega‐3 HUFAfood web structureBIOACCUMULATIONomega&#8208Food webEUTROPHICATION1181 Ecology evolutionary biologyCOREGONUSPOPULATIONStrophic pyramidFood ChainEcological pyramid010603 evolutionary biologyFISHnutrientsFatty Acids Omega-3PhytoplanktonAnimalsEnvironmental ChemistryDominance (ecology)14. Life underwaterOmega 3 fatty acidCHAIN LENGTH0105 earth and related environmental sciencesilmastonmuutokset15. Life on landomegarasvahapotCLIMATELakesMORPHOMETRY13. Climate actionPhytoplanktonEnvironmental scienceWhole foodmetsänhoitouseravintoverkotGlobal Change Biology
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Effect of Omega-3 Dosage on Cardiovascular Outcomes : An Updated Meta-Analysis and Meta-Regression of Interventional Trials

2021

Objectives:To quantify the effect of eicosapentaenoic (EPA) and docosahexaenoic (DHA) acids oncardiovascular disease (CVD) prevention and the effect of dosage. Methods:This study is designed as a random effects meta-analysis and meta-regression of ran-domized control trials with EPA/DHA supplementation. This is an update and expanded analysis ofa previously published meta-analysis which covers all randomized control trials with EPA/DHAinterventions and cardiovascular outcomes published before August 2019. The outcomes includedare myocardial infarction (MI), coronary heart disease (CHD) events, CVDevents (a composite ofMI, angina, stroke, heart failure, peripheral arterial disease, sudden de…

meta-analyysiterveysvaikutuksetsydän- ja verisuonitauditomega-3 dosagecardiovascular outcomesomegarasvahapot
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Selective Fatty Acid Retention and Turnover in the Freshwater Amphipod Pallaseopsis quadrispinosa

2021

Gammarid amphipods are a crucial link connecting primary producers with secondary consumers, but little is known about their nutritional ecology. Here we asked how starvation and subsequent feeding on different nutritional quality algae influences fatty acid retention, compound-specific isotopic carbon fractionation, and biosynthesis of omega-3 and omega-6 polyunsaturated fatty acids (PUFA) in the relict gammarid amphipod Pallaseopsis quadrispinosa. The fatty acid profiles of P. quadrispinosa closely matched with those of the dietary green algae after only seven days of refeeding, whereas fatty acid patterns of P. quadrispinosa were less consistent with those of the diatom diet. This was ma…

nutritional ecologyvesiekosysteemitrasvahapotlcsh:QR1-502äyriäisetomegarasvahapotlcsh:Microbiologykatkat1182 Biochemistry cell and molecular biologyravintoaineetfreshwaterravinnekiertoamphipodpolyunsaturated fatty acidsBiomolecules
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Variation in ω-3 and ω-6 Polyunsaturated Fatty Acids Produced by Different Phytoplankton Taxa at Early and Late Growth Phase

2020

Phytoplankton synthesizes essential ω-3 and ω-6 polyunsaturated fatty acids (PUFA) for consumers in the aquatic food webs. Only certain phytoplankton taxa can synthesize eicosapentaenoic (EPA; 20:5ω3) and docosahexaenoic acid (DHA; 22:6ω3), whereas all phytoplankton taxa can synthesize shorter-chain ω-3 and ω-6 PUFA. Here, we experimentally studied how the proportion, concentration (per DW and cell-specific), and production (µg FA L-1 day-1) of ω-3 and ω-6 PUFA varied among six different phytoplankton main groups (16 freshwater strains) and between exponential and stationary growth phase. EPA and DHA concentrations, as dry weight, were similar among cryptophytes and diatoms. However, Crypto…

nutritional valueTime Factorsplanktonrasvahapotlcsh:QR1-502mikrolevätomegarasvahapotArticlelcsh:MicrobiologybiosynteesiSpecies SpecificityFatty Acids Omega-6Fatty Acids Omega-3phytoplanktonmakea vesiravintoarvofreshwaterpolyunsaturated fatty acidsBiomolecules
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