Search results for "Butter"

showing 8 items of 88 documents

Reduction of saturated fat in chocolate by using sunflower oil-hydroxypropyl methylcellulose based oleogels

2021

The suitability of sunflower oil-hydroxypropyl methylcellulose (HPMC) based oleogel obtained by emulsion template approach as partial cocoa butter (CB) replacer in chocolates was investigated. A level of 50% CB replacement was optimum, as higher level of replacement affected the sensory appearance in comparison to the control chocolate (without added oleogel). Four levels of HPMC (0.5, 1, 1.5 and 2%) were considered. Textural and calorimetric properties, as well as sensory properties obtained by Free Choice Profile of the formulated chocolates were investigated. Partial replacement of CB by the sunflower-HPMC based oleogel reduced significantly the chocolate hardness. Higher HPMC concentrat…

food.ingredientGeneral Chemical EngineeringMelting temperatureSaturated fatFlavour01 natural sciencesSensory analysis0404 agricultural biotechnologyfood0103 physical sciencesCocoa butter replacerFood scienceChocolatePhysical properties010304 chemical physicsChemistrySunflower oilHydroxypropyl methylcellulose04 agricultural and veterinary sciencesGeneral ChemistrySensory analysis040401 food scienceSunflowerOleogelEmulsionFood Science
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EXTRA VIRGIN OLIVE OIL IMPROVES LEARNING AND MEMORY IN SAMP8 MICE

2011

Abstract. Polyphenols are potent antioxidants found in extra virgin olive oil (EVOO); antioxidants have been shown to reverse age- and disease-related learning and memory deficits. We examined the effects of EVOO on learning and memory in SAMP8 mice, an age-related learning/memory impairment model associated with increased amyloid- protein and brain oxidative damage. We administered EVOO, coconut oil, or butter to 11 month old SAMP8 mice for 6 weeks. Mice were tested in T-maze foot shock avoidance and one-trial novel object recognition with a 24 h delay. Mice which received EVOO had improved acquisition in the T-maze and spent more time with the novel object in one-trial novel object recogni…

food.ingredientSettore MED/09 - Medicina InternaSuperoxide dismutase activitymedicine.disease_causeMicechemistry.chemical_compoundfoodDietary Fats UnsaturatedMemorymedicineAnimalsPlant OilsMemory impairmentFood scienceMaze LearningOlive OilGeneral NeuroscienceCoconut oilBrainfood and beveragesGeneral MedicineGlutathioneT-mazeMice Mutant StrainsOxidative StressPsychiatry and Mental healthClinical PsychologychemistryBiochemistryPolyphenolButterCoconut OilExtra virgin olive oil learning memory object recognition oxidative stress SAMP8 T-mazeGeriatrics and GerontologyOxidative stressOlive oil
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The Giant Butterfly-moths of the Natural History Museum of Wrocław University, Poland, with comments about Friedrich Wilhelm Niepelt and his insect c…

2013

Even though natural history museums are seen by some as rather gloomy places, they are actually repositories of countless treasures and magnificent sources of knowledge. The Museum of Natural History of the University of Wroclaw is no exception. A process to curate all Museum’s Lepidoptera that started in 2012 allowed us to find among its several collections, the one that originally belonged to the renowned entomologist and insect dealer Friedrich Wilhelm Niepelt. Among the few moth groups in such collection 37 specimens within 19 species and 22 taxa of the neotropical giant butterfly-moths (Castniidae) were found. Even though several of those specimens lack detailed collecting information,…

natural historyNiepeltCastniidaeGiant Butterfly-MothsbiodiversityGenus. International Journal of Invertebrate Taxonomy
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Hard to catch: Experimental evidence supports evasive mimicry

2021

Most research on aposematism has focused on chemically defended prey, but the signalling difficulty of capture remains poorly explored. Similar to classical Batesian and Müllerian mimicry related to distastefulness, such ‘evasive aposematism' may also lead to convergence in warning colours, known as evasive mimicry. A prime candidate group for evasive mimicry areAdelphabutterflies, which are agile insects and show remarkable colour pattern convergence. We tested the ability of naive blue tits to learn to avoid and generalizeAdelphawing patterns associated with the difficulty of capture and compared their response to that of birds that learned to associate the same wing patterns with distast…

prey defence0106 biological sciencesEvolutionComputer scienceAposematismModels Biological010603 evolutionary biology01 natural sciencesGeneral Biochemistry Genetics and Molecular BiologyMüllerian mimicryPredationSongbirds03 medical and health sciencesAvoidance learningGeneralization (learning)AnimalsWings AnimalGeneral Environmental Science030304 developmental biology[SDV.EE]Life Sciences [q-bio]/Ecology environment0303 health sciencesWingconvergenceGeneral Immunology and Microbiologybiology[SDV.BA]Life Sciences [q-bio]/Animal biologyBiological MimicryGeneral MedicineAdelphabiology.organism_classificationBiological EvolutionBatesian mimicrypredator learningEvolutionary biologyPredatory Behavior1181 Ecology evolutionary biologyMimicryevasive aposematismAdelphaGeneral Agricultural and Biological SciencesdistastefulnessButterflies
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Verifying the predicted risk of extinction based on ecological characteristics

2021

Red List status of species should reflect species extinction risk. Because data are limited and species response has a time lag, species may be threatened by extinction even if they are not Red‐Listed. The ability to predict species risk of extinction from ecological characteristics holds promises for proactively targeting conservation measures to species at high risk. In 2005, the risk of extinction from ecological characteristics was predicted for 81 species of Finnish butterflies. Now, after 15 years and two additional national Red List assessments, these predictions are verified. Species with a higher risk of extinction according to the original ecological extinction risk rank (EERR) ha…

threatened speciesperhosetQH1-199.5Environmental Science (miscellaneous)IUCNsukupuuttoon kuoleminenIUCN Red ListinsectsQH540-549.5Nature and Landscape ConservationGlobal and Planetary ChangeExtinctionuhanalaiset lajitEcologybutterflieslajiensuojeluEcologyRed ListGeneral. Including nature conservation geographical distributionsocial sciencesriskitekijätmusculoskeletal systemhumanitiespopulaatioekologiaGeographyThreatened specieshyönteisetgeographic locations
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Multimodal Aposematic Defenses Through the Predation Sequence

2021

Aposematic organisms warn predators of their unprofitability using a combination of defenses, including visual warning signals, startling sounds, noxious odors, or aversive tastes. Using multiple lines of defense can help prey avoid predators by stimulating multiple senses and/or by acting at different stages of predation. We tested the efficacy of three lines of defense (color, smell, taste) during the predation sequence of aposematic wood tiger moths (Arctia plantaginis) using blue tit (Cyanistes caeruleus) predators. Moths with two hindwing phenotypes (genotypes: WW/Wy = white, yy = yellow) were manipulated to have defense fluid with aversive smell (methoxypyrazines), body tissues with a…

varoitusväri0106 biological sciencesTastepredator-prey interactionsPyrrolizidine alkaloidEvolutiondefense mechanismsmultimodal signalingPREYAVOIDANCEZoologyContext (language use)AposematismITHOMIINE BUTTERFLIESBiology010603 evolutionary biology01 natural sciencestäpläsiilikäsPredation03 medical and health scienceschemistry.chemical_compoundCyanistes caeruleuschemical defensePYRROLIZIDINE ALKALOIDSQH359-425aposematismpuolustusmekanismit (biologia)Arctia plantaginissinitiainenQH540-549.5EDUCATED PREDATORSEcology Evolution Behavior and Systematics030304 developmental biology0303 health sciencesTASTEEcologyfungiCyanistesbiology.organism_classificationsaalistusWARNING COLORATIONCHEMICAL DEFENSEchemistryTRADE-OFFwarning signals1181 Ecology evolutionary biologyPyrrolizidineChemical defensePYRAZINE ODORFrontiers in Ecology and Evolution
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Transparency reduces predator detection in mimetic clearwing butterflies

2019

International audience; Predation is an important selective pressure and some prey have evolved conspicuous warning signals that advertise unpalatability (i.e. aposematism) as an antipredator defence. Conspicuous colour patterns have been shown effective as warning signals, by promoting predator learning and memory. Unexpectedly, some butterfly species from the unpalatable tribe Ithomiini possess transparent wings, a feature rare on land but common in water, known to reduce predator detection.We tested if transparency of butterfly wings was associated with decreased detectability by predators, by comparing four butterfly species exhibiting different degrees of transparency, ranging from ful…

varoitusväri0106 biological scienceskokeilubirdTransparency (market)perhosetaposematicZoologyAposematism010603 evolutionary biology01 natural sciencesPredationläpinäkyvyyscitizen sciencePredatorEcology Evolution Behavior and Systematicssuojaväri[SDV.EE]Life Sciences [q-bio]/Ecology environmentbiologyexperiment[SDV.BID.EVO]Life Sciences [q-bio]/Biodiversity/Populations and Evolution [q-bio.PE]vision modellingbiology.organism_classificationIthomiinicrypsisIthomiinidetectability[SDV.BA.ZI]Life Sciences [q-bio]/Animal biology/Invertebrate ZoologykansalaistiedeCrypsisButterflyMimicrymonarkkiperhoset010606 plant biology & botany
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Diversity in warning coloration: selective paradox or the norm?

2019

Aposematic theory has historically predicted that predators should select for warning signals to converge on a single form, as a result of frequency-dependent learning. However, widespread variation in warning signals is observed across closely related species, populations and, most problematically for evolutionary biologists, among individuals in the same population. Recent research has yielded an increased awareness of this diversity, challenging the paradigm of signal monomorphy in aposematic animals. Here we provide a comprehensive synthesis of these disparate lines of investigation, identifying within them three broad classes of explanation for variation in aposematic warning signals: …

varoitusväripolytypismFREQUENCY-DEPENDENT SELECTIONModels BiologicalSEXUAL SELECTIONpolymorphismPOLYMORPHIC MULLERIAN MIMICRYSex FactorsmonimuotoisuusAnimalsaposematismEcosystemGRAPHOSOMA-LINEATUM HETEROPTERAPolymorphism GeneticINDO-WEST PACIFICEVOLUTIONARY SIGNIFICANCEBiological MimicryAge FactorsTemperaturePOISON FROGSOriginal ArticlesBiodiversityPigments BiologicalBiological EvolutionCORAL-SNAKE PATTERNcontinuous variationmuunteluBiological Variation PopulationPredatory Behavior1181 Ecology evolutionary biologyHISTORY TRADE-OFFSOriginal ArticleHELICONIUS BUTTERFLIES
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