Search results for "ARN"

showing 10 items of 8344 documents

Potential of science to address the hunger issue: Ecology, biotechnology, cattle breeding and the large pantry of the sea

2018

The knowledge about the real possibilities that current science gives us is basic to support everything that is not negative either for men or for our environment. In this way, it is an advantage to win this battle against hunger with rational use of science advantages. In this paper, we start from the basis that the solution to the problems of hunger requires the multidisciplinary action of sciences and knowledge. We provide a reflection on the possibilities to be considered from disciplines such as ecology, biotechnology, veterinary and aquaculture. The need for ecological studies where the role of human beings as part of ecosystems is considered. In addition, advances in molecular biolog…

0106 biological sciences0301 basic medicineEconomics and EconometricsBattleHungermedia_common.quotation_subjectEcology (disciplines)AquacultureQ1Q2201 natural sciencesRational useQ0103 medical and health sciencesMultidisciplinary approachManagement of Technology and InnovationPolitical sciencelcsh:AZ20-999ddc:650Business and International Managementlcsh:Social sciences (General)media_commonMarketingEcologybusiness.industryEcologylcsh:History of scholarship and learning. The humanitiesBiotechnology030104 developmental biologyVeterinaryAction (philosophy)Sustainabilitylcsh:H1-99business010606 plant biology & botanyBiotechnology
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Deimatism: a neglected component of antipredator defence

2017

Deimatic or ‘startle’ displays cause a receiver to recoil reflexively in response to a sudden change in sensory input. Deimatism is sometimes implicitly treated as a form of aposematism (unprofitability associated with a signal). However, the fundamental difference is, in order to provide protection, deimatism does not require a predator to have any learned or innate aversion. Instead, deimatism can confer a survival advantage by exploiting existing neural mechanisms in a way that releases a reflexive response in the predator. We discuss the differences among deimatism, aposematism, and forms of mimicry, and their ecological and evolutionary implications. We highlight outstanding questions …

0106 biological sciences0301 basic medicineEscape responseAposematismBiology010603 evolutionary biology01 natural sciences03 medical and health sciencespredator–preyEscape ReactionFundamental differenceComponent (UML)ReflexcamouflageAnimalsSurvival advantageaposematismstartle reflexCognitive scienceBehaviorEvolutionary BiologyBehavior AnimalAnimalEcologyBiological SciencesAcripezabiology.organism_classificationBiological EvolutionAgricultural and Biological Sciences (miscellaneous)Sensory input030104 developmental biologywarning coloursAcripezaMimicryta1181Animal Behaviourpredator-preyGeneral Agricultural and Biological SciencesBiotechnology
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Tandem‐running and scouting behaviour are characterized by up‐regulation of learning and memory formation genes within the ant brain

2018

Tandem-running is a recruitment behaviour in ants that has been described as a form of teaching, where spatial information possessed by a leader is conveyed to following nestmates. Within Temnothorax ants, tandem-running is used within a variety of contexts, from foraging and nest relocation to-in the case of slavemaking species-slave raiding. Here, we elucidate the transcriptomic basis of scouting, tandem-leading and tandem-following behaviours across two species with divergent lifestyles: the slavemaking Temnothorax americanus and its primary, nonparasitic host T. longispinosus. Analysis of gene expression data from brains revealed that only a small number of unique differentially express…

0106 biological sciences0301 basic medicineForagingGenes Insect010603 evolutionary biology01 natural sciencesRunningTranscriptome03 medical and health sciencesNestMemoryGeneticsAnimalsLearningGeneEcology Evolution Behavior and SystematicsBehavior AnimalTemnothoraxbiologyAntsHost (biology)BrainMolecular Sequence AnnotationTemnothorax americanusbiology.organism_classificationUp-Regulation030104 developmental biologyGene Expression RegulationEvolutionary biologyTandem runningMolecular Ecology
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Long-Term Prophylactic Antibiotic Treatment: Effects on Survival, Immunocompetence and Reproduction Success of Parasemia plantaginis (Lepidoptera: Er…

2016

Hundreds of insect species are nowadays reared under laboratory conditions. Rearing of insects always implicates the risk of diseases, among which microbial infections are the most frequent and difficult problems. Although there are effective prophylactic treatments, the side effects of applied antibiotics are not well understood. We examined the effect of prophylactic antibiotic treatment on the overwintering success of wood tiger moth (Parasemia plantaginis) larvae, and the postdiapause effect on their life-history traits. Four weeks before hibernation larvae were treated with a widely used antibiotic (fumagillin). We monitored moths' survival and life-history traits during the following …

0106 biological sciences0301 basic medicineHibernationMaleAntibioticsreproduktioMoths01 natural sciencesNOSEMA-CERANAE MICROSPORIDIAToxicologyEVOLUTIONARY ECOLOGYARCTIID MOTHantibioticINFECTIONOverwinteringtrade-offLarvaimmunocompetenceReproduction1184 Genetics developmental biology physiologyPupaGeneral Medicine3. Good healthAnti-Bacterial Agentsmass-rearingLarvaFemaleImmunocompetenceResearch Articlemedicine.drug_classLongevityZoologyMASSBiology010603 evolutionary biologyDIETLepidoptera genitalia03 medical and health sciencesParasemia plantaginisAnimals LaboratorymedicineAnimalsReproductive successfungiAntibiotic Prophylaxisbiology.organism_classificationSurvival Analysis030104 developmental biologyInsect ScienceWARNING SIGNAL EXPRESSIONta1181FUMAGILLININSECT IMMUNITYSYSTEMJournal of Insect Science
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Biased predation could promote convergence yet maintain diversity within Müllerian mimicry rings of Oreina leaf beetles.

2019

Mullerian mimicry is a classic example of adaptation, yet Muller's original theory does not account for the diversity often observed in mimicry rings. Here, we aimed to assess how well classical Mullerian mimicry can account for the colour polymorphism found in chemically defended Oreina leaf beetles by using field data and laboratory assays of predator behaviour. We also evaluated the hypothesis that thermoregulation can explain diversity between Oreina mimicry rings. We found that frequencies of each colour morph were positively correlated among species, a critical prediction of Mullerian mimicry. Predators learned to associate colour with chemical defences. Learned avoidance of the green…

0106 biological sciences0301 basic medicineMaleFrequency-dependent selectioncolor polymorphismlehtikuoriaisetFREQUENCY-DEPENDENT SELECTIONAVOIDANCEPREYAsteraceae01 natural sciencesMüllerian mimicryPredationPYRROLIZIDINE ALKALOIDSConvergent evolutionPigmentationBiological MimicryOreinaColeopteraWARNING COLORATIONPHYLOGENETIC EVIDENCECHEMICAL DEFENSE1181 Ecology evolutionary biologyFemalevaroitusvärievoluutioZoologyAposematismBiology010603 evolutionary biologyBirds03 medical and health sciencescolour polymorphismmonimuotoisuusAnimalsaposematismconvergent evolutionSelection GeneticEcology Evolution Behavior and SystematicsEcosystemkonvergenssimimikrybiology.organism_classificationEVOLUTIONPATTERN030104 developmental biologyMimicrywarning signalSHIFTING BALANCEAdaptationApiaceaeJournal of evolutionary biologyREFERENCES
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Social transmission of avoidance among predators facilitates the spread of novel prey.

2018

Warning signals are an effective defence strategy for aposematic prey, but only if they are recognized by potential predators. If predators must eat prey to associate novel warning signals with unpalatability, how can aposematic prey ever evolve? Using experiments with great tits (Parus major) as predators, we show that social transmission enhances the acquisition of avoidance by a predator population. Observing another predator’s disgust towards tasting one novel conspicuous prey item led to fewer aposematic than cryptic prey being eaten for the predator population to learn. Despite reduced personal encounters with unpalatable prey, avoidance persisted and increased over subsequent trials.…

0106 biological sciences0301 basic medicineMaleINFORMATION01 natural sciencesPredationSongbirdsFood chainTITS PARUS-MAJORPredatorDISTASTEFUL PREYeducation.field_of_studyEcologyEcologytalitiainenCrypsis1181 Ecology evolutionary biologySURVIVAL590 Animals (Zoology)FemaleAPOSEMATIC PREYWARNING SIGNALSvaroitusväriCONSPICUOUS PREYFood ChainPopulationAposematismBiology010603 evolutionary biologyeläinten käyttäytyminenModels Biological03 medical and health sciences10127 Institute of Evolutionary Biology and Environmental StudiesAvoidance LearningAnimalseducationSocial BehaviorEcology Evolution Behavior and SystematicsParusbiology.organism_classificationDisgustEVOLUTIONsaalistus030104 developmental biology1105 Ecology Evolution Behavior and Systematicssocial transmissionDIETARY CONSERVATISMPredatory Behavior570 Life sciences; biologyGREAT TITS2303 Ecology
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Through the eye of a lizard: hue discrimination in a lizard with ventral polymorphic coloration.

2017

Colour polymorphisms are thought to be maintained by complex evolutionary processes some of which require that the colours of the alternative morphs function as chromatic signals to conspecifics. Unfortunately, a key aspect of this hypothesis has rarely been studied: whether the study species perceives its own colour variation as discrete rather than continuous. The European common wall lizard (Podarcis muralis) presents a striking colour polymorphism: the ventral surface of adults of both sexes may be coloured orange, white, yellow, or with a mosaic of scales combining two colours (orange-white, orange-yellow). Here we use a discrimination learning paradigm to test if P. muralis is capable…

0106 biological sciences0301 basic medicineMalegenetic structuresPhysiologyWall lizardAnimal ScalesZoologyOrange (colour)Aquatic Science010603 evolutionary biology01 natural sciencesDiscrimination Learning03 medical and health sciencesbiology.animalAnimalsHue discriminationChromatic scaleDiscrimination learningMolecular BiologyEcology Evolution Behavior and SystematicsHuePolymorphism GeneticbiologyColor VisionLizardPigmentationLizardsbiology.organism_classificationPodarcis muralis030104 developmental biologyInsect ScienceAnimal Science and ZoologyFemaleThe Journal of experimental biology
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Need for speed : short lifespan selects for increased learning ability

2019

AbstractIt is generally assumed that an investment into cognitive abilities and their associated cost is particularly beneficial for long-lived species, as a prolonged lifespan allows to recoup the initial investment. However, ephemeral organisms possess astonishing cognitive abilities too. Invertebrates, for example, are capable of simple associative learning, reversal learning, and planning. How can this discrepancy between theory and evidence be explained? Using a simulation, we show that short lives can actually select for an increase in learning abilities. The rationale behind this is that when learning is needed to exploit otherwise inaccessible resources, one needs to learn fast in o…

0106 biological sciences0301 basic medicineTime FactorsComputer scienceBehavioural ecologyEvolutionLongevityanimal behaviourevoluutiolcsh:MedicineReversal Learning010603 evolutionary biology01 natural sciencesModels Biologicaleläinten käyttäytyminenArticle03 medical and health sciencesCognitionOrder (exchange)evolutionAnimalsComputer Simulationlcsh:ScienceMultidisciplinaryBehavior Animallcsh:RBrainbehavioural ecologyCognitionAnimal behaviourInvestment (macroeconomics)Biological EvolutionekologiaAssociative learning030104 developmental biologylcsh:QCognitive psychology
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Learned parasite avoidance is driven by host personality and resistance to infection in a fish-trematode interaction

2016

Cognitive abilities related to the assessment of risk improve survival. While earlier studies have examined the ability of animals to learn to avoid predators, learned parasite avoidance has received little interest. In a series of behavioural trials with the trematode parasite Diplostomum pseudospathaceum , we asked whether sea trout ( Salmo trutta trutta ) hosts show associative learning in the context of parasitism and if so, whether learning capacity is related to the likelihood of infection mediated through host personality and resistance. We show that animals are capable of learning to avoid visual cues associated with the presence of parasites. However, avoidance behaviour ceased af…

0106 biological sciences0301 basic medicineavoidancemedia_common.quotation_subjectParasitismZoologyBiologyparasites010603 evolutionary biology01 natural sciencesGeneral Biochemistry Genetics and Molecular BiologyHost-Parasite InteractionsAquatic organismsresistance03 medical and health sciencesvisual cueAnimalsParasite hostingPersonalityResearch ArticlesGeneral Environmental Sciencemedia_commonlearningBehavior AnimalGeneral Immunology and MicrobiologyResistance (ecology)Host (biology)CognitionGeneral Medicine030104 developmental biologypersonalityFish <Actinopterygii>ta1181TrematodaGeneral Agricultural and Biological SciencesSocial psychologySalmonidaeProceedings of the Royal Society B : Biological Sciences
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Selection for multicomponent mimicry: equal feature salience and variation in preferred traits

2016

When should multiple traits on Batesian mimics be selected to resemble corresponding traits on model species? Here, we explore two possibilities. First, features of equal salience to predators may be used to categorize prey, selecting for multicomponent mimicry. Second, if different predators use single yet different traits to categorize prey, multicomponent mimicry may still be selected. We studied how blue tits categorized rewarding and unrewarding artificial prey items that are differentiated by a combination of two color dimensions. Many birds used both color dimensions to make decisions, and overall, the population selected for multicomponent mimicry. However, a subset of birds used on…

0106 biological sciences0301 basic medicineeducation.field_of_studylearningindividual variationEcologyPopulationMultiple traitsovershadowingBiology010603 evolutionary biology01 natural sciencesBatesian mimicryPredation03 medical and health sciences030104 developmental biologyCategorizationEvolutionary biologySalience (neuroscience)Mimicryta1181Animal Science and Zoologycomplex signaleducationEcology Evolution Behavior and SystematicsBehavioral Ecology
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