Search results for "niche construction"

showing 5 items of 5 documents

What can the concept of affective scaffolding do for us?

2020

The concept of affective scaffolding designates the various ways in which we manipulate the environment to influence our affective lives. In this article, I present a constructive critique of recent discussion on affective scaffolding. In Part 1, I summarize how the theories of situated mind and niche construction contribute to a multidimensional notion of scaffolding. In Part 2, I focus specifically on affective scaffolding and argue that current ambiguity over its distinctive criteria causes uncertainty as to how the concept can and should be used. In Part 3, I identify and examine two possible responses to the suggested state of conceptual ambiguity. The first, restrictive option is to k…

Cognitive scienceScaffoldvuorovaikutusaffektiivisuus05 social sciencesaffective scaffolding06 humanities and the arts0603 philosophy ethics and religionConstructive050105 experimental psychologysituated mindPhilosophyNiche constructiontunteetfilosofia060302 philosophyaffectivity0501 psychology and cognitive sciencesaffektiiviset tilatscaffolded mindPsychologyApplied Psychologyniche construction
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A niche perspective on the range expansion of symbionts.

2020

Range expansion results from complex eco-evolutionary processes where range dynamics and niche shifts interact in a novel physical space and/or environment, with scale playing a major role. Obligate symbionts (i.e. organisms permanently living on hosts) differ from free-living organisms in that they depend on strong biotic interactions with their hosts which alter their niche and spatial dynamics. A symbiotic lifestyle modifies organism–environment relationships across levels of organisation, from individuals to geographical ranges. These changes influence how symbionts experience colonisation and, by extension, range expansion. Here, we investigate the potential implications of a symbiotic…

0106 biological sciencesBiotopeRange (biology)Enemy releaseNichePhoresyMetapopulationBiology010603 evolutionary biology01 natural sciencesGeneral Biochemistry Genetics and Molecular BiologyHost-Parasite Interactions03 medical and health sciencesHost switchingAnimalsSymbiosisEcosystem030304 developmental biologyDemography0303 health sciencesObligateHost (biology)EcologyBiological EvolutionNiche constructionSymbiont organisation levelsEcological fittingBiological dispersalMetapopulationNiche constructionEnvironmental stabilityGeneral Agricultural and Biological SciencesEcological fittingColonisation processBiological reviews of the Cambridge Philosophical SocietyXII. REFERENCES
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Evolution of lactase persistence: an example of human niche construction

2011

Niche construction is the process by which organisms construct important components of their local environment in ways that introduce novel selection pressures. Lactase persistence is one of the clearest examples of niche construction in humans. Lactase is the enzyme responsible for the digestion of the milk sugar lactose and its production decreases after the weaning phase in most mammals, including most humans. Some humans, however, continue to produce lactase throughout adulthood, a trait known as lactase persistence. In European populations, a single mutation (−13910*T) explains the distribution of the phenotype, whereas several mutations are associated with it in Africa and the Middle …

Adult0106 biological sciencesAsiaNatural selectionmedicine.medical_treatmentLactoseBiology010603 evolutionary biology01 natural sciencesGene Expression Regulation EnzymologicGeneral Biochemistry Genetics and Molecular Biology03 medical and health sciencesGene FrequencyLactase persistencemedicineAnimalsHumansComputer SimulationNeolithicAlleleDomesticationLactaseddc:599.9030304 developmental biology2. Zero hungerGenetics0303 health sciencesGenetic VariationLactaseArticlesBiological EvolutionEuropeDomestic animalsDairyingLactase persistenceNiche constructionGenetics PopulationMilkAfricaTraitLocal environmentCattleNiche constructionGeneral Agricultural and Biological SciencesSingle mutationPhilosophical Transactions of the Royal Society B: Biological Sciences
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'Niche Selection' and the evolution of a complex behavior in a changing environment--a simulation.

2000

One of the key problems in theoretical biology is the identification of the mechanisms underlying the evolution of complexity. This paper suggests that some difficulties in current models could be avoided by taking account of “niche selection” as proposed by Waddington [21] and subsequent authors [2]. Computer simulations, in which an evolving population of artificial organisms “selects” the niche(s) that maximize their fitness, are compared with a Control Model in which “Niche Selection” is absent. In the simulations the Niche Selection Model consistently produced a greater number of “fit” organisms than the Control Model; although the Niche Selection Model tended, in general, to produce o…

Ecological nicheeducation.field_of_studyNatural selectionEcologyNichePopulationBiologyEnvironmentBiological EvolutionGeneral Biochemistry Genetics and Molecular BiologyEnvironmental niche modellingNiche constructionArtificial IntelligenceAnimalsHumansLearningNeural Networks ComputerAdaptationSelection GeneticeducationComplex adaptive systemArtificial life
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An Empirical Evaluation of the Utility of Convex Hull and Standard Ellipse Areas for Assessing Population Niche Widths from Stable Isotope Data

2013

Stable isotope analyses are increasingly employed to characterise population niche widths. The convex hull area (TA) in a δ¹³C–δ¹⁵N biplot has been used as a measure of isotopic niche width, but concerns exist over its dependence on sample size and associated difficulties in among-population comparisons. Recently a more robust method was proposed for estimating and comparing isotopic niche widths using standard ellipse areas (SEA), but this approach has yet to be tested with empirical stable isotope data. The two methods measure different kind of isotopic niche areas, but both are now widely used to characterise isotopic niche widths of populations. We used simulated data and an extensive e…

0106 biological sciencesPopulation Dynamicslcsh:MedicinePopulation Modeling01 natural sciencesTheoretical EcologyFood Web StructureStatisticsRange (statistics)lcsh:ScienceFreshwater EcologyCarbon Isotopeseducation.field_of_studyMultidisciplinaryEcologyδ13CEcologyStable isotope ratioStatisticsFishesBiogeochemistryisotopic nicheTrophic Interactionstrophic nicheCommunity Ecologyconvex hullResearch ArticlePopulationNichestable isotopesBiostatistics010603 evolutionary biologyNiche ConstructionNormal distributionBayesian ellipse areavakaat isotoopitAnimals14. Life underwaterStatistical MethodseducationBiologyEcological nicheNitrogen Isotopes010604 marine biology & hydrobiologylcsh:RComputational BiologySpecies InteractionsSample size determinationSample SizeravintolokeroEnvironmental scienceta1181lcsh:QPopulation EcologyEcosystem ModelingMathematicsPLOS ONE
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