Search results for "Ecological niche"

showing 3 items of 133 documents

Niche position drives interspecific variation in occupancy and abundance in a highly-connected lake system

2019

Highlights • We studied interspecific variation in occupancy and abundance of freshwater species. • Occupancy and abundance correlated positively for both diatoms and macroinvertebrates. • Niche position had clearest effects on variation in occupancy and abundance. • The more marginal the niche position, the rarer a species is. We examined how niche position, niche breadth, biological traits and taxonomic relatedness affect interspecific variation in occupancy and abundance of two commonly-used biological indicator groups, i.e. diatoms and macroinvertebrates. We studied 291 diatom and 103 macroinvertebrate species that occupied the littoral zones of a large (305 km2) highly-connected freshw…

sijainti0106 biological sciencesOccupancyNichemacroinvertebratesspecieshabitatGeneral Decision Sciences010501 environmental sciencesjärvet010603 evolutionary biology01 natural sciencesdiatomsbiologiset ominaisuudettaxonomytraitsAbundance (ecology)lakesLittoral zonepiilevätvaihteluecological nichelajitsystematicsEcology Evolution Behavior and Systematics0105 earth and related environmental sciencesInvertebrateEcologybiologyEcologysystematiikka (biologia)niche parameterstypes and speciesesiintyminenInterspecific competitionselkärangattomatbiology.organism_classificationbiological traitsekologiaekologinen lokeroominaisuudetEcological indicatortaxonomic relationshipsDiatomta1181locationEcological Indicators
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Chemicals and chemoreceptors: ecologically relevant signals driving behavior in Drosophila

2015

Insects encounter a vast repertoire of chemicals in their natural environment, which can signal positive stimuli like the presence of a food source, a potential mate, or a suitable oviposition site as well as negative stimuli such as competitors, predators, or toxic substances reflecting danger. The presence of specialized chemoreceptors like taste and olfactory receptors allows animals to detect chemicals at short and long distances and accordingly, trigger proper behaviors toward these stimuli. Since the first description of olfactory and taste receptors in Drosophila melanogaster 15 years ago, our knowledge on the identity, properties, and function of specific chemoreceptors has increase…

tastelcsh:QH540-549.5receptorfungilcsh:Evolutionlcsh:QH359-425Ecology and EvolutionDrosophilalcsh:Ecologyecological nicherepulsionOlfactionattractionFrontiers in Ecology and Evolution
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Diversification in evolutionary arenas - assessment and synthesis

2019

Abstract Understanding how and why rates of evolutionary diversification vary is a central issue in evolutionary biology and ecology. The concept of adaptive radiation has attracted much interest, but is metaphorical and verbal in nature, making it difficult to quantitatively compare different evolutionary lineages or geographic regions. In addition, the causes of evolutionary stasis are relatively neglected. Here we review the central concepts in the evolutionary diversification literature and bring these together by proposing a general framework for estimating rates of diversification and quantifying their underlying dynamics, which can be applied across clades and regions and across spat…

trait disparification570EvolutionEcology (disciplines)media_common.quotation_subjectNicheContext (language use)Diversification (marketing strategy)580 Plants (Botany)2309 Nature and Landscape ConservationBehavior and SystematicsAdaptive radiationmacroevolutionary theory10211 Zurich-Basel Plant Science CenterTemporal scalesmedia_commonNature and Landscape Conservation580Ecological nicheEcology10121 Department of Systematic and Evolutionary BotanyGeography1105 Ecology Evolution Behavior and Systematicsconifer phylogenyEvolutionary biologyphylogenetic comparative methodsspecies diversificationConceptual modeladaptive radiation2303 Ecology
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