Search results for "evolutionary"

showing 10 items of 4392 documents

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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The complete mitochondrial genome of the wood tiger moth (Arctia plantaginis) and phylogenetic analyses within Arctiinae

2021

We report the assembly and annotation of the complete mitochondrial genome of the warningly-coloured wood tiger moth (Arctia plantaginis) and investigate its phylogenetic position within Arctiinae. The A.plantaginis mitogenome is 15,479 bp long with 13 protein-coding genes, 22 transfer RNAs, 2 ribosomal RNA genes, and an A + T-rich region (D-loop). The phylogenetic analyses based on 13 protein-coding genes showed A.plantaginis clustering within a clade of species with white wings and yellow or red bodies. This result can be useful in understanding the evolution of coloration in Arctiid moths. Peer reviewed

varoitusvärisiilikkäätmitokondriotfylogenetiikkafungievoluutioColour polymorphismgenomiikkatäpläsiilikäsREAD ALIGNMENTWARNING COLORATIONcolour polymorphismperimäevolution1181 Ecology evolutionary biologyMitogenome AnnouncementResearch Article
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Hieracium umbrosum subsp. abietinum (Asteraceae), a further example of amphi-Adriatic disjunction

2017

So far considered as endemic to Greece, Hieracium umbrosum subsp. abietinum is reported as new for the Italian flora. Its presence has been noted on the Pollino National Park (S Italy). Morphological, ecological and taxonomical notes are given. This discovery increases the list of taxa showing an amphi-Adriatic distribution.

vascular flora0106 biological sciencesHieraciumGreecebiologyNational parkSettore BIO/02 - Botanica SistematicaChorologyPlant ScienceAsteraceaebiology.organism_classificationPollino MtEcology Evolution Behavior and Systematic010603 evolutionary biology01 natural sciencesPlant scienceTaxonItalySettore BIO/03 - Botanica Ambientale E ApplicataBotanyTaxonomy (biology)chorologyEcology Evolution Behavior and SystematicsTaxonomy010606 plant biology & botanyPlant Biosystems - An International Journal Dealing with all Aspects of Plant Biology
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The Developmental Transcriptome for Lytechinus variegatus Exhibits Temporally Punctuated Gene Expression Changes

2019

AbstractEmbryonic development is arguably the most complex process an organism undergoes during its lifetime, and understanding this complexity is best approached with a systems-level perspective. The sea urchin has become a highly valuable model organism for understanding developmental specification, morphogenesis, and evolution. As a non-chordate deuterostome, the sea urchin occupies an important evolutionary niche between protostomes and vertebrates.Lytechinus variegatus(Lv) is an Atlantic species that has been well studied, and which has provided important insights into signal transduction, patterning, and morphogenetic changes during embryonic and larval development. The Pacific specie…

ved/biology.organism_classification_rank.speciesGene regulatory networkMorphogenesisRNA-SeqTranscriptome03 medical and health sciences0302 clinical medicineLytechinusbiology.animalAnimalsGene Regulatory NetworksModel organismStrongylocentrotus purpuratusMolecular BiologySea urchin030304 developmental biologyLytechinus variegatus0303 health sciencesDeuterostomebiologyved/biologyurogenital systemGene Expression Regulation DevelopmentalCell Biologybiology.organism_classificationStrongylocentrotus purpuratusEvolutionary biologyembryonic structuresTranscriptome030217 neurology & neurosurgeryDevelopmental Biology
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Why viruses sometimes disperse in groups?

2019

AbstractMany organisms disperse in groups, yet this process is understudied in viruses. Recent work, however, has uncovered different types of collective infectious units, all of which lead to the joint delivery of multiple viral genome copies to target cells, favoring co-infections. Collective spread of viruses can occur through widely different mechanisms, including virion aggregation driven by specific extracellular components, cloaking inside lipid vesicles, encasement in protein matrices, or binding to cell surfaces. Cell-to-cell viral spread, which allows the transmission of individual virions in a confined environment, is yet another mode of clustered virus dissemination. Nevertheles…

viruses[SDV]Life Sciences [q-bio]Viral transmissionReview ArticleBiologyGenomeMicrobiologyVirus03 medical and health sciencesMultiplicity of infectionviral spreadVirologydispersal030304 developmental biology0303 health sciencesTransmission (medicine)collective infectious unit030306 microbiologyviral transmissionMutation AccumulationGeographyEvolutionary biologyBiological dispersalmultiplicity of infectionViral spreadCorrigendumVirus Evolution
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The relationships between urbanization and bird functional traits across the streetscape

2023

Publisher Copyright: © 2023 The Authors The urbanization process leads to changes in bird communities’ taxonomic and functional compositions. Highly urbanized areas generally exhibit a reduced number of bird species sharing few functional traits. However, most urban bird studies focused on vegetation patches in temperate cities. In this study, we investigate how urban environmental attributes – noise, height of buildings, and urban vegetation characteristics – modulate species occurrences and the distribution of functional traits across the streetscape of a tropical metropolis. We predicted diverse trait-environment relationships, but that highly urbanized contexts (e.g., noisy streets with…

vuorovaikutusEcologykaupungitympäristörakennettu ympäristöurban landscapekaupunkiympäristöManagement Monitoring Policy and LawJoint Species Distribution ModelsUrban Studiesbird morphological and life-history traitsjoint species distribution models1181 Ecology evolutionary biologylinnutlajitkaupungistuminenneotropical cityBird morphological and life-history traitsUrban landscapeNature and Landscape ConservationNeotropical city
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Complex plant quality—microbiota–population interactions modulate the response of a specialist herbivore to the defence of its host plant

2022

Many specialist herbivores have evolved strategies to cope with plant defences, with gut microbiota potentially participating to such adaptations. In this study, we assessed whether the history of plant use (population origin) and microbiota may interact with plant defence adaptation. We tested whether microbiota enhance the performance of Melitaea cinxia larvae on their host plant, Plantago lanceolata and increase their ability to cope the defensive compounds, iridoid glycosides (IGs). The gut microbiota were significantly affected by both larval population origin and host plant IG level. Contrary to our prediction, impoverishing the microbiota with antibiotic treatment did not reduce larv…

vuorovaikutusplant defencesuolistomikrobistoDIET QUALITYperhosetherbivoretoukatplant defenseglykosiditkasvitmicrobiotapuolustusmekanismit (biologia)ravintoketjutEcology Evolution Behavior and Systematicstrophic interactionsisäntäkasvitGUT MICROBIOTAMIDGUTIRIDOID GLYCOSIDE SEQUESTRATIONMELITAEA-CINXIApopulaatioekologiaLepidopteraGENERALISTCHEMICAL DEFENSEkasvinsyöjätBACTERIA1181 Ecology evolutionary biologySURVIVALmikro-organismitLANCEOLATA
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Seeing red? Colour biases of foraging birds are context dependent.

2020

Funder: Suomen Kulttuurirahasto; doi: http://dx.doi.org/10.13039/501100003125

warning colouration0106 biological sciencesgenetic structuresFood choicefood choicePREFERENCESTrade-off01 natural sciencesPredationFood choiceDOMESTIC CHICKSAvoidance learningPasseriformessinitiainenEDUCATED PREDATORSbiology05 social sciencesCyanistestalitiainenREDWINGS TURDUS-ILIACUSWarning colourationcolour preferenceBiological Evolutiongreat titsTRADE-OFFavoidance learning1181 Ecology evolutionary biologyEAT DEFENDED PREYvaroitusväriFRUIT COLORGreat titsForagingZoologyColorExperimental and Cognitive PsychologyColour preferenceeläinten käyttäytyminen010603 evolutionary biologyväritBlue titsBiasFOODJuvenileAnimals0501 psychology and cognitive sciences050102 behavioral science & comparative psychologySensory cueEcology Evolution Behavior and SystematicsParusblue titsOriginal Paperbiology.organism_classificationsaalistusPATTERNFruitAPOSEMATIC INSECT
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Habitat area and local habitat conditions outweigh fragmentation effects on insect communities in vineyards

2022

Fragmentation of habitat, for example by intensive agricultural practices, can be detrimental to local biodiversity. However, it often remains unclear whether such biodiversity declines are caused by loss of habitat area or increased fragmentation, and how habitat quality factors into it. In our study system, vegetated vineyards are typically small, and isolated from one another, potentially limiting the distribution and dispersal of organisms. In a full-factorial experiment of a priori selected vegetated vineyard patches of differing size and fragmentation, we aimed to disentangle the effects of habitat area (area of vegetated vineyards), habitat fragmentation (number of vegetated vineyard…

wildbeeskaskaatviininviljelypintakasvillisuus590Agriculturewild beesvineyardsground vegetationmaatalousmehiläishoitojoint species distribution modelsHierarchical Model of Species Communities HMSC1181 Ecology evolutionary biologyyhdyskunnatGeneral Earth and Planetary Sciencesmaakiitäjäisethierarchical model of species communities(HMSC)leafhoppersHierarchical Model of Species Communities (HMSC)jointspeciesdistributionmodelsmehiläispesätground beetlesGeneral Environmental Scienceagriculture
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Terrestrial carbohydrates support freshwater zooplankton during phytoplankton deficiency

2016

Article

zooplankton0106 biological sciencesAQUATIC FOOD-WEBFood ChainLow proteinCarbohydratesFresh Water010603 evolutionary biology01 natural sciencesDaphniaZooplanktonArticleZooplanktonWHOLE-LAKE EXPERIMENTSFATTY-ACID-COMPOSITIONHERBIVOROUS ZOOPLANKTONSTABLE-ISOTOPESDissolved organic carbonBotanyPhytoplanktonAnimalsDISSOLVED ORGANIC-CARBONFatty acidsfreshwaterchemistry.chemical_classificationMultidisciplinaryLAND-USEbiology010604 marine biology & hydrobiologyFatty AcidsfungiTEMPERATE LAKESPlant litterbiology.organism_classificationALLOCHTHONOUS CARBON6. Clean waterLakesDaphniachemistryterrestrial carbohydrates1181 Ecology evolutionary biologyphytoplanktonta1181Freshwater ecologyCarbohydrate MetabolismSEASONAL SHIFTSDietary CarbohydratesPolyunsaturated fatty acidScientific Reports
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