Search results for "evolutionary ecology"

showing 10 items of 96 documents

2019

So far, studies on the bacterial immune system CRISPR-Cas and its ecological and evolutionary effects have been largely limited to laboratory conditions. While providing crucial information on the constituents of CRISPR-Cas, such studies may overlook fundamental components that affect bacterial immunity in natural habitats. Translating laboratory-derived predictions to nature is not a trivial task, owing partly to the instability of natural communities and difficulties in repeated sampling. To this end, we review how aquaculture, the farming of fishes and other aquatic species, may provide suitable semi-natural laboratories for examining the role of CRISPR-Cas in phage/bacterium coevolution…

0303 health sciencesbiologyPhage therapy030306 microbiologymedicine.medical_treatmentEcology (disciplines)Pathogenic bacteriabiology.organism_classificationmedicine.disease_causeGeneral Biochemistry Genetics and Molecular BiologyBacteriophage03 medical and health sciencesEvolutionary biologymedicineCRISPREvolutionary ecology14. Life underwaterGeneral Agricultural and Biological SciencesEvolutionary dynamicsCoevolution030304 developmental biologyPhilosophical Transactions of the Royal Society B: Biological Sciences
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Maternal transfer of antibodies: raising immuno-ecology issues.

2007

The transfer of antibodies from mother to offspring has broad potential implications in evolutionary ecology, from the adaptive value of maternal effects to the role of transgenerational plasticity in host-parasite interactions. Recent contributions have addressed key issues such as environmental and genetic factors affecting the amount of antibodies transferred and whether maternal antibodies affect offspring immunity, but little is still known about the implications of the maternal transfer of antibodies in natural populations. By its position at the crossroads between population ecology, animal science, medicine and epidemiology, current studies of the role of the maternal transfer of an…

Adaptive valueOffspringEcologyEcology (disciplines)Maternal effectAdaptation BiologicalGenetic VariationPopulation ecologyBiologyEnvironmentAntibodiesImmunityHost-Pathogen Interactionsbiology.proteinAnimalsEvolutionary ecologyAntibodyImmunity Maternally-AcquiredEcology Evolution Behavior and SystematicsTrends in ecologyevolution
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A membrane computing simulator of trans-hierarchical antibiotic resistance evolution dynamics in nested ecological compartments (ARES)

2015

In this article, we introduce ARES (Antibiotic Resistance Evolution Simulator) a software device that simulates P-system model scenarios with five types of nested computing membranes oriented to emulate a hierarchy of eco-biological compartments, i.e. a) peripheral ecosystem; b) local environment; c) reservoir of supplies; d) animal host; and e) host's associated bacterial organisms (microbiome). Computational objects emulating molecular entities such as plasmids, antibiotic resistance genes, antimicrobials, and/or other substances can be introduced into this framework and may interact and evolve together with the membranes, according to a set of pre-established rules and specifications. AR…

Antibiotic resistanceImmunologyBiologyGeneral Biochemistry Genetics and Molecular Biology03 medical and health sciencesAntibiotic resistanceDrug Resistance BacterialMembrane computingComputer SimulationMembrane computingEcology Evolution Behavior and SystematicsSimulation030304 developmental biology0303 health sciencesModels GeneticAgricultural and Biological Sciences(all)030306 microbiologyEcologyNatural computingBiochemistry Genetics and Molecular Biology(all)ResearchApplied MathematicsAntibiotic exposureReciprocity (evolution)Biological EvolutionAnti-Bacterial AgentsP-systemModeling and SimulationORGANIZACION DE EMPRESASLocal environmentEvolutionary ecologyGeneral Agricultural and Biological SciencesEssential nestingLENGUAJES Y SISTEMAS INFORMATICOSAntibiotic resistance genes
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Invasion Ability and Disease Dynamics of Environmentally Growing Opportunistic Pathogens under Outside-Host Competition

2014

Most theories of the evolution of virulence concentrate on obligatory host-pathogen relationship. Yet, many pathogens replicate in the environment outside-host where they compete with non-pathogenic forms. Thus, replication and competition in the outside-host environment may have profound influence on the evolution of virulence and disease dynamics. These environmentally growing opportunistic pathogens are also a logical step towards obligatory pathogenicity. Efficient treatment methods against these diseases, such as columnaris disease in fishes, are lacking because of their opportunist nature. We present a novel epidemiological model in which replication and competition in the outside-hos…

Bacterial Diseases0106 biological sciencesPopulation ModelingDisease01 natural sciencesTheoretical EcologyMedicine and Health SciencesPathogenPOPULATIONmedia_common0303 health scienceseducation.field_of_studyPREDATIONMultidisciplinaryEcologyTransmission (medicine)EcologySimulation and ModelingQRCHANNEL CATFISHEVOLUTIONARY DYNAMICSCOMMUNITYInfectious DiseasesHost-Pathogen Interactions1181 Ecology evolutionary biologyMedicineAlgorithmsResearch ArticleTRANSMISSIONSciencemedia_common.quotation_subjecteducationPopulationVirulenceOpportunistic InfectionsBiologyResearch and Analysis Methods010603 evolutionary biologyCompetition (biology)03 medical and health sciences14. Life underwaterParasite EvolutioneducationEvolutionary dynamicsta413030304 developmental biologyEvolutionary BiologyMathematical ModelingSTABILITYMORTALITYEcology and Environmental SciencesBiology and Life SciencesComputational BiologyFLAVOBACTERIUM-COLUMNAREOutbreakModels TheoreticalEmerging Infectious DiseasesEvolutionary Ecologyta1181VIRULENCEParasitologyInfectious Disease ModelingPLoS ONE
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Genetic relationships between sympatric and allopatric Coregonus ciscoes in North and Central Europe

2021

Abstract Background Sympatric speciation along ecological gradients has been studied repeatedly, in particular in freshwater fishes. Rapid post-glacial ecological divergence has resulted in numerous endemic species or ecologically distinct populations in lakes of the temperate zones. Here, we focus on the Baltic cisco (Coregonus albula) complex, to study the genetic similarity among two pairs of sympatric autumn- and spring-spawning populations from post-glacial German Lakes Stechlin and Breiter Luzin. For comparison, we included a similar pair of sympatric populations from the Swedish Lake Fegen. We wanted to explore potential genetic similarities between the three sympatric cisco populati…

Biologisk systematikEvolutionmuikkuPopulationAllopatric speciationBaltic cisco complexBiological SystematicsBiologyEvolutionary ecologymikrosatelliititgenotyyppiPost-glacial divergencemicrosatellitesEvolutionsbiologispecies lossGenetic driftpost-glacial divergencepopulaatiotQH359-425Coregonus albulaAnimalsHumansCoregonusEndemismeducationMicrosatellitesQH540-549.5Coregonus albulaeducation.field_of_studyEvolutionary BiologyEcologyEcologyResearchlohikalatGeneral Medicinebiology.organism_classificationLakesSympatryGenetics PopulationSympatric speciationGenetic structureFish and Aquacultural SciencelajiutuminenSpecies lossSalmonidaeMicrosatellite Repeats
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Plant facilitation and phylogenetics

2013

The relationship between facilitation and evolutionary ecology is poorly understood. We review five issues elucidating how the phylogenetic relatedness of species provides insight into the role of facilitation in community assembly: (a) Are the facilitative interactions more common between species that differ in a regeneration niche? (b) Are facilitative interactions more common between distantly related species? (c) Do communities governed by facilitation (rather than competition) have higher phylogenetic diversity? (d) As facilitated juvenile plants mature, do they compete with their nurses more often if they are closely related to them? (e) How does the phylogenetic signature in a commun…

CoextinctionEcologyPhylogenetic treeEcologymedia_common.quotation_subjectNetworkBiologyCompetition (biology)Historical effectsPhylogenetic diversityIndirect effectsPhylogeneticsNicheFacilitationEvolutionary ecologyRegeneration (ecology)Ecology Evolution Behavior and SystematicsEcological interactionsmedia_common
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Insect Immunity: An Evolutionary Ecology Perspective

2005

Abstract We review recent advances in our understanding of the mechanisms of insect immune defence, but do so in a framework defined by the ecological and evolutionary forces that shape insect immune defence. Recent advances in genetics and molecular biology have greatly expanded our understanding of the details of the immune mechanisms that enable insects to defend themselves against parasites and pathogens. However, these studies are primarily concerned with discovering and describing how resistance mechanisms work. They rarely address the question of why they are shaped the way they are. Partly because we know so much about the mechanisms that it is now becoming possible to ask such ulti…

Cognitive scienceResistance (ecology)media_common.quotation_subjectfungiPerspective (graphical)Insectbiochemical phenomena metabolism and nutritionBiologyImmune defenceFuture studyEvolutionary biologyImmunitybacteriaEvolutionary ecologyImmune mechanismsmedia_common
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Social transmission in the wild can reduce predation pressure on novel prey signals

2021

Funder: Suomen Kulttuurirahasto (Finnish Cultural Foundation); doi: https://doi.org/10.13039/501100003125

DYNAMICS0106 biological sciences0301 basic medicineINFORMATIONBehavioural ecologyAVOIDANCEGeneral Physics and AstronomyPREFERENCESALTERNATIVE PREYEvolutionary ecology01 natural sciencesConformityPredationlaw.inventionlaw/631/181/2481kulttuurievoluutioPasseriformesCOLORATIONcultural evolutionsinitiainenmedia_commoneducation.field_of_studyMultidisciplinarybiologyEcologyCyanistesQarticlebehavioural ecologyCONFORMITYtalitiainenBiological Evolutionsosiaalinen oppiminen/631/158/856evoluutioekologiaTransmission (mechanics)/631/158/8571181 Ecology evolutionary biologycoevolution/631/181/1403media_common.quotation_subjectSciencePopulationCultural evolutioneläinten käyttäytyminen010603 evolutionary biologyGeneral Biochemistry Genetics and Molecular Biology03 medical and health sciencesGREGARIOUSNESSAvoidance LearningJuvenileAnimalsSelection GeneticeducationEvolutionary dynamicsSocial BehaviorParusGeneral Chemistrybiology.organism_classificationBLACKBIRDSPrunus dulcisEVOLUTIONsaalistusUnited Kingdom030104 developmental biologyPredatory Behaviorevolutionary ecologyRemote Sensing TechnologyVocalization AnimalCoevolutionNature Communications
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High temperature and bacteriophages can indirectly select for bacterial pathogenicity in environmental reservoirs

2010

The coincidental evolution hypothesis predicts that traits connected to bacterial pathogenicity could be indirectly selected outside the host as a correlated response to abiotic environmental conditions or different biotic species interactions. To investigate this, an opportunistic bacterial pathogen, Serratia marcescens, was cultured in the absence and presence of the lytic bacteriophage PPV (Podoviridae) at 25°C and 37°C for four weeks (N = 5). At the end, we measured changes in bacterial phage-resistance and potential virulence traits, and determined the pathogenicity of all bacterial selection lines in the Parasemia plantaginis insect model in vivo. Selection at 37°C increased bacterial…

Disease reservoirHot TemperatureMovementlcsh:MedicineVirulenceMothsMicrobiologyMicrobial EcologyMicrobiologyBacteriophage03 medical and health sciencesEnvironmental MicrobiologyAnimalslcsh:ScienceBiologyPathogenSerratia marcescens1183 Plant biology microbiology virologyDisease Reservoirs030304 developmental biologyAbiotic componentEvolutionary Biology0303 health sciencesMultidisciplinaryBiotic componentEcologybiology030306 microbiologylcsh:RPodoviridaebiology.organism_classificationBiological EvolutionSurvival AnalysisBacterial PathogensLytic cycleEvolutionary EcologyLarvaHost-Pathogen InteractionsMicrobial Evolutionlcsh:QBacteriaResearch Article
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Coincidental loss of bacterial virulence in multi-enemy microbial communities.

2014

The coincidental virulence evolution hypothesis suggests that outside-host selection, such as predation, parasitism and resource competition can indirectly affect the virulence of environmentally-growing bacterial pathogens. While there are some examples of coincidental environmental selection for virulence, it is also possible that the resource acquisition and enemy defence is selecting against it. To test these ideas we conducted an evolutionary experiment by exposing the opportunistic pathogen bacterium Serratia marcescens to the particle-feeding ciliate Tetrahymena thermophila, the surfacefeeding amoeba Acanthamoeba castellanii, and the lytic bacteriophage Semad11, in all possible combi…

Ecological selectionBacteriophageNatural SelectionBacteriophagesANTAGONISTIC COEVOLUTIONLISTERIA-MONOCYTOGENESSerratia marcescens1183 Plant biology microbiology virologyGeneticsSERRATIA-MARCESCENSAcanthamoeba castellanii0303 health sciencesMultidisciplinaryEcologybiologyQTetrahymenaRAcanthamoeba castellaniiMedicineResearch ArticleEvolutionary ProcessesVirulence FactorsAntagonistic CoevolutionScienceMicrobial ConsortiaeducationVirulenceMicrobiologyMicrobial EcologyMicrobiologyEvolution Molecular03 medical and health sciencesmulti-enemy microbial communitiesWater environment030304 developmental biologySTAPHYLOCOCCUS-AUREUSEvolutionary BiologyPSEUDOMONAS-AERUGINOSA VIRULENCE030306 microbiologybacterial virulenceDICTYOSTELIUM-DISCOIDEUMBiology and Life SciencesBacteriologybiology.organism_classificationOrganismal EvolutionArtificial SelectionTETRAHYMENA-THERMOPHILAEvolutionary EcologyMicrobial Evolutionta1181AMEBA ACANTHAMOEBA-CASTELLANIILEGIONELLA-PNEUMOPHILABacteriaMEDIA COMPOSITION INFLUENCESPLoS ONE
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