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showing 10 items of 12465 documents

Estimation of fitness from energetics and life-history data: An example using mussels.

2017

Changing environments have the potential to alter the fitness of organisms through effects on components of fitness such as energy acquisition, metabolic cost, growth rate, survivorship, and reproductive output. Organisms, on the other hand, can alter aspects of their physiology and life histories through phenotypic plasticity as well as through genetic change in populations (selection). Researchers examining the effects of environmental variables frequently concentrate on individual components of fitness, although methods exist to combine these into a population level estimate of average fitness, as the per capita rate of population growth for a set of identical individuals with a particul…

0106 biological sciencesPhenotypic plasticityEcology010604 marine biology & hydrobiologyBiology010603 evolutionary biology01 natural sciencesSurvivorship curveStatisticsPer capitaPopulation growthProduction (economics)Set (psychology)Ecology Evolution Behavior and SystematicsSelection (genetic algorithm)OrganismNature and Landscape ConservationEcology and evolution
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Empirical evidence for fast temperature-dependent body size evolution in rotifers

2017

Organisms tend to decrease in size with increasing temperature by phenotypic plasticity (the temperature-size rule; ectotherms) and/or genetically (Bergmann’s rule; all organisms). In this study, the evolutionary response of body size to temperature was examined in the cyclically parthenogenetic rotifer Brachionus plicatilis. Our aim was to investigate whether this species, already known to decrease in size with increasing temperature by phenotypic plasticity, presents a similar pattern at the genetic level. We exposed a multiclonal mixture of B. plicatilis to experimental evolution at low and high temperature and monitored body size weekly. Within a month, we observed a smaller size at hig…

0106 biological sciencesPhenotypic plasticityExperimental evolutionbiologyEcology010604 marine biology & hydrobiologyBergmann’s ruleZoologyEcologia animalRotiferParthenogenesisAquatic SciencePlasticityBrachionusbiology.organism_classificationRotífers010603 evolutionary biology01 natural sciencesBergmann's ruletemperature-size ruleEctothermBrachionus plicatilisexperimental evolutionbody size
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2019

Trade-offs have been shown to play an important role in the divergence of mating strategies and sexual ornamentation, but their importance in explaining warning signal diversity has received less attention. In aposematic organisms, allocation costs of producing the conspicuous warning signal pigmentation under nutritional stress could potentially trade-off with life-history traits and maintain variation in warning coloration. We studied this with an aposematic herbivore Arctia plantaginis (Arctiidae), whose larvae and adults show extensive variation in aposematic coloration. In larvae, less melanic coloration (i.e. larger orange patterns) produces a more efficient warning signal against pre…

0106 biological sciencesPhenotypic plasticityLarvaHerbivoreLow protein010604 marine biology & hydrobiologyMelanismZoologyAposematismBiology010603 evolutionary biology01 natural sciencesLife history theoryAnimal Science and ZoologyGene–environment interactionEcology Evolution Behavior and SystematicsJournal of Animal Ecology
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Measuring phenotypes in fluctuating environments

2020

Despite considerable theoretical interest in how the evolution of phenotypic plasticity should be shaped by environmental variability and stochasticity, how individuals actually respond to these aspects of the environment within their own lifetimes remains unclear. We propose that this understanding has been hampered by experimental approaches that expose organisms to fluctuating environments (typically treatments where fluctuations in the environment are cyclical vs. erratic) for a pre‐determined duration while ensuring that the mean environment over that the entire exposure period is invariable. This approach implicitly assumes that responses to the mean and variance/predictability in the…

0106 biological sciencesPhenotypic plasticitybiologyfungiConfoundingDaphnia magnabiology.organism_classification010603 evolutionary biology01 natural sciencesDaphniaHeat toleranceEnvironment variableStatisticsPredictabilityMean radiant temperatureEcology Evolution Behavior and Systematics010606 plant biology & botanyFunctional Ecology
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Immense plasticity of timing of breeding in a sedentary forest passerine, Poecile palustris

2015

Numerous bird species have advanced their breeding seasons in response to climate warming. These changes were mostly brought about by phenotypic plasticity, i.e. flexible reactions of individual birds, rather than by microevolutionary change. Knowing the limits of plasticity is thus of paramount importance in any attempt to predict possible reactions of birds to climate warming. However, the breeding performance of the same individuals in contrasting environmental conditions, necessary to answer this question, is rarely observed. Here, we provide data on the flexibility in timing of egg-laying of individual marsh tit Poecile palustris females breeding in an extremely late (2013) and early (…

0106 biological sciencesPhenotypic plasticitygeographyMarshgeography.geographical_feature_categorybiologyRange (biology)National parkEcologyGlobal warmingClimate changebiology.organism_classification010603 evolutionary biology01 natural sciencesPoecile palustrisPasserine010605 ornithologybiology.animalAnimal Science and ZoologyEcology Evolution Behavior and SystematicsJournal of Avian Biology
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Effects of ocean acidification on embryonic respiration and development of a temperate wrasse living along a natural CO2gradient

2016

We assessed rising CO2 effects on metabolism and development of a nesting wrasse by reciprocal transplant experiments in the field. Offspring brooded under different CO2 conditions exhibited similar responses. However, embryos from High-CO2 site were resilient to a wider range of pCO2 levels than those belonging to current-day conditions.

0106 biological sciencesPhysiological performance010504 meteorology & atmospheric sciencesPhysiologyOffspringEarly developmentManagement Monitoring Policy and LawBiology01 natural sciencesTemperate fishRespirationGlobal change0105 earth and related environmental sciencesNature and Landscape ConservationLarvaPhenotypic plasticitySymphodus ocellatusHatchingEcologySymphodus ocellatus010604 marine biology & hydrobiologyEcological ModelingOcean acidificationbiology.organism_classificationThemed Issue Article: Conservation Physiology of Marine FishesWrasseEarly development; Global change; Physiological performance; Symphodus ocellatus; Temperate fish; Nature and Landscape Conservation; Management Monitoring Policy and Law; Ecological Modeling; PhysiologySymphodus ocellatuResearch ArticleConservation Physiology
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The grapevine flagellin receptor VvFLS2 differentially recognizes flagellin-derived epitopes from the endophytic growth-promoting bacterium Burkholde…

2014

International audience; The role of flagellin perception in the context of plant beneficial bacteria still remains unclear. Here, we characterized the flagellin sensing system flg22-FLAGELLIN SENSING 2 (FLS2) in grapevine, and analyzed the flagellin perception in the interaction with the endophytic plant growth-promoting rhizobacterium (PGPR) Burkholderia phytofirmans. The functionality of the grapevine FLS2 receptor, VvFLS2, was demonstrated by complementation assays in the Arabidopsis thaliana fls2 mutant, which restored flg22-induced H2O2 production and growth inhibition. Using synthetic flg22 peptides from different bacterial origins, we compared recognition specificities between VvFLS2…

0106 biological sciencesPhysiologyBurkholderia phytofirmans[SDV]Life Sciences [q-bio]flg22ArabidopsisColony Count MicrobialPlant Sciencemedicine.disease_cause01 natural sciencesEpitopesArabidopsisEndophytesArabidopsis thalianaPlant ImmunityVitisDisease ResistancePlant Proteins0303 health sciencesbiologyBurkholderia phytofirmansmicrobe-associated molecular pattern (MAMP)Xanthomonas campestrisPGPR[SDE]Environmental SciencesBotrytispattern recognition receptor (PRR)BurkholderiaMolecular Sequence DataContext (language use)Receptors Cell SurfaceMicrobiology03 medical and health sciencesSpecies Specificitymedicine[SDV.BV]Life Sciences [q-bio]/Vegetal BiologyComputer SimulationAmino Acid Sequenceflagellin sensing030304 developmental biologyPlant DiseasesfungiCell MembraneGenetic Complementation TestPathogenic bacteriabiology.organism_classificationVitis viniferaMutationbiology.proteinReactive Oxygen SpeciesFlagellinBacteria010606 plant biology & botanyFlagellinThe New phytologistReferences
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Tomato trichomes are deadly hurdles limiting the establishment of Amblyseius swirskii Athias-Henriot (Acari: Phytoseiidae)

2021

[EN] Amblyseius swirskii is a predatory mite widely used for the control of very important pest species, such as whiteflies and thrips, in organic farming and conventional agriculture. However, this species cannot establish on tomato crops, probably due to the toxic effects of plant trichomes and their exudates. We evaluated tomato plants for effects on: a) A. swirskii preference mediated by plant volatiles, b) A. swirskii development, predation capacity and reproductive performance, c) the dispersal and survival of mites as affected by stem trichomes, and d) mite survival as a function of secondary metabolites secreted by tomato trichomes. The results showed that A. swirskii mites which ga…

0106 biological sciencesPhytoseiidaeH10 Pests of plantsBiological pest control01 natural sciencesPredationAcyl sugarsPepperhost plant defenseMiteBIOQUIMICA Y BIOLOGIA MOLECULARpredatory mitesAcariacyl sugars2. Zero hungerbiologyToxicityPredatory mitesfungifood and beveragestoxicitybiology.organism_classificationTrichome010602 entomologyHorticultureHost plant defenseInsect SciencePEST analysisAgronomy and Crop Science010606 plant biology & botany
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Pistachio fruits rust caused by Tuberculina persicina (Ditmar) Sacc., anamorph of Helicobasidium purpureum (Tul.) Pat.

2020

In the study, we found rust in pistachio fruits and verified that it was caused by Tuberculina persicina, anamorph of Helicobasidium purpureum, through isolation and culture, microscopic observation, molecular identification and pathogenicity tests of Koch’s postulates. To our knowledge, this is the first report of rust fruit in pistachio caused by Tuberculina persicina.

0106 biological sciencesPistacia verafood and beveragesSettore AGR/12 - Patologia VegetalePlant ScienceHorticultureBiologyTuberculina persicinabiology.organism_classificationPathogenicity01 natural sciencesRusthumanitiesMicroscopic observation010602 entomologyHorticultureFruit rustTuberculina persicinaRhizoctonia crocorumHelicobasidium purpureumAgronomy and Crop ScienceRhizoctonia crocorumHelicobasidium purpureum010606 plant biology & botanyMolecular identification
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Sensitive measure of prevalence and parasitaemia of haemosporidia from European blackbird (Turdus merula) populations: value of PCR-RFLP and quantita…

2006

8 pages; International audience; Haemosporidian parasites are common in birds in which they act as an important selective pressure. While most studies so far have focused on the effect of their prevalence on host life-history traits, no study has measured the effect of parasitaemia. We developed molecular methods to detect, identify and quantify haemosporidia in 2 natural populations of the Blackbird Turdus merula. Three different parasite genotypes were found - 1 Haemoproteus and 2 Plasmodium. A PCR-RFLP screening revealed that only approximately 3% of blackbirds were free of parasites, compared to the 34% of uninfected birds estimated by blood smear screening. A quantitative PCR (q-PCR) a…

0106 biological sciencesPlasmodiumMESH: ParasitemiaMESH: Protozoan Infections AnimalMESH : Protozoan Infections AnimalMESH : PrevalenceMESH : Bird DiseasesMESH : ParasitemiaParasitemia01 natural sciencesPlasmodiumPolymerase Chain ReactionMESH: Bird Diseases030308 mycology & parasitologylaw.inventionPCR-RFLPlawGenotype[ SDV.EE.IEO ] Life Sciences [q-bio]/Ecology environment/SymbiosisParasite hostingMESH: AnimalsPasseriformesProtozoan Infections AnimalMESH : Polymerase Chain ReactionPolymerase chain reactionGenetics0303 health sciencesbiologyInfectious DiseasesMESH: HaemosporidaMESH : Sensitivity and SpecificityPolymorphism Restriction Fragment Length[ SDV.MP.PAR ] Life Sciences [q-bio]/Microbiology and Parasitology/Parasitologyfield populationsprevalenceZoology010603 evolutionary biologySensitivity and SpecificityparasitaemiaApicomplexa03 medical and health sciencesparasitic diseasesAnimalsTurdus merula[SDV.MP.PAR]Life Sciences [q-bio]/Microbiology and Parasitology/ParasitologyMESH: PrevalenceMESH : Polymorphism Restriction Fragment Length[SDV.GEN]Life Sciences [q-bio]/GeneticsHost (biology)Bird DiseasesMESH: PlasmodiumMESH: Polymorphism Restriction Fragment LengthMESH: PasseriformesMESH: Polymerase Chain Reactionbiology.organism_classificationHaemosporidaMESH : PasseriformesMESH: Sensitivity and SpecificityMESH : PlasmodiumHaemoproteusVector (epidemiology)Animal Science and ZoologyParasitologyHaemoproteusMESH : AnimalsMESH : Haemosporida[ SDV.GEN ] Life Sciences [q-bio]/Geneticsreal-time PCR[SDV.EE.IEO]Life Sciences [q-bio]/Ecology environment/Symbiosis
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