Search results for " Organism"

showing 10 items of 541 documents

Quorum Sensing and Density-Dependent Dispersal in an Aquatic Model System

2012

International audience; Many organisms use cues to decide whether to disperse or not, especially those related to the composition of their environment. Dispersal hence sometimes depends on population density, which can be important for the dynamics and evolution of subdivided populations. But very little is known about the factors that organisms use to inform their dispersal decision. We investigated the cues underlying density-dependent dispersal in interconnected microcosms of the freshwater protozoan Paramecium caudatum. In two experiments, we manipulated (i) the number of cells per microcosm and (ii) the origin of their culture medium (supernatant from high-or low-density populations). …

0106 biological sciencesDYNAMICSAquatic OrganismsParameciumPopulation DynamicsEMIGRATIONlcsh:MedicineMarine and Aquatic Sciences01 natural sciencesPopulation densityBehavioral EcologySpatial and Landscape Ecologylcsh:ScienceOrganismFreshwater Ecology0303 health sciencesMultidisciplinarybiologyEcologyAnimal BehaviorEcologySwarm behaviourQuorum Sensing[SDE]Environmental SciencesMicrocosmResearch ArticleFreshwater EnvironmentsSignal TransductionMetapopulation DynamicsSTRATEGIESMovementMarine Biology010603 evolutionary biologyModels Biological03 medical and health sciencesRATESBiologySOCIAL INFORMATION;EVOLUTION;EMIGRATION;STRATEGIES;DYNAMICS;LIZARD;RATES030304 developmental biologyPopulation Biologylcsh:RSOCIAL INFORMATIONLIZARDbiology.organism_classificationEVOLUTIONQuorum sensingEarth SciencesBiological dispersallcsh:QParamecium caudatumAdaptation[SDE.BE]Environmental Sciences/Biodiversity and EcologyZoologyEcological Environments
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Aquatic and Semiaquatic Heteroptera (Nepomorpha) from the Strei River Basin

2018

Abstract During a field campaign in the Strei River basin in August 2014, seven suitable habitats for aquatic and semi-aquatic true bugs were identified from the confluence of the Strei River with the Bărbat River down to the confluence with the Mureș River. Forty-eight individuals belonging to 15 species and nine families of aquatic and semi-aquatic true bugs were sampled. We mention two species considered rare in Romanian fauna: Hebrus montanus and Microvelia pygmaea. The statistic-mathematical analysis showed the similarity of the true bugs’ communities from habitats with similar conditions, as well as the relation of each species with particular habitat conditions, emphasizing the fact …

0106 biological sciencesEcology (disciplines)Drainage basin010501 environmental sciences01 natural sciencesAquatic organismsAquatic planthabitatsmedicineNepomorpharomaniaQH540-549.50105 earth and related environmental sciencesgeography.geographical_feature_categorybiologysemiaquatic true bugsEcologyEcology010604 marine biology & hydrobiologyHeteropterabiology.organism_classificationGeographyHabitatmedicine.symptomVegetation (pathology)aquatic true bugsTransylvanian Review of Systematical and Ecological Research
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Mediterranean identities - environment, society, culture

2017

The Mediterranean Sea, one of the most complex marine ecosystems, is inhabited by a rich and diverse biota which is disproportionate to its dimensions. It is cur‐ rently affected by different pressures, mainly driven by human activities such as cli‐ mate change and bioinvasions. This Sea, also due to its geographic position (wedged between the temperate climate of central Europe and the arid climate of northern Africa), seems to be one of the regions most susceptible to global climate change. The increased rates of introduction and spread of marine alien species may represent a supplementary stress factor to Mediterranean marine native biota already challenged by climatic abnormalities. The…

0106 biological sciencesEcologySettore BIO/02 - Botanica Sistematica010604 marine biology & hydrobiologyIntroduced organisms -- Control -- Mediterranean Sea010603 evolutionary biology01 natural sciencesclimate change invasive alien species (IAS) management measures marine biodiversity Mediterranean SeaMarine biodiversityMediterranean seaOceanographyIntroduced organisms -- Mediterranean SeaAquatic biodiversity researchSettore BIO/03 - Botanica Ambientale E ApplicataEnvironmental scienceClimatic changes -- Mediterranean RegionMarine biodiversity -- Mediterranean RegionGeneralLiterature_REFERENCE(e.g.dictionariesencyclopediasglossaries)
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Proposing a Technical Solution for Restoring Longitudinal Connectivity in the Brădeni/Retiş Accumulation Area on Hârtibaciu River

2016

Abstract The fish fauna of the Hârtibaciu River has experienced a disrupted connectivity due to the hydrotechnical works and the Brădeni/Retiş Dam located across the Hârtibaciu watercourse being one of this significant obstacles. The newly proposed constructed wetlands can improve the habitat quality for the fish species of conservative interest sampled in the Brădeni/Retiş Dam proximity Rhodeus amarus, and can increase the individuals’ number of this population. Also can benefit the local populations of Phoxinus phoxinus and Gobio obtusirostris. Using gravitational force and also the underground layout, a proposed technical solution gives maximum safety regarding the water supply for the n…

0106 biological sciencesEcologybusiness.industryEcology010604 marine biology & hydrobiologyEcology (disciplines)Water supplyAquatic animal010603 evolutionary biology01 natural sciencesAquatic organismsfish conservationhârtibaciu riverGeographyNature Conservationanthropogenic wetlandromaniabusinessRestoration ecologyQH540-549.5Transylvanian Review of Systematical and Ecological Research
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Hyperparasitoids exploit herbivore-induced plant volatiles during host location to assess host quality and non-host identity

2019

Although consumers often rely on chemical information to optimize their foraging strategies, it is poorly understood how top carnivores above the third trophic level find resources in heterogeneous environments. Hyperparasitoids are a common group of organisms in the fourth trophic level that lay their eggs in or on the body of other parasitoid hosts. Such top carnivores use herbivore-induced plant volatiles (HIPVs) to find caterpillars containing parasitoid host larvae. Hyperparasitoids forage in complex environments where hosts of different quality may be present alongside non-host parasitoid species, each of which can develop in multiple herbivore species. Because both the identity of th…

0106 biological sciencesFood ChainSDG 16 - PeaceForagingWaspsContext (language use)010603 evolutionary biology01 natural sciencesMultitrophic interactionParasitoidPlant-Microbe-Animal Interactions–Original ResearchHost-Parasite InteractionsHyperparasitoid foraging behaviorFourth trophic level organismsMultitrophic interactionsFourth trophic level organismButterflieAnimalsNon-host parasitoid specieHerbivoryLaboratory of EntomologyEcology Evolution Behavior and SystematicsTrophic levelPieris brassicaeHerbivorebiologyHost (biology)EcologyAnimal010604 marine biology & hydrobiologySDG 16 - Peace Justice and Strong InstitutionsnationalHost-Parasite Interactionbiology.organism_classificationCotesia glomerataPE&RCLaboratorium voor Entomologie/dk/atira/pure/sustainabledevelopmentgoals/peace_justice_and_strong_institutionsJustice and Strong InstitutionsPlant-based food webLarvaEPSButterfliesNon-host parasitoid speciesOecologia
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Molecular and morphological data suggest weak phylogeographic structure in the fairy shrimp Streptocephalus torvicornis (Branchiopoda, Anostraca)

2017

Inland aquatic organisms almost ubiquitously display a pattern of marked provincialism characterized by substantial population differentiation and genealogical discontinuities. This is the result of strong priority effects and local adaptation following dispersal and colonization of new habitats. We present a case that defies this biogeographic paradigm. We have investigated the phylogeography of the fairy shrimp Streptocephalus torvicornis across its circum-Mediterranean and Eurasian distribution. Based on three independent datasets, namely sequence variation at 12S and 16S rRNA, cyst morphology and male second antenna characters, we discern a pattern of extensive genetic and morphological…

0106 biological sciencesInland watersPHYLOGENYOutbreeding depressionPopulationSettore BIO/05 - ZoologiaZoologyBranchiopodaGENE-SEQUENCESAquatic SciencePopulation structureGenetic differentiation010603 evolutionary biology01 natural sciencesCOLONIZATIONMale antennaDISPERSALHISTORICAL BIOGEOGRAPHYWAGAeducationInland waterLocal adaptationGenetic diversityeducation.field_of_studybiologyEcology010604 marine biology & hydrobiologyCyst morphologyAQUATIC ORGANISMSbiology.organism_classificationMitochondrial DNAEVOLUTIONMODELPhylogeographyCRUSTACEAAnostracaBiological dispersal
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Exploiting chemical ecology to manage hyperparasitoids in biological control of arthropod pests

2020

Abstract Insect hyperparasitoids are fourth trophic level organisms that commonly occur in terrestrial food webs, yet they are relatively understudied. These top‐carnivores can disrupt biological pest control by suppressing the populations of their parasitoid hosts, leading to pest outbreaks, especially in confined environments such as greenhouses where augmentative biological control is used. There is no effective eco‐friendly strategy that can be used to control hyperparasitoids. Recent advances in the chemical ecology of hyperparasitoid foraging behavior have opened opportunities for manipulating these top‐carnivores in such a way that biological pest control becomes more efficient. We p…

0106 biological sciencesIntegrated pest managementBiological pest controlReview01 natural sciencespush-pullhyperparasitoid foraginginfochemical-based strategieLaboratory of Entomology/dk/atira/pure/sustainabledevelopmentgoals/industry_innovation_and_infrastructureinfochemical‐based strategiesTrophic levelEcologyPlan_S-Compliant-TAParasietenEnvironmental resource managementherbivore‐induced plant volatilespush‐pullGeneral MedicineChemical ecologyfourth trophic level organismherbivore-induced plant volatileinternationalSDG 9 - IndustryFood ChainForagingDuurzame gewasbeschermingEarly detectionmultitrophic interactionsBiologyHost-Parasite InteractionsGeleedpotigenAnimalsmultitrophic interactionfourth trophic level organismsInnovationPest Control BiologicalArthropodsbusiness.industryherbivore-induced plant volatilesLaboratorium voor Entomologiebiology.organism_classification010602 entomologyInsect Scienceand InfrastructureSDG 9 - Industry Innovation and InfrastructurePEST analysisArthropodEPSinfochemical-based strategiesbusinessAgronomy and Crop Science010606 plant biology & botanyPest Management Science
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The Ectocarpus genome and the independent evolution of multicellularity in brown algae

2010

Brown algae (Phaeophyceae) are complex photosynthetic organisms with a very different evolutionary history to green plants, to which they are only distantly related. These seaweeds are the dominant species in rocky coastal ecosystems and they exhibit many interesting adaptations to these, often harsh, environments. Brown algae are also one of only a small number of eukaryotic lineages that have evolved complex multicellularity (Fig. 1). We report the 214 million base pair (Mbp) genome sequence of the filamentous seaweed Ectocarpus siliculosus (Dillwyn) Lyngbye, a model organism for brown algae, closely related to the kelps (Fig. 1). Genome features such as the presence of an extended set of…

0106 biological sciencesLineage (evolution)Molecular Sequence DataPhaeophyta01 natural sciencesGenomeEvolution Molecular03 medical and health sciencesAlgae[SDV.BDD] Life Sciences [q-bio]/Development BiologyBotanyBIOLOGIE CELLULAIREAnimals14. Life underwater[SDV.BDD]Life Sciences [q-bio]/Development Biologyflore marinePhylogenyOrganismComputingMilieux_MISCELLANEOUSphéophycées030304 developmental biology0303 health sciencesGenomeMultidisciplinarybiologyEctocarpus siliculosusAlgal ProteinsEukaryotaPigments BiologicalEctocarpus15. Life on landbiology.organism_classificationBiological EvolutionBrown algaeMulticellular organismEvolutionary biologyalgues brunesBiologieSignal Transduction010606 plant biology & botany
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Biochemical characterization of cassiopea andromeda (Forsskål, 1775), another red sea jellyfish in the western mediterranean sea

2021

Increasing frequency of native jellyfish proliferations and massive appearance of non-indigenous jellyfish species recently concur to impact Mediterranean coastal ecosystems and human activities at sea. Nonetheless, jellyfish biomass may represent an exploitable novel resource to coastal communities, with reference to its potential use in the pharmaceutical, nutritional, and nutraceutical Blue Growth sectors. The zooxanthellate jellyfish Cassiopea andromeda, Forsskål, 1775 (Cnidaria, Rhizostomeae) entered the Levant Sea through the Suez Canal and spread towards the Western Mediterranean to reach Malta, Tunisia, and recently also the Italian coasts. Here we report on the biochemical characte…

0106 biological sciencesMediterranean climateCnidariacollagenAquatic OrganismsJellyfishScyphozoaPharmaceutical Scienceantioxidant activityalien species01 natural sciencesBioactive marine compoundMediterranean seaDrug DiscoverySuez canalAlien species; Antioxidant activity; Antioxidants; Bioactive marine compounds; Collagen; Fatty acids; Jellyfish; Nutraceuticals; Zooxanthellate jellyfish; Animals; Antioxidants; Aquatic Organisms; Ecosystem; Mediterranean Sea; Dietary Supplements; ScyphozoaBiology (General)Pharmacology Toxicology and Pharmaceutics (miscellaneous)nutraceuticals0303 health sciencesAquatic Organismjellyfishzooxanthellate jellyfishAlien species Antioxidant activity Antioxidants Bioactive marine compounds Collagen Fatty acids Jellyfish Nutraceuticals Zooxanthellate jellyfish Animals Antioxidants Aquatic Organisms Ecosystem Mediterranean Sea Dietary Supplements ScyphozoaantioxidantsZooxanthellaeCollagenNutraceuticalAntioxidantCassiopea andromedaQH301-705.5Biologyfatty acids03 medical and health sciencesNutraceuticalAntioxidant activitybiology.animalBotanyMediterranean SeaAnimalsZooxanthellate jellyfish14. Life underwaterAlien specieEcosystem030304 developmental biologyDietary Supplementbioactive marine compoundsAnimal010604 marine biology & hydrobiologybiology.organism_classificationFatty acidDietary SupplementsJellyfish
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First confirmed record of the Lessepsian migrant Pteragogus pelycus Randall, 1981 (Teleostei: Labridae) for the North African coasts

2012

4 pages, 2 figures

0106 biological sciencesMediterranean climateSettore BIO/07 - EcologiaLessepsian migrationLessepsian migrationMediterranean010603 evolutionary biology01 natural sciencesAquatic organismsLabridaePteragogus pelycusSingle specimen14. Life underwaterPteragogus pelycusEcology Evolution Behavior and SystematicsTeleosteiEcologybiologyEcology010604 marine biology & hydrobiologyAquatic animal15. Life on landbiology.organism_classificationFisheryGeography13. Climate actionPteragogus pelycus Labridae Lessepsian migration Egypt MediterraneanNorth africanEgyptBioInvasions Records
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