Search results for "D-"

showing 10 items of 12236 documents

Plant-phenotypic changes induced by parasitoid ichnoviruses enhance the performance of both unparasitized and parasitized caterpillars

2021

Early Access; International audience; There is increasing awareness that interactions between plants and insects can be mediated by microbial symbionts. Nonetheless, evidence showing that symbionts associated with organisms beyond the second trophic level affect plant-insect interactions are restricted to a few cases belonging to parasitoid-associated bracoviruses. Insect parasitoids harbor a wide array of symbionts which, like bracoviruses, can be injected into their herbivorous hosts to manipulate their physiology and behavior. Yet, the function of these symbionts in plant-based trophic webs remains largely overlooked. Here we provide the first evidence of a parasitoid-associated symbiont…

0106 biological sciencesProteomics[SDV]Life Sciences [q-bio]Waspsplant-mediated species interactionsInsect01 natural sciencesParasitoidLaboratory of Entomologymedia_commonTrophic levelparasitoid-associated symbiont2. Zero hunger[SDV.EE]Life Sciences [q-bio]/Ecology environment0303 health sciencesparasitoid‐associated symbiontsbiologyfood and beveragesPE&RChost-parasitoid interaction[SDV] Life Sciences [q-bio][SDV.EE] Life Sciences [q-bio]/Ecology environmentLarvapolydnaviruseOriginal Articleplant‐mediated species interactionsBracovirusfood.ingredientmedia_common.quotation_subjectZoologyContext (language use)Ecological Interactions010603 evolutionary biologyplant-herbivore-microbe interactionsHost-Parasite Interactions03 medical and health sciencesfoodplant-herbivore-microbe interactionGeneticsAnimalsHerbivoryCaterpillarplant‐herbivore‐microbe interactionsEcology Evolution Behavior and Systematics030304 developmental biologyHerbivorefungiOriginal Articlesbiology.organism_classificationLaboratorium voor EntomologiepolydnavirusesPolydnaviridaeparasitoid-associated symbiontsIchnovirusEPShost‐parasitoid interactionplant-mediated species interaction
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Post-fire beetle succession in a biodiversity hotspot: Białowieża Primeval Forest

2020

Abstract Fires can heavily impact forest ecosystems but fire consequences for animal communities at burned and control sites are rarely investigated in natural forests. Here we present a 10-year study of post-fire beetle succession in natural ecosystem of Bialowieza Primeval Forest, Poland, being a hotspot for beetle fauna. We sampled beetles at burned and unburned (control) sites and compared local alpha and regional gamma diversity between treatments and over time. In total, 27,958 individuals belonging to 630 beetle species were recorded. Average species richness (alpha diversity) and density per sample was higher in burned forest than in control sites, and this difference was especially…

0106 biological sciencesRed-listsGamma diversityRare speciesEcological successionConservationEast PolandManagement Monitoring Policy and LawDisturbances010603 evolutionary biology01 natural sciencesEndangered speciesBeetlesForest ecologyNature and Landscape Conservationgeography.geographical_feature_categoryEcologyPrescribed burnForestryOld-growth forestFireFauna successionGeographyNatural foresAlpha diversitySpecies richness010606 plant biology & botanyForest Ecology and Management
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Ecological dependencies make remote reef fish communities most vulnerable to coral loss

2021

Ecosystems face both local hazards, such as over-exploitation, and global hazards, such as climate change. Since the impact of local hazards attenuates with distance from humans, local extinction risk should decrease with remoteness, making faraway areas safe havens for biodiversity. However, isolation and reduced anthropogenic disturbance may increase ecological specialization in remote communities, and hence their vulnerability to secondary effects of diversity loss propagating through networks of interacting species. We show this to be true for reef fish communities across the globe. An increase in fish-coral dependency with the distance of coral reefs from human settlements, paired with…

0106 biological sciencesRichnessconservation biologyekologiset verkostotGeneral Physics and Astronomy01 natural sciencesConservation of Natural ResourceAnthropogenic EffectmeriekologiaPatterns0303 health sciencesDiversityMultidisciplinaryConservation biologyCoral ReefsAnthropogenic EffectsQClimate-change ecologyFishesBiodiversityAnthozoaHabitat1181 Ecology evolutionary biologyCoral ReefHumanclimate-change ecologyConservation of Natural Resources[SDE.MCG]Environmental Sciences/Global ChangesScienceClimate ChangeBiotic interactions010603 evolutionary biologyGeneral Biochemistry Genetics and Molecular BiologyArticlekoralliriutat03 medical and health sciencesAnimals; Anthozoa; Anthropogenic Effects; Biodiversity; Climate Change; Conservation of Natural Resources; Coral Bleaching; Fishes; Humans; Spatial Analysis; Coral ReefsFood-webAnimalsHumansecological networks14. Life underwater030304 developmental biologySpatial AnalysisCoral BleachingAnimalkalakannatGeneral ChemistryDisturbanceSpatial Analysiilmastonmuutokset15. Life on landbiodiversiteetti13. Climate actionEcological networks[SDE.BE]Environmental Sciences/Biodiversity and EcologyFisheNature Communications
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Temporal fluctuations in seawater pCO2 may be as important as mean differences when determining physiological sensitivity in natural systems

2015

AbstractMost studies assessing the impacts of ocean acidification (OA) on benthic marine invertebrates have used stable mean pH/pCO2 levels to highlight variation in the physiological sensitivities in a range of taxa. However, many marine environments experience natural fluctuations in carbonate chemistry, and to date little attempt has been made to understand the effect of naturally fluctuating seawater pCO2 (pCO2sw) on the physiological capacity of organisms to maintain acid–base homeostasis. Here, for the first time, we exposed two species of sea urchin with different acid–base tolerances, Paracentrotus lividus and Arbacia lixula, to naturally fluctuating pCO2sw conditions at shallow wat…

0106 biological sciencesSea urchin010504 meteorology & atmospheric sciencesAcid-base balanceEcologyChemistry010604 marine biology & hydrobiologyOcean acidificationVolcanic ventOcean acidificationAquatic ScienceAtmospheric sciencesOceanography01 natural sciencesEcology Evolution Behavior and SystematicpCO2Natural (archaeology)OceanographyAquatic scienceSeawaterNatural variabilitySensitivity (control systems)Natural variabilityEcology Evolution Behavior and Systematics0105 earth and related environmental sciences
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Does an ant-dispersed plant, Viola reichenbachiana, suffer from reduced seed dispersal under inundation disturbances?

2008

Many plant species use ants as seed dispersers. This dispersal mode is considered to be susceptible to disturbances, but the effect of natural, small-scale disturbances is still unknown. We investigated how small-scale disturbances due to inundation affect seed dispersal in Viola reichenbachiana, a dominant myrmecochorous herb in riparian forests. Inundation disturbances were high in depressions and low on hillocks of the forest floor. We found that V reichenbachiana was similarly abundant at highly and less disturbed sites, contrary to other, non ant-dispersed species. We also found that the motivation of ants to disperse seeds was higher at highly disturbed sites. Nevertheless, the number…

0106 biological sciencesSeed dispersalconsequencesmutualismMyrmecochoryRiparian forestBiology010603 evolutionary biology01 natural sciencesForest herbsMyrmecochoryBotanyRiparian forestBehaviourWageningen Environmental Research[SDU.ENVI]Sciences of the Universe [physics]/Continental interfaces environmentEcology Evolution Behavior and SystematicsDemographyForest floorMutualism (biology)geographygeography.geographical_feature_categorymyrmecochoryEcologySmall-scale disturbance15. Life on landbiology.organism_classificationCentrum EcosystemenformicidaeSeed dispersal syndromeCentre for Ecosystem StudiesstrategiesAnimal–plant mutualismSeed-dispersal motivationViola reichenbachianaBiological dispersalhymenopteragrassland[SDE.BE]Environmental Sciences/Biodiversity and Ecology010606 plant biology & botany
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Distribution of sea urchins living near shallow water CO2 vents is dependent upon species acid-base and ion-regulatory abilities.

2013

To reduce the negative effect of climate change on Biodiversity, the use of geological CO2 sequestration has been proposed; however leakage from underwater storages may represent a risk to marine life. As extracellular homeostasis is important in determining species' ability to cope with elevated CO2, we investigated the acid-base and ion regulatory responses, as well as the density, of sea urchins living around CO2 vents at Vulcano, Italy. We conducted in situ transplantation and field-based laboratory exposures to different pCO2/pH regimes. Our results confirm that sea urchins have some ability to regulate their extracellular fluid under elevated pCO2. Furthermore, we show that even in cl…

0106 biological sciencesSettore BIO/07 - EcologiaGeological Phenomena010504 meteorology & atmospheric sciencesClimate ChangeSpecies distributionBiodiversityMarine lifeAquatic ScienceOceanography01 natural sciencesParacentrotus lividushowever leakage from underwater storages may represent a risk to marine life. As extracellular homeostasis is important in determining species' ability to cope with elevated CO2 we investigated the acid-base and ion regulatory responses as well as the density of sea urchins living around CO2 vents at Vulcano Italy. We conducted in situ transplantation and field-based laboratory exposures to different pCO2/pH regimes. Our results confirm that sea urchins have some ability to regulate their extracellular fluid under elevated pCO2. Furthermore we show that even in closely-related taxa divergent physiological capabilities underlie differences in taxa distribution around the CO2 vent. It is concluded that species distribution under the sort of elevated CO2 conditions occurring with leakages from geological storages and future ocean acidification scenarios may partly be determined by quite subtle physiological differentiation.Mediterranean seaBenthosAnimalsSeawater14. Life underwaterEcosystem0105 earth and related environmental sciencesbiologyEcology010604 marine biology & hydrobiologyTo reduce the negative effect of climate change on Biodiversity the use of geological CO2 sequestration has been proposedOcean acidificationCarbon DioxideHydrogen-Ion Concentrationbiology.organism_classificationAdaptation PhysiologicalPollutionTransplantationOceanographyItaly13. Climate actionSea UrchinsWater Pollutants Chemical
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Climate change exacerbates interspecific interactions in sympatric coastal fishes

2012

Summary 1. Biological responses to warming are presently based on the assumption that species will remain within their bioclimatic envelope as environmental conditions change. As a result, changes in the relative abundance of several marine species have been documented over the last decades. This suggests that warming may drive novel interspecific interactions to occur (i.e. invasive vs. native species) or may intensify the strength of pre-existing ones (i.e. warm vs. cold adapted). For mobile species, habitat relocation is a viable solution to track tolerable conditions and reduce competitive costs, resulting in ‘winner’ species dominating the best quality habitat at the expense of ‘loser’…

0106 biological sciencesSettore BIO/07 - Ecologiamedia_common.quotation_subjectClimate Changecold-adaptedSpecies distributionThalassoma pavoIntroduced speciesglobal warming010603 evolutionary biology01 natural sciencesrelocationCompetition (biology)behaviour cold-adapted competition labrids Mediterranean Sea relocation global warmingSpecies SpecificityMediterranean SeaAnimals14. Life underwaterEcology Evolution Behavior and SystematicsEcosystemmedia_commonDemographybiologyEcologyEcological release010604 marine biology & hydrobiologyGlobal warmingFishesInterspecific competition15. Life on landPlantsbiology.organism_classificationbehaviourHabitat13. Climate actionlabridsAnimal Science and Zoologycompetition
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The aquaculture supply chain in the time of covid-19 pandemic: Vulnerability, resilience, solutions and priorities at the global scale

2022

13 pages, 3 tables, 5 figures

0106 biological sciencesSupply chainEconomic distressGeography Planning and DevelopmentVulnerabilityCOVID-19 effectsDistribution (economics)Rapid assessmentManagement Monitoring Policy and Law01 natural sciencesArticleIntegrated multi-trophic aquaculture03 medical and health sciencesStakeholder perceptionsMitigation measuresZoología14. Life underwaterResilience (network)Baseline (configuration management)Perishable food supply chainEnvironmental planning030304 developmental biology2. Zero hunger0303 health sciencesFood securitybusiness.industry010604 marine biology & hydrobiologyCOVID-19 effects Disruption Economic distress Integrated multi-trophic aquaculture Mitigation measures Perishable food supply chain Rapid assessment Stakeholder perceptions13. Climate actionAgricultureScale (social sciences)DisruptionBusiness
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Do plant-based biogeographical regions shape aphyllophoroid fungal communities in Europe?

2018

Aim: Aphyllophoroid fungi are associated with plants, either using plants as a resource (as parasites or decomposers) or as symbionts (as mycorrhizal partners). In spite of their strong association with plants, it is unknown how much plant distributions determine their biogeographical patterns compared with environmental factors such as climate and human land use. In this study, our aims are to (1) describe the spatial diversity patterns of aphyllophoroid fungi in Europe and (2) identify the factors shaping these patterns. Location: Europe, as well as the adjacent Subarctic to Arctic islands (Greenland, Faroe Islands, Iceland, Svalbard), Palestine and the south-east coast of the Caspian Sea…

0106 biological sciencesVascular plantBeta diversitynestednessCONSERVATIONBeta diversityBiodiversitycommunity dissimilarityspecies turnover010603 evolutionary biology01 natural sciencessouthmacrofungispecies richness1183 Plant biology microbiology virologyEcology Evolution Behavior and Systematics2. Zero hungerEcologybiologyEcologyWOOD-INHABITING FUNGISettore BIO/02 - Botanica SistematicaCOMPONENTSSpecies diversity15. Life on landnorthbiology.organism_classificationEVOLUTIONARY HISTORIESSubarctic climateCLIMATEGeographyTEMPERATE FORESTSPATTERNSNestednessta1181BIODIVERSITYOrdinationSpecies richnessBRYOPHYTES010606 plant biology & botany
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GenExP, un logiciel simulateur de paysages agricoles pour l'étude de la diffusion de transgènes

2007

 ; The software GENEXP allows to simulate 2-dimensional agricultural landscapes by using a traditional algorithmic geometry. Based on real or realistic field-patterns, GENEXP provides multiannual maps of agricultural landscapes, which are used by softwares simulating the dispersal of GM pollen grains and seeds at various scales.; GENEXP est un simulateur de paysages agricoles qui engendre des découpages parcellaires en utilisant une géométrie algorithmique classique. GENEXP fournit, sur la base de parcellaires réels ou réalistes, des cartes pluriannuelles de paysages agricoles utilisables par des logiciels qui simulent la dispersion des pollens et des graines d'OGM à différentes échelles.

0106 biological sciences[INFO.INFO-AI] Computer Science [cs]/Artificial Intelligence [cs.AI]010603 evolutionary biology01 natural sciencesVORONOÏ TESSELATION[ SDV.EE ] Life Sciences [q-bio]/Ecology environmentAGRICULTURAL LANDSCAPE[INFO.INFO-AI]Computer Science [cs]/Artificial Intelligence [cs.AI]diagrammes de Voronoi[ INFO.INFO-AI ] Computer Science [cs]/Artificial Intelligence [cs.AI]DIAGRAMMES DE VORONOÏpaysage agricole[SDV.EE]Life Sciences [q-bio]/Ecology environmentFIELD PATTERN[INFO.INFO-DB]Computer Science [cs]/Databases [cs.DB]voronoi tesselationPROCESSUS PONCTUEL MARKOVIEN04 agricultural and veterinary sciencesGeneral Medicineflux de genes15. Life on landsimulationPARCELLAIRE[SDV.EE] Life Sciences [q-bio]/Ecology environmentagricultural landscape field-pattern germs distribution markov point process gene flowpaysage agricole parcellaire simulation diagrammes de Voronoi distribution de germes processus ponctuel markovien flux de genes voronoi tesselation INFORMATIQUEGERMS DISTRIBUTIONINFORMATIQUE040103 agronomy & agricultureMARKOV POINT PROCESS0401 agriculture forestry and fisheriesfield-patterngene flowDISTRIBUTION DE GERMES
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