Search results for "Biotic interactions"

showing 10 items of 15 documents

The role of biotic interactions in a prey-predator system : the case of predation and regulation of weed seeds by carabids.

2020

For the transition towards agricultural production systems that are less dependent on herbicides, the use of weed regulation by seed-eating carabids is of great interest. Weed seed predation by carabids is variable and occurs within a complex context of many biotic interactions. This complexity partly explains our current inability to predict levels of in-field weed regulation. In this thesis, I analysed variations in the levels of predation and biological regulation of weeds and determined how they respond to two classes of biotic interactions: 1) the availability of alternative prey; and, 2) intra- and inter-specific interactions between the carabids themselves. Field measurements carried…

Proies alternatives[SDV.SA]Life Sciences [q-bio]/Agricultural sciences[SDV.SA] Life Sciences [q-bio]/Agricultural sciencesNatural predation and regulationAlternative preyPrédation et régulation naturelleInter and intraspecific interactionsInteractions biotiquesInteractions inter et intraspécifiquesBiotic interactionsCarabidaeWeed seedsGraines d’adventices
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Modeling in Microbial Ecology

2014

SPE IPM; International audience; The bases and the principles of modeling in microbial community ecology and biogeochemistry are presented and discussed. Several examples are given. Among them, the fermentation process is largely developed, thus demonstrating how the model allows determining the microbial population growth rate, the death rate, and the maintenance rate. More generally, these models have been used to increase the development of bioenergetic formulations which are presently used in biogeochemical models (Monod, Droop, DEB models). Different types of interactions (competition, predation, and virus–bacteria) are also developed. For each topic, a complete view of the models used…

Population dynamicsComputer science[SDV]Life Sciences [q-bio][SDE.MCG]Environmental Sciences/Global ChangesEcology (disciplines)media_common.quotation_subjectBiotic interactionsFermenter modelsChemostatCompetition (biology)Microbial Ecology03 medical and health sciences[SDV.EE.ECO]Life Sciences [q-bio]/Ecology environment/EcosystemsMicrobial ecology[SDV.BV]Life Sciences [q-bio]/Vegetal Biology030304 developmental biologymedia_common0303 health sciences030306 microbiologyBiogeochemistryBiofilm modelsChemostatMicrobial population biologyMetabolic models[SDE]Environmental SciencesBiochemical engineering[SDE.BE]Environmental Sciences/Biodiversity and Ecology
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Phytoplankton and its biotic interactions: Colin Reynolds’ legacy to phytoplankton ecologists

2019

The 18th workshop of the International Association for Phytoplankton Taxonomy and Ecology (IAP), the first ‘‘tropical’’ IAP ever, the third one outside Europe, and the first one in South America, was held in Natal, Brazil, from August 27 to September 3, 2017, and its main ecological theme was the Phytoplankton and its biotic interactions. The taxonomic topic of the workshop was chosen based on function instead of phylogeny, and to link to the ecological theme of the workshop, the taxonomic theme was therefore centered on mixotrophic microalgae.

0106 biological sciencesPhytoplankton Inland waters Aquatic Science Colin S. ReynoldsColin ReynoldsEcology010604 marine biology & hydrobiologyBiotic interactionsAquatic Science010603 evolutionary biology01 natural sciencesGeographyPhytoplanktonSettore BIO/03 - Botanica Ambientale E ApplicataPhytoplanktonTaxonomy (biology)
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Unraveling biotic interactions determining soil microbial community assembly and functioning

2019

National audience; Microbial communities are at the heart of all ecosystems and yet, a sound understanding of the ecological processes governing the assembly of these communities in the environment is missing. To address the role of biotic interactions in assembly and functioning of the soil microbiota, we used a top down manipulation approach based on the removal of various populations in a natural microbial community. Suspensions of the soil microbiota were subjected to various biocidal and filtration treatments before being inoculated into the same sterilized soil. We hypothesized that if biotic interactions are an important shaping force of the microbiota assembly, removal of microbial …

biotic interactions[SDV] Life Sciences [q-bio][SDE] Environmental Sciences[SDV]Life Sciences [q-bio]fungi[SDE]Environmental Sciencessoil functionning[SDV.BV]Life Sciences [q-bio]/Vegetal Biologymicrobial communities[SDV.BV] Life Sciences [q-bio]/Vegetal Biology
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Life in suspension and its impact on phytoplankton morphology: an homage to Colin S. Reynolds

2020

The amazing morphological diversity of phytoplankton has to be considered an evolutionarily driven compendium of strategies to cope with the strong variability and unpredictability of the pelagic environment. Phytoplankton collects unicellular and colonial photosynthetic organisms adapted to live in apparent suspension in turbulent water masses. Turbulence represents a key driver of phytoplankton dynamics in all aquatic ecosystems and phytoplankton morphological variability is the evolutionary response of this group of photosynthetic organisms to the temporal and spatial scales of variability of turbulence. This paper reviews the existing literature on the effects exerted by turbulence on p…

Physical constraintsWater massEcologyAquatic ecosystemEcology (disciplines)Biotic interactionsPlanktic lifePelagic zoneMorphology (biology)Phenotypic plasticityAquatic ScienceMorphological variabilitySizeAquatic environmentSettore BIO/03 - Botanica Ambientale E ApplicataPhytoplanktonEnvironmental scienceShape structureHydrobiologia
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Fungal-Mediated Multitrophic Interactions : Do Grass Endophytes in Diet Protect Voles from Predators?

2009

Plant-associated micro-organisms such as mycotoxin-producing endophytes commonly have direct negative effects on herbivores. These effects may be carried over to natural enemies of the herbivores, but this has been rarely explored. We examined how feeding on Neotyphodium endophyte infected (E+) and endophyte free (E−) meadow ryegrass (Scherodonus pratensis) affects body mass, population size and mobility of sibling voles (Microtus levis), and whether the diet mediates the vulnerability of voles to least weasel (Mustela nivalis nivalis) predation. Because least weasels are known to be olfactory hunters, we also examined whether they are able to distinguish olfactory cues of voles fed on E+ a…

Male0106 biological scienceslcsh:Medicine01 natural sciencesEndophytePopulation densityPredationlcsh:SciencePOPULATIONRISKeducation.field_of_studyMultidisciplinarybiologyArvicolinaeEcologyEcology/Plant-Environment Interactionsfood and beveragesWEASELSNeotyphodiumSmellCOMMUNITYArvicolinaeFemaleResearch ArticlePlant Biology/Plant-Biotic InteractionsPopulationeducationPoaceaeECOLOGY010603 evolutionary biologyFood PreferencesSex FactorsAnimalsEcology/Behavioral EcologyPoaceaePLANTeducationEcosystemHerbivoreModels StatisticalBody Weightlcsh:RCONSUMPTIONFeeding Behavior15. Life on landPERFORMANCEbiology.organism_classificationPredatory Behaviorlcsh:Q010606 plant biology & botany
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The emergence of Vibrio pathogens in Europe : ecology, evolution, and pathogenesis (Paris, 11-12th March 2015)

2015

Global change has caused a worldwide increase in reports of Vibrio-associated diseases with ecosystem-wide impacts on humans and marine animals. In Europe, higher prevalence of human infections followed regional climatic trends with outbreaks occurring during episodes of unusually warm weather. Similar patterns were also observed in Vibrio-associated diseases affecting marine organisms such as fish, bivalves and corals. Basic knowledge is still lacking on the ecology and evolutionary biology of these bacteria as well as on their virulence mechanisms. Current limitations in experimental systems to study infection and the lack of diagnostic tools still prevent a better understanding of Vibrio…

Cell- och molekylärbiologilcsh:QR1-502NetworkPACIFIC OYSTERS[ SDV.MP.BAC ] Life Sciences [q-bio]/Microbiology and Parasitology/Bacteriologyglobal warminghuman healthgenome plasticityHORIZONTAL GENE-TRANSFERlcsh:Microbiologyeuropean network/dk/atira/pure/sustainabledevelopmentgoals/zero_hungerOYSTERS CRASSOSTREA-GIGASApplied researchFood securitybiologyEcologyGenome plasticityMARINE PHOTOBACTERIUMHuman health risksaquacultureSECRETION SYSTEMPerspective/dk/atira/pure/sustainabledevelopmentgoals/good_health_and_well_beingVibrio-host interactionVIRULENCE FACTORSMicrobiology (medical)570Ecology (disciplines)Social issuesMicrobiology/dk/atira/pure/sustainabledevelopmentgoals/life_below_waterSDG 3 - Good Health and Well-being[SDV.BID.EVO] Life Sciences [q-bio]/Biodiversity/Populations and Evolution [q-bio.PE]14. Life underwaterSDG 14 - Life Below WaterSDG 2 - Zero HungerBacterial diseaseanimal modelGlobal warmingOutbreakBiology and Life Sciencesgenome asticityD-AMINO ACIDSAnimal model; Aquaculture; Bacterial disease; Biotic-abiotic interactions; Genome plasticity; Global warming; Human health; Network; Vibrio-host interaction; Microbiology; Microbiology (medical)interactionsbiology.organism_classificationCLINICAL SOURCES[SDV.MP.BAC]Life Sciences [q-bio]/Microbiology and Parasitology/Bacteriologybacterial diseaseBiotic-abiotic interactionsVibrioDAMSELAE SUBSP DAMSELAE13. Climate actionnetworksCell and Molecular BiologyPHOTOBACTERIUM-DAMSELAE
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Biocontrol of Phelipanche ramosa, a parasitic weed of rapeseed in France, using soil-borne fungi

2021

National audience; Phelipanche ramosa is a major holoparasitic weed, which became a major agronomic problemfor rapeseed crops in France. Weed control in rapeseed does not have a direct impact on thisparasitic weed whose half of the reproductive cycle occurs on the root system of its host. Since1990, broomrape expanded its distribution area starting from the Poitou-Charentes region.Necrosis symptoms on broomrapes from this region should be indicators of potentialpathogenic fungi. Furthermore, these pathogenic fungi should be able to infest differentbroomrape stages. The aim of my thesis is to contribute to the evaluation of an integrated controlsolution for this parasitic weed and focus on t…

agroecologybiotic interactionsparasitic plant[SDV] Life Sciences [q-bio][SDV]Life Sciences [q-bio]fungifood and beveragesbiocontrolpathogenic fungi
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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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Biocontrol of the parasitic plant species Phelipanche ramosa, using rapeseed rhizosphere fungi or phytotoxic metabolites they produce.

2019

Phelipanche ramosa (L.) Pomel, branched broomrape, is a major root-holoparasitic damaging weed with a large host range besides a strong adaptation to rapeseed. Broomrape seed germination is necessarily triggered by host root exudates. This ensures that they germinate close to a host root where they attach and establish a vascular connection to take up water and nutrients. No efficient broomrape management technique has been validated yet. Biocontrol could be an alternative but there is currently no biological control agent on the market. Indeed tripartite interactions between the host plant, the parasitic plant and a pathogenic agent of the latter are complex and poorly understood. The obje…

agroecology[SDV] Life Sciences [q-bio][SDE] Environmental Sciences[SDV]Life Sciences [q-bio][SDE]Environmental Sciencesfood and beverages[SDV.BV]Life Sciences [q-bio]/Vegetal Biology[SDV.BV] Life Sciences [q-bio]/Vegetal Biologybiocontrolspecific biotic interactionsstrigolactonemolecular signaling
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