0000000000283248

AUTHOR

Chantal De Ridder

showing 10 related works from this author

Large-scale distribution analysis of Antarctic echinoids using ecological niche modelling.

2012

Understanding the factors that determine the distribution of taxa at various spatial scales is a crucial challenge in the context of global climate change. This holds particularly true for polar marine biota that are composed of both highly adapted and vulnerable faunas. We analysed the distribution of 2 Antarctic echinoid species, Sterechinus antarcticus and S. neumayeri, at the scale of the entire Southern Ocean using 2 niche modelling procedures. The performance of distribution models was tested with regard to the known ecology of the species. The respective contributions of environmental parameters are discussed along with the putative roles played by biotic interactions and biogeograph…

0106 biological sciencesContext (language use)Aquatic ScienceHabitat suitability map010603 evolutionary biology01 natural sciences[SDV.EE.ECO]Life Sciences [q-bio]/Ecology environment/EcosystemsGARPSea ice14. Life underwaterSouthern OceanEcology Evolution Behavior and SystematicsPolar frontEcological nichegeography[ SDE.BE ] Environmental Sciences/Biodiversity and Ecologygeography.geographical_feature_categoryBiotic componentEcologybiologyEcology010604 marine biology & hydrobiologyEchinoidea15. Life on landbiology.organism_classificationSterechinus[ SDV.EE.ECO ] Life Sciences [q-bio]/Ecology environment/EcosystemsSterechinusOceanographyArctic13. Climate actionEchinoidea [Sea urchins]Biological dispersal[SDE.BE]Environmental Sciences/Biodiversity and EcologyMaxent
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Ectosymbiosis is a critical factor in the local benthic biodiversity of the Antarctic deep sea.

2008

10 pages; International audience; In deep-sea benthic environments, competition for hard substrates is a critical factor in the distribution and diversity of organisms. In this context, the occurrence of biotic substrates in addition to mineral substrates may change the characteristics of sessile fauna. We tested this hypothesis at different localities of the Weddell Sea (Antarctica) by studying the diversity of ectosymbionts living on the spines of cidaroids (echinoids). The presence of cidaroids promoted a higher total specific richness and increased sessile species abundance, but did not change the diversity. Analyses of species distribution suggested that the cidaroids are a favourable …

0106 biological sciencesFaunaBiodiversityAquatic ScienceBiologyGeneralist and specialist speciesCidaroidea010603 evolutionary biology01 natural sciences[ SDV.EE.IEO ] Life Sciences [q-bio]/Ecology environment/Symbiosis14. Life underwaterSymbiosisRelative species abundanceEcology Evolution Behavior and SystematicsSpecies diversity[ SDE.BE ] Environmental Sciences/Biodiversity and EcologyWeddell SeaEcologyEcology010604 marine biology & hydrobiologyfungiSpecies diversityCidaroidsSpecies abundance15. Life on landHabitatBenthic zoneSpecies richness[SDE.BE]Environmental Sciences/Biodiversity and EcologyNull models[SDV.EE.IEO]Life Sciences [q-bio]/Ecology environment/Symbiosis
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Highly contrasted population genetic structures in a host-parasite pair in the Caribbean Sea.

2017

Evolution and population genetic structure of marine species across the Caribbean Sea are shaped by two complex factors: the geological history and the present pattern of marine currents. Characterizing and comparing the genetic structures of codistributed species, such as host–parasite associations, allow discriminating the relative importance of environmental factors and life history traits that influenced gene flow and demographic events. Using microsatellite and Cytochrome Oxidase I markers, we investigated if a host–parasite pair (the heart urchin Meoma ventricosa and its parasitic pea crab Dissodactylus primitivus) exhibits comparable population genetic structures in the Caribbean Sea…

0106 biological sciences0301 basic medicinePopulationPopulation genetics010603 evolutionary biology01 natural sciencesSanté publiquemicrosatellitesLife history theoryGene flowsea urchinMeoma ventricosaEnvironnement et pollution03 medical and health sciences[ SDV.EE.IEO ] Life Sciences [q-bio]/Ecology environment/Symbiosiscrab14. Life underwatereducationEcology Evolution Behavior and SystematicsOriginal ResearchNature and Landscape Conservationeducation.field_of_studyGenetic diversity[ SDE.BE ] Environmental Sciences/Biodiversity and Ecology[SDV.GEN.GPO]Life Sciences [q-bio]/Genetics/Populations and Evolution [q-bio.PE]EcologybiologyEcologieEcologyHost (biology)population geneticsbiology.organism_classification[ SDV.GEN.GPO ] Life Sciences [q-bio]/Genetics/Populations and Evolution [q-bio.PE]030104 developmental biologyEvolutionary biologyGenetic structureCO1[SDE.BE]Environmental Sciences/Biodiversity and Ecology[SDV.EE.IEO]Life Sciences [q-bio]/Ecology environment/Symbiosis
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Possible effects of global environmental changes on Antarctic benthos: a synthesis across five major taxa

2012

Because of the unique conditions that exist around the Antarctic continent, Southern Ocean (SO) ecosystems are very susceptible to the growing impact of global climate change and other anthropogenic influences. Consequently, there is an urgent need to understand how SO marine life will cope with expected future changes in the environment. Studies of Antarctic organisms have shown that individual species and higher taxa display different degrees of sensitivity to environmental shifts, making it difficult to predict overall community or ecosystem responses. This emphasizes the need for an improved understanding of the Antarctic benthic ecosystem response to global climate change using a multi…

0106 biological sciencesEcologyEcology010604 marine biology & hydrobiologyGlobal warmingClimate changeMarine life15. Life on landBiology010603 evolutionary biology01 natural sciencesBenthos13. Climate actionBenthic zoneDominance (ecology)Ecosystem14. Life underwaterEcology Evolution Behavior and SystematicsNature and Landscape ConservationTrophic levelEcology and Evolution
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Biodiversity of Antarctic echinoids: a comprehensive and interactive database

2005

Eighty-one echinoid species are present south of the Antarctic Convergence, and they represent an important component of the benthic fauna. “Antarctic echinoids” is an interactive database synthesising the results of more than 100 years of Antarctic expeditions, and comprising information about all echinoid species. It includes illustrated keys for determination of the species, and information about their morphology and ecology (text, illustrations and glossary) and their distribution (maps and histograms of bathymetrical distribution); the sources of the information (bibliography, collections and expeditions) are also provided. All these data (taxonomic, morphologic, geographic, bathymetri…

lcsh:SH1-691DatabaseGlossaryFaunaEcology (disciplines)BiodiversitySH1-691antarcticAquatic ScienceBiologyOceanographycomputer.software_genrebase de datoslcsh:Aquaculture. Fisheries. Anglingequinoideosbiodiversidadantárticosea urchinsAquaculture. Fisheries. AnglingEchinoidea [Sea urchins]AntarcticcomputerdatabasebiodiversityScientia Marina
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Could the acid-base status of Antarctic sea urchins indicate a better-than-expected resilience to near-future ocean acidification?

2015

13 pages; International audience; Increasing atmospheric carbon dioxide concentration alters the chemistry of the oceans towards more acidic conditions. Polar oceans are particularly affected due to their low temperature, low carbonate content and mixing patterns, for instance upwellings. Calcifying organisms are expected to be highly impacted by the decrease in the oceans' pH and carbonate ions concentration. In particular, sea urchins, members of the phylum Echinodermata, are hypothesized to be at risk due to their high-magnesium calcite skeleton. However, tolerance to ocean acidification in metazoans is first linked to acid–base regulation capacities of the extracellular fluids. No infor…

acid-base regulationClimate Change[SDE.MCG]Environmental Sciences/Global ChangesAntarctic RegionsAmphipneustes lorioliocean acidificationAcid–base homeostasisbiology.animalsea urchinsAnimalsEnvironmental ChemistrySterechinus neumayeriSeawater14. Life underwaterSouthern OceanSea urchinGeneral Environmental ScienceAcid-Base EquilibriumGlobal and Planetary ChangeCarbon dioxide in Earth's atmosphere[ SDE.BE ] Environmental Sciences/Biodiversity and EcologyEchinodermata [Echinoderms]EcologybiologyEcologyechinodermsOcean acidificationGlobal changebiology.organism_classificationacid–base regulation[ SDE.MCG ] Environmental Sciences/Global ChangesOceanography13. Climate actionAntarcticaSeawater[SDE.BE]Environmental Sciences/Biodiversity and Ecology
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Genetic evidence confirms polygamous mating system in a crustacean parasite with multiple hosts.

2014

Mating systems are diverse in animals, notably in crustaceans, but can be inferred from a limited set of parameters. Baeza and Thiel (2007) proposed a model predicting mating systems of symbiotic crustaceans with three host characteristics and the risk of predation. These authors proposed five mating systems, ranging from monogamy to polygynandry (where multiple mating occurs for both genders). Using microsatellite loci, we tested the putatively mating system of the ectoparasite crab Dissodactylus primitivus. We determined the mating frequencies of males and females, parentage assignment (COLONY & GERUD software) as well as the contents of female spermathecae. Our results are globally consi…

MaleGénétique moléculaire[ SDV.MP.PAR ] Life Sciences [q-bio]/Microbiology and Parasitology/Parasitologylcsh:MedicineZoologyMarine BiologyEvolution des espècesBiologyPolygynandryBehavioral EcologySexual Behavior AnimalSpermathecaCrustaceaGenetics[ SDV.EE.IEO ] Life Sciences [q-bio]/Ecology environment/SymbiosisAnimals[SDV.MP.PAR]Life Sciences [q-bio]/Microbiology and Parasitology/ParasitologyMatinglcsh:ScienceSymbiosisBiologySperm competitionreproductive and urinary physiologyGeneticsEvolutionary Biology[ SDE.BE ] Environmental Sciences/Biodiversity and EcologyMultidisciplinaryEcologyAnimal Behaviorlcsh:RMarine EcologyMating systemBrood3. Good healthFemale sperm storagebehavior and behavior mechanismslcsh:QParasitologyFemale[SDE.BE]Environmental Sciences/Biodiversity and EcologyAnimal GeneticsZoologySperm precedenceResearch ArticleMicrosatellite Repeats[SDV.EE.IEO]Life Sciences [q-bio]/Ecology environment/Symbiosis
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Permanent Genetic Resources added to Molecular Ecology Resources Database 1 December 2009-31 January 2010

2010

4 pages; International audience; This article documents the addition of 220 microsatellite marker loci to the Molecular Ecology Resources Database. Loci were developed for the following species: Allanblackia floribunda, Amblyraja radiata, Bactrocera cucurbitae, Brachycaudus helichrysi, Calopogonium mucunoides, Dissodactylus primitivus, Elodea canadensis, Ephydatia fluviatilis, Galapaganus howdenae howdenae, Hoplostethus atlanticus, Ischnura elegans, Larimichthys polyactis, Opheodrys vernalis, Pelteobagrus fulvidraco, Phragmidium violaceum, Pistacia vera, and Thunnus thynnus. These loci were cross-tested on the following species: Allanblackia gabonensis, Allanblackia stanerana, Neoceratitis …

0106 biological sciencesmicrosatellitePopulation geneticsConservation GeneticAllanblackiaAtlantic bluefin tunacomputer.software_genre010603 evolutionary biology01 natural sciencesPistacia terebinthusmicrosatellitesF30 - Génétique et amélioration des plantes03 medical and health sciencesBotanyGeneticsBactroceraESTEcology Evolution Behavior and Systematics030304 developmental biology0303 health sciences[SDV.GEN]Life Sciences [q-bio]/GeneticsDatabasebiologyPistaciaThunnuAnimalCeratitis rosahttp://aims.fao.org/aos/agrovoc/c_444Ceratitis capitataL10 - Génétique et amélioration des animauxbiology.organism_classificationhttp://aims.fao.org/aos/agrovoc/c_5993IschnuraAllanblackia floribundaFishGenetic markersPlantemicrosatellites; Genetic markers; Population geneticsGENETIQUE DES POPULATIONS[ SDV.GEN ] Life Sciences [q-bio]/GeneticscomputerECOLOGIEBiotechnology
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Biodiversity of three representative groups of the Antarctic zoobenthos: comparative structure, distribution and function.

2006

95 pages

[ SDV.BID ] Life Sciences [q-bio]/Biodiversity[SDV.BID]Life Sciences [q-bio]/Biodiversity[SDV.BID] Life Sciences [q-bio]/Biodiversity
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Could the acid-base status of Antarctic sea urchins indicate a better-than-expected resilience to near-future ocean acidification?

2015

Increasing atmospheric carbon dioxide concentration alters the chemistry of the oceans towards more acidic conditions. Polar oceans are particularly affected due to their low temperature, low carbonate content and mixing patterns, for instance upwellings. Calcifying organisms are expected to be highly impacted by the decrease in the oceans' pH and carbonate ions concentration. In particular, sea urchins, members of the phylum Echinodermata, are hypothesized to be at risk due to their high-magnesium calcite skeleton. However, tolerance to ocean acidification in metazoans is first linked to acid-base regulation capacities of the extracellular fluids. No information on this is available to dat…

Ocean Acidification International Coordination Centre (OA-ICC)SalinityNotocidaris gaussensisBicarbonate ion standard deviationinorganicAlkalinity total standard deviationAlkalinityCoulometric titrationExperimentCarbon inorganic dissolvedTemperature waterSizeCoelomic fluidCalculated using seacarb after Nisumaa et al 2010CalculatedAragonite saturation stateCtenocidaris giganteaAlkalinity totaltotalAmphipneustes loriolipHTemperaturedissolvedAcid base regulationCarbonate ionPartial pressure of carbon dioxide (water) at sea surface temperature (wet air)Carbon dioxide standard deviationSterechinus neumayeriEarth System ResearchAporocidaris eltanianaδ13Cstandard deviationField observationPolarStation labelEchinodermataPotentiometric titrationCalcite saturation stateCoelomic fluid alkalinityPotentiometricwaterPartial pressure of carbon dioxideAmphipneustes similisAragonite saturation state standard deviationBenthosDATE TIMEOcean Acidification International Coordination Centre OA ICCSterechinus antarcticusAnimaliaCalcite saturation state standard deviationBicarbonate ionLONGITUDECalculated using seacarb after Nisumaa et al. (2010)SpeciesCalculated using CO2SYScarbonEvent labelPartial pressure of carbon dioxide standard deviationCoelomic fluid carbon inorganic dissolvedCarbonate system computation flagAcid-base regulationpH standard deviationCarbonate ion standard deviationFugacity of carbon dioxide (water) at sea surface temperature (wet air)Amphipneustes rostratusPartial pressure of carbon dioxide water at sea surface temperature wet airDATE/TIMECarbon dioxideDifferenceSingle speciesCoelomic fluid pHLATITUDEFugacity of carbon dioxide water at sea surface temperature wet airAntarcticBenthic animalsCoast and continental shelfAbatus cavernosus
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