Search results for "Relationships"

showing 10 items of 347 documents

Arable-weed flora and its pollen representation: A case study from the eastern part of France

2007

International audience; Local pollen deposition in human-influenced vegetation types is studied with the aim of establishing the relationship between arable-weed vegetation and its pollen representation as an aid in interpreting human presence and impact on vegetation from pollen assemblages. The study area is located in the Franche-Comté region, eastern part of France. The presence of plants within 100 m2 plots and their pollen representation in moss samples within the same plots was recorded from different crops and annual fallows. Patterns in the vegetation and pollen assemblages were investigated separately using principal coordinate analysis (PCoA). Procrustean co-inertia analysis (PCI…

0106 biological sciences010506 paleontologyPollination[SDV]Life Sciences [q-bio]ScleranthusPOLLEN-VEGETATION RELATIONSHIPSpollen–vegetation relationshipsmedicine.disease_cause010603 evolutionary biology01 natural sciencesPollenBotanymedicineEcology Evolution Behavior and Systematics0105 earth and related environmental sciencesbiologyEcologyPaleontologyVegetation15. Life on landbiology.organism_classificationFallopia[SDE.ES]Environmental Sciences/Environmental and Societymodern pollenanthropogenic indicatorsarable weedsTaxonprocrustean analyses[SDE]Environmental SciencesBiological dispersal[SDE.ES] Environmental Sciences/Environmental and SocietyFranceCentaurea cyanus[ SDE.ES ] Environmental Sciences/Environmental and Society
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Parentage Atlas of Italian Grapevine Varieties as Inferred From SNP Genotyping.

2021

The Italian grape germplasm is characterized by a high level of richness in terms of varieties number, with nearly 600 wine grape varieties listed in the Italian National Register of Grapevine Varieties and with a plethora of autochthonous grapes. In the present study an extended SNP genotyping has been carried out on Italian germplasm of cultivated Vitis vinifera subsp. sativa and Vitis hybrids. Several hundred Italian varieties maintained in the repositories of scientific Institutions and about one thousand additional varieties derived from previous studies on European, Southern Italy, Magna Graecia and Georgian germplasm were considered. The large genotyping data obtained were used to ch…

0106 biological sciences0301 basic medicineGermplasmPlant Sciencecultivar geographic areas; Italian founder varieties; Italian germplasm; parent-offspring relationships; pedigree; second-degree relationships; single nucleotide polymorphism; Vitis viniferalcsh:Plant culture01 natural sciencesWine grape03 medical and health sciencesPeninsulasingle nucleotide polymorphismlcsh:SB1-1110CultivarItalian founder varietiesVitis viniferaHybridOriginal Researchcultivar geographic areasgeography.geographical_feature_categorypedigreeVariety (linguistics)second-degree relationshipsGenealogySNP genotyping030104 developmental biologyGeographyItalian germplasmVitis viniferacultivar geographic areas Italian germplasm Italian founder varieties parent-offspring relationships pedigree second-degree relationships single nucleotide polymorphism Vitis viniferaparent-offspring relationships010606 plant biology & botanyFrontiers in plant science
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GrassPlot – a database of multi-scale plant diversity in Palaearctic grasslands

2018

GrassPlot is a collaborative vegetation-plot database organised by the Eurasian Dry Grassland Group (EDGG) and listed in the Global Index of Vegetation-Plot Databases (GIVD ID EU-00-003). GrassPlot collects plot records (relevés) from grasslands and other open habitats of the Palaearctic biogeographic realm. It focuses on precisely delimited plots of eight standard grain sizes (0.0001; 0.001; ... 1,000 m²) and on nested-plot series with at least four different grain sizes. The usage of GrassPlot is regulated through Bylaws that intend to balance the interests of data contributors and data users. The current version (v. 1.00) contains data for approximately 170,000 plots of different sizes a…

0106 biological sciencesBiodiversityPlant Sciencecomputer.software_genre01 natural sciencesGrasslandSAMPLING-DESIGNRICHNESSEcoinformaticsddc:550biodiversity; European Vegetation Archive (EVA); Eurasian Dry Grassland Group (EDGG); grassland vegetation; GrassPlot; macroecology; multi-taxon; nested plot; scale-dependence; species-area relationship (SAR); sPlot; vegetation-plot databasescale-dependenceMacroecologybiodiversity2. Zero hungerSCALE DEPENDENCEgeography.geographical_feature_categoryDatabaseVegetationspecies-area relationship (SAR)Grasslandnested plotGeographymacroecologyInstitut für GeowissenschaftenEurasian Dry Grassland Group (EDGG)vegetation-plot database.EUROPEGrassPlotbiodiversity ; European Vegetation Archive (EVA) ; Eurasian Dry Grassland Group (EDGG) ; grassland vegetation ; GrassPlot ; macroecology ; multi-taxon ; nested plot scale-dependence ; species-area relationship (SAR) ; sPlot ; vegetation-plot database010603 evolutionary biologyEcoinformaticsmulti-taxon577: ÖkologieMETAANALYSISENVIRONMENTData collectionsPlotgrass- land vegetationDRY GRASSLANDSgrassland vegetationvegetation-plot database15. Life on landbiodiversity • European Vegetation Archive (EVA) • Eurasian Dry Grassland Group (EDGG) • grassland vegetation • GrassPlot • macroecology • multi-taxon • nested plot • scale-dependence • species-area relationship (SAR) • sPlot • vegetation-plot databaseMetadataPATTERNSSPECIES-AREA RELATIONSHIPSNested plot scale-dependenceVEGETATIONSpecies richnesscomputerbiodiversity; European Vegetation Archive (EVA); Eurasian Dry Grassland Group (EDGG); grassland vegetation; GrassPlot; macroecology; multi-taxon; nested plot scale-dependence; species-area relationship (SAR); sPlot; vegetation-plot database.010606 plant biology & botanyEuropean Vegetation Archive (EVA)
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Fine‐grain beta diversity of Palaearctic grassland vegetation

2021

QUESTIONS: Which environmental factors influence fine-grain beta diversity of vegetation and do they vary among taxonomic groups? LOCATION: Palaearctic biogeographic realm. METHODS: We extracted 4,654 nested-plot series with at least four different grain sizes between 0.0001 m² and 1,024 m² from the GrassPlot database, covering a wide range of different grassland and other open habitat types. We derived extensive environmental and structural information for these series. For each series and four taxonomic groups (vascular plants, bryophytes, lichens, all), we calculated the slope parameter (z-value) of the power law species–area relationship (SAR), as a beta diversity measure. We tested whe…

0106 biological sciencesCzechAgriculture and Food SciencesFine grainelevation333.7: Landflächen NaturerholungsgebietehabitatPlant ScienceMaster planFine-grain beta diversity01 natural sciencesScale dependenceevolutionaryRICHNESSvascular plantsHABITATMacroecologyComputingMilieux_MISCELLANEOUSmedia_commonMean occupancyProductivity2. Zero hungerdisturbance0303 health sciencesEcologySettore BIO/02 - Botanica SistematicaEnvironmental researchPalaearctic grasslanddifferentiationenvironmental heterogeneityspecies-area relationship (SAR)gradientDIFFERENTIATION580: Pflanzen (Botanik)disturbance; elevation; fine-grain beta diversity; heterogeneity; land use; macroecology; mean occupancy; Palaearctic grassland; productivity; scale dependence; species–area relationship (SAR); z-valuescale dependencelanguagemacroecologyproductivitymedia_common.quotation_subjectmean occupancyLibrary scienceSpecies–area relationship (SAR)Environmental drivers Grasslands Lichens Mosses Species-area relationship SAR Vascular Plands010603 evolutionary biologySpecies-area curve03 medical and health sciencesspecies–area relationship (SAR)ExcellencePolitical scienceGRADIENTSlovak030304 developmental biologyspatial scalefine-grain beta diversityBiology and Life Sciencesland useDisturbance15. Life on landZ-valuelanguage.human_languageENVIRONMENTAL HETEROGENEITYEarth and Environmental Sciencesz-valueElevationLand useEVOLUTIONARYSPATIAL SCALESPECIES-AREA RELATIONSHIPSVASCULAR PLANTS[SDE.BE]Environmental Sciences/Biodiversity and EcologyheterogeneityHeterogeneityrichness
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Genetic diversity of fig (Ficus caricaL.) genotypes grown in Southern Italy revealed by the use of SSR markers

2017

The genetic variability among 181 fig (Ficus carica L.) accessions found in small farms located in Campania, Basilicata, Apulia, Calabria and Sicily was investigated analysing the polymorphism of 18 simple sequence repeat (SSR) markers. The SSR analysis revealed a large genetic diversity among accessions. A total of 117 alleles were detected with a mean of 6.5 locus-1. The average expected (He) and observed heterozygosity (Ho) were 0.56 and 0.66, respectively. The mean polymorphic information content (PIC) was 0.51, suggesting a significant molecular diversity among the fig accessions taken into consideration. The UPGMA cluster analysis discriminated 174 genotypes and allowed to find 8 grou…

0106 biological sciencesGenetic diversityFicus04 agricultural and veterinary sciencesHorticultureBiologybiology.organism_classification01 natural sciencesSettore AGR/03 - Arboricoltura Generale E Coltivazioni ArboreeHorticultureSettore AGR/07 - Genetica AgrariaBotanyGenotype040103 agronomy & agriculture0401 agriculture forestry and fisheriesgermplasm genetic resources genetic relationships microsatellites.Carica010606 plant biology & botanyActa Horticulturae
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Does catchment geodiversity foster stream biodiversity?

2019

Abstract Context One approach to maintain the resilience of biotic communities is to protect the variability of abiotic characteristics of Earth’s surface, i.e. geodiversity. In terrestrial environments, the relationship between geodiversity and biodiversity is well recognized. In streams, the abiotic properties of upstream catchments influence stream communities, but the relationships between catchment geodiversity and aquatic biodiversity have not been previously tested. Objectives The aim was to compare the effects of local environmental and catchment variables on stream biodiversity. We specifically explored the usefulness of catchment geodiversity in explaining the species richness on …

0106 biological sciencesGeography Planning and DevelopmentDrainage basinBiodiversity01 natural sciencesbakteeritfreshwatersspecies richnessbacteriaSCALEAbiotic componentFreshwatersgeography.geographical_feature_categoryCLIMATE-CHANGEEcologyMacroinvertebratesEcologyenvironmental heterogeneityselkärangattomatgeodiversiteettiHabitatCatchment featuresvirtavedet1181 Ecology evolutionary biologyBENTHIC MACROINVERTEBRATE ASSEMBLAGESvaluma-alueetmacroinvertebratesCONTEXT DEPENDENCY010603 evolutionary biologydiatomsPLANT-SPECIES RICHNESSpiilevätcatchment features1172 Environmental sciencesNature and Landscape ConservationDiatomsgeographyLand useBacteriaFRESH-WATER BIODIVERSITYLAND-USELANDSCAPE010604 marine biology & hydrobiologyEnvironmental heterogeneity15. Life on landCOMMUNITY-ENVIRONMENT RELATIONSHIPSluonnon monimuotoisuusbiodiversiteettiGeodiversity13. Climate actionSpecies richnessLandscape ecologySpecies richnessMICROBIAL DIVERSITY
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Species–area relationship and small-island effect of vascular plant diversity in a young volcanic archipelago

2021

International audience; Aims: Aeolian islands form an active volcanic archipelago. By using updated vascular plant checklists for islands and islets, we tested four hypotheses: (i) Island speciesarea relationship (ISAR) of alien species has lower c-and higher z-values than native species, (ii) islands with active volcanoes have lower species richness than expected for native and alien species, (iii) ISAR of native species shows lower c-and higher z-values than ISARs of Mediterranean land bridge archipelagos and (iv) species richness of smaller islets is independent of area.Location: Aeolian Archipelago, Mediterranean Basin.Taxon: Vascular plants, identified and named according to the Flora …

0106 biological sciencesMediterranean climateVascular plant010504 meteorology & atmospheric sciencesInsular biogeographymedia_common.quotation_subjectBiodiversitybiodiversity island biogeography Mediterranean species richness species–area relationships vascular floraMediterranean010603 evolutionary biology01 natural sciences14. Life underwaterspecies– area relationshipsspecies richnespecies richnessEcology Evolution Behavior and Systematicsspecies–area relationship0105 earth and related environmental sciencesmedia_commonbiodiversityvascular florageographygeography.geographical_feature_categoryEcologybiologyisland biogeographyEcology15. Life on landbiology.organism_classificationVolcanoArchipelago[SDE]Environmental SciencesSettore BIO/03 - Botanica Ambientale E ApplicataSpecies richnessgeographic locationsDiversity (politics)
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Northern refugia and recent expansion in the North Sea: The case of the wrasse Symphodus melops (Linnaeus, 1758)

2011

Pleistocene climate changes have imposed extreme conditions to intertidal rocky marine communities, forcing many species to significant range shifts in their geographical distributions. Phylogeographic analyses based on both mitochondrial and nuclear genetic markers provide a useful approach to unravel phylogeographic patterns and processes of species after this time period, to gain general knowledge of how climatic changes affect shifts in species distributions. We analyzed these patterns on the corkwing wrasse (Symphodus melops, Labridae), a rocky shore species inhabiting North Sea waters and temperate northeastern Atlantic Ocean from Norway to Morocco including the Azores, using a fragme…

0106 biological sciencesRange (biology)Intertidal zonePhylogenetic-Relationshipsphylogeography010603 evolutionary biology01 natural sciences03 medical and health sciencesRocky shoreRefugium (population biology)LabridaeMediterranean SeaNorth seaVDP::Mathematics and natural science: 400::Zoology and botany: 480::Marine biology: 49714. Life underwaterGlacial periodglacial refugiaEcology Evolution Behavior and SystematicsOriginal Research030304 developmental biologyNature and Landscape ConservationMitochondrial-Dna Variation0303 health sciencesbiologyEcologyEcologyGenetic-structurePopulationsMtdnaLast Glacial Maximumbiology.organism_classificationBlenniidaePhylogeography13. Climate actionAtlantic coastInterglacialAtlanticspatial variation of genetic diversityCorkwing wrasseLipophrys-Pholis Pisces
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An annotated checklist of bryophytes of Europe, Macaronesia and Cyprus

2020

Introduction. Following on from work on the European bryophyte Red List, the taxonomically and nomenclaturally updated spreadsheets used for that project have been expanded into a new checklist for the bryophytes of Europe. Methods. A steering group of ten European bryologists was convened, and over the course of a year, the spreadsheets were compared with previous European checklists, and all changes noted. Recent literature was searched extensively. A taxonomic system was agreed, and the advice and expertise of many European bryologists sought. Key results. A new European checklist of bryophytes, comprising hornworts, liverworts and mosses, is presented. Fifteen new combinations are propo…

0106 biological sciencesSYSTEMATIC POSITIONLibrary sciencePlant Science010603 evolutionary biology01 natural sciencesmosseshornwortsGENUS RICCIA MARCHANTIALESPHYLOGENETIC-RELATIONSHIPSIUCN Red ListInternal transcribed spacerSP-NOV ORTHOTRICHACEAEEcology Evolution Behavior and SystematicsCHLOROPLAST DNA-SEQUENCESBryophytesIBERIAN PENINSULAChecklistliverwortsEuropeINTERNAL TRANSCRIBED SPACERGeographyWork (electrical)1181 Ecology evolutionary biologyMOSS FAMILY BRYACEAEMORPHOLOGICAL EVOLUTIONBryophytechecklist010606 plant biology & botanyTAXONOMIC REVISION
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Differences in nutritional quality of parts of Vitis vinifera berries affect fitness of the European grapevine moth

2006

International audience; The European grapevine moth, Lobesia botrana (Denis & Schiffermuller) (Lepidoptera: Tortricidae), is a major grapevine pest in Europe. The larva is polyphagous and able to develop on more than 25 plant species, several of them being more suitable than Vitaceae for the fitness of L. botrana. Larvae normally eat the pulp of the berry, but may also consume the seeds according to the development stage of the berry and the larval density per bunch. Understanding the effect on individual fitness of such feeding behaviour is important to assess how suitable the different berry tissues are for this insect. We offered to the larvae either entire berries, seeds, or pulp with s…

0106 biological sciencesTortricidae[ SDV.MP.PAR ] Life Sciences [q-bio]/Microbiology and Parasitology/Parasitologyanimal structuresBerry[SDV.BID]Life Sciences [q-bio]/BiodiversityVitaceaeLobesia botrana010603 evolutionary biology01 natural sciencesLepidoptera genitaliaLobesia botranaBotany[ SDV.EE.IEO ] Life Sciences [q-bio]/Ecology environment/Symbiosis[SDV.BID.EVO] Life Sciences [q-bio]/Biodiversity/Populations and Evolution [q-bio.PE]adult performanceTortricidae[SDV.MP.PAR]Life Sciences [q-bio]/Microbiology and Parasitology/ParasitologyEcology Evolution Behavior and SystematicsComputingMilieux_MISCELLANEOUSgrapesLarvabiology[SDV.BID.EVO]Life Sciences [q-bio]/Biodiversity/Populations and Evolution [q-bio.PE]fungifood and beverages[SDV.EE.IEO] Life Sciences [q-bio]/Ecology environment/Symbiosisdiet qualitybiology.organism_classificationFecundityLepidoptera010602 entomologyHorticulture[ SDV.BID.EVO ] Life Sciences [q-bio]/Biodiversity/Populations and Evolution [q-bio.PE]VitaceaeInsect SciencePEST analysis[SDV.MP.PAR] Life Sciences [q-bio]/Microbiology and Parasitology/Parasitologylarval performanceinsect-plant relationships[SDV.EE.IEO]Life Sciences [q-bio]/Ecology environment/Symbiosis
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