Search results for "EED"

showing 10 items of 5952 documents

The value of by-catch data: how species-specific surveys can serve non-target species

2019

Camera trapping has a wide range of research application, but, while research designs are often focused on the study of a single focal species, cameras can also record other non-target species. Occupancy modeling using by-catch data can be a valuable resource to gain information on these species maximizing the scientific effort and efficiency of wildlife surveys. In this study, we used by-catch data from a European wildcat (Felis silvestris silvestris) survey in Southern Italy to assess the habitat covariates determinant for the occupancy of the crested porcupine (Hystrix cristata). We recorded 33 detections at 17 out of 51 cameras (naive occupancy = 0.33). The best models fitted the data w…

0106 biological sciencesCamera trappingOccupancyRange (biology)biology.animal_breedSettore BIO/05 - ZoologiaWildlifeManagement Monitoring Policy and Law010603 evolutionary biology01 natural sciences010605 ornithologyHystrix cristataCrested porcupineEcology Evolution Behavior and SystematicsNature and Landscape ConservationbiologyMt. EtnaOccupancybiology.organism_classificationBycatchGeographyHabitat useHabitatEuropean wildcatCamera trapCartographyEuropean Journal of Wildlife Research
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Spatial Variation of Leaf Optical Properties in a Boreal Forest Is Influenced by Species and Light Environment

2017

Leaf Optical Properties (LOPs) convey information relating to temporally dynamic photosynthetic activity and biochemistry. LOPs are also sensitive to variability in anatomically related traits such as Specific Leaf Area (SLA), via the interplay of intra-leaf light scattering and absorption processes. Therefore, variability in such traits, which may demonstrate little plasticity over time, potentially disrupts remote sensing estimates of photosynthesis or biochemistry across space. To help to disentangle the various factors that contribute to the variability of LOPs, we defined baseline variation as variation in LOPs that occurs across space, but not time. Next we hypothesized that there wer…

0106 biological sciencesCanopyPIGMENT010504 meteorology & atmospheric sciencesSpecific leaf areaPlant SciencePhotochemical Reflectance IndexAtmospheric sciences01 natural sciencesleaf optical propertiesPHOTOCHEMICAL REFLECTANCE INDEXCANOPYLEAVESCHLOROPHYLL FLUORESCENCE EMISSIONNITROGEN-CONTENTSCOTS PINEChlorophyll fluorescenceOriginal ResearchCONIFER NEEDLES0105 earth and related environmental sciences4112 Forestryphotosynthesischlorophyll fluorescencebiologyEcologyTaigaScots pine15. Life on landbiology.organism_classificationDECIDUOUS FORESTbaselineBoreal13. Climate actionEnvironmental scienceSpatial variabilityPRI010606 plant biology & botanyFrontiers in Plant Science
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Evaluating structural and compositional canopy characteristics to predict the light-demand signature of the forest understorey in mixed, semi-natural…

2020

Questions: Light availability at the forest floor affects many forest ecosystem processes, and is often quantified indirectly through easy-to-measure stand characteristics. We investigated how three such characteristics, basal area, canopy cover and canopy closure, were related to each other in structurally complex mixed forests. We also asked how well they can predict the light-demand signature of the forest understorey (estimated as the mean Ellenberg indicator value for light [“EIVLIGHT”] and the proportion of “forest specialists” [“%FS”] within the plots). Furthermore, we asked whether accounting for the shade-casting ability of individual canopy species could improve predictions of EIV…

0106 biological sciencesCanopy[SDV]Life Sciences [q-bio]DIVERSITYAtmospheric sciences01 natural sciencescanopy closureshade-casting abilityBasal areaSOLAR-RADIATION TRANSMITTANCEherb layerlight availabilityEnvironmental planningEcologyPolicy and LawTemperate forestForestryVegetationUnderstoryPE&RCCOMMUNITYbasal areaEcosystems Researchlight transmittanceLife Sciences & BiomedicineTemperate rainforestMonitoringEnvironmental Sciences & EcologyManagement Monitoring Policy and Law010603 evolutionary biologyEcology and EnvironmentEllenberg indicator valuesunderstoreyForest ecologyGAP FORMATIONMANAGEMENTBosecologie en Bosbeheer/dk/atira/pure/core/keywords/biologyNature and Landscape ConservationForest floorScience & Technology/dk/atira/pure/core/keywords/557265479Plant SciencesSEEDLING SURVIVAL15. Life on landCOVERForest Ecology and Forest ManagementLAYEREarth and Environmental Sciencestemperate forestcanopy coverEnvironmental scienceVEGETATION010606 plant biology & botanyRESPONSESApplied Vegetation Science
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Berry Size and Qualitative Characteristics of Vitis vinifera L. cv. Syrah

2016

The effect of variation in berry size on berry composition was studied in irrigated Syrah/R99 grapevines, located in a temperate area of South Africa. Berries from 45 clusters, sampled from both sides of the canopy (east and west), were weighed to create four categories: 1. less or equal to 1.5 g; 2. between 1.51 g and 2.00 g; 3. between 2.01 g and 2.50 g; 4. more than 2.50 g. Berry physical characteristics were determined and total anthocyanins and seed flavonoids were analysed by spectrophotometry and anthocyanin profiles by HPLC. The ratio of skin weight:berry weight did not change with increasing berry size, but the ratio of seed weight:berry weight increased. For total anthocyanins, va…

0106 biological sciencesCanopyskin weightberry weightBerry01 natural sciences040501 horticulturechemistry.chemical_compoundFood scienceQuality characteristicsVitis viniferaberry size variabilityWineBERRY WEIGHT SKIN AND SEED WEIGHT BERRY SIZE VARIABILITY ANTHOCIANINSseed weight04 agricultural and veterinary sciencesanthocyaninsseed numberSettore AGR/03 - Arboricoltura Generale E Coltivazioni ArboreeHorticulturechemistryPolyphenolAnthocyaninVitis viniferaVitis vinifera; berry weight; skin weight; seed weight; seed number; berry size variability; anthocyaninsComposition (visual arts)0405 other agricultural sciences010606 plant biology & botany
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Oils for weed control: Uses and mode of action

1993

The role of oils in herbicide treatments is reviewed, both in terms of their own intrinsic activity and of their enhancement of the performance of other herbicides. The phytotoxicity of oils can be related to their physical properties. Their efficacy as adjuvants can vary with the plant /pesticide combination involved, and differences may also be observed between oils of mineral and vegetable origin. The possible mechanisms involved in the enhancement of activity by oils are discussed and areas of work that might elucidate these further are indicated

0106 biological sciencesChemistry[SDV]Life Sciences [q-bio]fungifood and beverages04 agricultural and veterinary sciencesPesticideWeed control01 natural sciencesApplied Microbiology and Biotechnology[SDV] Life Sciences [q-bio]ToxicologyBotany040103 agronomy & agriculture0401 agriculture forestry and fisheriesPhytotoxicityMode of actionComputingMilieux_MISCELLANEOUS010606 plant biology & botanyPesticide Science
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Fig virus-free production and survival rate improvement using meristem tip culture techinique associated with the encapsulation technology

2018

Three Mediterranean F. carica genotypes, i.e. cultivars Palazzo, Bifera nera and Catalanisca, initially infected by Fig leaf mottle-associated virus 1 (FLMaV-1), Fig leaf mottle-associated virus 2 (FLMaV-2), Fig mild mottling-associated virus (FMMaV), Fig mosaic virus (FMV), Fig latent virus 1 (FLV-1), Fig Badnavirus 1 (FBV-1) and Fig fleck-associated virus (FFkaV), were subjected to the sanitation technique via Meristem Tip (0.3-0.5 mm in size) Culture (MTC), also associated with the encapsulation technique (MTC-SS), in order to produce virus-free plant material. Encapsulation was tested to overcome the very low survival and regeneration rates, due to the small propagule size. Encouraging …

0106 biological sciencesChemistryfig mosaic disease synthetic seed sanitation RT-PCR.Settore AGR/12 - Patologia Vegetale04 agricultural and veterinary sciencesHorticultureMeristem01 natural sciencesEncapsulation (networking)Cell biologySettore AGR/03 - Arboricoltura Generale E Coltivazioni Arboree040103 agronomy & agriculture0401 agriculture forestry and fisheriesVirus freeSurvival rate010606 plant biology & botany
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Plant-Based Protein Hydrolysate Improves Salinity Tolerance in Hemp: Agronomical and Physiological Aspects

2021

Hemp (Cannabis sativa L.) is a multipurpose plant attracting increasing interest as a source for the production of natural fibers, paper, bio-building material and food. In this research we studied the agronomical performance of Cannabis sativa cv. Eletta Campana irrigated with saline water. Under those conditions, we tested the effect of protein hydrolysate (PH) biostimulant application in overcoming and/or balancing deleterious salinity effects. The results of the diverse treatments were also investigated at the physiological level, focusing on photosynthesis by means of a chlorophyll a fluorescence technique, which give an insight into the plant primary photochemical reactions. Four sali…

0106 biological sciencesChlorophyll aIrrigationhemp; salt stress; biostimulants; seeds yield; chlorophyll fluorescencePhotosynthesis01 natural sciencesHydrolysatelcsh:AgricultureCropchemistry.chemical_compoundSalt streChlorophyll fluorescencesalt stresslcsh:Sfood and beverages04 agricultural and veterinary sciencesSeeds yieldSaline waterBiostimulantSalinitybiostimulantsHorticulturechemistry040103 agronomy & agriculture0401 agriculture forestry and fisheriesChlorophyll fluorescenceHempAgronomy and Crop Science010606 plant biology & botanyAgronomy
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Molecular parameters involved in bee-plant relationships: a biological and chemical approach

1987

Abstract Honeybee-plant relationships are based on a conditioning process in which olfactory (plant aroma) and gustatory cues (mainly nectars) are closely linked, leading to a selective foraging behaviour. Among crops dependent upon entomophilous cross-pollination, the sunflower has recently undergone extensive expansion due to hybrid variety selection. Sunflower hybrid seed production is strictly dependent upon pollinating insects, mainly the honeybees, but foragers may have preferences among the parental lines, leading to a lack of pollen carriage and consequently to a decrease of hybrid seed yield. In order to define the role of plant chemicals (aromas, nectars) involved in the pollinati…

0106 biological sciencesChromatography GasPollinationGenotypeForagingBiologymedicine.disease_cause01 natural sciencesBiochemistryConditioning process03 medical and health sciencesRELATION PLANTE INSECTEPollenHelianthus annuusBotanymedicine[SDV.BBM] Life Sciences [q-bio]/Biochemistry Molecular BiologyNectarAnimals[SDV.BBM]Life Sciences [q-bio]/Biochemistry Molecular BiologyPlant Physiological PhenomenaComputingMilieux_MISCELLANEOUS030304 developmental biology0303 health sciencesBehavior AnimalBIOLOGIEGeneral MedicineCHIMIE15. Life on landBeesSunflowerHybrid seedSmell010602 entomologyTasteOdorantsPollenCues
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Differential performance of a specialist and two generalist herbivores and their parasitoids on Plantago lanceolata

2011

The ability to cope with plant defense chemicals differs between specialist and generalist species. In this study, we examined the effects of the concentration of the two main iridoid glycosides (IGs) in Plantago lanceolata, aucubin and catalpol, on the performance of a specialist and two generalist herbivores and their respective endoparasitoids. Development of the specialist herbivore Melitaea cinxia was unaffected by the total leaf IG concentration in its host plant. By contrast, the generalist herbivores Spodoptera exigua and Chrysodeixis chalcites showed delayed larval and pupal development on plant genotypes with high leaf IG concentrations, respectively. This result is in line with t…

0106 biological sciencesChrysodeixis chalcitesHyposoter didymatorIridoid GlucosidesSpodopteraGeneralist and specialist species010603 evolutionary biology01 natural sciencesMelitaea cinxiaBiochemistryArticlePheromonesParasitoidHost-Parasite InteractionsMultitrophic interactionsSpodoptera exiguaBotanyPlant defense against herbivoryCotesia marginiventrisAnimalsCotesia melitaearumPlantagoEcology Evolution Behavior and Systematics2. Zero hungerImmunocompromised hostHerbivorePlantagobiologyHost (biology)fungiIridoid glycosidesfood and beveragesGeneral MedicineFeeding Behaviorbiology.organism_classificationAdaptation PhysiologicalHymenopteraChrysodeixis chalcitesPlant Leaves010602 entomologyMelitaeaLarvaChemical defensePlants EdibleButterflies
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Arginase induction represses gall development during clubroot infection in Arabidopsis.

2012

Arginase induction can play a defensive role through the reduction of arginine availability for phytophageous insects. Arginase activity is also induced during gall growth caused by Plasmodiophora brassicae infection in roots of Arabidopsis thaliana; however, its possible role in this context has been unclear. We report here that the mutation of the arginase-encoding gene ARGAH2 abrogates clubroot-induced arginase activity and results in enhanced gall size in infected roots, suggesting that arginase plays a defensive role. Induction of arginase activity in infected roots was impaired in the jar1 mutant, highlighting a link between the arginase response to clubroot and jasmonate signaling. C…

0106 biological sciencesClubrootArabidopsis thalianaPhysiologyPyridinesArabidopsisplantPlant SciencePlasmodiophorida01 natural sciencesPlant RootsCallogenesisPlant Epidermischemistry.chemical_compoundJasmonateArabidopsisPlant TumorsGallArabidopsis thalianaJasmonateAmino AcidsComputingMilieux_MISCELLANEOUSchemistry.chemical_classification0303 health sciencesJasmonic acidfood and beveragesGeneral MedicineCell biologyArginasePLANT SCIENCESOrgan SpecificityPlasmodiophora brassicaeEnzyme Inductionnitric-oxideCyclopentanesBiologyHydroxylationAmidohydrolasesClubroot03 medical and health sciencesAuxinBotanymedicinethalianaOxylipinsIsoleucine030304 developmental biologydiseaseArginaseArabidopsis Proteinsfungijasmonic acid[SDV.BBM.BM]Life Sciences [q-bio]/Biochemistry Molecular Biology/Molecular biologyplasmodiophora-brassicaeCell BiologyDiazonium Compoundsbiology.organism_classificationmedicine.diseaserootarginine catabolism[SDV.BV.AP]Life Sciences [q-bio]/Vegetal Biology/Plant breedingchemistryMutationidentificationaccumulation010606 plant biology & botanyPlantcell physiology
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