Search results for "Fe [BaMgSiO4]"

showing 10 items of 17173 documents

Ovule discounting in an outcrossing, cryptically dioecious tree.

2006

9 páginas, 1 figura, 1 tabla.

0106 biological sciencesCryptic dioecyPollination[SDV]Life Sciences [q-bio]PopulationOutcrossingPaternitySpatial genetic structureFlowersBiologymedicine.disease_cause010603 evolutionary biology01 natural sciencesTrees03 medical and health sciencesPollenBotanyGeneticsmedicineAndrodioecyMating systemOvuleeducationPollinationEcology Evolution Behavior and Systematics030304 developmental biology0303 health scienceseducation.field_of_studyReproductionAndrodioecySelfingfood and beverages15. Life on landMating systemFraxinusEvolutionary biologySeedsPollenGeneral Agricultural and Biological Sciences
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Nutritional symbionts enhance structural defence against predation and fungal infection in a grain pest beetle

2022

ABSTRACT Many insects benefit from bacterial symbionts that provide essential nutrients and thereby extend the hosts’ adaptive potential and their ability to cope with challenging environments. However, the implications of nutritional symbioses for the hosts’ defence against natural enemies remain largely unstudied. Here, we investigated whether the cuticle-enhancing nutritional symbiosis of the saw-toothed grain beetle Oryzaephilus surinamensis confers protection against predation and fungal infection. We exposed age-defined symbiotic and symbiont-depleted (aposymbiotic) beetles to two antagonists that must actively penetrate the cuticle for a successful attack: wolf spiders (Lycosidae) an…

0106 biological sciencesCuticlePhysiologyCuticleBeauveria bassianaZoologyOryzaephilus surinamensisAquatic Science010603 evolutionary biology01 natural sciencesPredation03 medical and health sciencesAposymbioticMutualismSymbiosisCandidatus Shikimatogenerans silvanidophilusOryzaephilus surinamensisSawtoothed grain beetleAnimalsSymbiosisMolecular BiologyEcology Evolution Behavior and Systematics030304 developmental biologyStructural defenceMutualism (biology)0303 health sciencesbiologyBacteroidetesHost (biology)fungi15. Life on landbiology.organism_classificationColeopteraMycosesPredatory BehaviorInsect ScienceAnimal Science and ZoologyResearch ArticleJournal of Experimental Biology
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Cercospora beticola toxins. Use of fluorescent cyanine dye to study their effects on tobacco cell suspensions

1996

Abstract The fluorescent dye 3,3′-diethylthiadicarbocyanine iodide [diS-C 2 -(5)] was used to observe plasmalemma transmembrane potential variations of tobacco cells treated with uncoupler (FCCP), respiratory inhibitors (azide and cyanide), and H + -ATPase inhibitors (DCCD and a carbanilate derivative). These chemicals induced an increase in fluorescence, indicating a dissipation of the transmembrane potential. The [diS-C 2 -(5)] was also used to study the effects of two Cercospora beticola toxins on tobacco cells. Changes in fluorescence of [diS-C 2 -(5)] suggested that these two toxins caused a dissipation of the transmembrane potential with a different magnitude whereas kinetics of their…

0106 biological sciencesCyanideATPasePlant ScienceHorticultureBiology01 natural sciencesBiochemistry03 medical and health scienceschemistry.chemical_compoundCyanineMolecular Biology[SDV.BV.PEP] Life Sciences [q-bio]/Vegetal Biology/Phytopathology and phytopharmacyComputingMilieux_MISCELLANEOUS030304 developmental biologyMembrane potential0303 health sciencesGeneral MedicineCercospora beticolabiology.organism_classificationFluorescence[SDV.BV.PEP]Life Sciences [q-bio]/Vegetal Biology/Phytopathology and phytopharmacyMembranechemistryBiochemistrybiology.proteinAzide010606 plant biology & botany
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Ocean Acidification and the Loss of Phenolic Substances in Marine Plants

2012

Rising atmospheric CO(2) often triggers the production of plant phenolics, including many that serve as herbivore deterrents, digestion reducers, antimicrobials, or ultraviolet sunscreens. Such responses are predicted by popular models of plant defense, especially resource availability models which link carbon availability to phenolic biosynthesis. CO(2) availability is also increasing in the oceans, where anthropogenic emissions cause ocean acidification, decreasing seawater pH and shifting the carbonate system towards further CO(2) enrichment. Such conditions tend to increase seagrass productivity but may also increase rates of grazing on these marine plants. Here we show that high CO(2) …

0106 biological sciencesCymodocea nodosaved/biology.organism_classification_rank.speciesCarbonatesSecondary MetabolismMarine and Aquatic Scienceslcsh:MedicinePlant Science01 natural scienceschemistry.chemical_compoundGlobal Change Ecologylcsh:SciencePhysiological EcologyMultidisciplinaryAlismatalesbiologyEcologyEcologyPlant BiochemistryMarine EcologyOcean acidificationPotamogetonaceaeHydrogen-Ion ConcentrationSeagrassProductivity (ecology)ItalyCarbon dioxideCoastal EcologyResearch ArticleOceans and SeasMarine Biology010603 evolutionary biologyStatistics NonparametricHydrothermal VentsPhenolsPlant-Environment InteractionsTerrestrial plantSeawater14. Life underwaterocean acidification climate change mediterranean sea seagrassBiologyAnalysis of VarianceChemical EcologyMarylandved/biology010604 marine biology & hydrobiologyPlant Ecologyfungilcsh:R15. Life on landCarbon Dioxidebiology.organism_classificationSalinitychemistry13. Climate actionEarth Scienceslcsh:QRuppia maritima
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Effect of the cytochrome P-450 inactivator 1-aminobenzotriazole on the metabolism of chlortoluron and isoproturon in wheat

1987

Abstract Roots of young wheat plants ( Triticum aestivum cv Clement) were treated with [ 14 C]chlortoluron or [ 14 C]isoproturon alone or mixed with 1-aminobenzotriazole (ABT), a mechanism-based inactivator of cytochrome P -450 monooxygenases. Radioactivity extracted from shoots slightly decreased during periods of metabolism, this decrease being reduced by ABT in the case of isoproturon. ABT strongly inhibited the metabolism of both herbicides. Accumulation of metabolites was generally depressed in the presence of ABT; however, levels of the free N -monodemethylated derivatives were little or not affected. It is concluded that ABT is a synergist of chlortoluron and isoproturon in wheat bec…

0106 biological sciencesCytochromeStereochemistry[SDV]Life Sciences [q-bio]Health Toxicology and Mutagenesis01 natural sciencesHydroxylationchemistry.chemical_compoundComputingMilieux_MISCELLANEOUSDemethylationchemistry.chemical_classificationbiologyChemistryfood and beveragesCytochrome P45004 agricultural and veterinary sciencesGeneral MedicineMetabolismMonooxygenase[SDV] Life Sciences [q-bio]EnzymeBiochemistryChlortoluron040103 agronomy & agriculturebiology.protein0401 agriculture forestry and fisheriesAgronomy and Crop Science010606 plant biology & botany
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Metabolism of chlortoluron in tolerant species: possible role of cytochrome p-450 mono-oxygenases

1988

Summary Pathways of chlortoluron metabolism were compared in excised leaves of four tolerant species, namely wheat (Triticum aestivum var Clement), Bromus sterilis, Galium aparine and Veronica persica. The herbicide was principally detoxified by hydroxylation of the ring methyl in wheat and by N-dealkylation in Veronica persica. Both pathways were involved in Bromus sterilis and Galium aparine. Kinetic study of the degradation showed that capacity to form non-toxic conjugates could, at least partially, explain the tolerance of these species to chlortoluron. In plants treated with 1-aminobenzotriazole, a cytochrome P-450 enzyme inactivator, N-dealkylation of chlortoluron was little or not af…

0106 biological sciencesCytochrome[SDV]Life Sciences [q-bio]Plant Science01 natural sciencesGaliumHydroxylation03 medical and health scienceschemistry.chemical_compoundBotanyMono oxygenaseComputingMilieux_MISCELLANEOUSEcology Evolution Behavior and Systematics030304 developmental biologyBromus sterilis0303 health sciencesbiologyMetabolismbiology.organism_classification[SDV] Life Sciences [q-bio]chemistryChlortoluronbiology.proteinAgronomy and Crop ScienceVeronica persica010606 plant biology & botany
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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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Life‐form diversity across temperate deciduous forests of Western Eurasia: A different story in the understory

2021

[Aim]To analyse the biogeographic patterns of Temperate Deciduous Forests (TDFs) in Western Eurasia based on different life-forms and forests layers and explore their relationships with the current climate, Last Glacial Maximum (LGM) climate and topography.

0106 biological sciencesCzechlife form shrub layer species richness tree layermedia_common.quotation_subjectlife formTemperate deciduous forest010603 evolutionary biology01 natural sciencesEurope Euxinian forest diversity forest floor Hyrcanian life form shrub layer species richness tree layerforest floorshrub layerspecies richnessEcology Evolution Behavior and Systematicsmedia_commonHyrcanianForest floorGovernmentEcologyAgroforestryFoundation (engineering)Understoryforest diversity15. Life on landlanguage.human_languageEuxinianEuropeGeographylanguageSpecies richnesstree layerEurope Euxinian forest diversity forest floor Hyrcanian life form shrub layer speciesrichness tree layer010606 plant biology & botanyDiversity (politics)
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Modeling of Dead Wood Potential Based on Tree Stand Data

2020

Here we present a framework for identifying areas with high dead wood potential (DWP) for conservation planning needs. The amount and quality of dead wood and dying trees are some of the most important factors for biodiversity in forests. As they are easy to recognize on site, it is widely used as a surrogate marker for ecological quality of forests. However, wall-to-wall information on dead wood is rarely available on a large scale as field data collection is expensive and local dead wood conditions change rapidly. Our method is based on the forest growth models in the Motti forest simulator, taking into account 168 combinations of tree species, site types, and vegetation zones as well as …

0106 biological sciencesDECOMPOSITION010504 meteorology & atmospheric sciencesforest simulationForest managementBiodiversityDEBRISECOLOGY010603 evolutionary biology01 natural sciencessuojelusuunnitelmatspatial conservation prioritizationsimulointilahopuutconservation planningMETAANALYSISbiodiversity0105 earth and related environmental sciencesforests4112 ForestrySPECIES RICHNESSmetsänkäsittelyTaigacoarse woody debrisforestryNORWAY SPRUCELand-use planningForestryVegetationlcsh:QK900-98915. Life on landbiodiversiteettimetsiensuojeluTree standlcsh:Plant ecologyEnvironmental scienceGROWTHBIODIVERSITYCoarse woody debrisScale (map)land-use planning
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Seed oils as additives: penetration of triolein, methyloleate and diclofop-methyl in maize leaves

1992

Summary: Resume: Zusammenfassung Methyl ester derivatives of seed oils have a greater effect on graminicide efficacy than the parent oils. To explain this difference, we investigated the penetration of the radiolabelled oils, triolein (TRI) and methyl oleate (MEO), in maize leaves, and their influence on diclofop-methyl penetration. Over a period of 3 h 30% of applied TRI penetrated maize leaves, but no further penetration was observed. In contrast, MEO entry proceeded regularly to 72% over a period of 27 h. The amount of oil found in epicuticular wax (chloroform wash) was generally less than 4% of the recovered label, and was even lower (<1%) in ‘glossy 1’ hybrids which have no crystalline…

0106 biological sciencesDICLOFOP-METHYLPlant Science01 natural sciencesMedicinal chemistrychemistry.chemical_compound[SDV.BV]Life Sciences [q-bio]/Vegetal Biology[SDV.BV] Life Sciences [q-bio]/Vegetal BiologyTrioleinDiclofop-methylEcology Evolution Behavior and SystematicsComputingMilieux_MISCELLANEOUSInitial rate2. Zero hungerMethyl oleateEster derivatives04 agricultural and veterinary sciencesPenetration (firestop)METHYLOLEATEZea maysBiochemistrychemistry040103 agronomy & agriculture0401 agriculture forestry and fisheriesAgronomy and Crop Science010606 plant biology & botany
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