Search results for "11831 Plant biology"

showing 7 items of 7 documents

Notulae to the Italian alien vascular flora: 11

2021

Publisher Copyright: © This dataset is made available under the Open Database License (http://opendatacommons.org/licenses/odbl/1.0/). The Open Database License (ODbL) is a license agreement intended to allow users to freely share, modify, and use this Dataset while maintaining this same freedom for others, provided that the original source and author(s) are credited In this contribution, new data concerning the distribution of vascular flora alien to Italy are presented. It includes new records, confirmations, exclusions, and status changes for Italy or for Italian administrative regions. Nomenclatural and distribution updates published elsewhere are provided as Suppl. material 1. Peer rev…

0106 biological sciencesFloraAlien speciesPlant ScienceAlien010603 evolutionary biology01 natural sciencesfloristic dataFloristic DataAlien speciesNomenclatureAlien specieEcology Evolution Behavior and SystematicsNomenclatureEcologyBotany11831 Plant biologyBiología y Biomedicina / BiologíaAlien SpeciesGeographyItalyQK1-989Alien species floristic data Italy nomenclaturenomenclatureAlien species; floristic data; Italy; nomenclature010606 plant biology & botanyItalian Botanist
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Evolutionary relationships, biogeography and morphological characters of Glinus (Molluginaceae), with special emphasis on the genus composition in Su…

2021

Glinus is a small genus of Molluginaceae with 8–10 species mostly distributed in the tropics of the World. Its composition and evolutionary relationships were poorly studied. A new molecular phylogeny constructed here using nuclear (ITS) and chloroplast (rbcL, trnK-matK) markers confirmed the monophyly of the genus. Based on ITS analysis, the following well-supported lineages are present within Glinus: the G. bainesii lineage is recovered as sister to the remainder of the genus followed by G. oppositifolius. Three other clades are: G. hirtus with G. orygioides; G. radiatus and G. lotoides; the latter is represented by a sample from North America, and G. zambesiacus as sister to G. setifloru…

0106 biological sciencesMolluginaceaeEvolutionary biologyPlant Scienceбиогеография01 natural sciencesMonophylyGenusPlantaeGlinusNomenclatureMolecular systematicsMonograph0303 health sciencesFloristics & DistributionSub-Saharan AfricaNomenclatureмолекулярная филогенияMollugoBiogeography1181 Ecology evolutionary biologyMolecular phylogeneticsTaxonomy (biology)Identification keyPHYLOGENYАфрикаBiologyCARYOPHYLLALES010603 evolutionary biologyMagnoliopsida03 medical and health sciencesGlinus lotoidesтаксономическая ревизияBotanyBiodiversity & Conservationmolecular phylogenyEcology Evolution Behavior and SystematicsTaxonomy030304 developmental biologyWorldBotanyMacarthuriaceae15. Life on land11831 Plant biologybiology.organism_classificationtaxonomic revisionTracheophytaGlinusQK1-989AfricaмоллюгиновыеPhytoKeys
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Chlorophyll a fluorescence illuminates a path connecting plant molecular biology to Earth-system science

2021

Remote sensing methods enable detection of solar-induced chlorophyll a fluorescence. However, to unleash the full potential of this signal, intensive cross-disciplinary work is required to harmonize biophysical and ecophysiological studies. For decades, the dynamic nature of chlorophyll a fluorescence (ChlaF) has provided insight into the biophysics and ecophysiology of the light reactions of photosynthesis from the subcellular to leaf scales. Recent advances in remote sensing methods enable detection of ChlaF induced by sunlight across a range of larger scales, from using instruments mounted on towers above plant canopies to Earth-orbiting satellites. This signal is referred to as solar-in…

0106 biological sciencesklorofylliChlorophyll a010504 meteorology & atmospheric sciencesEarth scienceEcology (disciplines)Plant Scienceekofysiologia01 natural sciencesFluorescencebiofysiikkayhteyttäminenchemistry.chemical_compoundLEAFLEAVESWATERPhotosynthesisCO2 ASSIMILATIONSCOTS PINE[SDU.ENVI]Sciences of the Universe [physics]/Continental interfaces environmentMolecular Biology0105 earth and related environmental sciences[SDU.OCEAN]Sciences of the Universe [physics]/Ocean AtmosphereChlorophyll ASUN-INDUCED FLUORESCENCEfluoresenssiBiogeochemistrykasvillisuus15. Life on land11831 Plant biologyReflectivityREFLECTANCEPlant LeavesEarth system scienceddc:580RESOLUTIONchemistryPHOTOSYSTEM-I13. Climate actionRemote Sensing TechnologyEarth SciencessatelliittikuvausEnvironmental sciencekaukokartoitus010606 plant biology & botanyNature Plants
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Predicting habitat suitability for Ixodes ricinus and Ixodes persulcatus ticks in Finland

2022

AbstractBackgroundTicks are responsible for transmitting several notable pathogens worldwide. Finland lies in a zone where two human-biting tick species co-occur:IxodesricinusandIxodespersulcatus. Tick densities have increased in boreal regions worldwide during past decades, and tick-borne pathogens have been identified as one of the major threats to public health in the face of climate change.MethodsWe used species distribution modelling techniques to predict the distributions ofI.ricinusandI.persulcatus,using aggregated historical data from 2014 to 2020 and new tick occurrence data from 2021. By aiming to fill the gaps in tick occurrence data, we created a new sampling strategy across Fin…

1171 GeosciencesmallintaminenPOPULATION-DYNAMICSIxodes ricinusVECTORBORRELIAIxodes persulcatusBorreliaburgdorferi sensu latozoonoositpaikkatietoanalyysipuutiaisetpuutiaisaivotulehdusBURGDORFERI SENSU-LATOEncephalitis Viruses Tick-BorneSpecies distribution modellingAnimalsHumansQUESTING ACTIVITYEcosystemFinland11832 Microbiology and virologyIxodesDeerixodes persulcatusTick-borne pathogenIXODES-RICINUS TICKSEnsemble predictionennusteetlevinneisyysBORNE ENCEPHALITIS-VIRUSHares11831 Plant biologyixodes ricinusspecies distribution modellingpunkitCLIMATEBorrelia-bakteeritInfectious Diseasestaudinaiheuttajattick-borne pathogenborrelioosiIXODIDAEParasitologyABUNDANCEBorrelia burgdorferi sensu latoensemble prediction
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Arbuscular mycorrhizal fungi influence host infection during epidemics in a wild plant pathosystem

2022

SummaryWhile pathogenic and mutualistic microbes are ubiquitous across ecosystems and often co-occur within hosts, how they interact to determine patterns of disease in genetically diverse wild populations is unknown.To test whether microbial mutualists provide protection against pathogens, and whether this varies among host genotypes, we conducted a field experiment in three naturally-occurring epidemics of a fungal pathogen, Podosphaera plantaginis, infecting a host plant, Plantago lanceolata, in the Åland Islands, Finland. In each population, we collected epidemiological data on experimental plants from six allopatric populations that had been inoculated with a mixture of mutualistic arb…

DYNAMICS0106 biological scienceshärmätPhysiologyDIVERSITYPlant ScienceDisease01 natural sciencesLOCAL ADAPTATIONMycorrhizae1110 Plant ScienceGenotypemykorritsasienetDISEASE RESISTANCEkasvitauditheinäratamo11832 Microbiology and virology2. Zero hungerprotective symbiont0303 health scienceseducation.field_of_studyPlantagoPodosphaera plantaginisPlantsplant pathogenmycorrhizal fungitaudinaiheuttajatSusceptible individual590 Animals (Zoology)GenotypemutualismPopulationAllopatric speciationZoologyBiologyPATHOGEN METAPOPULATION010603 evolutionary biologyMULTITROPHIC INTERACTIONS10127 Institute of Evolutionary Biology and Environmental Studies03 medical and health sciencesPlantago lanceolataEcosystemSymbiosiseducationPlantagoEcosystemplant diseasemutualismi (biologia)030304 developmental biologyHost Microbial InteractionsHost (biology)INDUCED RESISTANCEFungi1314 Physiology15. Life on land11831 Plant biologybiology.organism_classificationEVOLUTIONhärmäsienetMICROBE-MICROBE INTERACTIONS570 Life sciences; biologyMicrobial Interactionspowdery mildewNew Phytologist
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The reduction of selenium(IV) by boreal Pseudomonas sp. strain T5-6-I – Effects on selenium(IV) uptake in Brassica oleracea

2019

Selenium (Se) is an essential micronutrient but toxic when taken in excessive amounts. Therefore, understanding the metabolic processes related to selenium uptake and bacteria-plant interactions coupled with selenium metabolism are of high importance. We cultivated Brassica oleracea with the previously isolated heterotrophic aerobic Se(IV)-reducing Pseudomonas sp. T5-6-I strain to better understand the phenomena of bacteria-mediated Se(IV) reduction on selenium availability to the plants. B. oleracea grown on Murashige and Skoog medium (MS-salt agar) with and without of Pseudomonas sp. were amended with Se(IV)/75Se(IV), and selenium transfer into plants was studied using autoradiography and…

Plant uptake116 Chemical scienceskaalitBrassica010501 environmental sciencesravinteet01 natural sciencesBiochemistryTOXICITYbakteeritchemistry.chemical_compound0302 clinical medicineMurashige and Skoog mediumHYPERACCUMULATORSELENATE030212 general & internal medicineFood sciencebacteriaseleniumGeneral Environmental Science11832 Microbiology and virology2. Zero hungerSPECTROSCOPYbiologyPseudomonasfood and beveragesBiodegradation EnvironmentalGROWTHbacteria-plant interactionsBrassica oleraceaEXPRESSIONkasviekologiaeducationchemistry.chemical_elementBrassica114 Physical sciencesSelenateSelenium03 medical and health sciencesPseudomonasplant uptakeHyperaccumulatorACCUMULATION0105 earth and related environmental sciencesBacteria11831 Plant biologybiology.organism_classificationpseudomonaschemistryBIOFORTIFICATIONPLANT SELENIUMseleeniARABIDOPSIS-THALIANABacteriaSeleniumBacteria-plant interactionsEnvironmental Research
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Phytoplankton group identification with chemotaxonomic biomarkers: In combination they do better

2023

Chemotaxonomic biomarkers are needed to monitor and evaluate the nutritional quality of phytoplankton communities. The biomolecules produced by different phytoplankton species do not always follow genetic phylogeny. Therefore, we analyzed fatty acids, sterols, and carotenoids from 57 freshwater phytoplankton strains to evaluate the usability of these biomolecules as chemotaxonomic biomarkers. We found 29 fatty acids, 34 sterols, and 26 carotenoids in our samples. The strains were grouped into cryptomonads, cyanobacteria, diatoms, dinoflagellates, golden algae, green algae, and raphidophytes, and the phytoplankton group explained 61%, 54%, and 89% of the variability of fatty acids, sterols, …

kemotaksonomiarasvahapotbiomarkkeritmonitorointiPlant ScienceHorticultureEukaryotic algaeCyanobacteriacyanobacteriaBiochemistrysterolsyanobakteeritMolecular BiologySterolsterolitCarotenoidsystematiikka (biologia)planktoneliöyhteisötGeneral MedicinemikrolevätFatty acid11831 Plant biologycarotenoideukaryotic algaekarotenoiditChemotaxonomychemotaxonomy1182 Biochemistry cell and molecular biologyfatty acid
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