Search results for "NEC"

showing 10 items of 9363 documents

How does climate change affect social insects?

2020

Climate change poses a major threat to global biodiversity, already causing sharp declines of populations and species. In some social insect species we already see advanced phenologies, changes in distribution ranges, and changes in abundance Rafferty (2017) and Diamond et al. (2017). Physiologically, social insects are no different from solitary insects, but they possess a number of characteristics that distinguish their response to climate change. Here, we examine these traits, which might enable them to cope better with climate change than solitary insects, but only in the short term. In addition, we discuss how climate change will alter biotic interactions and ecosystem functions, and h…

0106 biological sciences0301 basic medicineInsectaClimate ChangeClimate changeDistribution (economics)BiologyAffect (psychology)010603 evolutionary biology01 natural sciences03 medical and health sciencesAbundance (ecology)AnimalsEcosystemskin and connective tissue diseasesEcology Evolution Behavior and SystematicsEcosystemEcologybusiness.industryfungiBiodiversity030104 developmental biologyInsect Sciencesense organsbusinessGlobal biodiversityCurrent opinion in insect science
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Training experiments with Bombus terrestris and Apis mellifera on artificial ‘ Salvia ’ flowers

2016

Abstract Many bee flowers demand physical force from their pollinators. An example is Salvia with lever-like anthers restricting access to nectar. Though the needed force is generally low, it is largely unknown how far even low forces affect flower preference and foraging behaviour of bees. In the present paper, we introduce a method to measure the response of bees to a force mechanism. We explain the construction of artificial flowers mimicking the lever mechanism of a Salvia flower and the procedure to train honeybees and bumblebees to the models. We document the behaviour of the bees on models without barriers and on those with low forces aiming at the same time to determine the bees’ se…

0106 biological sciences0301 basic medicineLeverbusiness.product_categoryEcologybiologyForagingPlant ScienceFlight timeSalviabiology.organism_classification010603 evolutionary biology01 natural sciences03 medical and health sciencesHorticulture030104 developmental biologyPollinatorBombus terrestrisBotanyNectarbusinessEcology Evolution Behavior and SystematicsFlora
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Twig and Shoot Dieback of Citrus, a New Disease Caused by Colletotrichum Species

2021

(1) Background: This study was aimed at identifying the Colletotrichum species associated with twig and shoot dieback of citrus, a new syndrome occurring in the Mediterranean region and also reported as emerging in California. (2) Methods: Overall, 119 Colletotrichum isolates were characterized. They were recovered from symptomatic trees of sweet orange, mandarin and mandarin-like fruits during a survey of citrus groves in Albania and Sicily (southern Italy). (3) Results: The isolates were grouped into two distinct morphotypes. The grouping of isolates was supported by phylogenetic sequence analysis of two genetic markers, the internal transcribed spacer regions of rDNA (ITS) and β-tubulin …

0106 biological sciences0301 basic medicineMediterranean climateTUB2Orange (colour)01 natural sciencesArticlecitrusTwigNecrosis03 medical and health sciencesColletotrichumpathogenicityInternal transcribed spacerlcsh:QH301-705.5Phylogeny<i>Colletotrichum</i> karstiiPlant DiseasesMyceliumbiologyInoculationColletotrichum karstii;fungifood and beveragesGeneral Medicine030108 mycology & parasitologybiology.organism_classificationColletotrichum gloeosporioidesColletotrichum karstiiColletotrichum gloeosporioides;Plant LeavesHorticultureColletotrichumlcsh:Biology (General)Genetic marker<i>Colletotrichum</i> gloeosporioidesShootDNA IntergenicITS010606 plant biology & botanyCells
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Hexanoic Acid Treatment Prevents Systemic MNSV Movement in Cucumis melo Plants by Priming Callose Deposition Correlating SA and OPDA Accumulation

2017

Unlike fungal and bacterial diseases, no direct method is available to control viral diseases. The use of resistance-inducing compounds can be an alternative strategy for plant viruses. Here we studied the basal response of melon to Melon necrotic spot virus (MNSV) and demonstrated the efficacy of hexanoic acid (Hx) priming, which prevents the virus from systemically spreading. We analysed callose deposition and the hormonal profile and gene expression at the whole plant level. This allowed us to determine hormonal homeostasis in the melon roots, cotyledons, hypocotyls, stems and leaves involved in basal and hexanoic acid-induced resistance (Hx-IR) to MNSV. Our data indicate important roles…

0106 biological sciences0301 basic medicineMelonsalicylic acidPlant Sciencelcsh:Plant culture01 natural sciencesHypocotylMicrobiologyOPDA03 medical and health scienceschemistry.chemical_compoundCucumis meloPlant viruslcsh:SB1-1110Original ResearchHexanoic acidPriming by natural compoundsbiologyMelon necrotic spot virusCallosefood and beveragesSalicylic acidbiology.organism_classificationpriming by natural compounds030104 developmental biologychemistryBiochemistryMNSVhexanoic acidHexanoic acidCucumisSalicylic acid010606 plant biology & botany
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Potential impact of genetically modified Lepidoptera-resistant Brassica napus in biodiversity hotspots: Sicily as a theoretical model

2018

The general increase of the cultivation and trade of Bt transgenic plants resistant to Lepidoptera pests raises concerns regarding the conservation of animal and plant biodiversity. Demand for biofuels has increased the cultivation and importation of oilseed rape (Brassica napus L.), including transgenic lines. In environmental risk assessments (ERAs) for its potential future cultivation as well as for food and feed uses, the impact on wild Brassicaeae relatives and on non-target Lepidoptera should be assessed. Here we consider the potential exposure of butterflies as results of possible cultivation or naturalization of spilled seed in Sicily (Italy). Diurnal Lepidoptera, which are pollinat…

0106 biological sciences0301 basic medicinePollinationPopulationBiodiversitymedicine.disease_cause010603 evolutionary biology01 natural sciencesGeneral Biochemistry Genetics and Molecular BiologyLepidoptera genitalia03 medical and health sciencesPollinatorPollenmedicineNectareducationEcology Evolution Behavior and Systematicseducation.field_of_studybiologyfungifood and beveragesbiology.organism_classification030104 developmental biologyAgronomyInsect ScienceAgronomy and Crop SciencePieridaeInsect Science
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Spatial and Temporal Variability in Migration of a Soaring Raptor Across Three Continents

2019

Disentangling individual- and population-level variation in migratory movements is necessary for understanding migration at the species level. However, very few studies have analyzed these patterns across large portions of species' distributions. We compiled a large telemetry dataset on the globally endangered egyptian vulture neophron percnopterus (94 individuals, 188 completed migratory journeys), tracked across similar to 70% of the species' global range, to analyze spatial and temporal variability of migratory movements within and among individuals and populations. We found high migratory connectivity at large spatial scales (i.e., different subpopulations showed little overlap in winte…

0106 biological sciences0301 basic medicineSatellite trackingconservation biologyEnvironmental changeRange (biology)GPSPopulationlcsh:EvolutionEndangered speciesPhenotypic plasticity010603 evolutionary biology01 natural sciencesphenotypic plasticityMovement ecology03 medical and health sciencesmigration connectivitylcsh:QH540-549.5Flywaybiology.animalNeophron percnopteruslcsh:QH359-425ZoologíaeducationEcology Evolution Behavior and SystematicsVulture2. Zero hunger[SDV.EE]Life Sciences [q-bio]/Ecology environmenteducation.field_of_studyEcologybiologyConservation biologyEcologysatellite tracking[SDV.BA]Life Sciences [q-bio]/Animal biology15. Life on landMigration connectivity; Neophron percnopterus; Conservation biology; Movement ecology; Satellite tracking; GPS; Phenotypic plasticityBiology; Environmental sciences and ecology030104 developmental biologyGeographymovement ecologyNeophron percnopteruslcsh:EcologyConservation biologyMigration connectivity
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Inhibition of NO Biosynthetic Activities during Rehydration of Ramalina farinacea Lichen Thalli Provokes Increases in Lipid Peroxidation

2019

Lichens are poikilohydrous symbiotic associations between a fungus, photosynthetic partners, and bacteria. They are tolerant to repeated desiccation/rehydration cycles and adapted to anhydrobiosis. Nitric oxide (NO) is a keystone for stress tolerance of lichens

0106 biological sciences0301 basic medicineTrebouxiaDiaphorase activityLichensHyphanitrate reductaseLipid peroxidationBOTANICAPlant ScienceNitrate reductase01 natural sciencesArticleRamalina farinaceaLipid peroxidation03 medical and health scienceschemistry.chemical_compoundstomatognathic systemnitric oxideMicroalgaeLichenskin and connective tissue diseaseslichensEcology Evolution Behavior and Systematics<i>Trebouxia</i>Ecologybiologyintegumentary systemnitric oxide synthaseNitric oxide synthasemicroalgaeBotanyNitric oxidelipid peroxidationbiology.organism_classificationThallusNitric oxide synthasestomatognathic diseases030104 developmental biologyBiochemistrychemistryQK1-989biology.proteinTrebouxiadiaphorase activityNitrate reductase010606 plant biology & botanyPlants
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The IM30/Vipp1 C-terminus associates with the lipid bilayer and modulates membrane fusion.

2017

IM30/Vipp1 proteins are crucial for thylakoid membrane biogenesis in chloroplasts and cyanobacteria. A characteristic C-terminal extension distinguishes these proteins from the homologous bacterial PspA proteins, and this extension has been discussed to be key for the IM30/Vipp1 activity. Here we report that the extension of the Synechocystis IM30 protein is indispensable, and argue that both, the N-terminal PspA-domain as well as the C-terminal extension are needed in order for the IM30 protein to conduct its in vivo function. In vitro, we show that the PspA-domain of IM30 is vital for stability/folding and oligomer formation of IM30 as well as for IM30-triggered membrane fusion. In contra…

0106 biological sciences0301 basic medicineVesicle-associated membrane protein 8ChloroplastsLipid BilayersBiophysicsBiology01 natural sciencesBiochemistryMembrane FusionThylakoidsArticle03 medical and health sciencesBacterial ProteinsProtein DomainsIntegral membrane proteinMembranesMembrane transport proteinPeripheral membrane proteinSynechocystisLipid bilayer fusionMembrane ProteinsCell BiologyCell biology030104 developmental biologyMembrane proteinMembrane biogenesisbiology.protein010606 plant biology & botanyMembrane Fusion ActivityProtein BindingBiochimica et biophysica acta. Bioenergetics
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Observations on midgut of Apis mellifera workers (Hymenoptera: Apoidea) under controlled acute exposures to a Bacillus thuringiensis-based biopestici…

2016

International audience; AbstractMorphostructural investigations have been carried out on Apis mellifera workers treated with single controlled acute exposures to a biopesticide containing Bacillus thuringiensis (Bt), to detect midgut changes until 96 h. Our findings show concentration-dependence of these changes, reflecting in different degrees on both mortality and behaviour. In particular, some midgut changes are also found 96 h after treatment. Our results show that the tested product does not affect survival at presumable environmental concentrations, so confirming the lesser toxicity of Bt-based biopesticides compared to other pesticides. However, in the light of the discovered long-te…

0106 biological sciences0301 basic medicineVeterinary medicinehoneybees[SDV]Life Sciences [q-bio]HymenopterahoneybeeBiology01 natural sciences03 medical and health sciencesBacillus thuringiensisBotanyBacillus thuringiensis var. aizawai/kurstakiBioassayskin and connective tissue diseasesBacillus thuringiensis var. aizawai /kurstakimorphostructural changesMidgutPesticidebiology.organism_classificationmortalitymorphostructural change3. Good healthApoidea010602 entomologyBiopesticide030104 developmental biologyhoneybees; Bacillus thuringiensis var. aizawai /kurstaki; bioassay; mortality; morphostructural changesbioassayInsect ScienceToxicitysense organs
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A Migratory Divide Among Red-Necked Phalaropes in the Western Palearctic Reveals Contrasting Migration and Wintering Movement Strategies

2019

Publisher's version (útgefin grein)

0106 biological sciences0301 basic medicineÓðinshanilcsh:EvolutionBird migrationmigration strategyMigració d'ocells01 natural sciencesSEXUAL SELECTIONOnderz. Form. D.ROUTESlcsh:QH359-425itinerancyComputingMilieux_MISCELLANEOUSPhalaropus lobatusCLIMATE-CHANGEPalearcticEcologybiologyEcologyBREEDING MOVEMENTSred-necked phalaropeWageningen Marine ResearchSITE FIDELITYBIRD MIGRATIONflexibilityGeographyHabitat[SDE]Environmental Sciences1181 Ecology evolutionary biologyTropical Eastern PacificPhalaropus lobatusClimate changeARRIVAL TIMES010603 evolutionary biology03 medical and health scienceslcsh:QH540-549.514. Life underwaterWaderLobatusEcology Evolution Behavior and SystematicsCONSEQUENCESBusiness Manager projecten Midden-NoordPaleàrticBirds migrationFuglafarbiology.organism_classificationPhalaropus lo batusLONG030104 developmental biologyVisplasticityWIASPeriod (geology)lcsh:EcologyLOBATUSBusiness Manager projects Mid-North
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