Search results for "BRUNNEUS"

showing 4 items of 4 documents

Cohabitation of tree holes by ants and breeding birds in a temperate deciduous forest

2015

A previously unknown association of ants with birds breeding in tree holes is described. Ants Lasius brunneus Latreille (Hymenoptera: Formicidae) were found in c. 15% of nests of Parus major L. and Poecile palustris L. (Paridae) breeding in tree holes in the primeval deciduous forest located in the Białowieża National Park (Poland). The ants preferably used holes located higher above the ground. As such holes are warmer than the unused holes or other nest sites, it is suggested that the ants cohabit holes utilized by the tits to gain thermal benefits.

0106 biological sciencesParusbiologyNational parkved/biologyEcologyLasius brunneus05 social sciencesved/biology.organism_classification_rank.speciesForestryHymenopterabiology.organism_classificationTemperate deciduous forest010603 evolutionary biology01 natural sciencesPoecile palustrisLasius brunneusDeciduousmicroclimate of tree holesNestParus major0501 psychology and cognitive sciencesPoecile palustrisBiałowieża National Park050102 behavioral science & comparative psychologyScandinavian Journal of Forest Research
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Data from: Ancient symbiosis confers desiccation resistance to stored grain pest beetles

2017

Microbial symbionts of insects provide a range of ecological traits to their hosts that are beneficial in the context of biotic interactions. However, little is known about insect symbiont-mediated adaptation to the abiotic environment, e.g. temperature and humidity. Here we report on an ancient clade of intracellular, bacteriome-located Bacteroidetes symbionts that are associated with grain and wood pest beetles of the phylogenetically distant families Silvanidae and Bostrichidae. In the saw-toothed grain beetle Oryzaephilus surinamensis, we demonstrate that the symbionts affect cuticle thickness, melanization and hydrocarbon profile, enhancing desiccation resistance and thereby strongly i…

BlattabacteriumAhasvaerus advenaHoloceneBacteroidetesDinoderus bifoveolatusfungiRhizopertha dominicafood and beveragesbiochemical phenomena metabolism and nutritionLife sciencessymbiosisOryzaephilus mercatorProstephanus truncatusmedicine and health caregrain pest beetlesdesiccationSulcia muelleriOryzaephilus surinamensisMedicinecuticleDinoderus porcellusLyctus brunneus
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An exceptional outbreak of Macroscytus brunneus (Fabricius, 1803) (Hemiptera: Heteroptera: Cydnidae) on Linosa island (Pelagian Islands, Sicily)

2018

An exceptional outbreak of the burrowing bug Macroscytus brunneus occurred in summer 2017 on Linosa island (Pelagian Islands, Sicily). Huge numbers of specimens, attracted to the lights of the small village, interfered heavily with human activities for almost three months. The few precedent cases reported in literature are reviewed.

Hemiptera Heteroptera Cydnidae Macroscytus brunneus outbreak Linosa Pelagian Islands Sicily Italy.Settore AGR/11 - Entomologia Generale E Applicata
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The Independent Biological Activity of Bacillus thuringiensis Cry23Aa Protein Against Cylas puncticollis

2020

The Cry23Aa/Cry37Aa proteins from Bacillus thuringiensis (Bt) have been described toxic to Cylas puncticollis larvae. In general, it is believed that Cry23Aa and Cry37Aa act jointly to exert the insecticidal activity, while there is no evidence of their toxicity individually. Therefore, in the present study, the contribution of each protein in the insecticidal activity toward C. puncticollis larvae has been assessed. The results showed that both proteins were toxic for C. puncticollis larvae when tested individually. Contrary to what was claimed previously, our results suggest that the presence of both proteins is not necessary to exert toxicity against C. puncticollis larvae. Also, the bin…

Microbiology (medical)Agriculture and Food SciencesSWEET-POTATO WEEVILlcsh:QR1-502sweet potato weevilsbinary toxinMicrobiologylcsh:Microbiology03 medical and health sciencesmode of actioninsecticidal proteinsBacillus thuringiensisBioassayCry37AaBinding siteSPHAERICUS TOXINMode of action030304 developmental biologybinding assay0303 health sciencesPore-forming toxinLarvabiology030306 microbiologyCRYSTAL PROTEINCOMPONENTSfungiMidgutBiological activityBORDER MEMBRANE-VESICLESENTOMOPATHOGENIC FUNGIbiology.organism_classificationEFFICACYBiochemistrybioassayCOLEOPTERABRUNNEUSRESISTANCEFrontiers in Microbiology
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