Search results for "I+D+I"

showing 10 items of 26665 documents

Changes in freshwater sediment microbial populations during fermentation of crude glycerol

2020

This work was supported by the Latvian Council of Science , project NN-CARMA, project No. lzp-2018/1-0194.

0106 biological sciences0301 basic medicineFirmicutesMicroorganismlcsh:BiotechnologyMicroorganismsFirmicutes01 natural sciencesApplied Microbiology and BiotechnologyActinobacteriaButyric acid03 medical and health scienceschemistry.chemical_compound010608 biotechnologylcsh:TP248.13-248.65:NATURAL SCIENCES:Physics [Research Subject Categories]GlycerolFood sciencelcsh:QH301-705.5ClostridiumCrude glycerolbiologyFreshwater sediment microbial populations fermentationbiology.organism_classification6. Clean waterActinobacteriaqPCR030104 developmental biologychemistryMicrobial population biologylcsh:Biology (General)Biodiesel productionFermentationAnaerobic fermentationGammaproteobacteriaBiotechnologyElectronic Journal of Biotechnology
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Isolation of acetic, propionic and butyric acid-forming bacteria from biogas plants.

2015

In this study, acetic, propionic and butyric acid-forming bacteria were isolated from thermophilic and mesophilic biogas plants (BGP) located in Germany. The fermenters were fed with maize silage and cattle or swine manure. Furthermore, pressurized laboratory fermenters digesting maize silage were sampled. Enrichment cultures for the isolation of acid-forming bacteria were grown in minimal medium supplemented with one of the following carbon sources: Na(+)-dl-lactate, succinate, ethanol, glycerol, glucose or a mixture of amino acids. These substrates could be converted by the isolates to acetic, propionic or butyric acid. In total, 49 isolates were obtained, which belonged to the phyla Firm…

0106 biological sciences0301 basic medicineFirmicutesSilageSwineClostridium cochleariumMolecular Sequence DataBioengineeringBacillusReal-Time Polymerase Chain Reaction01 natural sciencesApplied Microbiology and BiotechnologyDNA RibosomalZea maysMicrobiologyButyric acid03 medical and health sciencesAcetic acidchemistry.chemical_compoundBioreactors010608 biotechnologyRNA Ribosomal 16SAnimalsThermoanaerobacterium thermosaccharolyticumPhylogenyAcetic AcidDNA PrimersClostridiumSilagebiologyBacteriaBase SequenceGeneral Medicinebiology.organism_classificationLactic acidManure030104 developmental biologychemistryBiofuelsFermentationButyric AcidCattlePropionatesBacteriaGenome BacterialBiotechnologyJournal of biotechnology
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Ancient DNA reveals the Arctic origin of Viking Age cod from Haithabu, Germany

2017

Knowledge of the range and chronology of historic trade and long-distance transport of natural resources is essential for determining the impacts of past human activities on marine environments. However, the specific biological sources of imported fauna are often difficult to identify, in particular if species have a wide spatial distribution and lack clear osteological or isotopic differentiation between populations. Here, we report that ancient fish-bone remains, despite being porous, brittle, and light, provide an excellent source of endogenous DNA (15-46%) of sufficient quality for whole-genome reconstruction. By comparing ancient sequence data to that of modern specimens, we determine …

0106 biological sciences0301 basic medicineFishingPopulationchromosomal inversionFisheriesContext (language use)fish bone010603 evolutionary biology01 natural sciencesBone and Bones03 medical and health sciencesGermanygenomicsGadusAnimalsDNA AncienteducationAtlantic OceanEcosystemeducation.field_of_studyMultidisciplinarybiologyGeographyEcologyArctic RegionsFossilsNorwayhigh-throughput sequencingBiological Sciencesbiology.organism_classificationHistory MedievalUnited Kingdom030104 developmental biologyGeographyAncient DNAArcticGadus morhuaViking AgeAtlantic codtrade
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Notulae to the Italian flora of algae, bryophytes, fungi and lichens: 4

2017

In this contribution, new data concerning bryophytes, fungi and lichens of the Italian flora are presented. It includes new records and confirmations for the bryophyte generaCampylopus,Paludella,Tortula, andConocephalum, the fungal generaAgonimia,Buelliella,Entorrhiza,Filicupula,Poronia, andSporisorium, the lichen generaCladonia,Dibaeis,Lasallia, andRhizocarpon.

0106 biological sciences0301 basic medicineFloraAscomycota Basidiomycota Bryidae Marchantiidae floristic dataPlant Science01 natural sciencesBryidae03 medical and health sciencesfloristic dataAlgaeAscomycotalcsh:BotanyBotanyLichenBryidaeEcology Evolution Behavior and SystematicsbiologyAscomycotaBasidiomycotaBasidiomycota030108 mycology & parasitologybiology.organism_classificationlcsh:QK1-989GeographyMarchantiidaeMarchantiidae010606 plant biology & botanyItalian Botanist
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Notulae to the Italian flora of algae, bryophytes, fungi and lichens: 7

2019

In this contribution, new data concerning algae, bryophytes, fungi, and lichens of the Italian flora are presented. It includes new records and confirmations for the algae genusChara, the bryophyte generaCephalozia,Conardia,Conocephalum,Didymodon,Sphagnum,Tetraplodon, andTortula, the fungal generaEndophyllum,Gymnosporangium,Microbotryum,Phragmidium, andPluteus, and the lichen generaCandelariella,Cladonia,Flavoplaca,Lichenothelia,Peltigera,Placolecis,Rinodina,Scytinium, andSolenopsora.

0106 biological sciences0301 basic medicineFloraCharophyceaeJungermanniidaeAscomycota; Basidiomycota; Bryidae; Charophyceae; JungermanniidaePlant Science010603 evolutionary biology01 natural sciencesBryidae03 medical and health sciencesAlgaeAscomycotalcsh:BotanyJungermanniidaeBotanyLichenAscomycota Basidiomycota Bryidae Charophyceae JungermanniidaeBryidaeEcology Evolution Behavior and SystematicsbiologyAscomycotaBasidiomycotaLichens taxonomy floraCharophyceaeBasidiomycota030108 mycology & parasitologybiology.organism_classificationlcsh:QK1-989
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Opposite trends in the genus Monsonia (Geraniaceae): Specialization in the African deserts and range expansions throughout eastern Africa

2017

The African Austroerate Flora stands out by its important species richness. A distinctive element of this flora is Monsonia (Geraniaceae), mostly found in the Namib-Karoo but also in the Natal-Drakensberg, the Somalian Zambezian and the Saharo-Arabian regions. Here, we reconstruct the evolution and biogeographic history of Monsonia based on nuclear and plastid markers, and examine the role of morphological and niche evolution in its diversification using species distribution modeling and macroevolutionary models. Our results indicate that Monsonia first diversified in the Early Miocene c.21 Ma, coinciding with the start of desertification in southwestern Africa. An important diversification…

0106 biological sciences0301 basic medicineFloraRange (biology)Species distributionBiomelcsh:MedicineBiology010603 evolutionary biology01 natural sciencesArticle03 medical and health sciencesGenusPhotosynthesislcsh:ScienceEcosystemGeraniaceaePhylogenyMultidisciplinaryGeographyEcologylcsh:RBiodiversity030104 developmental biologyTaxonHabitatAfricalcsh:QSpecies richnessDesert ClimateEnergy Metabolism
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Chironomus riparius(Diptera) genome sequencing reveals the impact of minisatellite transposable elements on population divergence

2016

AbstractActive transposable elements (TEs) may result in divergent genomic insertion and abundance patterns among conspecific populations. Upon secondary contact, such divergent genetic backgrounds can theoretically give rise to classical Dobzhansky-Muller incompatibilities (DMI), a way how TEs can contribute to the evolution of endogenous genetic barriers and eventually population divergence. We investigated whether differential TE activity created endogenous selection pressures among conspecific populations of the non-biting midgeChironomus riparius,focussing on aChironomus-specific TE, the minisatellite-likeCla-element, whose activity is associated with speciation in the genus. Using an …

0106 biological sciences0301 basic medicineGenome Insectved/biology.organism_classification_rank.speciesPopulationGenomicsMinisatellite RepeatsBiologyPolymorphism Single Nucleotide010603 evolutionary biology01 natural sciencesGenomeChironomidaeDNA sequencingEvolution Molecular03 medical and health sciencesNegative selectionGeneticsAnimalseducationIn Situ Hybridization FluorescenceEcology Evolution Behavior and SystematicsLocal adaptationGeneticsChironomus ripariuseducation.field_of_studyPolytene chromosomeved/biologyfood and beveragesGenetics Population030104 developmental biologyMinisatelliteEvolutionary biologyDNA Transposable ElementsFemaleMolecular Ecology
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The complete plastid genome of the middle Asian endemic of Stipa lipskyi (Poaceae)

2016

AbstractThe structure of the Stipa lipskyi (GenBank accession no. KT692644) plastid genome is similar to that of closely related Poaceae species: it has a total length of 137 755 bp, the base composition of the plastome is the following: A (30.7%), C (19.3%), G (19.4%) and T (30.5%). The S. lipskyi plastid genome contains 71 genes, excluding second IR region. A complete plastome sequence of S. lipskyi will help the development of primers for examining phylogeny and hybridization events in this taxonomically difficult genus.

0106 biological sciences0301 basic medicineGenome PlastidBiologyGenes PlantPoaceae010603 evolutionary biology01 natural sciencesGenomeEvolution Molecular03 medical and health sciencesGenusPhylogeneticsBotanyGeneticsplastid genomePlastidMolecular BiologyGeneHybridizationPhylogenyBase CompositionStipaSequence Analysis DNAbiology.organism_classification030104 developmental biologyChloroplast DNAGenBankStipa
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Application of high resolution melting assay (HRM) to study temperature-dependent intraspecific competition in a pathogenic bacterium

2017

AbstractStudies on species’ responses to climate change have focused largely on the direct effect of abiotic factors and in particular temperature, neglecting the effects of biotic interactions in determining the outcome of climate change projections. Many microbes rely on strong interference competition; hence the fitness of many pathogenic bacteria could be a function of both their growth properties and intraspecific competition. However, due to technical challenges in distinguishing and tracking individual strains, experimental evidence on intraspecific competition has been limited so far. Here, we developed a robust application of the high-resolution melting (HRM) assay to study head-to…

0106 biological sciences0301 basic medicineGenotypeClimate ChangeScienceintraspecific competitionmedia_common.quotation_subject030106 microbiologyZoologymedicine.disease_causeFlavobacterium010603 evolutionary biology01 natural sciencesArticleCompetition (biology)Intraspecific competitionHigh Resolution Melt03 medical and health sciencesmedicineAnimalsmedia_commonAbiotic componentMultidisciplinarybiologyStrain (chemistry)EcologyQFishesTemperatureRpathogenic bacteriaPathogenic bacteriabiology.organism_classificationhigh-resolution melting (HRM) assay13. Climate actionFlavobacterium columnareMedicinelämpötilaGenetic FitnessBacteriaScientific Reports
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Repeated evolution of camouflage in speciose desert rodents

2017

AbstractThere are two main factors explaining variation among species and the evolution of characters along phylogeny: adaptive change, including phenotypic and genetic responses to selective pressures, and phylogenetic inertia, or the resemblance between species due to shared phylogenetic history. Phenotype-habitat colour match, a classic Darwinian example of the evolution of camouflage (crypsis), offers the opportunity to test the importance of historical versus ecological mechanisms in shaping phenotypes among phylogenetically closely related taxa. To assess it, we investigated fur (phenotypic data) and habitat (remote sensing data) colourations, along with phylogenetic information, in t…

0106 biological sciences0301 basic medicineGenotypeScienceevoluutioZoologyColorBiology010603 evolutionary biology01 natural sciencesArticle03 medical and health sciencesPhylogeneticscamouflageAnimalsAnimal FurEcosystemPhylogenyPhylogenetic inertiaMultidisciplinaryPhylogenetic treeBiological MimicryQRspeciose desert rodents15. Life on landbiology.organism_classificationGerbillusBiological Evolution030104 developmental biologyTaxonPhenotypeHabitatCamouflageCrypsisMedicineGerbillinae
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