Search results for "microbial"

showing 10 items of 2041 documents

Acclimatised rumen culture for raw microalgae conversion into biogas: Linking microbial community structure and operational parameters in anaerobic m…

2019

[EN] Ruminal fluid was inoculated in an Anaerobic Membrane Reactor (AnMBR) to produce biogas from raw Scenedesmus. This work explores the microbial ecology of the system during stable operation at different solids retention times (SRT). The 16S rRNA amplicon analysis revealed that the acclimatised community was mainly composed of Anaerolineaceae, Spirochaetaceae, Lentimicrobiaceae and Cloacimonetes fermentative and hydrolytic members. During the highest biodegradability achieved in the AnMBR (62%) the dominant microorganisms were Fervidobacterium and Methanosaeta. Different microbial community clusters were observed at different SRT conditions. Interestingly, syntrophic bacteria Gelria and …

0106 biological sciencesRumenEnvironmental EngineeringMicroorganismBioengineering010501 environmental sciencesWaste Disposal Fluid01 natural sciencesMethanosaetaBioreactorsBiogasMicrobial ecologyBioenergyRNA Ribosomal 16S010608 biotechnologyMicroalgaeBioreactorAnimalsAnaerobiosisWaste Management and DisposalTECNOLOGIA DEL MEDIO AMBIENTE0105 earth and related environmental sciencesbiologyAnaerobic membrane bioreactor (AnMBR)Renewable Energy Sustainability and the EnvironmentChemistryMicrobiotaGeneral MedicineBiogasMicroalgaeBiodegradationbiology.organism_classificationPulp and paper industryMicrobial population biologyBiofuels16S rRNA geneMethaneBioresource Technology
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Soil health through soil disease suppression: Which strategy from descriptors to indicators?

2007

International audience; Soil is a component of primary importance in crop production, even if it is often neglected, or only regarded as a physical support for the growth of plants. However, with the increasing societal concerns for the sustainability of agriculture, soil must be considered as a living system. Its quality results from the multiple interactions among physicochemical and biological components, notably the microbial communities, primordial for soil function. Crops are threatened by soil-borne diseases. These are often difficult to control, because of the “hidden” status of the pathogens and also because of the absence, noxiousness or lack of efficacy of chemical treatments. In…

0106 biological sciencesSOIL QUALITYmedia_common.quotation_subjectdata analysisSOIL HEALTHmicrobial communitiesSoil ScienceContext (language use)BIOTIC AND ABIOTIC FACTORS[SDV.SA.SDS]Life Sciences [q-bio]/Agricultural sciences/Soil studycomplex mixtures01 natural sciencesMicrobiologyDATA ANALYSISdisease suppressionCULTURAL PRACTICESCultural practiceQuality (business)soil qualityMICROBIAL COMMUNITIESINDICATORmedia_commoncultural practicesbiotic and abiotic factors2. Zero hungerSoil healthsoil healthbusiness.industryEcologyindicatorEnvironmental resource managementDISEASE SUPPRESSIONSANTE DU SOL04 agricultural and veterinary sciences15. Life on landSoil qualityAgricultureSustainability040103 agronomy & agriculture0401 agriculture forestry and fisheriesEnvironmental sciencebusiness010606 plant biology & botanyDiversity (politics)Soil Biology and Biochemistry
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Sphingomonas solaris sp. nov., isolated from a solar panel in Boston, Massachusetts

2020

Solar panel surfaces, although subjected to a range of extreme environmental conditions, are inhabited by a diverse microbial community adapted to solar radiation, desiccation and temperature fluctuations. This is the first time a new bacterial species has been isolated from this environment. Strain R4DWNT belongs to the genus Sphingomonas and was isolated from a solar panel surface in Boston, MA, USA. Strain R4DWNT is a Gram-negative, non-motile and rod-shaped bacteria that tested positive for oxidase and catalase and forms round-shaped, shiny and orange-coloured colonies. It is mesophilic, neutrophilic and non-halophilic, and presents a more stenotrophic metabolism than its closest neighb…

0106 biological sciencesSphingomonas formosensisBiologymedicine.disease_cause7. Clean energy010603 evolutionary biology01 natural sciencesMicrobiology03 medical and health sciencesTaxonomic DescriptionBotanymedicineEcology Evolution Behavior and Systematics030304 developmental biologySphingomonas fennica0303 health sciencesStrain (chemistry)food and beveragesGeneral Medicinebiology.organism_classificationSphingomonas16S ribosomal RNA3. Good healthMicrobial population biology13. Climate actionBacteriaMesophile
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Genome sequence of the pea aphid Acyrthosiphon pisum

2010

The genome of the pea aphid shows remarkable levels of gene duplication and equally remarkable gene absences that shed light on aspects of aphid biology, most especially its symbiosis with Buchnera.

0106 biological sciencesTANDEM REPEATSGenome InsectGene TransferRRES175Sequència genòmicaFaculty of Science\Computer ScienceCPG METHYLATION01 natural sciencesGenomeMedical and Health SciencesInternational Aphid Genomics ConsortiumBiologiska vetenskaperBiology (General)GENE-EXPRESSION2. Zero hungerGenetics0303 health sciencesAphidGenomeAfídidsGeneral NeuroscienceGENOME SEQUENCEfood and beveragesDROSOPHILA CIRCADIAN CLOCKBiological SciencesGenetics and Genomics/Microbial Evolution and GenomicsINSECTEGenètica microbianapuceronAPIS-MELLIFERAGeneral Agricultural and Biological SciencesInfectionsymbioseBiotechnologyResearch ArticleVIRUS VECTORING175_GeneticsSYMBIOTIC BACTERIAGene Transfer HorizontalQH301-705.5ACYRTHOSIPHON PISUMBiologyHOLOMETABOLOUS INSECTSHOST-PLANT010603 evolutionary biologyGENOME SEQUENCE;PEA APHID;ACYRTHOSIPHON PISUM;INSECT-PLANT;HOST-PLANT;VIRUS VECTORING;PHENOTYPIC PLASTICITY;HOLOMETABOLOUS INSECTS;INSECTE;RAVAGEUR DES CULTURES; SOCIAL INSECTGeneral Biochemistry Genetics and Molecular BiologyHorizontal03 medical and health sciencesBuchneraPHENOTYPIC PLASTICITYINSECT-PLANTGeneticsGene familyLife ScienceAnimalsSymbiosisGene030304 developmental biologyWhole genome sequencingGeneral Immunology and MicrobiologyAnnotation; Aphid; Genome sequenceAgricultural and Veterinary Sciences175_EntomologyGenètica animalBacteriocytegénomegèneHuman GenomePEA APHIDBiology and Life Sciences15. Life on landbiochemical phenomena metabolism and nutritionbiology.organism_classificationREPETITIVE ELEMENTSDNA-SEQUENCESAcyrthosiphon pisumGenome SequenceGenetics and Genomics/Genome ProjectsRAVAGEUR DES CULTURESAphidsPHEROMONE-BINDINGBuchneraInsectDevelopmental Biology[SDV.EE.IEO]Life Sciences [q-bio]/Ecology environment/Symbiosis
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Changes in the physiological and agricultural characteristics of peat-based Bradyrhizobium japonicum inoculants after long-term storage

2000

International audience; Commercial soybean inoculants processed with sterilised peat and stored at 20 °C for 1–8 years were used as experimental materials to assess the changes in the physiological activity of Bradyrhizobium japonicum after storage. Viable counts decreased and physiological characteristics of the bacterium changed during storage, with an increase in the time taken for colony appearance on a medium without yeast extract, an increase in the lag time for nodule appearance on soybean grown in glass tubes and a decrease in survival on seeds. All the inoculants produced a significant increase in grain yield in a field experiment. The percentage of efficient cells in the field (re…

0106 biological sciencesTime FactorsField experimentMicroorganismColony Count MicrobialBiologyRhizobacteria01 natural sciencesApplied Microbiology and Biotechnology03 medical and health sciencesYeast extractBradyrhizobiumDesiccation[SDV.MP] Life Sciences [q-bio]/Microbiology and ParasitologyMicrobial inoculantSoil Microbiology2. Zero hunger0303 health sciences030306 microbiologyCrop yieldfood and beveragesSoil classificationGeneral Medicinebiology.organism_classificationHorticulture[SDV.MP]Life Sciences [q-bio]/Microbiology and ParasitologyAgronomySoybeans010606 plant biology & botanyBiotechnologyBradyrhizobium japonicumApplied Microbiology and Biotechnology
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The antioxidant power of horseradish, Armoracia rusticana, underlies antimicrobial and antiradical effects, exerted in vitro

2018

Armoracia rusticana (AR) was tested for antimicrobial and antioxidants power. The compound demonstrated to inhibit fish pathogens such as Vibrio anguillarum, V. harvey, V. alginolyticus, Aeromonas hydrophila, A. salmonicida, Photobacterium damselae subspecie piscicida, Tenacibaculum marinum and Pseudomonas anguilliseptica,. The total phenolic content and the reducing power resulted higher in the water extract of AR, respect to the hydroalcoolic. In vitro test demonstrated that AR significantly protect cells against death, induced by oxidative stress.

0106 biological sciencesVibrio anguillarumantioxidantAntioxidantmedicine.medical_treatmentPlant Sciencemedicine.disease_cause01 natural sciencesBiochemistryAnalytical ChemistryMicrobiology0404 agricultural biotechnologySettore AGR/20 - ZoocoltureSettore BIO/10 - Biochimica010608 biotechnologymedicineTenacibaculumPseudomonas anguillisepticacell culturebiologyChemistryArmoracia rusticanaOrganic Chemistry04 agricultural and veterinary sciencesAntimicrobialbiology.organism_classification040401 food sciencebacterial fish diseaseAeromonas hydrophilaPhotobacterium damselaeaquacultureantimicrobialOxidative stress
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Characterization of the biodegradation, bioremediation and detoxification capacity of a bacterial consortium able to degrade the fungicide thiabendaz…

2017

Thiabendazole (TBZ) is a persistent fungicide used in the post-harvest treatment of fruits. Its application results in the production of contaminated effluents which should be treated before their environmental discharge. In the absence of efficient treatment methods in place, biological systems based on microbial inocula with specialized degrading capacities against TBZ could be a feasible treatment approach. Only recently the first bacterial consortium able to rapidly transform TBZ was isolated. This study aimed to characterize its biodegradation, bioremediation and detoxification potential. The capacity of the consortium to mineralize 14C-benzyl-ring labelled TBZ was initially assessed. …

0106 biological sciences[SDE] Environmental SciencesBioaugmentationEnvironmental Engineering[SDV]Life Sciences [q-bio]Microbial ConsortiaBioengineering010501 environmental sciences01 natural sciencesMicrobiologychemistry.chemical_compoundBioremediation010608 biotechnologyDetoxificationThiabendazoleEnvironmental Chemistry[SDV.BV]Life Sciences [q-bio]/Vegetal Biology[SDV.BV] Life Sciences [q-bio]/Vegetal BiologyFood sciencePesticides0105 earth and related environmental sciencesBacteriabusiness.industryDiphenylamineTemperaturePesticideBiodegradationHydrogen-Ion ConcentrationPollutionBiotechnologyFungicide[SDV] Life Sciences [q-bio]Biodegradation Environmentalchemistry[SDE]Environmental SciencesPostharvestbusiness
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Microbial communities as ecological indicators of ecosystem recovery following chemical pollution

2017

International audience; ‘Ecosystem recovery’ is a concept that emerged from the need to preserve our environment against increasing contamination from human activity. However, ecological indicators of ecosystem recovery remain scarce, and it is still difficult to assess recovery of ecological processes at relevant spatial and temporal scales. Microbial communities hold key relevance as indicators of ecosystem recovery as they are ubiquitous among diverse ecosystems, respond rapidly to environmental changes, and support many ecosystem functions and services through taxonomic and functional biodiversity. This chapter summarizes the state-of-the-art in knowledge on the processes driving the st…

0106 biological sciences[SDE] Environmental SciencesNatural environment010501 environmental sciences01 natural sciences11. SustainabilityBIOMONITORINGEcotoxicologyEcosystemMICROBIAL ECOTOXICOLOGYTemporal scales0105 earth and related environmental sciencesEnvironmental risk assessmentbusiness.industryEcology010604 marine biology & hydrobiologyScale (chemistry)Environmental resource managementChemical pollutionENVIRONMENTAL RISK ASSESSMENT15. Life on landEcological indicator13. Climate action[SDE]Environmental SciencesEnvironmental scienceMICROBIAL RECOVERYbusiness
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Defoliation-induced changes in carbon allocation and root soluble carbon concentration in field-grown Lolium perenne plants: do they affect carbon av…

2005

Summary 1It is hypothesized that defoliation-induced changes in plant carbon allocation and root soluble C concentration modify rhizosphere C availability and, further, the abundance and activity of soil microbes and their grazers. To test this hypothesis, field-grown Lolium perenne swards were defoliated twice during their second growing season at two nitrogen availabilities (added N or no added N). Plant, soil and microbial attributes were measured 2 and 4 days after the last defoliation, and nematode abundance was measured 6 days after the last defoliation. 2Defoliation decreased shoot production in plots where N was added, but had no significant effect in plots where N was not added. Ro…

0106 biological sciences[SDE] Environmental Sciences[SDV]Life Sciences [q-bio]Growing season010603 evolutionary biology01 natural sciencesLolium perennePoaceaeEcology Evolution Behavior and SystematicsComputingMilieux_MISCELLANEOUS2. Zero hungerRhizosphereBiomass (ecology)RAY GRASS ANGLAISbiology04 agricultural and veterinary sciences15. Life on landbiology.organism_classification[SDV] Life Sciences [q-bio]Microbial population biologyAgronomyShootSoil water[SDE]Environmental Sciences040103 agronomy & agriculture0401 agriculture forestry and fisheriesPLANTE POUR HERBAGE
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Detection and Characterization of Wolbachia Infections in Natural Populations of Aphids: Is the Hidden Diversity Fully Unraveled?

2011

Copyright © 2011 Augustinos et al. This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited. Aphids are a serious threat to agriculture, despite being a rather small group of insects. The about 4,000 species worldwide engage in highly interesting and complex relationships with their microbial fauna. One of the key symbionts in arthropods is Wolbachia, an a-Proteobacterium implicated in many important biological processes and believed to be a potential tool for biological control. Aphids were thought not to harbour W…

0106 biological sciences[SDV]Life Sciences [q-bio]FaunaPopulation DynamicsBiological pest controllcsh:MedicineWolbachia InfectionsPolymerase Chain Reaction01 natural sciencesRNA Ribosomal 16SGenotypelcsh:SciencePhylogenyreproductive and urinary physiologyGenetics0303 health sciencesMultidisciplinaryfood and beveragesAgricultureWolbachiaWolbachiaResearch ArticleGenotypeMolecular Sequence DataAgro-Population EcologyZoologyBiologyDNA RibosomalMicrobiology010603 evolutionary biologyMicrobial Ecology03 medical and health sciencesPhylogeneticsparasitic diseasesGenetic variationAnimalsBiologyAlleles030304 developmental biologyEvolutionary Biologylcsh:RBacterial TaxonomyGenetic VariationBacteriologybiochemical phenomena metabolism and nutritionRibosomal RNAbiology.organism_classificationOrganismal EvolutionAphidsMicrobial EvolutionbacteriaMultilocus sequence typinglcsh:QGram-Negative Bacterial InfectionsZoologyEntomologyAgroecologyMultilocus Sequence TypingPLoS ONE
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