Search results for "Clima"

showing 10 items of 6069 documents

Plants assemble species specific bacterial communities from common core taxa in three arcto-alpine climate zones

2017

Evidence for the pivotal role of plant-associated bacteria to plant health and productivity has accumulated rapidly in the last years. However, key questions related to what drives plant bacteriomes remain unanswered, among which is the impact of climate zones on plant-associated microbiota. This is particularly true for wild plants in arcto-alpine biomes. Here, we hypothesized that the bacterial communities associated with pioneer plants in these regions have major roles in plant health support, and this is reflected in the formation of climate and host plant specific endophytic communities. We thus compared the bacteriomes associated with the native perennial plants Oxyria digyna and Saxi…

0301 basic medicineMicrobiology (medical)PH030106 microbiologyDIVERSITYBiologySaxifraga oppositifoliaMicrobiologyActinobacteriabiogeographical diversity03 medical and health sciencesarcto-alpine plantBotanyGRADIENTMICROBIAL COMMUNITIESOxyria digynaOriginal Research2. Zero hungerOxyria digynaSaxifraga oppositifoliaPioneer speciesSEQUENCESEcologyfungiAlpine climatefood and beveragesRHIZOSPHERE15. Life on landENDOPHYTIC BACTERIAbiology.organism_classificationcore bacteriomeTUNDRABurkholderialesendophytic bacteria030104 developmental biologySOIL TYPEta1181ProteobacteriaAcidobacteriaBIOGEOGRAPHYFrontiers in Microbiology
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Influence of Altered Microbes on Soil Organic Carbon Availability in Karst Agricultural Soils Contaminated by Pb-Zn Tailings.

2018

Soil organic carbon (SOC) availability is determined via a complex bio-mediated process, and Pb-Zn tailings are toxic to the soil microbes that are involved in this process. Here, Pb-Zn-tailings- contaminated karst soils with different levels (paddy field > corn field > citrus field > control group) were collected to explore the intrinsic relationship between Pb-Zn tailings and microbes due to the limited microbial abundance in these soils. The SOC concentration in the paddy fields is the highest. However, based on the soil microbial diversity and sole-carbon-source utilization profiles, the rate of SOC availability, McIntosh index, Shannon-Wiener diversity index, Simpson’s diversi…

0301 basic medicineMicrobiology (medical)Pb-Zn tailingsbiologylcsh:QR1-502Soil carbonbiology.organism_classificationMicrobiologyTailingskarst surface soillcsh:MicrobiologyActinobacteriasoil organic carbon03 medical and health sciencesDiversity index030104 developmental biologyAgronomylong-term acclimationSoil waterPaddy fieldEnvironmental scienceProteobacteriamicrobial communityAcidobacteriaFrontiers in microbiology
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Strong regionality and dominance of anaerobic bacterial taxa characterize diazotrophic bacterial communities of the arcto-alpine plant species Oxyria…

2017

Arctic and alpine biomes are most often strongly nitrogen-limited, and hence biological nitrogen fixation is a strong driver of these ecosystems. Both biomes are characterized by low temperatures and short growing seasons, but they differ in seasonality of solar radiation and in soil water balance due to underlying permafrost in the Arctic. Arcto-alpine plant species are well-adapted to the low temperatures that prevail in their habitats, and plant growth is mainly limited by the availability of nutrients, in particular nitrogen, due to slow mineralization. Nitrogen fixing bacteria are likely important for plant growth in these habitats, but very little is known of these bacteria or forces …

0301 basic medicineMicrobiology (medical)endofyytitAlpine plantlcsh:QR1-502TUSSOCK TUNDRASaxifraga oppositifoliaMicrobiologylcsh:MicrobiologyCHINACARBON03 medical and health sciencesBotanyNIFH GENEDominance (ecology)Oxyria digynaOriginal Research2. Zero hungerClostridiumRhizospherePioneer speciesbiologynifHEcologySHRUBSta1183food and beverages15. Life on landbiology.organism_classificationNITROGEN-FIXING BACTERIASOILendophytic bacteria030104 developmental biologymikrobistoArctic13. Climate actiontypensidontaNitrogen fixationta1181GeobacterHIGH DIVERSITYpioneer plantsFrontiers in Microbiology
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Wine microbiome : A dynamic world of microbial interactions

2015

International audience; Most fermented products are generated by a mixture of microbes. These microbial consortia perform various biological activities responsible for the nutritional, hygienic, and aromatic qualities of the product. Wine is no exception. Substantial yeast and bacterial biodiversity is observed on grapes, and in both must and wine. The diverse microorganisms present interact throughout the winemaking process. The interactions modulate the hygienic and sensorial properties of the wine. Many studies have been conducted to elucidate the nature of these interactions, with the aim of establishing better control of the two fermentations occurring during wine processing. However, …

0301 basic medicineMicroorganism030106 microbiologyInteractionsWineBiologyIndustrial and Manufacturing Engineering03 medical and health sciencesYeasts[SDV.IDA]Life Sciences [q-bio]/Food engineeringMicrobiomeWinemakingWineBacteriabusiness.industryMicrobiotadigestive oral and skin physiology[ SDV.IDA ] Life Sciences [q-bio]/Food engineeringfood and beveragesGeneral MedicineYeastBiotechnology13. Climate actionFermentationFood MicrobiologyCo-culturebusinessFood Science
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Large Blooms of Bacillales (Firmicutes) Underlie the Response to Wetting of Cyanobacterial Biocrusts at Various Stages of Maturity.

2018

ABSTRACT Biological soil crusts (biocrusts) account for a substantial portion of primary production in dryland ecosystems. They successionally mature to deliver a suite of ecosystem services, such as carbon sequestration, water retention and nutrient cycling, and climate regulation. Biocrust assemblages are extremely well adapted to survive desiccation and to rapidly take advantage of the periodic precipitation events typical of arid ecosystems. Here we focus on the wetting response of incipient cyanobacterial crusts as they mature from “light” to “dark.” We sampled a cyanobacterial biocrust chronosequence before (dry) and temporally following a controlled wetting event and used high-throug…

0301 basic medicineNutrient cycle16SLife on LandChronosequenceBeta diversityFirmicutesEcological successionecological succession[ SDV.MP.BAC ] Life Sciences [q-bio]/Microbiology and Parasitology/BacteriologyMicrobiologybiological soil crustresistance03 medical and health sciencesVirologyEcosystemSoil MicrobiologyEcosystemRibosomalBacillalesResistance (ecology)EcologyfungiBiological soil crustfood and beveragespulsed-activity event15. Life on landcarbon lossstabilityArid[SDV.MP.BAC]Life Sciences [q-bio]/Microbiology and Parasitology/BacteriologyQR1-502030104 developmental biology13. Climate actionEnvironmental scienceRNAecosystem services
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Parasites in the changing world – Ten timely examples from the Nordic-Baltic region

2020

Publisher's version (útgefin grein)

0301 basic medicineOriginal Research articleEpidemiologyHost030231 tropical medicineClimate change:Basale biofag: 470 [VDP]Baseline data030108 mycology & parasitologylcsh:Infectious and parasitic diseasesPeer reviewEuropeParasite03 medical and health sciencesSníklar0302 clinical medicineInfectious DiseasesGeography:Basic biosciences: 470 [VDP]Climate changelcsh:RC109-216ParasitologyLoftslagsbreytingarEnvironmental planningSelection (genetic algorithm)
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The influence of oxygen and methane on nitrogen fixation in subarctic Sphagnum mosses

2018

Biological nitrogen fixation is an important source of bioavailable nitrogen in Sphagnum dominated peatlands. Sphagnum mosses harbor a diverse microbiome including nitrogen-fixing and methane (CH4) oxidizing bacteria. The inhibitory effect of oxygen on microbial nitrogen fixation is documented for many bacteria. However, the role of nitrogen-fixing methanotrophs in nitrogen supply to Sphagnum peat mosses is not well explored. Here, we investigated the role of both oxygen and methane on nitrogen fixation in subarctic Sphagnum peat mosses. Five species of Sphagnum mosses were sampled from two mesotrophic and three oligotrophic sites within the Lakkasuo peatland in Orivesi, central Finland. Mo…

0301 basic medicinePeatMethane oxidationPeatlandSphagnum mosslcsh:Biotechnology030106 microbiologyBiophysicslcsh:QR1-502chemistry.chemical_elementDiazotrophyApplied Microbiology and BiotechnologySphagnum16S rRNA amplicon sequencinglcsh:Microbiology03 medical and health sciencesdiazotrophylcsh:TP248.13-248.65rRNAGeneralLiterature_REFERENCE(e.g.dictionariesencyclopediasglossaries)Biomass (ecology)biologyamplicon sequencingmethane oxidationAlphaproteobacteria15. Life on landbiology.organism_classificationSubarctic climateNitrogenOxygen030104 developmental biologyhappichemistry13. Climate actionEnvironmental chemistryEcological MicrobiologyAnaerobic oxidation of methaneNitrogen fixationpeatlandOriginal ArticleAMB Express
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Microbial diversity along a gradient in peatlands treating mining-affected waters.

2018

Peatlands are used for the purification of mining-affected waters in Northern Finland. In Northern climate, microorganisms in treatment peatlands (TPs) are affected by long and cold winters, but studies about those microorganisms are scarce. Thus, the bacterial, archaeal and fungal communities along gradients of mine water influence in two TPs were investigated. The TPs receive waters rich in contaminants, including arsenic (As), sulfate (SO42-) and nitrate (NO3-). Microbial diversity was high in both TPs, and microbial community composition differed between the studied TPs. Bacterial communities were dominated by Proteobacteria, Actinobacteria, Chloroflexi and Acidobacteria, archaeal commu…

0301 basic medicinePeatmetal toleranceMicroorganismta1172030106 microbiologyMicrobial metabolismBiologyApplied Microbiology and BiotechnologyMicrobiologyMiningwetlandsActinobacteriaWater Purificationkosteikot03 medical and health sciencessulfate reductionfungal ITScontaminant removalturvemaatFinlandSoil Microbiologyjäteveden käsittelykaivostoimintaEcologyBacteriaMicrobiotaFungiBiodiversity15. Life on landbiology.organism_classificationArchaeabiodiversiteetti030104 developmental biologyMicrobial population biology13. Climate actionEnvironmental chemistrymikro-organismitkaivosvesiProteobacteriaSoil microbiologyWater Pollutants ChemicalAcidobacteriaFEMS microbiology ecology
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Prenatal Ambient Air Pollution, Placental Mitochondrial DNA Content, and Birth Weight in the INMA (Spain) and ENVIRONAGE (Belgium) Birth Cohorts

2016

The research leading to these results was funded by the Spanish Ministry of Health (FIS-PI11/00610, FIS-PI041436, FIS-PI081151, FIS-PI042018, and FIS-PI09/02311), the European Union (EU) (FP7-ENV-2011 cod 282957 and HEALTH.2010.2.4.5-1), the Instituto de Salud Carlos III (Red INMA G03/176, CB06/02/0041, FIS-FEDER 03/1615, 04/1509, 04/1112, 04/1931, 05/1079, 05/1052, 06/1213, 07/0314, 09/02647, 11/01007, 11/02591, CP11/00178, FIS-PI06/0867, and FIS-PS09/00090), the Conselleria de Sanitat Generalitat Valenciana, the Generalitat de Catalunya-CIRIT (1999SGR 00241), the Obre Social Cajastur, the Universidad de Oviedo, the Department of Health of the Basque Government (2005111093 and 2009111069),…

0301 basic medicinePediatrics:Phenomena and Processes::Physiological Phenomena::Body Constitution::Body Weights and Measures::Body Size::Body Weight::Birth Weight [Medical Subject Headings]:Phenomena and Processes::Physiological Phenomena::Physiological Processes::Growth and Development::Morphogenesis::Embryonic and Fetal Development::Fetal Development [Medical Subject Headings]Health Toxicology and MutagenesisPlacentaEspañaPhysiology:Diseases::Pathological Conditions Signs and Symptoms::Pathologic Processes::Growth Disorders::Fetal Growth Retardation [Medical Subject Headings]ADN mitocondrial010501 environmental sciencesMitochondrion01 natural sciencesFetal DevelopmentBélgicaPregnancyBirth Weightskin and connective tissue diseasesPeso al nacerNews | Science SelectionsMitocondrias:Phenomena and Processes::Reproductive and Urinary Physiological Phenomena::Reproductive Physiological Phenomena::Reproductive Physiological Processes::Reproduction::Pregnancy [Medical Subject Headings]:Anatomy::Cells::Cellular Structures::Intracellular Space::Cytoplasm::Cytoplasmic Structures::Organelles::Mitochondria [Medical Subject Headings]2. Zero hunger:Geographicals::Geographic Locations::Europe::Spain [Medical Subject Headings]Air PollutantsAmbient air pollutionAire -- ContaminacióFemenino3. Good healthmedicine.anatomical_structureMaternal ExposureFemaleBirth cohort:Health Care::Environment and Public Health::Public Health::Environmental Pollution::Air Pollution [Medical Subject Headings]Mitochondrial DNAmedicine.medical_specialtyModelos LinealesEmbarazoBirth weightInfants -- DesenvolupamentBiology:Chemicals and Drugs::Inorganic Chemicals::Gases::Nitrogen Oxides::Nitrogen Dioxide [Medical Subject Headings]DNA Mitochondrial:Phenomena and Processes::Genetic Phenomena::Genetic Structures::Genome::Genome Components::Genes::Genes Mitochondrial [Medical Subject Headings]03 medical and health sciencesAir pollutantsPlacentaAir PollutionmedicineHumans:Geographicals::Geographic Locations::Europe::Belgium [Medical Subject Headings]:Analytical Diagnostic and Therapeutic Techniques and Equipment::Investigative Techniques::Epidemiologic Methods::Statistics as Topic::Models Statistical::Linear Models [Medical Subject Headings]Contaminación del aire0105 earth and related environmental sciencesRetardo del crecimiento fetal:Chemicals and Drugs::Nucleic Acids Nucleotides and Nucleosides::Nucleic Acids::DNA::DNA Circular::DNA Mitochondrial [Medical Subject Headings]Genes mitocondrialesPregnancyPublic Health Environmental and Occupational HealthDesarrollo fetalmedicine.disease:Anatomy::Embryonic Structures::Placenta [Medical Subject Headings]030104 developmental biology:Check Tags::Female [Medical Subject Headings]13. Climate actionSpainsense organsDióxido de nitrógeno
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Human-Driven Microbiological Contamination of Benthic and Hyporheic Sediments of an Intermittent Peri-Urban River Assessed from MST and 16S rRNA Gene…

2017

International audience; Rivers are often challenged by fecal contaminations. The barrier effect of sediments against fecal bacteria was investigated through the use of a microbial source tracking (MST) toolbox, and by Next Generation Sequencing (NGS) of V5-V6 16S rRNA gene (rrs) sequences. Non-metric multi-dimensional scaling analysis of V5-V6 16S rRNA gene sequences differentiated bacteriomes according to their compartment of origin i.e., surface water against benthic and hyporheic sediments. Classification of these reads showed the most prevalent operating taxonomic units (OTU) to be allocated to Flavobacterium and Aquabacterium. Relative numbers of Gaiella, Haliangium, and Thermoleophilu…

0301 basic medicinePollutionMicrobiology (medical)benthic and hyporheic sedimentsmedia_common.quotation_subject[SDV]Life Sciences [q-bio]030106 microbiologyFECA CONTAMINATIONBiologyMicrobiologyarn ribosomal 16s03 medical and health sciencesperi-urban riverzone hyporhéique14. Life underwatermedia_commonOriginal ResearchEcologyBENTHIC AND HYPORHEIC SEDIMENTSMICROBIAL COMMUNITYHIGH THROUGH PUT SEQUENCING (HTS)zone benthiquebiology.organism_classification6. Clean waterFecal coliformAquabacteriumhigh throughput sequencing (HTS)Microbial population biology13. Climate actionBenthic zonefecal contaminationperi-urban river;benthic and hyporheic sediments;microbial community;high throughput sequencing (HTS);fecal contaminationcontamination biologiquePERI-URBAN RIVERCombined sewermicrobial communitySurface waterFlavobacterium
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