Search results for "Microcosm"

showing 10 items of 102 documents

Spatial distribution of ammonia-oxidizing bacteria and archaea across a 44-hectare farm related to ecosystem functioning

2011

Characterization of spatial patterns of functional microbial communities could facilitate the understanding of the relationships between the ecology of microbial communities, the biogeochemical processes they perform and the corresponding ecosystem functions. Because of the important role the ammonia-oxidizing bacteria (AOB) and archaea (AOA) have in nitrogen cycling and nitrate leaching, we explored the spatial distribution of their activity, abundance and community composition across a 44-ha large farm divided into an organic and an integrated farming system. The spatial patterns were mapped by geostatistical modeling and correlations to soil properties and ecosystem functioning in terms …

[SDV]Life Sciences [q-bio]SoilAbundance (ecology)Soil pHsoil microcosmPhylogenySoil Microbiologyabundanceagricultural soilEcologyBetaproteobacteriaAgricultureHydrogen-Ion Concentrationnitrificationnitrate leaching[SDE]Environmental Sciencesammonia oxidationcommunityOriginal ArticleSoil microbiologyOxidation-ReductionPolymorphism Restriction Fragment LengthDNA BacterialBiogeochemical cycleoxidationNitrogengrowthBiologypatternMicrobiologydiversityscaleAmmoniaEcosystemNitrogen cycleEcology Evolution Behavior and SystematicsEcosystemNitritesNitratesBacteriaSoil carbonSequence Analysis DNAArchaeaaobCarbonaoanitrite reductaseGenes BacterialSpatial ecologyamoa
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1,2-DICHLOROETHANE CONTAMINATED AQUIFER: MICROBIAL COMMUNITY RESPONSE TO BIOSTIMULATION IN MICROCOSM

2022

anaerobic microcosm12-dichloroethane contaminated groundwaterbacterial communitiesSettore BIO/19 - Microbiologia Generale
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Responses of co-occurring populations of Dendrobaena octaedra (Lumbricidae) and Cognettia sphagnetorum (Enchytraeidae) to soil pH, moisture and resou…

2000

Summary Dendrobaena octaedra (Lumbricidae) and Cognettia sphagnetorum (Enchytraeidae) are the two most dominating soil invertebrates in terms of biomass in boreal coniferous forest soils. A microcosm experiment was set up in order to study the influence of pH, moisture and resource addition on D. octaedra and C. sphagnetorum when both species are simultaneously present. Two kinds of coniferous forest humus were used as substrate, pine stand humus (pH 4.2), and spruce stand humus (pH 4.6); in the third treatment the pine stand humus was adjusted with slaked lime (CaOH 2 ) to the same initial pH as the spruce stand humus. Each substrate was adjusted to water contents of 25%, 42.5% and 60% of …

biologyChemistrySoil ScienceSoil scienceEnchytraeidaePlant litterbiology.organism_classificationHumusAgronomySoil pHbiology.animalSoil waterLitterLumbricidaeMicrocosmEcology Evolution Behavior and SystematicsPedobiologia
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A microcosm experiment to evaluate the influence of location and quality of plant residues on residue decomposition and genetic structure of soil mic…

2007

The effects of location (soil surface vs. incorporated in soil) and nature of plant residues on degradation processes and indigenous microbial communities were studied by means of soil microcosms incubation in which the different soil zones influenced by decomposition i.e. residues, soil adjacent to residues (detritusphere) and distant soil unaffected by decomposition (bulk soil) were considered. Plant material decomposition, organic carbon assimilation by the soil microbial biomass and soil inorganic N dynamics were studied with 13 C labelled wheat straw and young rye. The genetic structure of the community in each soil zone were compared between residue locations and type by applying B- a…

carbon 13Crop residuecrop residuesMicroorganismRibosomal Intergenic Spacer analysis[SDV]Life Sciences [q-bio]Bulk soilarisaSoil Sciencemicrobal communities010501 environmental sciencesBiologymicrocosms01 natural sciencesMicrobiologycomplex mixturesbiodegradationResidue (chemistry)Organic matter0105 earth and related environmental sciences2. Zero hungerchemistry.chemical_classificationfood and beverages04 agricultural and veterinary sciences15. Life on landdetritusphereAgronomychemistryMicrobial population biology[SDE]Environmental Sciences040103 agronomy & agriculture0401 agriculture forestry and fisheriesMicrocosm
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Evaluation of the soil fauna impact on decomposition in a simulated coniferous forest soil

1990

Long-term experiments (ca. 2 years) were carried out in laboratory systems that simulated the complexity of a coniferous forest floor. The test materials were partially sterilized by freezing and thawing, and reinoculated with (1) microbes alone or (2) microbes with fauna. Removable microcosms containing birch litter, spruce litter, or humus were inserted into a humus substrate. Two experiments used organic matter only, and another included a layer of mineral soil below the humus. Both were incubated in climate chambers that simulated both summer and winter conditions. The evolution of CO2 was measured at regular intervals. In order to determine the C content of the leachates, the macrocosm…

chemistry.chemical_classificationForest floorSoil organic matterSoil biologySoil ScienceSoil chemistrySoil scienceMicrobiologyHumuschemistryEnvironmental chemistryEnvironmental scienceOrganic matterMicrocosmAgronomy and Crop ScienceWater contentBiology and Fertility of Soils
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Leaching of n and c from birch leaf litter and raw humus with special emphasis on the influence of soil fauna

1988

Abstract To examine the role of a community of soil animals in N-mineralization and C fluxes in dead organic matter, we established a microcosm system with substrates composed of: (a) birch leaf litter; (b) raw coniferous humus; and (c) litter on humus. Every 3–4 wks the substrates were irrigated with distilled water, and the amounts of NO5-N, NH4-N, total-N and total-C (as well as humic substances at one recording) in the leachates were analyzed. At the end of the experiment, water-soluble and exchangeable forms of N were measured in the test materials. The differences in the release of N were clear both between the replicates with and without soil animals and between the different forms o…

chemistry.chemical_classificationSoil biologyFaunaSoil ScienceLessivagePlant litterBiologyMicrobiologyHumuschemistryEnvironmental chemistryBotanyOrganic matterMicrocosmNitrogen cycleSoil Biology and Biochemistry
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A microcosm study on the respiration and weight loss in birch litter and raw humus as influenced by soil fauna

1988

The effect of diverse soil fauna (Collembola, Acari, Enchytraeidae, Nematoda) on decomposition of dead organic matter was studied in microcosms containing (1) birch leaf litter, (2) raw humus of coniferous forest and (3) litter on humus. Total respiration (CO2 evolution) was monitored weekly, and mass loss, length of fungal hyphae (total and metabolically active) and survival of animal populations were checked at the end of weeks 12 and 21–22 from the start of experiment. Animal populations established themselves well during the incubation. At the end of the experiment some replicates containing litter had microarthropod densities of up to 500 specimens per microcosm, corresponding to a fie…

chemistry.chemical_classificationbiologyFaunaSoil biologySoil ScienceEnchytraeidaePlant litterbiology.organism_classificationMicrobiologyHumusAnimal sciencechemistryBotanyLitterOrganic matterMicrocosmAgronomy and Crop ScienceBiology and Fertility of Soils
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Linking food webs to ecosystem processes: Piecewise linear models of soil microcosms

2008

Abstract A piecewise linear approach to link decomposer biomass and soil nitrogen dynamics is proposed. Dynamics of a detritus–fungus–nematode food chain were studied in a microcosm experiment and modelled to evaluate the role of fungal-feeding nematodes in N mineralization. The nematode dynamics switched from exponential growth to a resource-limited phase. At the same time the amount of ammonium nitrogen in soil started to increase, following an initial immobilization phase. Both nematode and ammonium dynamics could be described by two-phase linear equations. Two nitrogen models were compared. A model in which the nematode accounted for all mineralization could be fitted to the ammonium da…

chemistry.chemical_compoundFood chainAgronomychemistryEcological ModelingSoil waterEcosystemAmmoniumMineralization (soil science)BiologyMicrocosmNitrogen cycleDecomposerEcological Modelling
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Effect of Cd-containing wood ash on the microflora of coniferous forest humus

2000

The use of wood ash in forestry has been questioned because the cadmium (Cd) concentration of ash, which varies between 1 and 20 mg kg(-1) ash, exceeds the level allowed for fertilizers (3 mg kg(-1)) used in agriculture. To investigate the combined and separated effects of Cd and ash on the forest humus microflora, pumice or wood ash, spiked with a water-soluble (CdCl(2)) or -insoluble (CdO) form of Cd at three levels (0, 400 and 1000 mg kg(-1)), were applied at a fertilization level of 5000 kg ha(-1) in a laboratory microcosm study. The trial consisted of 60 microcosms (five replications per treatment), which were incubated in darkness at +20 degrees C and a constant relative air humidity …

chemistry.chemical_element010501 environmental sciencesBiology01 natural sciencesApplied Microbiology and BiotechnologyMicrobiologychemistry.chemical_compoundPumiceBotany0105 earth and related environmental sciences2. Zero hungerCadmiumEcologyWood ash04 agricultural and veterinary sciences15. Life on landSoil contamination6. Clean waterHumuschemistryMicrobial population biologyEnvironmental chemistry040103 agronomy & agriculture0401 agriculture forestry and fisheriesMicrocosmNutrient agarFEMS Microbiology Ecology
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Functional stability of the nitrate-reducing community in grassland soils towards high nitrate supply

2006

Abstract To study the effects of short-term fluctuation of nitrate concentrations on the nitrate-reducing community, repacked soil cores were amended with 0, 100 and 300 μ g NO 3 - ‐ N g - 1 soil and incubated for 3, 7 and 14 days, respectively. The nitrate reductase activity was determined in a laboratory-based enzyme assay. In parallel, the community structure of nitrate-reducing microorganisms was characterised by RFLP-PCR using the functional gene narG , which encodes the catalytic site of the membrane-bound nitrate reductase. The community structure remained constant over the experimental period indicating that this functional community is characterised by a high resistance towards flu…

denitrificationDenitrificationnitrate reductasemicrocosm experimentSoil SciencenarG gene[SDV.SA.SDS]Life Sciences [q-bio]/Agricultural sciences/Soil studyBiologyNitrate reductaseNitrite reductaseMicrobiologyEnzyme assaychemistry.chemical_compoundMicrobial population biologyNitratechemistryEnvironmental chemistryBotanySoil waterbiology.proteinrelation sol-microorganismeMicrocosmSoil Biology and Biochemistry
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