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RESEARCH PRODUCT
Copper Dynamics and Impact on Microbial Communities in Soils of Variable Organic Status
Jean M.f. MartinsDavid P. H. LejonLionel RanjardVirginie NowakRémi ChaussodMarie-jeanne MillouxNoémie PascaultLorenzo SpadiniDavid LandryJean Lévêquesubject
[SDE] Environmental SciencesSEQUENTIAL EXTRACTIONRELATION SOL MICROORGANISME[SDV]Life Sciences [q-bio]010501 environmental sciences01 natural sciencesTOXICITY[ SDE ] Environmental SciencesSoilRNA Ribosomal 16SSoil PollutantsAGRICULTURAL SOILSDNA FungalSoil MicrobiologyTriticumComputingMilieux_MISCELLANEOUS2. Zero hungerchemistry.chemical_classificationCopper toxicity04 agricultural and veterinary sciencesCONTAMINATED SOILS6. Clean waterEnvironmental chemistryVINEYARD SOILS[SDE]Environmental SciencesBACTERIAL COMMUNITIESMicrocosmSoil microbiologyDNA BacterialSEWAGE-SLUDGEAmendmentchemistry.chemical_elementGENETIC-STRUCTUREcomplex mixturesmedicineEnvironmental ChemistryOrganic matter0105 earth and related environmental sciencesSTRUCTURE DU GENOMESPACER ANALYSIS FINGERPRINTSGeneral Chemistrymedicine.diseaseCopperBioavailabilitychemistryDENSITYSoil water040103 agronomy & agriculture0401 agriculture forestry and fisheriesCopperdescription
International audience; The effect of soil organic status on copper impact was investigated by means of a microcosm study carried out on a vineyard soil that had been amended with varying types of organic matter during a previous long-term field experiment. Soil microcosms were contaminated at 250 mg Cu kg−1 and incubated for 35 days. Copper distribution and dynamics were assessed in the solid matrix by a sequential extraction procedure and in the soil solution by measuring total and free exchangeable copper concentrations. Copper bioavailability was also measured with a whole-cell biosensor. Modifications of microbial communities were assessed by means of biomass-C measurements and characterization of genetic structure using ARISA (automated-ribosomal-intergenic-spacer-analysis). The results showed that copper distribution, speciation, and bioavailability are strongly different between organically amended and nonamended soils. Surprisingly, in solution, bioavailable copper correlated with total copper but not with free copper. Similarly the observed differential copper impact on micro-organisms suggested that organic matter controlled copper toxicity. Bacterial-ARISA modifications also correlated with the estimated metal bioavailability and corresponded to the enrichment of the Actinobacteria. Contrarily, biomass-C and fungal-ARISA measurements did not relate trivially to copper speciation and bioavailability, suggesting that the specific composition of the indigenous-soil communities controls its sensitivity to this metal.
year | journal | country | edition | language |
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2008-01-01 |