Search results for "Microbial ecotoxicology"

showing 10 items of 10 documents

Developing and evaluating tools for assessing the impact of low-dose herbicide nicosulfuron on soil microbial diversity and functioning

2013

Today's conventinal agriculture still relies on the general use of pesticides. Even thought this guarantees production capabilities it also causes environmental pollution having impact on non-targeted organisms. Agricultural practices have been recognized by "The European Soil Framework Directive" as a major threat for soil biodiversity. However, without taking into consideration. recent methodological advances in microbiology, pesticide regulation at EU level relying solely on simple C and N mineralization tè-sts•. ln order to cope with this ECOFUN­-MICROBIODIV project .aim to develop and evaluate tools to estimate the impact of herbicide nicosulfuron on the function and population dynamic…

[SDV] Life Sciences [q-bio][SDE] Environmental Sciences[SDV]Life Sciences [q-bio][SDE]Environmental Sciences[SDV.BV]Life Sciences [q-bio]/Vegetal Biology[SDV.BV] Life Sciences [q-bio]/Vegetal Biologymicrobial ecotoxicologypesticide
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DIAGSOL : development of a new functional marker of exposure to herbicides B-triketones in an agricultural soil

2020

Numerous herbicides target an enzyme found not only in weeds but also in « non-target organisms » such as microorganisms. This proof-of-concept study aims to use microbial gene encoding the targeted enzyme or the targeted enzyme itself as a marker for herbicide exposure in soils. The hppd gene and the encoded enzyme (HPPD; 4-hydroxyphenylpyruvate dioxygenase), targeted by B-triketone herbicides, are the subject of this study. In silico analyses reveal that the hppd gene is spread out in all bacterial phyla. Primers specific to this gene were designed. This primer pair is used to measure the abundance, the composition and the diversity of the hppd bacterial community in soil microcosms expos…

[SDV.SA]Life Sciences [q-bio]/Agricultural sciences[SDV.EE]Life Sciences [q-bio]/Ecology environment[SDV.SA] Life Sciences [q-bio]/Agricultural sciencesCommunautés microbiennesMicroorganismsMicrobial communitiesBiomarkerEnzyme HPPDOrganismes non-ciblesHPPD enzymeHerbicides β-Tricétones[SDV.EE] Life Sciences [q-bio]/Ecology environment[SDV.EE.ECO]Life Sciences [q-bio]/Ecology environment/EcosystemsBioessaiBiomarqueurNon-target organisms[SDV.EE.ECO] Life Sciences [q-bio]/Ecology environment/EcosystemsMicrobial hppd geneÉcotoxicologie microbienneBioassayMicroorganismeMicrobial ecotoxicologyΒ-Triketones herbicidesGène hppd microbien
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Response of soil bacterial and hppd communities to tembotrione herbicide

2022

Herbicides used in agriculture aim to prevent weed growth but are known to end up in contactwith soil microorganisms, thus defined as non-target organisms. Tembotrione, a recentlymarketed β-triketone herbicide, is known to inhibit the 4-HydroxyPhenylPyruvateDioxygenase(4-HPPD) in weeds. This enzyme is also found in numerous soil microorganisms, such as somePGPR and symbiotic bacteria, that play a key role in maintenance of ecosystem services.In this study, one of the major concerns is to assess whether tembotrione could have toxiceffects on soil microorganisms and could disturb soil microbial community dynamic andstructure. To investigate the possible impacts of this herbicide on these comm…

[SDV] Life Sciences [q-bio]microbial ecotoxicology;herbicide;soil bacterial communities;antibiotic resistance;tembotrione.
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Les herbicides β-tricétones : devenir et impact écotoxicologique dans les sols agricoles et caractérisation de souches bactériennes dégradantes

2016

P-triketone herbicides : fate and ecotoxicological impact in arable soils and characterization of degrading bacterial strains abstract :This work aims to describe the ecodynamics of synthetic (sulcotrione and mesotrione) and natural (leptospermone) -triketone herbicides and to estimate their ecotoxicological impact on the bacterial community in arable soils. The processes involved in the dissipation of these herbicides (adsorption and biodegradation) have been studied in soil microcosms. Two bacterial strains, Bradyrhizobium sp. SRl able to degrade sulcotrione and mesotrione, and Methylophilus sp. LS1 degrading leptospermone, have been isolated. A bank of 12 ooo mutants of Bradyrhizobium sp…

[SDE] Environmental Scienceseffets des herbicidesbiodégradationsolsbiodegradationécotoxicologie microbiennemicrobial ecotoxicologytriketone herbicides[SDV] Life Sciences [q-bio]herbicidesmétabolites[SDV.BV] Life Sciences [q-bio]/Vegetal Biologymicrobiologieherbicides-tricétonesécotoxicologiemetabolites
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Antibiotrophy: Key Function for Antibiotic-Resistant Bacteria to Colonize Soils—Case of Sulfamethazine-Degrading Microbacterium sp. C448

2021

Chronic and repeated exposure of environmental bacterial communities to anthropogenic antibiotics have recently driven some antibiotic-resistant bacteria to acquire catabolic functions, enabling them to use antibiotics as nutritive sources (antibiotrophy). Antibiotrophy might confer a selective advantage facilitating the implantation and dispersion of antibiotrophs in contaminated environments. A microcosm experiment was conducted to test this hypothesis in an agroecosystem context. The sulfonamide-degrading and resistant bacterium Microbacterium sp. C448 was inoculated in four different soil types with and without added sulfamethazine and/or swine manure. After 1 month of incubation, Micro…

Microbiology (medical)media_common.quotation_subject[SDV]Life Sciences [q-bio]lcsh:QR1-502Context (language use)010501 environmental sciencesBiology01 natural sciencesMicrobiologyCompetition (biology)lcsh:Microbiologymicrobial ecotoxicologysoil03 medical and health sciencessulfonamide[CHIM]Chemical SciencesFood scienceIncubation030304 developmental biology0105 earth and related environmental sciencesTrophic levelmedia_commonOriginal Research2. Zero hunger0303 health sciencesSoil classificationbacterial community invasionbiology.organism_classificationManureMicrocosmantibiotic biodegradationBacteria
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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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The impact of urban contamination on antibioresistance in microbial communities from periphyton and sediments

2020

International audience; Since the early 20's antibiotics have been massively produced and consumed for the benefit of bothhuman and animal health. Nevertheless, antibiotics have also reached the aquatic environmentthrough diffuse sources (e.g. veterinary treatment, contaminated manure application...) and throughwastewater. Consequently, antibiotics concentrations between the ng/L and μg/L range are regularlydetected in surface water and those molecules have also been found in sediments and aquatic biota.The ubiquitous presence of antibiotics exerts a selective pressure on microbial communities leading tothe acquisition and dissemination of antibioresistance in the environment. While both an…

[SDE.BE] Environmental Sciences/Biodiversity and Ecology[SDE.MCG] Environmental Sciences/Global ChangesPICTantibiotic[SDE.MCG]Environmental Sciences/Global ChangesantibiotrophyMicrobial ecotoxicology[SDE.BE]Environmental Sciences/Biodiversity and Ecologypharmaceutical residuepassive samplingbiofilm
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Impact of Leptospermone, a Natural β-Triketone Herbicide, on the Fungal Composition and Diversity of Two Arable Soils

2019

Impact of leptospermone, a β-triketone bioherbicide, was investigated on the fungal community which supports important soil ecological functions such as decomposition of organic matter and nutrients recycling. This study was done in a microcosm experiment using two French soils, Perpignan (P) and Saint-Jean-de-Fos (SJF), differing in their physicochemical properties and history treatment with synthetic β-triketones. Soil microcosms were treated with leptospermone at recommended dose and incubated under controlled conditions for 45 days. Untreated microcosms were used as control. Illumina MiSeq sequencing of the internal transcribed spacer region of the fungal rRNA revealed significant chang…

bioherbicidelcsh:QR1-502fungal communityleptospermonemicrobial ecotoxicologylcsh:MicrobiologysoilFrontiers in Microbiology
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Contrasting Effects of Environmental Concentrations of Sulfonamides on Microbial Heterotrophic Activities in Freshwater Sediments

2021

The sulfonamide antibiotics sulfamethoxazole (SMX) and sulfamethazine (SMZ) are regularly detected in surface sediments of contaminated hydrosystems, with maximum concentrations that can reach tens of μg kg–1 in stream and river sediments. Little is known about the resulting effects on the exposed benthic organisms. Here we investigated the functional response of stream sediment microbial communities exposed for 4 weeks to two levels of environmentally relevant concentrations of SMX and SMZ, tested individually. To this end, we developed a laboratory channel experiment where natural stream sediments were immersed in water contaminated with nominal environmental concentrations of 500 and 5,0…

Microbiology (medical)Biogeochemical cycleHeterotroph010501 environmental sciences01 natural sciencesMicrobiologymicrobial ecotoxicologysulfamethazine03 medical and health sciencesbeta-glucosidaseRespiration[CHIM]Chemical SciencesEcosystem030304 developmental biology0105 earth and related environmental sciencesOriginal Research0303 health sciencesbenthicsorptionChemistrysulfamethoxazoleSedimentbiogeochemical cyclesBiodegradationContamination6. Clean waterQR1-50213. Climate actionBenthic zoneEnvironmental chemistryβ-glucosidaserespirationFrontiers in Microbiology
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Impact of Leptospermone, a Natural β-Triketone Herbicide, on the Fungal Composition and Diversity of Two Arable Soils

2019

International audience; Impact of leptospermone, a β-triketone bioherbicide, was investigated on the fungal community which supports important soil ecological functions such as decomposition of organic matter and nutrients recycling. This study was done in a microcosm experiment using two French soils, Perpignan (P) and Saint-Jean-de-Fos (SJF), differing in their physicochemical properties and history treatment with synthetic β-triketones. Soil microcosms were treated with leptospermone at recommended dose and incubated under controlled conditions for 45 days. Untreated microcosms were used as control. Illumina MiSeq sequencing of the internal transcribed spacer region of the fungal rRNA re…

bioherbicide[SDV.MP]Life Sciences [q-bio]/Microbiology and Parasitologyfungal communityMicrobiologyleptospermonemicrobial ecotoxicologyOriginal Researchsoil
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