Search results for "RHIZOSPHERE"

showing 10 items of 112 documents

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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Microbial community composition but not diversity changes along succession in arctic sand dunes

2017

The generality of increasing diversity of fungi and bacteria across arctic sand dune succession was tested. Microbial communities were examined by high-throughput sequencing of 16S rRNA genes (bacteria) and internal transcribed spacer (ITS) regions (fungi). We studied four microbial compartments (inside leaf, inside root, rhizosphere and bulk soil) and characterized microbes associated with a single plant species (Deschampsia flexuosa) across two sand dune successional stages (early and late). Bacterial richness increased across succession in bulk soil and leaf endosphere. In contrast, soil fungal richness remained constant while root endosphere fungal richness increased across succession. …

0301 basic medicineRhizospherebiologyEcologyfungiBulk soilfood and beveragesEcological successionbiology.organism_classificationMicrobiologySand dune stabilization03 medical and health sciences030104 developmental biologyMicrobial population biologyDeschampsia flexuosaBotanyEcosystemSpecies richnessEcology Evolution Behavior and SystematicsEnvironmental Microbiology
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Fungal community assemblage of different soil compartments in mangrove ecosystem

2017

AbstractThe fungal communities of different soil compartments in mangrove ecosystem are poorly studied. We sequenced the internal transcribed spacer (ITS) regions to characterize the fungal communities in Avicennia marina root-associated soils (rhizosphere and pneumatophore) and bulk soil compartments. The rhizosphere but not pneumatophore soil compartment had significantly lower fungal species richness than bulk soil. However, bulk soil fungal diversity (Shannon diversity index) was significantly higher than both pneumatophore and rhizosphere soil compartments. The different soil compartments significantly affected the fungal community composition. Pairwise sample analyses showed that bulk…

0301 basic medicinemangrove ecosystemsNitrogenScienceBulk soilfungal communitiescomplex mixturesPlant RootsArticle03 medical and health sciencespneumatophoresSoiljuuristoBotanyDNA Ribosomal SpacerEcosystemEcosystemSoil MicrobiologyRhizospheremaaperäMultidisciplinarybiologyEcologyQmangrovetRFungiSoil chemistryeliöyhteisötSequence Analysis DNAbiology.organism_classificationCarbonekosysteemit (ekologia)030104 developmental biologyAvicennia marinaSoil waterRhizosphereMedicineSpecies richnessAvicenniarhizospheresienetSoil microbiologyMycobiomeScientific Reports
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Fluorescent pseudomonads harboring type III secretion genes are enriched in the mycorrhizosphere of Medicago truncatula

2011

Type III secretion systems (T3SSs) of Gram-negative bacteria mediate direct interactions with eukaryotic cells. Pseudomonas spp. harboring T3SS genes (T3SS+) were previously shown to be more abundant in the rhizosphere than in bulk soil. To discriminate the contribution of roots and associated arbuscular mycorrhizal fungi (AMF) on the enrichment of T3SS+ fluorescent pseudomonads in the rhizosphere of Medicago truncatula, their frequency was assessed among pseudomonads isolated from mycorrhizal and nonmycorrhizal roots and from bulk soil. T3SS genes were identified by PCR targeting a conserved hrcRST DNA fragment. Polymorphism of hrcRST in T3SS+ isolates was assessed by PCR-restriction fragm…

0303 health sciencesRhizosphereEcology030306 microbiologyPseudomonasBulk soilMycorrhizospherePseudomonas fluorescensbiochemical phenomena metabolism and nutritionBiologybacterial infections and mycosesbiology.organism_classificationApplied Microbiology and BiotechnologyMicrobiologyMedicago truncatulaMicrobiology03 medical and health sciencesBotanybacteriaMycorrhizaSoil microbiology030304 developmental biologyFEMS Microbiology Ecology
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Chapter 4 Iron Dynamics in the Rhizosphere

2008

Abstract Iron is an essential micronutrient for most organisms due to its role in fundamental metabolic processes. In cultivated soils, soil solution iron is mostly oxidized [Fe(III) species] unless local anoxic conditions develop. The concentration of these Fe(III) species is small in soil solution due to the low solubility of ferric oxides, oxyhydroxides, and hydroxides, which is minimal at neutral and alkaline pH. In the rhizosphere, iron concentration in the soil solution is even lower because of its uptake by aerobic organisms (plants and microorganisms), leading to a high level of competition for Fe(III). In order to face iron competition, these organisms have evolved active uptake st…

0303 health sciencesRhizosphereMicroorganismmedia_common.quotation_subject04 agricultural and veterinary sciences15. Life on landBiologyMicronutrientAnoxic watersCompetition (biology)03 medical and health sciences13. Climate actionBotanySoil water040103 agronomy & agriculturemedicine0401 agriculture forestry and fisheriesFerricPlant nutrition030304 developmental biologymedicine.drugmedia_common
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Diversity of root-associated fluorescent pseudomonads as affected by ferritin overexpression in tobacco

2007

A transgenic tobacco overexpressing ferritin (P6) was recently shown to accumulate more iron than the wild type (WT), leading to a reduced availability of iron in the rhizosphere and shifts in the pseudomonad community. The impact of the transgenic line on the community of fluorescent pseudomonads was assessed. The diversity of 635 isolates from rhizosphere soils, rhizoplane + root tissues, and root tissues of WT and P6, and that of 98 isolates from uncultivated soil was characterized. Their ability to grow under iron stress conditions was assessed by identifying their minimal inhibitory concentrations of 8-hydroxyquinoline for each isolate, pyoverdine diversity by isoelectrofocusing and ge…

0303 health sciencesRhizosphereSiderophorePyoverdinebiology030306 microbiologyWild typebiology.organism_classificationMicrobiologyMicrobiologyFerritin03 medical and health scienceschemistry.chemical_compoundchemistrybiology.proteinPythium aphanidermatumAntagonismPathogenEcology Evolution Behavior and Systematics030304 developmental biologyEnvironmental Microbiology
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Effect of ferritin overexpression in tobacco on the structure of bacterial and pseudomonad communities associated with the roots

2006

The genetic structures of total bacterial and pseudomonad communities were characterized in rhizosphere soil and rhizoplane+root tissues of tobacco wild type and a ferritin overexpressor transgenic line (P6) by a cultivation-independent method using directly extracted DNA at the end of three consecutive plant cultures. The structure of total bacterial communities was characterized by automated ribosomal intergenic spacer analysis (A-RISA), and that of pseudomonad communities was characterized by PCR-restriction fragment length polymorphism (PCR-RFLP) from DNA amplified with specific primers. The structure of total bacterial communities was significantly modified in the rhizosphere soil by t…

2. Zero hunger0303 health sciencesRhizosphereEcologybiologyRibosomal Intergenic Spacer analysisNicotiana tabacum04 agricultural and veterinary sciencesbiology.organism_classificationApplied Microbiology and BiotechnologyMicrobiologyMicrobiologyFerritin03 medical and health sciencesGenotypeBotany040103 agronomy & agriculturebiology.protein0401 agriculture forestry and fisheriesRestriction fragment length polymorphismSolanaceaeBacteria030304 developmental biologyFEMS Microbiology Ecology
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Microdiversity of Burkholderiales associated with mycorrhizal and nonmycorrhizal roots of Medicago truncatula

2008

The genetic diversity of bacterial communities associated with mycorrhizal and nonmycorrhizal roots of Medicago truncatula was characterized by two approaches. Firstly, phylogenetic analysis was performed on 164 partial 16S rRNA gene-intergenic spacer (IGS) sequences from operational taxonomic units previously shown to be preferentially associated with mycorrhizal roots. These sequences were distributed into three branches corresponding to Comamonadaceae, Oxalobacteraceae and Rubrivivax subgroups. Most sequences were obtained from mycorrhizal roots, indicating the preferential association of the corresponding families with mycorrhizal roots. A second phylogenetic analysis was performed on t…

2. Zero hunger0303 health sciencesRhizosphereMedicagoEcologybiology030306 microbiologyContext (language use)15. Life on landbiology.organism_classificationApplied Microbiology and BiotechnologyMicrobiologyMedicago truncatulaComamonadaceae03 medical and health sciencesBurkholderialesBotanyMycorrhiza030304 developmental biologyOxalobacteraceaeFEMS Microbiology Ecology
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Fitness in soil and rhizosphere of Pseudomonas fluorescens C7R12 compared with a C7R12 mutant affected in pyoverdine synthesis and uptake.

2000

International audience; Fluorescent pseudomonads have evolved an efficient strategy of iron uptake based on the synthesis of the siderophore pyoverdine and its relevant outer membrane receptor. The possible implication of pyoverdine synthesis and uptake on the ecological competence of a model strain (Pseudomonas fluorescens C7R12) in soil habitats was evaluated using a pyoverdine minus mutant (PL1) obtained by random insertion of the transposon Tn5. The Tn5 flanking DNA was amplified by inverse PCR and sequenced. The nucleotide sequence was found to show a high level of identity with pvsB, a pyoverdine synthetase. As expected, the mutant PL1 was significantly more susceptible to iron starva…

2. Zero hunger0303 health sciencesRhizosphereSiderophorePyoverdineEcologybiology030306 microbiologyMutantPseudomonas fluorescensbiology.organism_classificationApplied Microbiology and BiotechnologyMicrobiologyMicrobiology03 medical and health scienceschemistry.chemical_compound[SDV.MP]Life Sciences [q-bio]/Microbiology and ParasitologychemistryPseudomonadalesBacterial outer membrane030304 developmental biologyPseudomonadaceaeFEMS microbiology ecology
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Chapter 12 Role of Iron in Plant–Microbe Interactions

2009

Iron is an essential micronutrient for plants and associated microorganisms. Iron nutrition of these organisms relies on the soil supply. However, bioavailability of iron in cultivated soils is low. Plants and microorganisms have thus evolved active strategies of iron uptake based on acidification, chelation, and/or reduction processes. Iron acquisition by these organisms leads to complex interactions ranging from mutualism to competition. In the rhizosphere, plants support abundant and active microbial communities through the release of rhizodeposits. Iron uptake by these microorganisms and by the host plant decrease even more the concentration of iron in solution. Therefore, there is an i…

2. Zero hungerMutualism (biology)0303 health sciencesRhizosphereSiderophore030306 microbiologyMicroorganismfungifood and beveragesVirulencePlant microbeBiologyMicronutrient03 medical and health sciencesBotanyPlant defense against herbivory030304 developmental biology
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