Search results for "sinorhizobium"

showing 10 items of 13 documents

Impact of sewage sludges on Medicago truncatula symbiotic proteome

2004

The effects of sewage sludges were investigated on the symbiotic interactions between the model plant Medicago truncatula and the arbuscular mycorrhizal fungus Glomus mosseae or the rhizobial bacteria Sinorhizobium meliloti. By comparison to a control sludge showing positive effects on plant growth and root symbioses, sludges enriched with polycylic aromatic hydrocarbons or heavy metals were deleterious. Symbiosis-related proteins were detected and identified by two-dimensional electrophoresis and matrix-assisted laser desorption ionization mass spectrometry, and image analysis was used to study the effects of sewage sludges on M. truncatula symbiotic proteome.

0106 biological sciencesProteomeSewagePlant ScienceHorticulture01 natural sciencesBiochemistryPeptide Mapping12. Responsible consumption03 medical and health sciencesSymbiosisMycorrhizaeBotanyMedicagoElectrophoresis Gel Two-DimensionalMycorrhizaSymbiosisMolecular BiologyGlomusComputingMilieux_MISCELLANEOUS[SDV.BV.PEP] Life Sciences [q-bio]/Vegetal Biology/Phytopathology and phytopharmacy030304 developmental biologyPlant Proteins0303 health sciencesSinorhizobium melilotibiologySewagebusiness.industryfungifood and beveragesGeneral MedicineHydrogen-Ion Concentrationbiology.organism_classification6. Clean waterMedicago truncatula[SDV.BV.PEP]Life Sciences [q-bio]/Vegetal Biology/Phytopathology and phytopharmacySpectrometry Mass Matrix-Assisted Laser Desorption-IonizationProteomebusinessSludge010606 plant biology & botanySinorhizobium meliloti
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CyaC, a redox-regulated adenylate cyclase of Sinorhizobium meliloti with a quinone responsive diheme-B membrane anchor domain.

2019

The nucleotide cyclase CyaC of Sinorhizobium meliloti is a member of class III adenylate cyclases (AC), a diverse group present in all forms of life. CyaC is membrane-integral by a hexahelical membrane domain (6TM) with the basic topology of mammalian ACs. The 6TM domain of CyaC contains a tetra-histidine signature that is universally present in the membrane anchors of bacterial diheme-B succinate-quinone oxidoreductases. Heterologous expression of cyaC imparted activity for cAMP formation from ATP to Escherichia coli, whereas guanylate cyclase activity was not detectable. Detergent solubilized and purified CyaC was a diheme-B protein and carried a binuclear iron-sulfur cluster. Single poin…

Amino Acid Transport SystemsAdenylate kinasemedicine.disease_causeMicrobiologyCyclase03 medical and health sciencesmedicineBenzoquinonesNucleotideHistidineAmino Acid SequenceMolecular BiologyEscherichia coliHistidine030304 developmental biologychemistry.chemical_classification0303 health sciencesSinorhizobium melilotibiology030306 microbiologyEscherichia coli ProteinsGuanylate cyclase activityQuinonesMembrane Proteinsbiology.organism_classificationchemistryBiochemistryGenes BacterialHeterologous expressionOxidation-ReductionAdenylyl CyclasesSinorhizobium melilotiMolecular microbiology
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Direct conjugal transfers of Ti plasmid to soil microflora

2002

The bacterial species in soil that can receive a Ti plasmid by conjugation from Agrobacterium spp. were investigated. In order to have direct access to the potential reservoir of Ti plasmid amongst soil microflora, the conjugal system consisting of a multiply auxotrophic derivative of C58 (ST-96-4) and a derivative of pTiC58Delta(acc)R (pSTiEGK) containing a triple antibiotic-resistance cassette in traM was used to transfer the Ti plasmid in a complex soil microflora used as the recipient. Numerous transconjugants were obtained by this method but none was identified as Agrobacterium. This could be explained by the low density of Agrobacterium in the tested soil. As indicated by analysis of …

DNA BacterialAgrobacteriumSequence analysisAuxotrophy[SDV]Life Sciences [q-bio]Molecular Sequence DataMicrobial Sensitivity TestsPolymerase Chain ReactionMicrobiology03 medical and health sciencesTi plasmidRNA Ribosomal 16SGenetics[SDV.BBM] Life Sciences [q-bio]/Biochemistry Molecular Biology[SDV.BBM]Life Sciences [q-bio]/Biochemistry Molecular BiologyEcology Evolution Behavior and SystematicsPhylogenySoil MicrobiologyComputingMilieux_MISCELLANEOUS030304 developmental biologyDNA Primers0303 health sciencesbiologyBase Sequence030306 microbiologyDrug Resistance MicrobialSequence Analysis DNARibosomal RNAbiology.organism_classificationSinorhizobiumConjugation GeneticMicrobial geneticsSoil microbiologyPolymorphism Restriction Fragment LengthPlasmidsRhizobium
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Conservation of type III secretion system genes inBradyrhizobiumisolated from soybean

2006

International audience; The distribution of rhcRST genes encoding the type III secretion system (T3SS) in a collection of Bradyrhizobium strains was characterized by PCR and Southern blot hybridization. The polymorphism of the corresponding sequences amplified by PCR was characterized by RFLP and sequencing together with those available in the databank. Genomic group I is characterized by the presence of Bradyrhizobium elkanii strains and group II by the presence of B. japonicum and B. liaoningense strains. Highly conserved T3SS-like genes were detected by PCR in all Bradyrhizobium strains isolated from soybean belonging to genomic group II, and in none of the strains belonging to genomic g…

DNA BacterialGenotyperhc genessinorhizobiumhrc genesMicrobiologyBradyrhizobiummicroorganisme du sollaw.invention03 medical and health scienceslawGeneticsRELATION PLANTE-MICROORGANISMESymbiosisMolecular BiologyGenePhylogenyBradyrhizobium elkaniiPolymerase chain reaction030304 developmental biologySouthern blotGenetics0303 health sciencesBase Sequencebradyrhizobiumbiologymesorhizobium030306 microbiologyGenetic transferbiochemical phenomena metabolism and nutritionRibosomal RNAbiology.organism_classificationtype III secretion system-T3SSRNA BacterialPhenotype[SDV.MP]Life Sciences [q-bio]/Microbiology and ParasitologyGenes BacterialRNA RibosomalbacteriaSoybeansRestriction fragment length polymorphismPolymorphism Restriction Fragment LengthFEMS Microbiology Letters
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Occurrence of rhizobia in the gut of the higher termite Nasutitermes nigriceps

2006

Wood-eating termites feed on a diet highly deficient in nitrogen. They must complement their diet with the aid of nitrogen-fixing bacteria. Nitrogen fixation in the gut has been demonstrated, but information about nitrogen-fixing bacteria in pure culture is scarce. From the higher termite Nasutitermes nigriceps the symbiotic bacterial strain M3A was isolated, which thrives in the hindgut contents. The Gram-negative strain exhibited similarities to the species of the genus Ensifer (including Sinorhizobium) on the basis of morphological and physiological/biochemical features. The 16S rRNA gene analysis showed the highest sequence similarity of the isolate M3A to Ensifer adhaerens (>99%; ATCC …

DNA BacterialRhizobiaceaeMolecular Sequence DataSinorhizobiumIsopteraRhizobiaApplied Microbiology and BiotechnologyMicrobiologyDNA RibosomalTermitesMicrobiologyRhizobiaIntestinal floraNitrogen fixationRhizobiaceaeRNA Ribosomal 16SBotanyNasutitermesAnimalsSymbiosisEcology Evolution Behavior and SystematicsPhylogenySoil MicrobiologybiologyStrain (chemistry)Fatty AcidsPlants16S ribosomal RNAbiology.organism_classificationEnsiferSinorhizobiumNitrogen fixationDigestive SystemBacteriaSystematic and Applied Microbiology
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Quantification of denitrifying bacteria in soils by nirK gene targeted real-time PCR.

2004

Abstract Denitrification, the reduction of nitrate to nitrous oxide or dinitrogen, is the major biological mechanism by which fixed nitrogen returns to the atmosphere from soil and water. Microorganisms capable of denitrification are widely distributed in the environment but little is known about their abundance since quantification is performed using fastidious and time-consuming MPN-based approaches. We used real-time PCR to quantify the denitrifying nitrite reductase gene (nirK), a key enzyme of the denitrifying pathway catalyzing the reduction of soluble nitrogen oxide to gaseous form. The real-time PCR assay was linear over 7 orders of magnitude and sensitive down to 102 copies by assa…

Microbiology (medical)Fastidious organismDNA BacterialDenitrificationNitrite ReductasesMicroorganismMolecular Sequence DataRhodobacter sphaeroidesBiologyMicrobiologyAchromobacter cycloclastesPolymerase Chain ReactionSensitivity and SpecificityMicrobiologychemistry.chemical_compoundDenitrifying bacteriaNitrateGram-Negative BacteriaEscherichia coliBradyrhizobiumMolecular BiologyPhylogenySoil MicrobiologyAlcaligenes faecalisBase SequenceSequence Analysis DNANitrite reductasebiology.organism_classificationchemistryBiochemistryNitrogen fixationBacteriaSinorhizobium melilotiJournal of microbiological methods
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Effects of indole-3-acetic acid on Sinorhizobium meliloti survival and on symbiotic nitrogen fixation and stem dry weight production

2009

We evaluated the effects of the main auxin phytohormone, indole-3-acetic acid (IAA), on the central metabolism of Sinorhizobium meliloti strain 1021. We either treated the Sinorhizobium meliloti 1021 strain with 0.5 mM IAA (1021+) or use a derivative, RD64, of the same strain harbouring a pathway for IAA biosynthesis converting tryptophan into IAA via indoleacetamide. We assayed the activity of key enzymes in the major energy-yielding pathways (Entner-Doudoroff, Embden-Meyerhof-Parnas, pentose phosphate, glyoxylate bypass and tricarboxylic acid cycle). We found that activity of two main regulative tricarboxylic acid (TCA) cycle enzymes was increased. Citrate synthase (CS) activity, as compa…

PolyestersHydroxybutyratesDehydrogenaseCitrate (si)-SynthaseApplied Microbiology and BiotechnologyCell survival . PHB . TCA . Nitrogen fixationchemistry.chemical_compoundBacterial ProteinsPlant Growth RegulatorsAcetyl Coenzyme AAuxinNitrogen FixationMedicago truncatulaCitrate synthaseKetoglutarate Dehydrogenase ComplexBiomasschemistry.chemical_classificationSinorhizobium melilotiMicrobial ViabilityIndoleacetic AcidsPlant StemsbiologyTryptophanfood and beveragesGeneral MedicineMetabolismbiology.organism_classificationCitric acid cycleBiochemistrychemistrybiology.proteinIndole-3-acetic acidSinorhizobium melilotiBiotechnologyApplied Microbiology and Biotechnology
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Proteome analysis and identification of symbiosis-related proteins from Medicago truncatula Gaertn. by two-dimensional electrophoresis and mass spect…

2002

Time-course analysis of root protein profiles was studied by two-dimensional gel electrophoresis and silver staining in the model plant Medicago truncatula, inoculated either with the arbuscular mycorrhizal fungus Glomus mosseae or with the nitrogen fixing bacterium Sinorhizobium meliloti. Protein modifications in relation to the development of both symbioses included down- and upregulations, as well as newly induced polypeptides. Matrix assisted laser desorption/ionization-time of flight-mass spectrometry after trypsin digestion clearly identified one polypeptide induced in nodulated roots as a M. truncatula leghemoglobin. Internal sequencing with a quadrupole time-of-flight mass spectrome…

Proteome[SDV]Life Sciences [q-bio]Clinical BiochemistryMass spectrometryBiochemistryMass SpectrometryAnalytical ChemistryGene Expression Regulation PlantBotanyMedicagoElectrophoresis Gel Two-DimensionalLeghemoglobinSymbiosisGlomusComputingMilieux_MISCELLANEOUSPlant ProteinsGel electrophoresisSinorhizobium melilotibiologyfungiFungifood and beveragesbiology.organism_classificationMedicago truncatula[SDV] Life Sciences [q-bio]BiochemistrySerine hydroxymethyltransferaseProteomeSinorhizobium melilotiElectrophoresis
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Bradyrhizobium sp. nodulating the Mediterranean shrub Spanish broom (Spartium junceum L.)

2002

Aims: The molecular diversity of 25 strains of rhizobia, isolated in Sicily from root nodules of the Mediterranean shrubby legume Spanish broom (Spartium junceum L.), is presented in relation to the known rhizobial reference strains. Methods and Results: Our approach to the study of the S. junceum rhizobial diversity combined the information given by the 16S and the intergenic spacer (IGS) 16S–23S rDNA polymorphic region by obtaining them in a single polymerase chain reaction (PCR) step. The PCR fragment size of the S. junceum isolates was 2400–2500 bp and that of the reference strains varied from 2400 in Bradyrhizobium strains to 2800 in Sinorhizobium strains. Inter- and intrageneric lengt…

Root noduleMolecular Sequence DataSpartiummedicine.disease_causePlant RootsPolymerase Chain ReactionApplied Microbiology and BiotechnologyBradyrhizobiumRhizobium leguminosarumRhizobiaRNA Ribosomal 16SBotanymedicineBradyrhizobiumRibosomal DNAPhylogenyGeneticsbiologyfood and beveragesFabaceaeSequence Analysis DNAGeneral Medicinebiochemical phenomena metabolism and nutritionbiology.organism_classificationSinorhizobiumDNA IntergenicRestriction fragment length polymorphismPolymorphism Restriction Fragment LengthBiotechnology
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Characterization of rhizobia nodulating chickpea in Tunisia

2001

Cent cinquante rhizobia nodulant le pois chiche (Cicer arietinum L.) ont ete isoles a partir de sols echantillonnes dans differentes regions de Tunisie. L'inoculation de la plante hote avec ces isolats montre une variabilite dans le temps d'apparition des premieres nodosites. Cinq isolats induisent des nodosites deux semaines apres inoculation alors que pour les 145 isolats restants les nodosites ne sont observees qu'apres au moins quatre semaines. L'etude par PCR/RFLP de l'ADNr 16S a permis de rattacher les isolats du premier groupe a l'espece Mesorhizobium mediterraneum et ceux du second groupe a l'espece Sinorhizobium medicae. La position taxonomique des isolats a ete confirmee par leurs…

[SDV.SA]Life Sciences [q-bio]/Agricultural sciences[SDV.SA] Life Sciences [q-bio]/Agricultural sciencesbiologysMesorhizobiumNorth africa16SRDNA-PCRbiology.organism_classificationmedicine.disease_causeMolecular biologyRhizobiaSinorhizobiumBotanyMesorhizobium mediterraneummedicinePOIS CHICHEISOLATAgronomy and Crop ScienceSinorhizobium medicaeAgronomie
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