Search results for "Bacillus subtilis"

showing 10 items of 70 documents

Wykorzystanie antagonistycznych właściwości Bacillus subtilis wobec Rhizoctonia solani

2017

auksynyaktywność przeciwgrzybowaRhizoctonia solaniauxinsantifungal activityBacillus subtilisProceedings of ECOpole
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Preorganization and reorganization as related factors in enzyme catalysis: the chorismate mutase case.

2003

In this paper a deeper insight into the chorismate-to prephenate-rearrangement, catalyzed by Bacillus subtilis chorismate mutase, is provided by means of a combination of statistical quantum mechanics/molecular mechanics simulation methods and hybrid potential energy surface exploration techniques. The main aim of this work is to present an estimation of the preorganization and reorganization terms of the enzyme catalytic rate enhancement. To analyze the first of these, we have studied different conformational equilibria of chorismate in aqueous solution and in the enzyme active site. Our conclusion is that chorismate mutase preferentially binds the reactive conformer of the substrate--that…

biologyChemical PhenomenaChemistryStereochemistryChemistry PhysicalProtein ConformationOrganic ChemistryActive siteSubstrate (chemistry)General ChemistryEnzyme structureCatalysisEnzyme catalysisSolutionsMolecular dynamicsComputational chemistryPotential energy surfacebiology.proteinChorismate mutaseElectrochemistryConformational isomerismBacillus subtilisChorismate MutaseChemistry (Weinheim an der Bergstrasse, Germany)
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Biosorption of lead(II), zinc(II) and nickel(II) from industrial wastewater by Stenotrophomonas maltophilia and Bacillus subtilis

2015

Abstract The biosorption of Pb(II), Zn(II) and Ni(II) from industrial wastewater using Stenotrophomonas maltophilia and Bacillus subtilis was investigated under various experimental conditions regarding pH, metal concentration and contact time. The optimum pH values for the biosorption of the three metals were in the range 5.0-6.0, while the optimal contact time for the two bacterial species was 30 min. Experimental data was analyzed using Langmuir and Freundlich isotherms; the former had a better fit for the biosorption of Pb(II), Zn(II) and Ni(II). The maximum adsorption uptakes (qmax) of the three metals calculated from the Langmuir biosorption equation for S. maltophilia were 133.3, 47.…

biologyChemistryGeneral Chemical EngineeringBiosorptionIndustrial chemistrychemistry.chemical_elementHeavy metalsstenotrophomonas maltophiliaGeneral ChemistryBacillus subtilisZincPulp and paper industrybiology.organism_classificationIndustrial wastewater treatmentChemistryStenotrophomonas maltophiliaNickelbacillus subtilisheavy metalsQD1-999biosorptionBiotechnologyPolish Journal of Chemical Technology
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Induction of cryptic metabolites of the endophytic fungus Trichocladium sp. through OSMAC and co-cultivation

2019

The endophytic fungus Trichocladium sp. isolated from roots of Houttuynia cordata was cultured on solid rice medium, yielding a new amidepsine derivative (1) and a new reduced spiro azaphilone derivative (3) together with eight known compounds (4–11). Co-cultivation of Trichocladium sp. with Bacillus subtilis resulted in induction of a further new compound (2) and a 10-fold increase of 11 compared to the axenic fungal culture. Moreover, when the fungus was cultivated on peas instead of rice, a new sesquiterpene derivative (13) and two known compounds (12 and 14) were obtained. Addition of 2% tryptophan to rice medium led to the isolation of a new bismacrolactone (15). The structures of the …

biologyStereochemistryGeneral Chemical EngineeringTryptophan02 engineering and technologyGeneral ChemistryFungusBacillus subtilis010402 general chemistry021001 nanoscience & nanotechnologybiology.organism_classificationSesquiterpene01 natural sciences0104 chemical sciencesHouttuynia cordatachemistry.chemical_compoundchemistryCell culture0210 nano-technologyAxenicDerivative (chemistry)RSC Advances
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ERA-experiment “space biochemistry”

1995

Abstract The general goal of the experiment was to study the response of anhydrobiotic (metabolically dormant) microorganisms (spores of Bacillus subtilis, cells of Deinococcus radiodurans, conidia of Aspergillus species) and cellular constituents (plasmid DNA, proteins, purple membranes, amino acids, urea) to the extremely dehydrating conditions of open space, in some cases in combination with irradiation by solar UV-light. Methods of investigation included viability tests, analysis of DNA damages (strand breaks, DNA-protein cross-links) and analysis of chemical effects by spectroscopic, electrophoretic and chromatographic methods. The decrease in viability of the microorganisms was as exp…

chemistry.chemical_classificationAtmospheric SciencebiologyDNA damageChemistryMicroorganismFungal geneticsAerospace EngineeringAstronomy and AstrophysicsDeinococcus radioduransBacillus subtilisbiology.organism_classificationAmino acidchemistry.chemical_compoundGeophysicsBiochemistrySpace and Planetary ScienceUreaGeneral Earth and Planetary SciencesDNAAdvances in Space Research
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UJI AKTIVITAS ANTIBAKTERI DARI ESTRAK TUMBUHAN AKWAY (Drimys beccariana. Gibbs)

2010

<p><em>The plant Akway (Drimys beccariana.</em>Gibbs<em>) is endemic to Papua and is frequently used traditionally by the Arfak tribe as a medicinal plant. We extract the plant by maceration with ethanol. The antibacterial test  is done by Agar diffusion method. As microba test  we used Escheresia coli and Bacillus subtilis. Result obtained from fitochemistry skrinning of the leaf and bark contained alkaloid, flavonoid, steroid, tannin, glikosida, saponin, triterpenoid, steroid and  fenolik. Concentration of active substances from the leaf are flavonoid (0,3680%) and tanin (10.33 %); while from the bark flavonoid 18.35%  and tanin (27.65%).  Antibacterial test showed…

chemistry.chemical_classificationDrimysTraditional medicinebiologyfungiFlavonoidSaponinfood and beveragesBacillus subtilisbiology.organism_classificationchemistryvisual_artMaceration (wine)visual_art.visual_art_mediumTanninBarkAgar diffusion testJurnal Natural
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Succinate dehydrogenase functioning by a reverse redox loop mechanism and fumarate reductase in sulphate-reducing bacteria.

2006

Sulphate- or sulphur-reducing bacteria with known or draft genome sequences (Desulfovibrio vulgaris, Desulfovibrio desulfuricans G20, Desulfobacterium autotrophicum [draft], Desulfotalea psychrophila and Geobacter sulfurreducens) all contain sdhCAB or frdCAB gene clusters encoding succinate : quinone oxidoreductases. frdD or sdhD genes are missing. The presence and function of succinate dehydrogenase versus fumarate reductase was studied. Desulfovibrio desulfuricans (strain Essex 6) grew by fumarate respiration or by fumarate disproportionation, and contained fumarate reductase activity. Desulfovibrio vulgaris lacked fumarate respiration and contained succinate dehydrogenase activity. Succi…

chemistry.chemical_classificationbiologySulfatesSuccinate dehydrogenaseMolecular Sequence DataSuccinic AcidBacillus subtilisFumarate reductasebiology.organism_classificationMicrobiologySuccinate DehydrogenaseEnzymechemistryBiochemistryFumaratesMultigene Familybiology.proteinDesulfovibrioSDHDAmino Acid SequenceDesulfovibrio vulgarisGeobacter sulfurreducensOxidation-ReductionBacteriaMicrobiology (Reading, England)
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The fnr Gene of Bacillus licheniformis and the Cysteine Ligands of the C-Terminal FeS Cluster

1998

Many of the O2-responsive gene regulators of bacteria are members of the fumarate nitrate reductase-cyclic AMP receptor protein family of transcriptional regulators (12, 13, 15, 17) with predicted structures similar to those of the cyclic AMP receptor protein (11). The Fnr (stands for fumarate nitrate reductase regulator) protein from Escherichia coli (FnrEc) controls the expression of a variety of genes, mainly of anaerobic respiration and metabolism (5, 13). It contains a N-terminal cluster of three essential cysteine residues which are supposed to bind together with Cys122 a [4Fe 4S]2+ cluster which is required for O2 sensing (4, 7, 8, 10, 16). A wide variety of gram-negative bacteria co…

inorganic chemicalsIron-Sulfur ProteinsMolecular Sequence DataRestriction MappingMutantBacillusGenetics and Molecular BiologySequence alignmentmacromolecular substancesBacillus subtilisLigandsNitrate reductaseenvironment and public healthMicrobiologyBacterial ProteinsAmino Acid SequenceCysteineBacillus licheniformisMolecular BiologyPeptide sequenceBacillus megateriumSequence Homology Amino AcidbiologyEscherichia coli ProteinsGene Expression Regulation Bacterialbiology.organism_classificationenzymes and coenzymes (carbohydrates)KineticsBiochemistryBacillus megateriumbacteriaSequence AlignmentBacillus subtilisTranscription FactorsCysteineJournal of Bacteriology
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Biosorpcja ołowiu (II), cynku (II) i niklu (II) za ścieków przemysłowych przez Stenotrophomonas maltophilia i Bacillus subtilis

2013

metale ciężkieStenotrophomonas maltophiliaściekibiosorpcjaBacillus subtilis
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Chemical Composition of the Essential Oil of Bupleurum Fontanesii (Apiaceae) Growing Wild in Sicily and its Activity on Microorganisms Affecting Hist…

2016

Hydrodistillation of the flowers (BpFl) of and fruits (BpFr) of Bupleurum fontanesii Guss. ex Caruel gave two oils that were analyzed by GC and GC-MS. The main components were α-elemol (16.7%), caryophyllene oxide (16.4%) and heptacosane (15.9%) in BpFl, and spathulenol (16.8%), caryophylladienol I (13.2%) and α-elemol (12.8%) in BpFr. A good antimicrobial activity against several microorganisms, including Bacillus subtilis, Staphylococcus aureus, Fusarium oxysporum and Aspergillus niger, all infesting historical art craft, was also determined.

α-ElemolBupleurumAntifungal AgentsMicroorganismPlant ScienceBacillus subtilis01 natural scienceslaw.inventionlawVolatile componentDrug DiscoveryBotanyFusarium oxysporumOils VolatilePlant OilsSicilyEssential oilPharmacologyApiaceaeBacteriaBupleurum fontanesiibiology010405 organic chemistryDrug Discovery3003 Pharmaceutical ScienceAspergillus nigerFungiSpathulenolfood and beveragesGeneral MedicineComplementary and Alternative Medicine2708 DermatologyAntimicrobialbiology.organism_classificationAnti-Bacterial AgentsBupleurum0104 chemical sciences010404 medicinal & biomolecular chemistryCaryophyllene oxideComplementary and alternative medicineArtApiaceaeNatural Product Communications
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