Search results for "Bacterial Typing Technique"

showing 10 items of 125 documents

Co-existence of virulence factors and antibiotic resistance in new Klebsiella pneumoniae clones emerging in south of Italy

2018

Abstract Background Endemic presence of Klebsiella pneumoniae resistant to carbapenem in Italy has been due principally to the clonal expansion of CC258 isolates; however, recent studies suggest an ongoing epidemiological change in this geographical area. Methods 50 K. pneumoniae strains, 25 carbapenem-resistant (CR-Kp) and 25 susceptible (CS-Kp), collected from march 2014 to march 2016 at the Laboratory of Bacteriology of the Paolo Giaccone Polyclinic University hospital of Palermo, Italy, were characterized for antibiotic susceptibility and fully sequenced by next generation sequencing (NGS) for the in silico analysis of resistome, virulome, multi-locus sequence typing (MLST) and core sin…

0301 basic medicineAdultKlebsiellaGenotypeKlebsiella pneumoniae030106 microbiologyVirulenceYersiniabactinPolymorphism Single Nucleotidebeta-Lactamaseslcsh:Infectious and parasitic diseasesMicrobiology03 medical and health scienceschemistry.chemical_compoundBacterial ProteinsGenotypeDrug Resistance BacterialHumanslcsh:RC109-216TypingSicilyPhylogenyAgedAged 80 and overbiologyVirulence factorsMiddle Agedbiology.organism_classificationAnti-Bacterial AgentsBacterial Typing TechniquesKlebsiella InfectionsKlebsiella pneumoniae030104 developmental biologyInfectious DiseaseschemistryCarbapenemsCarbapenem-resistant Klebsiella pneumoniaeMultilocus sequence typingAerobactinMultilocus Sequence TypingResearch Article
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Rifampicin treatment of Blattella germanica evidences a fecal transmission route of their gut microbiota

2018

Eukaryotes have established symbiotic relationship with microorganisms, which enables them to accomplish functions that they cannot perform alone. In the German cockroach, Blattella germanica, the obligate endosymbiont Blattabacterium coexists with a rich gut microbiota. The transmission of Blattabacterium is vertical, but little is known about how the gut microbiota colonizes newborn individuals. In this study, we treated B. germanica populations with rifampicin, a broad-spectrum antibiotic, during two generations and analyzed gut bacterial composition and the Blattabacterium load in control and rifampicin-treated populations. Rifampicin exerted a drastic effect on gut microbiota compositi…

0301 basic medicineAdultMalemedicine.drug_class030106 microbiologyAntibioticsPopulationL73 Animal diseasesGut microbiotaGut floraL70 Veterinary science and hygieneL01 Animal husbandryApplied Microbiology and BiotechnologyMicrobiologydigestive systemMicrobiology03 medical and health sciencesBlattabacteriumFecesSymbiosismedicineAnimalsHumanseducationSymbiosisFecesPhylogenyGerman cockroacheducation.field_of_studyEndosymbiontEcologybiologyObligateBlattellidaebiology.organism_classificationAntibiotic treatmentAnti-Bacterial AgentsBacterial Typing TechniquesGastrointestinal MicrobiomeInsect symbiosisRifampinFlavobacteriaceaeMicrobiota transmission
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Photobacterium toruni sp. nov., a bacterium isolated from diseased farmed fish.

2017

Three bacterial strains were isolated from liver and spleen of diseased farmed redbanded seabream (Pagrus auriga) in south-west Spain. Their partial 16S rRNA gene sequences clustered within those of the genus Photobacterium , showing high similarity (98.6–99.3 %) to the type strains of Photobacterium iliopiscarium , P. piscicola , P. kishitanii , P. aquimaris and P. phosphoreum . Multilocus sequence analysis using six housekeeping genes (gapA, topA, mreB, ftsZ, gyrB and 16S rRNA) confirmed the new strains as forming an independent branch with a bootstrap value of 100, likely to represent a novel species. To confirm this, we used whole genome sequencing and genomic analysis (ANIb, ANIm and i…

0301 basic medicineDNA BacterialBacilliSequence analysisMicrobiologyMicrobiology03 medical and health sciencesVibrionaceaeRNA Ribosomal 16SAnimalsGeneEcology Evolution Behavior and SystematicsPhospholipidsPhylogenyWhole genome sequencingGeneticsBase CompositionbiologyPhotobacteriumFatty AcidsNucleic Acid HybridizationVitamin K 2General MedicineSequence Analysis DNA16S ribosomal RNAbiology.organism_classificationPhotobacteriumSea BreamHousekeeping geneBacterial Typing Techniques030104 developmental biologyGenes BacterialSpainMultilocus Sequence TypingInternational journal of systematic and evolutionary microbiology
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Ruegeria denitrificans sp. nov., a marine bacterium in the family Rhodobacteraceae with the potential ability for cyanophycin synthesis.

2018

Strain CECT 5091T, an aerobic, marine, Gram-reaction- and Gram-stain-negative, chemoheterotrophic bacterium was isolated from oysters harvested off the Spanish Mediterranean coast. Analysis of the 16S rRNA gene sequence placed the strain within the genus Ruegeria , in the family Rhodobacteraceae , with 16S rRNA gene similarities of 98.7, 98.7 and 98.4 % to Ruegeria conchae , Ruegeria atlantica and Ruegeria arenilitoris , respectively. Average nucleotide identities (ANI) and in silico DNA–DNA hybridization (DDH) were determined, comparing the genome sequence of CECT 5091T with those of the type strains of 12 species of the genus Ruegeria : the values obtained were always below the thresholds…

0301 basic medicineDNA BacterialCyanophycinRuegeriaMicrobiology03 medical and health scienceschemistry.chemical_compoundMarine bacteriophageBacterial ProteinsRNA Ribosomal 16SMediterranean SeaAnimalsRhodobacteraceaeRhodobacteraceaeMagnesium ionEcology Evolution Behavior and SystematicsPhylogenyBase CompositionbiologyFatty AcidsNucleic Acid HybridizationGeneral MedicineSequence Analysis DNA16S ribosomal RNAbiology.organism_classificationOstreidaeHalophileBacterial Typing Techniques030104 developmental biologyBiochemistrychemistrySpainBacteriaInternational journal of systematic and evolutionary microbiology
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Marinomonas spartinae sp. nov., a novel species with plant-beneficial properties.

2016

Two strains of Gram-stain-negative, chemo-organotrophic, aerobic and halophilic gammaproteobacteria, isolated from within the stem and roots of Spartina maritima in salt marshes from the south Atlantic Spanish coast, were found to represent a novel species in the genus Marinomonas through phylogenetic analysis of their 16S rRNA genes and phenotypic characterization. 16S rRNA gene sequences of the two strains shared < 96.2 % similarity with other Marinomonas species, with Marimonas alcarazii being the most similar in sequence. They required sodium ions for growth, were able to thrive at low (4 °C) temperatures and at salinities of 12–15 %, were unable to hydrolyse any tested macromolecule ex…

0301 basic medicineDNA BacterialMarinomonasMolecular Sequence DataBiologyPoaceaeMicrobiologyPlant Roots03 medical and health sciencesRNA Ribosomal 16SGammaproteobacteriaBotanyEndophytesSugarMarinomonasEcology Evolution Behavior and SystematicsPhylogenychemistry.chemical_classificationBase CompositionPhylogenetic treePlant StemsFatty AcidsNucleic Acid HybridizationGeneral MedicineSequence Analysis DNA16S ribosomal RNAbiology.organism_classificationHalophileAmino acidBacterial Typing Techniques030104 developmental biologychemistrySpainWetlandslipids (amino acids peptides and proteins)Spartina maritimaInternational journal of systematic and evolutionary microbiology
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Marinomonas blandensis sp. nov., a novel marine gammaproteobacterium.

2016

A novel Gram-staining-negative, chemoorganotrophic, moderately halophilic, strictly aerobic bacterium, strain MED121T, was isolated from a seawater sample collected at the Blanes Bay Microbial Observatory in the north-western Mediterranean Sea. Analysis of its 16S rRNA gene sequence, retrieved from the whole-genome sequence, showed that this bacterium was most closely related to Marinomonas dokdonensis and other Marinomonas species (96.3 and 93.3–95.7 % sequence similarities, respectively), within the family Oceanospirillaceae . Strain MED121T was included into a whole-genome sequencing study and, subsequently, it was characterized using a polyphasic taxonomic approach. It was found to be o…

0301 basic medicineDNA BacterialMarinomonasSequence analysisUbiquinoneBiologyMicrobiologyMicrobiology03 medical and health sciencesRNA Ribosomal 16SBotanyMediterranean SeaSeawaterMarinomonasEcology Evolution Behavior and SystematicsPhospholipidsPhylogenyBase CompositionStrain (chemistry)Fatty AcidsGeneral MedicineSequence Analysis DNARibosomal RNA16S ribosomal RNAbiology.organism_classificationHalophileBacterial Typing Techniques030104 developmental biologyOceanospirillaceaeBacteriaInternational journal of systematic and evolutionary microbiology
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Whole genome sequences reveal Vibrio hemicentroti Kim et al. 2013 as a later heterotypic synonym of Vibrio splendidus (Beijerinck 1900) Baumann et al…

2017

The synonymy between Vibrio hemicentroti Kim et al. 2013 and Vibrio splendidus (Beijerinck 1900) Baumann et al. 1981 was suggested after a recent multilocus sequence analysis of the Splendidus clade, which included the type strains of both species. To clarify their status, we have determined genomic indexes from whole genome sequences of strains V. hemicentroti CECT 8714T and V. splendidus NCCB 53037T. Average Nucleotide Identities of 96.0–96.7 % and an in silico DNA–DNA hybridization value of 70.2 %, as well as similarity levels of selected housekeeping gene sequences support the consideration of V. hemicentroti as a later heterotypic synonym of V. splendidus .

0301 basic medicineGeneticsDNA BacterialSynonymSequence analysisNucleic Acid HybridizationGeneral MedicineVibrio hemicentrotiSequence Analysis DNABiologyMicrobiologyGenomeMicrobiologyHousekeeping geneBacterial Typing Techniques03 medical and health sciences030104 developmental biologyVibrio splendidusCladeEcology Evolution Behavior and SystematicsPhylogenyMultilocus Sequence TypingVibrioInternational journal of systematic and evolutionary microbiology
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Exploring the biodiversity of two groups of Oenococcus oeni isolated from grape musts and wines: Are they equally diverse?

2016

One hundred and four Oenococcus oeni isolates were characterised by the carbohydrate fermentation (CH) profile and DNA fingerprinting. Forty-four isolates came from grape must, and 60 from wines sampled at the end of alcoholic fermentation or during malolactic fermentation. The grape must isolates fermented more CH than the wine isolates. In genotypical terms, no clear boundary between grape must and wine isolates was found. Diversities were deduced by considering the isolates of grape must and of wine separately and jointly. By considering only CH fermentation abilities, the group of grape must isolates gave higher diversity index (DICH) values than those isolated from wine; i.e., these is…

0301 basic medicineGenotypeOtras Ciencias Biológicas030106 microbiologyGrape mustWineMinisatellite RepeatsBiologyEthanol fermentationApplied Microbiology and BiotechnologyMicrobiologyCiencias Biológicas03 medical and health sciencesDiversity indexBotanyMalolactic fermentationCarbohydrate fermentationCluster AnalysisCarbohydrate fermentationVitisFood scienceEcology Evolution Behavior and SystematicsOenococcusOenococcus oeniWineDiversityDNA fingerprintsdigestive oral and skin physiologyfungifood and beveragesBiodiversitybiology.organism_classificationDNA FingerprintingBacterial Typing TechniquesRandom Amplified Polymorphic DNA TechniqueDNA profilingFermentationCarbohydrate MetabolismFermentationOenococcus oenihuman activitiesCIENCIAS NATURALES Y EXACTASSystematic and applied microbiology
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Halorhabdus rudnickae sp. nov., a halophilic archaeon isolated from a salt mine borehole in Poland

2016

Two halophilic archaea, designated strains WSM-64 and WSM-66, were isolated from a sample taken from a borehole in the currently unexploited Barycz mining area belonging to the >Wieliczka> Salt Mine Company, in Poland. Strains are red pigmented and form non-motile cocci that stain Gram-negative. Strains WSM-64 and WSM-66 showed optimum growth at 40 °C, in 20% NaCl and at pH 6.5-7.5. The strains were facultative anaerobes. The major polar lipids of the two strains were phosphatidylglycerol (PG2), phosphatidylglycerol phosphate methyl ester (PGP-Me) and sulfated diglycosyl diether (S-DGD). Menaquinone MK-8 was the major respiratory quinone. The DNA G+C content of strain WSM-64 was 61.2 mol% b…

0301 basic medicineGeologic Sediments030106 microbiologyBiologyApplied Microbiology and BiotechnologyMicrobiologyGenomeDNA sequencingMicrobiology03 medical and health scienceschemistry.chemical_compoundBotanyEcology Evolution Behavior and SystematicsPhosphatidylglycerolHalobacteriaceaeStrain (chemistry)HaloarchaeaHalorhabdus rudnickae sp. novHalorhabdus16S ribosomal RNAbiology.organism_classificationHalophileBacterial Typing TechniqueschemistryPolandDNAArchaeaSystematic and Applied Microbiology
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Whole-genome characterization of Shewanella algae strain SYT3 isolated from seawater reveals insight into hemolysis.

2018

Aim: To describe the genomic characteristics of seawater-borne hemolytic Shewanella algae and its resistance genes. Materials &amp; methods: Whole genome sequence of S. algae SYT3 was determined using llumina MiSeq platform. Multiple-database-based analysis was performed to identify the genetic background of its hemolytic activity and the antibiotic resistance genes. Results: S. algae SYT3 possesses a homolog of the hly operon involved in the synthesis of hemolysin. We also identified candidate genes associated with resistance to β-lactam antibiotics (bla OXA-55) and fluoroquinolone (qnrA3). Conclusion: The study provides an insight into the hemolytic activity of S. algae. Our findings als…

0301 basic medicineMicrobiology (medical)DNA BacterialShewanellaOperon030106 microbiologyTaiwanShewanella algaeMicrobial Sensitivity TestsMicrobiologyGenomeHemolysisbeta-LactamasesMicrobiology03 medical and health sciencesHemolysin ProteinsAntibiotic resistanceAlgaeBacterial ProteinsRNA Ribosomal 16SDrug Resistance BacterialmedicineHumansSeawaterGenePhylogenyWhole genome sequencingbiologyWhole Genome SequencingChromosome Mappingbiology.organism_classificationmedicine.diseaseHemolysisAnti-Bacterial AgentsBacterial Typing TechniquesGenome BacterialFuture microbiology
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