Search results for "Whole genome sequencing"

showing 10 items of 156 documents

A feline rotavirus G3P[9] carries traces of multiple reassortment events and resembles rare human G3P[9] rotaviruses.

2011

The full-length genome sequence of a feline G3P[9] rotavirus (RV) strain, BA222, identified from the intestinal content of an adult cat, was determined. Strain BA222 possessed a G3-P[9]-I2-R2-C2-M2-A3-N1-T3-E2-H3 genomic constellation, differing substantially from other feline RVs. Phylogenetic analyses of each genome segment revealed common origins with selected animal and zoonotic human RVs, notably with rare multi-reassortant human G3P[9] RVs (Ita/PAI58/96 and Ita/PAH136/96). Altogether, the findings suggest that feline RVs are genetically diverse and that human RVs may occasionally originate either directly or indirectly (via reassortment) from feline RVs.

RotavirusSettore MED/07 - Microbiologia E Microbiologia ClinicaSequence analysisReassortmentMolecular Sequence DataReoviridaeSequence HomologyBiologymedicine.disease_causeGenomeG3PhylogeneticsVirologyRotavirusmedicineAnimalsCluster AnalysisHumansfelinePhylogenyGeneticsWhole genome sequencingPhylogenetic treeSequence Analysis DNARotavirubiology.organism_classificationVirologyP[9]reassortantCatsRNA ViralReassortant VirusesThe Journal of general virology
researchProduct

Whole-Genome Sequence of Stenotrophomonas maltophilia D457, a Clinical Isolate and a Model Strain

2012

ABSTRACT Stenotrophomonas maltophilia is an opportunistic pathogen with an environmental origin, and it is an increasingly relevant cause of nosocomial infections. Here we present the whole-genome sequence of S. maltophilia strain D457, a clinical isolate that is being used as a model for studying antibiotic resistance in this bacterial species.

Sequence analysisStenotrophomonas maltophiliaDrug resistanceMicrobiologyGenomeMicrobiology03 medical and health sciencesAntibiotic resistanceDrug Resistance BacterialHumansMolecular Biology030304 developmental biologySequence (medicine)Whole genome sequencing0303 health sciencesbiology030306 microbiologyStrain (biology)Sequence Analysis DNAbiology.organism_classificationbacterial infections and mycoses3. Good healthGenome AnnouncementsAnti-Bacterial AgentsStenotrophomonas maltophiliaGenes BacterialbacteriaGram-Negative Bacterial InfectionsGenome BacterialJournal of Bacteriology
researchProduct

The DrosDel Collection

2004

Abstract We describe a collection of P-element insertions that have considerable utility for generating custom chromosomal aberrations in Drosophila melanogaster. We have mobilized a pair of engineered P elements, p{RS3} and p{RS5}, to collect 3243 lines unambiguously mapped to the Drosophila genome sequence. The collection contains, on average, an element every 35 kb. We demonstrate the utility of the collection for generating custom chromosomal deletions that have their end points mapped, with base-pair resolution, to the genome sequence. The collection was generated in an isogenic strain, thus affording a uniform background for screens where sensitivity to genetic background is high. The…

Set (abstract data type)Whole genome sequencingGeneticsP elementbiologyMolecular screeningStrain (biology)GeneticsDrosophila melanogasterbiology.organism_classificationSelection (genetic algorithm)Sequence (medicine)Genetics
researchProduct

High-Quality Whole-Genome Sequence of an Estradiol-Degrading Strain, Novosphingobium tardaugens NBRC 16725

2019

In this work we report the complete sequence and assembly of the estradiol-degrading bacterium Novosphingobium tardaugens NBRC 16725 genome into a single contig using the Pacific Biosciences RS II system.

Sewage-treatment plant010501 environmental sciencesBiologymedicine.disease_cause01 natural sciencesGenomeDegradation03 medical and health sciencesComplete sequenceImmunology and Microbiology (miscellaneous)GeneticsmedicineMolecular Biology030304 developmental biology0105 earth and related environmental sciencesGeneticsWhole genome sequencing0303 health sciencesBacteriaStrain (chemistry)ContigGenome Sequencesfood and beveragesbiology.organism_classificationNovosphingobium tardaugensActivated-sludgePacific biosciencesBacteriaMicrobiology Resource Announcements
researchProduct

Draft Genome Sequence of the Microbispora sp. Strain ATCC-PTA-5024, Producing the Lantibiotic NAI-107.

2014

ABSTRACT We report the draft genome sequence of Microbispora sp. strain ATCC-PTA-5024, a soil isolate that produces NAI-107, a new lantibiotic with the potential to treat life-threatening infections caused by multidrug-resistant Gram-positive pathogens. The draft genome of strain Microbispora sp. ATCC-PTA-5024 consists of 8,543,819 bp, with a 71.2% G+C content and 7,860 protein-coding genes.

Strain atccWhole genome sequencingStrain (chemistry)Microbispora sp.GeneticsProkaryotesLantibioticsBiologyMolecular BiologyGenomeGeneC contentMicrobiologyGenome announcements
researchProduct

The complete genome sequence of Lamium mild mosaic virus, a member of the genus Fabavirus

2013

Springer-Verlag Wien 2013 Abstract Lamium mild mosaic virus (LMMV) is the only one of the five members of the genus Fabavirus for which there are no nucleotide sequence data. In this study, the complete genome sequence of LMMV was determined and compared with the available complete genome sequences of other members of the genus Fabavirus. The genome was the largest of the genus but maintained the typical orga- nization, with RNA 1 of 6080 nucleotides (nt), RNA 2 of 4065 nt, and an unusually long 3 0 untranslated region in RNA 2 of 603 nt. Phylogenetic analysis of the amino acid sequences of the protease-polymerase (Pro-Pol) region and the two coat proteins confirmed that LMMV belongs to a d…

SubfamilyLMMVMolecular Sequence DataGenome ViralGenomeFabaviruBroad bean wilt virusViral ProteinsSpecies SpecificityGenusMosaic VirusesVirologySecoviridaeTobaccoComovirinaePhylogenyPlant DiseasesGeneticsWhole genome sequencingLamiaceaebiologyBase SequenceNucleic acid sequenceSettore AGR/12 - Patologia Vegetalefood and beveragesGeneral MedicineDNA-Directed RNA PolymerasesSequence Analysis DNAClassificationbiology.organism_classificationVirologyFabavirusRNA ViralCapsid ProteinsPeptide Hydrolases
researchProduct

Whole genome sequencing of the black grouse (Tetrao tetrix): reference guided assembly suggests faster-Z and MHC evolution

2014

Background The different regions of a genome do not evolve at the same rate. For example, comparative genomic studies have suggested that the sex chromosomes and the regions harbouring the immune defence genes in the Major Histocompatability Complex (MHC) may evolve faster than other genomic regions. The advent of the next generation sequencing technologies has made it possible to study which genomic regions are evolutionary liable to change and which are static, as well as enabling an increasing number of genome studies of non-model species. However, de novo sequencing of the whole genome of an organism remains non-trivial. In this study, we present the draft genome of the black grouse, wh…

Tetrao tetrixMaleGenome evolutionBiologyGenomePolymorphism Single NucleotideChromosomesBirdsEvolution MolecularMajor Histocompatibility ComplexGene densityGeneticsAnimalsGenetikGenome sizeRepetitive Sequences Nucleic AcidGeneticsComparative genomicsWhole genome sequencingteeriGenomeComputational BiologyHigh-Throughput Nucleotide SequencingMolecular Sequence AnnotationGenome projectGenomicsEvolutionary biologyReference genomeBiotechnologyResearch ArticleBMC Genomics
researchProduct

The Norway spruce genome sequence and conifer genome evolution

2013

Conifers have dominated forests for more than 200 million years and are of huge ecological and economic importance. Here we present the draft assembly of the 20-gigabase genome of Norway spruce (Picea abies), the first available for any gymnosperm. The number of well-supported genes (28,354) is similar to the >100 times smaller genome of Arabidopsis thaliana, and there is no evidence of a recent whole-genome duplication in the gymnosperm lineage. Instead, the large genome size seems to result from the slow and steady accumulation of a diverse set of long-terminal repeat transposable elements, possibly owing to the lack of an efficient elimination mechanism. Comparative sequencing of Pinu…

Transposable elementGenome evolutionRNA UntranslatedTranscription GeneticRECOMBINATIONGenomicsGENE FAMILYGenes PlantSEED PLANTSGenomeLONG NONCODING RNASSIZE VARIATIONEvolution MolecularGymnospermBotanyNaturvetenskapGene SilencingRICEPiceaGenome sizePINUSConserved SequenceWhole genome sequencingInternetMultidisciplinarybiologyTerminal Repeat SequencesBiology and Life SciencesPicea abiesGenomicsSequence Analysis DNALINEAGEbiology.organism_classificationIntronsPhenotypeDNA Transposable ElementsTRANSPOSABLE ELEMENTSORYZA-SATIVANatural SciencesGenome Plant
researchProduct

Lactococcal 949 group phages recognize a carbohydrate receptor on the host cell surface

2015

ABSTRACT Lactococcal bacteriophages represent one of the leading causes of dairy fermentation failure and product inconsistencies. A new member of the lactococcal 949 phage group, named WRP3, was isolated from cheese whey from a Sicilian factory in 2011. The genome sequence of this phage was determined, and it constitutes the largest lactococcal phage genome currently known, at 130,008 bp. Detailed bioinformatic analysis of the genomic region encoding the presumed initiator complex and baseplate of WRP3 has aided in the functional assignment of several open reading frames (ORFs), particularly that for the receptor binding protein required for host recognition. Furthermore, we demonstrate th…

Virus geneticsvirusesMolecular Sequence DataCarbohydratesGenetics and Molecular BiologyGenome ViralBiologyApplied Microbiology and BiotechnologyCarbohydrate receptorGenomeHost SpecificityCheesePhage groupBacteriophagesORFSHost cell surfaceWhole genome sequencingGeneticsPhages; CheeseEcologyLactococcus lactisOpen reading frameCarbohydrate MetabolismReceptors VirusPhageFood ScienceBiotechnologyProtein BindingSettore AGR/16 - Microbiologia Agraria
researchProduct

2020

Here, we present the genome sequence and annotation of the bacterial strain HV4-5-A1G, a potentially new Clostridium species. Based on its genomic data, this strain may act as a keystone microorganism in the hydrolysis of complex polymers, as well as in the different acidogenesis and acetogenesis steps during anaerobic digestion.

Whole genome sequencing0303 health sciencesAcidogenesisStrain (chemistry)ChemistryMicroorganism7. Clean energy03 medical and health sciencesAnaerobic digestionHydrolysis0302 clinical medicineImmunology and Microbiology (miscellaneous)BiochemistryAcetogenesisGeneticsMolecular Biology030217 neurology & neurosurgeryClostridium sp030304 developmental biologyMicrobiology Resource Announcements
researchProduct