Search results for "phylogenetic tree"

showing 10 items of 557 documents

Are Human P[14] Rotavirus Strains the Result of Interspecies Transmissions from Sheep or Other Ungulates That Belong to the Mammalian Order Artiodact…

2009

ABSTRACT A limited number of human G6P[14] rotavirus strains that cause gastroenteritis in humans have been isolated in Europe and Australia. The complete genome sequences were determined for five of these human strains—B10925-97 (isolated in Belgium in 1997), 111/05-27 (Italy, 2005), PA169 (Italy, 1987), MG6 (Australia, 1993), and Hun5 (Hungary, 1997)—and their genetic relatedness to animal rotavirus strains was evaluated by sequencing the complete genome of the sheep rotavirus OVR762 (G8P[14]; Spain, 2002), the guanaco ( Lama guanicoe ) rotavirus strains Arg/Chubut/99 and Arg/Río Negro/98 (G8P[14] and G8P[1], respectively; Argentina, 1999 and 1998), the sable antelope strain RC-18/08 (G6…

RotavirusSequence analysisImmunologyPopulationMolecular Sequence DataReoviridaeSequence HomologyBiologymedicine.disease_causeMicrobiologyDNA sequencingRotavirus InfectionsEvolution MolecularPhylogeneticsVirologyRotavirusGenotypemedicineHumanseducationPhylogenyGeneticseducation.field_of_studyPhylogenetic treeAustraliaInfantSequence Analysis DNAbiology.organism_classificationVirologyGastroenteritisEuropeGenetic Diversity and EvolutionInsect ScienceChild PreschoolRNA Viral
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Heterogeneity and temporal dynamics of evolution of G1 human rotaviruses in a settled population.

2006

ABSTRACT A rotavirus sample collection from 19 consecutive years was used to investigate the heterogeneity and the dynamics of evolution of G1 rotavirus strains in a geographically defined population. Phylogenetic analysis of the VP7 gene sequences of G1P[8] human rotavirus strains showed the circulation of a heterogeneous population comprising three lineages and seven sublineages. Increases in the circulation of G1 rotaviruses were apparently associated with the introduction of novel G1 strains that exhibited multiple amino acid changes in antigenic regions involved in rotavirus neutralization compared to the strains circulating in the previous years. The emergence and/or introduction of G…

RotavirusSerotypeSettore MED/07 - Microbiologia E Microbiologia ClinicaGenes ViralSettore MED/17 - Malattie InfettiveSequence analysisvirusesLineage (evolution)Molecular Sequence DataImmunologyPopulationViral Nonstructural ProteinsBiologymedicine.disease_causeMicrobiologyRotavirus InfectionsEvolution Molecularfluids and secretionsPhylogeneticsVirologyRotavirusmedicineHumansAmino Acid SequenceLongitudinal StudiesSerotypingeducationAntigens ViralPhylogenyGeneticseducation.field_of_studySequence Homology Amino AcidPhylogenetic treeInfantRNA-Binding Proteinsvirus diseasesVirologyItalyGenetic Diversity and Evolutionrotavirus G1Child PreschoolInsect ScienceCapsid ProteinsSample collection
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Emergence in 2017-2019 of novel reassortant equine-like G3 rotavirus strains in Palermo, Sicily.

2021

Rotavirus A (RVA) is a major etiologic agent of gastroenteritis in children worldwide. Hospital-based surveillance of viral gastroenteritis in paediatric population in Palermo (Italy) from 2017 onwards revealed a sharp increase in G3P[8] RVAs, accounting for 71% of all the RVAs detected in 2019. This pattern had not been observed before in Italy, with G3 RVA usually being detected at rates lower than 3%. In order to investigate this unique epidemiological pattern, the genetic diversity of G3 RVAs identified during a 16-year long surveillance (2004-2019) was explored by systematic sequencing of the VP7 and VP4 genes and by whole genome sequencing of selected G3 strains, representative of the…

RotavirusSettore MED/07 - Microbiologia E Microbiologia ClinicaGenotype040301 veterinary sciencesvirusesGenome ViralBiologymedicine.disease_causeGenomeRotavirus Infections0403 veterinary science03 medical and health sciencesHuman healthRotavirusmedicineAnimalsHumansHorsesGeneSicilyPhylogeny030304 developmental biologyWhole genome sequencingacute gastroenteritis DS-1 like genetic backbone equine-like G3P[8] Italy rotaviruswhole genome sequencing0303 health sciencesGenetic diversityGeneral VeterinaryGeneral Immunology and MicrobiologyPhylogenetic treevirus diseases04 agricultural and veterinary sciencesGeneral MedicineVirologyHorse DiseasesReassortant VirusesPaediatric populationTransboundary and emerging diseasesREFERENCES
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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
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Sciuridae (Rodentia, Mammalia) from the Late Miocene of Venta del Moro (Cabriel Basin, Spain): biostratigraphical, phylogenetic and palaeoecological …

2016

Fossil squirrels are relatively abundant in Aragonian and Ramblian assemblages, but very scarce in the Late Turolian and Ruscinian of the Iberian Peninsula. Until now, the locality of Venta del Mor...

Ruscinian010506 paleontologygeographygeography.geographical_feature_categoryPhylogenetic treeBiologyBiostratigraphyStructural basinLate Miocene010502 geochemistry & geophysics01 natural sciencesPaleontologyPhylogeneticsPeninsulaPaleoecologyGeneral Agricultural and Biological Sciences0105 earth and related environmental sciencesHistorical Biology
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Molecular markers indicate the phylogenetic identity of southern Brazilian sea asparagus: first record of Salicornia neei in Brazil

2019

Abstract Molecular phylogenetic analyses based on ETS, ITS and atpB - rbcL spacer sequences assessed the phylogenetic status of the southern Brazil sea asparagus species of the genus Salicornia (Salicornioideae, Amaranthaceae). Accessions of Patos Lagoon estuary (32° S) were obtained from wild plants and two pure line lineages, selected from contrasting prostrate (BTH1) and decumbent (BTH2) ecomorphotypes found locally. Patos Lagoon wild plants, BTH1 and BTH2 f4 progenies showed 100% identical sequences for the atpB - rbcL and ITS spacers, only two mutations for ETS. Comparison of the sequences of these three markers with GenBank records confirmed the identity of Brazilian accessions as Sal…

SalicorniaDNA sequencesPlant ScienceHorticultureBiologysalt marshesGenusSarcocornialcsh:BotanyBotanyAsparagusCladelcsh:QH301-705.5SalicornioideaePhylogenetic treeAmaranthaceaebiology.organism_classificationlcsh:QK1-989lcsh:Biology (General)marismashalophyteGenBanksequências de DNAhalófitasSalicornioideae
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On the hybrid origin of the C2Salsola divaricata agg. (Amaranthaceae) from C3 and C4 parental lineages

2021

AbstractC2 photosynthesis is characterized by recapturing photorespiratory CO2 by RuBisCO in Kranz-like cells and is therefore physiologically intermediate between C3 and C4 photosynthesis. C2 can be interpreted as an evolutionary precursor of C4 and/or as the result of hybridization between a C3 and C4 lineage.We compared the expression of photosynthetic traits among populations of the Salsola divaricata agg. (C2) from humid subtropical to arid habitats on the coasts of the Canary Islands and Morocco and subjected them to salt and drought treatments. We screened for enhanced C4-like expression of traits related to habitat or treatment. We estimated species trees with a transcriptome datase…

SalsolaPhylogenetic treeLineage (evolution)Gene treeRuBisCOBotanybiology.proteinHumid subtropical climateAmaranthaceaeBiologybiology.organism_classificationPhotosynthesis
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Phylogenetic relationship of ubiquitin repeats in the polyubiquitin gene from the marine sponge Geodia cydonium

1994

Ubiquitin is a 76-residue protein which is highly conserved among eukaryotes. Sponge (Porifera) ubiquitin, isolated from Geodia cydonium, is encoded by a gene (termed GCUBI) with six repeats, GCUBI-1 to GCUBI-6. All repeat units encode the same protein (with one exception: GCUBI-4 encodes ubiquitin with a change of Leu to Val at position 71). On the nt level the sequences of the six repeats differ considerably. All changes (except in GCUBI-4) are silent substitutions, which do not affect the protein structure. However, there is one major difference between the repeats: Codons from both codon families (TCN and AGPy) are simultaneously used for the serine at position 65. Using this characteri…

Sequence analysisMolecular Sequence Datamedicine.disease_causeUbiquitinPhylogeneticsGene duplicationGeneticsmedicineAnimalsGeodiaAmino Acid SequenceUbiquitinsMolecular BiologyGenePhylogenyEcology Evolution Behavior and SystematicsRepetitive Sequences Nucleic AcidGeneticsMutationBase SequencebiologyPhylogenetic treeDNASequence Analysis DNAbiology.organism_classificationBiological EvolutionPoriferaMutationbiology.proteinJournal of Molecular Evolution
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G2 rotavirus infections in an infantile population of the South of Italy: variability of viral strains over time.

2005

Rotavirus positive samples collected in Palermo, Italy, during 2002–2004 did not react with the G2 type-specific RV5:3 monoclonal antibodies (MAbs) and could be identified as G2 only by RT-PCR genotyping. The genetic variation of VP7 and VP4 antigenic proteins was studied in 14 G2 samples including a selection of both those successfully characterized by serotyping and those failing to be serotyped. The phylogenetic analysis performed on partial VP7 sequences showed a temporal clustering of these strains, with those isolated in Palermo in 2003 belonging to the same lineage of G2 MAbs-unreactive strains identified in UK in 1996–1997 and in Bari, Italy, in 2003–2004. A single amino acid substi…

SerotypeRotavirusSettore MED/07 - Microbiologia E Microbiologia ClinicaTime FactorsSettore MED/17 - Malattie InfettivevirusesPopulationReoviridaemedicine.disease_causeVirusRotavirus InfectionsFecesfluids and secretionsVirologyRotavirusGenetic variationmedicineHumansSerotypingeducationGenotypingAntigens ViralPhylogenyGeneticsrotavirus G2 genetic variation phylogenetic analysiseducation.field_of_studybiologyPhylogenetic treeInfant Newbornvirus diseasesInfantbiology.organism_classificationVirologyInfectious DiseasesItalyChild PreschoolCapsid ProteinsJournal of medical virology
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Analysis of early strains of the norovirus pandemic variant GII.4 Sydney 2012 identifies mutations in adaptive sites of the capsid protein.

2014

AbstractGlobal surveillance for norovirus identified in 2012 the emergence of a novel pandemic GII.4 variant, termed Sydney 2012. In Italy, the novel pandemic variant was identified as early as November 2011 but became predominant only in the winter season 2012–2013. Upon sequencing and comparison with strains of global origin, the early Sydney 2012 strains were found to differ from those spreading in 2012–2013 in the capsid (ORF2) putative epitopes B, C and D, segregating into a distinct phylogenetic clade. At least three residues (333, 340 and 393, in epitopes B, C and D, respectively) of the VP1 varied among Sydney 2012 strains of different clades. These findings suggest that the spread …

Settore MED/07 - Microbiologia E Microbiologia ClinicaEvolutionMolecular Sequence DataCapsid protein VP1 epitopes Evolution GII.4 Italy Norovirus Sydney 2012 variantBiologymedicine.disease_causeEpitopeSydney 2012 variantVirologyPandemicmedicineHumansAmino Acid SequenceCladePandemicsPhylogenyPhylogenetic treeNorovirusCapsid protein VP1 epitopesVirologyGastroenteritisCapsidItalyMutationNorovirusCapsid ProteinsSeasonsWinter seasonGII.4Virology
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