0000000000148226

AUTHOR

Max Ciarlet

showing 14 related works from this author

Multiple reassortment and interspecies transmission events contribute to the diversity of feline, canine and feline/canine-like human group A rotavir…

2011

Abstract RNA–RNA hybridization assays and complete genome sequence analyses have shown that feline rotavirus (FRV) and canine rotavirus (CRV) strains display at least two distinct genotype constellations (genogroups), represented by the FRV strain RVA/Cat-tc/AUS/Cat97/1984/G3P[3] and the human rotavirus (HRV) strain RVA/Human-tc/JPN/AU-1/1982/G3P3[9], respectively. G3P[3] and G3P[9] strains have been detected sporadically in humans. The complete genomes of two CRV strains (RVA/Dog-tc/ITA/RV198-95/1995/G3P[3] and RVA/Dog-tc/ITA/RV52-96/1996/G3P[3]) and an unusual HRV strain (RVA/Human-tc/ITA/PA260-97/1997/G3P[3]) were determined to further elucidate the complex relationships among FRV, CRV a…

Microbiology (medical)RotavirusSettore MED/07 - Microbiologia E Microbiologia ClinicaGenes ViralGenotypevirusesReassortmentBiologymedicine.disease_causeCat DiseasesMicrobiologyGenomeRotavirus InfectionsFelineDogsReassortmentRotavirusZoonosesGenotypeGeneticsmedicineAnimalsHumansDog DiseasesMolecular BiologyEcology Evolution Behavior and SystematicsPhylogenyGeneticsWhole genome sequencingNSP1Phylogenetic treeStrain (biology)virus diseasesGenetic VariationSequence Analysis DNARotaviruVirologyInfectious DiseasesInterspecies transmissionChild PreschoolCatsReassortant VirusesHumanInfection, genetics and evolution : journal of molecular epidemiology and evolutionary genetics in infectious diseases
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Sequence analysis of the VP7 and VP4 genes identifies a novel VP7 gene allele of porcine rotaviruses, sharing a common evolutionary origin with human…

2005

AbstractDuring an epidemiological survey encompassing several porcine herds in Saragoza, Spain, the VP7 and VP4 of a rotavirus-positive sample, 34461-4, could not be predicted by using multiple sets of G- and P-type-specific primers. Sequence analysis of the VP7 gene revealed a low amino acid (aa) identity with those of well-established G serotypes, ranging between 58.33% and 88.88%, with the highest identity being to human G2 rotaviruses. Analysis of the VP4 gene revealed a P[23] VP4 specificity, as its VP8* aa sequence was 95.9% identical to that of the P14[23],G5 porcine strain A34, while analysis of the VP6 indicated a genogroup I, that is predictive of subgroup I specificity. Analysis …

RotavirusSerotypeSwineSequence analysisvirusesMolecular Sequence DataBiologyEvolution MolecularAntigenic Diversityfluids and secretionsPhylogeneticsVirologyAnimalsHumansAmino Acid SequenceAlleleAntigens ViralPeptide sequenceGeneAllelesPhylogenyGeneticsvirus diseasesP-typeVirologyHypervariable regionVP7VP4Capsid ProteinsG-typeSequence AnalysisVirology
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Genetic heterogeneity in the VP7 of group C rotaviruses.

2007

AbstractEvidence for a possible zoonotic role of group C rotaviruses (GCRVs) has been recently provided. To gain information on the genetic relationships between human and animal GCRVs, we sequenced the VP7 gene of 10 porcine strains detected during a large surveillance study from different outbreaks of gastroenteritis in piglets. Four GCRV strains were genetically related to the prototype GCRV porcine Cowden strain. A completely new VP7 genotype included 4 strains (344/04-7-like) that shared 92.5% to 97.0% aa identity to each other, but <83% to human GCRVs and <79% to other porcine and bovine GCRVs. A unique 4-aa insertion (SSSV or SSTI), within a variable region at the carboxy-terminus of…

RotavirusGenotypeSequence analysisSwinevirusesMolecular Sequence DataBiologymedicine.disease_causeEvolution MolecularZoonosisGenetic HeterogeneityPhylogeneticsRotavirusVirologyGenotypemedicineAnimalsHumansAmino Acid SequencePeptide sequenceAntigens ViralPhylogenyGeneticsSequence Homology Amino AcidGenetic heterogeneityStrain (biology)Zoonosisvirus diseasesmedicine.diseaseVirologyEnteritisPigsCapsid ProteinsGroup C rotavirusSequence AnalysisVirology
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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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Molecular Analysis of the VP7, VP4, VP6, NSP4, and NSP5/6 Genes of a Buffalo Rotavirus Strain: Identification of the Rare P[3] Rhesus Rotavirus-Like …

2003

ABSTRACT We report the detection and molecular characterization of a rotavirus strain, 10733, isolated from the feces of a buffalo calf affected with diarrhea in Italy. Strain 10733 was classified as a P[3] rotavirus, as the VP8* trypsin cleavage product of the VP4 protein revealed a high amino acid identity (96.2%) with that of rhesus rotavirus strain RRV (P5B[3]), used as the recipient virus in the human-simian reassortant vaccine. Analysis of the VP7 gene product revealed that strain 10733 possessed G6 serotype specificity, a type common in ruminants, with an amino acid identity to G6 rotavirus strains ranging from 88 to 98%, to Venezuelan bovine strain BRV033, and Hungarian human strain…

Microbiology (medical)SerotypeDiarrheaRotavirusGenes ViralSwinevirusesReassortmentMolecular Sequence DataReoviridaeCattle DiseasesBiologyViral Nonstructural Proteinsmedicine.disease_causePolymerase Chain ReactionVirusBirdsFecesfluids and secretionsRotavirusVirologyGenotypemedicineAnimalsHumansAmino Acid SequenceHorsesGeneAntigens ViralAllelesPhylogenyGeneticsViral Structural ProteinsSequence Homology Amino Acidvirus diseasesbiology.organism_classificationVirologyMacaca mulattaDiarrheaCapsid ProteinsCattlemedicine.symptomSequence Alignment
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Relationships among porcine and human P[6] rotaviruses: Evidence that the different human P[6] lineages have originated from multiple interspecies tr…

2005

AbstractPorcine rotavirus strains (PoRVs) bearing human-like VP4 P[6] gene alleles were identified. Genetic characterization with either PCR genotyping or sequence analysis allowed to determine the VP7 specificity of the PoRVs as G3, G4, G5 and G9, and the VP6 as genogroup I, that is predictive of a subgroup I specificity. Sequence analysis of the VP8* trypsin-cleavage product of VP4 allowed PoRVs to be characterized further into genetic lineages within the P[6] genotype. Unexpectedly, the strains displayed significantly higher similarity (up to 94.6% and 92.5% at aa and nt level, respectively) to human M37-like P[6] strains (lineage I), serologically classifiable as P2A, or to the atypical…

Gene Expression Regulation ViralRotavirusGenotypingLineage (genetic)Sequence analysisSwinevirusesMolecular Sequence DataVP4 P[6] GenotypingBiologymedicine.disease_causeP[6]GenomeRotavirus InfectionsEvolution MolecularViral ProteinsSpecies SpecificityRotavirusZoonosesVirologyGenotypemedicineAnimalsHumansAmino Acid SequenceAlleleGenotypingGenePhylogenyGeneticsSequence Homology Amino AcidPorcine rotavirusesvirus diseasesVirologyVP4Sequence AlignmentVirology
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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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Identification of group A porcine rotavirus strains bearing a novel VP4 (P) genotype in Italian swine herds.

2007

ABSTRACT The VP4 gene of a G5 Italian porcine rotavirus strain, 344/04-1, was nontypeable by PCR genotyping. The amino acid sequence of the full-length VP4 protein had low identity (≤76.6%) with the homologous sequences of representative strains of the remaining P genotypes, providing evidence for a novel P genotype.

Microbiology (medical)RotavirusGenotypeSwinevirusesMolecular Sequence DataReoviridaeViral Nonstructural Proteinsmedicine.disease_causeGroup AVirusRotavirus Infectionsfluids and secretionsRotavirusVirologyGenotypemedicineAnimalsPeptide sequenceGenotypingAntigens ViralGlycoproteinsToxins BiologicalSwine DiseasesbiologyStrain (biology)virus diseasesSequence Analysis DNAbiology.organism_classificationVirologyItalyCapsid Proteins
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Genomic characterization of a novel group A lamb rotavirus isolated in Zaragoza, Spain.

2008

An ovine rotavirus (OVR) strain, 762, was isolated from a 30-day-old lamb affected with severe gastroenteritis, in Zaragoza, Spain, and the VP4, VP7, VP6, NSP4, and NSP5/NSP6 genes were subsequently characterized molecularly. Strain OVR762 was classified as a P[14] rotavirus, as the VP4 and VP8* trypsin-cleavage product of the VP4 protein revealed the highest amino acid (aa) identity (94% and 97%, respectively) with that of the P11[14] human rotavirus (HRV) strain PA169, isolated in Italy. Analysis of the VP7 gene product revealed that OVR762 possessed G8 serotype specificity, a type common in ruminants, with the highest degree of aa identity (95–98%) shared with serotype G8 HRV, bovine rot…

SerotypeRotavirusGenotypevirusesReassortmentMolecular Sequence DataSheep DiseasesGenome ViralBiologyViral Nonstructural Proteinsmedicine.disease_causeGroup ARotavirus InfectionsMicrobiologyCell Linefluids and secretionsVirologyRotavirusGenotypeChlorocebus aethiopsGeneticsmedicineAnimalsAmino Acid SequenceMolecular BiologyGenePhylogenyViral Structural ProteinsGenetic diversitySheepStrain (chemistry)Sequence Homology Amino Acidvirus diseasesRotavirus gastroenteritis genotypeGenetic VariationGeneral MedicineVirologySpainVirus genes
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Identification of a novel VP4 genotype carried by a serotype G5 porcine rotavirus strain

2006

AbstractRotavirus genome segment 4, encoding the spike outer capsid VP4 protein, of a porcine rotavirus (PoRV) strain, 134/04-15, identified in Italy was sequenced, and the predicted amino acid (aa) sequence was compared to those of all known VP4 (P) genotypes. The aa sequence of the full-length VP4 protein of the PoRV strain 134/04-15 showed aa identity values ranging from 59.7% (bovine strain KK3, P8[11]) to 86.09% (porcine strain A46, P[13]) with those of the remaining 25 P genotypes. Moreover, aa sequence analysis of the corresponding VP8* trypsin cleavage fragment revealed that the PoRV strain 134/04-15 shared low identity, ranging from 37.52% (bovine strain 993/83, P[17]) to 73.6% (po…

DiarrheaRotavirusSerotypeP genotypeGenotypeSwineSequence analysisvirusesMolecular Sequence DataViral Nonstructural ProteinsBiologymedicine.disease_causeGenetic diversityRotavirus InfectionsVirologyRotavirusGenetic variationGenotypemedicineAnimalsAmino Acid SequenceSerotypingAntigens ViralPeptide sequenceGenePhylogenyGlycoproteinsToxins BiologicalSwine DiseasesSequence Homology Amino AcidPhylogenetic treeGenetic Variationvirus diseasesSequence Analysis DNAVirologyMolecular biologyItalyVP4PigsCapsid Proteins
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Impact of Vaccination on Rotavirus Genotype Diversity: A Nearly Two-Decade-Long Epidemiological Study before and after Rotavirus Vaccine Introduction…

2022

Sicily was the first Italian region to introduce rotavirus (RV) vaccination with the monovalent G1P[8] vaccine Rotarix&reg; in May 2012. In this study, the seasonal distribution and molecular characterization of RV strains detected over 19 years were compared to understand the effect of Rotarix&reg; on the evolutionary dynamics of human RVs. A total of 7846 stool samples collected from children &lt; 5 years of age, hospitalized with acute gastroenteritis, were tested for RV detection and genotyping. Since 2013, vaccine coverage has progressively increased, while the RV prevalence decreased from 36.1% to 13.3% with a loss of seasonality. The local distribution of RV genotypes changed over th…

Microbiology (medical)Settore MED/07 - Microbiologia E Microbiologia ClinicarotaviruInfectious Diseasesantigenic epitopeGeneral Immunology and MicrobiologyRotarixgenotypevaccinerotavirus; genotypes; vaccine; Rotarix; antigenic epitopesImmunology and AllergyMolecular BiologyPathogens
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Review of group A rotavirus strains reported in swine and cattle

2013

Group A rotavirus (RVA) infections cause severe economic losses in intensively reared livestock animals, particularly in herds of swine and cattle. RVA strains are antigenically heterogeneous, and are classified in multiple G and P types defined by the two outer capsid proteins, VP7 and VP4, respectively. This study summarizes published literature on the genetic and antigenic diversity of porcine and bovine RVA strains published over the last 3 decades. The single most prevalent genotype combination among porcine RVA strains was G5P[7], whereas the predominant genotype combination among bovine RVA strains was G6P[5], although spatiotemporal differences in RVA strain distribution were observ…

RotavirusSettore MED/07 - Microbiologia E Microbiologia ClinicaVeterinary medicineGenotypeEpidemiologyPorcineSwineCattle DiseasesCattle DiseasesBiologymedicine.disease_causeMicrobiologyGroup AArticleRotavirus InfectionsZoonosisRotavirusGenotypePrevalencemedicineAnimalsSwine DiseasesSurveillanceGeneral VeterinarySurveillance Epidemiology Vaccination Zoonosis Porcine Bovinebusiness.industryVaccinationZoonosisBovineGeneral Medicinemedicine.diseaseVirologyVaccinationHerdCapsid ProteinsCattleLivestockbusinessVeterinary Microbiology
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Detection of a porcine-like rotavirus in a child with enteritis in Italy.

2008

ABSTRACT During a 1-year rotavirus surveillance of children hospitalized with acute gastroenteritis in Brescia Hospital, Italy, a chimerical rotavirus strain, G3P[6], was detected, displaying the VP7 and VP4 genes of porcine origin and the NSP4 and VP6 genes of human origin. The reassortant nature of the virus rules out a direct zoonotic event.

RotavirusMicrobiology (medical)virusesMolecular Sequence DataReoviridaeRotavirus InfectionsViral Nonstructural Proteinsmedicine.disease_causeRotavirus InfectionsVirusMicrobiologyEnteritisfluids and secretionsVirologyRotavirusmedicineHumansAmino Acid SequencePhylogenyRecombination GeneticViral Structural ProteinsSequence Homology Amino AcidbiologyPorcine rotavirusInfantvirus diseasesSequence Analysis DNAAcute gastroenteritismedicine.diseasebiology.organism_classificationVirologyEnteritisItalyChild PreschoolRNA ViralSequence Alignment
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Molecular characterization of genotype G6 human rotavirus strains detected in Italy from 1986 to 2009.

2011

Group A human rotavirus (HRV) strains with a bovine-like (G6) major outer capsid protein VP7 were first detected in Palermo, Italy, in the late 1980s, and subsequently worldwide. During a 25-year rotavirus surveillance period, additional HRV G6 strains, associated with either a P[9] or P[14] VP4 genotype, have been detected sporadically, but repeatedly, in Palermo. Whether these G6 HRVs were transmitted to humans directly from an animal reservoir or could have circulated at low prevalence in susceptible individuals is uncertain. Upon sequence analyses of the VP7, VP4, VP6, NSP4 and NSP5 gene segments, all the Italian HRV strains displayed a conserved genotype constellation, G6-P[9]/[14]-I2-…

Microbiology (medical)RotavirusGenotypingSettore MED/07 - Microbiologia E Microbiologia ClinicaLineage (genetic)GenotypevirusesPeriod (gene)Biologymedicine.disease_causeMicrobiologyGroup ARotavirus InfectionsViral ProteinsRotavirusGenotypeGeneticsmedicineAnimalsHumansMolecular BiologyGenotypingGeneG6Ecology Evolution Behavior and SystematicsPhylogenyGeneticsTransmission (medicine)Sequence Analysis RNAvirus diseasesRotaviruVirologyP[9]Infectious DiseasesItalyP[14]Infection, genetics and evolution : journal of molecular epidemiology and evolutionary genetics in infectious diseases
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