Genotyping and reassortment analysis of highly pathogenic avian influenza viruses H5N8 and H5N2 from Egypt reveals successive annual replacement of genotypes.
暂无分享,去创建一个
M. Beer | T. Harder | H. Hafez | S. Shany | M. El-kady | F. Pfaff | A. El-Sawah | Hassanein H Abozeid | A. Arafa | N. Saad | Kareem E Hassan | A. A. El-Sawah | Florian Pfaff | Hassanein H. Abozeid
[1] M. Beer,et al. Novel Reassortant Highly Pathogenic Avian Influenza A(H5N2) Virus in Broiler Chickens, Egypt , 2020, Emerging infectious diseases.
[2] M. Beer,et al. Genetic Characterization and Zoonotic Potential of Highly Pathogenic Avian Influenza Virus A(H5N6/H5N5), Germany, 2017–2018 , 2019, Emerging infectious diseases.
[3] M. Beer,et al. Respiratory disease due to mixed viral infections in poultry flocks in Egypt between 2017 and 2018: Upsurge of highly pathogenic avian influenza virus subtype H5N8 since 2018. , 2019, Transboundary and emerging diseases.
[4] A. Selim,et al. Isolation of a Novel Reassortant Highly Pathogenic Avian Influenza (H5N2) Virus in Egypt , 2019, Viruses.
[5] Won-Suk Choi,et al. The Emergence and Decennary Distribution of Clade 2.3.4.4 HPAI H5Nx , 2019, Microorganisms.
[6] R. Webby,et al. Surveillance for avian influenza viruses in wild birds at live bird markets, Egypt, 2014‐2016 , 2019, Influenza and other respiratory viruses.
[7] A. Shehata,et al. Co-infections, genetic, and antigenic relatedness of avian influenza H5N8 and H5N1 viruses in domestic and wild birds in Egypt , 2019, Poultry science.
[8] Å. Lundkvist,et al. Avian influenza viruses at the wild–domestic bird interface in Egypt , 2019, Infection ecology & epidemiology.
[9] M. Beer,et al. Co-circulation of genetically distinct highly pathogenic avian influenza A clade 2.3.4.4 (H5N6) viruses in wild waterfowl and poultry in Europe and East Asia, 2017–18 , 2019, Virus evolution.
[10] Sebastián Duchêne,et al. BEAST 2.5: An advanced software platform for Bayesian evolutionary analysis , 2018, bioRxiv.
[11] Eun-Kyoung Lee,et al. Novel reassortants of clade 2.3.4.4 H5N6 highly pathogenic avian influenza viruses possessing genetic heterogeneity in South Korea in late 2017 , 2018, Journal of veterinary science.
[12] Sudhir Kumar,et al. MEGA X: Molecular Evolutionary Genetics Analysis across Computing Platforms. , 2018, Molecular biology and evolution.
[13] T. Mettenleiter,et al. Multiple Introductions of Influenza A(H5N8) Virus into Poultry, Egypt, 2017 , 2018, Emerging infectious diseases.
[14] Ruiyun Li,et al. Multiple introductions of reassorted highly pathogenic avian influenza viruses (H5N8) clade 2.3.4.4b causing outbreaks in wild birds and poultry in Egypt. , 2018, Infection, genetics and evolution : journal of molecular epidemiology and evolutionary genetics in infectious diseases.
[15] R. Webby,et al. Screening for Neuraminidase Inhibitor Resistance Markers among Avian Influenza Viruses of the N4, N5, N6, and N8 Neuraminidase Subtypes , 2017, Journal of Virology.
[16] M. Beer,et al. Natural Reassortants of Potentially Zoonotic Avian Influenza Viruses H5N1 and H9N2 from Egypt Display Distinct Pathogenic Phenotypes in Experimentally Infected Chickens and Ferrets , 2017, Journal of Virology.
[17] R. Webby,et al. Genetic characterization of highly pathogenic avian influenza A H5N8 viruses isolated from wild birds in Egypt. , 2017, The Journal of general virology.
[18] A. von Haeseler,et al. UFBoot2: Improving the Ultrafast Bootstrap Approximation , 2017, bioRxiv.
[19] A. Selim,et al. Highly Pathogenic Avian Influenza Virus (H5N8) Clade 2.3.4.4 Infection in Migratory Birds, Egypt , 2017, Emerging infectious diseases.
[20] Thomas K. F. Wong,et al. ModelFinder: Fast Model Selection for Accurate Phylogenetic Estimates , 2017, Nature Methods.
[21] R. Webby,et al. Novel reassortant H9N2 viruses in pigeons and evidence for antigenic diversity of H9N2 viruses isolated from quails in Egypt. , 2017, The Journal of general virology.
[22] Eric J. Ma,et al. Reassortment of Influenza A Viruses in Wild Birds in Alaska before H5 Clade 2.3.4.4 Outbreaks , 2017, Emerging infectious diseases.
[23] M. Beer,et al. Riems influenza a typing array (RITA): An RT-qPCR-based low density array for subtyping avian and mammalian influenza a viruses , 2016, Scientific Reports.
[24] Ahmed Ali,et al. Prevalence of avian respiratory viruses in broiler flocks in Egypt , 2016, Poultry Science.
[25] Takehiko Saito,et al. Intracontinental and intercontinental dissemination of Asian H5 highly pathogenic avian influenza virus (clade 2.3.4.4) in the winter of 2014–2015 , 2015, Reviews in medical virology.
[26] K. Winker,et al. Intercontinental Spread of Asian-Origin H5N8 to North America through Beringia by Migratory Birds , 2015, Journal of Virology.
[27] A. von Haeseler,et al. IQ-TREE: A Fast and Effective Stochastic Algorithm for Estimating Maximum-Likelihood Phylogenies , 2014, Molecular biology and evolution.
[28] A. Selim,et al. Surveillance on A/H5N1 virus in domestic poultry and wild birds in Egypt , 2013, Virology Journal.
[29] Minh Anh Nguyen,et al. Ultrafast Approximation for Phylogenetic Bootstrap , 2013, Molecular biology and evolution.
[30] K. Katoh,et al. MAFFT Multiple Sequence Alignment Software Version 7: Improvements in Performance and Usability , 2013, Molecular biology and evolution.
[31] Bernd Hoffmann,et al. Saving resources: avian influenza surveillance using pooled swab samples and reduced reaction volumes in real-time RT-PCR. , 2012, Journal of virological methods.
[32] D. Huson,et al. Dendroscope 3: an interactive tool for rooted phylogenetic trees and networks. , 2012, Systematic biology.
[33] Shane S. Sturrock,et al. Geneious Basic: An integrated and extendable desktop software platform for the organization and analysis of sequence data , 2012, Bioinform..
[34] A. Selim,et al. Isolation of H9N2 avian influenza virus from bobwhite quail (Colinus virginianus) in Egypt , 2012, Archives of Virology.
[35] T. Harder,et al. The use of FTA® filter papers for diagnosis of avian influenza virus. , 2011, Journal of virological methods.
[36] E. Abdelwhab,et al. An overview of the epidemic of highly pathogenic H5N1 avian influenza virus in Egypt: epidemiology and control challenges , 2011, Epidemiology and Infection.
[37] F. Roger,et al. Avian influenza vaccination in Egypt: Limitations of the current strategy , 2009, Journal of molecular and genetic medicine : an international journal of biomedical research.
[38] Daniel H. Huson,et al. Computing galled networks from real data , 2009, Bioinform..
[39] M. Beer,et al. Simple, Sensitive, and Swift Sequencing of Complete H5N1 Avian Influenza Virus Genomes , 2009, Journal of Clinical Microbiology.
[40] P. Tien,et al. Analysis of a point mutation in H5N1 avian influenza virus hemagglutinin in relation to virus entry into live mammalian cells , 2008, Archives of Virology.
[41] M. Hassan,et al. Epidemiological Findings of Outbreaks of Disease Caused by Highly Pathogenic H5N1 Avian Influenza Virus in Poultry in Egypt During 2006 , 2008, Avian diseases.
[42] R. Wagner,et al. Avian and 1918 Spanish Influenza A Virus NS1 Proteins Bind to Crk/CrkL Src Homology 3 Domains to Activate Host Cell Signaling* , 2008, Journal of Biological Chemistry.
[43] Chih-Jen Wei,et al. Immunization by Avian H5 Influenza Hemagglutinin Mutants with Altered Receptor Binding Specificity , 2007, Science.
[44] H. Klenk,et al. Differential Polymerase Activity in Avian and Mammalian Cells Determines Host Range of Influenza Virus , 2007, Journal of Virology.
[45] David J. Stevens,et al. Haemagglutinin mutations responsible for the binding of H5N1 influenza A viruses to human-type receptors , 2006, Nature.
[46] D. Huson,et al. Application of phylogenetic networks in evolutionary studies. , 2006, Molecular biology and evolution.
[47] R. Webster,et al. Detection of amantadine-resistant variants among avian influenza viruses isolated in North America and Asia. , 2005, Virology.
[48] G. Boivin,et al. Generation and Characterization of Recombinant Influenza A (H1N1) Viruses Harboring Amantadine Resistance Mutations , 2005, Antimicrobial Agents and Chemotherapy.
[49] Søren Brunak,et al. Prediction of Glycosylation Across the Human Proteome and the Correlation to Protein Function , 2001, Pacific Symposium on Biocomputing.
[50] R. Webby,et al. Re-emergence of amantadine-resistant variants among highly pathogenic avian influenza H5N1 viruses in Egypt. , 2016, Infection, Genetics and Evolution.
[51] L. Gubareva,et al. Oseltamivir resistance mutation N294S in human influenza A(H5N1) virus in Egypt. , 2009, Journal of infection and public health.
[52] T. A. Hall,et al. BIOEDIT: A USER-FRIENDLY BIOLOGICAL SEQUENCE ALIGNMENT EDITOR AND ANALYSIS PROGRAM FOR WINDOWS 95/98/ NT , 1999 .