Large-Scale Phylogenomic Analysis Reveals the Complex Evolutionary History of Rabies Virus in Multiple Carnivore Hosts
暂无分享,去创建一个
Marco Vignuzzi | Christiane Bouchier | Edward C Holmes | Hervé Blanc | Hervé Bourhy | E. Holmes | M. Vignuzzi | S. Duchêne | Cécile Troupin | C. Bouchier | Laurent Dacheux | H. Blanc | H. Bourhy | C. Sabeta | Cécile Troupin | Marion Tanguy | Claude Sabeta | Sebastián Duchene | L. Dacheux | M. Tanguy
[1] G. Baer. History of Rabies and Global Aspects , 2017 .
[2] Christl A. Donnelly,et al. Revealing the Micro-scale Signature of Endemic Zoonotic Disease Transmission in an African Urban Setting , 2016, PLoS pathogens.
[3] H. F. Liu,et al. Emergence of a sylvatic enzootic formosan ferret badger-associated rabies in Taiwan and the geographical separation of two phylogenetic groups of rabies viruses. , 2016, Veterinary microbiology.
[4] Andrew Rambaut,et al. Exploring the temporal structure of heterochronous sequences using TempEst (formerly Path-O-Gen) , 2016, Virus evolution.
[5] Yung-Fu Chang,et al. Rabies Virus Infection in Ferret Badgers (Melogale moschata subaurantiaca) in Taiwan: A Retrospective Study , 2015, Journal of wildlife diseases.
[6] G. Wilkie,et al. Elucidating the phylodynamics of endemic rabies virus in eastern Africa using whole-genome sequencing , 2015, Virus evolution.
[7] E. Holmes,et al. Avian influenza virus exhibits distinct evolutionary dynamics in wild birds and poultry , 2015, BMC Evolutionary Biology.
[8] J. Dushoff,et al. Estimating the Global Burden of Endemic Canine Rabies , 2015, PLoS neglected tropical diseases.
[9] D. Streicker,et al. The role of viral evolution in rabies host shifts and emergence , 2014, Current opinion in virology.
[10] A. Breed,et al. The Phylogeography of Rabies in Grenada, West Indies, and Implications for Control , 2014, PLoS neglected tropical diseases.
[11] Yan Pan,et al. Characterization of the biological properties and complete genome sequence analysis of a cattle-derived rabies virus isolate from the Guangxi province of southern China , 2014, Virus Genes.
[12] G. Moseley,et al. Interaction of rabies virus P-protein with STAT proteins is critical to lethal rabies disease. , 2014, The Journal of infectious diseases.
[13] N. Johnson,et al. Current status of rabies and prospects for elimination , 2014, The Lancet.
[14] C. Hsieh,et al. Molecular Characterization of Cryptically Circulating Rabies Virus from Ferret Badgers, Taiwan , 2014, Emerging infectious diseases.
[15] Shou-feng Zhang,et al. Molecular characterization of three ferret badger (Melogale moschata) rabies virus isolates from Jiangxi province, China , 2014, Archives of Virology.
[16] P. Lemey,et al. The Phylogeography and Spatiotemporal Spread of South-Central Skunk Rabies Virus , 2013, PloS one.
[17] S. Brisse,et al. AlienTrimmer: a tool to quickly and accurately trim off multiple short contaminant sequences from high-throughput sequencing reads. , 2013, Genomics.
[18] Jonathan E. Allen,et al. Ultra-Deep Sequencing of Intra-host Rabies Virus Populations during Cross-species Transmission , 2013, PLoS neglected tropical diseases.
[19] Dwij Raj Bhatta,et al. Recent Emergence and Spread of an Arctic-Related Phylogenetic Lineage of Rabies Virus in Nepal , 2013, PLoS neglected tropical diseases.
[20] J. Oem,et al. Complete genome sequences of three rabies viruses isolated from rabid raccoon dogs and a cow in Korea , 2013, Virus Genes.
[21] Shou-feng Zhang,et al. Complete Genome Sequence of a Rabies Virus Isolate from a Ferret Badger (Melogale moschata) in Jiangxi, China , 2013, Genome Announcements.
[22] C. Hanlon,et al. Genetic characterization and phylogenetic analysis of skunk-associated rabies viruses in North America with special emphasis on the central plains. , 2013, Virus research.
[23] S. Rayner,et al. Genetic diversity and molecular evolution of the rabies virus matrix protein gene in China. , 2013, Infection, genetics and evolution : journal of molecular epidemiology and evolutionary genetics in infectious diseases.
[24] Marc A Suchard,et al. Simultaneously reconstructing viral cross-species transmission history and identifying the underlying constraints , 2013, Philosophical Transactions of the Royal Society B: Biological Sciences.
[25] Mandev S. Gill,et al. Improving Bayesian population dynamics inference: a coalescent-based model for multiple loci. , 2013, Molecular biology and evolution.
[26] Sergei L. Kosakovsky Pond,et al. FUBAR: a fast, unconstrained bayesian approximation for inferring selection. , 2013, Molecular biology and evolution.
[27] S. Rayner,et al. National Borders Effectively Halt the Spread of Rabies: The Current Rabies Epidemic in China Is Dislocated from Cases in Neighboring Countries , 2013, PLoS neglected tropical diseases.
[28] S. Altizer,et al. Variable evolutionary routes to host establishment across repeated rabies virus host shifts among bats , 2012, Proceedings of the National Academy of Sciences of the United States of America.
[29] Ramón Doallo,et al. CircadiOmics: integrating circadian genomics, transcriptomics, proteomics and metabolomics , 2012, Nature Methods.
[30] Sergei L. Kosakovsky Pond,et al. Detecting Individual Sites Subject to Episodic Diversifying Selection , 2012, PLoS genetics.
[31] Q. Tang,et al. The full-length genome analysis of a street rabies virus strain isolated in Yunnan province of China , 2012, Virologica Sinica.
[32] David L. Bergman,et al. Molecular Inferences Suggest Multiple Host Shifts of Rabies Viruses from Bats to Mesocarnivores in Arizona during 2001–2009 , 2012, PLoS pathogens.
[33] P. Lemey,et al. Rates of Viral Evolution Are Linked to Host Geography in Bat Rabies , 2012, PLoS pathogens.
[34] Charles E Rupprecht,et al. A perspective on lyssavirus emergence and perpetuation. , 2011, Current opinion in virology.
[35] Sergei L. Kosakovsky Pond,et al. Purifying Selection Can Obscure the Ancient Age of Viral Lineages , 2011, Molecular biology and evolution.
[36] C. Rupprecht,et al. Evolutionary dynamics of rabies viruses highlights the importance of China rabies transmission in Asia. , 2011, Virology.
[37] Sergei L. Kosakovsky Pond,et al. Datamonkey 2010: a suite of phylogenetic analysis tools for evolutionary biology , 2010, Bioinform..
[38] M. Suchard,et al. Phylodynamics and Human-Mediated Dispersal of a Zoonotic Virus , 2010, PLoS pathogens.
[39] A. Nekrutenko,et al. Galaxy: a comprehensive approach for supporting accessible, reproducible, and transparent computational research in the life sciences , 2010, Genome Biology.
[40] Gary F. McCracken,et al. Host Phylogeny Constrains Cross-Species Emergence and Establishment of Rabies Virus in Bats , 2010, Science.
[41] O. Faye,et al. Application of Broad-Spectrum Resequencing Microarray for Genotyping Rhabdoviruses , 2010, Journal of Virology.
[42] L. Nel,et al. Evolutionary history of African mongoose rabies. , 2010, Virus research.
[43] Mingfu Shao,et al. Temporal and spatial dynamics of rabies viruses in China and Southeast Asia. , 2010, Virus research.
[44] O. Gascuel,et al. New algorithms and methods to estimate maximum-likelihood phylogenies: assessing the performance of PhyML 3.0. , 2010, Systematic biology.
[45] Daniel J. Blankenberg,et al. Galaxy: A Web‐Based Genome Analysis Tool for Experimentalists , 2010, Current protocols in molecular biology.
[46] P. Vidalain,et al. Structure of the Nucleoprotein Binding Domain of Mokola Virus Phosphoprotein , 2009, Journal of Virology.
[47] S. Nadin-Davis,et al. Molecular characterization of the complete genome of a street rabies virus isolated in China. , 2009, Virus research.
[48] O. Faye,et al. Evolutionary history and dynamics of dog rabies virus in western and central Africa. , 2009, The Journal of general virology.
[49] Eleca J. Dunham,et al. The origin and phylogeography of dog rabies virus. , 2008, The Journal of general virology.
[50] Edward C Holmes,et al. Evolutionary history and phylogeography of human viruses. , 2008, Annual review of microbiology.
[51] Charles H. Calisher,et al. Cross-Species Virus Transmission and the Emergence of New Epidemic Diseases , 2008, Microbiology and Molecular Biology Reviews.
[52] M. Suchard,et al. Smooth skyride through a rough skyline: Bayesian coalescent-based inference of population dynamics. , 2008, Molecular biology and evolution.
[53] Olivier Delmas,et al. Genomic Diversity and Evolution of the Lyssaviruses , 2008, PloS one.
[54] A. Rambaut,et al. BEAST: Bayesian evolutionary analysis by sampling trees , 2007, BMC Evolutionary Biology.
[55] Rodrigo Lopez,et al. Clustal W and Clustal X version 2.0 , 2007, Bioinform..
[56] Leslie A Real,et al. A high-resolution genetic signature of demographic and spatial expansion in epizootic rabies virus , 2007, Proceedings of the National Academy of Sciences.
[57] E. Holmes,et al. The evolutionary dynamics of canid and mongoose rabies virus in southern Africa , 2007, Archives of Virology.
[58] L. Nel,et al. Lyssaviruses , 2007, Critical reviews in microbiology.
[59] C. Hanlon,et al. Bat-associated Rabies Virus in Skunks , 2006, Emerging infectious diseases.
[60] O. Gascuel,et al. Approximate likelihood-ratio test for branches: A fast, accurate, and powerful alternative. , 2006, Systematic biology.
[61] Daniel J. Blankenberg,et al. Galaxy: a platform for interactive large-scale genome analysis. , 2005, Genome research.
[62] S. Elena,et al. Epistasis and the Adaptability of an RNA Virus , 2005, Genetics.
[63] V. Souza,et al. Molecular epizootiology of rabies associated with terrestrial carnivores in Mexico. , 2005, Virus research.
[64] Sergei L. Kosakovsky Pond,et al. Not so different after all: a comparison of methods for detecting amino acid sites under selection. , 2005, Molecular biology and evolution.
[65] C. Rupprecht,et al. Mongoose rabies in southern Africa: a re-evaluation based on molecular epidemiology. , 2005, Virus research.
[66] M. Woolhouse,et al. Emerging pathogens: the epidemiology and evolution of species jumps , 2005, Trends in Ecology & Evolution.
[67] Sergei L. Kosakovsky Pond,et al. Datamonkey: rapid detection of selective pressure on individual sites of codon alignments , 2005, Bioinform..
[68] S. Roche,et al. Structure and Function of the C-terminal Domain of the Polymerase Cofactor of Rabies Virus , 2004, Journal of Molecular Biology.
[69] T. Kuiken,et al. Emerging viral infections in a rapidly changing world , 2003, Current Opinion in Biotechnology.
[70] O. Gascuel,et al. A simple, fast, and accurate algorithm to estimate large phylogenies by maximum likelihood. , 2003, Systematic biology.
[71] M. Suchard,et al. Hierarchical phylogenetic models for analyzing multipartite sequence data. , 2003, Systematic biology.
[72] David L. Bergman,et al. Population Monitoring in Support of a Rabies Vaccination Program for Skunks in Arizona , 2003, Journal of wildlife diseases.
[73] S. Nadin-Davis,et al. Lyssavirus P gene characterisation provides insights into the phylogeny of the genus and identifies structural similarities and diversity within the encoded phosphoprotein. , 2002, Virology.
[74] E. Holmes,et al. Genetic constraints and the adaptive evolution of rabies virus in nature. , 2002, Virology.
[75] N. Tordo,et al. Host Switching in Lyssavirus History from the Chiroptera to the Carnivora Orders , 2001, Journal of Virology.
[76] L. H. Taylor,et al. Diseases of humans and their domestic mammals: pathogen characteristics, host range and the risk of emergence. , 2001, Philosophical transactions of the Royal Society of London. Series B, Biological sciences.
[77] L. Villarreal,et al. Acute and persistent viral life strategies and their relationship to emerging diseases. , 2000, Virology.
[78] E. Holmes,et al. Ecology and evolution of rabies virus in Europe. , 1999, The Journal of general virology.
[79] Key Concept 4.1 Globalizing Networks of Communication and Exchange , 2012 .
[80] J. Childs,et al. Introduction: Conceptualizing and Partitioning the Emergence Process of Zoonotic Viruses from Wildlife to Humans , 2007, Current topics in microbiology and immunology.
[81] L. H. Taylor,et al. Overviews of Pathogen Emergence: Which Pathogens Emerge, When and Why? , 2007, Current topics in microbiology and immunology.
[82] Alexei J Drummond,et al. Choosing appropriate substitution models for the phylogenetic analysis of protein-coding sequences. , 2006, Molecular biology and evolution.
[83] J. Holland,et al. Rapid evolution of RNA viruses. , 1987, Annual review of microbiology.