Biological invasions in international seaports: a case study of exotic rodents in Cotonou
暂无分享,去创建一个
A. Loiseau | G. Dobigny | P. Gauthier | C. Brouat | S. Badou | C. Agbangla | G. Houémènou | K. Hima | A. Missihoun | G. Houéménou
[1] G. Dobigny,et al. Fine‐scale prevalence and genetic diversity of urban small mammal‐borne pathogenic Leptospira in Africa: A spatiotemporal survey within Cotonou, Benin , 2022, Zoonoses and public health.
[2] C. Bradshaw,et al. High and rising economic costs of biological invasions worldwide , 2021, Nature.
[3] C. Chimimba,et al. Predicting the potential distribution of a previously undetected cryptic invasive synanthropic Asian house rat (Rattus tanezumi) in South Africa , 2022, Journal of Urban Ecology.
[4] Florian Pichlmueller,et al. Assessment of dispersal and population structure of Norway rats (Rattus norvegicus) in a seaport setting , 2021, Urban Ecosystems.
[5] T. Sironen,et al. Genetic Characterization of Seoul Virus in the Seaport of Cotonou, Benin , 2021, Emerging infectious diseases.
[6] K. Machera,et al. Investigating a human pesticide intoxication incident: The importance of robust analytical approaches , 2021 .
[7] Martin A. Nuñez,et al. What are the economic costs of biological invasions? A complex topic requiring international and interdisciplinary expertise , 2020, NeoBiota.
[8] L. Nuninger,et al. InvaCost, a public database of the economic costs of biological invasions worldwide , 2020, Scientific Data.
[9] Emily E. Puckett,et al. Commensal Rats and Humans: Integrating Rodent Phylogeography and Zooarchaeology to Highlight Connections between Human Societies , 2020, BioEssays : news and reviews in molecular, cellular and developmental biology.
[10] G. Dobigny,et al. Invasive rodents and damages to food stocks: a study in the Autonomous Harbor of Cotonou, Benin , 2019, BASE.
[11] A. Dalecky,et al. Native and Invasive Small Mammals in Urban Habitats along the Commercial Axis Connecting Benin and Niger, West Africa , 2019 .
[12] J. Childs,et al. Significant Genetic Impacts Accompany an Urban Rat Control Campaign in Salvador, Brazil , 2019, Front. Ecol. Evol..
[13] A. Loiseau,et al. Interplay between historical and current features of the cityscape in shaping the genetic structure of the house mouse (Mus musculus domesticus) in Dakar (Senegal, West Africa) , 2019, bioRxiv.
[14] D. Patrick,et al. Rats About Town: A Systematic Review of Rat Movement in Urban Ecosystems , 2019, Front. Ecol. Evol..
[15] A. C. Gonçalves,et al. Human intoxication by agrochemicals in the region of South Brazil between 1999 and 2014 , 2019, Journal of environmental science and health. Part. B, Pesticides, food contaminants, and agricultural wastes.
[16] A. Desvars-Larrive,et al. Population genetics and genotyping as tools for planning rat management programmes , 2018, Journal of Pest Science.
[17] Bruno M. Ghersi,et al. Urban rat races: spatial population genomics of brown rats (Rattus norvegicus) compared across multiple cities , 2018, Proceedings of the Royal Society B: Biological Sciences.
[18] Emily E. Puckett,et al. Spatial population genomics of the brown rat (Rattus norvegicus) in New York City , 2018, Molecular ecology.
[19] M. Gaertner,et al. How do invasive species travel to and through urban environments? , 2017, Biological Invasions.
[20] A. Desvars-Larrive,et al. Population genetics, community of parasites, and resistance to rodenticides in an urban brown rat (Rattus norvegicus) population , 2017, PloS one.
[21] A. Estoup,et al. Genetic structure and invasion history of the house mouse (Mus musculus domesticus) in Senegal, West Africa: a legacy of colonial and contemporary times , 2017, Heredity.
[22] J. Childs,et al. Using fine‐scale spatial genetics of Norway rats to improve control efforts and reduce leptospirosis risk in urban slum environments , 2017, Evolutionary applications.
[23] Ingolf Kühn,et al. No saturation in the accumulation of alien species worldwide , 2017, Nature Communications.
[24] C. Machain-Williams,et al. Perceptions of rodent-associated problems: an experience in urban and rural areas of Yucatan, Mexico , 2017, Urban Ecosystems.
[25] M. Navascués,et al. Black rat invasion of inland Sahel: insights from interviews and population genetics in south-western Niger , 2016 .
[26] Laurent Granjon,et al. From Human Geography to Biological Invasions: The Black Rat Distribution in the Changing Southeastern of Senegal , 2016, PloS one.
[27] Tim S Doherty,et al. Invasive predators and global biodiversity loss , 2016, Proceedings of the National Academy of Sciences.
[28] A. Loiseau,et al. Urban population genetics of the invasive black rats in Franceville, Gabon , 2016 .
[29] P. Diggle,et al. A comparative assessment of track plates to quantify fine scale variations in the relative abundance of Norway rats in urban slums , 2016, Urban Ecosystems.
[30] L. Granjon,et al. Range expansion of the invasive house mouse Mus musculus domesticus in Senegal, West Africa: a synthesis of trapping data over three decades, 1983-2014 , 2015 .
[31] S. Morand,et al. Aboriginal and invasive rats of genus Rattus as hosts of infectious agents. , 2015, Vector borne and zoonotic diseases.
[32] G. Harper,et al. Invasive rats on tropical islands: Their population biology and impacts on native species , 2015 .
[33] S. Bertolino,et al. Rating the rat: Global patterns and research priorities in impacts and management of rodent pests , 2014 .
[34] M. Kohn,et al. Mitochondrial DNA Phylogeography of the Norway Rat , 2014, PloS one.
[35] G. M. Macbeth,et al. NeEstimator v2: re‐implementation of software for the estimation of contemporary effective population size (Ne) from genetic data , 2014, Molecular ecology resources.
[36] G. Dobigny,et al. Local perception of rodent-associated problems in Sahelian urban areas: a survey in Niamey, Niger , 2014, Urban Ecosystems.
[37] R. Thresher,et al. Genetic control of invasive fish: technological options and its role in integrated pest management , 2014, Biological Invasions.
[38] J. Childs,et al. Urban population genetics of slum‐dwelling rats (Rattus norvegicus) in Salvador, Brazil , 2013, Molecular ecology.
[39] B. Gallardo,et al. The 'dirty dozen': socio-economic factors amplify the invasion potential of 12 high-risk aquatic invasive species in Great Britain and Ireland. , 2013 .
[40] K. Campbell,et al. Eradicating multiple invasive species on inhabited islands: the next big step in island restoration? , 2013, Biological Invasions.
[41] A. Buckle. Anticoagulant resistance in the United Kingdom and a new guideline for the management of resistant infestations of Norway rats (Rattus norvegicus Berk.). , 2013, Pest management science.
[42] Adam Konečný,et al. Invasion genetics of the introduced black rat (Rattus rattus) in Senegal, West Africa , 2013, Molecular ecology.
[43] Elizabeth Matisoo-Smith,et al. Multiple Geographic Origins of Commensalism and Complex Dispersal History of Black Rats , 2011, PloS one.
[44] I. Fourel,et al. Biochemical characterization of spontaneous mutants of rat VKORC1 involved in the resistance to antivitamin K anticoagulants. , 2011, Archives of biochemistry and biophysics.
[45] Petr Pyšek,et al. A proposed unified framework for biological invasions. , 2011, Trends in ecology & evolution.
[46] J. S. Clair,et al. The impacts of invasive rodents on island invertebrates , 2011 .
[47] F. Balloux,et al. Discriminant analysis of principal components: a new method for the analysis of genetically structured populations , 2010, BMC Genetics.
[48] S. A. Barnett. AN ANALYSIS OF SOCIAL BEHAVIOUR IN WILD RATS , 2009 .
[49] Aize Kijlstra,et al. Rodent-borne diseases and their risks for public health , 2009, Critical reviews in microbiology.
[50] D. Richardson,et al. Something in the way you move: dispersal pathways affect invasion success. , 2009, Trends in ecology & evolution.
[51] R. DeSalle,et al. Correction: Historical Mammal Extinction on Christmas Island (Indian Ocean) Correlates with Introduced Infectious Disease , 2009, PLoS ONE.
[52] L. Rahalison,et al. Isolation and characterization of microsatellites in Rattus rattus , 2008, Molecular ecology resources.
[53] R. Waples,et al. ldne: a program for estimating effective population size from data on linkage disequilibrium , 2008, Molecular ecology resources.
[54] Montgomery Slatkin,et al. Linkage disequilibrium — understanding the evolutionary past and mapping the medical future , 2008, Nature Reviews Genetics.
[55] F. Rousset. genepop’007: a complete re‐implementation of the genepop software for Windows and Linux , 2008, Molecular ecology resources.
[56] A. Estoup,et al. Microsatellite null alleles and estimation of population differentiation. , 2007, Molecular biology and evolution.
[57] Tony O’Hagan. Bayes factors , 2006 .
[58] Michael J. O. Pocock,et al. Dispersal in house mice , 2005 .
[59] D. Pimentel,et al. Update on the environmental and economic costs associated with alien-invasive species in the United States , 2005 .
[60] J. Cornuet,et al. GENECLASS2: a software for genetic assignment and first-generation migrant detection. , 2004, The Journal of heredity.
[61] N. Gratz,et al. Insect vectors and rodents arriving in China aboard international transport. , 2006, Journal of travel medicine.
[62] J. L. Long. Introduced Mammals of the World: Their History, Distribution and Influence , 2003 .
[63] John D. Storey. A direct approach to false discovery rates , 2002 .
[64] P. Donnelly,et al. Inference of population structure using multilocus genotype data. , 2000, Genetics.
[65] G. Luikart,et al. Computer note. BOTTLENECK: a computer program for detecting recent reductions in the effective size using allele frequency data , 1999 .
[66] Rousset. Genetic differentiation between individuals , 1999 .
[67] F. Rousset. Genetic differentiation and estimation of gene flow from F-statistics under isolation by distance. , 1997, Genetics.
[68] J. Childs,et al. Guidelines for Working with Rodents Potentially Infected with Hantavirus , 1995 .
[69] M. Daly,et al. A genetic linkage map of the laboratory rat, Rattus norvegicus , 1995, Nature Genetics.
[70] Y. Benjamini,et al. Controlling the false discovery rate: a practical and powerful approach to multiple testing , 1995 .
[71] B. Weir,et al. ESTIMATING F‐STATISTICS FOR THE ANALYSIS OF POPULATION STRUCTURE , 1984, Evolution; international journal of organic evolution.