An understanding of the evolutionary history and dynamics of invasive species is required for the construction of predictive models of future spread, and the design of biological management measures. The black rat (Rattus rattus) is a major vertebrate invader with a worldwide distribution. Despite the severe ecological, economic and health impacts of this species, its evolutionary history has been little studied. We carried out extensive specimen sampling in Senegal, West Africa, and used microsatellite markers to describe the pattern and processes of invasion in this large continental area. The genetic data obtained were combined with historical knowledge concerning the presence of this species in Senegal. Data were analyzed by a combination of Bayesian clustering and approximate Bayesian computation methods. The invasion pathways closely paralleled the history of human trade routes in Senegal. In several places, we detected the occurrence of multiple introductions from genetically different sources. Long-distance migration between towns and villages was also observed. Our findings suggest that genetic bottlenecks and admixture have played a major role in shaping the genetics of invasive black rats. These two processes may generate genetic novelty and favor rapid evolution along the invasion pathways.

Konecny, A.; Estoup, A.; Duplantier, J.M.; Bryja, J.; Ba, K.; Galan, M.; Tatard, C.; Cosson, J.F. (2013). Invasion genetics of the introduced black rat (Rattus rattus) in Senegal, West Africa. MOLECULAR ECOLOGY, 22 (2): 286-300. doi: 10.1111/mec.12112 handle: http://hdl.handle.net/10449/21590

Invasion genetics of the introduced black rat (Rattus rattus) in Senegal, West Africa

Konecny, Adam;
2013-01-01

Abstract

An understanding of the evolutionary history and dynamics of invasive species is required for the construction of predictive models of future spread, and the design of biological management measures. The black rat (Rattus rattus) is a major vertebrate invader with a worldwide distribution. Despite the severe ecological, economic and health impacts of this species, its evolutionary history has been little studied. We carried out extensive specimen sampling in Senegal, West Africa, and used microsatellite markers to describe the pattern and processes of invasion in this large continental area. The genetic data obtained were combined with historical knowledge concerning the presence of this species in Senegal. Data were analyzed by a combination of Bayesian clustering and approximate Bayesian computation methods. The invasion pathways closely paralleled the history of human trade routes in Senegal. In several places, we detected the occurrence of multiple introductions from genetically different sources. Long-distance migration between towns and villages was also observed. Our findings suggest that genetic bottlenecks and admixture have played a major role in shaping the genetics of invasive black rats. These two processes may generate genetic novelty and favor rapid evolution along the invasion pathways.
Microsatellites
Approximate Bayesian computation
Bioinvasion
Bayesian clustering
Genetic admixture
Multiple introductions
Founder effects
Settore BIO/07 - ECOLOGIA
2013
Konecny, A.; Estoup, A.; Duplantier, J.M.; Bryja, J.; Ba, K.; Galan, M.; Tatard, C.; Cosson, J.F. (2013). Invasion genetics of the introduced black rat (Rattus rattus) in Senegal, West Africa. MOLECULAR ECOLOGY, 22 (2): 286-300. doi: 10.1111/mec.12112 handle: http://hdl.handle.net/10449/21590
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/10449/21590
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