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Biogeography and pattern of gene flow among Barbus species (Teleostei: Cyprinidae) inhabiting the Italian Peninsula and neighbouring Adriatic drainages as revealed by allozyme and mitochondrial sequence data
Authors:COSTAS S TSIGENOPOULOS  PETR KOTLÍK  PATRICK BERREBI
Institution:;Laboratoire Génome, Populations et Intéractions, CNRS –UMR5000, c.c. 063, UniversitéMontpellier II, Place E. Bataillon, 34095 Montpellier Cedex 5, France ;Institute of Marine Biology of Crete (IMBC), Department of Genetics and Molecular Biotechnology, PO Box 2214, Port of Heraklion, 71003 Heraklion, Crete, Greece ;Laboratory of Fish Genetics, Institute of Animal Physiology and Genetics, Academy of Sciences, Libechov, Czech Republic ;Laboratoire Ecosystèmes Lagunaires, CNRS –UMR 5119, c.c. 093, UniversitéMontpellier II, Place E. Bataillon, 34095 Montpellier Cedex 5, France
Abstract:Genetic relationships among 24 Italian and Adriatic populations of barbs (genus Barbus ) were assessed using electrophoretic analysis of allozymes and mitochondrial DNA sequences of the cytochrome b gene. Results obtained with both markers were concordant, but they were not congruent with the current morphology-based systematics and taxonomy. Populations assigned to the same nominal taxa ( B. caninus , B. petenyi and B. rebeli ), were very divergent in both allozymes and mtDNA, indicating that these populations deserve recognition as different units for conservation and management. On the other hand, the two fluvio-lacustrine taxa considered as distinct species (i.e. B. plebejus and B. tyberinus ) are genetically very close to each other, showing no clear differences at either allozymes or mtDNA. The population of B. caninus from Pellice River carried allozyme alleles and mtDNA specific for B. plebejus , indicating a genetic introgression towards the former species. © 2002 The Linnean Society of London, Biological Journal of the Linnean Society , 2002, 75 , 83–99.
Keywords:allozymes              Barbus            Cyprinidae  cytochrome b  hybridization  mitochondrial DNA  phylogeny
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