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dc.creatorGiannoulis T., Plageras D., Stamatis C., Chatzivagia E., Tsipourlianos A., Birtsas P., Billinis C., Suchentrunk F., Mamuris Z.en
dc.date.accessioned2023-01-31T07:42:15Z
dc.date.available2023-01-31T07:42:15Z
dc.date.issued2019
dc.identifier10.1186/s12862-019-1354-y
dc.identifier.issn14712148
dc.identifier.urihttp://hdl.handle.net/11615/72380
dc.description.abstractBackground: The aim of the study was to use hybrid populations as well as island populations of the European brown hare (Lepus europaeus) to explore the effect of evolutionary events, such as the post-deglaciation translocations, spontaneous and human-mediated, local adaptation and the genetic drift in the shaping of the phylogeographic patterns of the species. For this purpose, we used molecular markers, both nuclear and mitochondrial, that are indicative for local adaptation as well as neutral markers to elucidate the patterns of population differentiation based on geographic isolation and the clade of origin. To broaden our analysis, we included data from our previous studies concerning mainland populations, to explore the genetic differentiation in the base of the geographic origin (mainland/island) of the populations. Results: Our results suggest that local adaptation shapes the differentiation in both genomes, favoring specific alleles in nuclear genes (e.g. DQA) or haplotypes in mtDNA (e.g. Control Region, CR). mtDNA variation was found to be in a higher level and was able to give a phylogeographic signal for the populations. Furthermore, the degree of variation was influenced not only by the geographic origin, but also by the clade of origin, since specific island populations of Anatolian origin showed a greater degree of variation compared to specific mainland populations of the European clade. Concerning the hybrid population, we confirmed the existence of both clades in the territory and we provided a possible explanation for the lack of introgression between the clades. Conclusion: Our results indicate that the Quaternary's climatic oscillations played a major role in the shaping of the phylogeographic patterns of the species, by isolating populations in the distinct refugia, where they adapted and differentiate in allopatry, leading to genome incompatibilities observed nowadays. © 2019 The Author(s).en
dc.language.isoenen
dc.sourceBMC Evolutionary Biologyen
dc.source.urihttps://www.scopus.com/inward/record.uri?eid=2-s2.0-85059811307&doi=10.1186%2fs12862-019-1354-y&partnerID=40&md5=7aa9213182f6d15d810f7f1052ee9cae
dc.subjectadaptationen
dc.subjectalleleen
dc.subjectdeglaciationen
dc.subjectevolutionary biologyen
dc.subjectgenetic differentiationen
dc.subjectgenetic driften
dc.subjectgenomeen
dc.subjecthybriden
dc.subjecthybrid zoneen
dc.subjectlagomorphen
dc.subjectlocal adaptationen
dc.subjectmitochondrial DNAen
dc.subjectphylogeographyen
dc.subjectQuaternaryen
dc.subjectterritoryen
dc.subjecttranslocationen
dc.subjectLepus capensisen
dc.subjectLepus europaeusen
dc.subjectmicrosatellite DNAen
dc.subjectmitochondrial DNAen
dc.subjectalleleen
dc.subjectanimalen
dc.subjectexonen
dc.subjectgene frequencyen
dc.subjectgenetic variationen
dc.subjectgeneticsen
dc.subjecthaplotypeen
dc.subjecthareen
dc.subjecthybridizationen
dc.subjectisland (geological)en
dc.subjectmajor histocompatibility complexen
dc.subjectmitochondrionen
dc.subjectphylogenyen
dc.subjectphylogeographyen
dc.subjectAllelesen
dc.subjectAnimalsen
dc.subjectDNA, Mitochondrialen
dc.subjectExonsen
dc.subjectGene Frequencyen
dc.subjectGenetic Variationen
dc.subjectHaplotypesen
dc.subjectHaresen
dc.subjectHybridization, Geneticen
dc.subjectIslandsen
dc.subjectMajor Histocompatibility Complexen
dc.subjectMicrosatellite Repeatsen
dc.subjectMitochondriaen
dc.subjectPhylogenyen
dc.subjectPhylogeographyen
dc.subjectBioMed Central Ltd.en
dc.titleIslands and hybrid zones: Combining the knowledge from "natural Laboratories" to explain phylogeographic patterns of the European brown hare 06 Biological Sciences 0604 Geneticsen
dc.typejournalArticleen


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