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dc.contributor.authorAntonelli, Alexandre
dc.date.accessioned2008-11-07T09:22:34Z
dc.date.available2008-11-07T09:22:34Z
dc.date.issued2008-11-07T09:22:34Z
dc.identifier.isbn978-91-85529-21-6
dc.identifier.urihttp://hdl.handle.net/2077/17695
dc.description.abstractNowhere else on Earth are there so many species of plants and animals as in the Neotropical region. Yet, many questions remain concerning the causes underlying such outstanding diversification. In this thesis, I use a combination of molecular-based methods (phylogenetic inference, molecular dating, biogeographic reconstruction, analyses of diversification and extinction) together with geological, palaeontological, hydrological and climatological evidence to reconstruct the evolution of some Neotropical organisms in space and time. Diversification patterns obtained from case studies in the plant families Rubiaceae, Chloranthaceae and Campanulaceae are compared to published studies of other plants and animals, especially tetrapods (birds, non-avian reptiles, amphibians and mammals). The uplift of the Northern Andes in the Neogene (~23 Ma to today) is concluded to have played a major role in promoting Neotropical diversification, by fostering allopatric speciation of lowland organisms and inducing adaptive radiations in newly formed montane habitats. In addition, its formation caused the end of a lowland corridor episodically invaded by marine incursions that separated the Northern and Central Andes, enabling the southward dispersal of boreotropical groups already present in northwestern South America. The fact that most Neotropical plant groups are either Andean-centred or Amazonian-centred is explained by the long-lasting effect of the Palaeo-Orinoco and Lake Pebas as dispersal barriers between these two diversity centres. Finally, a new diversification model is proposed to explain the origin and evolution of organisms in two areas characterized today by unusually high levels of species richness and endemism: the Huancabamba region and western Amazonia. Under this model, speciation is proposed to have occurred over several million years in connection with the recolonization of previously submerged areas, by means of adaptive radiation of founder colonies and secondary contact of previously isolated populations.en
dc.language.isoengen
dc.relation.haspartI. Andersson, L., Antonelli, A. (2005) Phylogeny of the tribe Cinchoneae (Rubiaceae), its position in Cinchonoideae, and description of a new genus, Ciliosemina. Taxon 54 (1):17–28.en
dc.relation.haspartII. Antonelli, A. (2008) Higher level phylogeny and evolutionary trends in Campanulaceae subfam. Lobelioideae: Molecular signal overshadows morphology. Molecular Phylogenetics and Evolution 46 (1):1–18.::DOI::10.1016/j.ympev.2007.06.015en
dc.relation.haspartIII. Antonelli, A., Quijada-Masareñas, A., Crawford, A.J., Bates, J.M., Velazco, P.M., Wüster, W. (accepted) Molecular studies and phylogeography of Amazonian tetrapods and their relation to geological and climatic models. In: Hoorn, C., Vonhof, H., Wesselingh, F.: Amazonia, Landscape and Species Evolution: a Look into the Past. Blackwell publishing.en
dc.relation.haspartIV. Antonelli, A., Nylander, J.A.A., Persson, C., Sanmartín, I. (submitted) Tracing the impact of the Andean uplift on Neotropical plant evolution: evidence from the coffee family.en
dc.relation.haspartV. Antonelli, A., Sanmartín, I. (submitted) Reconstructing the spatiotemporal evolution of the ancient angiosperm genus Hedyosmum (Chloranthaceae) using empirical and simulated approaches.en
dc.relation.haspartVI. Antonelli, A. (submitted) Convergence not always the case.en
dc.subjectNeotropicsen
dc.subjectBiodiversity patternsen
dc.subjectSpeciation modelsen
dc.subjectAndean upliften
dc.subjectK/T Eventen
dc.subjectBiogeographyen
dc.subjectPhylogeneticsen
dc.subjectMolecular datingen
dc.subjectRubiaceaeen
dc.subjectChloranthaceaeen
dc.subjectCampanulaceaeen
dc.subjectTetrapodsen
dc.titleSpatiotemporal Evolution of Neotropical Organisms: New Insights into an Old Riddleen
dc.typeText
dc.type.svepDoctoral thesis
dc.gup.mailalexandre.antonelli@dpes.gu.seen
dc.type.degreeDoctor of Philosophyen
dc.gup.originUniversity of Gothenburg. Faculty of Science.en
dc.gup.departmentDepartment of Plant and Environmental Sciences ; Institutionen för växt- och miljövetenskaperen
dc.gup.defenceplaceFredagen den 28 november 2008, kl. 10.00 i Föreläsningssalen, Institutionen för Växt- och Miljövetenskaper, Carl Skottsbergs gata 22B, Göteborg.en
dc.gup.defencedate2008-11-28
dc.gup.dissdb-fakultetMNF


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