Speciation and gene flow in Central American Begonia L. (Begoniaceae)
dc.contributor.advisor
Kidner, Catherine
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dc.contributor.advisor
Ennos, Richard
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dc.contributor.author
Twyford, Alexander David
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dc.contributor.sponsor
Biotechnology and Biological Sciences Research Council (BBSRC)
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dc.contributor.sponsor
British Ecological Society
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dc.contributor.sponsor
Genetics Society
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dc.date.accessioned
2013-10-24T12:30:07Z
dc.date.available
2013-10-24T12:30:07Z
dc.date.issued
2012-11-30
dc.description.abstract
Begonia L. is one of the largest plant genera, comprising over 1500 species. Weak species
cohesion, and the rapid evolution of reproductive barriers in allopatry, are two processes that
have been postulated to explain the generation of such hyper-diversity of taxa within a single
genus of plants. The aim of this thesis is to investigate whether these factors are likely to have
been important contributors to the diversity of species found in Central American Begonia.
Species cohesion was analysed in the widespread Central American species Begonia
heracleifolia and B. nelumbiifolia. Interpopulation seed flow was estimated with seven plastid
microsatellites. Breeding system estimates and measures of genetic differentiation at nine
nuclear microsatellites were used to infer levels of interpopulation pollen flow. Controlled
crosses were employed to assess the strength of reproductive barriers both between populations
within species, and between species differing in ecology. The potential for gene flow between
species in the wild was assessed in natural hybrid zones using molecular markers. Finally a
quantitative trait locus (QTL) approach was employed to investigate the genetic basis of
reproductive traits that differ between species. No plastid polymorphisms were found in B.
nelumbiifolia, suggesting it has been through a recent population bottleneck. In contrast, B.
heracleifolia possessed many plastid haplotypes that were strongly differentiated between
populations (G’ST = 0.829). Nuclear microsatellites showed high genetic differentiation within
species, and both species were self-compatible and self-fertilize at a moderate rate (B.
heracleifolia F’ST = 0.506, FIS = 0.249; B. nelumbiifolia F’ST = 0.439, FIS = 0.380). F1s between
ecologically similar B. heracleifolia and B. sericoneura were partly fertile (2-5% seed set), and
F1s and early generation backcrosses were found in a hybrid swarm. F1s between B.
heracleifolia and the ecologically contrasting B. nelumbiifolia were pollen sterile, and 3 hybrid
swarms showed no evidence of hybrids beyond the F1 generation. Seven QTL were found for
reproductive traits, including: sex ratio, pollen sterility and stamen number. The population
biology of Begonia, with limited seed and pollen dispersal, small population sizes and frequent
self-fertilization predisposes them to genetic isolation, increasing the chances that reproductive
barriers evolve. These characteristics may underlie the large number of endemics in Begonia.
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dc.identifier.uri
http://hdl.handle.net/1842/8033
dc.language.iso
en
dc.publisher
The University of Edinburgh
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dc.relation.hasversion
Dewitte, A., Twyford, A.D., Thomas, D.C., Kidner, C.A. & Van Huylenbroeck, J. (2011) The origin of diversity in Begonia: genome dynamism, population processes and phylogenetic patterns. The dynamical processes of biodiversity - case studies of evolution and spatial distribution (ed. by O. Grillo and G. Venora). InTech.
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dc.relation.hasversion
Thomas, D.C., Hughes, M., Phutthai, T., Ardi, W.H., Rajbhandary, S., Rubite, R., Twyford, A.D. & Richardson, J.E. (2011a) West to east dispersal and subsequent rapid diversification of the mega-diverse genus Begonia (Begoniaceae) in the Malesian Archipelago. Journal of Biogeography, 39, 98-113
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dc.relation.hasversion
Twyford, A.D. & Ennos, R.A. (2012) Next-generation hybridization and introgression. Heredity, 108, 179-189
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dc.subject
begonia
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dc.subject
Central American
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dc.subject
genetic diversity
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dc.subject
gene flow
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dc.title
Speciation and gene flow in Central American Begonia L. (Begoniaceae)
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dc.type
Thesis or Dissertation
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dc.type.qualificationlevel
Doctoral
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dc.type.qualificationname
PhD Doctor of Philosophy
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