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Gene flow and its consequences for microevolution in Taraxacum (Asteraceae)
dc.contributor.advisorŠtěpánek, Jan
dc.creatorMártonfiová, Lenka
dc.date.accessioned2019-05-03T17:50:42Z
dc.date.available2019-05-03T17:50:42Z
dc.date.issued2009
dc.identifier.urihttp://hdl.handle.net/20.500.11956/92918
dc.description.abstract[7] Summary Microevolution refers to evolutionary changes at or below the species level. These changes are the result of mutation, natural selection, gene flow and genetic drift. When microevolutionary processes in agamic complexes, like Taraxacum, are studied, gene flow deserves special attention. Taraxacum is very large and widespread genus with a very complicated taxonomy. It forms a polyploid series with basic chromosome number x=8, diploids (obligate sexuals) and triploids (apomicts) prevail. The presented work studies reproductive behaviour and pathways of the gene flow in Taraxacum sect. Ruderalia and compares it with Taraxacum sect. Erythrosperma. Diploid, triploid and tetraploid individuals were sampled from mixed diploid - polyploid natural populations of Taraxacum sect. Ruderalia, diploids and triploids from Taraxacum sect. Erythrosperma. Seeds resulting both from the crosses between particular ploidy levels, from isolated anthodia and from open pollinated anthodia (from cultivated and wild plants) were subjected to the flow-cytometric seed screening (FCSS) to determine ploidy levels in the progeny and to infer breeding behaviour of maternal plants. Three possible pathways of the gene flow were studied: (A) fertilization of sexuals by pollen of apomicts, (B) BIII (2n+n) hybrid formation, (C)...en_US
dc.description.abstract[7] Summary Microevolution refers to evolutionary changes at or below the species level. These changes are the result of mutation, natural selection, gene flow and genetic drift. When microevolutionary processes in agamic complexes, like Taraxacum, are studied, gene flow deserves special attention. Taraxacum is very large and widespread genus with a very complicated taxonomy. It forms a polyploid series with basic chromosome number x=8, diploids (obligate sexuals) and triploids (apomicts) prevail. The presented work studies reproductive behaviour and pathways of the gene flow in Taraxacum sect. Ruderalia and compares it with Taraxacum sect. Erythrosperma. Diploid, triploid and tetraploid individuals were sampled from mixed diploid - polyploid natural populations of Taraxacum sect. Ruderalia, diploids and triploids from Taraxacum sect. Erythrosperma. Seeds resulting both from the crosses between particular ploidy levels, from isolated anthodia and from open pollinated anthodia (from cultivated and wild plants) were subjected to the flow-cytometric seed screening (FCSS) to determine ploidy levels in the progeny and to infer breeding behaviour of maternal plants. Three possible pathways of the gene flow were studied: (A) fertilization of sexuals by pollen of apomicts, (B) BIII (2n+n) hybrid formation, (C)...cs_CZ
dc.languageEnglishcs_CZ
dc.language.isoen_US
dc.publisherUniverzita Karlova, Přírodovědecká fakultacs_CZ
dc.titleGene flow and its consequences for microevolution in Taraxacum (Asteraceae)en_US
dc.typedizertační prácecs_CZ
dcterms.created2009
dcterms.dateAccepted2009-09-11
dc.description.departmentDepartment of Botanyen_US
dc.description.departmentKatedra botanikycs_CZ
dc.description.facultyFaculty of Scienceen_US
dc.description.facultyPřírodovědecká fakultacs_CZ
dc.identifier.repId77164
dc.title.translatedGene flow and its consequences for microevolution in Taraxacum (Asteraceae)cs_CZ
dc.contributor.refereeKrahulec, František
dc.contributor.refereeSharbel, Timothy F.
dc.identifier.aleph001134726
thesis.degree.namePh.D.
thesis.degree.leveldoktorskécs_CZ
thesis.degree.discipline-cs_CZ
thesis.degree.discipline-en_US
thesis.degree.programBotanikacs_CZ
thesis.degree.programBotanyen_US
uk.thesis.typedizertační prácecs_CZ
uk.taxonomy.organization-csPřírodovědecká fakulta::Katedra botanikycs_CZ
uk.taxonomy.organization-enFaculty of Science::Department of Botanyen_US
uk.faculty-name.csPřírodovědecká fakultacs_CZ
uk.faculty-name.enFaculty of Scienceen_US
uk.faculty-abbr.csPřFcs_CZ
uk.degree-discipline.cs-cs_CZ
uk.degree-discipline.en-en_US
uk.degree-program.csBotanikacs_CZ
uk.degree-program.enBotanyen_US
thesis.grade.csProspěl/acs_CZ
thesis.grade.enPassen_US
uk.abstract.cs[7] Summary Microevolution refers to evolutionary changes at or below the species level. These changes are the result of mutation, natural selection, gene flow and genetic drift. When microevolutionary processes in agamic complexes, like Taraxacum, are studied, gene flow deserves special attention. Taraxacum is very large and widespread genus with a very complicated taxonomy. It forms a polyploid series with basic chromosome number x=8, diploids (obligate sexuals) and triploids (apomicts) prevail. The presented work studies reproductive behaviour and pathways of the gene flow in Taraxacum sect. Ruderalia and compares it with Taraxacum sect. Erythrosperma. Diploid, triploid and tetraploid individuals were sampled from mixed diploid - polyploid natural populations of Taraxacum sect. Ruderalia, diploids and triploids from Taraxacum sect. Erythrosperma. Seeds resulting both from the crosses between particular ploidy levels, from isolated anthodia and from open pollinated anthodia (from cultivated and wild plants) were subjected to the flow-cytometric seed screening (FCSS) to determine ploidy levels in the progeny and to infer breeding behaviour of maternal plants. Three possible pathways of the gene flow were studied: (A) fertilization of sexuals by pollen of apomicts, (B) BIII (2n+n) hybrid formation, (C)...cs_CZ
uk.abstract.en[7] Summary Microevolution refers to evolutionary changes at or below the species level. These changes are the result of mutation, natural selection, gene flow and genetic drift. When microevolutionary processes in agamic complexes, like Taraxacum, are studied, gene flow deserves special attention. Taraxacum is very large and widespread genus with a very complicated taxonomy. It forms a polyploid series with basic chromosome number x=8, diploids (obligate sexuals) and triploids (apomicts) prevail. The presented work studies reproductive behaviour and pathways of the gene flow in Taraxacum sect. Ruderalia and compares it with Taraxacum sect. Erythrosperma. Diploid, triploid and tetraploid individuals were sampled from mixed diploid - polyploid natural populations of Taraxacum sect. Ruderalia, diploids and triploids from Taraxacum sect. Erythrosperma. Seeds resulting both from the crosses between particular ploidy levels, from isolated anthodia and from open pollinated anthodia (from cultivated and wild plants) were subjected to the flow-cytometric seed screening (FCSS) to determine ploidy levels in the progeny and to infer breeding behaviour of maternal plants. Three possible pathways of the gene flow were studied: (A) fertilization of sexuals by pollen of apomicts, (B) BIII (2n+n) hybrid formation, (C)...en_US
uk.file-availabilityN
uk.publication.placePrahacs_CZ
uk.grantorUniverzita Karlova, Přírodovědecká fakulta, Katedra botanikycs_CZ
thesis.grade.codeP
dc.identifier.lisID990011347260106986


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