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Molecular evolution of 35S rDNA and taxonomic status of Lycopersicon within Solanum sect. Petota
Authors:Nataliya Y. Komarova  Guido W. Grimm  Vera Hemleben  Roman A. Volkov
Affiliation:1. Institute of Plant Sciences, University of Bern, Altenbergrain 21, 3013, Bern, Switzerland
2. Institute of Geosciences, University of Tübingen, Sigwartstr. 10, 72076, Tübingen, Germany
3. Department of General Genetics, ZMBP, University of Tübingen, Auf der Morgenstelle 28, 72076, Tübingen, Germany
4. Department of Molecular Genetics and Biotechnology, University of Chernivtsi, Kotsubinsky str. 2, 58012, Chernivtsi, Ukraine
Abstract:To clarify the taxonomic status of tomatoes (“Lycopersicon”) and their relationship to the members of sect. Petota of genus Solanum L., organization of the rDNA external transcribed spacer (5′ ETS) was studied in 33 Solanum and “Lycopersicon” species. Phylogenetic reconstruction revealed that three major groups can be distinguished. Non-tuber-bearing species of ser. Etuberosa as well as tuber-bearing Central American diploids appeared as a paraphyletic group. The first of two well-defined clades embraced all tuber-bearing South American species and Central American polyploids. The other clade (named “tomato clade”) contains non-tuber-bearing species of ser. Juglandifolia and tomato species of ser. Neolycopersicon, which appears to be imbedded in sect. Petota. The new 5′ ETS variant D characterized by a cluster of downstream subrepeats is characteristic for the tomato clade. The variant D originated directly from the most ancestral variant A found in ser. Etuberosa and the Central American diploids, whereas variants B and C specific for the tuber-bearing South American species and Central American polyploids represent a parallel lineage of molecular evolution. The sequence analysis demonstrates the existence of an evolutionary trend of parallel multiplication of specific motifs in 5′ ETS in different groups of sect. Petota.
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