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A cladistic analysis ofDipsacaceae (Dipsacales) [PDF]
A cladistic study ofDipsacaceae (Asteridae, Dipsacales) was undertaken, based mainly on morphological and palynological characters, obtained by investigations of herbarium material and from the literature. Outgroups includedMorinaceae, Triplostegiaceae, and a subset ofValerianaceae.
Salvatore Cozzolino +2 more
exaly +4 more sources
Fruits and Seeds of the Valeriana Clade (Dipsacales): Diversity and Evolution [PDF]
Recent molecular investigations have greatly improved our understanding of the phylogenetic relationships of the Valeriana clade. Our investigation of the fruits and seeds of the Valeriana clade provides morphological support for these findings. In particular, seed anatomy, calyx morphology, the presence of sterile locules, and fruit polymorphism ...
B. Jacobs, C. Bell, E. Smets
semanticscholar +3 more sources
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Taxon, 2009
Abstract A phylogenetic study of Dipsacaceae, a Mediterraneancentered clade in the Dipsacales, was conducted using nuclear ITS and three chloroplast markers ( atpB rbcL, trnL trnF, trn SUGA trn GGCC
Sara E. Carlson, V. Mayer, M. Donoghue
exaly +4 more sources
Abstract A phylogenetic study of Dipsacaceae, a Mediterraneancentered clade in the Dipsacales, was conducted using nuclear ITS and three chloroplast markers ( atpB rbcL, trnL trnF, trn SUGA trn GGCC
Sara E. Carlson, V. Mayer, M. Donoghue
exaly +4 more sources
Molecular evolution of CYCLOIDEA in plant order Dipsacales (589.6)
CYCLOIDEA (CYC) is a TCP transcription factor that has been shown to be involved in specifying dorsal identity in the petals of bilateral flowers. In the plant order Dipsacales, DNA sequencing has provided evidence that multiple, different functional copies of CYC have evolved, most likely via whole genome duplication events in the past.
Charlotte Flatebo +2 more
semanticscholar +2 more sources
Phylogeny of the Dipsacales s.l. based on chloroplast trnL-F and ndhF sequences
Molecular Phylogenetics and Evolution, 2003Zhiduan Chen
exaly +2 more sources
Duplications in CYC‐like Genes from Dipsacales Correlate with Floral Form
International Journal of Plant Sciences, 2005Dianella Howarth
exaly +2 more sources
The Evolution of Reproductive Characters in Dipsacales
International Journal of Plant Sciences, 2003Richard Winkworth
exaly +2 more sources
A Floral Ontogenetic Study in the Dipsacales
International Journal of Plant Sciences, 1996The floral ontogeny of five representative species (Lonicera periclymenum, Symphoricarpos albus, Centranthus ruber, Dipsacus sylvestris, and Knautia arvensis) of Dipsacales has been studied and compared with existing floral ontogenies in order to examine the unresolved systematic position of Dipsacales.
P. Roels, E. Smets
semanticscholar +2 more sources
Toward a resolution of Campanulid phylogeny, with special reference to the placement of Dipsacales [PDF]
Broad-scale phylogenetic analyses of the angiosperms and of the Asteridae have failed to confidently resolve relationships among the major lineages of the campanulid Asteridae (i.e., the euasterid II of APG II, 2003). To address this problem we assembled
R. Winkworth, J. Lundberg, M. Donoghue
semanticscholar +2 more sources
CYCLOIDEA Gene Expression across Dipsacales in Relation to Floral Symmetry
The Dipsacales is an order of plants that exhibits a striking shift from radial symmetry in basal lineages like viburnum to strong bilateral symmetry in species like honeysuckle. We are interested in determining how multiple copies of the transcription factor CYCLOIDEA ...
Aedric Lim +4 more
semanticscholar +2 more sources

