A dated phylogeny of the Neotropical Dipterygeae clade reveals 30 million years of winged papilionate floral conservatism in the otherwise florally labile early-branching papilionoid legumes (original ) (raw )Floral Evolution in the Detarieae (Leguminosae): Phylogenetic Evidence for Labile Floral Development in an Early-Diverging Legume Lineage
Marie Fougère , Gerhard Prenner , A. Bruneau
International Journal of Plant Sciences, 2014
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Combined phylogenetic analyses reveal interfamilial relationships and patterns of floral evolution in the eudicot order Fabales
Julie Hawkins
2012
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A detailed investigation of the Pterocarpus clade (Leguminosae: Dalbergieae): Etaballia with radially symmetrical flowers is nested within the papilionoid-flowered Pterocarpus
Bente Klitgaard
South African Journal of Botany, 2013
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The realignment of Acosmium sensu stricto with the Dalbergioid clade (Leguminosae: Papilionoideae) reveals a proneness for independent evolution of radial floral symmetry among early-branching papilionoid legumes
Rodrigo Rodrigues
Taxon, 2012
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2013 - A molecular phylogeny of Vataireoid Legumes underscores floral evolvability that is general to many early-branching Papilionoid lineages
Cássio Van Den Berg
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Filling in the gaps of the papilionoid legume phylogeny: The enigmatic Amazonian genus Petaladenium is a new branch of the early-diverging Amburaneae clade
Dirce Leimi Komura
Molecular Phylogenetics and Evolution, 2015
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Contrasting phylogenetic signals and evolutionary rates in floral traits of Neotropical lianas
Suzana Alcantara , Lúcia Lohmann
Biological Journal of the Linnean Society, 2011
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Floral ontogeny of Aeschynomene falcata and A. sensitiva (Leguminosae: Papilionoideae) supports molecular phylogenetic data
Jorge Mariath
Plant Systematics and Evolution, 2013
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Clock-dated phylogeny for 48% of the 700 species of Crotalaria (Fabaceae–Papilionoideae) resolves sections worldwide and implies conserved flower and leaf traits throughout its pantropical range
Alexander Rockinger
BMC Evolutionary Biology, 2017
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Is chiropterophily an evolutionary dead end? A phylogenetic test in the pantropical genus Parkia (Leguminosae, Caesalpinioideae, mimosoid clade)
Helen Fortune-Hopkins
Plant Ecology and Evolution, 2021
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Flowers of the early-branching papilionoid legume Petaladenium urceoliferum display unique morphological and ontogenetic features
Charles Zartman
American journal of botany, 2015
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Evolution of floral diversity: genomics, genes and gamma
Dianella Howarth
Philosophical transactions of the Royal Society of London. Series B, Biological sciences, 2017
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Evolution of Floral Organ Identity
Dawn wang
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Floral ontogeny in Dipterygeae (Fabaceae) reveals new insights into one of the earliest branching tribes in papilionoid legumes
Simone de Pádua Teixeira
Botanical Journal of the Linnean Society, 2014
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Molecular phylogenetics of the species-rich neotropical genus Swartzia (Leguminosae, Papilionoideae) and related genera of the swartzioid clade
Benjamin Torke
American Journal of Botany, 2008
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Decoupled evolution of floral traits and climatic preferences in a clade of Neotropical Gesneriaceae
Martha serrano
BMC Evolutionary Biology, 2015
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Molecular phylogenetics of the Brazilian giant bromeliads (Alcantarea, Bromeliaceae): implications for morphological evolution and biogeography
Christian Lexer
Molecular Phylogenetics and Evolution, 2012
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Shades of white: The Petunia long corolla tube clade evolutionary history
Loreta Freitas
Genetics and Molecular Biology, 2024
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A multilocus phylogenetic analysis reveals the monophyly of a recircumscribed papilionoid legume tribe Diocleae with well-supported generic relationships
Edeline Gagnon
Molecular Phylogenetics and Evolution, 2015
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Phenotypic integration in flowers of neotropical lianas: diversification of form with stasis of underlying patterns
Felipe Bandoni de Oliveira , Suzana Alcantara
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Floral Evolution of Philodendron Subgenus Meconostigma (Araceae)
Simon Mayo
PLoS ONE, 2014
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Phylogenetic relationships within Senna (Leguminosae, Cassiinae) based on three chloroplast DNA regions: patterns in the evolution of floral symmetry and extrafloral nectaries
Luciano Queiroz
American Journal of Botany, 2006
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Phylogenetic position and floral morphology of the Brazilian endemic, monospecific genusCotylolabium: a sister group for the remaining Spiranthinae (Orchidaceae)
Solange Mazzoni-Viveiros
Botanical Journal of the Linnean Society, 2014
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Towards unlocking the deep nodes of Leguminosae: Floral development and morphology of the enigmatic Duparquetia orchidacea (Leguminosae, Caesalpinioideae)
Bente Klitgaard
American Journal of Botany, 2008
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Comparative Morphology and Anatomy of Floral Symmetry in Legumes (Fabaceae)
Yukio Minamiya
Journal of Plant Studies, 2012
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Phylogenetic relationships of the perianthless Piperales: reconstructing the evolution of floral development
M. Alejandra Jaramillo
International Journal of Plant …, 2004
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The evolutionary history of vines in a neotropical biodiversity hotspot: Phylogenomics and biogeography of a large passion flower clade (Passiflora section Decaloba)
John M MacDougal
Molecular Phylogenetics and Evolution, 2021
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Variations in Structure among Androecia and Floral Nectaries in the Inverted Repeat-Lacking Clade (Leguminosae: Papilionoideae)
Andrey Sinjushin
Plants, 2022
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Specialization of flowers: is floral orientation an overlooked first step?
William Scott Armbruster , Charles Fenster
New Phytologist, 2009
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One contribution of 14 to a Theme Issue ‘ Contemporary and future studies in plant speciation , morphological / floral evolution and polyploidy : honouring the scientific contributions of
Lena Hileman
2014
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How Have Advances in Comparative Floral Development Influenced Our Understanding of Floral Evolution?
Edwige Moyroud
International Journal of Plant Sciences, 2015
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The floral genome: an evolutionary history of gene duplication and shifting patterns of gene expression
Claude Depamphilis
Trends in Plant Science, 2007
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Floral Development of the Early-Branching Papilionoid Legume Amburana cearensis (Leguminosae) Reveals Rare and Novel Characters
Gerhard Prenner , Viviane Leite
International Journal of Plant Sciences, 2015
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