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Macroevolution

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IDTitleSection/TopicAuthorsKeywords
608A comparative approach to understanding floral adaptation to climate and pollinators during Silene diversification
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MacroevolutionMiladin, Jenna; Steven, Janet; Collar, David.pollination
floral traits
climate
Silene
macroevolution
147Broad variation in rates of polyploidy and dysploidy across flowering plants is correlated with lineage diversification
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MacroevolutionZhan, Shing H.; Otto, Sarah P.; Barker, Michael S..polyploidy
Dysploidy
chromosome number
diversification
474Climate niche evolution in Portulaca, the C4-CAM plant
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MacroevolutionHeaphy, Nora; Edwards, Erika J..Portulaca
CAM
C4
Photosynthesis
climate niche
Caryophyllales
338Diversification dynamics and evolution of old biodiversity hotspots – the Australian temperate flora has no global analogue
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MacroevolutionNge, Francis; Waycott, Michelle; Biffin, Ed; Thiele, Kevin.diversification
macroevolution
Australian flora
radiation
BAMM
GeoHiSSE
biodiversity hotspot
Speciation
tropical rainforests
660Diversity of western hemisphere Justicia (Acanthaceae) animal pollinator groups
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MacroevolutionRodriguez, Josephine; Kiel, Carrie; Fisher, Amanda.Justicia
plant-pollinator interactions
Pollination syndromes
flowering plant evolution
pollination
Plant diversity
pollinator visitation
791Evolutionary rate heterogeneity in chromosome count evolution: an application of the ‘hidden rates model’
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MacroevolutionSpoelhof, Jonathan; Soltis, Douglas; Soltis, Pamela.chromosome number
Dysploidy
Gymnosperm
modeling
polyploidy
Ancestral State reconstruction
35Evolution of pollinator cues across the sand verbenas
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MacroevolutionLoPresti, Eric; Weber, Marjorie.macroevolution
Abronia
Nyctaginaceae
pollination
floral traits
107Evolution of red flower color in North American Silene
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MacroevolutionBerardi, Andrea.floral traits
color
anthocyanin
carotenoids
Silene
693Geitonogamy blurs the distinction between autogamy and allogamy: a case study in Epipactis (Orchidaceae)
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MacroevolutionBateman, Richard Mark.Allogamy
Autogamy
Epipactis
floral morphology
geitonogamy
Speciation
599In defense of Apocynaceae: what can we say about evolution of pyrrolizidine alkaloids from evolution of homospermidine synthase?
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MacroevolutionSmith, Chelsea R.; Teisher, Jordan; Kaltenegger, Elisabeth; Moore, Abigail; Straub, Shannon; Livshultz, Tatyana.Apocynaceae
Gene duplication
specialized metabolism
pyrrolizidine alkaloid
tests for selection
787Insights into the evolutionary ecology of grass awns and spikelets within the Andropogoneae
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MacroevolutionPetersen, Kurt B.; Minx, Patrick; Biang, Kathrines; Clewell, Sarah; Bookout, Bess; McAllister, Chrissy; McKain, Michael; Kellogg, Elizabeth.Grasses
Ecology
phylogenetics
floral evolution
Dispersal
establishment
seeds
C4  grasses
evolutionary ecology
evolution
674Integrating fossil flowers into a large-scale angiosperm phylogeny using model-based approaches
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MacroevolutionLópez Martínez, Andrea Monserrath; Magallon, Susana; Jürg, Schönenberger; von Balthazar, Maria; Gonzalez Martinez, Cesar; Ramírez-Barahona, Santiago; Sauquet, Hervé.fossil flowers
phylogenetic analysis
floral morphology
total evidence
849Is chromosome number positively correlated with post-zygotic reproductive isolation?
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MacroevolutionFinch, Geoffrey; Yang, Yang; Barker, Michael S..chromosome number
Bateson-Dobzhansky-Muller Incompatibility
hybridization
178Molecular cytogenetic evidence indicating evolutionary relationship between American lymegrass species and their Eurasian and Asiatic relatives
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MacroevolutionBjornsdottir, Snaedis; Thorsson, Aegir Thor; Sveinsson, Saemundur; Anamthawat-Jonsson, Kesara.Allopolyploidy
Leymus
cytogenetics
Ns genome
Psathyrostachys
Poaceae
Triticeae
159On the use of databases in paleobotanical research: triumphs, pitfalls, and good and bad examples
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MacroevolutionSimpson, Andrew; Korasidis, Vera.Databases
Paleobotany
Meta-analysis
Review
Bias
155Phylogenetic relationships among members of the subfamily Arbutoideae (Ericaceae) inferred from genome-wide SNPs
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MacroevolutionRamadoss, Niveditha; McElwee-Adame, Alexandra; Gunther, Kyle; Parker, V. T.; Gonzalez Elizondo, Socorro; Litt, Amy; Flores-Renteria, Lluvia.Arbutoideae  
Ericaceae  
phylogenetics
monophyly
527Rocks, climate, substrate, shoots: reconstructing the history of soil and climate preference in the four o’clock tribe (Nyctaginaceae tribe Nyctagineae)
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MacroevolutionHumphreys, Emily; Edwards, Caroline; Last, Noah; Tasca, Julia A.; Brunner, Anna; Mikenas, Jessica; Henzler-Lhasawa, Chamden; Douglas, Norman; Flores, Hilda; Ochoterena, Helga; Hernández-Ledesma, Patricia; Nosratinia, Sonia; LoPresti, Eric; Weber, Marjorie; Thulin, Mats; Petersen, Gitte; Friis, Ib; Smith, Stephen; Moore, Michael.Nyctaginaceae
Mirabilis
Commicarpus
Abronia
Boerhavia
Acleisanthes
Gypsophile
Gypsum
edaphic endemism
climate niche
edaphic niche
776Stigma shape shifting in sages (Salvia: Lamiaceae) – hummingbirds guided the evolution of New World floral features
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MacroevolutionKriebel, Ricardo; Drew, Bryan; González-Gallegos, Jesús; Celep, Ferhat; Antar, Guilherme; Pastore, José Floriano Barêa; Uría, Rolando; Sytsma, Kenneth.evolutionary constraint
evolutionary shift
hummingbird
Morphometrics
pollination
Ornstein-Uhlenbeck
secondary pollen presentation
stigma
40The origin and drivers of Neotropical plant and tetrapod diversification
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MacroevolutionMeseguer, Andrea S.; Michel, Alice; Fabre, Pierre-Henri; Pérez-Escobar, Oscar A.; Chomicki, Guillaume; Riina, Ricarda; Antonelli, Alexandre; Antoine, Pierre-Olivier; Delsuc, Frédéric; Condamine, Fabien L..Diversity dynamics
Speciation
Extinction
plants
tetrapods
climate
Andes
Cenozoic
901The surprising morphological and interspecific variation among stigmas in New World Justicia: Is this remarkable diversity associated with pollination syndromes?
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MacroevolutionKiel, Carrie; Tripp, Erin; Fisher, Amanda; McDade, Lucinda.Acanthaceae
Morphological variation
plant-pollinator interactions
Micromorphology
ddRADseq
288Total-Evidence dating analysis yields a Late Devonian origin of the complex thalloid liverworts (Marchantiopsida, Marchantiophyta) and suggests that current morphological diversity was reached by the Late Mesozoic
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MacroevolutionFlores, Jorge R; Bippus, Alexander.Bryophytes
fossils
macroevolution
morphology
Total-evidence dating
963Using a 13,000-species phylogeny of the nitrogen-fixing clade to reconstruct the origins and evolution of a critical symbiosis
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MacroevolutionKates, Heather; O'Meara, Brian; Folk, Ryan; Guralnick, Robert; Soltis, Douglas; Soltis, Pamela.rosids
nitrogen fixation
large phylogeny
Ancestral State reconstruction
hidden markov models

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