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Angiosperm phylogeny: 17 genes, 640 taxa

American Journal of Botany · 2011 · Vol. 98(4) · pp. 704–730
Pamela S. SoltisStephen A. SmithNico CellineseKenneth J. WurdackDavid C. TankSamuel F. BrockingtonNancy RefulioJay B. WalkerMichael J. MooreBarbara S. CarlswardCharles D. BellMaribeth LatvisSunny CrawleyChelsea M. BlackDiaga DioufZhenxiang XiCatherine A. RushworthMatthew A. GitzendannerKenneth J. SytsmaYin‐Long QiuKhidir W. HiluCharles C. DavisMichael J. SandersonReed S. BeamanRichard G. OlmsteadWalter S. JuddMichael J. DonoghuePamela S. Soltis

Abstract

Our analyses confirm that with large amounts of sequence data, most deep-level relationships within the angiosperms can be resolved. We anticipate that this well-resolved angiosperm tree will be of broad utility for many areas of biology, including physiology, ecology, paleobiology, and genomics.

Plant Diversity and EvolutionPlant and Fungal Species DescriptionsPlant Taxonomy and PhylogeneticsBiologyPhylogeneticsEvolutionary biologyTaxonSister groupBotanyCladeGeneGenetics

MeSH terms

Cell NucleusChloroplastsMitochondriaNucleotidesPhylogenyGenes, PlantSequence Analysis, DNADNA, PlantGenome, PlantEvolution, MolecularMagnoliopsida

Funding

  • National Science Foundation
Citations
722
FWCI
124.62
field-weighted impact
References
138
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100%
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Angiosperm phylogeny: 17 genes, 640 taxa · Scinovex