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Plant Sciences

Eastern Illinois University

Angiosperms; bioinformatics; large data sets; molecular systematics; RAxML; S uperasteridae ; supermatrix; Superrosidae

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Angiosperm Phylogeny: 17 Genes, 640 Taxa, Douglas E. Soltis, Steven A. Smith, Nico Cellinese, Kenneth J. Wurdack, David C. Tank, Samuel F. Brockington, Nancy F. Refulio-Rodriguez, Jay B. Walker, Michael J. Moore, Barbara S. Carlsward, Charles D. Bell, Maribeth Latvis, Sunny Crawley, Chelsea Black, Diaga Diouf, Zhenxiang Xi, Catherine A. Rushworth, Matthew A. Gitzendanner, Kenneth J. Sytsma, Yin-Long Qiu, Khidir W. Hilu, Charles C. Davis, Michael J. Sanderson, Reed S. Beaman, Richard G. Olmstead, Walter S. Judd, Michael S. Donoghue, Pamela S. Soltis Jan 2011

Angiosperm Phylogeny: 17 Genes, 640 Taxa, Douglas E. Soltis, Steven A. Smith, Nico Cellinese, Kenneth J. Wurdack, David C. Tank, Samuel F. Brockington, Nancy F. Refulio-Rodriguez, Jay B. Walker, Michael J. Moore, Barbara S. Carlsward, Charles D. Bell, Maribeth Latvis, Sunny Crawley, Chelsea Black, Diaga Diouf, Zhenxiang Xi, Catherine A. Rushworth, Matthew A. Gitzendanner, Kenneth J. Sytsma, Yin-Long Qiu, Khidir W. Hilu, Charles C. Davis, Michael J. Sanderson, Reed S. Beaman, Richard G. Olmstead, Walter S. Judd, Michael S. Donoghue, Pamela S. Soltis

Barbara S. Carlsward

• Premise of the study : Recent analyses employing up to fi ve genes have provided numerous insights into angiosperm phylogeny, but many relationships have remained unresolved or poorly supported. In the hope of improving our understanding of angiosperm phylogeny, we expanded sampling of taxa and genes beyond previous analyses.• Methods : We conducted two primary analyses based on 640 species representing 330 families. The fi rst included 25 260 aligned base pairs (bp) from 17 genes (representing all three plant genomes, i.e., nucleus, plastid, and mitochondrion). The second included 19 846 aligned bp from 13 genes (representing only the …


Angiosperm Phylogeny: 17 Genes, 640 Taxa, Douglas E. Soltis, Steven A. Smith, Nico Cellinese, Kenneth J. Wurdack, David C. Tank, Samuel F. Brockington, Nancy F. Refulio-Rodriguez, Jay B. Walker, Michael J. Moore, Barbara S. Carlsward, Charles D. Bell, Maribeth Latvis, Sunny Crawley, Chelsea Black, Diaga Diouf, Zhenxiang Xi, Catherine A. Rushworth, Matthew A. Gitzendanner, Kenneth J. Sytsma, Yin-Long Qiu, Khidir W. Hilu, Charles C. Davis, Michael J. Sanderson, Reed S. Beaman, Richard G. Olmstead, Walter S. Judd, Michael S. Donoghue, Pamela S. Soltis Jan 2011

Angiosperm Phylogeny: 17 Genes, 640 Taxa, Douglas E. Soltis, Steven A. Smith, Nico Cellinese, Kenneth J. Wurdack, David C. Tank, Samuel F. Brockington, Nancy F. Refulio-Rodriguez, Jay B. Walker, Michael J. Moore, Barbara S. Carlsward, Charles D. Bell, Maribeth Latvis, Sunny Crawley, Chelsea Black, Diaga Diouf, Zhenxiang Xi, Catherine A. Rushworth, Matthew A. Gitzendanner, Kenneth J. Sytsma, Yin-Long Qiu, Khidir W. Hilu, Charles C. Davis, Michael J. Sanderson, Reed S. Beaman, Richard G. Olmstead, Walter S. Judd, Michael S. Donoghue, Pamela S. Soltis

Faculty Research & Creative Activity

• Premise of the study : Recent analyses employing up to fi ve genes have provided numerous insights into angiosperm phylogeny, but many relationships have remained unresolved or poorly supported. In the hope of improving our understanding of angiosperm phylogeny, we expanded sampling of taxa and genes beyond previous analyses.

• Methods : We conducted two primary analyses based on 640 species representing 330 families. The fi rst included 25 260 aligned base pairs (bp) from 17 genes (representing all three plant genomes, i.e., nucleus, plastid, and mitochondrion). The second included 19 846 aligned bp from 13 genes (representing only …


Angiosperm Phylogeny: 17 Genes, 640 Taxa, Douglas Soltis, Steven Smith, Nico Cellinese, Kenneth Wurdack, David Tank, Samuel Brockington, Nancy Refulio-Rodriguez, Jay Walker, Michael Moore, Barbara Carlsward, Charles Bell, Maribeth Latvis, Sunny Crawley, Chelsea Black, Diaga Diouf, Zhenxiang Xi, Catherine Rushworth, Matthew Gitzendanner, Kenneth Sytsma, Yin-Long Qiu, Khidir Hilu, Charles Davis, Michael Sanderson, Reed Beaman, Richard Olmstead, Walter Judd, Michael Donoghue, Pamela Soltis Jan 2011

Angiosperm Phylogeny: 17 Genes, 640 Taxa, Douglas Soltis, Steven Smith, Nico Cellinese, Kenneth Wurdack, David Tank, Samuel Brockington, Nancy Refulio-Rodriguez, Jay Walker, Michael Moore, Barbara Carlsward, Charles Bell, Maribeth Latvis, Sunny Crawley, Chelsea Black, Diaga Diouf, Zhenxiang Xi, Catherine Rushworth, Matthew Gitzendanner, Kenneth Sytsma, Yin-Long Qiu, Khidir Hilu, Charles Davis, Michael Sanderson, Reed Beaman, Richard Olmstead, Walter Judd, Michael Donoghue, Pamela Soltis

Faculty Research & Creative Activity

• Premise of the study : Recent analyses employing up to fi ve genes have provided numerous insights into angiosperm phylogeny, but many relationships have remained unresolved or poorly supported. In the hope of improving our understanding of angiosperm phylogeny, we expanded sampling of taxa and genes beyond previous analyses. • Methods : We conducted two primary analyses based on 640 species representing 330 families. The fi rst included 25 260 aligned base pairs (bp) from 17 genes (representing all three plant genomes, i.e., nucleus, plastid, and mitochondrion). The second included 19 846 aligned bp from 13 genes (representing only …