@ARTICLE{TreeBASE2Ref18536,
author = {William John Baker and Vincent Savolainen and Conny B. Asmussen-Lange and Mark W. Chase and J. Dransfied and Felix Forest and Madeline M. Harley and N. W. Uhl and Mark Wilkinson},
title = {Complete Generic Level Phylogenetic Analyses of Palms (Arecaceae) with Comparisons of Supertree and Supermatrix Approaches},
year = {2009},
keywords = {},
doi = {10.1093/sysbio/syp021},
url = {},
pmid = {},
journal = {Systematic Biology},
volume = {58},
number = {2},
pages = {240--256},
abstract = {Supertree and supermatrix methods have great potential in the quest to build the Tree of Life and yet they remain controversial, with most workers opting for one approach or the other, but rarely both. Here we employed both methods to construct phylogenetic trees of all genera of palms (Arecaceae/Palmae), an iconic angiosperm family of great economic importance. We assembled a supermatrix consisting of 16 partitions, comprising DNA sequence data, plastid RFLP data and morphological data for all genera, from which a highly resolved and well-supported phylogenetic tree was built despite abundant missing data. To construct supertrees, we used variants of MRP analysis based on input trees generated directly from subsamples of the supermatrix. All supertrees were highly resolved. Standard MRP with bootstrap weighted matrix elements performed most effectively in this case, generating trees with greatest congruence with the supermatrix tree and fewest clades unsupported by any input tree. Non-independence due to input trees based on combinations of data partitions was an acceptable trade-off for improvements in supertree performance. Irreversible MRP and the use of strictly independent input trees only provided no obvious benefits. Contrary to previous claims, we found that unsupported clades are not infrequent under some MRP implementations with up to 13% of clades lacking support from any input tree in some irreversible MRP supertrees. To build a formal synthesis, we assessed the cross-corroboration between supermatrix trees and the variant supertrees using semi-strict consensus, enumerating shared clades and compatible clades. The semi-strict consensus of the supermatrix tree and the most congruent supertree contained 160 clades (of a maximum of 204), 137 of which were present in both trees. The relationships recovered by these trees strongly support the current phylogenetic classification of palms. We evaluate two composite supertree support measures (rQS and V) and conclude that it is more informative to report numbers of input trees that support or conflict with a given supertree clade. This study demonstrates that supertree and supermatrix methods can provide effective, explicit and complimentary mechanisms for synthesising disjointed phylogenetic evidence while emphasising the need for further refinement of supertree methods. KEY WORDS Palmae; Arecaceae; supertree; supermatrix; phylogeny; matrix representation with parsimony (MRP); congruence.}
}
Taxa for matrix 4253 of Study 10045

Citation title:
"Complete Generic Level Phylogenetic Analyses of Palms (Arecaceae) with Comparisons of Supertree and Supermatrix Approaches".

This study was previously identified under the legacy study ID S2385
(Status: Published).
Taxa
Return to matrix row view
| ID |
Taxon Label |
NCBI taxid |
uBIO namebankID |
| 247625 |
Acanthophoenix sp. |
|
|
| 247781 |
Acoelorraphe sp. |
|
|
| 247754 |
Acrocomia sp. |
|
|
| 247629 |
Actinokentia sp. |
|
|
| 247640 |
Actinorhytis sp. |
|
|
| 247615 |
Adonidia sp. |
|
|
| 247788 |
Aiphanes sp. |
|
|
| 247673 |
Allagoptera sp. |
|
|
| 247610 |
Alloschmidia sp. |
|
|
| 247622 |
Alsmithia sp. |
|
|
| 247672 |
Ammandra sp. |
|
|
| 247702 |
Anigozanthos sp. |
|
|
| 247661 |
Aphandra sp. |
|
|
| 247682 |
Archontophoenix sp. |
|
|
| 247740 |
Areca sp. |
|
|
| 247708 |
Arenga sp. |
|
|
| 247771 |
Asterogyne sp. |
|
|
| 247665 |
Astrocaryum sp. |
|
|
| 247792 |
Attalea sp. |
|
|
| 247677 |
Bactris sp. |
|
|
| 247790 |
Balaka sp. |
|
|
| 247645 |
Barcella sp. |
|
|
| 247794 |
Basselinia sp. |
|
|
| 247795 |
Beccariophoenix sp. |
|
|
| 247745 |
Bentinckia sp. |
|
|
| 247621 |
Bismarckia sp. |
|
|
| 247641 |
Borassodendron sp. |
|
|
| 247613 |
Borassus sp. |
|
|
| 247600 |
Brahea sp. |
|
|
| 247614 |
Brassiophoenix sp. |
|
|
| 247728 |
Brongniartikentia sp. |
|
|
| 247775 |
Burretiokentia sp. |
|
|
| 247752 |
Butia sp. |
|
|
| 247623 |
Calamus sp. |
|
|
| 247755 |
Calectasia sp. |
|
|
| 247666 |
Calospatha sp. |
|
|
| 247648 |
Calyptrocalyx sp. |
|
|
| 247703 |
Calyptrogyne sp. |
|
|
| 247707 |
Calyptronoma sp. |
|
|
| 247749 |
Campecarpus sp. |
|
|
| 247782 |
Carpentaria sp. |
|
|
| 247770 |
Carpoxylon sp. |
|
|
| 247696 |
Caryota sp. |
|
|
| 247657 |
Catopsis sp. |
|
|
| 247768 |
Ceratolobus sp. |
|
|
| 247726 |
Ceroxylon sp. |
|
|
| 247603 |
Chamaedorea sp. |
|
|
| 247671 |
Chamaerops sp. |
|
|
| 247632 |
Chambeyronia sp. |
|
|
| 247604 |
Chelyocarpus sp. |
|
|
| 247647 |
Chuniophoenix sp. |
|
|
| 247716 |
Clinosperma sp. |
|
|
| 247772 |
Clinostigma sp. |
|
|
| 247685 |
Coccothrinax sp. |
|
|
| 247741 |
Cocos sp. |
|
|
| 247750 |
Colpothrinax sp. |
|
|
| 247711 |
Copernicia sp. |
|
|
| 247675 |
Corypha sp. |
|
|
| 247774 |
Costus sp. |
|
|
| 247736 |
Cryosophila sp. |
|
|
| 247733 |
Cyphokentia sp. |
|
|
| 247800 |
Cyphophoenix sp. |
|
|
| 247801 |
Cyphosperma sp. |
|
|
| 247654 |
Cyrtostachys sp. |
|
|
| 247780 |
Daemonorops sp. |
|
|
| 247608 |
Dasypogon sp. |
|
|
| 247796 |
Deckenia sp. |
|
|
| 247759 |
Desmoncus sp. |
|
|
| 247723 |
Dictyocaryum sp. |
|
|
| 247618 |
Dictyosperma sp. |
|
|
| 247634 |
Dransfieldia sp. |
|
|
| 247762 |
Drymophloeus sp. |
|
|
| 247679 |
Dypsis sp. |
|
|
| 247649 |
Elaeis sp. |
|
|
| 247719 |
Eleiodoxa sp. |
|
|
| 247667 |
Eremospatha sp. |
|
|
| 247783 |
Eugeissona sp. |
|
|
| 247742 |
Euterpe sp. |
|
|
| 247785 |
Fargesia sp. |
|
|
| 247753 |
Gastrococos sp. |
|
|
| 247698 |
Gaussia sp. |
|
|
| 247787 |
Geonoma sp. |
|
|
| 247676 |
Guihaia sp. |
|
|
| 247620 |
Hanguana sp. |
|
|
| 247705 |
Hedyscepe sp. |
|
|
| 247721 |
Hemithrinax sp. |
|
|
| 247688 |
Heterospathe sp. |
|
|
| 247747 |
Howea sp. |
|
|
| 247635 |
Hydriastele sp. |
|
|
| 247697 |
Hyophorbe sp. |
|
|
| 247638 |
Hyospathe sp. |
|
|
| 247637 |
Hyphaene sp. |
|
|
| 247786 |
Iguanura sp. |
|
|
| 247617 |
Iriartea sp. |
|
|
| 247776 |
Iriartella sp. |
|
|
| 247633 |
Itaya sp. |
|
|
| 247717 |
Johannesteijsmannia sp. |
|
|
| 247660 |
Juania sp. |
|
|
| 247692 |
Jubaea sp. |
|
|
| 247609 |
Jubaeopsis sp. |
|
|
| 247612 |
Kentiopsis sp. |
|
|
| 247712 |
Kerriodoxa sp. |
|
|
| 247611 |
Kingia sp. |
|
|
| 247765 |
Korthalsia sp. |
|
|
| 247791 |
Laccospadix sp. |
|
|
| 247802 |
Laccosperma sp. |
|
|
| 247628 |
Latania sp. |
|
|
| 247687 |
Lavoixia sp. |
|
|
| 247714 |
Lemurophoenix sp. |
|
|
| 247599 |
Leopoldinia sp. |
|
|
| 247627 |
Lepidocaryum sp. |
|
|
| 247773 |
Lepidorrhachis sp. |
|
|
| 247636 |
Leucothrinax sp. |
|
|
| 247793 |
Licuala sp. |
|
|
| 247756 |
Linospadix sp. |
|
|
| 247619 |
Livistona sp. |
|
|
| 247652 |
Lodoicea sp. |
|
|
| 247751 |
Loxococcus sp. |
|
|
| 247720 |
Lytocaryum sp. |
|
|
| 247732 |
Manicaria sp. |
|
|
| 247730 |
Marojejya sp. |
|
|
| 247655 |
Masoala sp. |
|
|
| 247639 |
Mauritia sp. |
|
|
| 247663 |
Mauritiella sp. |
|
|
| 247701 |
Maxburretia sp. |
|
|
| 247664 |
Medemia sp. |
|
|
| 247693 |
Metroxylon sp. |
|
|
| 247699 |
Moratia sp. |
|
|
| 247744 |
Musa sp. |
|
|
| 247760 |
Myrialepis sp. |
|
|
| 247690 |
Nannorrhops sp. |
|
|
| 247758 |
Nenga sp. |
|
|
| 247778 |
Neonicholsonia sp. |
|
|
| 247695 |
Neoveitchia sp. |
|
|
| 247616 |
Nephrosperma sp. |
|
|
| 247607 |
Normanbya sp. |
|
|
| 247602 |
Nypa sp. |
|
|
| 247725 |
Oenocarpus sp. |
|
|
| 247658 |
Oncocalamus sp. |
|
|
| 247709 |
Oncosperma sp. |
|
|
| 247686 |
Orania sp. |
|
|
| 247763 |
Oraniopsis sp. |
|
|
| 247718 |
Palms MRP outgroup |
|
|
| 247737 |
Parajubaea sp. |
|
|
| 247777 |
Pelagodoxa sp. |
|
|
| 247606 |
Phoenicophorium sp. |
|
|
| 247668 |
Phoenix sp. |
|
|
| 247624 |
Pholidocarpus sp. |
|
|
| 247674 |
Pholidostachys sp. |
|
|
| 247713 |
Physokentia sp. |
|
|
| 247799 |
Phytelephas sp. |
|
|
| 247689 |
Pigafetta sp. |
|
|
| 247646 |
Pinanga sp. |
|
|
| 247734 |
Plectocomia sp. |
|
|
| 247729 |
Plectocomiopsis sp. |
|
|
| 247706 |
Podococcus sp. |
|
|
| 247650 |
Pogonotium sp. |
|
|
| 247644 |
Polyandrococos sp. |
|
|
| 247605 |
Ponapea sp. |
|
|
| 247601 |
Prestoea sp. |
|
|
| 247710 |
Pritchardia sp. |
|
|
| 247659 |
Pritchardiopsis sp. |
|
|
| 247731 |
Pseudophoenix sp. |
|
|
| 247662 |
Ptychococcus sp. |
|
|
| 247798 |
Ptychosperma sp. |
|
|
| 247764 |
Raphia sp. |
|
|
| 247694 |
Ravenea sp. |
|
|
| 247704 |
Reinhardtia sp. |
|
|
| 247722 |
Retispatha sp. |
|
|
| 247651 |
Rhapidophyllum sp. |
|
|
| 247598 |
Rhapis sp. |
|
|
| 247748 |
Rhopaloblaste sp. |
|
|
| 247766 |
Rhopalostylis sp. |
|
|
| 247715 |
Roscheria sp. |
|
|
| 247626 |
Roystonea sp. |
|
|
| 247767 |
Sabal sp. |
|
|
| 247757 |
Salacca sp. |
|
|
| 247681 |
Satakentia sp. |
|
|
| 247735 |
Satranala sp. |
|
|
| 247797 |
Schippia sp. |
|
|
| 247684 |
Sclerosperma sp. |
|
|
| 247746 |
Serenoa sp. |
|
|
| 247769 |
Socratea sp. |
|
|
| 247630 |
Solfia sp. |
|
|
| 247761 |
Sommieria sp. |
|
|
| 247670 |
Syagrus sp. |
|
|
| 247653 |
Synechanthus sp. |
|
|
| 247739 |
Tectiphiala sp. |
|
|
| 247643 |
Thrinax sp. |
|
|
| 247597 |
Trachycarpus sp. |
|
|
| 247656 |
Tradescantia sp. |
|
|
| 247779 |
Trithrinax sp. |
|
|
| 247789 |
Typha sp. |
|
|
| 247631 |
Veillonia sp. |
|
|
| 247678 |
Veitchia sp. |
|
|
| 247680 |
Verschaffeltia sp. |
|
|
| 247743 |
Voanioala sp. |
|
|
| 247784 |
Vriesia sp. |
|
|
| 247700 |
Wallichia sp. |
|
|
| 247738 |
Washingtonia sp. |
|
|
| 247642 |
Welfia sp. |
|
|
| 247683 |
Wendlandiella sp. |
|
|
| 247724 |
Wettinia sp. |
|
|
| 247669 |
Wodyetia sp. |
|
|
| 247691 |
Zea sp. |
|
|
| 247727 |
Zombia sp. |
|
|