Quartet Sampling distinguishes lack of support from conflicting support in the green plant tree of life

被引:207
作者
Pease, James B. [1 ]
Brown, Joseph W. [2 ]
Walker, Joseph F. [2 ]
Hinchliff, Cody E. [3 ]
Smith, Stephen A. [2 ]
机构
[1] Wake Forest Univ, Dept Biol, 455 Vine St, Winston Salem, NC 27101 USA
[2] Univ Michigan, Dept Ecol & Evolutionary Biol, 830 North Univ, Ann Arbor, MI 48109 USA
[3] Univ Idaho, Dept Biol Sci, 875 Perimeter Dr,MS 3051, Moscow, ID 83844 USA
基金
美国国家科学基金会;
关键词
bootstrap; branch support; discordance; introgression; likelihood; lineage sorting; phylogenetics; phylogenomics; Viridiplantae; PHYLOGENETIC ANALYSIS; LAND PLANTS; SEED PLANTS; MULTISPECIES COALESCENT; POSTERIOR PROBABILITIES; EXTANT GYMNOSPERMS; BOOTSTRAP MEASURES; BRANCH-SUPPORT; MISSING DATA; EVOLUTION;
D O I
10.1002/ajb2.1016
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
Premise of the Study: Phylogenetic support has been difficult to evaluate within the green plant tree of life partly due to a lack of specificity between conflicted versus poorly informed branches. As data sets continue to expand in both breadth and depth, new support measures are needed that are more efficient and informative. Methods: We describe the Quartet Sampling (QS) method, a quartet-based evaluation system that synthesizes several phylogenetic and genomic analytical approaches. QS characterizes discordance in large-sparse and genome-wide data sets, overcoming issues of alignment sparsity and distinguishing strong conflict from weak support. We tested QS with simulations and recent plant phylogenies inferred from variously sized data sets. Key Results: QS scores demonstrated convergence with increasing replicates and were not strongly affected by branch depth. Patterns of QS support from different phylogenies led to a coherent understanding of ancestral branches defining key disagreements, including the relationships of Ginkgo to cycads, magnoliids to monocots and eudicots, and mosses to liverworts. The relationships of ANA-grade angiosperms (Amborella, Nymphaeales, Austrobaileyales), major monocot groups, bryophytes, and fern families are likely highly discordant in their evolutionary histories, rather than poorly informed. QS can also detect discordance due to introgression in phylogenomic data. Conclusions: Quartet Sampling is an efficient synthesis of phylogenetic tests that offers more comprehensive and specific information on branch support than conventional measures. The QS method corroborates growing evidence that phylogenomic investigations that incorporate discordance testing are warranted when reconstructing complex evolutionary histories, in particular those surrounding ANA-grade, monocots, and nonvascular plants.
引用
收藏
页码:385 / 403
页数:19
相关论文
共 125 条
[1]   ExaBayes: Massively Parallel Bayesian Tree Inference for the Whole-Genome Era [J].
Aberer, Andre J. ;
Kobert, Kassian ;
Stamatakis, Alexandros .
MOLECULAR BIOLOGY AND EVOLUTION, 2014, 31 (10) :2553-2556
[2]   Pruning Rogue Taxa Improves Phylogenetic Accuracy: An Efficient Algorithm and Webservice [J].
Aberer, Andre J. ;
Krompass, Denis ;
Stamatakis, Alexandros .
SYSTEMATIC BIOLOGY, 2013, 62 (01) :162-166
[3]   The Amborella Genome and the Evolution of Flowering Plants [J].
Albert, Victor A. ;
Barbazuk, W. Bradley ;
dePamphilis, Claude W. ;
Der, Joshua P. ;
Leebens-Mack, James ;
Ma, Hong ;
Palmer, Jeffrey D. ;
Rounsley, Steve ;
Sankoff, David ;
Schuster, Stephan C. ;
Soltis, Douglas E. ;
Soltis, Pamela S. ;
Wessler, Susan R. ;
Wing, Rod A. ;
Albert, Victor A. ;
Ammiraju, Jetty S. S. ;
Barbazuk, W. Bradley ;
Chamala, Srikar ;
Chanderbali, Andre S. ;
dePamphilis, Claude W. ;
Der, Joshua P. ;
Determann, Ronald ;
Leebens-Mack, James ;
Ma, Hong ;
Ralph, Paula ;
Rounsley, Steve ;
Schuster, Stephan C. ;
Soltis, Douglas E. ;
Soltis, Pamela S. ;
Talag, Jason ;
Tomsho, Lynn ;
Walts, Brandon ;
Wanke, Stefan ;
Wing, Rod A. ;
Albert, Victor A. ;
Barbazuk, W. Bradley ;
Chamala, Srikar ;
Chanderbali, Andre S. ;
Chang, Tien-Hao ;
Determann, Ronald ;
Lan, Tianying ;
Soltis, Douglas E. ;
Soltis, Pamela S. ;
Arikit, Siwaret ;
Axtell, Michael J. ;
Ayyampalayam, Saravanaraj ;
Barbazuk, W. Bradley ;
Burnette, James M., III ;
Chamala, Srikar ;
De Paoli, Emanuele .
SCIENCE, 2013, 342 (6165) :1467-+
[4]   Bayes or bootstrap? A simulation study comparing the performance of Bayesian Markov chain Monte Carlo sampling and bootstrapping in assessing phylogenetic confidence [J].
Alfaro, ME ;
Zoller, S ;
Lutzoni, F .
MOLECULAR BIOLOGY AND EVOLUTION, 2003, 20 (02) :255-266
[5]  
Allman E. S., 2004, Applied Mathematics Research Express, P107, DOI 10.1155/S1687120004020283
[6]   Split Scores: A Tool to Quantify Phylogenetic Signal in Genome-Scale Data [J].
Allman, Elizabeth S. ;
Kubatko, Laura S. ;
Rhodes, John A. .
SYSTEMATIC BIOLOGY, 2017, 66 (04) :620-636
[7]  
Anderson CNK, 2012, METHODS MOL BIOL, V856, P3, DOI 10.1007/978-1-61779-585-5_1
[8]   Inconsistency of the bootstrap when a parameter is on the boundary of the parameter space [J].
Andrews, DWK .
ECONOMETRICA, 2000, 68 (02) :399-405
[9]  
Ané C, 2007, MOL BIOL EVOL, V24, P412
[10]  
Ayres DL, 2012, SYST BIOL, V61, P170, DOI [10.1093/sysbio/syr100, 10.1093/sysbio/sys029]