Phylogenetic analyses of nuclear, mitochondrial, and plastid multigene data sets support the placement of Mesostigma in the Streptophyta

被引:74
作者
Rodriguez-Ezpeleta, Naiara [1 ]
Philippe, Herve
Brinkmann, Henner
Becker, Burkhard
Melkonian, Michael
机构
[1] Univ Montreal, Dept Biochim, Ctr Robert Cedergren, Canadian Inst Adv Res, Montreal, PQ H3C 3J7, Canada
[2] Univ Cologne, Inst Bot, Lehrstuhl 1, Cologne, Germany
关键词
Mesostigma; Chlorokybus; phylogenomics; taxon sampling; systematic error; heterotachy;
D O I
10.1093/molbev/msl200
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
All extant green plants belong to 1 of 2 major lineages, commonly known as the Chlorophyta (most of the green algae) and the Streptophyta (land plants and their closest green algal relatives). The scaly green flagellate Mesostigma viride has an important place in the debate on the origin of green plants. However, there have been conflicting results from molecular systematics as to whether Mesostigma diverges before the Chlorophyta/Streptophyta split or is an early diverging flagellate member of the Streptophyta. Previous studies employed either a limited taxon sampling (plastid and mitochondrial genomes) or a small number of phylogenetically informative sites (single nuclear genes). Here, we use large data sets from the nuclear (125 proteins; 29,319 positions), mitochondrial (33 proteins; 6,622 positions), and plastid (50 proteins; 10,137 positions) genomes with an expanded taxon sampling (21, 13, and 28 species, respectively) to reevaluate the phylogenetic position of Mesostigma. Our study supports the placement of Mesostigma in the Streptophyta (as an early diverging lineage) and provides evidence that systematic biases have played a role in generating some of the previous conflicting results. Importantly, we demonstrate that using an increased taxon sampling as well as more realistic models of evolution allows increasing congruence among the nuclear, mitochondrial, and plastid data sets.
引用
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页码:723 / 731
页数:9
相关论文
共 70 条
[1]  
Akaike H, 1973, 2 INT S INFORM THEOR, P199, DOI 10.1007/978-1-4612-1694-0
[2]   The analysis of 100 genes supports the grouping of three highly divergent amoebae:: Dictyostelium, Entamoeba, and Mastigamoeba [J].
Bapteste, E ;
Brinkmann, H ;
Lee, JA ;
Moore, DV ;
Sensen, CW ;
Gordon, P ;
Duruflé, L ;
Gaasterland, T ;
Lopez, P ;
Müller, M ;
Philippe, H .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2002, 99 (03) :1414-1419
[3]   Actin phylogeny identifies Mesostigma viride as a flagellate ancestor of the land plants [J].
Bhattacharya, D ;
Weber, K ;
An, SS ;
Berning-Koch, W .
JOURNAL OF MOLECULAR EVOLUTION, 1998, 47 (05) :544-550
[4]   ON CLADISTIC RELATIONSHIPS IN GREEN PLANTS [J].
BREMER, K ;
HUMPHRIES, CJ ;
MISHLER, BD ;
CHURCHILL, SP .
TAXON, 1987, 36 (02) :339-349
[5]   An empirical assessment of long-branch attraction artefacts in deep eukaryotic phylogenomics [J].
Brinkmann, H ;
Van der Giezen, M ;
Zhou, Y ;
De Raucourt, GP ;
Philippe, H .
SYSTEMATIC BIOLOGY, 2005, 54 (05) :743-757
[6]   Selection of conserved blocks from multiple alignments for their use in phylogenetic analysis [J].
Castresana, J .
MOLECULAR BIOLOGY AND EVOLUTION, 2000, 17 (04) :540-552
[7]  
Christensen T., 1962, BOTANIK 2 SYSTEMATIS, P1
[8]   Phylogeny of the genus Coleochaete (Coleochaetales, Charophyta) and related taxa inferred by analysis of the chloroplast gene rbcL [J].
Delwiche, CF ;
Karol, KG ;
Cimino, MT ;
Sytsma, KJ .
JOURNAL OF PHYCOLOGY, 2002, 38 (02) :394-403
[9]   CASES IN WHICH PARSIMONY OR COMPATIBILITY METHODS WILL BE POSITIVELY MISLEADING [J].
FELSENSTEIN, J .
SYSTEMATIC ZOOLOGY, 1978, 27 (04) :401-410
[10]   A simple, fast, and accurate algorithm to estimate large phylogenies by maximum likelihood [J].
Guindon, S ;
Gascuel, O .
SYSTEMATIC BIOLOGY, 2003, 52 (05) :696-704