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Resolving the rapid plant radiation of early diverging lineages in the tropical Zingiberales: Pushing the limits of genomic data.
Carlsen, Mónica M; Fér, Tomás; Schmickl, Roswitha; Leong-Skornicková, Jana; Newman, Mark; Kress, W John.
Affiliation
  • Carlsen MM; Department of Botany, National Museum of Natural History, MRC-166, Smithsonian Institution, P.O. Box 37012, Washington, D.C. 20013-7012, United States. Electronic address: monica.carlsen@mobot.org.
  • Fér T; Department of Botany, Faculty of Science, Charles University, Benátská 2, CZ 12800 Prague, Czech Republic. Electronic address: tomas.fer@natur.cuni.cz.
  • Schmickl R; Department of Botany, Faculty of Science, Charles University, Benátská 2, CZ 12800 Prague, Czech Republic; Institute of Botany, The Czech Academy of Sciences, Zámek 1, CZ 25243 Pruhonice, Czech Republic. Electronic address: roswitha.schmickl@ibot.cas.cz.
  • Leong-Skornicková J; The Herbarium, Research and Conservation Branch, Singapore Botanic Gardens, 1 Cluny Road, Singapore 259569, Singapore. Electronic address: jana_skornickova@nparks.gov.sg.
  • Newman M; Royal Botanic Garden Edinburgh, 20A Inverleith Row, Edinburgh EH3 5LR, Scotland, United Kingdom. Electronic address: mnewman@rbge.org.uk.
  • Kress WJ; Department of Botany, National Museum of Natural History, MRC-166, Smithsonian Institution, P.O. Box 37012, Washington, D.C. 20013-7012, United States. Electronic address: kressj@si.edu.
Mol Phylogenet Evol ; 128: 55-68, 2018 11.
Article in En | MEDLINE | ID: mdl-30063997
ABSTRACT
Many cases of rapid evolutionary radiations in plant and animal lineages are known; however phylogenetic relationships among these lineages have been difficult to resolve by systematists. Increasing amounts of genomic data have been sequentially applied in an attempt to resolve these radiations, dissecting their evolutionary patterns into a series of bifurcating events. Here we explore one such rapid radiation in the tropical plant order Zingiberales (the bananas and relatives) which includes eight families, approximately 110 genera, and more than 2600 species. One clade, the "Ginger families", including (Costaceae + Zingiberaceae) (Marantaceae + Cannaceae), has been well-resolved and well-supported in all previous studies. However, well-supported reconstructions among the "Banana families" (Musaceae, Heliconiaceae, Lowiaceae, Strelitziaceae), which most likely diverged about 90 Mya, have been difficult to confirm. Supported with anatomical, morphological, single locus, and genome-wide data, nearly every possible phylogenetic placement has been proposed for these families. In an attempt to resolve this complex evolutionary event, hybridization-based target enrichment was used to obtain sequences from up to 378 putatively orthologous low-copy nuclear genes (all ≥ 960 bp). Individual gene trees recovered multiple topologies among the early divergent lineages, with varying levels of support for these relationships. One topology of the "Banana families" (Musaceae (Heliconiaceae (Lowiaceae + Strelitziaceae))), which has not been suggested until now, was almost consistently recovered in all multilocus analyses of the nuclear dataset (concatenated - ExaML, coalescent - ASTRAL and ASTRID, supertree - MRL, and Bayesian concordance - BUCKy). Nevertheless, the multiple topologies recovered among these lineages suggest that even large amounts of genomic data might not be able to fully resolve relationships at this phylogenetic depth. This lack of well-supported resolution could suggest methodological problems (i.e., violation of model assumptions in both concatenated and coalescent analyses) or more likely reflect an evolutionary history shaped by an explosive, rapid, and nearly simultaneous polychotomous radiation in this group of plants towards the end of the Cretaceous, perhaps driven by vertebrate pollinator selection.
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Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: Phylogeny / Tropical Climate / Zingiberales / Genomics Type of study: Prognostic_studies Language: En Journal: Mol Phylogenet Evol Journal subject: BIOLOGIA / BIOLOGIA MOLECULAR Year: 2018 Document type: Article

Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: Phylogeny / Tropical Climate / Zingiberales / Genomics Type of study: Prognostic_studies Language: En Journal: Mol Phylogenet Evol Journal subject: BIOLOGIA / BIOLOGIA MOLECULAR Year: 2018 Document type: Article