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    Hundreds of nuclear and plastid loci yield novel insights into orchid relationships

    Pérez-Escobar, O.A. and Dodsworth, Steven and Bogarín, D. and Bellot, S. and Balbuena, J.A. and Schley, R.J. and Kikuchi, I.A. and Morris, S.K. and Epitawalage, N. and Cowan, R. and Maurin, O. and Zuntini, A. and Arias, T. and Serna-Sánchez, A. and Gravendeel, B. and Torres Jimene, M.F. and Nargar, K. and Chomicki, G. and Chase, M.W. and Leitch, I.J. and Forest, F. and Baker, W.J. (2021) Hundreds of nuclear and plastid loci yield novel insights into orchid relationships. American Journal of Botany 108 (7), pp. 1166-1180. ISSN 0002-9122.

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    Abstract

    Premise: The inference of evolutionary relationships in the species-rich family Orchidaceae has hitherto relied heavily on plastid DNA sequences and limited taxon sampling. Previous studies have provided a robust plastid phylogenetic framework, which was used to classify orchids and investigate the drivers of orchid diversification. However, the extent to which phylogenetic inference based on the plastid genome is congruent with the nuclear genome has been only poorly assessed.Methods: We inferred higher-level phylogenetic relationships of orchids based on likelihood and ASTRAL analyses of 294 low-copy nuclear genes sequenced using the Angiosperms353 universal probe set for 75 species (representing 69 genera, 16 tribes, 24 subtribes) and a concatenated analysis of 78 plastid genes for 264 species (117 genera, 18 tribes, 28 subtribes). We compared phylogenetic informativeness and support for the nuclear and plastid phylogenetic hypotheses.Results: Phylogenetic inference using nuclear data sets provides well-supported orchid relationships that are highly congruent between analyses. Comparisons of nuclear gene trees and a plastid supermatrix tree showed that the trees are mostly congruent, but revealed instances of strongly supported phylogenetic incongruence in both shallow and deep time. The phylogenetic informativeness of individual Angiosperms353 genes is in general better than that of most plastid genes.Conclusions: Our study provides the first robust nuclear phylogenomic framework for Orchidaceae and an assessment of intragenomic nuclear discordance, plastid-nuclear tree incongruence, and phylogenetic informativeness across the family. Our results also demonstrate what has long been known but rarely thoroughly documented: nuclear and plastid phylogenetic trees can contain strongly supported discordances, and this incongruence must be reconciled prior to interpretation in evolutionary studies, such as taxonomy, biogeography, and character evolution.

    Metadata

    Item Type: Article
    Keyword(s) / Subject(s): Angiosperms353, incongruence, multilocus phylogenetic trees, nuclearplastid discordance, Orchidaceae, recombination
    School: Birkbeck Faculties and Schools > Faculty of Science > School of Natural Sciences
    Research Centres and Institutes: Structural Molecular Biology, Institute of (ISMB)
    Depositing User: Steven Dodsworth
    Date Deposited: 26 Sep 2024 09:59
    Last Modified: 26 Sep 2024 14:13
    URI: https://eprints.bbk.ac.uk/id/eprint/54033

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