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  5. Phylogenomic analyses of Sapindales support new family relationships, rapid Mid-Cretaceous Hothouse diversification, and heterogeneous histories of gene duplication.

Phylogenomic analyses of Sapindales support new family relationships, rapid Mid-Cretaceous Hothouse diversification, and heterogeneous histories of gene duplication.

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Resource type
Journal article
Creator (person)
Joyce, Elizabeth M.
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Appelhans, Marc S.
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Buerki, Sven
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Cheek, Martin
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de Vos, Jurriaan M.
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Pirani, José R.
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Zuntini, Alexandre R.
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Bachelier, Julien B.
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Bayly, Michael J.
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Callmander, Martin W.
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Devecchi, Marcelo F.
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Pell, Susan K.
Groppo, Milton
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Lowry, Porter P.
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Mitchell, John
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Siniscalchi, Carolina M.
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Munzinger, Jérôme
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Orel, Harvey K.
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Pannell, Caroline M.
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Nauheimer, Lars
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Sauquet, Hervé
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Weeks, Andrea
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Muellner-Riehl, Alexandra N.
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Leitch, Ilia J.
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Maurin, Olivier
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Forest, Félix
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Nargar, Katharina
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Thiele, Kevin R.
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Baker, William J.
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Crayn, Darren M.
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Date published
March 7, 2023
Abstract
Sapindales is an angiosperm order of high economic and ecological value comprising nine families, c. 479 genera, and c. 6570 species. However, family and subfamily relationships in Sapindales remain unclear, making reconstruction of the order’s spatio-temporal and morphological evolution difficult. In this study, we used Angiosperms353 target capture data to generate the most densely sampled phylogenetic trees of Sapindales to date, with 448 samples and c. 85% of genera represented. The percentage of paralogous loci and allele divergence was characterized across the phylogeny, which was time-calibrated using 29 rigorously assessed fossil calibrations. All families were supported as monophyletic. Two core family clades subdivide the order, the first comprising Kirkiaceae, Burseraceae, and Anacardiaceae, the second comprising Simaroubaceae, Meliaceae, and Rutaceae. Kirkiaceae is sister to Burseraceae and Anacardiaceae, and, contrary to current understanding, Simaroubaceae is sister to Meliaceae and Rutaceae. Sapindaceae is placed with Nitrariaceae and Biebersteiniaceae as sister to the core Sapindales families, but the relationships between these families remain unclear, likely due to their rapid and ancient diversification. Sapindales families emerged in rapid succession, coincident with the climatic change of the Mid-Cretaceous Hothouse event. Subfamily and tribal relationships within the major families need revision, particularly in Sapindaceae, Rutaceae and Meliaceae. Much of the difficulty in reconstructing relationships at this level may be caused by the prevalence of paralogous loci, particularly in Meliaceae and Rutaceae, that are likely indicative of ancient gene duplication events such as hybridization and polyploidization playing a role in the evolutionary history of these families. This study provides key insights into factors that may affect phylogenetic reconstructions in Sapindales across multiple scales, and provides a state-of-the-art phylogenetic framework for further research.
Project(s)
Priority 4: Accelerated Taxonomy
Priority 2: Biobanking and Unlocking Properties
Plant and Fungal Trees of Life Project
Priority 1: Ecosystem Stewardship
Funder
Funder nameAwards
Calleva Foundation, United Kingdom
Genomics for Australian Plants Framework Initiative Consortium
Australasian Systematic Botany Society, Australia
Hansjörg Eichler Research Grant
Wet Tropics Management Authority, Australia
Research Grant
Australian Government, Australia
Prinzessin Therese von Bayern Foundation, Germany
Journal title
Frontiers in Plant Science
Volume
14
Article number
1063174
Publisher
Frontiers Media SA
Place of publication
Lausanne, Switzerland
eISSN
1664-462X
Date accepted
January 31, 2023
Official URL
https://doi.org/10.3389/fpls.2023.1063174
Rights statement
In Copyright
Licence
https://creativecommons.org/licenses/by/4.0/
DOI
10.3389/fpls.2023.1063174
Keywords
Sapindales
Phylogenomics
Sequence capture
HybSeq
Cenomanian-Turonian Thermal Maximum
Target enrichment
Paralogy
Additional information
IF = 5.753 (2022-2023)
Collection
Plant and Fungal Trees of Life project
Managed by the British Library and supported by the AHRC

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