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  5. Deep Insights Into the Plastome Evolution and Phylogenetic Relationships of the Tribe Urticeae (Family Urticaceae).

Deep Insights Into the Plastome Evolution and Phylogenetic Relationships of the Tribe Urticeae (Family Urticaceae).

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Resource type
Journal article
Creator (person)
Ogoma, Catherine A.
Liu, Jie
Stull, Gregory W.
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Wambulwa, Moses C.
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Oyebanji, Oyetola
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more
Date published
May 20, 2022
Abstract

Urticeae , a tribe of Urticaceae well-known for their stinging trichomes, consists of more than 10 genera and approximately 220 species. Relationships within this tribe remain poorly known due to the limited molecular and taxonomic sampling in previous studies, and chloroplast genome (CP genome/plastome) evolution is still largely unaddressed. To address these concerns, we used genome skimming data—CP genome and nuclear ribosomal DNA (18S-ITS1-5.8S-ITS2-26S); 106 accessions—for the very first time to attempt resolving the recalcitrant relationships and to explore chloroplast structural evolution across the group. Furthermore, we assembled a taxon rich two-locus dataset of spacer and ITS sequences across 291 accessions to complement our genome skimming dataset. We found that Urticeae plastomes exhibit the tetrad structure typical of angiosperms, with sizes ranging from 145 to 161 kb and encoding a set of 110–112 unique genes. The studied plastomes have also undergone several structural variations, including inverted repeat (IR) expansions and contractions, inversion of the gene, losses of the gene, and the intron, and the proliferation of multiple repeat types; 11 hypervariable regions were also identified. Our phylogenomic analyses largely resolved major relationships across tribe Urticeae, supporting the monophyly of the tribe and most of its genera except for , , and , which were recovered as polyphyletic with strong support. Our analyses also resolved with strong support several previously contentious branches: (1) as a sister to the - - - - - - clade and (2) as sister to the recently transcribed . Analyses of the taxon-rich, two-locus dataset showed lower support but was largely congruent with results from the CP genome and nuclear ribosomal DNA dataset. Collectively, our study highlights the power of genome skimming data to ameliorate phylogenetic resolution and provides new insights into phylogenetic relationships and chloroplast structural evolution in Urticeae.

Organisational unit
Science
Project(s)
Priority 4: Accelerated Taxonomy
Funder
Funder nameISNIAwards
Key Research Program of Frontier Science, Chinese Academy of Sciences
ZDBS-LY-7001
National Natural Science Foundation of China
ISNIISNI logo
31970356 - 42171071 - 41971071
Youth Innovation Promotion Association of the Chinese Academy of Sciences, China
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2019385
Top-notch Young Talents Projects of Yunnan Provincial “Ten Thousand Talents Program", China
YNWR-QNBJ-2020-293 - YNWR-QNBJ-2018-146
Strategic Priority Research Program, Chinese Academy of Sciences, China
XDB31000000
Office of China Postdoctoral Council, China
Postdoctoral International Exchange Program
Postdoctoral Research Fund of Yunnan Province, China
Postdoctoral Targeted Funding
Journal title
Frontiers in Plant Science
Volume
13
Article number
870949
Publisher
Frontiers Media SA
Place of publication
Lausanne, Switzerland
eISSN
1664-462X
Date accepted
April 15, 2022
Official URL
https://doi.org/10.3389/fpls.2022.870949
Rights statement
In Copyright
Licence
CC BY 4.0
DOI
10.3389/fpls.2022.870949
Alternate identifier
870949
Keywords
Urticaceae
Phylogenomic
Urticaceae s.l.
Plastome evolution
Genome skimming
Chloroplast structural evolution
Additional information
IF = 5.753 (2021-2022)
Managed by the British Library and supported by the AHRC

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