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  5. Genetic breaks caused by ancient forest fragmentation: phylogeography of Staudtia kamerunensis (Myristicaceae) reveals distinct clusters in the Congo Basin.

Genetic breaks caused by ancient forest fragmentation: phylogeography of Staudtia kamerunensis (Myristicaceae) reveals distinct clusters in the Congo Basin.

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Resource type
Journal article
Creator (person)
Vanden Abeele, Samuel
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Matvijev, Katarina
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Hardy, Olivier J.
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Assumani, Dieu-Merci
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Angoboy Ilondea, Bhély
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Beeckman, Hans
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Bouka, Gael U. D.
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Boupoya, Clay Archange
Deklerck, Victor
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Flot, Jean-François
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Gillet, Jean-François
Kamdem, Narcisse Guy
Lisingo, Janvier
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Monthe, Franck
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Sonké, Bonaventure
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Janssens, Steven B.
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Date published
April 26, 2023
Abstract
Documenting species and population diversity is becoming increasingly important as the destruction and degradation of natural ecosystems are leading to a worldwide biodiversity loss. Despite the rapid development of genetic tools, many species remain undocumented and little is known about the diversity of individuals and populations, especially for tropical African plants. In this study, we aim to identify putative hidden species and/or differentiated populations in the tropical African tree Warb. (Myristicaceae), a widespread species characterized by a high morphological diversity and a complex taxonomical history. Historical herbarium vouchers were sampled and leaf or cambium samples were collected in the field, dried in silica gel, and subsequently genotyped at 14 microsatellite loci (SSRs), as well as sequenced for two nuclear genes ( , ) and one plastid region ( ). These genetic data were then analyzed using Bayesian clustering, population genetics, and the construction of haplowebs to assess genetic clustering patterns, the distribution of genetic diversity, and genetic differentiation among populations. Multiple genetically differentiated clusters were observed in parapatry throughout Central Africa. Genetic diversity was high and similar among these clusters, apart from the most differentiated populations in southeast Democratic Republic of the Congo (DR Congo), which showed lower levels of genetic diversity. The genetic breaks detected between populations are likely not indicative of hidden species but rather result from ancient rainforest fragmentation during cold and dry periods in the Pliocene and/or Pleistocene. The strong genetic divergence between populations in southeast DR Congo could be the result of an ongoing speciation linked to ecological niche differentiation.
Project(s)
AFRIFORD Project
HERBAXYLAREDD Project
Funder
Funder nameAwards
Belgian Federal Science Policy Office, Belgium
HERBAXYLAREDD Projects (BR/143/A3/HERBAXYLAREDD) - AFRIFORD Project (BR/132/A1/AFRIFORD)
H2020 Marie Skłodowska-Curie Actions, European Union
Grant agreement N° 765000
Fonds De La Recherche Scientifique - FNRS, Belgium
Grant J.0292.17F
Fondation Philippe Wiener - Maurice Anspach, Belgium
Postdoctoral Fellowship
University Foundation Belgium
WA-0447
Journal title
Tree Genetics & Genomes
Volume
19
Article number
27
Publisher
Springer Science and Business Media LLC
Place of publication
Berlin/Heidelberg, Germany
ISSN
1614-2942
eISSN
1614-2950
Date accepted
April 5, 2023
Official URL
https://doi.org/10.1007/s11295-023-01601-1
Rights statement
In Copyright
Licence
https://creativecommons.org/licenses/by/4.0/
DOI
10.1007/s11295-023-01601-1
Keywords
African rainforest
Staudtia
Population genetics
Myristicaceae
Phylogeography
Species delimitation
Herbarium
Staudtia kamerunensis
Congo Basin
Additional information
IF = 2.398 (2022-2023)
Managed by the British Library and supported by the AHRC

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