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Towards a species-level phylogeny for Neotropical Myrtaceae: Notes on topology and resources for future studies.

Authors :
Staggemeier VG
Amorim B
Bünger M
Costa IR
de Faria JEQ
Flickinger J
Giaretta A
Kubo MT
Lima DF
Dos Santos LL
Lourenço AR
Lucas E
Mazine FF
Murillo-A J
de Oliveira MIU
Parra-O C
Proença CEB
Reginato M
Rosa PO
Santos MF
Stadnik A
Tuler AC
Valdemarin KS
Vasconcelos T
Source :
American journal of botany [Am J Bot] 2024 May; Vol. 111 (5), pp. e16330. Date of Electronic Publication: 2024 May 10.
Publication Year :
2024

Abstract

Premise: Increasingly complete phylogenies underpin studies in systematics, ecology, and evolution. Myrteae (Myrtaceae), with ~2700 species, is a key component of the exceptionally diverse Neotropical flora, but given its complicated taxonomy, automated assembling of molecular supermatrices from public databases often lead to unreliable topologies due to poor species identification.<br />Methods: Here, we build a taxonomically verified molecular supermatrix of Neotropical Myrteae by assembling 3909 published and 1004 unpublished sequences from two nuclear and seven plastid molecular markers. We infer a time-calibrated phylogenetic tree that covers 712 species of Myrteae (~28% of the total diversity in the clade) and evaluate geographic and taxonomic gaps in sampling.<br />Results: The tree inferred from the fully concatenated matrix mostly reflects the topology of the plastid data set and there is a moderate to strong incongruence between trees inferred from nuclear and plastid partitions. Large, species-rich genera are still the poorest sampled within the group. Eastern South America is the best-represented area in proportion to its species diversity, while Western Amazon, Mesoamerica, and the Caribbean are the least represented.<br />Conclusions: We provide a time-calibrated tree that can be more reliably used to address finer-scale eco-evolutionary questions that involve this group in the Neotropics. Gaps to be filled by future studies include improving representation of taxa and areas that remain poorly sampled, investigating causes of conflict between nuclear and plastid partitions, and the role of hybridization and incomplete lineage sorting in relationships that are poorly supported.<br /> (© 2024 The Authors. American Journal of Botany published by Wiley Periodicals LLC on behalf of Botanical Society of America.)

Details

Language :
English
ISSN :
1537-2197
Volume :
111
Issue :
5
Database :
MEDLINE
Journal :
American journal of botany
Publication Type :
Academic Journal
Accession number :
38725388
Full Text :
https://doi.org/10.1002/ajb2.16330