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Increased resolution in the face of conflict: phylogenomics of the Neotropical bellflowers (Campanulaceae: Lobelioideae), a rapid plant radiation. | LitMetric

AI Article Synopsis

  • The centropogonid clade, part of the Lobelioideae family, has undergone rapid evolution in the Andes, resulting in complex relationships among species, especially with capsular fruits and flower traits that have evolved similarly across different lineages.
  • Targeted sequence capture techniques helped in gathering genetic data from both fresh and preserved plant samples, leading to an improved understanding of species relationships through various phylogenomic analyses.
  • Though the study enhances the clarity of phylogenetic ties, significant discrepancies among gene trees and challenges in reclassifying non-monophyletic genera remain due to ongoing morphological innovation and genetic complexity.

Article Abstract

Background And Aims: The centropogonid clade (Lobelioideae: Campanulaceae) is an Andean-centred rapid radiation characterized by repeated convergent evolution of morphological traits, including fruit type and pollination syndromes. While previous studies have resolved relationships of lineages with fleshy fruits into subclades, relationships among capsular species remain unresolved. This lack of resolution has impeded reclassification of non-monophyletic genera, whose current taxonomy relies heavily on traits that have undergone convergent evolution.

Methods: Targeted sequence capture using a probe-set recently developed for the centropogonid clade was used to obtain phylogenomic data from DNA extracted from both silica-dried and herbarium leaf tissue. These data were used to infer relationships among species using concatenated and partitioned species tree methods, and to quantify gene tree discordance.

Key Results: While silica-dried leaf tissue resulted in longer assembled sequence data, the inclusion of herbarium samples improved taxonomic representation. Relationships among baccate lineages are similar to those inferred in previous studies, although they differ for lineages within and among capsular clades. We improve the phylogenetic resolution of Siphocampylus, which forms ten groups of closely related species which we informally name. Two subclades of Siphocampylus and two individual species are rogue taxa whose placement differs widely across analyses. Gene tree discordance (including cytonuclear discordance) is rampant.

Conclusions: This first phylogenomic study of the centropogonid clade considerably improves our understanding of relationships in this rapid radiation. Differences across analyses and the possibility of additional lineage discoveries still hamper a solid and stable reclassification. Rapid morphological innovation corresponds with a high degree of phylogenomic complexity, including cytonuclear discordance, nuclear gene tree conflict and well-supported differences between analyses based on different nuclear loci. Together, these results point to a potential role of hemiplasy underlying repeated convergent evolution. This hallmark of rapid radiations is probably present in many other species-rich Andean plant radiations.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC9113290PMC
http://dx.doi.org/10.1093/aob/mcac046DOI Listing

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