ArticleAnnals of botany2023
Phylogenomics reveals widespread hybridization and polyploidization in Henckelia (Gesneriaceae).
Article in Annals of botany, 2023. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 12 papers.
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12 citing papers in PubMed.
- Integrative utilization of genomic resources for improved phylogenetic resolution in Sonerileae (Melastomataceae).American journal of botany · 2026Article
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- Adaptive Strategies Mediating the Diversification of Alpine Plants: The Case of the Himalayan Blue Poppy (Plants (Basel, Switzerland) · 2025Article
- Beyond Level-1: Identifiability of a Class of Galled Tree-Child Networks.Bulletin of mathematical biology · 2025Article
- Comparative Analysis of Chloroplast Genome Between Widely Distributed and Locally DistributedInternational journal of molecular sciences · 2025Article
- Evaluating the utility of deep genome skimming for phylogenomic analyses: A case study in the species-rich genusPlant diversity · 2025Article
- Genomic DNA barcodes provide novel insights into species delimitation in the complex Camellia sect. Thea (Theaceae).BMC plant biology · 2025Article
- Plastome phylogenomics unravels the evolutionary relationships and biogeographic history of Chloranthaceae.BMC plant biology · 2025Article
- Misspecification Strikes: ASTRAL can Mislead in the Presence of Hybridization, even for Nonanomalous Scenarios.Molecular biology and evolution · 2025Article
- Assembly and analysis of the chloroplast genome ofMitochondrial DNA. Part B, Resources · 2024Article
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4 authors.
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Abstract
BACKGROUND AND
aimsHybridization has long been recognized as an important process for plant evolution and is often accompanied by polyploidization, another prominent force in generating biodiversity. Despite its pivotal importance in evolution, the actual prevalence and distribution of hybridization across the tree of life remain unclear.
methodsWe used whole-genome shotgun (WGS) sequencing and cytological data to investigate the evolutionary history of Henckelia, a large genus in the family Gesneriaceae with a high frequency of suspected hybridization and polyploidization events. We generated WGS sequencing data at about 10× coverage for 26 Chinese Henckelia species plus one Sri Lankan species. To untangle the hybridization history, we separately extracted whole plastomes and thousands of single-copy nuclear genes from the sequencing data, and reconstructed phylogenies based on both nuclear and plastid data. We also explored sources of both genealogical and cytonuclear conflicts and identified signals of hybridization and introgression within our phylogenomic dataset using several statistical methods. Additionally, to test the polyploidization history, we evaluated chromosome counts for 45 populations of the 27 Henckelia species studied. KEY
resultsWe obtained well-supported phylogenetic relationships using both concatenation- and coalescent-based methods. However, the nuclear phylogenies were highly inconsistent with the plastid phylogeny, and we observed intensive discordance among nuclear gene trees. Further analyses suggested that both incomplete lineage sorting and gene flow contributed to the observed cytonuclear and genealogical discordance. Our analyses of introgression and phylogenetic networks revealed a complex history of hybridization within the genus Henckelia. In addition, based on chromosome counts for 27 Henckelia species, we found independent polyploidization events occurred within Henckelia after different hybridization events.
conclusionsOur findings demonstrated that hybridization and polyploidization are common in Henckelia. Furthermore, our results revealed that H. oblongifolia is not a member of the redefined Henckelia and they suggested several other taxonomic treatments in this genus.
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