ArticleSystematic biology2023
Hybridization and Transgressive Evolution Generate Diversity in an Adaptive Radiation of Anolis Lizards.
Article in Systematic biology, 2023. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 11 papers.
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Who cites it
11 citing papers in PubMed, 26 citations in OpenAlex.
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- Evidence for Cryptic Sex in Escovopsis, a Mycoparasite in the Fungus-Growing Ant Symbiosis.Genome biology and evolution · 2026Article
- The Explosive Radiation of the Neotropical Tillandsia Subgenus Tillandsia (Bromeliaceae) Has Been Accompanied by Pervasive Hybridization.Systematic biology · 2026Article
- Rampant Reticulation in a Rapid Radiation of Tropical Trees-Insights from Inga (Fabaceae).Systematic biology · 2025Article
- Documenting homoploid hybrid speciation.Molecular ecology · 2025Review
- Structural Rearrangements and Selection Promote Phenotypic Evolution in Anolis Lizards.Genome biology and evolution · 2025Article
- Repeated Mitochondrial Capture With Limited Genomic Introgression in a Lizard Group.Molecular ecology · 2025Article
- Transgressive hybrids as hopeful holobionts.Microbiome · 2025Article
- A global perspective on adaptive radiation: advances, issues, and future directions.Evolutionary journal of the Linnean Society · 2025Article
- Ecological diversification of sea catfishes is accompanied by genome-wide signatures of positive selection.Nature communications · 2024Article
- Chromosomal inversions from an initial ecotypic divergence drive a gradual repeated radiation of Galápagos beetles.Science advances · 2024Article
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Authors and funding
4 authors at 3 institutions in 2 countries.
Funding
Abstract
Interspecific hybridization may act as a major force contributing to the evolution of biodiversity. Although generally thought to reduce or constrain divergence between 2 species, hybridization can, paradoxically, promote divergence by increasing genetic variation or providing novel combinations of alleles that selection can act upon to move lineages toward new adaptive peaks. Hybridization may, then, play a key role in adaptive radiation by allowing lineages to diversify into new ecological space. Here, we test for signatures of historical hybridization in the Anolis lizards of Puerto Rico and evaluate 2 hypotheses for the role of hybridization in facilitating adaptive radiation-the hybrid swarm origins hypothesis and the syngameon hypothesis. Using whole genome sequences from all 10 species of Puerto Rican anoles, we calculated D and f-statistics (from ABBA-BABA tests) to test for introgression across the radiation and employed multispecies network coalescent methods to reconstruct phylogenetic networks that allow for hybridization. We then analyzed morphological data for these species to test for patterns consistent with transgressive evolution, a phenomenon in which the trait of a hybrid lineage is found outside of the range of its 2 parents. Our analyses uncovered strong evidence for introgression at multiple stages of the radiation, including support for an ancient hybrid origin of a clade comprising half of the extant Puerto Rican anole species. Moreover, we detected significant signals of transgressive evolution for 2 ecologically important traits, head length and toepad width, the latter of which has been described as a key innovation in Anolis. [Adaptive radiation; introgression; multispecies network coalescent; phenotypic evolution; phylogenetic network; reticulation; syngameon; transgressive segregation.].
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