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Garner, A. G.

Publications and source records attributed to Garner, A. G..

2 recordsLinked to original sources

A cis-regulatory point mutation at a R2R3-Myb transcription factor contributes to speciation by reinforcement in Phlox drummondii

The process of reinforcement, whereby selection favors the evolution of increased reproductive trait divergence to reduce costly hybridization between species, has been well documented in nature, yet we know very little about how this process evolves at the molecular level. In this study, we combine functional characterization and genetic association tests to identify the mutational basis of reinforcement in the Texas wildflower Phlox drummondii. P. drummondii evolved from light to dark flower color intensity by selection to stop hybridization with the closely related species P. cuspidata, and previous research suggests differential expression of a R2R3-Myb transcription factor underlies this phenotypic transition. Using gene-silencing experiments, we demonstrate expression of this transcription factor does control variation in flower color intensity. We then apply association mapping across a large genomic region flanking the R2R3-Myb gene and identified a point mutation within the genes promoter that is highly associated with flower color intensity in nature. Alleles at this mutation site match the expected patterns of dominance, create variation in predicted cis-regulatory motifs within the R2R3-Myb proximal promoter, and occur in the direction of evolution predicted for flower color variation in this system. By identifying the mutational basis of reinforcement in this system we demonstrate that, as predicted by theory, reproductive isolation can evolve despite gene flow through a very simple genetic basis.

evolutionary biology↗

Phylogenomic patterns of divergence and gene flow detail the evolution of reinforcement and hybrid speciation in Phlox wildflowers

SO_SCPLOWUMMARYC_SCPLOWO_LIThe tree of life is riddled with reticulate evolutionary histories, and some clades, such as the eastern standing Phlox, appear to be hotspots of hybridization. In this group there are two cases of reinforcement and nine hypothesized hybrid species. Given the historical importance of this group for our understanding of plant speciation, the relationships of these taxa and the role of hybridization and gene flow in their diversification require genomic validation. C_LIO_LIUsing phylogenomic analyses, we resolve the evolutionary relationships of the eastern standing Phlox and test hypotheses about if and how hybridization and gene flow were creative forces in their diversification. C_LIO_LIOur results provide novel resolution of the phylogenetic relationships in this group, including well-supported paraphyly across some species. We identify gene flow during one of two cases of reinforcement and find support for one of the five hypothesized homoploid hybrid speciation events. Additionally, we infer the ancestries of four allotetraploid hybrid species. C_LIO_LIHybridization has contributed to diverse evolutionary outcomes within this Phlox group; although, not as extensively as previously hypothesized. This study demonstrates the importance of phylogenomics in confirming hypothesized histories of non-model systems and adds to the growing evidence of interspecific genetic exchange in the generation of biodiversity. C_LI

evolutionary biology↗