Island-wide population genomic analysis of the coastal shrub, beach naupaka ( Scaevola taccada L.), on Oʻahu
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ID: 327561
2026
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Abstract
Abstract Plant species face myriad threats to their survival, including climate change and habitat destruction. On Oʻahu in Hawaiʻi, Scaevola taccada L., a coastal dune shrub, is highly impacted by human activities and environmental threats. Despite its ubiquity across Pacific islands, the extent and distribution of genetic diversity within individual islands is unclear. We surveyed genomic diversity using double digest restriction associated DNA sequencing (ddRAD-seq) in eight populations of S. taccada on Oʻahu. Using principal components (PCA) and STRUCTURE analyses, we assessed whether genetic diversity was structured geographically and the extent to which selection and migration structured genetic diversity. We analyzed climate and leaf thickness data to understand how patterns of genetic diversity were correlated with environmental and trait variation. Our analyses pointed to a trend in which populations in protected areas were genetically differentiated from, and harbored less genetic diversity than, human dominated areas. Analyses of genetic structure indicated that western beach populations were differentiated from eastern beach populations. FST outlier analyses suggest that selection is not primarily responsible for the differentiation seen between the protected populations and the human dominated areas. Our results demonstrate that S. taccada populations in protected natural areas harbored unique genetic variation compared to human dominated beach parks, but that protected populations also had significantly reduced genetic variation compared to most other populations. Relatively few FST outliers, paired with evidence of continued gene flow, suggests that current levels of genetic diversity are more a function of isolation and drift as opposed to selection.
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| Authors | Edward V. McAssey, Erika R. Moore‐Pollard, Cassidy Downs, Karolina Heyduk |
| Journal | AoB PLANTS |
| Year | 2026 |
| DOI |
10.1093/aobpla/plag042
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| URL | |
| Keywords | Keywords not found |
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