bioRxiv · 10.1101/574665
Genetic structure is stronger across human-impacted habitats than among islands in the coral Porites lobata
Abstract
We examined genetic structure in the lobe coral Porites lobata among pairs of highly variable and high-stress nearshore sites and adjacent less variable and less impacted offshore sites on the islands of Oahu and Maui, Hawai i. Using an analysis of molecular variance framework, we tested whether populations were more structured by geographic distance or environmental extremes. The genetic patterns we observed followed isolation by environment, where nearshore and adjacent offshore populations showed significant genetic structure at both locations (AMOVA FST = 0.04 [~] 0.19, P < 0.001), but no significant isolation by distance between islands. In contrast, a third site with a less impacted nearshore site showed no significant structure. Strikingly, corals from the two impacted nearshore sites on different islands over 100km apart with similar environmentally stressful conditions were genetically closer (FST[~] 0, P = 0.733) than those within a single location less than 2 km apart (FST= 0.041[~]0.079, P < 0.01). Our results suggest that ecological boundaries appear to play a strong role in forming genetic structure in the coastal environment, and that genetic divergence in the absence of geographical barriers to gene flow may be explained by disruptive selection across contrasting habitats.
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Tisthammer, K. H., Forsman, Z. H., Toonen, R. J., Richmond, R. H.. 2019-03-11. Genetic structure is stronger across human-impacted habitats than among islands in the coral Porites lobata. https://doi.org/10.1101/574665
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