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Article

Within-Reef and Within-Creek Relatedness Contributes to Fine-Scale Population Structure in Oysters Along the Georgia Coast

Department of Biology, Georgia Southern University, Statesboro, GA 30460, USA
*
Author to whom correspondence should be addressed.
This manuscript is part of Master theses by the authors Sarah Batchelor and Jessica Watts. Master Program in Biology at Georgia Southern University.
Fishes 2026, 11(3), 154; https://doi.org/10.3390/fishes11030154
Submission received: 30 January 2026 / Revised: 28 February 2026 / Accepted: 4 March 2026 / Published: 7 March 2026
(This article belongs to the Special Issue Biology and Culture of Marine Invertebrates)

Abstract

Marine species with high fecundity and larvae with long-distance dispersal potential can have complex population genetic patterns. Characterizing population structure in these species is important for understanding their ecology and life history and designing management strategies. The eastern oyster (Crassostrea virginica) is both ecologically and economically important but has experienced recent population declines. Characterizing genetic variation in regional C. virginica populations will contribute to conservation and restoration practices. We used 20 nuclear microsatellite loci to examine genetic diversity, population structure, and kinship within and among wild oyster populations in coastal Georgia. Oysters were sampled from multiple fringe reefs within a single tidal creek and from four estuarine creeks spanning approximately 115 km of coastline. Genetic diversity was high across all sites, but modest yet significant population structure was detected at both local and regional scales. Within a single creek, significant genetic differentiation was observed among reefs separated by only a few kilometers. Kinship analyses revealed significantly higher relatedness within reefs and within creeks than among locations relative to random expectations. These results indicate that regional coastal dynamics, kin aggregation, local retention, and sweepstakes reproductive success contribute to fine-scale genetic structure despite high dispersal potential. Our findings suggest that accounting for local retention is important when designing oyster restoration, broodstock selection, and management strategies in dynamic estuarine and coastal environments.
Keywords: eastern oyster; Crassostrea virginica; population structure; genetic variation; kinship; sweepstakes success eastern oyster; Crassostrea virginica; population structure; genetic variation; kinship; sweepstakes success

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MDPI and ACS Style

Harrison, J.S.; Batchelor, S.; Watts, J.C.; Carroll, J.M. Within-Reef and Within-Creek Relatedness Contributes to Fine-Scale Population Structure in Oysters Along the Georgia Coast. Fishes 2026, 11, 154. https://doi.org/10.3390/fishes11030154

AMA Style

Harrison JS, Batchelor S, Watts JC, Carroll JM. Within-Reef and Within-Creek Relatedness Contributes to Fine-Scale Population Structure in Oysters Along the Georgia Coast. Fishes. 2026; 11(3):154. https://doi.org/10.3390/fishes11030154

Chicago/Turabian Style

Harrison, J. Scott, Sarah Batchelor, Jessica C. Watts, and John M. Carroll. 2026. "Within-Reef and Within-Creek Relatedness Contributes to Fine-Scale Population Structure in Oysters Along the Georgia Coast" Fishes 11, no. 3: 154. https://doi.org/10.3390/fishes11030154

APA Style

Harrison, J. S., Batchelor, S., Watts, J. C., & Carroll, J. M. (2026). Within-Reef and Within-Creek Relatedness Contributes to Fine-Scale Population Structure in Oysters Along the Georgia Coast. Fishes, 11(3), 154. https://doi.org/10.3390/fishes11030154

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