Genomic Population Structure of Atlantic surfclams: Cryptic Taxonomic Units and Population Connectivity

Genomic Population Structure of Atlantic surfclams: Cryptic Taxonomic Units and Population Connectivity

Abstract

Abstract
The Atlantic surfclam, Spisula solidissima solidissima supports multimillion dollar harvests in the western North Atlantic, including Georges Bank and Mid-Atlantic Bight populations along the continental shelf. Surfclam populations in this part of the Exclusive Economic Zone (3-200 nmi from shore) are managed as a single unit, but demographic connectivity has never been tested directly. This study analyzed >8,500 SNPs in 548 Atlantic surfclams sampled across the USA harvested range to infer population structure, genomic diversity, and gene flow patterns. Genomic analyses included eight sampled and 10 reference Spisula solidissima similis samples, a morphologically cryptic nominal subspecies previously known only from nearshore habitats. Novel morphologically cryptic population structure was identified in S.s. solidissima. One operational taxonomic unit (OTU-A) was found only in the inshore region of southern New England, south of Cape Cod. The other population unit, OTU-B, was found offshore and in Cape Cod Bay. The federal fishing grounds only had OTU-B clams. Populations within each OTU were connected by gene flow, justifying current fishery management practices. Nearshore state waters had mixed OTU stocks. Hybridization was analyzed between the two OTUs and between the two subspecies based on nuclear SNPs and asymmetrical mitochondrial DNA introgression. Finally, we demonstrated the utility of a novel SNP panel for diagnosing all three taxa and their hybrids.
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