Evaluating Genetic Diversity Associated with Propagation‐Assisted Restoration of American Shad
- 1 February 2000
- journal article
- research article
- Published by Wiley in Conservation Biology
- Vol. 14 (1) , 294-303
- https://doi.org/10.1046/j.1523-1739.2000.98165.x
Abstract
We investigated the conservation of genetic diversity during a restoration program for American shad (Alosa sapidissima) in Virginia ( U.S.A.). Restoration entailed capture of wild Pamunkey River shad broodstock followed by production and release of hatchery‐reared fry to supplement the nearly extinct James River shad population. To assess the baseline genetic diversity of donor and recipient populations, we used five tri‐ and tetra‐nucleotide microsatellite loci to test for genetic heterogeneity among yearly subsamples from both rivers and between early‐ and late‐spawning shad from the donor population. Tests for allelic heterogeneity between James River and Pamunkey shad subsamples yielded no significant genetic differentiation (χ 2 = 14.72, p = 0.132 and χ 2 = 10.24, p = 0.440, respectively). We detected no significant genetic divergence between early‐ and late‐spawning adults in Pamunkey River spawning aggregations in either year. The donor and recipient populations exhibited significant genetic differentiation (χ 2 = 27.4, p = 0.003), however, indicating that the stocking program carries a risk of outbreeding depression. Because the two river populations are genetically divergent, replenishment of the James population with Pamunkey fry may be detectable in the future as heterozygote deficits and linkage disequilibria in the James River population. In an analysis of broodstock and their hatchery‐reared progeny, microsatellites proved efficient for family analysis, unambiguously determining the parentage of 100% of the hatchery‐reared fry studied. Genetic analysis indicated that breeding procedures may result in high levels of reproductive variance.Keywords
This publication has 24 references indexed in Scilit:
- Contribution of Marine-Derived Organic Matter to an Atlantic Coast, Freshwater, Tidal Stream by Anadromous Clupeid FishesJournal of the North American Benthological Society, 1998
- Temporal stability of mtDNA haplotype frequencies in American shad stocks: to pool or not to pool across years?Canadian Journal of Fisheries and Aquatic Sciences, 1996
- DNA fingerprinting of bluegill sunfish (Lepomis macrochirus) using (GT)n microsatellites and its potential for assessment of mating successCanadian Journal of Fisheries and Aquatic Sciences, 1996
- The evolving technology of DNA fingerprinting and its application to fisheries and aquacultureJournal of Fish Biology, 1995
- Mitochondrial DNA Variation among Lake Trout (Salvelinus namaycush) Strains Stocked into Lake OntarioCanadian Journal of Fisheries and Aquatic Sciences, 1993
- Fate and Potential Significance of Postspawning Anadromous Fish Carcasses in an Atlantic Coastal RiverTransactions of the American Fisheries Society, 1992
- Mitochondrial DNA Polymorphism, Population Structure, and Life History Variation in American Shad (Alosa sapidissima)Canadian Journal of Fisheries and Aquatic Sciences, 1989
- Genetic consequences of fertilizing chinook salmon (Oncorhynchus tshawytscha) eggs with pooled miltAquaculture, 1988
- Family Size and Effective Population Size in a Hatchery Stock of Coho Salmon (Oncorhynchus kisutch)Canadian Journal of Fisheries and Aquatic Sciences, 1986
- Fidelity of American Shad, Alosa sapidissima (Gupeidae), to its River of Previous SpawningCanadian Journal of Fisheries and Aquatic Sciences, 1986