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Restocking, Stock Enhancement and Sea Ranching Systems and Their Role in Fisheries Management

Application of Larval Release for Restocking and Stock Enhancement of Coastal Marine Bivalve Populations

Pages 65-71 | Published online: 10 Oct 2008
 

Abstract

The coastal zone in the United States and in other areas worldwide is under increasing stress from human population growth and associated development, and that stress extends to the animal populations that occupy coastal habitats. Considerable effort is being expended to restore the habitats and animals that characterize this biome. I herein describe historic and recent developments regarding the application of the larval release approach to marine animal population restocking efforts. Beginning with cod (Gadus morhua) larvae in the late 1800s, the larval form has been exploited for restocking of various fish and invertebrate species with mixed results. Success has been elusive when working with cod and hard clams (Mercenaria spp.), but efforts using striped bass (Morone saxatilis), abalone (Haliotis spp.), and most recently bay scallops (Argopecten irradians) have been at least partially successful. In the case of bay scallops, competent (ready-to-settle) larvae released into containment enclosures were tracked through the post-settlement, juvenile, and adult life stages. That sampling scheme provided evidence that the released larvae ultimately contributed to a substantial increase in the subsequent year-class. However, those results are equivocal, and rigorous genetic sampling will be required to fully document the linkage between larval release and subsequent year-class strength. It is concluded that larval release, while not suitable for all species in all situations, may be an effective strategy for rebuilding marine animal populations.

ACKNOWLEDGMENTS

Thanks to Carla Beals, Janessa Cobb, Steve Geiger, Jaime Greenawalt, Beth Irlandi, Jay Leverone, Melanie Parker, Sarah Peters, and a host of volunteers, students, and researchers for their many contributions to the efforts described herein. Special thanks go to the commercial hard clam fishermen of Brevard County, Florida, whose interest and financial support provided the seed for these studies. Additional financial support has been provided by Florida Sea Grant (Project Number R/LR-A-28A), the Charlotte Harbor National Estuary Program (Mote Marine Laboratory Project Number 321), and the Florida Fish and Wildlife Conservation Commission via Florida Saltwater Fishing License fees.

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