Linking Juvenile Habitat Utilization to Population Dynamics of California Halibut
We investigated the nursery role of four coastal ecosystems for the California halibut ("Paralichthys californicus") using the following metrics: (1) contribution in producing the fish that advance to older age classes, (2) connectivity of coastal systems resulting from migration of fish f...
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Veröffentlicht in: | Limnology and oceanography 2008-03, Vol.53 (2), p.799-812 |
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Format: | Artikel |
Sprache: | eng |
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Zusammenfassung: | We investigated the nursery role of four coastal ecosystems for the California halibut ("Paralichthys californicus") using the following metrics: (1) contribution in producing the fish that advance to older age classes, (2) connectivity of coastal systems resulting from migration of fish from juvenile to subadult habitats, and (3) effect of nursery habitat usage and availability on subadult population size, specifically evaluating the concentration hypothesis. Potential nurseries were grouped using a robust classification scheme that segregated exposed, bay, lagoon, and estuarine environments. Assignment of nursery origins for individual subadult fish via elemental fingerprinting indicated that exposed coasts, bays, lagoons, and estuaries contributed 31%, 65%, 1%, and 3% of advancing juvenile halibut during 2003, versus 49%, 33%, 16%, and 2% during 2004, respectively. These results were remarkably similar to "expected" nursery contributions derived from field surveys, suggesting that in this system juvenile distributions were a good indicator of unit-area productivity of juvenile habitats and that density- dependent mechanisms during the juvenile phase did not regulate recruitment pulses. Elemental fingerprinting also demonstrated that individuals egressing from bays did not migrate far from their nursery origins ( |
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ISSN: | 0024-3590 1939-5590 |
DOI: | 10.4319/lo.2008.53.2.0799 |