Molecular methods for the genetic identification of salmonid prey from Pacific harbor seal (Phoca vitulina richardsi) scat


Autoria(s): Purcell, Maureen; Mackey, Greg; LaHood, Eric; Huber, Harriet; Park, Linda
Data(s)

2004

Resumo

Twenty-six stocks of Pacific salmon and trout (Oncorhynchus spp.), representing evolutionary significant units (ESU), are listed as threatened or endangered under the Endangered Species Act (ESA) and six more stocks are currently being evaluated for listing. The ecological and economic consequences of these listings are large; therefore considerable effort has been made to understand and respond to these declining populations. Until recently, Pacific harbor seals (Phoca vitulina richardsi) on the west coast increased an average of 5% to 7% per year as a result of the Marine Mammal Protection Act of 1972 (Brown and Kohlman2). Pacific salmon are seasonally important prey for harbor seals (Roffe and Mate, 1984; Olesiuk, 1993); therefore quantifying and understanding the interaction between these two protected species is important for Morphobiologically sound management strategies. Because some Pacific salmonid species in a given area may be threatened or endangered, while others are relatively abundant, it is important to distinguish the species of salmonid upon which the harbor seals are preying. This study takes the first step in understanding these interactions by using molecular genetic tools for species-level identification of salmonid skeletal remains recovered from Pacific harbor seal scats.

Formato

application/pdf

Identificador

http://aquaticcommons.org/15043/1/purcell.pdf

Purcell, Maureen and Mackey, Greg and LaHood, Eric and Huber, Harriet and Park, Linda (2004) Molecular methods for the genetic identification of salmonid prey from Pacific harbor seal (Phoca vitulina richardsi) scat. Fishery Bulletin, 102(1), pp. 213-220.

Idioma(s)

en

Relação

http://aquaticcommons.org/15043/

http://fishbull.noaa.gov/1021/purcell.pdf

Palavras-Chave #Chemistry #Ecology #Fisheries
Tipo

Article

PeerReviewed