Modeling parasite dynamics on farmed salmon for precautionary conservation management of wild salmon.

Conservation management of wild fish may include fish health management in sympatric populations of domesticated fish in aquaculture. We developed a mathematical model for the population dynamics of parasitic sea lice (Lepeophtheirus salmonis) on domesticated populations of Atlantic salmon (Salmo sa...

Full description

Bibliographic Details
Main Authors: Luke A Rogers, Stephanie J Peacock, Peter McKenzie, Sharon DeDominicis, Simon R M Jones, Peter Chandler, Michael G G Foreman, Crawford W Revie, Martin Krkošek
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2013-01-01
Series:PLoS ONE
Online Access:https://www.ncbi.nlm.nih.gov/pmc/articles/pmid/23577082/?tool=EBI
id doaj-37d3a4ecd31c433c870acec374b181c4
record_format Article
spelling doaj-37d3a4ecd31c433c870acec374b181c42021-03-03T23:30:13ZengPublic Library of Science (PLoS)PLoS ONE1932-62032013-01-0184e6009610.1371/journal.pone.0060096Modeling parasite dynamics on farmed salmon for precautionary conservation management of wild salmon.Luke A RogersStephanie J PeacockPeter McKenzieSharon DeDominicisSimon R M JonesPeter ChandlerMichael G G ForemanCrawford W RevieMartin KrkošekConservation management of wild fish may include fish health management in sympatric populations of domesticated fish in aquaculture. We developed a mathematical model for the population dynamics of parasitic sea lice (Lepeophtheirus salmonis) on domesticated populations of Atlantic salmon (Salmo salar) in the Broughton Archipelago region of British Columbia. The model was fit to a seven-year dataset of monthly sea louse counts on farms in the area to estimate population growth rates in relation to abiotic factors (temperature and salinity), local host density (measured as cohort surface area), and the use of a parasiticide, emamectin benzoate, on farms. We then used the model to evaluate management scenarios in relation to policy guidelines that seek to keep motile louse abundance below an average three per farmed salmon during the March-June juvenile wild Pacific salmon (Oncorhynchus spp.) migration. Abiotic factors mediated the duration of effectiveness of parasiticide treatments, and results suggest treatment of farmed salmon conducted in January or early February minimized average louse abundance per farmed salmon during the juvenile wild salmon migration. Adapting the management of parasites on farmed salmon according to migrations of wild salmon may therefore provide a precautionary approach to conserving wild salmon populations in salmon farming regions.https://www.ncbi.nlm.nih.gov/pmc/articles/pmid/23577082/?tool=EBI
collection DOAJ
language English
format Article
sources DOAJ
author Luke A Rogers
Stephanie J Peacock
Peter McKenzie
Sharon DeDominicis
Simon R M Jones
Peter Chandler
Michael G G Foreman
Crawford W Revie
Martin Krkošek
spellingShingle Luke A Rogers
Stephanie J Peacock
Peter McKenzie
Sharon DeDominicis
Simon R M Jones
Peter Chandler
Michael G G Foreman
Crawford W Revie
Martin Krkošek
Modeling parasite dynamics on farmed salmon for precautionary conservation management of wild salmon.
PLoS ONE
author_facet Luke A Rogers
Stephanie J Peacock
Peter McKenzie
Sharon DeDominicis
Simon R M Jones
Peter Chandler
Michael G G Foreman
Crawford W Revie
Martin Krkošek
author_sort Luke A Rogers
title Modeling parasite dynamics on farmed salmon for precautionary conservation management of wild salmon.
title_short Modeling parasite dynamics on farmed salmon for precautionary conservation management of wild salmon.
title_full Modeling parasite dynamics on farmed salmon for precautionary conservation management of wild salmon.
title_fullStr Modeling parasite dynamics on farmed salmon for precautionary conservation management of wild salmon.
title_full_unstemmed Modeling parasite dynamics on farmed salmon for precautionary conservation management of wild salmon.
title_sort modeling parasite dynamics on farmed salmon for precautionary conservation management of wild salmon.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2013-01-01
description Conservation management of wild fish may include fish health management in sympatric populations of domesticated fish in aquaculture. We developed a mathematical model for the population dynamics of parasitic sea lice (Lepeophtheirus salmonis) on domesticated populations of Atlantic salmon (Salmo salar) in the Broughton Archipelago region of British Columbia. The model was fit to a seven-year dataset of monthly sea louse counts on farms in the area to estimate population growth rates in relation to abiotic factors (temperature and salinity), local host density (measured as cohort surface area), and the use of a parasiticide, emamectin benzoate, on farms. We then used the model to evaluate management scenarios in relation to policy guidelines that seek to keep motile louse abundance below an average three per farmed salmon during the March-June juvenile wild Pacific salmon (Oncorhynchus spp.) migration. Abiotic factors mediated the duration of effectiveness of parasiticide treatments, and results suggest treatment of farmed salmon conducted in January or early February minimized average louse abundance per farmed salmon during the juvenile wild salmon migration. Adapting the management of parasites on farmed salmon according to migrations of wild salmon may therefore provide a precautionary approach to conserving wild salmon populations in salmon farming regions.
url https://www.ncbi.nlm.nih.gov/pmc/articles/pmid/23577082/?tool=EBI
work_keys_str_mv AT lukearogers modelingparasitedynamicsonfarmedsalmonforprecautionaryconservationmanagementofwildsalmon
AT stephaniejpeacock modelingparasitedynamicsonfarmedsalmonforprecautionaryconservationmanagementofwildsalmon
AT petermckenzie modelingparasitedynamicsonfarmedsalmonforprecautionaryconservationmanagementofwildsalmon
AT sharondedominicis modelingparasitedynamicsonfarmedsalmonforprecautionaryconservationmanagementofwildsalmon
AT simonrmjones modelingparasitedynamicsonfarmedsalmonforprecautionaryconservationmanagementofwildsalmon
AT peterchandler modelingparasitedynamicsonfarmedsalmonforprecautionaryconservationmanagementofwildsalmon
AT michaelggforeman modelingparasitedynamicsonfarmedsalmonforprecautionaryconservationmanagementofwildsalmon
AT crawfordwrevie modelingparasitedynamicsonfarmedsalmonforprecautionaryconservationmanagementofwildsalmon
AT martinkrkosek modelingparasitedynamicsonfarmedsalmonforprecautionaryconservationmanagementofwildsalmon
_version_ 1714811508212367360