Literature DB >> 21639053

Fish farms, parasites, and predators: implications for salmon population dynamics.

Martin Krkosek1, Brendan M Connors, Helen Ford, Stephanie Peacock, Paul Mages, Jennifer S Ford, Alexandra Morton, John P Volpe, Ray Hilborn, Lawrence M Dill, Mark A Lewis.   

Abstract

For some salmon populations, the individual and population effects of sea lice (Lepeophtheirus salmonis) transmission from sea cage salmon farms is probably mediated by predation, which is a primary natural source of mortality of juvenile salmon. We examined how sea lice infestation affects predation risk and mortality of juvenile pink (Oncorhynchus gorbuscha) and chum (O. keta) salmon, and developed a mathematical model to assess the implications for population dynamics and conservation. A risk-taking experiment indicated that infected juvenile pink salmon accept a higher predation risk in order to obtain foraging opportunities. In a schooling experiment with juvenile chum salmon, infected individuals had increased nearest-neighbor distances and occupied peripheral positions in the school. Prey selection experiments with cutthroat trout (O. clarkii) predators indicated that infection reduces the ability of juvenile pink salmon to evade a predatory strike. Group predation experiments with coho salmon (O. kisutch) feeding on juvenile pink or chum salmon indicated that predators selectively consume infected prey. The experimental results indicate that lice may increase the rate of prey capture but not the handling time of a predator. Based on this result, we developed a mathematical model of sea lice and salmon population dynamics in which parasitism affects the attack rate in a type II functional response. Analysis of the model indicates that: (1) the estimated mortality of wild juvenile salmon due to sea lice infestation is probably higher than previously thought; (2) predation can cause a simultaneous decline in sea louse abundance on wild fish and salmon productivity that could mislead managers and regulators; and (3) compensatory mortality occurs in the saturation region of the type II functional response where prey are abundant because predators increase mortality of parasites but not overall predation rates. These findings indicate that predation is an important component of salmon-louse dynamics and has implications for estimating mortality, reducing infection, and developing conservation policy.

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Year:  2011        PMID: 21639053     DOI: 10.1890/09-1861.1

Source DB:  PubMed          Journal:  Ecol Appl        ISSN: 1051-0761            Impact factor:   4.657


  13 in total

1.  Critical thresholds in sea lice epidemics: evidence, sensitivity and subcritical estimation.

Authors:  L Neil Frazer; Alexandra Morton; Martin Krkosek
Journal:  Proc Biol Sci       Date:  2012-01-04       Impact factor: 5.349

Review 2.  Lessons from sea louse and salmon epidemiology.

Authors:  Maya L Groner; Luke A Rogers; Andrew W Bateman; Brendan M Connors; L Neil Frazer; Sean C Godwin; Martin Krkošek; Mark A Lewis; Stephanie J Peacock; Erin E Rees; Crawford W Revie; Ulrike E Schlägel
Journal:  Philos Trans R Soc Lond B Biol Sci       Date:  2016-03-05       Impact factor: 6.237

3.  Infection dynamics in frog populations with different histories of decline caused by a deadly disease.

Authors:  Sarah J Sapsford; Maarten J Voordouw; Ross A Alford; Lin Schwarzkopf
Journal:  Oecologia       Date:  2015-08-21       Impact factor: 3.225

4.  Effects of parasites from salmon farms on productivity of wild salmon.

Authors:  Martin Krkosek; Brendan M Connors; Alexandra Morton; Mark A Lewis; Lawrence M Dill; Ray Hilborn
Journal:  Proc Natl Acad Sci U S A       Date:  2011-08-22       Impact factor: 11.205

5.  Predation shifts coevolution toward higher host contact rate and parasite virulence.

Authors:  Jason C Walsman; Clayton E Cressler
Journal:  Proc Biol Sci       Date:  2022-07-13       Impact factor: 5.530

6.  Non-native parasite enhances susceptibility of host to native predators.

Authors:  Alyssa-Lois M Gehman; James E Byers
Journal:  Oecologia       Date:  2016-12-09       Impact factor: 3.225

7.  Impact of parasites on salmon recruitment in the Northeast Atlantic Ocean.

Authors:  Martin Krkosek; Crawford W Revie; Patrick G Gargan; Ove T Skilbrei; Bengt Finstad; Christopher D Todd
Journal:  Proc Biol Sci       Date:  2012-11-07       Impact factor: 5.349

8.  Sea louse infection of juvenile sockeye salmon in relation to marine salmon farms on Canada's west coast.

Authors:  Michael H H Price; Stan L Proboszcz; Rick D Routledge; Allen S Gottesfeld; Craig Orr; John D Reynolds
Journal:  PLoS One       Date:  2011-02-09       Impact factor: 3.240

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

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
Journal:  PLoS One       Date:  2013-04-05       Impact factor: 3.240

10.  Disease resistance in Atlantic salmon (Salmo salar): coinfection of the intracellular bacterial pathogen Piscirickettsia salmonis and the sea louse Caligus rogercresseyi.

Authors:  Jean Paul Lhorente; José A Gallardo; Beatriz Villanueva; María J Carabaño; Roberto Neira
Journal:  PLoS One       Date:  2014-04-15       Impact factor: 3.240

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