The spread of salmon lice (Lepeophtheirus salmonis Krøyer) from Norwegian fish farms and their impact on sea trout (Salmo trutta L.)

The transmission of salmon lice ( Lepeophtheirus salmonis Krøyer) from farm salmon to wild salmonids and the impact on wild populations are sources of intense debate in all salmon producing countries, and it is currently an issue of high political and economic relevance in Norway. Solid science-base...

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Published in:Aquaculture Environment Interactions
Main Author: Serra-Llinares, Rosa Maria
Format: Doctoral or Postdoctoral Thesis
Language:English
Published: UiT The Arctic University of Norway 2020
Subjects:
Online Access:https://hdl.handle.net/10037/19473
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author Serra-Llinares, Rosa Maria
author_facet Serra-Llinares, Rosa Maria
author_sort Serra-Llinares, Rosa Maria
collection University of Tromsø: Munin Open Research Archive
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container_title Aquaculture Environment Interactions
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description The transmission of salmon lice ( Lepeophtheirus salmonis Krøyer) from farm salmon to wild salmonids and the impact on wild populations are sources of intense debate in all salmon producing countries, and it is currently an issue of high political and economic relevance in Norway. Solid science-based evidence is therefore needed by decision makers to apply sound management strategies. Given the complexity of the systems, coupled with methodological challenges, the causal relation between the in-farm production of lice and increased lice abundances on wild salmonids have been difficult to demonstrate. In this thesis, mean salmon lice abundances on sea trout ( Salmo trutta L.) were shown to be directly correlated with the estimated number of lice emanating from nearby fish farms. Although temperature was found to also have an impact on lice epidemiology on both farmed and wild fish, temperature alone could not explain the high numbers of lice parasitizing sea trout in areas were farmed and wild fish coexist in close vicinity. This corroborates the hypothesis that salmon farms act as a main source of lice for sea trout in aquaculture-intensive areas in Norway, even after the effect of temperature has been accounted for. These conclusions were drawn based on the statistical analysis of a large and comprehensive data set combining information on standing stock and mean lice abundances on farmed fish from Norwegian salmon farms, together with observations of lice infestations on wild sea trout collected all along the Norwegian coast between 2010 and 2011. In combination, these two large and comprehensive data sets provided a unique opportunity to investigate the role of salmon farms as a source of lice for local sea trout populations. Moreover, results from this thesis suggest that the Norwegian National Salmon Fjords, i.e. protected areas subjected to strict limitations on aquaculture activities, can effectively protect wild salmonids against infestations with lice of farm origin, but only if the size and configuration of the protected area is adequate. Lice abundances on sea trout caught inside large National Salmon Fjords were found to be consistently low over time and are assumed to represent natural levels. Lice infestations on sea trout caught inside smaller National Salmon Fjords, on the contrary, showed large variation between years, oscillating in accordance with the variations in stocked biomass in the surrounding farms. Lice prevalence and intensities in these areas occasionally matched and even exceed those previously reported in areas of intensive farming in Norway. These results suggest that the production and transport of planktonic lice larvae from farms situated outside the limits of the protected areas might still be an important source of lice for local populations of sea trout. Although individual studies for each National Salmon Fjord may be necessary to evaluate the degree of protection, one can expect that the capacities of the smallest fjords for preventing the transmission of lice from farm salmon to wild fish are probably limited, and it is reasonable to assume that the protection of large areas contributes best to the protection of wild salmonids. The optimal design will in any case depend on the target species: while sea trout may benefit from the establishment of a local protected area covering their marine home range, the protection of Atlantic salmon may require the protection of entire fjords or the establishment of “clean corridors” along their migration routes. Last, this thesis delivers direct evidence of a causal relationship between salmon lice and marine mortality of sea trout in nature. Based on results from exposure field studies, combined with acoustic telemetry, this thesis shows a mortality hazard ratio of 2.7 (95% CI = 1.04−7.13) for lice-infested trout post-smolts compared to non-infested control individuals. In other words, the probability of a trout post-smolt to survive the first summer at sea was reduced by almost two-thirds when infested with a heavy lice load, although there is a big uncertainty around this estimate. These results apply to fish carrying a relative intensity of 2.4 lice g −1 , on average. Although such lice intensities are well beyond the estimated mortality-inducing threshold of 0.3 lice g −1 (Taranger et al. 2015), they are still representative of lice infestations observed on sea trout in some farm-intensive areas in Norway. Furthermore, this thesis documents an altered migration behavior of lice-infested individuals, including the abrupt interruption of the feeding migration after just a few weeks at sea and a preference for feeding areas closer to the river, in the inner part of the fjord. While control fish spent on average 100 days at sea before return, lice-infested sea trout returned to freshwater after only 18 days at sea, meaning that almost 80% of the feeding time at sea was lost because of salmon lice. This can be expected to significantly reduce marine growth and further have an impact at the population level. Studies that accurately quantify the impact of salmon lice on wild sea trout and their populations are still needed, and this thesis makes an important contribution in this direction.
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op_relation Paper I: Serra-Llinares, R.M., Bjørn, P.A., Finstad, B., Nilsen, R., Harbitz, A., Berg, M. & Asplin, L. (2014). Salmon lice infection on wild salmonids in marine protected areas: an evaluation of the Norwegian 'National Salmon Fjords'. Aquaculture Environment Interactions, 5 , 1-16. Also available at https://doi.org/10.3354/aei00090 . Paper II: Serra-Llinares, R.M., Bjørn, P.A., Finstad, B., Nilsen, R. & Asplin, L. (2016). Nearby farms are a source of lice for wild salmonids: a reply to Jansen et al. (2016). Aquaculture Environment Interactions, 8 , 351-356. Also available at https://doi.org/10.3354/aei00181 . Paper III: Serra-Llinares, R.M., Freitas, C., Nilsen, R., Elvik, K.M.S., Albretsen, J., Bøhn, T., Karlsen, Ø. & Bjørn, P.A. (2018). Towards direct evidence of the effects of salmon lice ( Lepeophtheirus salmonis Krøyer) on sea trout ( Salmo trutta L.) in their natural habitat: proof of concept for a new combination of methods. Environmental Biology of Fishes, 101 , 1677-1692. Also available at https://doi.org/10.1007/s10641-018-0816-1 . Paper IV: Serra-Llinares, R.M., Bøhn, T., Karlsen, Ø., Nilsen, R., Freitas, C., Albretsen, J., … Bjørn, P.A. (2020). Impacts of salmon lice on mortality, marine migration distance and premature return in sea trout. Marine Ecology Progress Series, 635 , 151-168. Also available at https://doi.org/10.3354/meps13199 .
978-82-8266-184-3
https://hdl.handle.net/10037/19473
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publisher UiT The Arctic University of Norway
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spelling ftunivtroemsoe:oai:munin.uit.no:10037/19473 2025-01-16T21:05:11+00:00 The spread of salmon lice (Lepeophtheirus salmonis Krøyer) from Norwegian fish farms and their impact on sea trout (Salmo trutta L.) Serra-Llinares, Rosa Maria 2020-10-09 https://hdl.handle.net/10037/19473 eng eng UiT The Arctic University of Norway UiT Norges arktiske universitet Paper I: Serra-Llinares, R.M., Bjørn, P.A., Finstad, B., Nilsen, R., Harbitz, A., Berg, M. & Asplin, L. (2014). Salmon lice infection on wild salmonids in marine protected areas: an evaluation of the Norwegian 'National Salmon Fjords'. Aquaculture Environment Interactions, 5 , 1-16. Also available at https://doi.org/10.3354/aei00090 . Paper II: Serra-Llinares, R.M., Bjørn, P.A., Finstad, B., Nilsen, R. & Asplin, L. (2016). Nearby farms are a source of lice for wild salmonids: a reply to Jansen et al. (2016). Aquaculture Environment Interactions, 8 , 351-356. Also available at https://doi.org/10.3354/aei00181 . Paper III: Serra-Llinares, R.M., Freitas, C., Nilsen, R., Elvik, K.M.S., Albretsen, J., Bøhn, T., Karlsen, Ø. & Bjørn, P.A. (2018). Towards direct evidence of the effects of salmon lice ( Lepeophtheirus salmonis Krøyer) on sea trout ( Salmo trutta L.) in their natural habitat: proof of concept for a new combination of methods. Environmental Biology of Fishes, 101 , 1677-1692. Also available at https://doi.org/10.1007/s10641-018-0816-1 . Paper IV: Serra-Llinares, R.M., Bøhn, T., Karlsen, Ø., Nilsen, R., Freitas, C., Albretsen, J., … Bjørn, P.A. (2020). Impacts of salmon lice on mortality, marine migration distance and premature return in sea trout. Marine Ecology Progress Series, 635 , 151-168. Also available at https://doi.org/10.3354/meps13199 . 978-82-8266-184-3 https://hdl.handle.net/10037/19473 openAccess Copyright 2020 The Author(s) VDP::Matematikk og Naturvitenskap: 400::Zoologiske og botaniske fag: 480::Marinbiologi: 497 VDP::Mathematics and natural science: 400::Zoology and botany: 480::Marine biology: 497 DOKTOR-002 Doctoral thesis Doktorgradsavhandling 2020 ftunivtroemsoe 2021-06-25T17:57:43Z The transmission of salmon lice ( Lepeophtheirus salmonis Krøyer) from farm salmon to wild salmonids and the impact on wild populations are sources of intense debate in all salmon producing countries, and it is currently an issue of high political and economic relevance in Norway. Solid science-based evidence is therefore needed by decision makers to apply sound management strategies. Given the complexity of the systems, coupled with methodological challenges, the causal relation between the in-farm production of lice and increased lice abundances on wild salmonids have been difficult to demonstrate. In this thesis, mean salmon lice abundances on sea trout ( Salmo trutta L.) were shown to be directly correlated with the estimated number of lice emanating from nearby fish farms. Although temperature was found to also have an impact on lice epidemiology on both farmed and wild fish, temperature alone could not explain the high numbers of lice parasitizing sea trout in areas were farmed and wild fish coexist in close vicinity. This corroborates the hypothesis that salmon farms act as a main source of lice for sea trout in aquaculture-intensive areas in Norway, even after the effect of temperature has been accounted for. These conclusions were drawn based on the statistical analysis of a large and comprehensive data set combining information on standing stock and mean lice abundances on farmed fish from Norwegian salmon farms, together with observations of lice infestations on wild sea trout collected all along the Norwegian coast between 2010 and 2011. In combination, these two large and comprehensive data sets provided a unique opportunity to investigate the role of salmon farms as a source of lice for local sea trout populations. Moreover, results from this thesis suggest that the Norwegian National Salmon Fjords, i.e. protected areas subjected to strict limitations on aquaculture activities, can effectively protect wild salmonids against infestations with lice of farm origin, but only if the size and configuration of the protected area is adequate. Lice abundances on sea trout caught inside large National Salmon Fjords were found to be consistently low over time and are assumed to represent natural levels. Lice infestations on sea trout caught inside smaller National Salmon Fjords, on the contrary, showed large variation between years, oscillating in accordance with the variations in stocked biomass in the surrounding farms. Lice prevalence and intensities in these areas occasionally matched and even exceed those previously reported in areas of intensive farming in Norway. These results suggest that the production and transport of planktonic lice larvae from farms situated outside the limits of the protected areas might still be an important source of lice for local populations of sea trout. Although individual studies for each National Salmon Fjord may be necessary to evaluate the degree of protection, one can expect that the capacities of the smallest fjords for preventing the transmission of lice from farm salmon to wild fish are probably limited, and it is reasonable to assume that the protection of large areas contributes best to the protection of wild salmonids. The optimal design will in any case depend on the target species: while sea trout may benefit from the establishment of a local protected area covering their marine home range, the protection of Atlantic salmon may require the protection of entire fjords or the establishment of “clean corridors” along their migration routes. Last, this thesis delivers direct evidence of a causal relationship between salmon lice and marine mortality of sea trout in nature. Based on results from exposure field studies, combined with acoustic telemetry, this thesis shows a mortality hazard ratio of 2.7 (95% CI = 1.04−7.13) for lice-infested trout post-smolts compared to non-infested control individuals. In other words, the probability of a trout post-smolt to survive the first summer at sea was reduced by almost two-thirds when infested with a heavy lice load, although there is a big uncertainty around this estimate. These results apply to fish carrying a relative intensity of 2.4 lice g −1 , on average. Although such lice intensities are well beyond the estimated mortality-inducing threshold of 0.3 lice g −1 (Taranger et al. 2015), they are still representative of lice infestations observed on sea trout in some farm-intensive areas in Norway. Furthermore, this thesis documents an altered migration behavior of lice-infested individuals, including the abrupt interruption of the feeding migration after just a few weeks at sea and a preference for feeding areas closer to the river, in the inner part of the fjord. While control fish spent on average 100 days at sea before return, lice-infested sea trout returned to freshwater after only 18 days at sea, meaning that almost 80% of the feeding time at sea was lost because of salmon lice. This can be expected to significantly reduce marine growth and further have an impact at the population level. Studies that accurately quantify the impact of salmon lice on wild sea trout and their populations are still needed, and this thesis makes an important contribution in this direction. Doctoral or Postdoctoral Thesis Atlantic salmon University of Tromsø: Munin Open Research Archive Norway Aquaculture Environment Interactions 5 1 1 16
spellingShingle VDP::Matematikk og Naturvitenskap: 400::Zoologiske og botaniske fag: 480::Marinbiologi: 497
VDP::Mathematics and natural science: 400::Zoology and botany: 480::Marine biology: 497
DOKTOR-002
Serra-Llinares, Rosa Maria
The spread of salmon lice (Lepeophtheirus salmonis Krøyer) from Norwegian fish farms and their impact on sea trout (Salmo trutta L.)
title The spread of salmon lice (Lepeophtheirus salmonis Krøyer) from Norwegian fish farms and their impact on sea trout (Salmo trutta L.)
title_full The spread of salmon lice (Lepeophtheirus salmonis Krøyer) from Norwegian fish farms and their impact on sea trout (Salmo trutta L.)
title_fullStr The spread of salmon lice (Lepeophtheirus salmonis Krøyer) from Norwegian fish farms and their impact on sea trout (Salmo trutta L.)
title_full_unstemmed The spread of salmon lice (Lepeophtheirus salmonis Krøyer) from Norwegian fish farms and their impact on sea trout (Salmo trutta L.)
title_short The spread of salmon lice (Lepeophtheirus salmonis Krøyer) from Norwegian fish farms and their impact on sea trout (Salmo trutta L.)
title_sort spread of salmon lice (lepeophtheirus salmonis krøyer) from norwegian fish farms and their impact on sea trout (salmo trutta l.)
topic VDP::Matematikk og Naturvitenskap: 400::Zoologiske og botaniske fag: 480::Marinbiologi: 497
VDP::Mathematics and natural science: 400::Zoology and botany: 480::Marine biology: 497
DOKTOR-002
topic_facet VDP::Matematikk og Naturvitenskap: 400::Zoologiske og botaniske fag: 480::Marinbiologi: 497
VDP::Mathematics and natural science: 400::Zoology and botany: 480::Marine biology: 497
DOKTOR-002
url https://hdl.handle.net/10037/19473