Impacts of climate change on aquaculture

Воздействие изменения климата на аквакультуру
Catherine Collins, Eileen Bresnan, Lyndsay Brown, Lynne Falconer, James Guilder, Laurence Jones, Adam Kennerley, Shelagh K. Malham, Alexander G. Murray, Michele S. Stanley
2020-01-01

AquacultureAtlantic salmonClimate changeHarmful algal bloomsSea lice
Aquaculture is a significant industry in UK coastal waters, with annual turnover valued at more than £1.8bn. It particularly important in western and northern Scotland. • Aquaculture is sensitive to the marine environment and changes therein. • The dominant contribution of a single species (Atlantic salmon) to production tonnage and value potentially increases vulnerability to climate change. • Temperature increase is expected to increase growth rates for most species farmed. • Increased problems associated with some diseases and parasites, notably sea lice and gill disease (which has emerged as a serious problem), are likely to increase in the short term and to get worse in the longer term. Impacts may be synergistic. • Harmful Algal Blooms (HABs) and jellyfish swarms/invasions may also get worse, however complex ecosystem interactions make responses uncertain. • The situation for shellfish is similar to finfish, although they are additionally at risk of accumulation of toxins from HABs, and recruitment failure, and, in the longer term, to sea-level rises and ocean acidification. • Technical and management changes in the rapidly evolving aquaculture industry make long-term impacts of climate change difficult to forecast.
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Climate change may intensify harmful algal blooms and jellyfish events, with potentially synergistic impacts, although complex ecosystem interactions create substantial uncertainty.
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Rising temperatures are expected to increase growth rates for most farmed species, but disease and parasite problems—especially sea lice and gill disease—are likely to worsen.
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Shellfish face additional risks from harmful-algal-bloom toxins, recruitment failure, sea-level rise, and ocean acidification; evolving technology and management complicate long-term projections.
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The dominance of Atlantic salmon in production volume and value may increase the sector’s vulnerability to climate change.
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UK aquaculture, valued at more than £1.8bn annually, is especially important in western and northern Scotland and highly sensitive to marine environmental change.

UK coastal aquaculture, particularly Atlantic salmon and shellfish farming in Scotland

The impacts of climate change on aquaculture production, including growth, disease and parasite risks, harmful algal blooms, jellyfish events, toxin accumulation, recruitment failure, sea-level rise, and ocean acidification

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Publication Date
2020-01-01
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Authors
Catherine Collins
Eileen Bresnan
Lyndsay Brown
Lynne Falconer
James Guilder
Laurence Jones
Adam Kennerley
Shelagh K. Malham
Alexander G. Murray
Michele S. Stanley
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