4.4 Article

Growth-enhanced salmon modify stream ecosystem functioning

Journal

JOURNAL OF FISH BIOLOGY
Volume 99, Issue 6, Pages 1978-1989

Publisher

WILEY
DOI: 10.1111/jfb.14904

Keywords

domestication; ecosystem functioning; escapees; growth enhancement; intraspecific variability; stocking

Funding

  1. Agence Nationale Pour la Recherche (ANR) [ANR-13-EDIB-0002]
  2. BiodivERsA
  3. Research Council of Norway [235949]

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The study revealed that the introduction of growth-enhanced fish into the wild may have impacts on ecosystem functioning. Therefore, environmental impact assessments of growth-enhanced organisms should explicitly consider ecosystem-level effects.
Use of fast-growing domesticated and/or genetically modified strains of fish is becoming increasingly common in aquaculture, increasing the likelihood of deliberate or accidental introductions into the wild. To date, their ecological impacts on ecosystems remain to be quantified. Here, using a controlled phenotype manipulation by implanting growth hormone in juvenile Atlantic salmon (Salmo salar), we found that growth-enhanced fish display changes in several phenotypic traits known to be important for ecosystem functioning, such as habitat use, morphology and excretion rate. Furthermore, these phenotypic changes were associated with significant impacts on the invertebrate community and key stream ecosystem functions such as primary production and leaf-litter decomposition. These findings provide novel evidence that introductions of growth-enhanced fish into the wild can affect the functioning of natural ecosystems and represent a form of intraspecific invasion. Consequently, environmental impact assessments of growth-enhanced organisms need to explicitly consider ecosystem-level effects.

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