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March 28, 2026Scientific Reports0 citationsOpen Access

Stable isotope analysis suggests nutrient connectivity between salmon and kelp within a commercial scale open coast integrated multi-trophic aquaculture system

AKAmalia KrupandanLFLynne FalconerJMJulie Maguire

Key Points

  • The research aims to understand how nutrients transfer from Atlantic salmon to sugar kelp in an integrated aquaculture system.
  • Conducted fieldwork campaigns to collect kelp, water, and nutrient source samples.
  • Used stable isotope analysis for nutrient source assessment.
  • Employed a Bayesian mixing model to determine nutrient uptake by kelp.
  • Lower δ 15 N values were noted in 2024 compared to 2023.
  • Stable isotope analysis indicated nutrient transfer from salmon to kelp after salmon farming commenced.
  • Kelp growth metrics improved in 2024, including increased blade length, width, wet weight, and nitrogen content.

Abstract

Abstract This study explores nutrient connectivity between Atlantic salmon ( Salmo salar ) and sugar kelp ( Saccharina latissima ) within a commercial-scale integrated multi-trophic aquaculture (IMTA) system in Bantry Bay, Ireland. In this system the kelp farm is located next to a salmon farm that restarted production in mid-2023 following four years of no production. This allowed a comparison between baseline conditions at the same site during a kelp-only production season in 2023, prior to salmon farming, and a salmon-kelp production season in 2024. Fieldwork campaigns were conducted during each year to collect samples of kelp, water, and proxy nutrient sources (fish feed, faeces, particulates, seaweeds). Stable isotope analysis and a Bayesian mixing model were used to assess uptake of nutrient sources by the kelp. The δ 15 N values differed between the study period of each year, with consistently lower δ 15 N values observed during 2024. Mixing model estimates showed a pronounced shift after salmon farming commenced. Comparative growth data between years revealed increases in kelp blade length, width, wet weight, and tissue nitrogen content during 2024. The findings suggest nutrient transfer from salmon farming to the kelp, with stable isotope analysis serving as a complementary method to growth and water sampling for determining nutrient connectivity.

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Cite This Study

Krupandan et al. (2026) studied this question.

synapsesocial.com/papers/69c771688bbfbc51511e1466https://doi.org/10.1038/s41598-026-45539-5
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