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Future feed resources in sustainable salmonid production: A review

Authors :
Albrektsen, Sissel
Kortet, Raine
Skov, Peter Vilhelm
Ytteborg, Elisabeth
Gitlesen, Susanne
Kleinegris, Dorinde
Mydland, Liv‐Torunn
Hansen, Jon Øvrum
Lock, Erik‐Jan
Mørkøre, Turid
James, Philip
Wang, Xinxin
Whitaker, Ragnhild Dragøy
Vang, Birthe
Hatlen, Bjarne
Daneshvar, Ehsan
Bhatnagar, Amit
Jensen, Linda B.
Øverland, Margareth
Albrektsen, Sissel
Kortet, Raine
Skov, Peter Vilhelm
Ytteborg, Elisabeth
Gitlesen, Susanne
Kleinegris, Dorinde
Mydland, Liv‐Torunn
Hansen, Jon Øvrum
Lock, Erik‐Jan
Mørkøre, Turid
James, Philip
Wang, Xinxin
Whitaker, Ragnhild Dragøy
Vang, Birthe
Hatlen, Bjarne
Daneshvar, Ehsan
Bhatnagar, Amit
Jensen, Linda B.
Øverland, Margareth
Source :
Albrektsen , S , Kortet , R , Skov , P V , Ytteborg , E , Gitlesen , S , Kleinegris , D , Mydland , LT , Hansen , J Ø , Lock , EJ , Mørkøre , T , James , P , Wang , X , Whitaker , R D , Vang , B , Hatlen , B , Daneshvar , E , Bhatnagar , A , Jensen , L B & Øverland , M 2022 , ' Future feed resources in sustainable salmonid production: A review ' , Reviews in Aquaculture (Print) , vol. 14 , no. 4 , pp. 1790-1812 .
Publication Year :
2022

Abstract

Aquaculture is one of the most resource-efficient and sustainable ways to produce animal protein. The Food and Agriculture Organization predicts that cultivated aquatic species will provide around 53% of the world's seafood supply by 2030. Further growth of intensive farmed aquatic species may be limited by a shortage of feed resources. The aquaculture sector therefore needs to intensify its search for alternative ingredients based on renewable natural resources. A significant increase in production will require an accelerated transition in technology and production systems, better use of natural available resources, development of high-quality alternative feed resources and exploitation of available space. The present review discusses the urgent need to identify appropriate alternative ingredients for a sustainable future salmonid production. We describe and evaluate the most promising marine ingredients, including low-trophic species (mesopelagic fish, zooplankton, polychaetes, macroalgae and crustaceans), novel microbial ingredients (bacteria, yeast and microalgae), insects (black soldier fly, yellow meal worm and crickets), animal by-products (poultry meal, meat and bone meal, blood meal and hydrolysed feather meal) and by-products from other commercial productions (trimmings and blood). Furthermore, we discuss the available volumes and need for new processing technologies and refining methods to ensure commercial production of nutritionally healthy ingredients. The essential production steps and considerations for future development of sustainable and safe seafood production are also discussed.

Details

Database :
OAIster
Journal :
Albrektsen , S , Kortet , R , Skov , P V , Ytteborg , E , Gitlesen , S , Kleinegris , D , Mydland , LT , Hansen , J Ø , Lock , EJ , Mørkøre , T , James , P , Wang , X , Whitaker , R D , Vang , B , Hatlen , B , Daneshvar , E , Bhatnagar , A , Jensen , L B & Øverland , M 2022 , ' Future feed resources in sustainable salmonid production: A review ' , Reviews in Aquaculture (Print) , vol. 14 , no. 4 , pp. 1790-1812 .
Notes :
application/pdf, English
Publication Type :
Electronic Resource
Accession number :
edsoai.on1372615077
Document Type :
Electronic Resource