Use of pigmented fungi as additives in aquaculture

IF 2.2 3区 农林科学 Q2 FISHERIES
Christina Zantioti, Arkadios Dimitroglou, Konstantinos C. Mountzouris, Helen Miliou, Emmanouil E. Malandrakis
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Abstract

Lately, the need for a shift towards more sustainable aquaculture practices has become essential to ensure the industry’s long-term viability. While the cost of raw materials remains high, policymakers also highlight the need to reduce aquaculture’s environmental footprint. Thus, a way to overcome this is to replace marine-derived aquafeed ingredients with more economical and environmentally friendly alternatives. Pigment-producing yeasts and fungi emerge as potential nutritional solutions with multiple possibilities for enhancing fish pigmentation, growth, and overall health simultaneously. Existing studies have dealt with aspects of pigmented yeasts and fungi applications in aquaculture. However, further research is needed to fully understand their exact routes of action on fish health, production efficiency, and immune function. This review addresses the underexplored potential of pigmented yeasts and fungi in aquaculture. It delves into their benefits, mechanisms of pigment synthesis, and their effects on various aspects of fish physiology, including growth parameters, lipid metabolism, reproduction capacity, pigmentation (colouration), blood biochemical parameters, antioxidant activity, and immunological responses. Finally, the review will address the need to optimize the production processes yield of pigmented yeasts and fungi for effective use in aquafeeds. Still, it will also deal with possible limitations related to their use as additives in aquafeeds.

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来源期刊
Aquaculture International
Aquaculture International 农林科学-渔业
CiteScore
5.10
自引率
6.90%
发文量
204
审稿时长
1.0 months
期刊介绍: Aquaculture International is an international journal publishing original research papers, short communications, technical notes and review papers on all aspects of aquaculture. The Journal covers topics such as the biology, physiology, pathology and genetics of cultured fish, crustaceans, molluscs and plants, especially new species; water quality of supply systems, fluctuations in water quality within farms and the environmental impacts of aquacultural operations; nutrition, feeding and stocking practices, especially as they affect the health and growth rates of cultured species; sustainable production techniques; bioengineering studies on the design and management of offshore and land-based systems; the improvement of quality and marketing of farmed products; sociological and societal impacts of aquaculture, and more. This is the official Journal of the European Aquaculture Society.
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