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Defatted black soldier fly () in pikeperch () diets: Effects on growth performance, nutrient digestibility, fillet quality, economic and environmental sustainability. | LitMetric

AI Article Synopsis

  • The study explores the potential of replacing fishmeal with defatted black soldier fly meal in pikeperch aquafeeds, assessing its effects on growth, nutrient digestibility, fillet quality, and sustainability over an 84-day trial.
  • Results showed that pikeperch fed diets with lower inclusion of insect meal (H0, H9, H18) performed better in growth, while H18 had lower organ-somatic indices, indicating variations in health metrics between groups.
  • The inclusion of insect meal negatively impacted nutrient digestibility and fish fillet quality, especially reducing n-3 fatty acids while increasing n-6 fatty acids, but concurrently lowered the environmental footprint of fish farming.

Article Abstract

The use of insect meal in aquafeed formulations has recently gained attention. Detailed knowledge about the inclusion levels for pikeperch (), a promising candidate for intensive aquaculture in Europe remains, however, fragmented. In the present study, 4 isoproteic (45% dry matter) and isoenergetic (21 MJ/kg) diets were formulated, including a control diet (H0) containing 30% fishmeal (FM) on an as-fed basis and the other 3 diets in which FM protein was replaced by defatted black soldier fly () meal (HIM) at 25%, 50%, and 100% (diet abbreviation H9, H18 and H36, corresponding to an inclusion level of 9%, 18% and 36%, respectively). The feeding trial was performed in triplicate groups of 50 juvenile pikeperch (mean weight, 68.7 g) fed with experimental diets for 84 d during which the growth performance, nutrient digestibility, fillet quality and economic and environmental sustainability of rearing pikeperch were evaluated. Our findings indicated that pikeperch in H0, H9, and H18 groups displayed better results regarding growth performance indices, except for survival rate where no significant difference among groups was recorded ( = 0.642). A significantly lower organ-somatic index, including hepatosomatic, viscerosomatic and perivisceral fat index, was found in fish in H18 groups than other groups ( < 0.05). Inclusion of HIM affected the digestibility of the nutrients and resulted in an almost linear reduction in the apparent digestibility coefficient of dry matter and protein. Concerning the fillet quality, dietary HIM negatively affected the protein and ash contents of the fish fillets, while the crude fat remained unchanged. Dietary HIM did not significantly modify total saturated, monounsaturated and polyunsaturated fatty acids in the fillets of fed pikeperch ( > 0.05) but did reduce total n-3 fatty acids ( = 0.001) and increased total n-6 ( < 0.001). Increasing inclusion levels of HIM reduced the environmental impacts associated with fish in-to-fish out ratio but entailed heavy burdens on energy use and eutrophication. Low and moderate inclusion levels of HIM did not negatively affect land use and water use compared to an HIM-free diet ( > 0.05). The addition of HIM at a level as low as 9% elicited a similar carbon footprint to that of the control diet. The economic conversion ratio and economic profit index were negatively affected at increased insect meal inclusion levels. This study has shown that the incorporation of HIM in feed formulations for pikeperch is feasible at inclusion levels of 18% without adverse effects on growth performance parameters. The feasibility also highlighted the environmental benefits associated with land use and marine resources required to produce farmed fish.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC9633741PMC
http://dx.doi.org/10.1016/j.aninu.2022.06.022DOI Listing

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