Scientific Reports· 2026Q1
Dietary flexibility differs between wild- and domesticated-origin Eurasian perch larvae from contrasting broodstock histories: implications for aquaculture of emerging species
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- Q1SCImago
- 2026year
Short summary
Eurasian perch larvae from wild broodstock show greater dietary flexibility with alternative protein sources (soybean, poultry meal) compared to domesticated-origin larvae, which perform best on a high-fishmeal control diet.
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Key points
- Wild-origin Eurasian perch larvae performed better on diets with soybean meal and poultry meal compared to domesticated-origin larvae.
- Domesticated-origin larvae achieved the best growth on a commercial high-fishmeal control diet.
- Performance differences suggest a diet-dependent trade-off rather than an overall advantage for either group.
- Broodstock history and nutritional experience appear to influence offspring's dietary adaptability.
AI-generated from the title and abstract; the full text is not read.
Abstract
Abstract The domestication of fish is a key step in aquaculture, shaping traits required for adaptation to captive rearing conditions. Previous studies suggested that domesticated Eurasian perch ( Perca fluviatilis ) larvae perform well on formulated feeds, whereas wild-origin larvae exhibit greater dietary flexibility. We hypothesized that larvae originating from wild broodstock would better cope with alternative protein sources than larvae from domesticated broodstock. To test this, we compared the zootechnical performance, digestive enzyme activity, and digestive gene expression of wild- and domesticated-origin larvae fed diets containing soybean meal, poultry meal, or their combination, using a commercial high-fishmeal diet as the control. Wild-origin larvae generally performed better on alternative protein diets, whereas domesticated-origin larvae achieved the best growth on the control diet, indicating a diet-dependent performance trade-off rather than an overall advantage of either group. These findings should be interpreted with caution because the wild and domesticated broodstocks originated from different geographic populations and did not share a common ancestral background. Nevertheless, the observed differences are consistent with the hypothesis that broodstock history and previous nutritional experience may influence the dietary adaptability of offspring. Our results suggest that maintaining traits associated with dietary flexibility may facilitate the transition toward more sustainable aquafeeds and should be considered when developing future breeding and domestication strategies for Eurasian perch.
The authors' abstract, as published at the source. Scientific Reports, 2026 · DOI ↗
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Field: Aquatic Science
Aquatic ScienceAgricultural and Biological Sciences