Abstract
In olive flounder (Paralichthys olivaceus), growth performance, expression of growth-related factors, digestive physiology, and gut microbiota were assessed under farm conditions in the fish fed diets with low levels of fishmeal. Four experimental diets were prepared, FM70 [control (CON), 70% fishmeal], FM45 (45% fishmeal), FM35A (35% fishmeal), and FM35B (35% fishmeal + insect meal), and fed to the fish for five months. The CON-fed fish had the highest plasma GH, but IGF-1 and hepatic IGF-1 mRNA expression of the olive flounder fed diets with low-fishmeal levels did not significantly differ among diets. The intestinal villus length, muscular thickness, and the number of goblet cells were statistically similar, and ocular examination of hepatopancreas showed no discernable difference in all experimental diets. The chymotrypsin content of FM35B-fed fish is significantly lower, but trypsin and lipase contents are similar. The diversity of gut microbiota did not differ among groups, although the FM35B group had a higher composition of Firmicutes. Thus, a diet with reduced fishmeal content and several alternative protein sources can be used as feed ingredients in feed formulation for olive flounder reared under typical aquaculture farm conditions.
Funder
the National Institute of Fisheries Science, Republic of Korea
Subject
General Veterinary,Animal Science and Zoology
Cited by
6 articles.
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1. Evaluation of low-fish meal diets containing animal byproducts and plant protein sources for juvenile olive flounder Paralichthys olivaceus;Aquaculture International;2024-08-14
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3. Raw Fish-based Moist Pellet and Extruded Pellet on Growth, Levels and Expression of GH/IGF Axis, Intestinal Enzyme Activity and Gastrointestinal Morphology of Olive Flounder (Paralichthys olivaceus): An Actual Field Study;Turkish Journal of Fisheries and Aquatic Sciences;2023-11-09
4. Dietary Exogenous α-Amylase Modulates the Nutrient Digestibility, Digestive Enzyme Activity, Growth-Related Gene Expression, and Diet Degradation Rate of Olive Flounder (Paralichthys olivaceus);Journal of Microbiology and Biotechnology;2023-06-29
5. Effect of Fish Meal Substitution with Black Soldier Fly (Hermetia illucens) on Growth Performance, Feed Stability, Blood Biochemistry, and Liver and Gut Morphology of Siamese Fighting Fish (Betta splendens);Aquaculture Nutrition;2023-06-20