CIIMAR/CIMAR-LA, Interdisciplinary Centre of Marine and Environmental Research -University of Porto, Matosinhos 4450-208, Portugal.
ICBAS, School of Medicine and Biomedical Sciences - University of Porto, Porto 4050-313, Portugal.
J Anim Sci. 2023 Jan 3;101. doi: 10.1093/jas/skad040.
The replacement of fishmeal (FM) by insect meal (IM) in aquafeed formulation has been thoroughly studied lately, but little is known about their impact on nutrient metabolism of fish. This study evaluated the impact not only of partial but also total FM replacement by IM on intermediary metabolism of European sea bass (Dicentrarchus labrax). A fishmeal-based diet was used as a control (CTRL) and two other diets were formulated to include 20% and 40% of defatted Tenebrio molitor larvae meal (dTM), replacing 50% (TM50) and 100% (TM100) of fishmeal (FM), respectively. After a 16-week feeding trial, a multidisciplinary approach including assessment of histological, biochemical, molecular, and enzymatic parameters was adopted to investigate hepatic and plasmatic responses to the different dietary formulations. The results obtained demonstrated that dTM can be successfully used to replace 50% of FM in diets for European sea bass, without adversely affecting liver health or intermediary metabolism of nutrients. As for TM100, although no signs of steatosis were observed in the liver, the activity of glycolytic and lipogenic genes and enzymes increased when compared to CTRL diet (P < 0.05), resulting in higher levels of plasmatic non-esterified fatty acids and triacylglycerides (P < 0.05), which in the long-term may compromise fish health, thus precluding such a high degree of substitution for use in practical diets for European sea bass.
最近,人们已经对在水产饲料配方中用昆虫粉(IM)替代鱼粉(FM)进行了深入研究,但对于它们对鱼类营养代谢的影响知之甚少。本研究不仅评估了部分替代,还评估了完全替代对欧洲鲈鱼(Dicentrarchus labrax)中间代谢的影响。使用基于鱼粉的饮食作为对照(CTRL),并配制了另外两种饮食,分别包含 20%和 40%脱脂黄粉虫幼虫粉(dTM),分别替代 50%(TM50)和 100%(TM100)的鱼粉(FM)。经过 16 周的喂养试验,采用包括组织学、生化、分子和酶学参数评估的多学科方法,研究了不同饮食配方对肝脏和血浆的反应。结果表明,dTM 可以成功地替代欧洲鲈鱼饲料中的 50%的 FM,而不会对肝脏健康或营养物质的中间代谢产生不利影响。对于 TM100,尽管肝脏中没有观察到脂肪变性的迹象,但与 CTRL 饮食相比,糖酵解和脂肪生成基因和酶的活性增加(P < 0.05),导致血浆中非酯化脂肪酸和三酰基甘油(TAG)的水平升高(P < 0.05),这可能会在长期内损害鱼类健康,因此不建议在欧洲鲈鱼的实用饲料中使用如此高的替代度。