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Temperature Increase Negatively Affects the Fatty Acid Bioconversion Capacity of Rainbow Trout (Oncorhynchus mykiss) Fed a Linseed Oil-Based Diet

机译:温度增加对饲喂亚麻籽油基饮食的虹鳟鱼(Oncorhynchus mykiss)的脂肪酸生物转化能力有负面影响

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摘要

Aquaculture is meant to provide fish rich in omega-3 long chain polyunsaturated fatty acids (n-3 LC-PUFA). This objective must be reached despite (1) the necessity to replace the finite and limited fish oil in feed production and (2) the increased temperature of the supply water induced by the global warming. The objective of the present paper was to determine to what extent increased water temperature influences the fatty acid bioconversion capacity of rainbow trout (Oncorhynchus mykiss) fed a plant-derived diet. Fish were fed two diets formulated with fish oil (FO) or linseed oil (LO) as only added lipid source at the optimal water temperature of 15°C or at the increased water temperature of 19°C for 60 days. We observed that a temperature increase close to the upper limit of the species temperature tolerance range negatively affected the feed efficiency of rainbow trout fed LO despite a higher feed intake. The negative impact of increased water temperature on fatty acid bioconversion capacity appeared also to be quite clear considering the reduced expression of fatty acid desaturase 2 in liver and intestine and the reduced Δ6 desaturase enzymatic activity in intestinal microsomes. The present results also highlighted a negative impact of increased temperature on the apparent in vivo enzymatic activity of Δ5 and Δ6 desaturases of fish fed LO. Interestingly, this last parameter appeared less affected than those mentioned above. This study highlights that the increased temperature that rainbow trout may face due to global warming could reduce their fatty acid bioconversion capacity. The unavoidable replacement of finite fish oil by more sustainable, readily available and economically viable alternative lipid sources in aquaculture feeds should take this undeniable environmental issue on aquaculture productivity into account.
机译:水产养殖旨在提供富含ω-3长链多不饱和脂肪酸(n-3 LC-PUFA)的鱼。尽管(1)必须在饲料生产中替换有限且有限的鱼油,并且(2)由于全球变暖而导致供水温度升高,但仍必须实现该目标。本文的目的是确定水温升高在多大程度上影响以植物为食的虹鳟鱼(Oncorhynchus mykiss)的脂肪酸生物转化能力。在15°C的最佳水温或19°C的升高的水温下,给鱼喂两种用鱼油(FO)或亚麻子油(LO)配制的日粮作为唯一添加的脂质源,持续60天。我们观察到,尽管采食量较高,但接近物种温度耐受范围上限的温度升高会对虹鳟摄食的LO的饲料效率产生负面影响。考虑到肝脏和肠中脂肪酸脱氢酶2的表达减少以及肠微粒体中Δ6脱氢酶的酶活性降低,水温升高对脂肪酸生物转化能力的负面影响似乎也很明显。本研究结果还强调了温度升高对喂食LO的鱼的Δ5和Δ6脱氢酶表观体内酶活性的负面影响。有趣的是,最后一个参数的影响似乎比上面提到的要小。这项研究强调,由于全球变暖,虹鳟可能面临的温度升高可能会降低其脂肪酸的生物转化能力。在水产养殖饲料中不可避免地要用更可持续,更容易获得且在经济上可行的脂质来源替代有限的鱼油,应考虑到水产养殖生产力这一不可否认的环境问题。

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