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首页> 外文期刊>Aquaculture Research >Marine wax ester digestion in salmonid fish: a review.
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Marine wax ester digestion in salmonid fish: a review.

机译:鲑鱼中海洋蜡酯的消化:综述。

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Alternative marine resources from lower trophic levels could partly cover the rapidly increasing needs for marine proteins and oils in the future. The North Atlantic calanoid copepod, Calanus finmarchicus, has a high level of lipids rich in n-3 fatty acids. However, these animals have wax esters as the main lipid storage component rather than triacylglycerol (TAG). Although these esters are considered difficult to digest by many fish, is it well known that juvenile Atlantic salmon (Salmo salar) feed on zooplankton species. It is therefore possible that the capacity to utilize these lipids should be well developed in salmonids. Nonetheless, salmon hydrolyse wax esters slower than TAG and absorb fatty alcohols slower than fatty acids. However, salmon have several adaptations to digest diets rich in wax esters. These includes increased feed conversion, higher production of bile and higher activity of lipolytic enzymes in the midgut. Atlantic salmon has been shown to feed and grow on diets with a medium amount of wax esters (30% of the lipid) with results comparable to fish maintained on fish oil diets. Ingestion of higher level of wax esters (50% of the lipid) cause, however, poorer lipid digestibility and growth, so that optimal utilization of wax esters in Atlantic salmon is closer to 30% than 50% of the dietary lipid.Digital Object Identifier http://dx.doi.org/10.1111/j.1365-2109.2010.02766.x
机译:来自较低营养水平的替代海洋资源可以部分满足未来对快速增长的海洋蛋白质和油类的需求。北大西洋的an足类co足类动物,其脂类富含n-3脂肪酸。但是,这些动物以蜡酸酯为主要脂质存储成分,而不是三酰基甘油(TAG)。尽管这些酯类被许多鱼类认为难以消化,但众所周知,大西洋鲑幼鱼以浮游动物为食。因此有可能在鲑鱼类中充分利用这些脂质的能力。但是,鲑鱼水解蜡酯比TAG慢,而脂肪醇的吸收比脂肪酸慢。但是,鲑鱼具有多种适应能力,可以消化富含蜡酯的饮食。这些包括提高饲料转化率,提高胆汁产量和提高中肠脂肪分解酶的活性。已证明大西洋鲑鱼以中等量的蜡酯(占脂质的30%)为食,并以此为食,其结果可与鱼油饮食中维持的鱼相媲美。然而,摄入较高含量的蜡酯(占脂质的50%)会导致脂质的消化率和生长较差,因此大西洋鲑蜡酯的最佳利用率比饮食中的脂质的50%接近30%。 http://dx.doi.org/10.1111/j.1365-2109.2010.02766.x

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