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首页> 外文期刊>Comparative biochemistry and physiology, Part B. Biochemistry & molecular biology >Dietary alpha-linolenic acid does not enhance accumulation of omega-3 long-chain polyunsaturated fatty acids in barramundi (Lates calcarifer)
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Dietary alpha-linolenic acid does not enhance accumulation of omega-3 long-chain polyunsaturated fatty acids in barramundi (Lates calcarifer)

机译:饮食亚麻酸不增强ω- 3长链积累多不饱和脂肪酸在澳洲肺鱼(尖吻鲈属

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摘要

This study examined the effects of substituting fish oil and fish meal with a blend of alpha-linolenic acid (ALA, 18:3 n?3) rich vegetable oils (14%, w/w) and defatted poultry meal (34%, w/w) in a formulated diet, on growth and tissue fatty acid profiles in barramundi fingerlings. Results indicated that on average,while the ALA levels of the barramundi liver and fillet increasedwith increasing dietary ALA, therewas no corresponding increase in the levels of the omega-3 (n?3) long chain polyunsaturated fatty acid (LCPUFA). Compared to fish consuming a commercial feed, which contained fish meal and fish oil, fish on the ALA diets grew slower, had a lower feed intake and lower n?3 LCPUFA levels in the tissues. Hepatic mRNA expression of Δ6 desaturase (FADS2) and elongase (ELOVL5/2) was ~10 fold and ~3 fold higher, respectively, in all the ALA dietary groups, relative to those fed the commercial feed. However, the level of expression of the two genes was not different between fish fed differing ALA levels. These data demonstrate that increasing the ALA level of the diet is not an appropriate strategy for replacing marine sources of n?3 LCPUFA in barramundi. It was also noted, however, thatwithin the different ALA dietary groups there was a large amount of variation between individual fish in their tissue DHA levels, suggesting a significant heterogeneity in their capacity for conversion of ALA and/or retention of n?3 LCPUFA. When dietary ALA intakes were greater than 0.8% en, tissue DHA levels were inversely related to ALA intake, suggesting that high intake of dietary ALA may inhibit DHA synthesis.
机译:本研究调查了替代的影响鱼油和鱼粉的混合亚麻酸、十八3 n ? 3)丰富植物油(14%,w / w)和脱脂的家禽餐(34%,w / w)制定饮食,在增长和组织脂肪酸在澳洲肺鱼概要文件小鱼。平均,而澳洲肺鱼的阿拉巴马州的水平肝脏和角increasedwith增加膳食阿拉巴马州,英勇不相应增加欧米伽- 3的水平(n ? 3)长链多不饱和脂肪酸(LCPUFA)。鱼类消费商业饲料,含有鱼粉和鱼油,鱼在阿拉巴马州的饮食增长放缓,降低采食量和低n ?表达Δ6 desaturase (FADS2)和elongase(ELOVL5/2) ~ 10倍~ 3倍,分别在阿拉巴马州饮食组,相对于那些美联储商业饲料。然而,这两个基因的表达水平不是不同鱼喂不同的阿拉巴马州吗的水平。阿拉巴马州的饮食水平不是一个合适的战略替代海洋来源的n ?LCPUFA澳洲肺鱼。thatwithin不同ALA饮食组大量的差异个体鱼组织中DHA水平,显示显著的异质性阿拉巴马州和/或保留转换的能力n的吗?DHA含量大于0.8%,组织阿拉巴马州的摄入量成反比,暗示高摄入膳食阿拉巴马州可以抑制DHA合成。

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