首页> 外文OA文献 >Lasting effects of butyrate and low FM/FO diets on growth performance, blood haematology/biochemistry and molecular growth-related markers in gilthead sea bream (Sparus aurata)
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Lasting effects of butyrate and low FM/FO diets on growth performance, blood haematology/biochemistry and molecular growth-related markers in gilthead sea bream (Sparus aurata)

机译:丁酸盐和低FM / FO饮食对金头鲷(Sparus aurata)的生长性能,血液血液学/生物化学和分子生长相关标记的持久影响

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摘要

Four isoproteic/isolipidic plant protein-based diets were formulated to assess the lasting effects of feed additives and low fish meal (FM) and fish oil (FO) diet formulations on gilthead sea bream growth performance. FM was included at 23% in the control diet (D1) and at 3% in the other three diets (D2, D3, D4). Added oil was either FO (D1) or a blend of vegetable oils replacing 58% (D2) and 84% (D3, D4 diets) of FO. A commercial sodium butyrate preparation (NOREL, 70-BP) was added to the D4 diet at 0.4%. Each diet was allocated to triplicate groups of juvenile fish fed to satiety over an 8-month feeding trial (May-December). All fish grew efficiently from 15. g of initial body weight to 296-320. g with an overall feed efficiency (FE) of 0.95-1.01, although fish fed D3 and D4 diets showed transient growth impairments over the course of the first four weeks of the trial. Data on biometric indexes, whole body composition, haematology and blood biochemistry revealed a strong effect of sampling time in fish sampled at mid-summer (August) and late autumn (December). In contrast, the diet effect was mostly reduced to a few blood parameters. Low inclusion levels of FM reduced plasma haemoglobin levels (D2, D3), but these effects were reversed by butyrate supplementation (D4). The same phenomena occurred for total cholesterol with the highest circulating concentration of choline and IGF-I in fish fed the D4 diet during their summer growth spurt. At the transcriptional level, gene expression profiling of liver and skeletal muscle with a PCR-array of 87 growth markers provided additional evidence for an overall well-growth condition in all of the experimental groups. Up to 73 genes were found at detectable levels in the liver tissue, but only 13 were differentially expressed. Likewise, 84 genes were actively transcribed in the skeletal muscle, but only nine were differentially expressed in at least one experimental group. Butyrate supplementation reversed the up-regulated expression of inflammatory cytokines (TNFα) and muscle markers of cellular morphogenesis and protein breakdown (CDH15, CAPN3, PSMA5, PSMB1, UBE2N) in the muscle of fish fed the extreme D3 diet. These results support the use of low FM/FO diets alone or supplemented with feed additives, which have the potential to improve or reverse metabolic steady-states. Statement of relevance: Butyrate effect on low fish meal/fish oil diets.
机译:配制了四种基于蛋白质/异脂植物蛋白的日粮,以评估饲料添加剂和低鱼粉(FM)和鱼油(FO)日粮配方对金头鲷的生长性能的持久影响。对照饮食(D1)中的FM含量为23%,其他三种饮食(D2,D3,D4)中的FM含量为3%。添加的油要么是FO(D1),要么是植物油的混合物,替代了58%(D2)和84%(D3,D4日粮)的FO。将商业丁酸钠制剂(NOREL,70-BP)以0.4%添加到D4日粮中。在为期8个月的喂养试验(5月至12月)中,每种饮食均分为三组,以饱腹感喂养幼鱼。所有鱼的有效体重都从最初的15克增加到296-320。 g,总体饲料效率(FE)为0.95-1.01,尽管在试验的前四周内,饲喂D3和D4饲料的鱼显示出短暂的生长障碍。有关生物统计指标,全身成分,血液学和血液生化的数据表明,在夏季中旬(八月)和深秋(十二月)采样的鱼中采样时间有很强的影响。相比之下,饮食效果大多降低到一些血液指标。 FM的低夹杂物含量降低了血浆血红蛋白水平(D2,D3),但是丁酸补充(D4)可以逆转这些影响。在夏季生长突增期饲喂D4饲料的鱼中,总胆固醇含量最高的胆碱和IGF-I的总胆固醇发生了相同的现象。在转录水平上,使用87种生长标记物的PCR阵列对肝脏和骨骼肌进行基因表达谱分析,为所有实验组的总体生长状况提供了额外的证据。在肝组织中可检测到多达73个基因,但只有13个差异表达。同样,在骨骼肌中活跃地转录了84个基因,但在至少一个实验组中只有9个差异表达。补充丁酸盐可逆转极端D3饮食的鱼类肌肉中炎性细胞因子(TNFα)的上调表达以及细胞形态发生和蛋白质分解的肌肉标志物(CDH15,CAPN3,PSMA5,PSMB1,UBE2N)。这些结果支持单独使用低FM / FO饮食或补充饲料添加剂,这些添加剂具有改善或逆转代谢稳态的潜力。相关声明:丁酸盐对低鱼粉/鱼油饮食的影响。

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