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Influence of salinity and linoleic or alpha-linolenic acid based diets on ontogenetic development and metabolism of unsaturated fatty acids in pike perch larvae (Sander lucioperca)

机译:盐度和α-亚麻酸基酸性饮食对梭菌幼虫(Sander Lucioperca)的甲型不饱和脂肪酸的形成和代谢的影响

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摘要

Combinations of nutritional requirements and husbandry rearing conditions during early ontogeny are poorly studied in pikeperch (Sander lucioperca). The substitution of marine oils with vegetable oils has reduced stress tolerance and caused neurophysiological changes in pike perch larvae, but effects of environmental cues are limited. Saline water influences on a range of physiological functions during early fish larval ontogeny and may affect FA metabolism, - elongation and desaturation - activity when given diets limited in LC PUFAs, but rich in shorter chain n-3 or n-6 PUFAs. Consequently, live Artemia differing in 18:2n-6 (LA) and 18:3n-3 (ALA) content by enrichment with sunflower oil (SFO) or linseed oil (LO) were fed to 10 days post hatch (DPH) larvae and reared up to isosmotic salinities (0, 5, 10 ppt) until 30 DPH. Larval tissue FA composition was examined at 15, 25 and 30 DPH. Besides, an in vivo assay was performed on 20 DPH larvae with C-14 labelled FA including LA; ALA; 20:4n-6 (ARA); 20:5n-3 (EPA) or 22:6n-3 (DHA) to establish FA incorporation and metabolism. At 30 DPH, performance, digestive enzymatic activity, eicosanoid activity, skeletal anomalies and stress sensitivity were further evaluated. Results on larval FA profiles suggest a low desaturation and elongation capability over LA and ALA, with no significant effects of salinity or larval age on modulation of unsaturated fatty acid metabolism. In vivo assays revealed that regardless of salinity or diet, pikeperch possess a marked specificity to incorporate ARA and EPA compared to a poorer incorporation of DHA. Larvae exposed to a confinement stress test caused high acute mortality in all experimental groups except for a control group fed with Artemia enriched by a commercial DHA Selco emulsion. Growth performance was not significantly affected by salinity or dietary enrichment with SFO or LO, but influenced on larval enzymatic activity of pepsin, aminopeptidase, trypsin and alkaline phosphatase, while lipase activity was not significantly affected. Increased saline conditions significantly decreased hormonal prostaglandin eicosanoid PGE(2), PGE(3) activity with the highest activity at 0 ppt. The prevalence of severe skeletal anomalies was generally high, affecting over 75% of the larval population with negative effects by increase in salinity. The incidence of anomalies was higher on endochondral bones, namely maxillary, ranging from 58 to 83% of the population. These results agree well with those from expression of sox 9 and twist2 genes; involved in chondrocyte ossification and differentiation.
机译:在Pikeperch(Sander Lucioperca)中,营养需求和饲养饲养条件营养需求和饲养条件的组合尚不实样。含有植物油的海洋油的取代具有降低的应力耐受性,并导致梭氏钙幼虫的神经生理变化,但环境提示的影响有限。盐水水影响早期鱼类幼虫的一系列生理功能,可能影响FA代谢, - 延伸和去饱和 - 当给予LC PUFA的饮食有限时,但富含链N-3或N-6 PUFA。因此,通过富含向日葵油(SFO)或亚麻籽油(LO)的富含氧化术后(DPH)幼虫(DPH)幼虫(DPH)幼虫(DPH)幼虫(DPH)幼虫和直至30分钟,饲养异常盐水(0,5,10 ppt)直至30分。在15,25和30分钟内检查幼虫组织组合物。此外,在20分DPH幼虫与C-14标记的FA在包括La的情况下进行体内测定;翼; 20:4N-6(ARA); 20:5N-3(EPA)或22:6N-3(DHA)建立FA掺入和新陈代谢。在30分DPH,进一步评估了性能,消化酶活性,逐渐评估骨质异常和应激敏感性。幼虫FA型材的结果表明,La和Ala的低去饱和度和伸长能力,盐度或幼虫对不饱和脂肪酸代谢的调节没有显着影响。在体内测定揭示出,无论盐度或饮食如何,与DHA的较较差的掺入相比,Pikeperch都具有标记的特异性来掺入ARA和EPA。除了通过商业DHA Selco乳液富集的Artemia喂养的对照组外,幼虫暴露于监禁应激试验。通过SFO或LO的盐度或膳食富集的生长性能没有显着影响,但是影响胃蛋白酶,氨肽酶,胰蛋白酶和碱性磷酸酶的幼虫酶活性,而脂肪酶活性不会受到显着影响。增加的盐水条件显着降低激素前列腺素果皮PGE(2),PGE(3)活性在0 ppt时的最高活性。严重骨骼异常的患病率通常很高,影响盐度增加的幼虫人群超过75%的幼虫群体。异常的发生率高于骨头骨头,即颌骨上的颌骨,范围为58%至83%。这些结果与来自SOX 9和Twist2基因表达的结果很好;参与软骨细胞骨化和分化。

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  • 来源
    《Aquaculture》 |2019年第2019期|共12页
  • 作者单位

    Tech Univ Denmark DTU Aqua Sect Aquaculture North Sea Res Ctr POB 101 DK-9850 Hirtshals Denmark;

    Univ La Laguna Dept Biol Anim Edafol &

    Geol Ave Astrofis Francisco Sanchez S-N San Cristobal la Laguna 38206 Spain;

    Univ Las Palmas Gran Canaria ECOAQUA Inst Aquaculture Res Grp GIA Crta Taliarte S-N Telde 35214 Spain;

    Univ Namur Res Unit Environm &

    Evolutionary Biol Rue Bruxelles 61 B-5000 Namur Belgium;

    Univ Namur Res Unit Environm &

    Evolutionary Biol Rue Bruxelles 61 B-5000 Namur Belgium;

    Univ La Laguna Dept Biol Anim Edafol &

    Geol Ave Astrofis Francisco Sanchez S-N San Cristobal la Laguna 38206 Spain;

    Univ Las Palmas Gran Canaria ECOAQUA Inst Aquaculture Res Grp GIA Crta Taliarte S-N Telde 35214 Spain;

    Univ La Laguna Dept Biol Anim Edafol &

    Geol Ave Astrofis Francisco Sanchez S-N San Cristobal la Laguna 38206 Spain;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 水产、渔业;
  • 关键词

    Sander lucioperca; Salinity; HUFA; Eicosanoids; Enzymes; Gene expression; Metabolism;

    机译:Sander Lucioperca;盐度;hufa;osicosanoids;酶;基因表达;新陈代谢;

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