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首页> 外文期刊>Comparative biochemistry and physiology, Part B. Biochemistry & molecular biology >Enhanced micronutrient supplementation in low marine diets reduced vertebral malformation in diploid and triploid Atlantic salmon (Salmo salar) parr, and increased vertebral expression of bone biomarker genes in diploids
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Enhanced micronutrient supplementation in low marine diets reduced vertebral malformation in diploid and triploid Atlantic salmon (Salmo salar) parr, and increased vertebral expression of bone biomarker genes in diploids

机译:低海洋饮食中增强的微量营养素补充在二倍体和三倍体大西洋鲑鱼(沙摩酱)Parr中降低椎体畸形,并增加了二倍体中骨生物标志物基因的椎体表达

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Previously we showed that, for optimum growth, micronutrient levels should be supplemented above current National Research Council (2011) recommendations for Atlantic salmon when they are fed diets formulated with low levels of marine ingredients. In the present study, the impact of graded levels (100, 200, 400%) of a micronutrient package (NP) on vertebral deformities and bone gene expression were determined in diploid and triploid salmon parr fed low marine diets. The prevalence of radiologically detectable spinal deformities decreased with increasing micronutrient supplementation in both ploidy. On average, triploids had a higher incidence of spinal deformity than diploids within a given diet. Micronutrient supplementation particularly reduced prevalence of fusion deformities in diploids and compression and reduced spacing deformities in triploids. Prevalence of affected vertebrae within each spinal region (cranial, caudal, tail and tail fin) varied significantly between diet and ploidy, and there was interaction. Prevalence of deformities was greatest in the caudal region of triploids and the impact of graded micronutrient supplementation in reducing deformities also greatest in triploids. Diet affected vertebral morphology with length:height (L:H) ratio generally increasing with level of micronutrient supplementation in both ploidy with no difference between ploidy. Increased dietary micronutrients level in diploid salmon increased the vertebral expression of several bone biomarker genes including bone morphogenetic protein 2 (bmp2), osteocalcin (ostcn), alkaline phosphatase (alp), matrix metallopeptidase 13 (mmp13), osteopontin (opn) and insulin-like growth factor 1 receptor (igf1r). In contrast, although some genes showed similar trends in triploids, vertebral gene expression was not significantly affected by dietary micro nutrients level. The study confirmed earlier indications that dietary micronutrient levels should be increased in salmon fed diets with low marine ingredients and that there are differences in nutritional requirements between ploidies.
机译:此前,我们表明,为了获得最佳的生长,应补充微量营养素水平,以上目前的国家研究委员会(2011)大西洋鲑鱼的建议,当喂养饲喂含量低水平的海洋成分的饮食。在本研究中,在二倍体和三倍体三文鱼Parr喂养低海洋饮食中,测定梯度水平(100,200,400%)对椎体畸形和骨基因表达的影响。通过增加微量营养素补充,放射学检测到的脊柱畸形的患病率降低。平均而言,三倍体在给定饮食中的二倍体具有较高的脊髓畸形发病率。微量营养素补充特别降低二倍体和压缩中的融合畸形的流行度,并在三倍体中减少间距畸形。每个脊柱区域(颅骨,尾部,尾部和尾鳍)内的受影响椎骨的患病率在饮食和倍率之间显着变化,并且存在相互作用。畸形的患病率在三倍体的尾部区域最大,并且渐进的微量营养素补充在减少畸形中的影响,在三倍体中也是最大的。饮食影响了长度的椎体形态:高度(L:H)比率随着微量营养素水平的倍增性,倍率之间没有差异。增加二倍体鲑鱼中的膳食微量营养素水平增加了几个骨生物标志物基因的椎体表达,包括骨形态发生蛋白2(BMP2),骨钙素(OSTCN),碱性磷酸酶(ALP),基质金属肽酶13(MMP13),骨桥蛋白(OPN)和胰岛素 - 像生长因子1受体(IGF1R)。相比之下,虽然一些基因显示三倍体的相似趋势,但椎体基因表达没有受到膳食微营养水平的显着影响。该研究证实了早期的指示,饮食微量营养素含量应在鲑鱼喂食中饲料中的低海洋成分增加,并且血浆之间存在营养需求存在差异。

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