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膳食胆钙化醇调节欧洲鲈鱼幼鱼骨骼肌纤维的募集和生长以及成肌调节因子和肌球蛋白重链的表达。

Dietary cholecalciferol regulates the recruitment and growth of skeletal muscle fibers and the expressions of myogenic regulatory factors and the myosin heavy chain in European sea bass larvae.

机构信息

INRA, UR 1067 Nutrition Métabolisme Aquaculture, Saint-Pée-sur-Nivelle, France.

出版信息

J Nutr. 2011 Dec;141(12):2146-51. doi: 10.3945/jn.111.146118. Epub 2011 Oct 19.

Abstract

The aim of this study was to determine whether dietary cholecalciferol affects the recruitment and growth of axial skeletal muscle fibers in first-feeding European sea bass. Larvae were fed diets containing 0.28 (VD-L, low dose), 0.69 (VD-C, control dose), or 3.00 (VD-H, high dose) mg cholecalciferol/kg from 9 to 44 d posthatching (dph). Larvae were sampled at 44 dph for quantification of somatic growth, muscle growth, and muscle growth dynamics and at 22 and 44 dph for the relative quantification of transcripts encoded by genes involved in myogenesis, cell proliferation, and muscle structure. The weight increase of the VD-L-fed larvae was less than that of the VD-H-fed group, whereas that of VD-C-fed larvae was intermediate. The level of expression of genes involved in cell proliferation (PCNA) and early myogenesis (Myf5) decreased between 22 and 44 dph, whereas that of the myogenic determination factor MyoD1 and that of genes involved in muscle structure and function (myosin heavy chain, myosin light chains 2 and 3) increased. Dietary cholecalciferol regulated Myf5, MyoD1, myogenin, and myosin heavy chain gene expression, with a gene-specific shape of response. The maximum hypertrophy of white muscle fibers was higher in larvae fed the VD-C and VD-H diets than in larvae fed the VD-L diet. White muscle hyperplasia was highly stimulated in VD-H-fed larvae compared to VD-L- and VD-C-fed ones. These findings demonstrate a dietary cholecalciferol effect on skeletal muscle growth mechanisms of a Teleost species.

摘要

本研究旨在确定膳食胆钙化醇是否会影响初孵欧洲海鲈的轴向骨骼肌肉纤维的募集和生长。从孵化后 9 天至 44 天(dph),将幼虫分别投喂含有 0.28(VD-L,低剂量)、0.69(VD-C,对照剂量)或 3.00(VD-H,高剂量)mg 胆钙化醇/kg 的饲料。在 44 dph 时取样,用于定量分析体生长、肌肉生长和肌肉生长动态,并在 22 和 44 dph 时,用于相对定量分析参与肌发生、细胞增殖和肌肉结构的基因的转录物。VD-L 组幼虫的增重小于 VD-H 组,而 VD-C 组幼虫的增重则处于中间水平。参与细胞增殖(PCNA)和早期肌发生(Myf5)的基因的表达水平在 22 至 44 dph 之间下降,而肌生成决定因子 MyoD1 和参与肌肉结构和功能的基因(肌球蛋白重链、肌球蛋白轻链 2 和 3)的表达水平增加。膳食胆钙化醇调节 Myf5、MyoD1、肌生成素和肌球蛋白重链基因的表达,具有特定的基因响应形状。VD-C 和 VD-H 组幼虫的白色肌肉纤维最大肥大程度高于 VD-L 组幼虫。与 VD-L 和 VD-C 组幼虫相比,VD-H 组幼虫的白色肌肉增生受到高度刺激。这些发现表明膳食胆钙化醇对硬骨鱼类物种的骨骼肌肉生长机制具有影响。

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