首页> 外文期刊>The Journal of Experimental Biology >Ontogenetic expression of metabolic genes and microRNAs in rainbow trout alevins during the transition from the endogenous to the exogenous feeding period
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Ontogenetic expression of metabolic genes and microRNAs in rainbow trout alevins during the transition from the endogenous to the exogenous feeding period

机译:从内源性到外源性摄食过渡期虹鳟鱼蛋白中代谢基因和微小RNA的本体表达

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摘要

As oviparous fish, rainbow trout change their nutritional strategy during ontogenesis. This change is divided into the exclusive utilization of yolk-sac reserves (endogenous feeding), the concurrent utilization of yolk reserves and exogenous feeds (mixed feeding) and the complete dependence on external feeds (exogenous feeding). The change in food source is accompanied by well-characterized morphological changes, including the development of adipose tissue as an energy storage site, and continuous muscle development to improve foraging. The aim of this study was to investigate underlying molecular mechanisms that contribute to these ontogenetic changes between the nutritional phenotypes in rainbow trout alevins. We therefore analyzed the expression of marker genes of metabolic pathways and microRNAs (miRNAs) important in the differentiation and/or maintenance of metabolic tissues. In exogenously feeding alevins, the last enzyme involved in glucose production (g6pca and g6pcb) and lipolytic gene expression (cpt1a and cpt1b) decreased, while that of gk, involved in hepatic glucose use, was induced. This pattern is consistent with a progressive switch from the utilization of stored (gluconeogenic) amino acids and lipids in endogenously feeding alevins to a utilization of exogenous feeds via the glycolytic pathway. A shift towards the utilization of external feeds is further evidenced by the increased expression of omy-miRNA-143, a homologue of the mammalian marker of adipogenesis. The expression of its predicted target gene abhd5, a factor in triglyceride hydrolysis, decreased concurrently, suggesting a potential mechanism in the onset of lipid deposition. Muscle-specific omy-miRNA-1/133 and myod1 expression decreased in exogenously feeding alevins, a molecular signature consistent with muscle hypertrophy, which may be linked to nutritional cues or increased foraging.
机译:作为卵生鱼,虹鳟鱼在成虫过程中会改变其营养策略。这种变化分为卵黄囊储备的独家利用(内源性饲料),卵黄储备和外源性饲料的同时利用(混合饲料)以及完全依赖外部饲料(外源性饲料)。食物来源的变化伴随着特征鲜明的形态变化,包括脂肪组织作为能量存储位点的发展,以及持续不断的肌肉发育以改善觅食。这项研究的目的是调查潜在的分子机理,这些分子机理有助于虹鳟鱼蛋白激酶营养表型之间的这些个体发育变化。因此,我们分析了在代谢组织的分化和/或维持中重要的代谢途径和微RNA(miRNA)标记基因的表达。在外源性饲喂alevins的过程中,诱导了参与葡萄糖生成的最后一种酶(g6pca和g6pcb)和脂解基因表达(cpt1a和cpt1b)降低,而诱导了参与肝葡萄糖使用的gk酶。这种模式与从内源性饲料蛋白中储存的(糖异生性)氨基酸和脂质的利用向通过糖酵解途径的外源性饲料利用的逐步转变是一致的。 omy-miRNA-143(哺乳动物脂肪形成标记的同源物)的表达增加,进一步证明了向利用外部饲料的转变。同时,其预测的靶基因abhd5(甘油三酸酯水解的一个因素)的表达下降,这表明脂质沉积开始的潜在机制。肌肉特异性的omy-miRNA-1 / 133和myod1的表达在外源性饲喂的alevins中下降,这是与肌肉肥大一致的分子特征,可能与营养暗示或觅食增加有关。

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