斑马鱼营养基因组学研究的现状、基础及未来发展方向。

Genes & Nutrition Pub Date : 2019-12-27 eCollection Date: 2019-01-01 DOI:10.1186/s12263-019-0658-2
Michael B Williams, Stephen A Watts
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引用次数: 17

摘要

本文综述了斑马鱼动物模型营养基因组学的研究现状。斑马鱼动物模型已被广泛用于研究疾病的发生和进展以及相关的分子变化。本文就利用斑马鱼动物模型进行营养基因组学研究作一综述。肥胖和血脂异常研究描述了与高脂肪/高热量饮食有关的饮食引起的肥胖的基因组学。炎症和心血管研究描述了饮食对急性炎症标志物表达的影响,并由此导致包括动脉粥样硬化在内的慢性炎症问题。我们还评估了与代谢紊乱相关的生物活性膳食化合物的基因组反应。碳水化合物代谢和β细胞功能研究描述了高碳水化合物饮食挑战对营养规划的影响。我们还报道了与饮食致癌物暴露研究相关的肿瘤发生,这可能导致永久性的基因组变化。维生素和矿物质缺乏研究表明,饮食中微量营养素的跨代基因组影响和时间表达变化。昼夜节律研究描述了代谢与影响健康的基因表达的自然时间周期之间的关系。骨形成研究描述了饮食成分对骨重吸收调节的影响。最后,对斑马鱼模型在营养基因组学和营养遗传学研究中的应用进行了展望。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Current basis and future directions of zebrafish nutrigenomics.

This review investigates the current state of nutrigenomics in the zebrafish animal models. The zebrafish animal model has been used extensively in the study of disease onset and progression and associated molecular changes. In this review, we provide a synopsis of nutrigenomics using the zebrafish animal model. Obesity and dyslipidemia studies describe the genomics of dietary-induced obesity in relation to high-fat/high-calorie diets. Inflammation and cardiovascular studies describe dietary effects on the expression of acute inflammatory markers and resulting chronic inflammatory issues including atherosclerosis. We also evaluated the genomic response to bioactive dietary compounds associated with metabolic disorders. Carbohydrate metabolism and β-cell function studies describe the impacts of high-carbohydrate dietary challenges on nutritional programming. We also report tumorigenesis in relation to dietary carcinogen exposure studies that can result in permanent genomic changes. Vitamin and mineral deficiency studies demonstrate transgenerational genomic impacts of micronutrients in the diet and temporal expression changes. Circadian rhythm studies describe the relation between metabolism and natural temporal cycles of gene expression that impacts health. Bone formation studies describe the role of dietary composition that influences bone reabsorption regulation. Finally, this review provides future directions in the use of the zebrafish model for nutrigenomic and nutrigenetic research.

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