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Nutrigenetics, Nutrigenomics, and the Future of Dietary Advice

机译:Nutrigenetics,Nutrigenomics,以及膳食建议的未来

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Our individual metabolic phenotype is the result of the interaction between nutrients and DNA to modify gene expression. This is a combination of epigenetic interactions whereby nutrients modify the structure of DNA to affect gene expression as well as individual genetic variation that alters our response to diet. Our metabolic phenotype is influenced by developmental plasticity, imprinting in early life and interactions with environmental factors over time. Unlike the human genome which is relatively fixed and stable throughout the body, the human metabolic phenotype is far more complex and dynamic, varying over time and among cells and varying greatly from person to person. Dietary recommendations are often generalized and intended to avert chronic illnesses such as diabetes and cardiovascular disease. In a climate where we are striving for personalisation of healthcare maybe we need a simpler approach; one that embraces genetic variation yet focuses on the optimum nutritional benefit of dietary components.
机译:我们的个体代谢表型是营养素和DNA之间相互作用以修饰基因表达的结果。这是表观遗传相互作用的组合,营养物质改变DNA的结构以影响基因表达以及各个遗传变异,改变我们对饮食的反应。我们的代谢表型受发育可塑性的影响,在早期生命中印记并随着时间的推移与环境因素的相互作用。与在整个体内相对固定和稳定的人类基因组不同,人类代谢表型更复杂,动态,随着时间的推移和细胞而变化,并且从人的人差别变化。膳食推荐通常是推广的,并旨在避免糖尿病和心血管疾病等慢性疾病。在一个气候中,我们正在追求医疗保健的个性化,也许我们需要更简单的方法;拥有遗传变异的一个,尤为侧重于膳食成分的最佳营养益处。

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