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遗传变异在塑造衰老过程中饮食表型反应中的作用

The Role of Genetic Variation in Shaping Phenotypic Responses to Diet in Aging .

作者信息

Bak Nikolaj Klausholt, Mackay Trudy F C, Morgante Fabio, Nielsen Kåre Lehmann, Nielsen Jeppe Lund, Kristensen Torsten Nygaard, Rohde Palle Duun

机构信息

Department of Chemistry and Bioscience, Aalborg University, Aalborg, Denmark.

Center for Human Genetics and Department of Genetics and Biochemistry, Clemson University, Greenwood, South Carolina, United States of America.

出版信息

bioRxiv. 2025 Jan 14:2025.01.09.632132. doi: 10.1101/2025.01.09.632132.

Abstract

Nutrition plays a central role in healthy living, however, extensive variability in individual responses to dietary interventions complicates our understanding of its effects. Here we present a comprehensive study utilizing the Genetic Reference Panel (DGRP), investigating how genetic variation influences responses to diet and aging. Quantitative genetic analyses of the impact of dietary restriction on lifespan, locomotor activity, dry weight, and heat knockdown time were performed. Locomotor activity, dry weight and heat knockdown time were measured on the same individual flies. We found significant genotype-by-diet interaction (GDI) and genotype-by-age interaction (GAI) for all traits. Therefore, environmental factors play a crucial role in shaping trait variation at different ages and diets, and/or distinct genetic variation influences these traits at different ages and diets. Our genome wide association study also identified a quantitative trait locus for age-dependent dietary response. The observed GDI and GAI indicates that susceptibility to environmental influences changes as organisms age, which could have significant implications for dietary recommendations and interventions aimed at promoting healthy aging in humans. The identification of associations between DNA sequence variation and age-dependent dietary responses opens new avenues for research into the genetic mechanisms underlying these interactions.

摘要

营养在健康生活中起着核心作用,然而,个体对饮食干预的反应存在广泛差异,这使得我们对其影响的理解变得复杂。在此,我们利用基因参考面板(DGRP)进行了一项全面研究,探究基因变异如何影响对饮食和衰老的反应。我们对饮食限制对寿命、运动活性、干重和热击倒时间的影响进行了数量遗传学分析。运动活性、干重和热击倒时间是在同一批果蝇个体上测量的。我们发现所有性状均存在显著的基因型与饮食互作(GDI)和基因型与年龄互作(GAI)。因此,环境因素在塑造不同年龄和饮食条件下的性状变异中起着关键作用,和/或不同的基因变异在不同年龄和饮食条件下影响这些性状。我们的全基因组关联研究还确定了一个与年龄依赖性饮食反应相关的数量性状位点。观察到的GDI和GAI表明,随着生物体衰老,对环境影响的易感性会发生变化,这可能对旨在促进人类健康衰老的饮食建议和干预措施具有重要意义。DNA序列变异与年龄依赖性饮食反应之间关联的确定为研究这些相互作用背后的遗传机制开辟了新途径。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2c47/11761520/0788dcef5495/nihpp-2025.01.09.632132v1-f0001.jpg

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