预测阻力训练对压腿成绩影响的基因型-表型模型。

IF 2 4区 医学 Q2 SPORT SCIENCES
International journal of sports medicine Pub Date : 2024-06-01 Epub Date: 2023-12-20 DOI:10.1055/a-2234-0159
Tao Mei, Yanchun Li, Xiaoxia Li, Xiaolin Yang, Liang Li, Xu Yan, Zi-Hong He
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引用次数: 0

摘要

本研究建立了一个全面的基因型-表型模型,用于预测阻力训练对压腿表现的影响。一组不运动的成年人(193 人)接受了为期 12 周的阻力训练,并在干预前后测量了最大等速压腿峰值力、肌肉质量和厚度。进行了全基因组基因分型,全基因组关联分析发现了 85 个与训练后压腿力量变化显著相关的新 SNPs。使用逐步线性回归法构建了一个预测模型,其中包含 7 个先导 SNPs,它们解释了 40.4% 的训练效果变异。多基因评分与压腿力量的变化呈显著正相关。通过整合基因组标记和表型指标,综合预测模型解释了 75.4% 的训练效果变异。此外,研究还发现五个 SNPs 与 REACTOME 通路有关,可能会影响肌肉收缩、新陈代谢、生长和发育。个体对阻力训练的反应各不相同,压腿力量的变化从-55.83%到151.20%不等。该研究强调了遗传因素在预测训练结果方面的重要性,并深入揭示了阻力训练效应背后的潜在生物功能。该综合模型为基于个体遗传特征和表型特征的个性化健身计划提供了有价值的指导。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Genotype-Phenotype Model for Predicting Resistance Training Effects on Leg Press Performance.

This study develops a comprehensive genotype-phenotype model for predicting the effects of resistance training on leg press performance. A cohort of physically inactive adults (N=193) underwent 12 weeks of resistance training, and measurements of maximum isokinetic leg press peak force, muscle mass, and thickness were taken before and after the intervention. Whole-genome genotyping was performed, and genome-wide association analysis identified 85 novel SNPs significantly associated with changes in leg press strength after training. A prediction model was constructed using stepwise linear regression, incorporating seven lead SNPs that explained 40.4% of the training effect variance. The polygenic score showed a significant positive correlation with changes in leg press strength. By integrating genomic markers and phenotypic indicators, the comprehensive prediction model explained 75.4% of the variance in the training effect. Additionally, five SNPs were found to potentially impact muscle contraction, metabolism, growth, and development through their association with REACTOME pathways. Individual responses to resistance training varied, with changes in leg press strength ranging from -55.83% to 151.20%. The study highlights the importance of genetic factors in predicting training outcomes and provides insights into the potential biological functions underlying resistance training effects. The comprehensive model offers valuable guidance for personalized fitness programs based on individual genetic profiles and phenotypic characteristics.

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来源期刊
CiteScore
4.80
自引率
4.00%
发文量
111
审稿时长
3-8 weeks
期刊介绍: The IJSM provides a forum for the publication of papers dealing with both basic and applied information that advance the field of sports medicine and exercise science, and offer a better understanding of biomedicine. The journal publishes original papers, reviews, short communications, and letters to the Editors.
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