基因型在多大程度上能预测优秀男女运动员的表现性力量表现?

IF 2.8 3区 医学 Q2 SPORT SCIENCES
Journal of Human Kinetics Pub Date : 2024-12-06 eCollection Date: 2025-01-01 DOI:10.5114/jhk/190679
Lukas Reichert, Sebastian Hacker, Michael Mutz, Markus Raab, Lena Wiese, Karsten Krüger, Karen Zentgraf
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引用次数: 0

摘要

通过确定特定的单核苷酸多态性(snp)与力量表现之间的关联,力量表现在精英运动员中的作用得到了丰富。为了加深我们对这种关联的理解,本研究的目的是探讨精英运动员基因型和表型之间的关系。对278名德国国家队运动员(男156名,女122名)进行基因分型,并对他们在反动作跳跃测试(CMJ)和10米短跑中的表现进行评估。采用卡方检验分析基因型分布。采用Spearman相关性来检验所选snp(如ACTN3、AGT、HSD17B14、IP6K3、MTRR、UCP2和VDR)与CMJ和短跑成绩之间的关系。计算性别特异性多基因“总基因型得分”(Total Genotype Scores, TGSsig)。采用线性回归评价TGSsig对电力性能的预测能力。TGSsig解释了男女CMJ和冲刺表现10%的差异。在男性中,AGT、VDR与CMJ、IP6K3与短跑成绩之间存在相关性(p < 0.05)。在女性中,ACTN3、AGT和UCP2与CMJ相关,而HSD17B14、MTRR和UCP2与短跑成绩相关(p < 0.05)。DMD和MPRIP基因型分布在性别间存在显著差异。我们的研究结果加强了权力部分可遗传的观点,然而,基因型仅部分(10%)决定权力表现。在未来的纵向研究中,运动员基因型对个人表现发展的作用应该被调查。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

How Much Can the Genotype Predict Phenotypical Power Performance in Elite Male and Female Athletes?

How Much Can the Genotype Predict Phenotypical Power Performance in Elite Male and Female Athletes?

How Much Can the Genotype Predict Phenotypical Power Performance in Elite Male and Female Athletes?

The role of power performance in elite athletes has been enriched by identifying associations between specific single nucleotide polymorphisms (SNPs) and power performance. To deepen our understanding of this association, the objective of this study was to explore the relationship between the genotype and the phenotype in elite athletes. A total of 278 German national squad athletes (156 males, 122 females) underwent genotyping, and their performance in a countermovement jump test (CMJ) and 10-m sprint was assessed. Genotype distribution was analyzed using Chi-square tests. Spearman correlation was employed to examine associations between selected SNPs (e.g., ACTN3, AGT, HSD17B14, IP6K3, MTRR, UCP2, and VDR) and CMJ and sprint performances. Gender-specific polygenic "Total Genotype Scores" (TGSsig) were calculated. Predictive power of TGSsig on power performance was evaluated using linear regression. TGSsig explained 10% of variance in CMJ and sprint performance in both genders. Among males, correlations were identified between AGT and VDR with the CMJ as well as between IP6K3 and sprint performance (p < 0.05). In females, ACTN3, AGT, and UCP2 exhibited associations with the CMJ, while HSD17B14, MTRR, and UCP2 were correlated with sprint performance (p < 0.05). Significant differences in genotype distribution between genders were observed for DMD and MPRIP. Our findings strengthen the idea of power being partly heritable, however, the genotype only partially, by 10%, determines power performance. The role of the athletes' genotype for individual performance development should be investigated in future longitudinal studies.

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来源期刊
Journal of Human Kinetics
Journal of Human Kinetics 医学-运动科学
CiteScore
4.80
自引率
0.00%
发文量
83
审稿时长
3 months
期刊介绍: The Journal of Human Kinetics is an open access interdisciplinary periodical offering the latest research in the science of human movement studies. This comprehensive professional journal features articles and research notes encompassing such topic areas as: Kinesiology, Exercise Physiology and Nutrition, Sports Training and Behavioural Sciences in Sport, but especially considering elite and competitive aspects of sport. The journal publishes original papers, invited reviews, short communications and letters to the Editors. Manuscripts submitted to the journal must contain novel data on theoretical or experimental research or on practical applications in the field of sport sciences. The Journal of Human Kinetics is published in March, June, September and December. We encourage scientists from around the world to submit their papers to our periodical.
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