Are the Positions in the Word Ranking of Competitive Alpine Skiers Explainable by Prominent Polymorphisms in Regulatory Genes of Mechanical and Metabolic Muscle Functioning?

Benedikt Gasser, Walter O Frey, Paola Valdivieso, Johannes Scherr, Juana Kopf, Jörg Spörri, Martin Flück
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Abstract

Background: The success of competitive alpine skiers with respective to their world ranking (WR) positions might be associated with prominent gene polymorphisms. Methods: Twenty-six competitive alpine skiers were followed from 2015 to 2019 for their WR positions (FIS-ranking). Using PCR, the genotypes of ACE-I/D, TNC, ACTN3, and PTK2 were identified. The correlations between the discipline-specific WR position (slalom-SL, giant slalom-GS, super G-SG, downhill-DH, and alpine combined-AC) and gene polymorphisms were analyzed concerning an influence with multivariate regression models. Results: The WR position and the ACE gene as well as the copy number of the ACE I-allele exhibited reciprocal relationships for speed specialists (SG and DH) but not for technical specialists (SL and GS). Similarly, the gene polymorphisms ACTN3 and (partly) PTK2 were associated with the WR position in disciplines characterized by a high number of turns (technical specialists-SL and GS) and speed (speed-specialists-SG and DH), respectively. Conclusions: Our findings emphasize the contributions of aerobic and cardiovascular metabolism in fueling muscle work and recovering from muscle fatigue for competitive success in slalom-driven skiing disciplines and highlight the contributions of sequence variants in the genes ACE, TNC, and ACTN3.

高山滑雪竞技运动员在单词排名中的位置是否可以用机械和代谢肌肉功能调控基因的显著多态性来解释?
背景:高山滑雪运动员在世界排名(WR)上的成功可能与突出的基因多态性有关。研究方法从 2015 年到 2019 年,对 26 名高山滑雪竞技选手的世界排名(FIS-ranking)进行了跟踪调查。通过 PCR,确定了 ACE-I/D、TNC、ACTN3 和 PTK2 的基因型。利用多变量回归模型分析了特定学科 WR 位置(大回转-SL、大回转-GS、超级大回转-SG、下坡-DH 和高山组合-AC)与基因多态性之间的相关性。结果显示WR位置和ACE基因以及ACE I-等位基因的拷贝数对速度型专家(SG和DH)呈现出互惠关系,而对技术型专家(SL和GS)则没有。同样,基因多态性 ACTN3 和(部分)PTK2 分别与以高转弯次数(技术专家-SL 和 GS)和速度(速度专家-SG 和 DH)为特征的学科中的 WR 位置有关。结论我们的研究结果强调了有氧代谢和心血管代谢在促进肌肉工作和恢复肌肉疲劳方面的贡献,这有助于在回转驱动滑雪项目中取得竞技成功,并强调了 ACE、TNC 和 ACTN3 基因序列变异的贡献。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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