Javascript must be enabled to continue!
Polygenic Profile of Elite Strength Athletes
View through CrossRef
Abstract
Moreland, E, Borisov, OV, Semenova, EA, Larin, AK, Andryushchenko, ON, Andryushchenko, LB, Generozov, EV, Williams, AG, and Ahmetov, II. Polygenic profile of elite strength athletes. J Strength Cond Res 36(9): 2509–2514, 2022—Strength is a heritable trait with unknown polygenic nature. So far, more than 200 DNA polymorphisms associated with strength/power phenotypes have been identified majorly involving nonathletic populations. The aim of the present study was to investigate individually and in combination the association of 217 DNA polymorphisms previously identified as markers for strength/power phenotypes with elite strength athlete status. A case-control study involved 83 Russian professional strength athletes (53 weightlifters, 30 powerlifters), 209 Russian and 503 European controls. Genotyping was conducted using micro-array analysis. Twenty-eight DNA polymorphisms (located near or in ABHD17C, ACTG1, ADCY3, ADPGK, ANGPT2, ARPP21, BCDIN3D, CRTAC1, DHODH, GBE1, IGF1, IL6, ITPR1, KIF1B, LRPPRC, MMS22L, MTHFR, NPIPB6, PHACTR1, PLEKHB1, PPARG, PPARGC1A, R3HDM1, RASGRF1, RMC1, SLC39A8, TFAP2D, ZKSCAN5 genes) were identified to have an association with strength athlete status. Next, to assess the combined impact of all 28 DNA polymorphisms, all athletes were classified according to the number of “strength” alleles they possessed. All highly elite strength athletes were carriers of at least 22 (up to 34) “strength” alleles, whereas 27.8% of Russian controls had less than 22 “strength” alleles (p < 0.0001). The proportion of subjects with a high (≥26) number of “strength” alleles was significantly greater in highly elite strength athletes (84.8%) compared with less successful strength athletes (64.9%; odd ratio [OR] = 3.0, p = 0.042), Russian (26.3%; OR = 15.6, p < 0.0001) or European (37.8%; OR = 6.4, p < 0.0001) controls. This is the first study to demonstrate that the likelihood of becoming an elite strength athlete depends on the carriage of a high number of strength-related alleles.
Title: Polygenic Profile of Elite Strength Athletes
Description:
Abstract
Moreland, E, Borisov, OV, Semenova, EA, Larin, AK, Andryushchenko, ON, Andryushchenko, LB, Generozov, EV, Williams, AG, and Ahmetov, II.
Polygenic profile of elite strength athletes.
J Strength Cond Res 36(9): 2509–2514, 2022—Strength is a heritable trait with unknown polygenic nature.
So far, more than 200 DNA polymorphisms associated with strength/power phenotypes have been identified majorly involving nonathletic populations.
The aim of the present study was to investigate individually and in combination the association of 217 DNA polymorphisms previously identified as markers for strength/power phenotypes with elite strength athlete status.
A case-control study involved 83 Russian professional strength athletes (53 weightlifters, 30 powerlifters), 209 Russian and 503 European controls.
Genotyping was conducted using micro-array analysis.
Twenty-eight DNA polymorphisms (located near or in ABHD17C, ACTG1, ADCY3, ADPGK, ANGPT2, ARPP21, BCDIN3D, CRTAC1, DHODH, GBE1, IGF1, IL6, ITPR1, KIF1B, LRPPRC, MMS22L, MTHFR, NPIPB6, PHACTR1, PLEKHB1, PPARG, PPARGC1A, R3HDM1, RASGRF1, RMC1, SLC39A8, TFAP2D, ZKSCAN5 genes) were identified to have an association with strength athlete status.
Next, to assess the combined impact of all 28 DNA polymorphisms, all athletes were classified according to the number of “strength” alleles they possessed.
All highly elite strength athletes were carriers of at least 22 (up to 34) “strength” alleles, whereas 27.
8% of Russian controls had less than 22 “strength” alleles (p < 0.
0001).
The proportion of subjects with a high (≥26) number of “strength” alleles was significantly greater in highly elite strength athletes (84.
8%) compared with less successful strength athletes (64.
9%; odd ratio [OR] = 3.
0, p = 0.
042), Russian (26.
3%; OR = 15.
6, p < 0.
0001) or European (37.
8%; OR = 6.
4, p < 0.
0001) controls.
This is the first study to demonstrate that the likelihood of becoming an elite strength athlete depends on the carriage of a high number of strength-related alleles.
Related Results
Functional Movement Screen® evaluation: comparison between elite and non-elite young swimmers
Functional Movement Screen® evaluation: comparison between elite and non-elite young swimmers
Functional Movement Screen® (FMS®) permite evaluar la funcionalidad del movimiento del atleta. La funcionalidad del movimiento en nadadores jóvenes de élite y no élite puede predec...
Analysis of the performances of the Ukrainian national freestyle wrestling team at the U23 World and European Championships
Analysis of the performances of the Ukrainian national freestyle wrestling team at the U23 World and European Championships
Purpose: to analyze the performances of the Ukrainian national team at the U23 World and European Championships. Material and Methods. The following methods were used in the resear...
Gender Role Orientation in Turkish Female Athletes and Non-Athletes
Gender Role Orientation in Turkish Female Athletes and Non-Athletes
The purpose of this study was to compare gender role orientation and classification of elite female athletes aged between 18 to 30 years with age-matched female non-athletes in Tur...
Interactions of genetic risks for autism and the broad autism phenotypes
Interactions of genetic risks for autism and the broad autism phenotypes
BackgroundCommon polygenic risk and de novo variants (DNVs) capture a small proportion of autism spectrum disorder (ASD) liability, and ASD phenotypic heterogeneity remains difficu...
PROFIL KONDISI FISIK ATLET PENCAK SILAT DI PSHT RAYON KEMBANGAN KABUPATEN MAGELANG
PROFIL KONDISI FISIK ATLET PENCAK SILAT DI PSHT RAYON KEMBANGAN KABUPATEN MAGELANG
Pencak Silat is a product of Indonesian society and part of the people's culture. therefore the culture produced is the culture of society. Community culture is a culture of mutual...
Postural balance ability and vertical jumping performance in female veteran volleyball athletes and non-athletes
Postural balance ability and vertical jumping performance in female veteran volleyball athletes and non-athletes
Lifetime participation in sports is associated with improved components of physical conditioning. The main purpose was to cross-sectionally investigate postural balance and vertica...
Assessment of Lipid Profiles among Athletes and Non-Athletes in Kalar City
Assessment of Lipid Profiles among Athletes and Non-Athletes in Kalar City
Regular and professional physical activity has a significant impact on general health, lipid status, and body composition., Lipid profiles and anthropometric measures are considere...
Health-Related Quality of Life in Athletes: A Systematic Review With Meta-Analysis
Health-Related Quality of Life in Athletes: A Systematic Review With Meta-Analysis
Context: Assessment of health-related quality of life (HRQOL) after injury is important. Differences in HRQOL between nonathletes and athletes and between injured and uninjured ath...

