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Erschienen in: European Journal of Applied Physiology 8/2022

16.04.2022 | Invited Review

Genetics and sports performance: the present and future in the identification of talent for sports based on DNA testing

verfasst von: David Varillas-Delgado, Juan Del Coso, Jorge Gutiérrez-Hellín, Millán Aguilar-Navarro, Alejandro Muñoz, Antonio Maestro, Esther Morencos

Erschienen in: European Journal of Applied Physiology | Ausgabe 8/2022

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Abstract

The impact of genetics on physiology and sports performance is one of the most debated research aspects in sports sciences. Nearly 200 genetic polymorphisms have been found to influence sports performance traits, and over 20 polymorphisms may condition the status of the elite athlete. However, with the current evidence, it is certainly too early a stage to determine how to use genotyping as a tool for predicting exercise/sports performance or improving current methods of training. Research on this topic presents methodological limitations such as the lack of measurement of valid exercise performance phenotypes that make the study results difficult to interpret. Additionally, many studies present an insufficient cohort of athletes, or their classification as elite is dubious, which may introduce expectancy effects. Finally, the assessment of a progressively higher number of polymorphisms in the studies and the introduction of new analysis tools, such as the total genotype score (TGS) and genome-wide association studies (GWAS), have produced a considerable advance in the power of the analyses and a change from the study of single variants to determine pathways and systems associated with performance. The purpose of the present study was to comprehensively review evidence on the impact of genetics on endurance- and power-based exercise performance to clearly determine the potential utility of genotyping for detecting sports talent, enhancing training, or preventing exercise-related injuries, and to present an overview of recent research that has attempted to correct the methodological issues found in previous investigations.
Literatur
Zurück zum Zitat Ahmetov I, Kulemin N, Popov D, Naumov V, Akimov E, Bravy Y, Egorova E, Galeeva A, Generozov E, Kostryukova E, Larin A, Mustafina L, Ospanova E, Pavlenko A, Starnes L, Żmijewski P, Alexeev D, Vinogradova O, Govorun V (2015) Genome-wide association study identifies three novel genetic markers associated with elite endurance performance. Biol Sport 32(1):3–9. https://doi.org/10.5604/20831862.1124568CrossRefPubMed Ahmetov I, Kulemin N, Popov D, Naumov V, Akimov E, Bravy Y, Egorova E, Galeeva A, Generozov E, Kostryukova E, Larin A, Mustafina L, Ospanova E, Pavlenko A, Starnes L, Żmijewski P, Alexeev D, Vinogradova O, Govorun V (2015) Genome-wide association study identifies three novel genetic markers associated with elite endurance performance. Biol Sport 32(1):3–9. https://​doi.​org/​10.​5604/​20831862.​1124568CrossRefPubMed
Zurück zum Zitat Al-Khelaifi F, Yousri NA, Diboun I, Semenova EA, Kostryukova ES, Kulemin NA, Borisov OV, Andryushchenko LB, Larin AK, Generozov EV, Miyamoto-Mikami E, Murakami H, Zempo H, Miyachi M, Takaragawa M, Kumagai H, Naito H, Fuku N, Abraham D, Hingorani A, Donati F, Botrè F, Georgakopoulos C, Suhre K, Ahmetov II, Albagha O, Elrayess MA (2020) Genome-wide association study reveals a novel association between MYBPC3 gene polymorphism, endurance athlete status, aerobic capacity and steroid metabolism. Front Genet 11:595. https://doi.org/10.3389/fgene.2020.00595CrossRefPubMedPubMedCentral Al-Khelaifi F, Yousri NA, Diboun I, Semenova EA, Kostryukova ES, Kulemin NA, Borisov OV, Andryushchenko LB, Larin AK, Generozov EV, Miyamoto-Mikami E, Murakami H, Zempo H, Miyachi M, Takaragawa M, Kumagai H, Naito H, Fuku N, Abraham D, Hingorani A, Donati F, Botrè F, Georgakopoulos C, Suhre K, Ahmetov II, Albagha O, Elrayess MA (2020) Genome-wide association study reveals a novel association between MYBPC3 gene polymorphism, endurance athlete status, aerobic capacity and steroid metabolism. Front Genet 11:595. https://​doi.​org/​10.​3389/​fgene.​2020.​00595CrossRefPubMedPubMedCentral
Zurück zum Zitat Baltazar-Martins G, Gutiérrez-Hellín J, Aguilar-Navarro M, Ruiz-Moreno C, Moreno-Pérez V, López-Samanes Á, Domínguez R, Del Coso J (2020) Effect of ACTN3 genotype on sports performance, exercise-induced muscle damage, and injury epidemiology. Sports (Basel). https://doi.org/10.3390/sports8070099CrossRef Baltazar-Martins G, Gutiérrez-Hellín J, Aguilar-Navarro M, Ruiz-Moreno C, Moreno-Pérez V, López-Samanes Á, Domínguez R, Del Coso J (2020) Effect of ACTN3 genotype on sports performance, exercise-induced muscle damage, and injury epidemiology. Sports (Basel). https://​doi.​org/​10.​3390/​sports8070099CrossRef
Zurück zum Zitat Bergh U, Thorstensson A, Sjödin B, Hulten B, Piehl K, Karlsson J (1978) Maximal oxygen uptake and muscle fiber types in trained and untrained humans. Med Sci Sports 10(3):151–154PubMed Bergh U, Thorstensson A, Sjödin B, Hulten B, Piehl K, Karlsson J (1978) Maximal oxygen uptake and muscle fiber types in trained and untrained humans. Med Sci Sports 10(3):151–154PubMed
Zurück zum Zitat Bouchard C, Rankinen T, Chagnon YC, Rice T, Pérusse L, Gagnon J, Borecki I, An P, Leon AS, Skinner JS, Wilmore JH, Province M, Rao DC (2000) Genomic scan for maximal oxygen uptake and its response to training in the HERITAGE Family Study. J Appl Physiol (1985) 88 (2):551–559. https://doi.org/10.1152/jappl.2000.88.2.551 Bouchard C, Rankinen T, Chagnon YC, Rice T, Pérusse L, Gagnon J, Borecki I, An P, Leon AS, Skinner JS, Wilmore JH, Province M, Rao DC (2000) Genomic scan for maximal oxygen uptake and its response to training in the HERITAGE Family Study. J Appl Physiol (1985) 88 (2):551–559. https://​doi.​org/​10.​1152/​jappl.​2000.​88.​2.​551
Zurück zum Zitat Brooks GA (1985) Anaerobic threshold: review of the concept and directions for future research. Med Sci Sports Exerc 17(1):22–34PubMed Brooks GA (1985) Anaerobic threshold: review of the concept and directions for future research. Med Sci Sports Exerc 17(1):22–34PubMed
Zurück zum Zitat Calabrese C, Davidson NR, Demircioğlu D, Fonseca NA, He Y, Kahles A, Lehmann KV, Liu F, Shiraishi Y, Soulette CM, Urban L, Greger L, Li S, Liu D, Perry MD, Xiang Q, Zhang F, Zhang J, Bailey P, Erkek S, Hoadley KA, Hou Y, Huska MR, Kilpinen H, Korbel JO, Marin MG, Markowski J, Nandi T, Pan-Hammarström Q, Pedamallu CS, Siebert R, Stark SG, Su H, Tan P, Waszak SM, Yung C, Zhu S, Awadalla P, Creighton CJ, Meyerson M, Ouellette BFF, Wu K, Yang H, Brazma A, Brooks AN, Göke J, Rätsch G, Schwarz RF, Stegle O, Zhang Z (2020) Genomic basis for RNA alterations in cancer. Nature 578(7793):129–136. https://doi.org/10.1038/s41586-020-1970-0CrossRefPubMedPubMedCentral Calabrese C, Davidson NR, Demircioğlu D, Fonseca NA, He Y, Kahles A, Lehmann KV, Liu F, Shiraishi Y, Soulette CM, Urban L, Greger L, Li S, Liu D, Perry MD, Xiang Q, Zhang F, Zhang J, Bailey P, Erkek S, Hoadley KA, Hou Y, Huska MR, Kilpinen H, Korbel JO, Marin MG, Markowski J, Nandi T, Pan-Hammarström Q, Pedamallu CS, Siebert R, Stark SG, Su H, Tan P, Waszak SM, Yung C, Zhu S, Awadalla P, Creighton CJ, Meyerson M, Ouellette BFF, Wu K, Yang H, Brazma A, Brooks AN, Göke J, Rätsch G, Schwarz RF, Stegle O, Zhang Z (2020) Genomic basis for RNA alterations in cancer. Nature 578(7793):129–136. https://​doi.​org/​10.​1038/​s41586-020-1970-0CrossRefPubMedPubMedCentral
Zurück zum Zitat Hakimi P, Yang J, Casadesus G, Massillon D, Tolentino-Silva F, Nye CK, Cabrera ME, Hagen DR, Utter CB, Baghdy Y, Johnson DH, Wilson DL, Kirwan JP, Kalhan SC, Hanson RW (2007) Overexpression of the cytosolic form of phosphoenolpyruvate carboxykinase (GTP) in skeletal muscle repatterns energy metabolism in the mouse. J Biol Chem 282(45):32844–32855. https://doi.org/10.1074/jbc.M706127200CrossRefPubMed Hakimi P, Yang J, Casadesus G, Massillon D, Tolentino-Silva F, Nye CK, Cabrera ME, Hagen DR, Utter CB, Baghdy Y, Johnson DH, Wilson DL, Kirwan JP, Kalhan SC, Hanson RW (2007) Overexpression of the cytosolic form of phosphoenolpyruvate carboxykinase (GTP) in skeletal muscle repatterns energy metabolism in the mouse. J Biol Chem 282(45):32844–32855. https://​doi.​org/​10.​1074/​jbc.​M706127200CrossRefPubMed
Zurück zum Zitat Holdys J, Gronek P, Kryściak J, Stanisławski D (2013) Genetic variants of uncoupling proteins-2 and -3 in relation to maximal oxygen uptake in different sports. Acta Biochim Pol 60(1):71–75CrossRef Holdys J, Gronek P, Kryściak J, Stanisławski D (2013) Genetic variants of uncoupling proteins-2 and -3 in relation to maximal oxygen uptake in different sports. Acta Biochim Pol 60(1):71–75CrossRef
Zurück zum Zitat Hon CC, Ramilowski JA, Harshbarger J, Bertin N, Rackham OJ, Gough J, Denisenko E, Schmeier S, Poulsen TM, Severin J, Lizio M, Kawaji H, Kasukawa T, Itoh M, Burroughs AM, Noma S, Djebali S, Alam T, Medvedeva YA, Testa AC, Lipovich L, Yip CW, Abugessaisa I, Mendez M, Hasegawa A, Tang D, Lassmann T, Heutink P, Babina M, Wells CA, Kojima S, Nakamura Y, Suzuki H, Daub CO, de Hoon MJ, Arner E, Hayashizaki Y, Carninci P, Forrest AR (2017) An atlas of human long non-coding RNAs with accurate 5’ ends. Nature 543(7644):199–204. https://doi.org/10.1038/nature21374CrossRefPubMedPubMedCentral Hon CC, Ramilowski JA, Harshbarger J, Bertin N, Rackham OJ, Gough J, Denisenko E, Schmeier S, Poulsen TM, Severin J, Lizio M, Kawaji H, Kasukawa T, Itoh M, Burroughs AM, Noma S, Djebali S, Alam T, Medvedeva YA, Testa AC, Lipovich L, Yip CW, Abugessaisa I, Mendez M, Hasegawa A, Tang D, Lassmann T, Heutink P, Babina M, Wells CA, Kojima S, Nakamura Y, Suzuki H, Daub CO, de Hoon MJ, Arner E, Hayashizaki Y, Carninci P, Forrest AR (2017) An atlas of human long non-coding RNAs with accurate 5’ ends. Nature 543(7644):199–204. https://​doi.​org/​10.​1038/​nature21374CrossRefPubMedPubMedCentral
Zurück zum Zitat Issurin V (2008) Block periodization versus traditional training theory: a review. J Sports Med Phys Fit 48(1):65–75 Issurin V (2008) Block periodization versus traditional training theory: a review. J Sports Med Phys Fit 48(1):65–75
Zurück zum Zitat Kalafi EY, Nor NAM, Taib NA, Ganggayah MD, Town C, Dhillon SK (2019) Machine learning and deep learning approaches in breast cancer survival prediction using clinical data. Folia Biol (Praha) 65(5–6):212–220 Kalafi EY, Nor NAM, Taib NA, Ganggayah MD, Town C, Dhillon SK (2019) Machine learning and deep learning approaches in breast cancer survival prediction using clinical data. Folia Biol (Praha) 65(5–6):212–220
Zurück zum Zitat Lucía A, Gómez-Gallego F, Chicharro JL, Hoyos J, Celaya K, Córdova A, Villa G, Alonso JM, Barriopedro M, Pérez M, Earnest CP (2005) Is there an association between ACE and CKMM polymorphisms and cycling performance status during 3-week races? Int J Sports Med 26(6):442–447. https://doi.org/10.1055/s-2004-821108CrossRefPubMed Lucía A, Gómez-Gallego F, Chicharro JL, Hoyos J, Celaya K, Córdova A, Villa G, Alonso JM, Barriopedro M, Pérez M, Earnest CP (2005) Is there an association between ACE and CKMM polymorphisms and cycling performance status during 3-week races? Int J Sports Med 26(6):442–447. https://​doi.​org/​10.​1055/​s-2004-821108CrossRefPubMed
Zurück zum Zitat Mägi A, Unt E, Prans E, Raus L, Eha J, Veraksitš A, Kingo K, Kõks S (2016) The association analysis between ACE and ACTN3 genes polymorphisms and endurance capacity in young cross-country skiers: longitudinal study. J Sports Sci Med 15(2):287–294PubMedPubMedCentral Mägi A, Unt E, Prans E, Raus L, Eha J, Veraksitš A, Kingo K, Kõks S (2016) The association analysis between ACE and ACTN3 genes polymorphisms and endurance capacity in young cross-country skiers: longitudinal study. J Sports Sci Med 15(2):287–294PubMedPubMedCentral
Zurück zum Zitat Moir HJ, Kemp R, Folkerts D, Spendiff O, Pavlidis C, Opara E (2019) Genes and elite marathon running performance: a systematic review. J Sports Sci Med 18(3):559–568PubMedPubMedCentral Moir HJ, Kemp R, Folkerts D, Spendiff O, Pavlidis C, Opara E (2019) Genes and elite marathon running performance: a systematic review. J Sports Sci Med 18(3):559–568PubMedPubMedCentral
Zurück zum Zitat Montgomery HE, Marshall R, Hemingway H, Myerson S, Clarkson P, Dollery C, Hayward M, Holliman DE, Jubb M, World M, Thomas EL, Brynes AE, Saeed N, Barnard M, Bell JD, Prasad K, Rayson M, Talmud PJ, Humphries SE (1998) Human gene for physical performance. Nature 393(6682):221–222. https://doi.org/10.1038/30374CrossRefPubMed Montgomery HE, Marshall R, Hemingway H, Myerson S, Clarkson P, Dollery C, Hayward M, Holliman DE, Jubb M, World M, Thomas EL, Brynes AE, Saeed N, Barnard M, Bell JD, Prasad K, Rayson M, Talmud PJ, Humphries SE (1998) Human gene for physical performance. Nature 393(6682):221–222. https://​doi.​org/​10.​1038/​30374CrossRefPubMed
Zurück zum Zitat Mustafina LJ, Naumov VA, Cieszczyk P, Popov DV, Lyubaeva EV, Kostryukova ES, Fedotovskaya ON, Druzhevskaya AM, Astratenkova IV, Glotov AS, Alexeev DG, Mustafina MM, Egorova ES, Maciejewska-Karłowska A, Larin AK, Generozov EV, Nurullin RE, Jastrzębski Z, Kulemin NA, Ospanova EA, Pavlenko AV, Sawczuk M, Akimov EB, Danilushkina AA, Zmijewski P, Vinogradova OL, Govorun VM, Ahmetov II (2014) AGTR2 gene polymorphism is associated with muscle fibre composition, athletic status and aerobic performance. Exp Physiol 99(8):1042–1052. https://doi.org/10.1113/expphysiol.2014.079335CrossRefPubMed Mustafina LJ, Naumov VA, Cieszczyk P, Popov DV, Lyubaeva EV, Kostryukova ES, Fedotovskaya ON, Druzhevskaya AM, Astratenkova IV, Glotov AS, Alexeev DG, Mustafina MM, Egorova ES, Maciejewska-Karłowska A, Larin AK, Generozov EV, Nurullin RE, Jastrzębski Z, Kulemin NA, Ospanova EA, Pavlenko AV, Sawczuk M, Akimov EB, Danilushkina AA, Zmijewski P, Vinogradova OL, Govorun VM, Ahmetov II (2014) AGTR2 gene polymorphism is associated with muscle fibre composition, athletic status and aerobic performance. Exp Physiol 99(8):1042–1052. https://​doi.​org/​10.​1113/​expphysiol.​2014.​079335CrossRefPubMed
Zurück zum Zitat Papadimitriou ID, Lucia A, Pitsiladis YP, Pushkarev VP, Dyatlov DA, Orekhov EF, Artioli GG, Guilherme JP, Lancha AH Jr, Ginevičienė V, Cieszczyk P, Maciejewska-Karlowska A, Sawczuk M, Muniesa CA, Kouvatsi A, Massidda M, Calò CM, Garton F, Houweling PJ, Wang G, Austin K, Druzhevskaya AM, Astratenkova IV, Ahmetov II, Bishop DJ, North KN, Eynon N (2016) ACTN3 R577X and ACE I/D gene variants influence performance in elite sprinters: a multi-cohort study. BMC Genom 17:285. https://doi.org/10.1186/s12864-016-2462-3CrossRef Papadimitriou ID, Lucia A, Pitsiladis YP, Pushkarev VP, Dyatlov DA, Orekhov EF, Artioli GG, Guilherme JP, Lancha AH Jr, Ginevičienė V, Cieszczyk P, Maciejewska-Karlowska A, Sawczuk M, Muniesa CA, Kouvatsi A, Massidda M, Calò CM, Garton F, Houweling PJ, Wang G, Austin K, Druzhevskaya AM, Astratenkova IV, Ahmetov II, Bishop DJ, North KN, Eynon N (2016) ACTN3 R577X and ACE I/D gene variants influence performance in elite sprinters: a multi-cohort study. BMC Genom 17:285. https://​doi.​org/​10.​1186/​s12864-016-2462-3CrossRef
Zurück zum Zitat Papadimitriou ID, Lockey SJ, Voisin S, Herbert AJ, Garton F, Houweling PJ, Cieszczyk P, Maciejewska-Skrendo A, Sawczuk M, Massidda M, Calo CM, Astratenkova IV, Kouvatsi A, Druzhevskaya AM, Jacques M, Ahmetov II, Stebbings GK, Heffernan S, Day SH, Erskine R, Pedlar C, Kipps C, North KN, Williams AG, Eynon N (2018) No association between ACTN3 R577X and ACE I/D polymorphisms and endurance running times in 698 Caucasian athletes. BMC Genom 19(1):13. https://doi.org/10.1186/s12864-017-4412-0CrossRef Papadimitriou ID, Lockey SJ, Voisin S, Herbert AJ, Garton F, Houweling PJ, Cieszczyk P, Maciejewska-Skrendo A, Sawczuk M, Massidda M, Calo CM, Astratenkova IV, Kouvatsi A, Druzhevskaya AM, Jacques M, Ahmetov II, Stebbings GK, Heffernan S, Day SH, Erskine R, Pedlar C, Kipps C, North KN, Williams AG, Eynon N (2018) No association between ACTN3 R577X and ACE I/D polymorphisms and endurance running times in 698 Caucasian athletes. BMC Genom 19(1):13. https://​doi.​org/​10.​1186/​s12864-017-4412-0CrossRef
Zurück zum Zitat Pickering C, Suraci B, Semenova EA, Boulygina EA, Kostryukova ES, Kulemin NA, Borisov OV, Khabibova SA, Larin AK, Pavlenko AV, Lyubaeva EV, Popov DV, Lysenko EA, Vepkhvadze TF, Lednev EM, Leońska-Duniec A, Pająk B, Chycki J, Moska W, Lulińska-Kuklik E, Dornowski M, Maszczyk A, Bradley B, Kana-Ah A, Cięszczyk P, Generozov EV, Ahmetov II (2019b) A genome-wide association study of sprint performance in elite youth football players. J Strength Cond Res 33(9):2344–2351. https://doi.org/10.1519/jsc.0000000000003259CrossRefPubMed Pickering C, Suraci B, Semenova EA, Boulygina EA, Kostryukova ES, Kulemin NA, Borisov OV, Khabibova SA, Larin AK, Pavlenko AV, Lyubaeva EV, Popov DV, Lysenko EA, Vepkhvadze TF, Lednev EM, Leońska-Duniec A, Pająk B, Chycki J, Moska W, Lulińska-Kuklik E, Dornowski M, Maszczyk A, Bradley B, Kana-Ah A, Cięszczyk P, Generozov EV, Ahmetov II (2019b) A genome-wide association study of sprint performance in elite youth football players. J Strength Cond Res 33(9):2344–2351. https://​doi.​org/​10.​1519/​jsc.​0000000000003259​CrossRefPubMed
Zurück zum Zitat Rubio JC, Martin MA, Rabadan M, Gomez-Gallego F, San Juan AF, Alonso JM, Chicharro JL, Perez M, Arenas J, Lucia A (2005) Frequency of the C34T mutation of the AMPD1 gene in world-class endurance athletes: does this mutation impair performance? J Appl Physiol (1985) 98 (6):2108– 2112. https://doi.org/10.1152/japplphysiol.01371.2004 Rubio JC, Martin MA, Rabadan M, Gomez-Gallego F, San Juan AF, Alonso JM, Chicharro JL, Perez M, Arenas J, Lucia A (2005) Frequency of the C34T mutation of the AMPD1 gene in world-class endurance athletes: does this mutation impair performance? J Appl Physiol (1985) 98 (6):2108– 2112. https://​doi.​org/​10.​1152/​japplphysiol.​01371.​2004
Zurück zum Zitat Tanisawa K, Wang G, Seto J, Verdouka I, Twycross-Lewis R, Karanikolou A, Tanaka M, Borjesson M, Di Luigi L, Dohi M, Wolfarth B, Swart J, Bilzon JLJ, Badtieva V, Papadopoulou T, Casasco M, Geistlinger M, Bachl N, Pigozzi F, Pitsiladis Y (2020) Sport and exercise genomics: the FIMS 2019 consensus statement update. Br J Sports Med 54(16):969–975. https://doi.org/10.1136/bjsports-2019-101532CrossRefPubMed Tanisawa K, Wang G, Seto J, Verdouka I, Twycross-Lewis R, Karanikolou A, Tanaka M, Borjesson M, Di Luigi L, Dohi M, Wolfarth B, Swart J, Bilzon JLJ, Badtieva V, Papadopoulou T, Casasco M, Geistlinger M, Bachl N, Pigozzi F, Pitsiladis Y (2020) Sport and exercise genomics: the FIMS 2019 consensus statement update. Br J Sports Med 54(16):969–975. https://​doi.​org/​10.​1136/​bjsports-2019-101532CrossRefPubMed
Zurück zum Zitat Timmons JA, Knudsen S, Rankinen T, Koch LG, Sarzynski M, Jensen T, Keller P, Scheele C, Vollaard NB, Nielsen S, Akerström T, MacDougald OA, Jansson E, Greenhaff PL, Tarnopolsky MA, van Loon LJ, Pedersen BK, Sundberg CJ, Wahlestedt C, Britton SL, Bouchard C (2010) Using molecular classification to predict gains in maximal aerobic capacity following endurance exercise training in humans. J Appl Physiol (1985) 108 (6):1487–1496. https://doi.org/10.1152/japplphysiol.01295.2009 Timmons JA, Knudsen S, Rankinen T, Koch LG, Sarzynski M, Jensen T, Keller P, Scheele C, Vollaard NB, Nielsen S, Akerström T, MacDougald OA, Jansson E, Greenhaff PL, Tarnopolsky MA, van Loon LJ, Pedersen BK, Sundberg CJ, Wahlestedt C, Britton SL, Bouchard C (2010) Using molecular classification to predict gains in maximal aerobic capacity following endurance exercise training in humans. J Appl Physiol (1985) 108 (6):1487–1496. https://​doi.​org/​10.​1152/​japplphysiol.​01295.​2009
Zurück zum Zitat Webborn N, Williams A, McNamee M, Bouchard C, Pitsiladis Y, Ahmetov I, Ashley E, Byrne N, Camporesi S, Collins M, Dijkstra P, Eynon N, Fuku N, Garton FC, Hoppe N, Holm S, Kaye J, Klissouras V, Lucia A, Maase K, Moran C, North KN, Pigozzi F, Wang G (2015) Direct-to-consumer genetic testing for predicting sports performance and talent identification: consensus statement. Br J Sports Med 49(23):1486–1491. https://doi.org/10.1136/bjsports-2015-095343CrossRefPubMed Webborn N, Williams A, McNamee M, Bouchard C, Pitsiladis Y, Ahmetov I, Ashley E, Byrne N, Camporesi S, Collins M, Dijkstra P, Eynon N, Fuku N, Garton FC, Hoppe N, Holm S, Kaye J, Klissouras V, Lucia A, Maase K, Moran C, North KN, Pigozzi F, Wang G (2015) Direct-to-consumer genetic testing for predicting sports performance and talent identification: consensus statement. Br J Sports Med 49(23):1486–1491. https://​doi.​org/​10.​1136/​bjsports-2015-095343CrossRefPubMed
Zurück zum Zitat Yan X, Dvir N, Jacques M, Cavalcante L, Papadimitriou ID, Munson F, Kuang J, Garnham A, Landen S, Li J, O'Keefe L, Tirosh O, Bishop DJ, Voisin S, Eynon N (2018) ACE I/D gene variant predicts ACE enzyme content in blood but not the ACE, UCP2, and UCP3 protein content in human skeletal muscle in the Gene SMART study. J Appl Physiol (1985) 125 (3):923–930. https://doi.org/10.1152/japplphysiol.00344.2018 Yan X, Dvir N, Jacques M, Cavalcante L, Papadimitriou ID, Munson F, Kuang J, Garnham A, Landen S, Li J, O'Keefe L, Tirosh O, Bishop DJ, Voisin S, Eynon N (2018) ACE I/D gene variant predicts ACE enzyme content in blood but not the ACE, UCP2, and UCP3 protein content in human skeletal muscle in the Gene SMART study. J Appl Physiol (1985) 125 (3):923–930. https://​doi.​org/​10.​1152/​japplphysiol.​00344.​2018
Zurück zum Zitat Yan X, Dvir N, Jacques M, Cavalcante L, Papadimitriou ID, Munson F, Kuang J, Garnham A, Landen S, Li J, O’Keefe L, Tirosh O, Bishop DJ, Voisin S (1985) Eynon N (2018) ACE I/D gene variant predicts ACE enzyme content in blood but not the ACE, UCP2, and UCP3 protein content in human skeletal muscle in the Gene SMART study. J Appl Physiol 125(3):923–930. https://doi.org/10.1152/japplphysiol.00344.2018CrossRef Yan X, Dvir N, Jacques M, Cavalcante L, Papadimitriou ID, Munson F, Kuang J, Garnham A, Landen S, Li J, O’Keefe L, Tirosh O, Bishop DJ, Voisin S (1985) Eynon N (2018) ACE I/D gene variant predicts ACE enzyme content in blood but not the ACE, UCP2, and UCP3 protein content in human skeletal muscle in the Gene SMART study. J Appl Physiol 125(3):923–930. https://​doi.​org/​10.​1152/​japplphysiol.​00344.​2018CrossRef
Zurück zum Zitat Zhou W (2014) Advances in the genetics of exercise performance. Yi Chuan 36(4):301–308PubMed Zhou W (2014) Advances in the genetics of exercise performance. Yi Chuan 36(4):301–308PubMed
Metadaten
Titel
Genetics and sports performance: the present and future in the identification of talent for sports based on DNA testing
verfasst von
David Varillas-Delgado
Juan Del Coso
Jorge Gutiérrez-Hellín
Millán Aguilar-Navarro
Alejandro Muñoz
Antonio Maestro
Esther Morencos
Publikationsdatum
16.04.2022
Verlag
Springer Berlin Heidelberg
Erschienen in
European Journal of Applied Physiology / Ausgabe 8/2022
Print ISSN: 1439-6319
Elektronische ISSN: 1439-6327
DOI
https://doi.org/10.1007/s00421-022-04945-z

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Substanzkonsum und Nutzung von sozialen Medien, Computerspielen und Glücksspielen unter Auszubildenden an beruflichen Schulen

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Die Begrenzung von Schäden durch Substanzkonsum und andere abhängige Verhaltensweisen von Jugendlichen und jungen Erwachsenen ist ein wichtiges Anliegen der öffentlichen Gesundheit. Der Übergang von der Adoleszenz zum jungen Erwachsenenalter ist …

Berufsbelastung und Stressbewältigung von weiblichen und männlichen Auszubildenden

Leitthema

In der Öffentlichkeit wird die berufliche Ausbildung oftmals unter ökonomischen Gesichtspunkten diskutiert: Mit den geburtenstarken Jahrgängen gehen erfahrene Fachkräfte in Rente und von nachfolgenden Generationen rücken zu wenige Arbeitskräfte …

Rauschtrinken in der frühen Adoleszenz

COVID-19 Leitthema

Alkohol ist in Deutschland die mit Abstand am häufigsten konsumierte psychoaktive Substanz. Mehr als 2 Drittel aller Erwachsenen im Alter von 18 bis 64 Jahren (70,5 %) hat 2021 in den letzten 30 Tagen Alkohol konsumiert [ 1 ]. Von diesen …