Genomic analysis of male puberty timing highlights shared genetic basis with hair colour and lifespan
Age at voice-breaking is used to determine puberty timing in men, recall of which is considered less accurate than age at first menarche in women. Here, the authors perform multi-trait GWAS for male puberty timing by including both age at voice breaking and age of first facial hair for improved phen...
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Nature Portfolio
2020
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oai:doaj.org-article:052dee7053834455beecef916b0d9d002021-12-02T17:33:12ZGenomic analysis of male puberty timing highlights shared genetic basis with hair colour and lifespan10.1038/s41467-020-14451-52041-1723https://doaj.org/article/052dee7053834455beecef916b0d9d002020-03-01T00:00:00Zhttps://doi.org/10.1038/s41467-020-14451-5https://doaj.org/toc/2041-1723Age at voice-breaking is used to determine puberty timing in men, recall of which is considered less accurate than age at first menarche in women. Here, the authors perform multi-trait GWAS for male puberty timing by including both age at voice breaking and age of first facial hair for improved phenotype definition and power.Ben HollisFelix R. DayAlexander S. BuschDeborah J. ThompsonAna Luiza G. SoaresPaul R. H. J. TimmersAlex KwongDoug F. EastonPeter K. JoshiNicholas J. TimpsonThe PRACTICAL Consortium23andMe Research TeamKen K. OngJohn R. B. PerryNature PortfolioarticleScienceQENNature Communications, Vol 11, Iss 1, Pp 1-10 (2020) |
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Science Q Ben Hollis Felix R. Day Alexander S. Busch Deborah J. Thompson Ana Luiza G. Soares Paul R. H. J. Timmers Alex Kwong Doug F. Easton Peter K. Joshi Nicholas J. Timpson The PRACTICAL Consortium 23andMe Research Team Ken K. Ong John R. B. Perry Genomic analysis of male puberty timing highlights shared genetic basis with hair colour and lifespan |
description |
Age at voice-breaking is used to determine puberty timing in men, recall of which is considered less accurate than age at first menarche in women. Here, the authors perform multi-trait GWAS for male puberty timing by including both age at voice breaking and age of first facial hair for improved phenotype definition and power. |
format |
article |
author |
Ben Hollis Felix R. Day Alexander S. Busch Deborah J. Thompson Ana Luiza G. Soares Paul R. H. J. Timmers Alex Kwong Doug F. Easton Peter K. Joshi Nicholas J. Timpson The PRACTICAL Consortium 23andMe Research Team Ken K. Ong John R. B. Perry |
author_facet |
Ben Hollis Felix R. Day Alexander S. Busch Deborah J. Thompson Ana Luiza G. Soares Paul R. H. J. Timmers Alex Kwong Doug F. Easton Peter K. Joshi Nicholas J. Timpson The PRACTICAL Consortium 23andMe Research Team Ken K. Ong John R. B. Perry |
author_sort |
Ben Hollis |
title |
Genomic analysis of male puberty timing highlights shared genetic basis with hair colour and lifespan |
title_short |
Genomic analysis of male puberty timing highlights shared genetic basis with hair colour and lifespan |
title_full |
Genomic analysis of male puberty timing highlights shared genetic basis with hair colour and lifespan |
title_fullStr |
Genomic analysis of male puberty timing highlights shared genetic basis with hair colour and lifespan |
title_full_unstemmed |
Genomic analysis of male puberty timing highlights shared genetic basis with hair colour and lifespan |
title_sort |
genomic analysis of male puberty timing highlights shared genetic basis with hair colour and lifespan |
publisher |
Nature Portfolio |
publishDate |
2020 |
url |
https://doaj.org/article/052dee7053834455beecef916b0d9d00 |
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