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There is substantial genetic variation for common traits associated with reproductive lifespan and for common diseases influencing female fertility. Progress in high-throughput sequencing and genome-wide association studies (GWAS) have transformed our understanding of common genetic risk factors for complex traits and diseases influencing reproductive lifespan and fertility. The data emerging from GWAS demonstrate the utility of genetics to explain epidemiological observations, revealing shared biological pathways linking puberty timing, fertility, reproductive ageing and health outcomes. The observations also identify unique genetic risk factors specific to different reproductive diseases impacting on female fertility. Sequencing in patients with primary ovarian insufficiency (POI) have identified mutations in a large number of genes while GWAS have revealed shared genetic risk factors for POI and ovarian ageing. Studies on age at menopause implicate DNA damage/repair genes with implications for follicle health and ageing. In addition to the discovery of individual genes and pathways, the increasingly powerful studies on common genetic risk factors help interpret the underlying relationships and direction of causation in the regulation of reproductive lifespan, fertility and related traits.

More information Original publication

DOI

10.3390/ijms22052556

Type

Journal article

Publication Date

2021-03-04T00:00:00+00:00

Volume

22

Keywords

AMH, FSH, Keywords: reproductive lifespan, fertility, genetic variation, menopause, review, Aging, Female, Fertility, Follicle Stimulating Hormone, Human, Genetic Variation, Genome-Wide Association Study, Humans, Longevity, Luteinizing Hormone, Menopause, Polymorphism, Single Nucleotide, Reproduction, Risk Factors