Abstract
Mutations generate sequence diversity and provide a substrate for selection. The rate of de novo mutations is therefore of major importance to evolution. Here we conduct a study of genome-wide mutation rates by sequencing the entire genomes of 78 Icelandic parent-offspring trios at high coverage. We show that in our samples, with an average father's age of 29.7, the average de novo mutation rate is 1.20 × 10(-8) per nucleotide per generation. Most notably, the diversity in mutation rate of single nucleotide polymorphisms is dominated by the age of the father at conception of the child. The effect is an increase of about two mutations per year. An exponential model estimates paternal mutations doubling every 16.5 years. After accounting for random Poisson variation, father's age is estimated to explain nearly all of the remaining variation in the de novo mutation counts. These observations shed light on the importance of the father's age on the risk of diseases such as schizophrenia and autism.
MeSH Terms
Adult
Autistic Disorder/epidemiology,etiology,genetics
Chromosomes, Human/genetics
Female
Genetic Predisposition to Disease
Genome, Human/genetics
Humans
Iceland/epidemiology
Male
Middle Aged
Mothers
Mutation Rate
Ovum/metabolism
Paternal Age
Pedigree
Polymorphism, Single Nucleotide/genetics
Risk Factors
Schizophrenia/epidemiology,etiology,genetics
Selection, Genetic/genetics
Sequence Analysis, DNA
Spermatozoa/metabolism
Young Adult
Authors & Affiliations
21 authors, click to expand affiliations / ORCID
Frigge Michael L
Masson Gisli
Besenbacher Soren
Sulem Patrick
Magnusson Gisli
Gudjonsson Sigurjon A
Sigurdsson Asgeir
Jonasdottir Aslaug
Jonasdottir Adalbjorg
Wong Wendy S W
Sigurdsson Gunnar
Walters G Bragi
Steinberg Stacy
Helgason Hannes
Thorleifsson Gudmar
Gudbjartsson Daniel F
Helgason Agnar
Magnusson Olafur Th
Thorsteinsdottir Unnur
Stefansson Kari
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