<p>The sex-averaged mutation rate per generation (solid purple line) increases with the generation time (assumed to be the same for males and females). Depending on the age of puberty (<i>P</i>), generation time (<i>G</i>), and the per cell division mutation rates, a linear fit to the number of mutations after puberty (dotted purple line) could have a zero, positive, or negative intercept at age zero, and the slope of this linear fit represents the yearly mutation rate after puberty. The slope of the green line represents the average yearly mutation rate prior to puberty. The effect of <i>G</i> on the overall average yearly mutation rate (<i>m</i><sub>R,y</sub>) depends on the relative values of the two slopes, which is equivalent to the si...
<p><b>a)</b> We show simulated stochastic mutation accumulation in a stem cell population of constan...
<p><b> due to mutation accumulation (left column) and mutational load (right column) under different...
Germline mutations are a driving force behind genome evolution and genetic disease. We investigated ...
<p>(A) An illustration of the increase in the number of germ cell divisions with age in humans. For ...
<p>Orange boxes denote the bottlenecked population that did not recently expand (BN). Green boxes de...
<p>Black circles indicate allocation to reproduction e(x) for a non-mutated phenotype (solid line) a...
<p>(<i>A</i>), (<i>B</i>) Effect of sex ratio bias among reproductive adults, <i>N</i><sup><i>m</i><...
Mutations arise spontaneously in all populations, and can severely diminish fitness. This mutation l...
Mutations can originate from the chance misincorporation of nucleotides during DNA replication or fr...
<p>Thin black bars: equilibrium frequencies of mutations for the asexual model, thick grey bars: equ...
<p><b>Copyright information:</b></p><p>Taken from "Mutation accumulation and fitness effects in hybr...
This is the author accepted manuscript. It is currently under an indefinite embargo pending publicat...
<p>Parameter values tested in different combinations: mutation rates per locus, <i>M</i> = 0.0001, 0...
<p><b> and mutation rate </b><b><i>M</i></b><b>.</b> Dashed decreasing lines represent survivorship ...
<p>For each combination of <i>U</i> ( = 0.1, 0.3, and 0.5) and <i>s</i> ( = 0.01 and 0.1), simulatio...
<p><b>a)</b> We show simulated stochastic mutation accumulation in a stem cell population of constan...
<p><b> due to mutation accumulation (left column) and mutational load (right column) under different...
Germline mutations are a driving force behind genome evolution and genetic disease. We investigated ...
<p>(A) An illustration of the increase in the number of germ cell divisions with age in humans. For ...
<p>Orange boxes denote the bottlenecked population that did not recently expand (BN). Green boxes de...
<p>Black circles indicate allocation to reproduction e(x) for a non-mutated phenotype (solid line) a...
<p>(<i>A</i>), (<i>B</i>) Effect of sex ratio bias among reproductive adults, <i>N</i><sup><i>m</i><...
Mutations arise spontaneously in all populations, and can severely diminish fitness. This mutation l...
Mutations can originate from the chance misincorporation of nucleotides during DNA replication or fr...
<p>Thin black bars: equilibrium frequencies of mutations for the asexual model, thick grey bars: equ...
<p><b>Copyright information:</b></p><p>Taken from "Mutation accumulation and fitness effects in hybr...
This is the author accepted manuscript. It is currently under an indefinite embargo pending publicat...
<p>Parameter values tested in different combinations: mutation rates per locus, <i>M</i> = 0.0001, 0...
<p><b> and mutation rate </b><b><i>M</i></b><b>.</b> Dashed decreasing lines represent survivorship ...
<p>For each combination of <i>U</i> ( = 0.1, 0.3, and 0.5) and <i>s</i> ( = 0.01 and 0.1), simulatio...
<p><b>a)</b> We show simulated stochastic mutation accumulation in a stem cell population of constan...
<p><b> due to mutation accumulation (left column) and mutational load (right column) under different...
Germline mutations are a driving force behind genome evolution and genetic disease. We investigated ...