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The mean population mutation rates of microsatellites do not significantly differ in motifs of di-, tri-, and tetra-nucleotide repeats for the studied rice species.
Of them, O. rufipogon, the wild progenitor of O. sativa, possesses the largest mean population mutation rate, while O. officinalis exhibits the lowest value.
Therefore, our results suggest that the mean population mutation rates of microsatellites with different motifs do not make significant differences within the studied Oryza species or each subspecies of cultivated rice.
Our comparative analysis shows that the mean population mutation rate of microsatellites with different motifs does not make significant differences within the studied Oryza species or each subspecies of cultivated rice O. sativa.
In contrast to the findings from humans [ 15- 17, 44], our observations indicate that the mean population mutation rate of microsatellites with different motifs does not make significant differences among subspecies of O. sativa or within this species.
Similar(54)
Results show that the means of the population mutation rates at the loci with different motifs do not significantly differ at the 95% level in the studied rice species.
To set upper bounds on the prior distributions of the parameters, we estimated for each of the three species the geometric means of the population mutation rate 4Nu across all three loci using Watterson's estimator θ (per sequence not per site).
Sexual reproduction successfully prevented the fixation of mutations with mean population fitnesses in the range of the larger and infinite populations.
In this study we carry out a mutation accumulation experiment with the ciliate protozoan Tetrahymena thermophila with the aim to determine its somatic macronuclear (Mac) genomic mutation rate and the effect of new deleterious mutations on the mean population fitness.
Under truncation selection, the nonexistent selection against low numbers of deleterious mutations led to the accumulation and fixation of the maximum allowed number of 7 mutations in all asexual model populations; but nevertheless, the average mean population fitness did not degrade compared to the large and the infinite populations, because the fixed mutations do not cause a decline in fitness.
Theory predicts that the accumulation of deleterious mutations in MA lines is accompanied by a steady decrease in the mean population fitness [ 10].
Related(19)
mean population assignment
mean population doubling
mean population birth
mean population size
mean population parameter
mean population density
mean population norm
mean population viral
mean percent mutation
mean population fitness
mean population age
mean population distribution
mean population correlation
mean population growth
mean population egg
mean population clearance
mean population fruit
mean germline mutation
mean population plant
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