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1 t about an increased rate of substitution of slightly deleterious mutations.
2 nymous mutations, suggesting the presence of slightly deleterious mutations.
3 ry mutations to Ohta's model of evolution by slightly deleterious mutations.
4 ersity is shaped by selection acting against slightly deleterious mutations.
5 e most easily explained by the occurrence of slightly deleterious mutations.
6 e appearance and subsequent fixation of both slightly deleterious mutations and advantageous mutation
9 f mismatch repair increases the frequency of slightly deleterious mutations by approximately two orde
10 d that genetic drift and the accumulation of slightly deleterious mutations can explain this rate inc
11 ly occurred through the cumulative effect of slightly deleterious mutations causing a threshold-like
13 n in the recent past or, alternatively, that slightly deleterious mutations constitute an important c
15 is little adaptive molecular evolution, then slightly deleterious mutations inflate estimates of the
18 nd is reversed, with the majority of neutral/slightly deleterious mutations occurring in downstream e
19 les nor stronger purifying selection against slightly deleterious mutations on the X chromosome can a
20 erved RT residues and that selection against slightly deleterious mutations (purifying selection) in
21 ributed to generation-time, population size, slightly deleterious mutations, repair mechanisms, and t
22 mall populations, weakened selection against slightly-deleterious mutations results in an additional
23 theory of molecular evolution predicts that slightly deleterious mutations subject to purifying sele
24 neither the Muller's ratchet effect nor the slightly deleterious mutation theory sufficiently accoun
25 elected because they compensate for multiple slightly deleterious mutations throughout the mitochondr
26 iew was originally based on consideration of slightly deleterious mutations with a fixed distribution
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