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连锁与自然选择的局限性

Linkage and the limits to natural selection.

作者信息

Barton N H

机构信息

Institute of Cell, Animal and Population Biology, University of Edinburgh, United Kingdom.

出版信息

Genetics. 1995 Jun;140(2):821-41. doi: 10.1093/genetics/140.2.821.

Abstract

The probability of fixation of a favorable mutation is reduced if selection at other loci causes inherited variation in fitness. A general method for calculating the fixation probability of an allele that can find itself in a variety of genetic backgrounds is applied to find the effect of substitutions, fluctuating polymorphisms, and deleterious mutations in a large population. With loose linkage, r, the effects depend on the additive genetic variance in relative fitness, var(W), and act by reducing effective population size by (N/Ne) = 1 + var(W)/2r2. However, tightly linked loci can have a substantial effect not predictable from Ne. Linked deleterious mutations reduce the fixation probability of weakly favored alleles by exp (-2U/R), where U is the total mutation rate and R is the map length in Morgans. Substitutions can cause a greater reduction: an allele with advantage s < scrit = (pi 2/6) loge (S/s) [var(W)/R] is very unlikely to be fixed. (S is the advantage of the substitution impeding fixation.) Fluctuating polymorphisms at many (n) linked loci can also have a substantial effect, reducing fixation probability by exp [square root of 2Kn var(W)/R] [K = -1/E((u-u)2/uv) depending on the frequencies (u,v) at the selected polymorphisms]. Hitchhiking due to all three kinds of selection may substantially impede adaptation that depends on weakly favored alleles.

摘要

如果其他位点的选择导致适合度出现遗传变异,那么有利突变固定的概率就会降低。一种计算处于多种遗传背景下的等位基因固定概率的通用方法,被用于研究大群体中替代、波动多态性和有害突变的影响。在连锁松散(重组率为r)的情况下,这些影响取决于相对适合度的加性遗传方差var(W),其作用方式是使有效种群大小减小为(N/Ne) = 1 + var(W)/2r²。然而,紧密连锁的位点可能会产生无法从有效种群大小预测的显著影响。连锁的有害突变会使弱有利等位基因的固定概率降低exp (-2U/R),其中U是总突变率,R是以摩根为单位的图距长度。替代可能会导致更大程度的降低:优势s < scrit = (π²/6) loge (S/s) [var(W)/R]的等位基因极不可能被固定。(S是阻碍固定的替代的优势。)许多(n)个连锁位点的波动多态性也可能产生显著影响,使固定概率降低exp [√(2Kn var(W)/R)] [K = -1/E((u - u)²/uv),取决于所选多态性处的频率(u, v)]。由于这三种选择导致的搭便车现象可能会严重阻碍依赖弱有利等位基因的适应性。

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本文引用的文献

1
Heterosis as a major cause of heterozygosity in nature.
Genetics. 1967 Mar;55(3):493-5. doi: 10.1093/genetics/55.3.493.
2
Does associative overdominance account for the extensive polymorphism of h-2-linked Loci.
Genetics. 1983 Sep;105(1):241-4. doi: 10.1093/genetics/105.1.241.
3
Does natural selection increase or decrease variability at linked Loci.
Genetics. 1983 Sep;105(1):239-40. doi: 10.1093/genetics/105.1.239.
4
The effect of deleterious mutations on neutral molecular variation.
Genetics. 1993 Aug;134(4):1289-303. doi: 10.1093/genetics/134.4.1289.
5
A ruby in the rubbish: beneficial mutations, deleterious mutations and the evolution of sex.
Genetics. 1994 Jun;137(2):597-606. doi: 10.1093/genetics/137.2.597.
6
Genetic recombination. Patterns in the genome.
Curr Biol. 1994 Feb 1;4(2):182-4. doi: 10.1016/s0960-9822(94)00045-x.
7
Effective size of populations under selection.
Genetics. 1995 Feb;139(2):1013-30. doi: 10.1093/genetics/139.2.1013.
8
The molecular basis of dominance.
Genetics. 1981 Mar-Apr;97(3-4):639-66. doi: 10.1093/genetics/97.3-4.639.
9
Organization and evolution of the mammalian genome: I. Polymorphism of H-2 linked loci.
Genetics. 1982 Nov;102(3):583-98. doi: 10.1093/genetics/102.3.583.

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