Hastings A
Genetics. 1986 May;113(1):177-85. doi: 10.1093/genetics/113.1.177.
I determine limits to the equilibrium relationship among epistasis, recombination and disequilibrium in two-locus, two-allele models using linear programming techniques. I show that when allele frequencies are one-half at each locus, the symmetric model is the fitness pattern that generates the most disequilibrium for the smallest level of epistasis. When allele frequencies deviate from one-half much larger levels of epistasis are required to generate similar levels of disequilibrium. I determine the level of epistasis required to generate observed significant levels of disequilibrium in natural populations. The overall implication is that disequilibrium will be large at equilibrium only between strongly interacting, closely linked loci.
我使用线性规划技术确定了两基因座、双等位基因模型中上位性、重组和不平衡之间平衡关系的限制。我表明,当每个基因座的等位基因频率为二分之一时,对称模型是在最小上位性水平下产生最大不平衡的适合度模式。当等位基因频率偏离二分之一时,需要大得多的上位性水平才能产生相似水平的不平衡。我确定了在自然种群中产生观察到的显著不平衡水平所需的上位性水平。总体而言,这意味着只有在强相互作用、紧密连锁的基因座之间,平衡时的不平衡才会很大。