Department of Molecular Genetics and Cell Biology, The University of Chicago, 920 East 58th Street, Chicago, IL 60637.
Proc Natl Acad Sci U S A. 1989 Mar;86(6):1910-3. doi: 10.1073/pnas.86.6.1910.
IT IS SHOWN THAT THE RATE OF CHANGE OF THE MEAN OF A CHARACTER UNDER SELECTION IS [FORMULA: see text] where C, W, DeltaZ, and B denote the genic (additive genetic) covariance of the character and fitness (i.e., the covariance of the average effect on the character and the average excess for fitness of every allele that affects the character), the mean fitness, the average of the changes in the genotypic values of the character over the next generation, and a correction term, respectively. Generations are discrete and nonoverlapping; the monoecious population mates at random. The character is determined by arbitrarily many multiallelic loci without epistasis; the linkage map is also arbitrary. If there is no dominance, then B = 0; if, in addition, the genotypic values of the character are constant, then Delta Z = C/ W. Even if dominance is present, for weak selection and slowly varying genotypic values, Delta Z approximately C/ W. If the character is fitness itself, then C is the genic variance in fitness.
研究表明,选择下特征均值的变化率为 [公式:见正文],其中 C、W、DeltaZ 和 B 分别表示特征的基因(加性遗传)协方差和适合度(即对特征的平均影响与每个影响特征的等位基因的平均优势的协方差)、平均适合度、下一代特征基因型值变化的平均值和校正项。世代是离散且不重叠的;雌雄同体的种群随机交配。特征由任意数量的多等位基因座决定,没有上位性;连锁图谱也是任意的。如果没有显性,那么 B = 0;如果除此之外,特征的基因型值是恒定的,那么 DeltaZ = C/W。即使存在显性,对于弱选择和缓慢变化的基因型值,DeltaZ 近似于 C/W。如果特征是适合度本身,那么 C 就是适合度的基因方差。