Wang J
College of Animal Science, Zhejiang Agricultural University, Hangzhou, People's Republic of China.
Genetics. 1997 Aug;146(4):1465-74. doi: 10.1093/genetics/146.4.1465.
For a dioecious diploid population subdivided into an arbitrary number of subpopulations, we have derived recurrence equations for the inbreeding coefficient and coancestries between individuals within and among subpopulations and formulas for effective size and F-statistics. Stable population size and structure, discrete generations, autosomal inheritance, and the island migration model are assumed, and arbitrary distributions of the numbers of male and female progeny per family, different numbers and variable migration rates of males and females are incorporated in our derivation. Some published equations for effective size and F-statistics for a subdivided population are shown to be incorrect because several incorrect probabilities are used in the derivation. A more general equation for effective size is obtained by finding eigenvalue solutions to the recurrence equations for inbreeding coefficient and coancestry in this article, which reduces to the simple and familiar expressions derived by previous authors for the special case of a single unsubdivided population. Our general expressions for F-statistics also reduce to the classical results of WRIGHT's infinite island model and its extensions. It is shown that population structure is important in determining effective size and F-statistics and should be recognized and incorporated into programs for genetic conservation and evolution.
对于一个分成任意数量亚群的雌雄异株二倍体群体,我们推导了亚群内和亚群间个体的近交系数和共祖系数的递归方程,以及有效大小和F统计量的公式。假设群体大小和结构稳定、世代离散、常染色体遗传以及岛屿迁移模型,并且在推导过程中纳入了每个家庭中雄性和雌性后代数量的任意分布、雄性和雌性数量不同以及迁移率可变的情况。结果表明,一些已发表的关于细分群体有效大小和F统计量的方程是不正确的,因为在推导过程中使用了几个错误的概率。通过求解本文中近交系数和共祖系数递归方程的特征值解,得到了一个更通用的有效大小方程,对于单个未细分群体的特殊情况,该方程简化为先前作者推导的简单且熟悉的表达式。我们的F统计量通用表达式也简化为赖特无限岛屿模型及其扩展模型的经典结果。研究表明,群体结构在确定有效大小和F统计量方面很重要,应在遗传保护和进化计划中予以认识和考虑。