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有限种群中细胞核与细胞质基因不平衡的动态变化及其与双基因座核系统的比较。

Dynamics of cytonuclear disequilibria in finite populations and comparison with a two-locus nuclear system.

作者信息

Fu Y X, Arnold J

机构信息

Department of Genetics, University of Georgia, Athens 30602.

出版信息

Theor Popul Biol. 1992 Feb;41(1):1-25. doi: 10.1016/0040-5809(92)90047-w.

Abstract

We study the behavior of cytonuclear disequilibria in a finite monoecious population due to (1) random drift alone, (2) random drift and mutation, and (3) random drift and migration, using exact results on the RUZ (Random Union of Zygotes) model and diffusion approximations. We also show that the RUG (Random Union of Gametes) model is not suitable for a cytonuclear system. The study is also accompanied by a comparison with a two-locus nuclear system. We show that in a finite population of size N without mutation, the rate of decrease of the cytonuclear allelic disequilibrium is the same as that in the corresponding unlinked two-locus nuclear system. The principal rate of decrease of variance in allelic disequilibrium in a cytonuclear system is slightly faster than that in the corresponding nuclear system. However, the expected value of the variance in cytonuclear disequilibria is larger than that in a two-locus nuclear system for at least the first N generations. With mutation, the expected value of steady state variances of both systems are about the same; however, the normalized variance in linkage disequilibrium sigma 2d of the cytonuclear system is about twice as large as that for the corresponding nuclear system. For the migration process, two sets of steady state solutions are provided, one for the variables before migration and the other for the variables after migration. Diffusion approximations for both the principal rate of decay and steady state solutions in both systems are found to be satisfactory. A more accurate backward diffusion equation for a two-locus nuclear system is provided when the recombination fraction R is large.

摘要

我们利用关于合子随机联合(RUZ)模型的精确结果和扩散近似,研究了有限雌雄同体种群中细胞质 - 细胞核不平衡的行为,具体情况如下:(1)仅由随机漂变引起;(2)由随机漂变和突变引起;(3)由随机漂变和迁移引起。我们还表明,配子随机联合(RUG)模型不适用于细胞质 - 细胞核系统。该研究还伴有与双位点核系统的比较。我们表明,在大小为N且无突变的有限种群中,细胞质 - 细胞核等位基因不平衡的下降速率与相应的非连锁双位点核系统中的下降速率相同。细胞质 - 细胞核系统中等位基因不平衡方差的主要下降速率比相应核系统中的略快。然而,至少在最初的N代中,细胞质 - 细胞核不平衡方差的期望值大于双位点核系统中的期望值。有突变时,两个系统稳态方差的期望值大致相同;然而,细胞质 - 细胞核系统中连锁不平衡的标准化方差σ²d约为相应核系统的两倍。对于迁移过程,提供了两组稳态解,一组用于迁移前的变量,另一组用于迁移后的变量。发现两个系统中主要衰减速率和稳态解的扩散近似都是令人满意的。当重组率R较大时,给出了一个更精确的双位点核系统反向扩散方程。

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