Taylor C E
Genetics. 1975 Jul;80(3):621-35. doi: 10.1093/genetics/80.3.621.
A model of population structure in heterogeneous environments is described with attention focused on genetic variation at a single locus. The existence of equilibria at which there is no genetic load is examined.--The absolute fitness of any genotype is regarded as a function of location in the niche space and the population density at that location. It is assumed that each organism chooses to live in that habitat in which it is most fit ("optimal habitat selection").--Equilibria at which there is no segregation load ("loadless equilibria") may exist. Necessary and sufficient conditions for the existence of such equilibria are very weak. If there is a sufficient amount of dominance or area in which the alleles are selectively neutral, then there exist equilibria without segregational loads. In the N2p phase plane defined by population size, N, and gene frequency, p, these equilibria generally consist of a line segment which is parallel to the p axis. These equilibria are frequently stable.
描述了一个异质环境中的种群结构模型,重点关注单个基因座上的遗传变异。研究了不存在遗传负荷的平衡态的存在性。——任何基因型的绝对适合度被视为生态位空间中位置以及该位置种群密度的函数。假设每个生物体选择生活在其最适合的栖息地(“最优栖息地选择”)。——可能存在不存在分离负荷的平衡态(“无负荷平衡态”)。此类平衡态存在的充要条件非常弱。如果存在足够的显性或等位基因在其中为选择中性的区域,那么就存在无分离负荷的平衡态。在由种群大小N和基因频率p定义的N2p相平面中,这些平衡态通常由一条与p轴平行的线段组成。这些平衡态通常是稳定的。