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首页> 外文期刊>Heredity: An International Journal of Genetics >Evolution of threshold traits: the balance between directional selection, drift and mutation.
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Evolution of threshold traits: the balance between directional selection, drift and mutation.

机译:阈特征的演变:方向选择,漂移和突变之间的平衡。

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摘要

Threshold traits are characterized by showing discrete phenotypes (typically two) but by being controlled by many loci of small additive effect, the expression of the phenotype being a consequence of a threshold of sensitivity. In the case of a dimorphic threshold trait, individuals above the threshold display one morph and individuals below the threshold display the alternate. Many threshold traits, such as sex ratio, cyclomorphosis, paedomorphosis and wing dimorphism, are closely connected to fitness but have high heritabilities. The present study investigates the hypothesis that these large heritabilities can be maintained even in the face of directional selection by the countervailing force of mutation. This hypothesis is based on the observation that as selection proceeds to shift the frequency of one morph towards fixation, the selection intensity necessarily declines permitting mutation to restore genetic variation. The hypothesis is tested using a simulation model and a theoretical analysis, the latter assuming no genetic drift. It is shown that over 80% of the original genetic variance can be maintained at equilibrium provided the population (N) and number of loci (n) are reasonably large (N > 5000, n = 50). However, unless the selection coefficient is very small (<0.001) the equilibrium frequency of the phenotypes (<2%) is considerably below that generally observed. It is concluded that mutation could play a significant role in the maintenance of genetic variation in threshold traitsbut that some form of selection, such as frequency-dependent selection, is required to maintain phenotypic variation.
机译:阈值性状的特征在于显示离散的表型(通常为两个),但受许多加性作用较小的基因座控制,该表型的表达是敏感性阈值的结果。在双态阈值特征的情况下,阈值以上的个体显示一个形态,阈值以下的个体显示另一种形态。许多阈值性状,例如性别比,环态性,足形性和机翼二态性,与体能密切相关,但遗传力较高。本研究调查的假设是,即使面对定向选择,也可以通过突变的抵消力来维持这些较大的遗传力。该假设基于以下观察结果:随着选择的进行,一个形态的频率向固定方向移动,选择强度必然下降,从而允许突变恢复遗传变异。使用模拟模型和理论分析来检验该假设,后者假设没有遗传漂移。结果表明,只要种群(N)和基因座数量(n)相当大(N> 5000,n = 50),就可以保持原始遗传变异的80%以上达到平衡。但是,除非选择系数非常小(<0.001),否则表型的平衡频率(<2%)大大低于通常观察到的频率。结论是,突变可能在阈值性状的遗传变异的维持中起重要作用,但是需要某种形式的选择,例如频率依赖性选择,来维持表型变异。

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