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定量遗传学与选择进化中的发育限制因素

Quantitative genetics and developmental constraints on evolution by selection.

作者信息

Cheverud J M

出版信息

J Theor Biol. 1984 Sep 21;110(2):155-71. doi: 10.1016/s0022-5193(84)80050-8.

Abstract

It has often been argued that the principles of random mutation and selection are insufficient to account for macroevolutionary phenomena, such as the origin of morphological novelty and directionality in evolution. A third, epigenetic, principle is said to be required and this principle is thought not to be included in microevolutionary theory. The third principle has most recently been identified as internal selection and/or non-random phenotypic effects of mutation. It is shown that the genetic variance/covariance matrix of quantitative genetic theory measures developmental constraints due to internal selection and non-random mutation. The genetic variance/covariance matrix causes the response to selection to deviate from the optimal rate and direction as specified by the selection gradient, which measures direct selection on the phenotypes. Therefore, microevolutionary theory takes account of developmental constraints on evolution by natural selection through the genetic variance/covariance matrix. Theories for predicting the pattern of genetic variance and covariance from stabilizing selection and the phenotypic effects of mutation are discussed.

摘要

人们常常认为,随机突变和选择的原则不足以解释宏观进化现象,比如形态新奇性的起源以及进化中的方向性。据说还需要第三个原则,即表观遗传原则,并且认为这个原则并不包含在微观进化理论中。最近,第三个原则被确定为内部选择和/或突变的非随机表型效应。研究表明,数量遗传学理论中的遗传方差/协方差矩阵衡量了由于内部选择和非随机突变导致的发育限制。遗传方差/协方差矩阵使得对选择的响应偏离了由选择梯度所指定的最优速率和方向,而选择梯度衡量的是对表型的直接选择。因此,微观进化理论通过遗传方差/协方差矩阵考虑了自然选择对进化的发育限制。文中还讨论了从稳定选择和突变的表型效应预测遗传方差和协方差模式的理论。

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