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首页> 外文期刊>Revista Brasileira de Zootecnia >Behavior of genetic (co)variance components in populations simulated from non-additive genetic models of dominance and overdominance
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Behavior of genetic (co)variance components in populations simulated from non-additive genetic models of dominance and overdominance

机译:从优势和优势的非加性遗传模型模拟的群体遗传(共)方差成分的行为

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摘要

The aim of this work was to investigate the short-term behavior of the genetic variability of quantitative traits simulated from models with additive and non-additive gene action in control and phenotypic selection populations. Both traits, one with low (h2 = 0.10) and the other with high (h2 = 0.60) heritability, were controlled by 600 biallelic loci. From a standard genome, it was obtained six genetic models which included the following: only the additive gene effects; complete and positive dominance for 25, 50, 75 and 100% of the loci; and positive overdominance for 50% of the loci. In the models with dominance deviation, the additive allelic effects were also included for 100% of the loci. Genetic variability was quantified from generation to generation using the genetic variance components. In the absence of selection, genotypic and additive genetic variances were higher. In the models with non-additive gene action, a small magnitude covariance component raised between the additive and dominance genetic effects whose correlation tended to be positive on the control population and negative under selection. Dominance variance increased as the number of loci with dominance deviation or the value of the deviation increased, implying on the increase in genotypic and additive genetic variances among the successive models.
机译:这项工作的目的是调查在控制和表型选择人群中具有加性和非加性基因作用的模型模拟的数量性状的遗传变异的短期行为。两个性状,一个具有较低的遗传力(h2 = 0.10),另一个具有较高的遗传力(h2 = 0.60),均由600个双等位基因座控制。从标准基因组中,获得了六个遗传模型,其中包括:仅加性基因效应;对于25%,50%,75%和100%的基因座具有完全和正的主导地位;和50%的基因座的阳性显性。在具有优势偏差的模型中,100%的基因座也包括了累加的等位基因效应。遗传变异性是使用遗传变异成分对世代之间进行量化的。在没有选择的情况下,基因型和加性遗传方差较高。在具有非加性基因作用的模型中,加性和显性遗传效应之间会出现一个较小的协方差分量,其相关性对对照人群呈正相关,在选择条件下呈负相关。优势方差随着具有优势方差的基因座数目或偏差值的增加而增加,这意味着在后续模型之间,基因型和加性遗传方差的增加。

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