首页> 外文期刊>Journal of Applied Genetics >Genetic analysis carried out in population tails reveals diverse two-loci interactions as a basic factor of quantitative traits variation in rye
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Genetic analysis carried out in population tails reveals diverse two-loci interactions as a basic factor of quantitative traits variation in rye

机译:在种群尾部进行的遗传分析显示,不同的两地点相互作用是黑麦数量性状变异的基本因素

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Bidirectional selective genotyping carried out independently for five quantitative traits within a biparental population of recombinant inbred lines of rye has revealed dramatic changes in alleles distribution in the population tails. A given allele, predominant in the lower tail, is often neutral for reversely directed selection or associates with the upper tail following divergent selection for a related trait. Such radical changes in the alleles distribution cannot be explained by differences in genotypic values within a single locus. This paper presents the theoretical model of a genetic mechanism underlying observed responses of individual loci to divergent selection. The presented model refers to the specific interactions between alleles at two loci. Its wider application in genetic analysis will open up new possibilities for testing positions of genes in the hierarchical structure of interacting loci revealed under selection pressure.
机译:对双亲黑麦重组近交系的双亲种群中的五个定量性状进行的双向选择性基因分型显示,种群尾巴中的等位基因分布发生了显着变化。给定的等位基因(主要在下尾巴中)通常对于反向选择是中性的,或者在对相关性状进行分歧选择后与上尾巴相关联。等位基因分布中的这种根本性变化无法通过单个基因座内基因型值的差异来解释。本文提出了一个遗传机制的理论模型,该模型基于观察到的单个基因座对趋异选择的响应。提出的模型是指两个基因座等位基因之间的特定相互作用。它在遗传分析中的广泛应用将为测试在选择压力下揭示的相互作用基因座的层次结构中的基因位置开辟新的可能性。

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