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一种基于基因的适应性模型及其对遗传变异的影响:连锁不平衡。

A gene-based model of fitness and its implications for genetic variation: Linkage disequilibrium.

作者信息

Johri Parul, Charlesworth Brian

机构信息

Department of Biology, The University of North Carolina at Chapel Hill, Chapel Hill, NC 27599, United States.

Department of Genetics, The University of North Carolina at Chapel Hill, Chapel Hill, NC 27599, United States.

出版信息

Genetics. 2025 Aug 22. doi: 10.1093/genetics/iyaf168.

Abstract

A widely used model of the effects of mutations on fitness (the "sites" model) assumes that heterozygous recessive or partially recessive deleterious mutations at different sites in a gene complement each other, similarly to mutations in different genes. However, the general lack of complementation between major effect allelic mutations suggests an alternative possibility, which we term the "gene" model. This model assumes that a pair of heterozygous deleterious mutations in trans behave effectively as homozygotes, so that the fitnesses of trans heterozygotes are lower than those of cis heterozygotes. We examine the properties of the two different models, using both analytical and simulation methods. We show that the gene model predicts positive linkage disequilibrium (LD) between deleterious variants within the coding sequence under conditions when the sites model predicts zero or slightly negative LD. We also show that focussing on rare variants when examining patterns of LD, especially with Lewontin's D´ measure, is likely to produce misleading results with respect to inferences concerning the causes of the sign of LD. Synergistic epistasis between pairs of mutations was also modeled; it is less likely to produce negative LD under the gene model than the sites model. The theoretical results are discussed in relation to patterns of LD in natural populations of several species.

摘要

一种广泛使用的关于突变对适合度影响的模型(“位点”模型)假定,基因中不同位点的杂合隐性或部分隐性有害突变会像不同基因中的突变一样相互补充。然而,主要效应等位基因突变之间普遍缺乏互补性,这提示了另一种可能性,我们将其称为“基因”模型。该模型假定反式排列的一对杂合有害突变实际上表现得如同纯合子,因此反式杂合子的适合度低于顺式杂合子。我们使用分析和模拟方法研究了这两种不同模型的特性。我们表明,在“位点”模型预测为零或轻微负向连锁不平衡(LD)的条件下,“基因”模型预测编码序列内有害变异之间存在正向连锁不平衡。我们还表明,在检查连锁不平衡模式时关注稀有变异,尤其是使用莱温廷的D´度量时,对于有关连锁不平衡符号原因的推断可能会产生误导性结果。我们还对成对突变之间的协同上位性进行了建模;与“位点”模型相比,在“基因”模型下产生负向连锁不平衡的可能性较小。我们结合几个物种自然种群中的连锁不平衡模式对理论结果进行了讨论。

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