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Genetic interactions between polymorphisms that affect gene expression in yeast

机译:影响酵母基因表达的多态性之间的遗传相互作用

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Interactions between polymorphisms at different quantitative trait loci (QTLs) are thought to contribute to the genetics of many traits, and can markedly affect the power of genetic studies to detect QTLs(1). Interacting loci have been identified in many organisms(1-5). However, the prevalence of interactions(6-8), and the nucleotide changes underlying them(9,10), are largely unknown. Here we search for naturally occurring genetic interactions in a large set of quantitative phenotypes - the levels of all transcripts in a cross between two strains of Saccharomyces cerevisiae(7). For each transcript, we searched for secondary loci interacting with primary QTLs detected by their individual effects. Such locus pairs were estimated to be involved in the inheritance of 57% of transcripts; statistically significant pairs were identified for 225 transcripts. Among these, 67% of secondary loci had individual effects too small to be significant in a genome-wide scan. Engineered polymorphisms in isogenic strains confirmed an interaction between the mating-type locus MAT and the pheromone response gene GPA1. Our results indicate that genetic interactions are widespread in the genetics of transcript levels, and that many QTLs will be missed by single-locus tests but can be detected by two-stage tests that allow for interactions.
机译:不同数量性状基因座(QTL)上多态性之间的相互作用被认为有助于许多性状的遗传学,并且可以显着影响遗传研究检测QTL的能力(1)。在许多生物中已经鉴定出相互作用的基因座(1-5)。然而,相互作用的发生率(6-8)以及其背后的核苷酸变化(9,10)在很大程度上尚不清楚。在这里,我们搜索大量定量表型中的自然发生的遗传相互作用-两种酿酒酵母菌株之间的杂交中所有转录本的水平(7)。对于每个转录本,我们搜索与主要QTL相互作用的次要基因座,这些QTL通过各自的作用检测到。据估计,这些基因座对参与了转录本的57%的遗传。确定了225个转录本的统计学显着对。在这些基因中,有67%的次要基因座的个体效应太小而无法在全基因组扫描中显着。等基因菌株中的工程多态性证实了交配型基因座MAT和信息素反应基因GPA1之间的相互作用。我们的结果表明,遗传相互作用广泛存在于转录本水平的遗传学中,单基因座测试会遗漏许多QTL,但可以通过允许相互作用的两阶段测试来检测。

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