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The Conditional Nature of Genetic Interactions: The Consequences of Wild-Type Backgrounds on Mutational Interactions in a Genome-Wide Modifier Screen

机译:遗传相互作用的条件性质:全基因组修饰符屏幕中突变型相互作用的野生型背景的后果。

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摘要

The phenotypic outcome of a mutation cannot be simply mapped onto the underlying DNA variant. Instead, the phenotype is a function of the allele, the genetic background in which it occurs and the environment where the mutational effects are expressed. While the influence of genetic background on the expressivity of individual mutations is recognized, its consequences on the interactions between genes, or the genetic network they form, is largely unknown. The description of genetic networks is essential for much of biology; yet if, and how, the topologies of such networks are influenced by background is unknown. Furthermore, a comprehensive examination of the background dependent nature of genetic interactions may lead to identification of novel modifiers of biological processes. Previous work in Drosophila melanogaster demonstrated that wild-type genetic background influences the effects of an allele of scalloped (sd), with respect to both its principal consequence on wing development and its interactions with a mutation in optomotor blind. In this study we address whether the background dependence of mutational interactions is a general property of genetic systems by performing a genome wide dominant modifier screen of the sdE3 allele in two wild-type genetic backgrounds using molecularly defined deletions. We demonstrate that ∼74% of all modifiers of the sdE3 phenotype are background-dependent due in part to differential sensitivity to genetic perturbation. These background dependent interactions include some with qualitative differences in the phenotypic outcome, as well as instances of sign epistasis. This suggests that genetic interactions are often contingent on genetic background, with flexibility in genetic networks due to segregating variation in populations. Such background dependent effects can substantially alter conclusions about how genes influence biological processes, the potential for genetic screens in alternative wild-type backgrounds identifying new loci that contribute to trait expression, and the inferences of the topology of genetic networks.
机译:突变的表型结果不能简单地定位到潜在的DNA变异体上。相反,表型是等位基因,发生它的遗传背景以及表达突变效应的环境的函数。尽管人们认识到遗传背景对单个突变的表达的影响,但它对基因之间的相互作用或它们形成的遗传网络的影响尚不清楚。遗传网络的描述对于许多生物学至关重要。但是,这种网络的拓扑结构是否以及如何受到背景影响仍然未知。此外,对遗传相互作用的背景依赖性的全面检查可能导致鉴定生物过程的新型修饰剂。果蝇的先前研究表明,野生型遗传背景会影响扇贝(sd)等位基因的作用,既影响机翼发育的主要结果,也影响与视动盲突变的相互作用。在这项研究中,我们通过使用分子定义的缺失在两个野生型遗传背景中执行sd E3 等位基因的全基因组显性修饰子筛选,来解决突变相互作用的背景依赖性是否是遗传系统的一般属性。 。我们证明,sd E3 表型的所有修饰子中约有74%是背景依赖性的,部分原因是对遗传扰动的敏感性不同。这些背景相关的相互作用包括一些在表型结果上有质的差异,以及体征上位的情况。这表明遗传相互作用通常取决于遗传背景,由于种群中的差异性变异,遗传网络具有灵活性。这种与背景有关的影响可以大大改变有关以下结论的结论:基因如何影响生物过程,在替代野生型背景中进行遗传筛选的潜力,以鉴定有助于性状表达的新基因座,以及遗传网络拓扑的推论。

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