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Regulatory Architecture of Gene Expression Variation in the Threespine Stickleback Gasterosteus aculeatus

机译:三脊背棘鱼Gasterosteus aculeatus基因表达变异的调控体系结构。

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摘要

Much adaptive evolutionary change is underlain by mutational variation in regions of the genome that regulate gene expression rather than in the coding regions of the genes themselves. An understanding of the role of gene expression variation in facilitating local adaptation will be aided by an understanding of underlying regulatory networks. Here, we characterize the genetic architecture of gene expression variation in the threespine stickleback (Gasterosteus aculeatus), an important model in the study of adaptive evolution. We collected transcriptomic and genomic data from 60 half-sib families using an expression microarray and genotyping-by-sequencing, and located expression quantitative trait loci (eQTL) underlying the variation in gene expression in liver tissue using an interval mapping approach. We identified eQTL for several thousand expression traits. Expression was influenced by polymorphism in both cis- and trans-regulatory regions. Trans-eQTL clustered into hotspots. We did not identify master transcriptional regulators in hotspot locations: rather, the presence of hotspots may be driven by complex interactions between multiple transcription factors. One observed hotspot colocated with a QTL recently found to underlie salinity tolerance in the threespine stickleback. However, most other observed hotspots did not colocate with regions of the genome known to be involved in adaptive divergence between marine and freshwater habitats.
机译:许多适应性进化变化是由调节基因表达的基因组区域而不是基因本身的编码区域中的突变引起的。对基因表达变异在促进局部适应中的作用的理解将通过对基本调控网络的理解而得到帮助。在这里,我们表征了三脊背棘背G(Gasterosteus aculeatus)基因表达变异的遗传结构,这是适应性进化研究的重要模型。我们使用表达微阵列和按序列进行基因分型,收集了来自60个同胞半家庭的转录组学和基因组数据,并使用间隔作图法定位了肝脏组织中基因表达变化的表达定量特征位点(eQTL)。我们鉴定了数千个表达特征的eQTL。表达受到顺式和反式调节区域中多态性的影响。 Trans-eQTL聚集成热点。我们没有发现热点位置的主要转录调节因子:相反,热点的存在可能是由多个转录因子之间复杂的相互作用所驱动的。最近发现的一个与QTL并置的热点是三脊棘背盐​​度耐盐性的基础。然而,大多数其他观察到的热点与已知参与海洋和淡水生境之间适应性差异的基因组区域并不相同。

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