Department of Human Genetics, Department of Biological Chemistry, and Howard Hughes Medical Institute, University of California, Los Angeles, Los Angeles, United States.
Department of Biochemistry and Molecular Biology, Institute for Medical Research Israel-Canada, The Hebrew University School of Medicine, Jerusalem, Israel.
Elife. 2021 Mar 18;10:e65857. doi: 10.7554/eLife.65857.
Genetic regulation of gene expression underlies variation in disease risk and other complex traits. The effect of expression quantitative trait loci (eQTLs) varies across cell types; however, the complexity of mammalian tissues makes studying cell-type eQTLs highly challenging. We developed a novel approach in the model nematode that uses single-cell RNA sequencing to map eQTLs at cellular resolution in a single one-pot experiment. We mapped eQTLs across cell types in an extremely large population of genetically distinct individuals. We found cell-type-specific eQTL hotspots that affect the expression of core pathways in the relevant cell types. Finally, we found single-cell-specific eQTL effects in the nervous system, including an eQTL with opposite effects in two individual neurons. Our results show that eQTL effects can be specific down to the level of single cells.
基因表达的遗传调控是疾病风险和其他复杂特征变异的基础。表达数量性状基因座(eQTLs)的作用在细胞类型之间存在差异;然而,哺乳动物组织的复杂性使得研究细胞类型的 eQTLs 极具挑战性。我们在模式线虫中开发了一种新方法,该方法使用单细胞 RNA 测序,在单个一管实验中以细胞分辨率绘制 eQTL。我们在遗传上截然不同的个体的极其庞大的群体中跨细胞类型绘制了 eQTL。我们发现了影响相关细胞类型中核心途径表达的细胞类型特异性 eQTL 热点。最后,我们在神经系统中发现了单细胞特异性的 eQTL 效应,包括在两个单个神经元中具有相反效应的 eQTL。我们的结果表明,eQTL 效应可以具体到单细胞水平。