School of Telecommunications Engineering, Xidian University, 2 South Taibai Road, Xi'an, 710071, Shaanxi, China.
Sci Rep. 2022 Jul 25;12(1):12649. doi: 10.1038/s41598-022-16908-7.
Genome-wide variance quantitative trait loci (vQTL) analysis complements genome-wide association study (GWAS) and has the potential to identify novel variants associated with the trait, explain additional trait variance and lead to the identification of factors that modulate the genetic effects. I conducted genome-wide analysis of the UK Biobank data and identified 27 vQTLs associated with systolic blood pressure (SBP), diastolic blood pressure (DBP) and pulse pressure (PP). The top single-nucleotide polymorphisms (SNPs) are enriched for expression QTLs (eQTLs) or splicing QTLs (sQTLs) annotated by GTEx, suggesting their regulatory roles in mediating the associations with blood pressure (BP). Of the 27 vQTLs, 14 are known BP-associated QTLs discovered by GWASs. The heteroscedasticity effects of the 13 novel vQTLs are larger than their genetic main effects, which were not detected by existing GWASs. The total R-squared of the 27 top SNPs due to variance heteroscedasticity is 0.28%, compared with 0.50% owing to their main effects. The overall effect size of the variance heteroscedasticity is small in GWAS SNPs compared with their main effects. For the 411, 384 and 285 GWAS SNPs associated with SBP, DBP and PP, respectively, their heteroscedasticity effects were 0.52%, 0.43%, and 0.16%, and their main effects were 5.13%, 5.61%, and 3.75%, respectively. The number and effects of the vQTLs are small, which suggests that the effects of gene-environment and gene-gene interactions are small. The main effects of the SNPs remain the major source of genetic variance for BP, which would probably be true for other complex traits as well.
全基因组方差数量性状基因座(vQTL)分析补充了全基因组关联研究(GWAS),具有识别与性状相关的新变体、解释额外性状变异并导致鉴定调节遗传效应的因素的潜力。我对英国生物库数据进行了全基因组分析,确定了与收缩压(SBP)、舒张压(DBP)和脉压(PP)相关的 27 个 vQTL。顶级单核苷酸多态性(SNP)富含 GTEx 注释的表达 QTL(eQTL)或剪接 QTL(sQTL),表明它们在介导与血压(BP)的关联中具有调节作用。在 27 个 vQTL 中,有 14 个是通过 GWAS 发现的与 BP 相关的已知 QTL。13 个新的 vQTL 的异方差效应大于其遗传主效应,这些效应未被现有 GWAS 检测到。27 个顶级 SNP 由于方差异方差产生的 R-squared 为 0.28%,而由于其主效应产生的 R-squared 为 0.50%。与主效应相比,GWAS SNP 中方差异方差的整体效应大小较小。对于分别与 SBP、DBP 和 PP 相关的 411、384 和 285 个 GWAS SNP,它们的异方差效应分别为 0.52%、0.43%和 0.16%,主效应分别为 5.13%、5.61%和 3.75%。vQTL 的数量和效应较小,这表明基因-环境和基因-基因相互作用的效应较小。SNP 的主效应仍然是 BP 遗传变异的主要来源,对于其他复杂性状也可能如此。