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血细胞表型的全基因组方差分析为复杂性状生物学和预测提供了新的见解。

Genome-wide analyses of variance in blood cell phenotypes provide new insights into complex trait biology and prediction.

作者信息

Xiang Ruidong, Ben-Eghan Chief, Liu Yang, Roberts David, Ritchie Scott, Lambert Samuel A, Xu Yu, Takeuchi Fumihiko, Inouye Michael

机构信息

Cambridge Baker Systems Genomics Initiative, Baker Heart and Diabetes Institute, Melbourne, VIC, Australia.

Cambridge Baker Systems Genomics Initiative, Department of Public Health and Primary Care, University of Cambridge, Cambridge, UK.

出版信息

Nat Commun. 2025 May 7;16(1):4260. doi: 10.1038/s41467-025-59525-4.

Abstract

Blood cell phenotypes are routinely tested in healthcare to inform clinical decisions. Genetic variants influencing mean blood cell phenotypes have been used to understand disease aetiology and improve prediction; however, additional information may be captured by genetic effects on observed variance. Here, we mapped variance quantitative trait loci (vQTL), i.e. genetic loci associated with trait variance, for 29 blood cell phenotypes from the UK Biobank (N ~ 408,111). We discovered 176 independent blood cell vQTLs, of which 147 were not found by additive QTL mapping. vQTLs displayed on average 1.8-fold stronger negative selection than additive QTL, highlighting that selection acts to reduce extreme blood cell phenotypes. Variance polygenic scores (vPGSs) were constructed to stratify individuals in the INTERVAL cohort (N ~ 40,466), where the genetically most variable individuals had increased conventional PGS accuracy (by ~19%) relative to the genetically least variable individuals. Genetic prediction of blood cell traits improved by ~10% on average combining PGS with vPGS. Using Mendelian randomisation and vPGS association analyses, we found that alcohol consumption significantly increased blood cell trait variances highlighting the utility of blood cell vQTLs and vPGSs to provide novel insight into phenotype aetiology as well as improve prediction.

摘要

血细胞表型在医疗保健中经常进行检测,以指导临床决策。影响平均血细胞表型的基因变异已被用于了解疾病病因和改善预测;然而,基因对观察到的方差的影响可能会捕获额外的信息。在这里,我们绘制了来自英国生物银行(N≈408,111)的29种血细胞表型的方差数量性状位点(vQTL),即与性状方差相关的基因位点。我们发现了176个独立的血细胞vQTL,其中147个未通过加性QTL定位发现。vQTL显示出平均比加性QTL强1.8倍的负选择,突出表明选择作用是减少极端血细胞表型。构建了方差多基因评分(vPGS),以对INTERVAL队列(N≈40,466)中的个体进行分层,其中遗传上最具变异性的个体相对于遗传上最不具变异性的个体,传统PGS准确性提高了约19%。将PGS与vPGS结合使用时,血细胞性状的遗传预测平均提高了约10%。使用孟德尔随机化和vPGS关联分析,我们发现饮酒显著增加了血细胞性状方差,突出了血细胞vQTL和vPGS在提供对表型病因的新见解以及改善预测方面的效用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3c2e/12059119/4bcfb49edf4b/41467_2025_59525_Fig1_HTML.jpg

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