Language and Genetics Department, Max Planck Institute for Psycholinguistics, Nijmegen, Netherlands.
Donders Institute for Brain, Cognition and Behaviour, Radboud University, Nijmegen, Netherlands.
Sci Adv. 2023 Feb 17;9(7):eadd2870. doi: 10.1126/sciadv.add2870.
White matter tracts form the structural basis of large-scale brain networks. We applied brain-wide tractography to diffusion images from 30,810 adults (U.K. Biobank) and found significant heritability for 90 node-level and 851 edge-level network connectivity measures. Multivariate genome-wide association analyses identified 325 genetic loci, of which 80% had not been previously associated with brain metrics. Enrichment analyses implicated neurodevelopmental processes including neurogenesis, neural differentiation, neural migration, neural projection guidance, and axon development, as well as prenatal brain expression especially in stem cells, astrocytes, microglia, and neurons. The multivariate association profiles implicated 31 loci in connectivity between core regions of the left-hemisphere language network. Polygenic scores for psychiatric, neurological, and behavioral traits also showed significant multivariate associations with structural connectivity, each implicating distinct sets of brain regions with trait-relevant functional profiles. This large-scale mapping study revealed common genetic contributions to variation in the structural connectome of the human brain.
白质束形成了大脑大规模网络的结构基础。我们应用弥散张量成像技术对来自 30810 名成年人(英国生物库)的弥散图像进行了分析,发现 90 个节点水平和 851 个边缘水平的网络连通性测量具有显著的遗传性。多变量全基因组关联分析确定了 325 个遗传位点,其中 80%以前与大脑指标没有关联。富集分析表明,神经发育过程包括神经发生、神经分化、神经迁移、神经投射指导和轴突发育,以及产前大脑表达,特别是在干细胞、星形胶质细胞、小胶质细胞和神经元中。多变量关联分析显示,31 个基因座与左半球语言网络核心区域之间的连通性有关。精神疾病、神经和行为特征的多基因评分也与结构连通性有显著的多变量关联,每一个都涉及与特征相关的功能特征的不同脑区。这项大规模的图谱研究揭示了常见的遗传因素对人类大脑结构连接组变异的贡献。