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A polygenic p factor for major psychiatric disorders

机译:严重精神疾病的多基因P因子

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It has recently been proposed that a single dimension, called the p factor, can capture a person’s liability to mental disorder. Relevant to the p hypothesis, recent genetic research has found surprisingly high genetic correlations between pairs of psychiatric disorders. Here, for the first time, we compare genetic correlations from different methods and examine their support for a genetic p factor. We tested the hypothesis of a genetic p factor by applying principal component analysis to matrices of genetic correlations between major psychiatric disorders estimated by three methods—family study, genome-wide complex trait analysis, and linkage-disequilibrium score regression—and on a matrix of polygenic score correlations constructed for each individual in a UK-representative sample of 7 026 unrelated individuals. All disorders loaded positively on a first unrotated principal component, which accounted for 57, 43, 35, and 22% of the variance respectively for the four methods. Our results showed that all four methods provided strong support for a genetic p factor that represents the pinnacle of the hierarchical genetic architecture of psychopathology.
机译:最近有人提出,一个单一的维度,称为p因子,可以捕捉一个人对精神障碍的责任。与p假说有关,最近的遗传研究发现,在成对的精神疾病之间存在令人惊讶的高遗传相关性。在这里,我们首次比较了不同方法的遗传相关性,并检验了它们对遗传p因子的支持。我们通过将主成分分析应用于通过三种方法(家庭研究,全基因组复杂性状分析和连锁不平衡得分回归)估计的主要精神疾病之间的遗传相关性矩阵,检验了遗传p因子的假设。在7 026个无关个体的英国代表性样本中为每个个体构建的多基因得分相关性。所有疾病都积极地作用于第一个未旋转的主成分,这四种方法分别占变异的57%,43%,35%和22%。我们的结果表明,所有四种方法都为遗传p因子提供了有力的支持,该因子代表了心理病理学的分层遗传结构的顶峰。

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