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Genome-wide association analyses of risk tolerance and risky behaviors in over 1 million individuals identify hundreds of loci and shared genetic influences

机译:超过100万个人的风险耐受性和风险行为的基因组关联分析识别数百个基因座和共享遗传影响

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摘要

Humans vary substantially in their willingness to take risks. In a combined sample of over 1 million individuals, we conducted genome-wide association studies (GWAS) of general risk tolerance, adventurousness, and risky behaviors in the driving, drinking, smoking, and sexual domains. Across all GWAS, we identified hundreds of associated loci, including 99 loci associated with general risk tolerance. We report evidence of substantial shared genetic influences across risk tolerance and the risky behaviors: 46 of the 99 general risk tolerance loci contain a lead SNP for at least one of our other GWAS, and general risk tolerance is genetically correlated (vertical bar(r) over cap (g)vertical bar similar to 0.25 to 0.50) with a range of risky behaviors. Bioinformatics analyses imply that genes near SNPs associated with general risk tolerance are highly expressed in brain tissues and point to a role for glutamatergic and GABAergic neurotransmission. We found no evidence of enrichment for genes previously hypothesized to relate to risk tolerance.
机译:人类在愿意冒险的意愿方面很大。在超过100万人的组合样本中,我们在驾驶,饮酒,吸烟和性域中进行了一般风险耐受性,冒险和风险行为的全基因组关联研究(GWA)。在所有GWA,我们确定了数百个相关的基因座,其中包括与一般风险公差相关的99个基因座。我们报告了跨风险容忍和风险行为的大量共同遗传影响的证据:99个一般风险耐受性的46个含有我们其他GWA的至少一个的铅SNP,并且一般风险耐受性是基因相关的(垂直条(r)通过帽(g)垂直杆类似于0.25至0.50),具有一系列风险行为。生物信息学分析意味着与一般风险耐受性相关的SNP附近的基因在脑组织中高度表达,并指向谷氨酸和加法利腺神经递血的作用。我们发现没有证据表明以前假设的基因富集以涉及风险耐受性。

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