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Genetic overlap among intelligence and other candidate endophenotypes for schizophrenia.

机译:精神分裂症的智力和其他候选内表型之间的遗传重叠。

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摘要

BACKGROUND: A strategy to improve genetic studies of schizophrenia involves the use of endophenotypes. Information on overlapping genetic contributions among endophenotypes may provide additional power, reveal biological pathways, and have practical implications for genetic research. Several cognitive endophenotypes, including intelligence, are likely to be modulated by overlapping genetic influences. METHODS: We quantified potential genetic and environmental correlations among endophenotypes for schizophrenia, including sensorimotor gating, openness, verbal fluency, early visual perception, spatial working memory, and intelligence, using variance component models in 35 patients and 145 relatives from 25 multigenerational Dutch families multiply affected with schizophrenia. RESULTS: Significant correlations were found between spatial working memory and intelligence (.45), verbal fluency and intelligence (.36), verbal fluency and spatial working memory (.20), and early visual perception and spatial working memory (.19). A strong genetic correlation (.75) accounted for 76% of the variance shared between spatial working memory and intelligence. Significant environmental correlations were found between verbal fluency and openness (.50) and between verbal fluency and spatial working memory (.58). Sensorimotor gating and openness showed few genetic or environmental correlations with other endophenotypes. CONCLUSIONS: Our results suggest that intelligence strongly overlaps genetically with a known cognitive endophenotype for schizophrenia. Intelligence may thus be a promising endophenotype for genetic research in schizophrenia, even though the underlying genetic mechanism may still be complex. In contrast, sensorimotor gating and openness appear to represent separate genetic entities with simpler inheritance patterns and may therefore augment the detection of separate genetic pathways contributing to schizophrenia.
机译:背景:改善精神分裂症遗传研究的策略涉及使用内表型。关于内表型之间重叠的遗传贡献的信息可能提供额外的力量,揭示生物学途径,并对遗传研究具有实际意义。重叠的遗传影响可能会调节包括智力在内的几种认知内表型。方法:我们使用方差成分模型对来自25个多代荷兰家庭的35名患者和145个亲属的方差成分模型,对精神分裂症的内表型之间的潜在遗传和环境相关性进行了定量,包括感觉运动门控,开放性,口语流利性,早期视觉感知,空间工作记忆和智力。患有精神分裂症。结果:发现空间工作记忆和智力(.45),语言流利性和智力(.36),语言流利性和空间工作记忆(.20)以及早期视觉感知和空间工作记忆(.19)之间存在显着相关性。强大的遗传相关性(.75)占空间工作记忆和智力之间共享差异的76%。在口语流利度和开放度(.50)之间以及口语流利度和空间工作记忆(.58)之间发现了显着的环境相关性。感觉运动门控和开放性与其他内表型几乎没有遗传或环境相关性。结论:我们的结果表明,智力与精神分裂症的已知认知内表型在遗传上有很强的重叠。因此,即使潜在的遗传机制可能仍然很复杂,智力也可能是精神分裂症遗传研究中一种有希望的内表型。相反,感觉运动门控和开放性似乎代表具有更简单遗传模式的单独的遗传实体,因此可能会增加对精神分裂症做出贡献的单独遗传途径的检测。

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