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Beyond heritability - Neurotransmitter genes differentially modulate visuospatial attention and working memory

机译:超越遗传力-神经递质基因差异调节视觉空间注意力和工作记忆

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摘要

A cued, visuospatial attention task and a working memory task were administered to 89 healthy adults genotyped for a T-to-C polymorphism in CHRNA4, a nicotinic receptor subunit gene. Increasing gene dose of the C allele of the CHRNA4 gene (i.e., no C alleles, one C allele, two C alleles) was associated with increased reaction time (RT) benefits of valid attentional cuing and reduced RT costs of invalid cues, but was not associated with working memory performance. In a second experiment, 103 healthy persons were genotyped for a G-to-A polymorphism of the dopamine beta-hydroxylase (DBH) gene. Increasing gene dose of the G allele of the DBH gene was associated with increased working memory accuracy at a high memory load. However, there was no consistent association between the DBH gene and visuospatial attention. Thus, a double dissociation was observed, with visuospatial attention associated with CHRNA4 but not the DBH gene and, conversely, working memory associated with the DBH gene but not CHRNA4. The results show that normal allelic variations in single neurotransmitter genes modulate individual differences in processing components of cognitive functions in healthy individuals.
机译:对89位健康成年人进行了提示性的视觉空间注意任务和工作记忆任务,这些成年人的基因型为烟碱样受体亚基基因CHRNA4中的T至C多态性。 CHRNA4基因的C等位基因(即,无C等位基因,一个C等位基因,两个C等位基因)的基因剂量增加与有效注意力提示的反应时间(RT)收益增加和无效提示的RT成本降低相关,但与工作内存性能无关。在第二个实验中,对103名健康人的多巴胺β-羟化酶(DBH)基因从G到A的多态性进行了基因分型。在高记忆负荷下,DBH基因G等位基因的基因剂量增加与工作记忆准确性的提高有关。但是,DBH基因和视觉空间注意之间没有一致的关联。因此,观察到双重解离,视觉空间上的注意力与CHRNA4相关但与DBH基因无关,相反,与DBH基因相关但与CHRNA4无关。结果表明,单个神经递质基因中的正常等位基因变异可调节健康个体认知功能处理组件中的个体差异。

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