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首页> 外文期刊>Cognitive, affective & behavioral neuroscience >On the molecular genetics of flexibility: the case of task-switching, inhibitory control and genetic variants.
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On the molecular genetics of flexibility: the case of task-switching, inhibitory control and genetic variants.

机译:关于灵活性的分子遗传学:任务转换,抑制控制和遗传变异的情况。

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摘要

The adjustment of behavior to changing goals and environmental constraints requires the flexible switching between different task sets. Cognitive flexibility is an endophenotype of executive functioning and is highly heritable, as indicated by twin studies. Individual differences in global flexibility as assessed by reaction-time measurement in a task-switching paradigm were recently related to a single nucleotide polymorphism in the vicinity of the dopamine d2 receptor gene DRD2. In the present study, we assessed whether the DRD2 gene is related to backward inhibition, a control mechanism that contributes to cognitive flexibility by reducing proactive interference by no longer relevant task sets. We found that carriers of the DRD2 A1+ variant who have a lower striatal dopamine d2 receptor density than A1- carriers show a larger backward inhibition effect. This is in line with previous results demonstrating increased behavioral flexibility in carriers of this genetic variant. The discussion relates the present finding to those of previous studies assessing the neurogenetic foundations of inhibitory control.
机译:要根据不断变化的目标和环境限制来调整行为,就需要在不同任务集之间灵活切换。孪生研究表明,认知灵活性是执行功能的一种内在表型,具有很高的遗传性。最近通过任务切换范例中的反应时间测量评估的总体灵活性方面的个体差异与多巴胺d2受体基因DRD2附近的单核苷酸多态性有关。在本研究中,我们评估了DRD2基因是否与逆向抑制有关,逆向抑制是一种控制机制,通过减少不再相关的任务集来减少主动干预,从而有助于认知灵活性。我们发现,DRA2 A1 +变异体的纹状体多巴胺d2受体密度低于A1-载体,其逆向抑制作用更大。这与先前的结果一致,表明该遗传变异体携带者的行为灵活性增加。讨论将当前发现与评估抑制性控制的神经遗传基础的先前研究相联系。

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