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首页> 外文期刊>Developmental cognitive neuroscience. >Mice engineered to mimic a common Val66Met polymorphism in the BDNF gene show greater sensitivity to reversal in environmental contingencies
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Mice engineered to mimic a common Val66Met polymorphism in the BDNF gene show greater sensitivity to reversal in environmental contingencies

机译:经过工程设计以模仿BDNF基因中常见的Val66Met多态性的小鼠对环境突发事件的逆转敏感性更高

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? A common human polymorphism in the gene that encodes brain derived neurotrophic factor (BDNF), Val66Met, is considered a marker of vulnerability for mental health issues and has been associated with cognitive impairment. An alternate framework has been proposed in which “risk alleles” are reinterpreted as “plasticity alleles” that confer vulnerability in adverse environments and positive effects in neutral or positive environments (Belsky et al., 2009). These frameworks produce divergent predictions for tests of learning and cognitive flexibility. Here, we examined multiple aspects of learning and cognitive flexibility in a relatively new BDNF Val66Met mouse model (BDNF Val68Met, Warnault et al., 2016), including multiple choice discrimination and reversal, goo-go learning and reversal, and appetitive extinction learning. We found that mice homozygous for the Met allele show more efficient reversal learning in two different paradigms, but learn at rates comparable to Val homozygotes on the multiple choice discrimination task, a goo-go task, and in appetitive extinction. Our results dissociate reversal performance from goo-go learning and appetitive extinction and support the plasticity allele framework that suggests BDNF Met carriers are potentially more sensitive to changes in the environment.
机译:?编码脑源性神经营养因子(BDNF)的基因中常见的人类多态性Val66Met被认为是心理健康问题脆弱性的标志,并且已与认知障碍相关。已经提出了一种替代框架,其中“风险等位基因”被重新解释为“可塑性等位基因”,在不利环境中赋予脆弱性,并在中性或积极环境中发挥积极作用(Belsky等,2009)。这些框架对学习和认知灵活性的测试产生了不同的预测。在这里,我们研究了相对较新的BDNF Val66Met小鼠模型(BDNF Val68Met,Warnault等人,2016)在学习和认知灵活性的多个方面,包括多项选择歧视和逆转,通过/不通过学习和逆转以及食性消亡学习。我们发现,Met等位基因纯合子的小鼠在两个不同的范例中显示出更有效的逆向学习,但是在多项选择辨别任务,执行/不执行任务和食性灭绝方面的学习速度与Val纯合子相当。我们的研究结果将逆向表现与进行/不进行学习和食性消退分开,并支持可塑性等位基因框架,表明BDNF Met携带者可能对环境变化更敏感。

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