Friedrich Miescher Institut, Basel, CH-4058, Switzerland.
Nat Commun. 2018 Jul 13;9(1):2727. doi: 10.1038/s41467-018-05318-x.
Prefrontal cortical areas mediate flexible adaptive control of behavior, but the specific contributions of individual areas and the circuit mechanisms through which they interact to modulate learning have remained poorly understood. Using viral tracing and pharmacogenetic techniques, we show that prelimbic (PreL) and infralimbic cortex (IL) exhibit reciprocal PreL↔IL layer 5/6 connectivity. In set-shifting tasks and in fear/extinction learning, activity in PreL is required during new learning to apply previously learned associations, whereas activity in IL is required to learn associations alternative to previous ones. IL→PreL connectivity is specifically required during IL-dependent learning, whereas reciprocal PreL↔IL connectivity is required during a time window of 12-14 h after association learning, to set up the role of IL in subsequent learning. Our results define specific and opposing roles of PreL and IL to together flexibly support new learning, and provide circuit evidence that IL-mediated learning of alternative associations depends on direct reciprocal PreL↔IL connectivity.
前额皮质区域介导行为的灵活适应性控制,但个体区域的具体贡献以及它们相互作用调节学习的回路机制仍知之甚少。使用病毒追踪和遗传药理学技术,我们表明,前额叶皮层(PreL)和下边缘皮层(IL)表现出相互的 PreL↔IL 层 5/6 连接。在定势转移任务和恐惧/消退学习中,在新学习期间需要 PreL 的活动来应用以前学习的关联,而 IL 的活动需要学习与以前不同的关联。在 IL 依赖性学习期间,IL→PreL 连接是特异性需要的,而在关联学习后 12-14 小时的时间窗口内,需要反向的 PreL↔IL 连接,以确定 IL 在随后学习中的作用。我们的结果定义了 PreL 和 IL 的特定和相反作用,以共同灵活地支持新的学习,并提供了回路证据,表明 IL 介导的替代关联的学习取决于直接的反向 PreL↔IL 连接。